diff --git a/.github/workflows/webassembly.yml b/.github/workflows/webassembly.yml index f9e51680d..f676877fd 100644 --- a/.github/workflows/webassembly.yml +++ b/.github/workflows/webassembly.yml @@ -29,7 +29,7 @@ jobs: - name: Setup emsdk uses: mymindstorm/setup-emsdk@v14 with: - version: 3.1.54 + version: 3.1.64 actions-cache-folder: 'emsdk-cache' - name: Setup Release Version diff --git a/BINDINGS.md b/BINDINGS.md index 3e840d587..576d9b463 100644 --- a/BINDINGS.md +++ b/BINDINGS.md @@ -9,7 +9,7 @@ Some people ported raylib to other languages in the form of bindings or wrappers | [raylib](https://github.com/raysan5/raylib) | **5.0** | [C/C++](https://en.wikipedia.org/wiki/C_(programming_language)) | Zlib | | [raylib-beef](https://github.com/Starpelly/raylib-beef) | **5.0** | [Beef](https://www.beeflang.org) | MIT | | [raylib-boo](https://github.com/Rabios/raylib-boo) | 3.7 | [Boo](http://boo-language.github.io) | MIT | -| [raybit](https://github.com/Alex-Velez/raybit) | 3.7 | [Brainfuck](https://en.wikipedia.org/wiki/Brainfuck) | MIT | +| [raybit](https://github.com/Alex-Velez/raybit) | **5.0** | [Brainfuck](https://en.wikipedia.org/wiki/Brainfuck) | MIT | | [Raylib-cs](https://github.com/ChrisDill/Raylib-cs) | **5.0** | [C#](https://en.wikipedia.org/wiki/C_Sharp_(programming_language)) | Zlib | | [Raylib-CsLo](https://github.com/NotNotTech/Raylib-CsLo) | 4.2 | [C#](https://en.wikipedia.org/wiki/C_Sharp_(programming_language)) | MPL-2.0 | | [Raylib-CSharp-Vinculum](https://github.com/ZeroElectric/Raylib-CSharp-Vinculum) | **5.0** | [C#](https://en.wikipedia.org/wiki/C_Sharp_(programming_language)) | MPL-2.0 | @@ -31,7 +31,7 @@ Some people ported raylib to other languages in the form of bindings or wrappers | [raylib-go](https://github.com/gen2brain/raylib-go) | **5.0** | [Go](https://golang.org) | Zlib | | [raylib-guile](https://github.com/petelliott/raylib-guile) | **auto** | [Guile](https://www.gnu.org/software/guile) | Zlib | | [gforth-raylib](https://github.com/ArnautDaniel/gforth-raylib) | 3.5 | [Gforth](https://gforth.org) | **???** | -| [h-raylib](https://github.com/Anut-py/h-raylib) | **5.1-dev** | [Haskell](https://haskell.org) | Apache-2.0 | +| [h-raylib](https://github.com/Anut-py/h-raylib) | **5.5-dev** | [Haskell](https://haskell.org) | Apache-2.0 | | [raylib-hx](https://github.com/foreignsasquatch/raylib-hx) | 4.2 | [Haxe](https://haxe.org) | Zlib | | [hb-raylib](https://github.com/MarcosLeonardoMendezGerencir/hb-raylib) | 3.5 | [Harbour](https://harbour.github.io) | MIT | | [jaylib](https://github.com/janet-lang/jaylib) | **5.0** | [Janet](https://janet-lang.org) | MIT | @@ -78,11 +78,12 @@ Some people ported raylib to other languages in the form of bindings or wrappers | [raylib-zig-bindings](https://github.com/L-Briand/raylib-zig-bindings) | **5.0** | [Zig](https://ziglang.org) | Zlib | | [hare-raylib](https://git.sr.ht/~evantj/hare-raylib) | **auto** | [Hare](https://harelang.org) | Zlib | | [raylib-sunder](https://github.com/ashn-dot-dev/raylib-sunder) | **auto** | [Sunder](https://github.com/ashn-dot-dev/sunder) | 0BSD | -| [rayed-bqn](https://github.com/Brian-ED/rayed-bqn) | **auto** | [BQN](https://mlochbaum.github.io/BQN) | MIT | +| [raylib-bqn](https://github.com/Brian-ED/raylib-bqn) | **5.0** | [BQN](https://mlochbaum.github.io/BQN) | MIT | | [rayjs](https://github.com/mode777/rayjs) | 4.6-dev | [QuickJS](https://bellard.org/quickjs) | MIT | | [raylib-raku](https://github.com/vushu/raylib-raku) | **auto** | [Raku](https://www.raku.org) | Artistic License 2.0 | -| [Raylib.lean](https://github.com/KislyjKisel/Raylib.lean) | 4.5 | [Lean4](https://lean-lang.org) | BSD-3-Clause | +| [Raylib.lean](https://github.com/KislyjKisel/Raylib.lean) | **5.5-dev** | [Lean4](https://lean-lang.org) | BSD-3-Clause | | [raylib-cobol](https://codeberg.org/glowiak/raylib-cobol) | **auto** | [COBOL](https://gnucobol.sourceforge.io) | Public domain | +| [raylib-apl](https://github.com/Brian-ED/raylib-apl) | **5.0** | [Dyalog APL](https://www.dyalog.com/) | MIT | ### Utility Wrapers @@ -91,6 +92,7 @@ These are utility wrappers for specific languages, they are not required to use | ---------------------------------------------------- | :------------: | :------------------------------------------: | :-----: | | [raylib-cpp](https://github.com/robloach/raylib-cpp) | **5.0** | [C++](https://en.wikipedia.org/wiki/C%2B%2B) | Zlib | | [claylib](https://github.com/defun-games/claylib) | 4.5 | [Common Lisp](https://common-lisp.net) | Zlib | +| [rayed-bqn](https://github.com/Brian-ED/rayed-bqn) | **5.0** | [BQN](https://mlochbaum.github.io/BQN) | MIT | ### Older or Unmaintained Language Bindings diff --git a/CHANGELOG b/CHANGELOG index 2141926ce..7ec73066f 100644 --- a/CHANGELOG +++ b/CHANGELOG @@ -3,6 +3,432 @@ changelog Current Release: raylib 5.0 (18 November 2023) +------------------------------------------------------------------------- +Release: raylib 5.5 (November 2024?) +------------------------------------------------------------------------- +KEY CHANGES: + - New rcore backend: RGFW + - New raylib project creator tool + - New platforms supported: Dreamcast, N64, PSP, PSVita, PS4 + - GPU Skinning (all platforms and GL versions) + - raymath C++ operators + +Detailed changes: + +WIP: Last update with commit from 21-Oct-2024 + +[rcore] ADDED: Working directory info at initialization by @Ray +[rcore] ADDED: `MakeDirectory()`, supporting recursive directory creation by @Ray +[rcore] ADDED: `ComputeSHA1()` (#4390) by @Anthony Carbajal +[rcore] ADDED: `ComputeCRC32()` and `ComputeMD5()` by @Ray +[rcore] ADDED: `GetKeyName()` (#4161) by @MrScautHD +[rcore] ADDED: `IsFileNameValid()` by @Ray +[rcore] ADDED: `GetViewRay()`, viewport independent raycast (#3709) by @Luís Almeida +[rcore] RENAMED: `GetMouseRay()` to `GetScreenToWorldRay()` (#3830) by @Ray +[rcore] RENAMED: `GetViewRay()` to `GetScreenToWorldRayEx()` (#3830) by @Ray +[rcore] REVIEWED: `GetApplicationDirectory()` for FreeBSD (#4318) by @base +[rcore] REVIEWED: `LoadDirectoryFilesEx()`/`ScanDirectoryFiles()`, support directory on filter (#4302) by @foxblock +[rcore] REVIEWED: Update comments on fullscreen and boderless window to describe what they do (#4280) by @Jeffery Myers +[rcore] REVIEWED: Correct processing of mouse wheel on Automation events #4263 by @Ray +[rcore] REVIEWED: Fix gamepad axis movement and its automation event recording (#4184) by @maxmutant +[rcore] REVIEWED: Do not set RL_TEXTURE_FILTER_LINEAR when high dpi flag is enabled (#4189) by @Dave Green +[rcore] REVIEWED: `GetScreenWidth()`/`GetScreenHeight()` (#4074) by @Anthony Carbajal +[rcore] REVIEWED: Initial window dimensions checks (#3950) by @Christian Haas +[rcore] REVIEWED: Set default init values for random #3954 by @Ray +[rcore] REVIEWED: Window positioning, avoid out-of-screen window-bar by @Ray +[rcore] REVIEWED: Fix framerate recording for .gif (#3894) by @Rob Loach +[rcore] REVIEWED: Screen space related functions consistency (#3830) by @aiafrasinei +[rcore] REVIEWED: `GetFileNameWithoutExt()` (#3771) by @oblerion +[rcore] REVIEWED: `GetWindowScaleDPI()`, simplified (#3701) by @Karl Zylinski +[rcore] REVIEWED: `UnloadAutomationEventList()` (#3658) by @Antonis Geralis +[rcore] REVIEWED: Flip VR screens (#3633) by @Matthew Oros +[rcore] REVIEWED: Remove unused vScreenCenter (#3632) by @Matthew Oros +[rcore] REVIEWED: `LoadRandomSequence()`, issue in sequence generation #3612 by @Ray +[rcore] REVIEWED: `IsMouseButtonUp()` (#3609) by @Kenneth M +[rcore] REVIEWED: Fix typos in src/platforms/rcore_*.c (#3581) by @RadsammyT +[rcore] REVIEWED: `ExportDataAsCode()`, change sanitization check (#3837) by @Laurentino Luna +[rcore] REVIEWED: `ExportDataAsCode()`, add little sanitization to indentifier names (#3832) by @4rk +[rcore][rlgl] REVIEWED: Fix scale issues when ending a view mode (#3746) by @Jeffery Myers +[rcore][GLFW] REVIEWED: Keep CORE.Window.position properly in sync with glfw window position (#4190) by @Dave Green +[rcore][GLFW] REVIEWED: Set AUTO_ICONIFY flag to false per default (#4188) by @Dave Green +[rcore][GLFW] REVIEWED: `InitPlatform()`, add workaround for NetBSD (#4139) by @NishiOwO +[rcore][GLFW] REVIEWED: Fix window not initializing on primary monitor (#3923) by @Rafael Bordoni +[rcore][GLFW] REVIEWED: Set relative mouse mode when the cursor is disabled (#3874) by @Jeffery Myers +[rcore][GLFW] REVIEWED: Remove GLFW mouse passthrough hack and increase GLFW version in CMake (#3852) by @Alexandre Almeida +[rcore][GLFW] REVIEWED: Updated GLFW to 3.4 (#3827) by @Alexandre Almeida +[rcore][GLFW] REVIEWED: Feature test macros before include (#3737) by @John +[rcore][Web] ADDED: `SetWindowOpacity()` implementation (#4403) by @Asdqwe +[rcore][Web] ADDED: `MaximizeWindow()` and `RestoreWindow()` implementations (#4397) by @Asdqwe +[rcore][Web] ADDED: `ToggleFullscreen()` implementation (#3634) by @ubkp +[rcore][Web] ADDED: `GetWindowPosition()` implementation (#3637) by @ubkp +[rcore][Web] ADDED: `ToggleBorderlessWindowed()` implementation (#3622) by @ubkp +[rcore][Web] ADDED: `GetMonitorWidth()` and `GetMonitorHeight()` implementations (#3636) by @ubkp +[rcore][Web] REVIEWED: Update `SetWindowState()` and `ClearWindowState()` to handle `FLAG_WINDOW_MAXIMIZED` (#4402) by @Asdqwe +[rcore][Web] REVIEWED: `WindowSizeCallback()`, do not try to handle DPI, already managed by GLFW (#4143) by @SuperUserNameMan +[rcore][Web] REVIEWED: Relative mouse mode issues (#3940) by @Cemal Gönültaş +[rcore][Web] REVIEWED: `ShowCursor()`, `HideCursor()` and `SetMouseCursor()` (#3647) by @ubkp +[rcore][Web] REVIEWED: Fix CORE.Input.Mouse.cursorHidden with callbacks (#3644) by @ubkp +[rcore][Web] REVIEWED: Fix `IsMouseButtonUp()` (#3611) by @ubkp +[rcore][Web] REVIEWED: HighDPI support #3372 by @Ray +[rcore][SDL] ADDED: `IsCursorOnScreen()` (#3862) by @Peter0x44 +[rcore][SDL] ADDED: Gamepad rumble/vibration support (#3819) by @GideonSerf +[rcore][SDL] REVIEWED: Gamepad support (#3776) by @A +[rcore][SDL] REVIEWED: `GetWorkingDirectory()`, return correct path (#4392) by @Asdqwe +[rcore][SDL] REVIEWED: `GetClipboardText()`, fix memory leak (#4354) by @Asdqwe +[rcore][SDL] REVIEWED: Change SDL_Joystick to SDL_GameController (#4129) by @Frank Kartheuser +[rcore][SDL] REVIEWED: Update storage base path, use provided SDL base path by @Ray +[rcore][SDL] REVIEWED: Call SDL_GL_SetSwapInterval() after GL context creation (#3997) by @JupiterRider +[rcore][SDL] REVIEWED: `GetKeyPressed()` (#3869) by @Arthur +[rcore][SDL] REVIEWED: Fix SDL multitouch tracking (#3810) by @mooff +[rcore][SDL] REVIEWED: Fix `SUPPORT_WINMM_HIGHRES_TIMER` (#3679) by @ubkp +[rcore][SDL] REVIEWED: SDL text input to Unicode codepoints #3650 by @Ray +[rcore][SDL] REVIEWED: `IsMouseButtonUp()` and add touch events (#3610) by @ubkp +[rcore][SDL] REVIEWED: Fix real touch gestures (#3614) by @ubkp +[rcore][SDL] REVIEWED: `IsKeyPressedRepeat()` (#3605) by @ubkp +[rcore][SDL] REVIEWED: `GetKeyPressed()` and `GetCharPressed()` for SDL (#3604) by @ubkp +[rcore][SDL] REVIEWED: `SetMousePosition()` for SDL (#3580) by @ubkp +[rcore][SDL] REVIEWED: `SetWindowIcon()` for SDL (#3578) by @ubkp +[rcore][SDL][rlgl] REVIEWED: Fix for running gles2 with SDL on desktop (#3542) by @_Tradam +[rcore][Android] REVIEWED: Issue with isGpuReady flag (#4340) by @Menno van der Graaf +[rcore][Android] REVIEWED: Allow main() to return it its caller on configuration changes (#4288) by @Hesham Abourgheba +[rcore][Android] REVIEWED: Replace deprecated Android function ALooper_pollAll with ALooper_pollOnce (#4275) by @Menno van der Graaf +[rcore][Android] REVIEWED: `PollInputEvents()`, register previous gamepad events (#3910) by @Aria +[rcore][Android] REVIEWED: Fix Android keycode translation and duplicate key constants (#3733) by @Alexandre Almeida +[rcore][DRM] ADDED: uConsole keys mapping (#4297) by @carverdamien +[rcore][DRM] ADDED: `GetMonitorWidth/Height()` (#3956) by @gabriel-marques +[rcore][DRM] REVIEWED: `IsMouseButtonUp()` (#3611) by @ubkp +[rcore][DRM] REVIEWED: Optimize gesture handling (#3616) by @ubkp +[rcore][DRM] REVIEWED: `IsKeyPressedRepeat()` for PLATFORM_DRM direct input (#3583) by @ubkp +[rcore][DRM] REVIEWED: Fix gamepad buttons not working in drm backend (#3888) by @MrMugame +[rcore][DRM] REVIEWED: DRM backend to only use one api to allow for more devices (#3879) by @MrMugame +[rcore][DRM] REVIEWED: Avoid separate thread when polling for gamepad events (#3641) by @Cinghy Creations +[rcore][DRM] REVIEWED: Connector status reported as UNKNOWN but should be considered as CONNECTED (#4305) by @Michał Jaskólski +[rcore][RGFW] ADDED: RGFW, new rcore backend platform (#3941) by @Colleague Riley +[rcore][RGFW] REVIEWED: RGFW 1.0 (#4144) by @Colleague Riley +[rcore][RGFW] REVIEWED: Fix errors when compiling with mingw (#4282) by @Colleague Riley +[rcore][RGFW] REVIEWED: Replace long switch with a lookup table (#4108) by @Colleague Riley +[rlgl] ADDED: More uniform data type options #4137 by @Ray +[rlgl] ADDED: Vertex normals for RLGL immediate drawing mode (#3866) by @bohonghuang +[rlgl] ADDED: `rlCullDistance*()` variables and getters (#3912) by @KotzaBoss +[rlgl] ADDED: `rlSetClipPlanes()` function (#3912) by @KotzaBoss +[rlgl] ADDED: `isGpuReady` flag, allow font loading with no GPU acceleration by @Ray -WARNING- +[rlgl] REVIEWED: Changed RLGL_VERSION from 4.5 to 5.0 (#3914) by @Mute +[rlgl] REVIEWED: Shader load failing returns 0, instead of fallback by @Ray -WARNING- +[rlgl] REVIEWED: Standalone mode default flags (#4334) by @Asdqwe +[rlgl] REVIEWED: Fix hardcoded index values in vboID array (#4312) by @Jett +[rlgl] REVIEWED: GLint64 did not exist before OpenGL 3.2 (#4284) by @Tchan0 +[rlgl] REVIEWED: Extra warnings in case OpenGL 4.3 is not enabled (#4202) by @Maxim Knyazkin +[rlgl] REVIEWED: Using GLint64 for glGetBufferParameteri64v() (#4197) by @Randy Palamar +[rlgl] REVIEWED: Replace `glGetInteger64v()` with `glGetBufferParameteri64v()` (#4154) by @Kai Kitagawa-Jones +[rlgl] REVIEWED: `rlMultMatrixf()`, fix matrix multiplication order (#3935) by @bohonghuang +[rlgl] REVIEWED: `rlSetVertexAttribute()`, define last parameter as offset #3800 by @Ray +[rlgl] REVIEWED: `rlDisableVertexAttribute()`, remove redundat calls for SHADER_LOC_VERTEX_COLOR (#3871) by @Kacper Zybała +[rlgl] REVIEWED: `rlLoadFramebuffer()`, parameters not required by @Ray +[rlgl] REVIEWED: `rlSetUniformSampler()` (#3759) by @veins1 +[rlgl] REVIEWED: Renamed near/far variables (#4039) by @jgabaut +[rlgl] REVIEWED: Expose OpenGL symbols (#3588) by @Peter0x44 +[rlgl] REVIEWED: Fix OpenGL 1.1 build issues (#3876) by @Ray +[rlgl] REVIEWED: Fixed compilation for OpenGL ES (#4243) by @Maxim Knyazkin +[rlgl] REVIEWED: rlgl function description and comments by @Ray +[rlgl] REVIEWED: Expose glad functions when building raylib as a shared lib (#3572) by @Peter0x44 +[rlgl] REVIEWED: Fix version info in rlgl.h (#3558) by @Steven Schveighoffer +[rcamera] REVIEWED: Make camera movement independant of framerate (#4247) by @hanaxars -WARNING- +[rcamera] REVIEWED: Updated camera speeds with GetFrameTime() (#4362) by @Anthony Carbajal +[rcamera] REVIEWED: `UpdateCamera()`, added CAMERA_CUSTOM check (#3938) by @Tomas Fabrizio Orsi +[rcamera] REVIEWED: Support mouse/keyboard and gamepad coexistence for input (#3579) by @ubkp +[rcamera] REVIEWED: Cleaned away unused macros(#3762) by @Brian E +[rcamera] REVIEWED: Fix for free camera mode (#3603) by @lesleyrs +[rcamera] REVIEWED: `GetCameraRight()` (#3784) by @Danil +[raymath] ADDED: C++ operator overloads for common math function (#4385) by @Jeffery Myers +[raymath] ADDED: Vector4 math functions and Vector2 variants of some Vector3 functions (#3828) by @Bowserinator +[raymath] REVIEWED: Fix MSVC warnings/errors in C++ (#4125) by @Jeffery Myers +[raymath] REVIEWED: Add extern "C" to raymath header for C++ (#3978) by @Jeffery Myers +[raymath] REVIEWED: `QuaternionFromAxisAngle()`, remove redundant axis length calculation (#3900) by @jtainer +[raymath] REVIEWED: `Vector3Perpendicular()`, avoid implicit conversion from float to double (#3799) by @João Foscarini +[raymath] REVIEWED: Small code refactor (#3753) by @Idir Carlos Aliane +[rshapes] ADDED: `CheckCollisionCircleLine()` (#4018) by @kai-z99 +[rshapes] REVIEWED: Multisegment Bezier splines (#3744) by @Santiago Pelufo +[rshapes] REVIEWED: Expose shapes drawing texture and rectangle (#3677) by @Jeffery Myers +[rshapes] REVIEWED: `DrawLine()` #4075 by @Ray +[rshapes] REVIEWED: `DrawPixel()` drawing by @Ray +[rshapes] REVIEWED: `DrawLine()` to avoid pixel rounding issues #3931 by @Ray +[rshapes] REVIEWED: `DrawRectangleLinesEx()`, make sure accounts for square tiles (#4382) by @Jojaby +[rshapes] REVIEWED: `DrawRectangleLines()`, pixel offset when scaling (#3884) by @Ray +[rshapes] REVIEWED: `Draw*Gradient()` color parameter names (#4270) by @Paperdomo101 +[rshapes] REVIEWED: `DrawGrid()`, remove duplicate color calls (#4148) by @Jeffery Myers +[rshapes] REVIEWED: `DrawSplineLinear()` to `SUPPORT_SPLINE_MITERS` by @Ray +[rshapes] REVIEWED: `DrawSplineLinear()`, implement miters (#3585) by @Toctave +[rshapes] REVIEWED: `CheckCollisionPointRec()` by @Ray +[rshapes] REVIEWED: `CheckCollisionPointCircle()`, new implementation (#4135) by @kai-z99 +[rshapes] REVIEWED: `CheckCollisionCircles()`, optimized (#4065) by @kai-z99 +[rshapes] REVIEWED: `CheckCollisionPointPoly()` (#3750) by @Antonio Raúl +[rshapes] REVIEWED: `CheckCollisionCircleRec()` (#3584) by @ubkp +[rshapes] REVIEWED: Add more detail to function comment (#4344) by @Jeffery Myers +[rshapes] REVIEWED: Functions that draw point arrays take them as const (#4051) by @Jeffery Myers +[rtextures] ADDED: `ColorIsEqual()` by @Ray +[rtextures] ADDED: `ColorLerp()`, to mix 2 colors together (#4310) by @SusgUY446 +[rtextures] ADDED: `LoadImageAnimFromMemory()` (#3681) by @IoIxD +[rtextures] ADDED: `ImageKernelConvolution()` (#3528) by @Karim +[rtextures] ADDED: `ImageFromChannel()` (#4105) by @Bruno Cabral +[rtextures] ADDED: `ImageDrawLineEx()` (#4097) by @Le Juez Victor +[rtextures] ADDED: `ImageDrawTriangle()` (#4094) by @Le Juez Victor +[rtextures] REMOVED: SVG files loading and drawing, moving it to raylib-extras by @Ray -WARNING- +[rtextures] REVIEWED: `LoadImage()`, added support for 3-channel QOI images (#4384) by @R-YaTian +[rtextures] REVIEWED: `LoadImageRaw()` #3926 by @Ray +[rtextures] REVIEWED: `LoadImageColors()`, advance k in loop (#4120) by @Bruno Cabral +[rtextures] REVIEWED: `LoadTextureCubemap()`, added `mipmaps` #3665 by @Ray +[rtextures] REVIEWED: `LoadTextureCubemap(), assign format to cubemap (#3823) by @Gary M +[rtextures] REVIEWED: `LoadImageFromScreen()`, fix scaling (#3881) by @proberge-dev +[rtextures] REVIEWED: `LoadImageFromMemory()`, warnings on invalid image data (#4179) by @Jutastre +[rtextures] REVIEWED: `LoadImageAnimFromMemory()`, added security checks (#3924) by @Ray +[rtextures] REVIEWED: `ImageColorTint()` and `ColorTint()`, optimized (#4015) by @Le Juez Victor +[rtextures] REVIEWED: `ImageKernelConvolution()`, formating and warnings by @Ray +[rtextures] REVIEWED: `ImageDrawRectangleRec`, fix bounds check (#3732) by @Blockguy24 +[rtextures] REVIEWED: `ImageResizeCanvas()`, implemented fill color (#3720) by @Lieven Petersen +[rtextures] REVIEWED: `ImageDrawRectangleRec()` (#3721) by @Le Juez Victor +[rtextures] REVIEWED: `ImageDraw()`, don't try to blend images without alpha (#4395) by @Nikolas +[rtextures] REVIEWED: `GenImagePerlinNoise()` being stretched (#4276) by @Bugsia +[rtextures] REVIEWED: `DrawTexturePro()` to avoid negative dest rec #4316 by @Ray +[rtextures] REVIEWED: `ColorToInt()`, fix undefined behaviour (#3996) by @OetkenPurveyorOfCode +[rtextures] REVIEWED: Simplified for loop for some image manipulation functions (#3712) by @Alice Nyaa +[rtext] ADDED: BDF fonts support (#3735) by @Stanley Fuller -WARNING- +[rtext] ADDED: `TextToCamel()` (#4033) by @IoIxD +[rtext] ADDED: `TextToSnake()` (#4033) by @IoIxD +[rtext] ADDED: `TextToFloat()` (#3627) by @Benjamin Schmid Ties +[rtext] REDESIGNED: `SetTextLineSpacing()` by @Ray -WARNING- +[rtext] REVIEWED: `LoadFontDataBDF()` name and formating by @Ray +[rtext] REVIEWED: `LoadFontDefault()`, initialize glyphs and recs to zero #4319 by @Ray +[rtext] REVIEWED: `LoadFontEx()`, avoid default font fallback (#4077) by @Peter0x44 -WARNING- +[rtext] REVIEWED: `LoadBMFont()`, extended functionality (#3536) by @Dongkun Lee +[rtext] REVIEWED: `LoadBMFont()`, issue on not glyph data initialized by @Ray +[rtext] REVIEWED: `LoadFontFromMemory()`, use strncpy() to fix buffer overflow (#3795) by @Mingjie Shen +[rtext] REVIEWED: `LoadCodepoints()` returning a freed ptr when count is 0 (#4089) by @Alice Nyaa +[rtext] REVIEWED: `LoadFontData()` avoid fallback glyphs by @Ray -WARNING- +[rtext] REVIEWED: `LoadFontData()`, load image only if glyph has been found in font by @Ray +[rtext] REVIEWED: `ExportFontAsCode()`, fix C++ compiler errors (#4013) by @DarkAssassin23 +[rtext] REVIEWED: `MeasureTextEx()` height calculation (#3770) by @Marrony Neris +[rtext] REVIEWED: `CodepointToUTF8()`, clean static buffer #4379 by @Ray +[rtext] REVIEWED: `TextToFloat()`, always multiply by sign (#4273) by @listeria +[rtext] REVIEWED: `TextReplace()` const correctness (#3678) by @maverikou +[rtext] REVIEWED: `TextToFloat()`, coding style (#3627) by @Benjamin Schmid Ties +[rtext] REVIEWED: Some comments to align to style (#3756) by @Idir Carlos Aliane +[rtext] REVIEWED: Adjust font atlas area calculation so padding area is not underestimated at small font sizes (#3719) by @Tim Romero +[rmodels] ADDED: GPU skinning support for models animations (#4321) by @Daniel Holden -WARNING- +[rmodels] ADDED: Support 16-bit unsigned short vec4 format for gltf joint loading (#3821) by @Gary M +[rmodels] ADDED: Support animation names for the m3d model format (#3714) by @kolunmi +[rmodels] ADDED: `DrawModelPoints()`, more performant point cloud rendering (#4203) by @Reese Gallagher +[rmodels] ADDED: `ExportMeshAsCode()` by @Ray +[rmodels] REVIEWED: Multiple updates to gltf loading, improved macro (#4373) by @Harald Scheirich +[rmodels] REVIEWED: `LoadOBJ()`, correctly split obj meshes by material (#4285) by @Jeffery Myers +[rmodels] REVIEWED: `LoadOBJ()`, add warning when loading an OBJ with multiple materials (#4271) by @Jeffery Myers +[rmodels] REVIEWED: `LoadIQM()`, set model.meshMaterial[] (#4092) by @SuperUserNameMan +[rmodels] REVIEWED: `LoadIQM()`, attempt to load texture from IQM at loadtime (#4029) by @Jett +[rmodels] REVIEWED: `LoadM3D(), fix vertex colors for m3d files (#3859) by @Jeffery Myers +[rmodels] REVIEWED: `LoadGLTF()`, supporting additional vertex data formats (#3546) by @MrScautHD +[rmodels] REVIEWED: `LoadGLTF()`, correctly handle the node hierarchy in a glTF file (#4037) by @Paul Melis +[rmodels] REVIEWED: `LoadGLTF()`, replaced SQUAD quat interpolation with cubic hermite (gltf 2.0 specs) (#3920) by @Benji +[rmodels] REVIEWED: `LoadGLTF()`, support 2nd texture coordinates loading by @Ray +[rmodels] REVIEWED: `LoadGLTF()`, support additional vertex attributes data formats #3890 by @Ray +[rmodels] REVIEWED: `LoadGLTF()`, set cgltf callbacks to use `LoadFileData()` and `UnloadFileData()` (#3652) by @kolunmi +[rmodels] REVIEWED: `LoadGLTF()`, JOINTS loading #3836 by @Ray +[rmodels] REVIEWED: `LoadImageFromCgltfImage()`, fix base64 padding support (#4112) by @SuperUserNameMan +[rmodels] REVIEWED: `LoadModelAnimationsIQM()`, fix corrupted animation names (#4026) by @Jett +[rmodels] REVIEWED: `LoadModelAnimationsGLTF()`, load animations with 1 frame (#3804) by @Nikita Blizniuk +[rmodels] REVIEWED: `LoadModelAnimationsGLTF()`, added missing interpolation types (#3919) by @Benji +[rmodels] REVIEWED: `LoadModelAnimationsGLTF()` (#4107) by @VitoTringolo +[rmodels] REVIEWED: `LoadBoneInfoGLTF()`, add check for animation name being NULL (#4053) by @VitoTringolo +[rmodels] REVIEWED: `GenMeshTangents()`, read uninitialized values, fix bounding case (#4066) by @kai-z99 +[rmodels] REVIEWED: `GenMeshTangents()`, fixed out of bounds error (#3990) by @Salvador Galindo +[rmodels] REVIEWED: `DrawCylinder()`, fix drawing due to imprecise angle (#4034) by @Paul Melis +[rmodels] REVIEWED: `DrawMesh()`, send full matModel to shader in DrawMesh (#4005) (#4022) by @David Holland +[rmodels] REVIEWED: `DrawMesh()`, fix material specular map retrieval (#3758) by @Victor Gallet +[rmodels] REVIEWED: `DrawModelEx()`, simplified multiplication of colors (#4002) by @Le Juez Victor +[rmodels] REVIEWED: `DrawBillboardPro()`, to be consistend with `DrawTexturePro()` (#4132) by @bohonghuang +[rmodels] REVIEWED: `DrawSphereEx()` optimization (#4106) by @smalltimewizard +[raudio] REVIEWED: `LoadMusicStreamFromMemory()`, support 24-bit FLACs (#4279) by @konstruktor227 +[raudio] REVIEWED: `LoadWaveSamples()`, fix mapping of wave data (#4062) by @listeria +[raudio] REVIEWED: `LoadMusicStream()`, remove drwav_uninit() (#3986) by @FishingHacks +[raudio] REVIEWED: `LoadMusicStream()` qoa and wav loading (#3966) by @veins1 +[raudio] REVIEWED: `ExportWaveAsCode()`, segfault (#3769) by @IoIxD +[raudio] REVIEWED: `WaveCrop()`, fix issues and use frames instead of samples (#3994) by @listeria +[raudio] REVIEWED: Crash from multithreading issues (#3907) by @Christian Haas +[raudio] REVIEWED: Reset music.ctxType if loading wasn't succesful (#3917) by @veins1 +[raudio] REVIEWED: Added missing functions in "standalone" mode (#3760) by @Alessandro Nikolaev +[raudio] REVIEWED: Disable unused miniaudio features (#3544) by @Alexandre Almeida +[raudio] REVIEWED: Fix crash when switching playback device at runtime (#4102) by @jkaup +[raudio] REVIEWED: Support 24 bits samples for FLAC format (#4058) by @Alexey Kutepov +[examples] ADDED: `core_random_sequence` (#3846) by @Dalton Overmyer +[examples] ADDED: `models_bone_socket` (#3833) by @iP +[examples] ADDED: `shaders_vertex_displacement` (#4186) by @Alex ZH +[examples] ADDED: `shaders_shadowmap` (#3653) by @TheManTheMythTheGameDev +[examples] REVIEWED: `core_2d_camera_platformer` by @Ray +[examples] REVIEWED: `core_2d_camera_mouse_zoom`, use logarithmic scaling for a 2d zoom functionality (#3977) by @Mike Will +[examples] REVIEWED: `core_input_gamepad_info`, all buttons displayed within the window (#4241) by @Asdqwe +[examples] REVIEWED: `core_input_gamepad_info`, show ps3 controller (#4040) by @Konrad Gutvik Grande +[examples] REVIEWED: `shapes_bouncing_ball` (#4226) by @Anthony Carbajal +[examples] REVIEWED: `shapes_following_eyes` (#3710) by @Hongyu Ouyang +[examples] REVIEWED: `shapes_draw_rectangle_rounded` by @Ray +[examples] REVIEWED: `shapes_draw_ring`, fix other examples (#4211) by @kai-z99 +[examples] REVIEWED: `shapes_lines_bezier` by @Ray +[examples] REVIEWED: `textures_image_kernel` #3556 by @Ray +[examples] REVIEWED: `text_input_box` (#4229) by @Anthony Carbajal +[examples] REVIEWED: `text_writing_anim` (#4230) by @Anthony Carbajal +[examples] REVIEWED: `models_billboard` by @Ray +[examples] REVIEWED: `models_cubicmap` by @Ray +[examples] REVIEWED: `models_point_rendering` by @Ray +[examples] REVIEWED: `models_box_collisions` (#4224) by @Anthony Carbajal +[examples] REVIEWED: `models_skybox`, do not use HDR by default (#4115) by @Jeffery Myers +[examples] REVIEWED: `shaders_basic_pbr` (#4225) by @Anthony Carbajal +[examples] REVIEWED: `shaders_palette_switch` by @Ray +[examples] REVIEWED: `shaders_hybrid_render` (#3908) by @Yousif +[examples] REVIEWED: `shaders_lighting_instancing`, fix vertex shader (#4056) by @Karl Zylinski +[examples] REVIEWED: `shaders_raymarching`, add `raymarching.fs` for GLSL120 (#4183) by @CDM15y +[examples] REVIEWED: `shaders_shadowmap`, fix shaders for GLSL 1.20 (#4167) by @CDM15y +[examples] REVIEWED: `shaders_deferred_render` (#3655) by @Jett +[examples] REVIEWED: `shaders_basic_pbr` (#3621) by @devdad +[examples] REVIEWED: `shaders_basic_pbr`, remove dependencies (#3649) by @TheManTheMythTheGameDev +[examples] REVIEWED: `shaders_basic_pbr`, added more comments by @Ray +[examples] REVIEWED: `audio_stream_effects` (#3618) by @lipx +[examples] REVIEWED: `audio_raw_stream` (#3624) by @riadbettole +[examples] REVIEWED: `audio_mixed_processor` (#4214) by @Anthony Carbajal +[examples] REVIEWED: `raylib_opengl_interop`, fix building on PLATFORM_DESKTOP_SDL (#3826) by @Peter0x44 +[examples] REVIEWED: Update examples missing UnloadTexture() calls (#4234) by @Anthony Carbajal +[examples] REVIEWED: Added GLSL 100 and 120 shaders to lightmap example (#3543) by @Jussi Viitala +[examples] REVIEWED: Set FPS to always 60 in all exampels (#4235) by @Anthony Carbajal +[build] REVIEWED: Makefile by @Ray +[build] REVIEWED: Makefile, fix wrong flag #3593 by @Ray +[build] REVIEWED: Makefile, disable wayland by default (#4369) by @Anthony Carbajal +[build] REVIEWED: Makefile, VSCode, fix to support multiple .c files (#4391) by @Alan Arrecis +[build] REVIEWED: Makefile, fix -Wstringop-truncation warning (#4096) by @Peter0x44 +[build] REVIEWED: Makefile, fix issues for RGFW on Linux/macOS (#3969) by @Colleague Riley +[build] REVIEWED: Makefile, update RAYLIB_VERSION (#3901) by @Belllg +[build] REVIEWED: Makefile (#4054) by @Lázaro Albuquerque +[build] REVIEWED: Makefile examples, align /usr/local with /src Makefile (#4286) by @Tchan0 +[build] REVIEWED: Makefile examples, added `textures_image_kernel` (#3555) by @Sergey Zapunidi +[build] REVIEWED: Makefile examples (#4209) by @Anthony Carbajal +[build] REVIEWED: build.zig, fix various issues around `-Dconfig` (#4398) by @Sage Hane +[build] REVIEWED: build.zig, fix type mismatch (#4383) by @yuval_dev +[build] REVIEWED: build.zig, minor fixes (#4381) by @Sage Hane +[build] REVIEWED: build.zig, fix @src logic and a few things (#4380) by @Sage Hane +[build] REVIEWED: build.zig, improve logic (#4375) by @Sage Hane +[build] REVIEWED: build.zig, issues (#4374) by @William Culver +[build] REVIEWED: build.zig, issues (#4366) by @Visen +[build] REVIEWED: build.zig, support desktop backend change (#4358) by @Nikolas +[build] REVIEWED: build.zig, use zig fmt (#4242) by @freakmangd +[build] REVIEWED: build.zig, check if wayland-scanner is installed (#4217) by @lnc3l0t +[build] REVIEWED: build.zig, override config.h definitions (#4193) by @lnc3l0t +[build] REVIEWED: build.zig, support GLFW platform detection (#4150) by @InventorXtreme +[build] REVIEWED: build.zig, make emscripten build compatible with Zig 0.13.0 (#4121) by @Mike Will +[build] REVIEWED: build.zig, pass the real build.zig file (#4113) by @InKryption +[build] REVIEWED: build.zig, leverage `dependencyFromBuildZig` (#4109) by @InKryption +[build] REVIEWED: build.zig, run examples from their directories (#4063) by @Mike Will +[build] REVIEWED: build.zig, fix raygui build when using addRaygui externally (#4027) by @Viktor Pocedulić +[build] REVIEWED: build.zig, fix emscripten build (#4012) by @Dylan +[build] REVIEWED: build.zig, update to zig 0.12.0dev while keeping 0.11.0 compatibility (#3715) by @freakmangd +[build] REVIEWED: build.zig, drop support for 0.11.0 and use more idiomatic build script code (#3927) by @freakmangd +[build] REVIEWED: build.zig, sdd shared library build option and update to zig 0.12.0-dev.2139 (#3727) by @Andrew Lee +[build] REVIEWED: build.zig, add `opengl_version` option (#3979) by @Alexei Mozaidze +[build] REVIEWED: build.zig, fix local dependency break (#3913) by @freakmangd +[build] REVIEWED: build.zig, fix breaking builds for Zig v0.11.0 (#3896) by @iarkn +[build] REVIEWED: build.zig, update to latest version and simplify (#3905) by @freakmangd +[build] REVIEWED: build.zig, remove all uses of deps/mingw (#3805) by @Peter0x44 +[build] REVIEWED: build.zig, fixed illegal instruction crash (#3682) by @WisonYe +[build] REVIEWED: build.zig, fix broken build on #3863 (#3891) by @Nikolas Mauropoulos +[build] REVIEWED: CMake, update to raylib 5.0 (#3623) by @Peter0x44 +[build] REVIEWED: CMake, added PLATFORM option for Desktop SDL (#3809) by @mooff +[build] REVIEWED: CMake, fix GRAPHICS_* check (#4359) by @Kacper Zybała +[build] REVIEWED: CMake, examples projects (#4332) by @Ridge3Dproductions +[build] REVIEWED: CMake, fix warnings in projects/CMake/CMakeLists.txt (#4278) by @Peter0x44 +[build] REVIEWED: CMake, delete BuildOptions.cmake (#4277) by @Peter0x44 +[build] REVIEWED: CMake, update version to 5.0 so libraries are correctly versioned (#3615) by @David Williams +[build] REVIEWED: CMake, improved linkage flags to save 28KB on the final bundle (#4177) by @Lázaro Albuquerque +[build] REVIEWED: CMake, support OpenGL ES3 in `LibraryConfigurations.cmake` (#4079) by @manuel5975p +[build] REVIEWED: CMake, `config.h` fully available to users (#4044) by @Lázaro Albuquerque +[build] REVIEWED: CMake, pass -sFULL_ES3 instead of -sFULL_ES3=1 (#4090) by @manuel5975p +[build] REVIEWED: CMake, SDL build link the glfw dependency (#3860) by @Rob Loach +[build] REVIEWED: CMake, infer CMAKE_MODULE_PATH in super-build (#4042) by @fruzitent +[build] REVIEWED: CMake, remove USE_WAYLAND option (#3851) by @Alexandre Almeida +[build] REVIEWED: CMake, disable SDL rlgl_standalone example (#3861) by @Rob Loach +[build] REVIEWED: CMake, bump version required to avoid deprecated #3639 by @Ray +[build] REVIEWED: CMake, fix examples linking -DPLATFORM=SDL (#3825) by @Peter0x44 +[build] REVIEWED: VS2022 project by @Ray +[build] REVIEWED: VS2022, fix build warnings (#4095) by @Jeffery Myers +[build] REVIEWED: Fix fix-build-paths (#3849) by @Caleb Barger +[build] REVIEWED: Fix build paths (#3835) by @Steve Biedermann +[build] REVIEWED: Fix VSCode sample project for macOS (#3666) by @Tim Romero +[build] REVIEWED: Fix some warnings on web builds and remove some redundant flags (#4069) by @Lázaro Albuquerque +[build] REVIEWED: Fix examples not building with gestures system disabled (#4020) by @Sprix +[build] REVIEWED: Fix GLFW runtime platform detection (#3863) by @Alexandre Almeida +[build] REVIEWED: Fix DRM cross-compile without sysroot (#3839) by @Christian W. Zuckschwerdt +[build] REVIEWED: Fix cmake-built libraylib.a to properly include GLFW's object files (#3598) by @Peter0x44 +[build] REVIEWED: Hide unneeded internal symbols when building raylib as an so or dylib (#3573) by @Peter0x44 +[build] REVIEWED: Corrected the path of android ndk toolchains for OSX platforms (#3574) by @Emmanuel Méra +[build][CI] ADDED: Automatic update for raylib_api.* (#3692) by @seiren +[build][CI] REVIEWED: Update workflows to use latest actions/upload-artifact by @Ray +[build][CI] REVIEWED: CodeQL minor tweaks to avoid some warnings by @Ray +[build][CI] REVIEWED: Update linux_examples.yml by @Ray +[build][CI] REVIEWED: Update linux.yml by @Ray +[build][CI] REVIEWED: Update webassembly.yml by @Ray +[build][CI] REVIEWED: Update cmake.yml by @Ray +[build][CI] REVIEWED: Update codeql.yml, exclude src/external files by @Ray +[bindings] ADDED: raylib-APL (#4253) by @Brian E +[bindings] ADDED: raylib-bqn, moved rayed-bqn (#4331) by @Brian E +[bindings] ADDED: brainfuck binding (#4169) by @_Tradam +[bindings] ADDED: raylib-zig-bindings (#4004) by @Lionel Briand +[bindings] ADDED: Raylib-CSharp wrapper (#3963) by @MrScautHD +[bindings] ADDED: COBOL binding (#3661) by @glowiak +[bindings] ADDED: raylib-beef binding (#3640) by @Braedon Lewis +[bindings] ADDED: Raylib-CSharp-Vinculum (#3571) by @Danil +[bindings] REVIEWED: Remove broken-link bindings #3899 by @Ray +[bindings] REVIEWED: Updated some versions on BINDINGS.md by @Ray +[bindings] REVIEWED: Removed umaintained repos (#3999) by @Antonis Geralis +[bindings] REDESIGNED: Add binding link to name, instead of separate column (#3995) by @Carmine Pietroluongo +[bindings] UPDATED: h-raylib (#4378) by @Anand Swaroop +[bindings] UPDATED: Raylib.lean, to master version (#4337) by @Daniil Kisel +[bindings] UPDATED: raybit, to latest master (#4311) by @Alex +[bindings] UPDATED: dray binding (#4163) by @red thing +[bindings] UPDATED: Julia (#4068) by @ShalokShalom +[bindings] UPDATED: nim to latest master (#3999) by @Antonis Geralis +[bindings] UPDATED: raylib-rs (#3991) by @IoIxD +[bindings] UPDATED: raylib-zig version (#3902) by @Nikolas +[bindings] UPDATED: raylib-odin (#3868) by @joyousblunder +[bindings] UPDATED: Raylib VAPI (#3829) by @Alex Macafee +[bindings] UPDATED: Raylib-cs (#3774) by @Brandon Baker +[bindings] UPDATED: h-raylib (#3739) by @Anand Swaroop +[bindings] UPDATED: OCaml bindings version (#3730) by @Tobias Mock +[bindings] UPDATED: Raylib.c3 (#3689) by @Kenta +[bindings] UPDATED: ray-cyber to 5.0 (#3654) by @fubark +[bindings] UPDATED: raylib-freebasic binding (#3591) by @WIITD +[bindings] UPDATED: SmallBASIC (#3562) by @Chris Warren-Smith +[bindings] UPDATED: Python raylib-py v5.0.0beta1 (#3557) by @Jorge A. Gomes +[bindings] UPDATED: raylib-d binding (#3561) by @Steven Schveighoffer +[bindings] UPDATED: Janet (#3553) by @Dmitry Matveyev +[bindings] UPDATED: Raylib.nelua (#3552) by @Auz +[bindings] UPDATED: raylib-cpp to 5.0 (#3551) by @Rob Loach +[bindings] UPDATED: Pascal binding (#3548) by @Gunko Vadim +[external] REVIEWED: rl_gputex, correctly load mipmaps from DDS files (#4399) by @Nikolas +[external] REVIEWED: stb_image_resize2, dix vld1q_f16 undeclared in arm (#4309) by @masnm +[external] REVIEWED: miniaudio, fix library and Makefile for NetBSD (#4212) by @NishiOwO +[external] REVIEWED: raygui, update to latest version 4.5-dev (#4238) by @Anthony Carbajal +[external] REVIEWED: jar_xml, replace unicode characters by ascii characters to avoid warning in MSVC (#4196) by @Rico P +[external] REVIEWED: vox_loader, normals and new voxels shader (#3843) by @johann nadalutti +[parser] REVIEWED: README.md, to mirror fixed help text (#4336) by @Daniil Kisel +[parser] REVIEWED: Fix seg fault with long comment lines (#4306) by @Chris Warren-Smith +[parser] REVIEWED: Don't crash for files that don't end in newlines (#3981) by @Peter0x44 +[parser] REVIEWED: Issues in usage example help text (#4084) by @Peter0x44 +[parser] REVIEWED: Fix parsing of empty parentheses (#3974) by @Filyus +[parser] REVIEWED: Address parsing issue when generating XML #3893 by @Ray +[parser] REVIEWED: `MemoryCopy()`, prevent buffer overflow by replacing hard-coded arguments (#4011) by @avx0 +[misc] ADDED: Create logo/raylib.icns by @Ray +[misc] ADDED: Create logo/raylib_1024x1024.png by @Ray +[misc] ADDED: Default vertex/fragment shader for OpenGL ES 3.0 (#4178) by @Lázaro Albuquerque +[misc] REVIEWED: README.md, fix Reddit badge (#4136) by @Ninad Sachania +[misc] REVIEWED: .gitignore, ignore compiled dll binaries (#3628) by @2Bear +[misc] REVIEWED: Fix undesired scrollbars on web shell files (#4104) by @jspast +[misc] REVIEWED: Made comments on raylib.h match comments in rcamera.h (#3942) by @Tomas Fabrizio Orsi +[misc] REVIEWED: Make raylib/raygui work better on touchscreen (#3728) by @Hongyu Ouyang +[misc] REVIEWED: Update config.h by @Ray + ------------------------------------------------------------------------- Release: raylib 5.0 - 10th Anniversary Edition (18 November 2023) ------------------------------------------------------------------------- diff --git a/CMakeLists.txt b/CMakeLists.txt index a5e3408c8..678d8e372 100644 --- a/CMakeLists.txt +++ b/CMakeLists.txt @@ -36,9 +36,6 @@ include(CompilerFlags) # Registers build options that are exposed to cmake include(CMakeOptions.txt) -# Enforces a few environment and compiler configurations -include(BuildOptions) - if (UNIX AND NOT APPLE) if (NOT GLFW_BUILD_WAYLAND AND NOT GLFW_BUILD_X11) MESSAGE(FATAL_ERROR "Cannot disable both Wayland and X11") diff --git a/CMakeOptions.txt b/CMakeOptions.txt index b063f02a1..b387922b4 100644 --- a/CMakeOptions.txt +++ b/CMakeOptions.txt @@ -16,13 +16,12 @@ option(ENABLE_MSAN "Enable MemorySanitizer (MSan) for debugging (not recommended # Shared library is always PIC. Static library should be PIC too if linked into a shared library option(WITH_PIC "Compile static library as position-independent code" OFF) option(BUILD_SHARED_LIBS "Build raylib as a shared library" OFF) -option(MACOS_FATLIB "Build fat library for both i386 and x86_64 on macOS" OFF) cmake_dependent_option(USE_AUDIO "Build raylib with audio module" ON CUSTOMIZE_BUILD ON) enum_option(USE_EXTERNAL_GLFW "OFF;IF_POSSIBLE;ON" "Link raylib against system GLFW instead of embedded one") # GLFW build options -option(GLFW_BUILD_WAYLAND "Build the bundled GLFW with Wayland support" ON) +option(GLFW_BUILD_WAYLAND "Build the bundled GLFW with Wayland support" OFF) option(GLFW_BUILD_X11 "Build the bundled GLFW with X11 support" ON) option(INCLUDE_EVERYTHING "Include everything disabled by default (for CI usage" OFF) diff --git a/CONTRIBUTING.md b/CONTRIBUTING.md index 78f953baf..d70617c13 100644 --- a/CONTRIBUTING.md +++ b/CONTRIBUTING.md @@ -5,7 +5,7 @@ Hello contributors! Welcome to raylib! Do you enjoy raylib and want to contribute? Nice! You can help with the following points: - `C programming` - Can you write/review/test/improve the code? -- `Documentation/Tutorials/Example` - Can you write some tutorial/example? +- `Documentation/Tutorials/Example` - Can you write some tutorials/examples? - `Porting to other platforms` - Can you port/adapt/compile raylib on other systems? - `Web Development` - Can you help [with the website](https://github.com/raysan5/raylib.com)? - `Testing` - Can you find some bugs in raylib? diff --git a/HISTORY.md b/HISTORY.md index 035054dbe..555e81b38 100644 --- a/HISTORY.md +++ b/HISTORY.md @@ -471,3 +471,20 @@ Make sure to check raylib [CHANGELOG]([CHANGELOG](https://github.com/raysan5/ray Undoubtedly, this is the **biggest raylib update in 10 years**. Many new features and improvements with a special focus on maintainability and long-term sustainability. **Undoubtedly, this is the raylib of the future**. **Enjoy programming!** :) + +notes on raylib 5.5 +------------------- + +It's been **1 year** since latest raylib release and **11 years** since raylib 1.0 was officially released... + +Some numbers for this release: + + - **+260** closed issues (for a TOTAL of **+1800**!) + - **+700** commits since previous RELEASE (for a TOTAL of **+7670**!) + - **+30** functions ADDED to raylib API (for a TOTAL of **580**!) + - **+110** functions REVIEWED with fixes and improvements + - **+135** new contributors (for a TOTAL of **+635**!) + +Highlights for `raylib 5.5`: + +TODO. diff --git a/build.zig b/build.zig index 01e7b49fb..75a77dd51 100644 --- a/build.zig +++ b/build.zig @@ -1,11 +1,431 @@ const std = @import("std"); -const raylib = @import("src/build.zig"); +const builtin = @import("builtin"); -// This has been tested to work with zig 0.12.0 -pub fn build(b: *std.Build) !void { - try raylib.build(b); +/// Minimum supported version of Zig +const min_ver = "0.12.0"; + +comptime { + const order = std.SemanticVersion.order; + const parse = std.SemanticVersion.parse; + if (order(builtin.zig_version, parse(min_ver) catch unreachable) == .lt) + @compileError("Raylib requires zig version " ++ min_ver); } -// expose helper functions to user's build.zig -pub const addRaylib = raylib.addRaylib; -pub const addRaygui = raylib.addRaygui; +// NOTE(freakmangd): I don't like using a global here, but it prevents having to +// get the flags a second time when adding raygui +var raylib_flags_arr: std.ArrayListUnmanaged([]const u8) = .{}; + +// This has been tested with zig version 0.12.0 +pub fn addRaylib(b: *std.Build, target: std.Build.ResolvedTarget, optimize: std.builtin.OptimizeMode, options: Options) !*std.Build.Step.Compile { + const raylib_dep = b.dependencyFromBuildZig(@This(), .{ + .target = target, + .optimize = optimize, + .raudio = options.raudio, + .rmodels = options.rmodels, + .rshapes = options.rshapes, + .rtext = options.rtext, + .rtextures = options.rtextures, + .platform = options.platform, + .shared = options.shared, + .linux_display_backend = options.linux_display_backend, + .opengl_version = options.opengl_version, + .config = options.config, + }); + const raylib = raylib_dep.artifact("raylib"); + + if (options.raygui) { + const raygui_dep = b.dependency(options.raygui_dependency_name, .{}); + addRaygui(b, raylib, raygui_dep); + } + + return raylib; +} + +fn setDesktopPlatform(raylib: *std.Build.Step.Compile, platform: PlatformBackend) void { + raylib.defineCMacro("PLATFORM_DESKTOP", null); + + switch (platform) { + .glfw => raylib.defineCMacro("PLATFORM_DESKTOP_GLFW", null), + .rgfw => raylib.defineCMacro("PLATFORM_DESKTOP_RGFW", null), + .sdl => raylib.defineCMacro("PLATFORM_DESKTOP_SDL", null), + else => {}, + } +} + +/// A list of all flags from `src/config.h` that one may override +const config_h_flags = outer: { + // Set this value higher if compile errors happen as `src/config.h` gets larger + @setEvalBranchQuota(1 << 20); + + const config_h = @embedFile("src/config.h"); + var flags: [std.mem.count(u8, config_h, "\n") + 1][]const u8 = undefined; + + var i = 0; + var lines = std.mem.tokenizeScalar(u8, config_h, '\n'); + while (lines.next()) |line| { + if (!std.mem.containsAtLeast(u8, line, 1, "SUPPORT")) continue; + if (std.mem.startsWith(u8, line, "//")) continue; + if (std.mem.startsWith(u8, line, "#if")) continue; + + var flag = std.mem.trimLeft(u8, line, " \t"); // Trim whitespace + flag = flag["#define ".len - 1 ..]; // Remove #define + flag = std.mem.trimLeft(u8, flag, " \t"); // Trim whitespace + flag = flag[0 .. std.mem.indexOf(u8, flag, " ") orelse continue]; // Flag is only one word, so capture till space + flag = "-D" ++ flag; // Prepend with -D + + flags[i] = flag; + i += 1; + } + + // Uncomment this to check what flags normally get passed + //@compileLog(flags[0..i].*); + break :outer flags[0..i].*; +}; + +fn compileRaylib(b: *std.Build, target: std.Build.ResolvedTarget, optimize: std.builtin.OptimizeMode, options: Options) !*std.Build.Step.Compile { + raylib_flags_arr.clearRetainingCapacity(); + + const shared_flags = &[_][]const u8{ + "-fPIC", + "-DBUILD_LIBTYPE_SHARED", + }; + try raylib_flags_arr.appendSlice(b.allocator, &[_][]const u8{ + "-std=gnu99", + "-D_GNU_SOURCE", + "-DGL_SILENCE_DEPRECATION=199309L", + "-fno-sanitize=undefined", // https://github.com/raysan5/raylib/issues/3674 + }); + if (options.config.len > 0) { + // Sets a flag indiciating the use of a custom `config.h` + try raylib_flags_arr.append(b.allocator, "-DEXTERNAL_CONFIG_FLAGS"); + + // Splits a space-separated list of config flags into multiple flags + // + // Note: This means certain flags like `-x c++` won't be processed properly. + // `-xc++` or similar should be used when possible + var config_iter = std.mem.tokenizeScalar(u8, options.config, ' '); + + // Apply config flags supplied by the user + while (config_iter.next()) |config_flag| + try raylib_flags_arr.append(b.allocator, config_flag); + + // Apply all relevant configs from `src/config.h` *except* the user-specified ones + // + // Note: Currently using a suboptimal `O(m*n)` time algorithm where: + // `m` corresponds roughly to the number of lines in `src/config.h` + // `n` corresponds to the number of user-specified flags + outer: for (config_h_flags) |flag| { + // If a user already specified the flag, skip it + config_iter.reset(); + while (config_iter.next()) |config_flag| { + // For a user-specified flag to match, it must share the same prefix and have the + // same length or be followed by an equals sign + if (!std.mem.startsWith(u8, config_flag, flag)) continue; + if (config_flag.len == flag.len or config_flag[flag.len] == '=') continue :outer; + } + + // Otherwise, append default value from config.h to compile flags + try raylib_flags_arr.append(b.allocator, flag); + } + } + + if (options.shared) { + try raylib_flags_arr.appendSlice(b.allocator, shared_flags); + } + + const raylib = if (options.shared) + b.addSharedLibrary(.{ + .name = "raylib", + .target = target, + .optimize = optimize, + }) + else + b.addStaticLibrary(.{ + .name = "raylib", + .target = target, + .optimize = optimize, + }); + raylib.linkLibC(); + + // No GLFW required on PLATFORM_DRM + if (options.platform != .drm) { + raylib.addIncludePath(b.path("src/external/glfw/include")); + } + + var c_source_files = try std.ArrayList([]const u8).initCapacity(b.allocator, 2); + c_source_files.appendSliceAssumeCapacity(&.{ "src/rcore.c", "src/utils.c" }); + + if (options.raudio) { + try c_source_files.append("src/raudio.c"); + } + if (options.rmodels) { + try c_source_files.append("src/rmodels.c"); + } + if (options.rshapes) { + try c_source_files.append("src/rshapes.c"); + } + if (options.rtext) { + try c_source_files.append("src/rtext.c"); + } + if (options.rtextures) { + try c_source_files.append("src/rtextures.c"); + } + + if (options.opengl_version != .auto) { + raylib.defineCMacro(options.opengl_version.toCMacroStr(), null); + } + + switch (target.result.os.tag) { + .windows => { + try c_source_files.append("src/rglfw.c"); + raylib.linkSystemLibrary("winmm"); + raylib.linkSystemLibrary("gdi32"); + raylib.linkSystemLibrary("opengl32"); + + setDesktopPlatform(raylib, options.platform); + }, + .linux => { + if (options.platform != .drm) { + try c_source_files.append("src/rglfw.c"); + + if (options.linux_display_backend == .X11 or options.linux_display_backend == .Both) { + raylib.defineCMacro("_GLFW_X11", null); + raylib.linkSystemLibrary("GLX"); + raylib.linkSystemLibrary("X11"); + raylib.linkSystemLibrary("Xcursor"); + raylib.linkSystemLibrary("Xext"); + raylib.linkSystemLibrary("Xfixes"); + raylib.linkSystemLibrary("Xi"); + raylib.linkSystemLibrary("Xinerama"); + raylib.linkSystemLibrary("Xrandr"); + raylib.linkSystemLibrary("Xrender"); + } + + if (options.linux_display_backend == .Wayland or options.linux_display_backend == .Both) { + _ = b.findProgram(&.{"wayland-scanner"}, &.{}) catch { + std.log.err( + \\ `wayland-scanner` may not be installed on the system. + \\ You can switch to X11 in your `build.zig` by changing `Options.linux_display_backend` + , .{}); + @panic("`wayland-scanner` not found"); + }; + raylib.defineCMacro("_GLFW_WAYLAND", null); + raylib.linkSystemLibrary("EGL"); + raylib.linkSystemLibrary("wayland-client"); + raylib.linkSystemLibrary("xkbcommon"); + waylandGenerate(b, raylib, "wayland.xml", "wayland-client-protocol"); + waylandGenerate(b, raylib, "xdg-shell.xml", "xdg-shell-client-protocol"); + waylandGenerate(b, raylib, "xdg-decoration-unstable-v1.xml", "xdg-decoration-unstable-v1-client-protocol"); + waylandGenerate(b, raylib, "viewporter.xml", "viewporter-client-protocol"); + waylandGenerate(b, raylib, "relative-pointer-unstable-v1.xml", "relative-pointer-unstable-v1-client-protocol"); + waylandGenerate(b, raylib, "pointer-constraints-unstable-v1.xml", "pointer-constraints-unstable-v1-client-protocol"); + waylandGenerate(b, raylib, "fractional-scale-v1.xml", "fractional-scale-v1-client-protocol"); + waylandGenerate(b, raylib, "xdg-activation-v1.xml", "xdg-activation-v1-client-protocol"); + waylandGenerate(b, raylib, "idle-inhibit-unstable-v1.xml", "idle-inhibit-unstable-v1-client-protocol"); + } + setDesktopPlatform(raylib, options.platform); + } else { + if (options.opengl_version == .auto) { + raylib.linkSystemLibrary("GLESv2"); + raylib.defineCMacro("GRAPHICS_API_OPENGL_ES2", null); + } + + raylib.linkSystemLibrary("EGL"); + raylib.linkSystemLibrary("gbm"); + raylib.linkSystemLibrary2("libdrm", .{ .use_pkg_config = .force }); + + raylib.defineCMacro("PLATFORM_DRM", null); + raylib.defineCMacro("EGL_NO_X11", null); + raylib.defineCMacro("DEFAULT_BATCH_BUFFER_ELEMENT", "2048"); + } + }, + .freebsd, .openbsd, .netbsd, .dragonfly => { + try c_source_files.append("rglfw.c"); + raylib.linkSystemLibrary("GL"); + raylib.linkSystemLibrary("rt"); + raylib.linkSystemLibrary("dl"); + raylib.linkSystemLibrary("m"); + raylib.linkSystemLibrary("X11"); + raylib.linkSystemLibrary("Xrandr"); + raylib.linkSystemLibrary("Xinerama"); + raylib.linkSystemLibrary("Xi"); + raylib.linkSystemLibrary("Xxf86vm"); + raylib.linkSystemLibrary("Xcursor"); + + setDesktopPlatform(raylib, options.platform); + }, + .macos => { + // On macos rglfw.c include Objective-C files. + try raylib_flags_arr.append(b.allocator, "-ObjC"); + raylib.root_module.addCSourceFile(.{ + .file = b.path("src/rglfw.c"), + .flags = raylib_flags_arr.items, + }); + _ = raylib_flags_arr.pop(); + raylib.linkFramework("Foundation"); + raylib.linkFramework("CoreServices"); + raylib.linkFramework("CoreGraphics"); + raylib.linkFramework("AppKit"); + raylib.linkFramework("IOKit"); + + setDesktopPlatform(raylib, options.platform); + }, + .emscripten => { + raylib.defineCMacro("PLATFORM_WEB", null); + if (options.opengl_version == .auto) { + raylib.defineCMacro("GRAPHICS_API_OPENGL_ES2", null); + } + + if (b.sysroot == null) { + @panic("Pass '--sysroot \"$EMSDK/upstream/emscripten\"'"); + } + + const cache_include = b.pathJoin(&.{ b.sysroot.?, "cache", "sysroot", "include" }); + + var dir = std.fs.openDirAbsolute(cache_include, std.fs.Dir.OpenDirOptions{ .access_sub_paths = true, .no_follow = true }) catch @panic("No emscripten cache. Generate it!"); + dir.close(); + raylib.addIncludePath(.{ .cwd_relative = cache_include }); + }, + else => { + @panic("Unsupported OS"); + }, + } + + raylib.root_module.addCSourceFiles(.{ + .files = c_source_files.items, + .flags = raylib_flags_arr.items, + }); + + return raylib; +} + +/// This function does not need to be called if you passed .raygui = true to addRaylib +pub fn addRaygui(b: *std.Build, raylib: *std.Build.Step.Compile, raygui_dep: *std.Build.Dependency) void { + if (raylib_flags_arr.items.len == 0) { + @panic( + \\argument 2 `raylib` in `addRaygui` must come from b.dependency("raylib", ...).artifact("raylib") + ); + } + + var gen_step = b.addWriteFiles(); + raylib.step.dependOn(&gen_step.step); + + const raygui_c_path = gen_step.add("raygui.c", "#define RAYGUI_IMPLEMENTATION\n#include \"raygui.h\"\n"); + raylib.addCSourceFile(.{ .file = raygui_c_path, .flags = raylib_flags_arr.items }); + raylib.addIncludePath(raygui_dep.path("src")); + + raylib.installHeader(raygui_dep.path("src/raygui.h"), "raygui.h"); +} + +pub const Options = struct { + raudio: bool = true, + rmodels: bool = true, + rshapes: bool = true, + rtext: bool = true, + rtextures: bool = true, + raygui: bool = false, + platform: PlatformBackend = .glfw, + shared: bool = false, + linux_display_backend: LinuxDisplayBackend = .Both, + opengl_version: OpenglVersion = .auto, + /// config should be a list of space-separated cflags, eg, "-DSUPPORT_CUSTOM_FRAME_CONTROL" + config: []const u8 = &.{}, + + raygui_dependency_name: []const u8 = "raygui", + + const defaults = Options{}; + + fn getOptions(b: *std.Build) Options { + return .{ + .platform = b.option(PlatformBackend, "platform", "Choose the platform backedn for desktop target") orelse defaults.platform, + .raudio = b.option(bool, "raudio", "Compile with audio support") orelse defaults.raudio, + .raygui = b.option(bool, "raygui", "Compile with raygui support") orelse defaults.raygui, + .rmodels = b.option(bool, "rmodels", "Compile with models support") orelse defaults.rmodels, + .rtext = b.option(bool, "rtext", "Compile with text support") orelse defaults.rtext, + .rtextures = b.option(bool, "rtextures", "Compile with textures support") orelse defaults.rtextures, + .rshapes = b.option(bool, "rshapes", "Compile with shapes support") orelse defaults.rshapes, + .shared = b.option(bool, "shared", "Compile as shared library") orelse defaults.shared, + .linux_display_backend = b.option(LinuxDisplayBackend, "linux_display_backend", "Linux display backend to use") orelse defaults.linux_display_backend, + .opengl_version = b.option(OpenglVersion, "opengl_version", "OpenGL version to use") orelse defaults.opengl_version, + .config = b.option([]const u8, "config", "Compile with custom define macros overriding config.h") orelse &.{}, + }; + } +}; + +pub const OpenglVersion = enum { + auto, + gl_1_1, + gl_2_1, + gl_3_3, + gl_4_3, + gles_2, + gles_3, + + pub fn toCMacroStr(self: @This()) []const u8 { + switch (self) { + .auto => @panic("OpenglVersion.auto cannot be turned into a C macro string"), + .gl_1_1 => return "GRAPHICS_API_OPENGL_11", + .gl_2_1 => return "GRAPHICS_API_OPENGL_21", + .gl_3_3 => return "GRAPHICS_API_OPENGL_33", + .gl_4_3 => return "GRAPHICS_API_OPENGL_43", + .gles_2 => return "GRAPHICS_API_OPENGL_ES2", + .gles_3 => return "GRAPHICS_API_OPENGL_ES3", + } + } +}; + +pub const LinuxDisplayBackend = enum { + X11, + Wayland, + Both, +}; + +pub const PlatformBackend = enum { + glfw, + rgfw, + sdl, + drm, +}; + +pub fn build(b: *std.Build) !void { + // Standard target options allows the person running `zig build` to choose + // what target to build for. Here we do not override the defaults, which + // means any target is allowed, and the default is native. Other options + // for restricting supported target set are available. + const target = b.standardTargetOptions(.{}); + // Standard optimization options allow the person running `zig build` to select + // between Debug, ReleaseSafe, ReleaseFast, and ReleaseSmall. Here we do not + // set a preferred release mode, allowing the user to decide how to optimize. + const optimize = b.standardOptimizeOption(.{}); + + const lib = try compileRaylib(b, target, optimize, Options.getOptions(b)); + + lib.installHeader(b.path("src/raylib.h"), "raylib.h"); + lib.installHeader(b.path("src/raymath.h"), "raymath.h"); + lib.installHeader(b.path("src/rlgl.h"), "rlgl.h"); + + b.installArtifact(lib); +} + +fn waylandGenerate( + b: *std.Build, + raylib: *std.Build.Step.Compile, + comptime protocol: []const u8, + comptime basename: []const u8, +) void { + const waylandDir = "src/external/glfw/deps/wayland"; + const protocolDir = b.pathJoin(&.{ waylandDir, protocol }); + const clientHeader = basename ++ ".h"; + const privateCode = basename ++ "-code.h"; + + const client_step = b.addSystemCommand(&.{ "wayland-scanner", "client-header" }); + client_step.addFileArg(b.path(protocolDir)); + raylib.addIncludePath(client_step.addOutputFileArg(clientHeader).dirname()); + + const private_step = b.addSystemCommand(&.{ "wayland-scanner", "private-code" }); + private_step.addFileArg(b.path(protocolDir)); + raylib.addIncludePath(private_step.addOutputFileArg(privateCode).dirname()); + + raylib.step.dependOn(&client_step.step); + raylib.step.dependOn(&private_step.step); +} diff --git a/cmake/BuildOptions.cmake b/cmake/BuildOptions.cmake deleted file mode 100644 index 0fce64292..000000000 --- a/cmake/BuildOptions.cmake +++ /dev/null @@ -1,18 +0,0 @@ -if(${PLATFORM} MATCHES "Desktop" AND APPLE) - if(MACOS_FATLIB) - if (CMAKE_OSX_ARCHITECTURES) - message(FATAL_ERROR "User supplied -DCMAKE_OSX_ARCHITECTURES overrides -DMACOS_FATLIB=ON") - else() - set(CMAKE_OSX_ARCHITECTURES "x86_64;i386") - endif() - endif() -endif() - -# This helps support the case where emsdk toolchain file is used -# either by setting it with -DCMAKE_TOOLCHAIN_FILE=/upstream/emscripten/cmake/Modules/Platform/Emscripten.cmake -# or by using "emcmake cmake -B build -S ." as described in https://emscripten.org/docs/compiling/Building-Projects.html -if(EMSCRIPTEN) - SET(PLATFORM Web CACHE STRING "Forcing PLATFORM_WEB because EMSCRIPTEN was detected") -endif() - -# vim: ft=cmake diff --git a/cmake/LibraryConfigurations.cmake b/cmake/LibraryConfigurations.cmake index 6d2250c71..fb7898306 100644 --- a/cmake/LibraryConfigurations.cmake +++ b/cmake/LibraryConfigurations.cmake @@ -100,9 +100,10 @@ elseif ("${PLATFORM}" MATCHES "SDL") endif () if (NOT ${OPENGL_VERSION} MATCHES "OFF") - set(${SUGGESTED_GRAPHICS} "${GRAPHICS}") + set(SUGGESTED_GRAPHICS "${GRAPHICS}") + if (${OPENGL_VERSION} MATCHES "4.3") - set(GRAPHICS "GRAPHICS_API_OPENGL_43") + set(GRAPHICS "GRAPHICS_API_OPENGL_43") elseif (${OPENGL_VERSION} MATCHES "3.3") set(GRAPHICS "GRAPHICS_API_OPENGL_33") elseif (${OPENGL_VERSION} MATCHES "2.1") @@ -114,8 +115,8 @@ if (NOT ${OPENGL_VERSION} MATCHES "OFF") elseif (${OPENGL_VERSION} MATCHES "ES 3.0") set(GRAPHICS "GRAPHICS_API_OPENGL_ES3") endif () - if ("${SUGGESTED_GRAPHICS}" AND NOT "${SUGGESTED_GRAPHICS}" STREQUAL "${GRAPHICS}") - message(WARNING "You are overriding the suggested GRAPHICS=${SUGGESTED_GRAPHICS} with ${GRAPHICS}! This may fail") + if (NOT "${SUGGESTED_GRAPHICS}" STREQUAL "" AND NOT "${SUGGESTED_GRAPHICS}" STREQUAL "${GRAPHICS}") + message(WARNING "You are overriding the suggested GRAPHICS=${SUGGESTED_GRAPHICS} with ${GRAPHICS}! This may fail.") endif () endif () diff --git a/examples/Makefile b/examples/Makefile index 93b05a0c7..969c246e1 100644 --- a/examples/Makefile +++ b/examples/Makefile @@ -70,8 +70,9 @@ RAYLIB_SRC_PATH ?= ../src # Locations of raylib.h and libraylib.a/libraylib.so # NOTE: Those variables are only used for PLATFORM_OS: LINUX, BSD -RAYLIB_INCLUDE_PATH ?= /usr/local/include -RAYLIB_LIB_PATH ?= /usr/local/lib +DESTDIR ?= /usr/local +RAYLIB_INCLUDE_PATH ?= $(DESTDIR)/include +RAYLIB_LIB_PATH ?= $(DESTDIR)/lib # Library type compilation: STATIC (.a) or SHARED (.so/.dll) RAYLIB_LIBTYPE ?= STATIC @@ -156,8 +157,8 @@ ifeq ($(TARGET_PLATFORM),PLATFORM_WEB) EMSDK_PATH ?= C:/emsdk EMSCRIPTEN_PATH ?= $(EMSDK_PATH)/upstream/emscripten CLANG_PATH = $(EMSDK_PATH)/upstream/bin - PYTHON_PATH = $(EMSDK_PATH)/python/3.9.2-1_64bit - NODE_PATH = $(EMSDK_PATH)/node/14.15.5_64bit/bin + PYTHON_PATH = $(EMSDK_PATH)/python/3.9.2-nuget_64bit + NODE_PATH = $(EMSDK_PATH)/node/20.18.0_64bit/bin export PATH = $(EMSDK_PATH);$(EMSCRIPTEN_PATH);$(CLANG_PATH);$(NODE_PATH);$(PYTHON_PATH):$$(PATH) endif endif @@ -196,7 +197,16 @@ ifeq ($(TARGET_PLATFORM),PLATFORM_ANDROID) MAKE = mingw32-make endif ifeq ($(TARGET_PLATFORM),PLATFORM_WEB) - MAKE = emmake make + ifeq ($(OS),Windows_NT) + MAKE = mingw32-make + else + EMMAKE != type emmake + ifneq (, $(EMMAKE)) + MAKE = emmake make + else + MAKE = mingw32-make + endif + endif endif # Define compiler flags: CFLAGS @@ -450,7 +460,7 @@ ifeq ($(TARGET_PLATFORM),PLATFORM_DESKTOP_RGFW) ifeq ($(PLATFORM_OS),OSX) # Libraries for Debian GNU/Linux desktop compiling # NOTE: Required packages: libegl1-mesa-dev - LDLIBS = ../src/libraylib.a -lm + LDLIBS = ../src/libraylib.a -lm LDLIBS += -framework Foundation -framework AppKit -framework OpenGL -framework CoreVideo endif endif @@ -491,6 +501,7 @@ CORE = \ core/core_input_mouse \ core/core_input_mouse_wheel \ core/core_input_multitouch \ + core/core_input_virtual_controls \ core/core_loading_thread \ core/core_random_sequence \ core/core_random_values \ @@ -547,7 +558,6 @@ TEXTURES = \ textures/textures_sprite_button \ textures/textures_sprite_explosion \ textures/textures_srcrec_dstrec \ - textures/textures_svg_loading \ textures/textures_textured_curve \ textures/textures_to_image @@ -582,10 +592,12 @@ MODELS = \ models/models_mesh_generation \ models/models_mesh_picking \ models/models_orthographic_projection \ + models/models_point_rendering \ models/models_rlgl_solar_system \ models/models_skybox \ models/models_waving_cubes \ - models/models_yaw_pitch_roll + models/models_yaw_pitch_roll \ + models/models_gpu_skinning SHADERS = \ shaders/shaders_basic_lighting \ diff --git a/examples/Makefile.Web b/examples/Makefile.Web index 46a8a98ea..7e2aaacc5 100644 --- a/examples/Makefile.Web +++ b/examples/Makefile.Web @@ -35,8 +35,9 @@ RAYLIB_PATH ?= .. # Locations of raylib.h and libraylib.a/libraylib.so # NOTE: Those variables are only used for PLATFORM_OS: LINUX, BSD -RAYLIB_INCLUDE_PATH ?= /usr/local/include -RAYLIB_LIB_PATH ?= /usr/local/lib +DESTDIR ?= /usr/local +RAYLIB_INCLUDE_PATH ?= $(DESTDIR)/include +RAYLIB_LIB_PATH ?= $(DESTDIR)/lib # Library type compilation: STATIC (.a) or SHARED (.so/.dll) RAYLIB_LIBTYPE ?= STATIC @@ -51,6 +52,10 @@ USE_EXTERNAL_GLFW ?= FALSE # NOTE: This variable is only used for PLATFORM_OS: LINUX USE_WAYLAND_DISPLAY ?= FALSE +# Use WebGL2 backend (OpenGL 3.0) +# WARNING: Requires raylib compiled with GRAPHICS_API_OPENGL_ES3 +USE_WEBGL2 ?= FALSE + # Determine PLATFORM_OS in case PLATFORM_DESKTOP or PLATFORM_WEB selected ifeq ($(PLATFORM),$(filter $(PLATFORM),PLATFORM_DESKTOP PLATFORM_WEB)) # No uname.exe on MinGW!, but OS=Windows_NT on Windows! @@ -109,8 +114,8 @@ ifeq ($(PLATFORM),PLATFORM_WEB) EMSDK_PATH ?= C:/emsdk EMSCRIPTEN_PATH ?= $(EMSDK_PATH)/upstream/emscripten CLANG_PATH = $(EMSDK_PATH)/upstream/bin - PYTHON_PATH = $(EMSDK_PATH)/python/3.9.2-1_64bit - NODE_PATH = $(EMSDK_PATH)/node/14.15.5_64bit/bin + PYTHON_PATH = $(EMSDK_PATH)/python/3.9.2-nuget_64bit + NODE_PATH = $(EMSDK_PATH)/node/20.18.0_64bit/bin export PATH = $(EMSDK_PATH);$(EMSCRIPTEN_PATH);$(CLANG_PATH);$(NODE_PATH);$(PYTHON_PATH):$$(PATH) endif endif @@ -138,7 +143,7 @@ endif # Define default make program: MAKE #------------------------------------------------------------------------------------------------ -MAKE ?= emmake make +MAKE ?= make ifeq ($(PLATFORM),PLATFORM_DESKTOP) ifeq ($(PLATFORM_OS),WINDOWS) @@ -148,8 +153,17 @@ endif ifeq ($(PLATFORM),PLATFORM_ANDROID) MAKE = mingw32-make endif -ifeq ($(PLATFORM),PLATFORM_WEB) - MAKE = emmake make +ifeq ($(TARGET_PLATFORM),PLATFORM_WEB) + ifeq ($(OS),Windows_NT) + MAKE = mingw32-make + else + EMMAKE != type emmake + ifneq (, $(EMMAKE)) + MAKE = emmake make + else + MAKE = mingw32-make + endif + endif endif # Define compiler flags: CFLAGS @@ -260,6 +274,12 @@ ifeq ($(PLATFORM),PLATFORM_WEB) # --source-map-base # allow debugging in browser with source map LDFLAGS += -sUSE_GLFW=3 -sASYNCIFY -sEXPORTED_RUNTIME_METHODS=ccall + # NOTE: Flags required for WebGL 2.0 (OpenGL ES 3.0) + # WARNING: Requires raylib compiled with GRAPHICS_API_OPENGL_ES3 + ifeq ($(USE_WEBGL2),TRUE) + LDFLAGS += -sMIN_WEBGL_VERSION=2 -sMAX_WEBGL_VERSION=2 + endif + # NOTE: Simple raylib examples are compiled to be interpreter with asyncify, that way, # we can compile same code for ALL platforms with no change required, but, working on bigger # projects, code needs to be refactored to avoid a blocking while() loop, moving Update and Draw @@ -358,6 +378,7 @@ CORE = \ core/core_input_mouse \ core/core_input_mouse_wheel \ core/core_input_multitouch \ + core/core_input_virtual_controls \ core/core_loading_thread \ core/core_random_sequence \ core/core_random_values \ @@ -413,7 +434,6 @@ TEXTURES = \ textures/textures_sprite_button \ textures/textures_sprite_explosion \ textures/textures_srcrec_dstrec \ - textures/textures_svg_loading \ textures/textures_textured_curve \ textures/textures_to_image @@ -433,6 +453,7 @@ TEXT = \ MODELS = \ models/models_animation \ + models/models_gpu_skinning \ models/models_billboard \ models/models_box_collisions \ models/models_cubicmap \ @@ -447,6 +468,7 @@ MODELS = \ models/models_mesh_generation \ models/models_mesh_picking \ models/models_orthographic_projection \ + models/models_point_rendering \ models/models_rlgl_solar_system \ models/models_skybox \ models/models_waving_cubes \ @@ -538,10 +560,10 @@ core/core_3d_camera_split_screen: core/core_3d_camera_split_screen.c core/core_3d_picking: core/core_3d_picking.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) - + core/core_automation_events : core/core_automation_events.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) - + core/core_basic_window: core/core_basic_window.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) @@ -640,7 +662,7 @@ shapes/shapes_draw_circle_sector: shapes/shapes_draw_circle_sector.c shapes/shapes_draw_rectangle_rounded: shapes/shapes_draw_rectangle_rounded.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) - + shapes/shapes_draw_ring: shapes/shapes_draw_ring.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) @@ -710,7 +732,7 @@ textures/textures_image_drawing: textures/textures_image_drawing.c textures/textures_image_generation: textures/textures_image_generation.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) -sTOTAL_MEMORY=67108864 - + textures/textures_image_kernel: textures/textures_image_kernel.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) \ --preload-file textures/resources/cat.png@resources/cat.png @@ -773,10 +795,6 @@ textures/textures_srcrec_dstrec: textures/textures_srcrec_dstrec.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) \ --preload-file textures/resources/scarfy.png@resources/scarfy.png -textures/textures_svg_loading: textures/textures_svg_loading.c - $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) \ - --preload-file textures/resources/test.svg - textures/textures_textured_curve: textures/textures_textured_curve.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) \ --preload-file textures/resources/road.png@resources/road.png @@ -790,7 +808,7 @@ textures/textures_to_image: textures/textures_to_image.c text/text_codepoints_loading: text/text_codepoints_loading.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) \ --preload-file text/resources/DotGothic16-Regular.ttf@resources/DotGothic16-Regular.ttf - + text/text_draw_3d: text/text_draw_3d.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) \ --preload-file text/resources/shaders/glsl100/alpha_discard.fs@resources/shaders/glsl100/alpha_discard.fs @@ -856,6 +874,12 @@ models/models_animation: models/models_animation.c --preload-file models/resources/models/iqm/guytex.png@resources/models/iqm/guytex.png \ --preload-file models/resources/models/iqm/guyanim.iqm@resources/models/iqm/guyanim.iqm +models/models_gpu_skinning: models/models_gpu_skinning.c + $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) -sTOTAL_MEMORY=67108864 \ + --preload-file models/resources/models/gltf/greenman.glb@resources/models/gltf/greenman.glb \ + --preload-file models/resources/shaders/glsl100/skinning.vs@resources/shaders/glsl100/skinning.vs \ + --preload-file models/resources/shaders/glsl100/skinning.fs@resources/shaders/glsl100/skinning.fs + models/models_billboard: models/models_billboard.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) \ --preload-file models/resources/billboard.png@resources/billboard.png @@ -879,7 +903,7 @@ models/models_first_person_maze: models/models_first_person_maze.c models/models_geometric_shapes: models/models_geometric_shapes.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) - + models/models_heightmap: models/models_heightmap.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) \ --preload-file models/resources/heightmap.png@resources/heightmap.png @@ -888,7 +912,7 @@ models/models_loading: models/models_loading.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) -sTOTAL_MEMORY=67108864 \ --preload-file models/resources/models/obj/castle.obj@resources/models/obj/castle.obj \ --preload-file models/resources/models/obj/castle_diffuse.png@resources/models/obj/castle_diffuse.png - + models/models_loading_gltf: models/models_loading_gltf.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) -sTOTAL_MEMORY=67108864 \ --preload-file models/resources/models/gltf/robot.glb@resources/models/gltf/robot.glb @@ -896,12 +920,12 @@ models/models_loading_gltf: models/models_loading_gltf.c models/models_loading_m3d: models/models_loading_m3d.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) -sTOTAL_MEMORY=67108864 \ --preload-file models/resources/models/m3d/cesium_man.m3d@resources/models/m3d/cesium_man.m3d - + models/models_loading_vox: models/models_loading_vox.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) -sTOTAL_MEMORY=67108864 \ --preload-file models/resources/models/vox/chr_knight.vox@resources/models/vox/chr_knight.vox \ --preload-file models/resources/models/vox/chr_sword.vox@resources/models/vox/chr_sword.vox \ - --preload-file models/resources/models/vox/monu9.vox@resources/models/vox/monu9.vox + --preload-file models/resources/models/vox/monu9.vox@resources/models/vox/monu9.vox models/models_mesh_generation: models/models_mesh_generation.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) @@ -927,7 +951,7 @@ models/models_skybox: models/models_skybox.c models/models_waving_cubes: models/models_waving_cubes.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) - + models/models_yaw_pitch_roll: models/models_yaw_pitch_roll.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) -sTOTAL_MEMORY=67108864 \ --preload-file models/resources/models/obj/plane.obj@resources/models/obj/plane.obj \ @@ -1060,7 +1084,7 @@ audio/audio_mixed_processor: audio/audio_mixed_processor.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) -sTOTAL_MEMORY=67108864 \ --preload-file audio/resources/country.mp3@resources/country.mp3 \ --preload-file audio/resources/coin.wav@resources/coin.wav - + audio/audio_module_playing: audio/audio_module_playing.c $(CC) -o $@$(EXT) $< $(CFLAGS) $(INCLUDE_PATHS) $(LDFLAGS) $(LDLIBS) -D$(PLATFORM) \ --preload-file audio/resources/mini1111.xm@resources/mini1111.xm diff --git a/examples/README.md b/examples/README.md index 317f43c89..ee528d049 100644 --- a/examples/README.md +++ b/examples/README.md @@ -31,31 +31,32 @@ Examples using raylib core platform functionality like window creation, inputs, | 05 | [core_input_gamepad](core/core_input_gamepad.c) | core_input_gamepad | ⭐️☆☆☆ | 1.1 | **4.2** | [Ray](https://github.com/raysan5) | | 06 | [core_input_multitouch](core/core_input_multitouch.c) | core_input_multitouch | ⭐️☆☆☆ | 2.1 | 2.5 | [Berni](https://github.com/Berni8k) | | 07 | [core_input_gestures](core/core_input_gestures.c) | core_input_gestures | ⭐️⭐️☆☆ | 1.4 | **4.2** | [Ray](https://github.com/raysan5) | -| 08 | [core_2d_camera](core/core_2d_camera.c) | core_2d_camera | ⭐️⭐️☆☆ | 1.5 | 3.0 | [Ray](https://github.com/raysan5) | -| 09 | [core_2d_camera_mouse_zoom](core/core_2d_camera_mouse_zoom.c) | core_2d_camera_mouse_zoom | ⭐️⭐️☆☆ | **4.2** | **4.2** | [Jeffery Myers](https://github.com/JeffM2501) | -| 10 | [core_2d_camera_platformer](core/core_2d_camera_platformer.c) | core_2d_camera_platformer | ⭐️⭐️⭐️☆ | 2.5 | 3.0 | [avyy](https://github.com/avyy) | -| 11 | [core_2d_camera_split_screen](core/core_2d_camera_split_screen.c) | core_2d_camera_split_screen | ⭐️⭐️⭐️⭐️ | **4.5** | **4.5** | [Gabriel dos Santos Sanches](https://github.com/gabrielssanches) | -| 12 | [core_3d_camera_mode](core/core_3d_camera_mode.c) | core_3d_camera_mode | ⭐️☆☆☆ | 1.0 | 1.0 | [Ray](https://github.com/raysan5) | -| 13 | [core_3d_camera_free](core/core_3d_camera_free.c) | core_3d_camera_free | ⭐️☆☆☆ | 1.3 | 1.3 | [Ray](https://github.com/raysan5) | -| 14 | [core_3d_camera_first_person](core/core_3d_camera_first_person.c) | core_3d_camera_first_person | ⭐️⭐️☆☆ | 1.3 | 1.3 | [Ray](https://github.com/raysan5) | -| 15 | [core_3d_camera:split_screen](core/core_3d_camera_split_screen.c) | core_3d_camera_split_screen | ⭐️⭐️⭐️⭐️ | 3.7 | **4.0** | [Jeffery Myers](https://github.com/JeffM2501) | -| 16 | [core_3d_picking](core/core_3d_picking.c) | core_3d_picking | ⭐️⭐️☆☆ | 1.3 | **4.0** | [Ray](https://github.com/raysan5) | -| 17 | [core_world_screen](core/core_world_screen.c) | core_world_screen | ⭐️⭐️☆☆ | 1.3 | 1.4 | [Ray](https://github.com/raysan5) | -| 18 | [core_custom_logging](core/core_custom_logging.c) | core_custom_logging | ⭐️⭐️⭐️☆ | 2.5 | 2.5 | [Pablo Marcos Oltra](https://github.com/pamarcos) | -| 19 | [core_window_flags](core/core_window_flags.c) | core_window_flags | ⭐️⭐️⭐️☆ | 3.5 | 3.5 | [Ray](https://github.com/raysan5) | -| 20 | [core_window_letterbox](core/core_window_letterbox.c) | core_window_letterbox | ⭐️⭐️☆☆ | 2.5 | **4.0** | [Anata](https://github.com/anatagawa) | -| 21 | [core_window_should_close](core/core_window_should_close.c) | core_window_should_close | ⭐️☆☆☆ | **4.2** | **4.2** | [Ray](https://github.com/raysan5) | -| 22 | [core_drop_files](core/core_drop_files.c) | core_drop_files | ⭐️⭐️☆☆ | 1.3 | **4.2** | [Ray](https://github.com/raysan5) | -| 23 | [core_random_values](core/core_random_values.c) | core_random_values | ⭐️☆☆☆ | 1.1 | 1.1 | [Ray](https://github.com/raysan5) | -| 24 | [core_storage_values](core/core_storage_values.c) | core_storage_values | ⭐️⭐️☆☆ | 1.4 | **4.2** | [Ray](https://github.com/raysan5) | -| 25 | [core_vr_simulator](core/core_vr_simulator.c) | core_vr_simulator | ⭐️⭐️⭐️☆ | 2.5 | **4.0** | [Ray](https://github.com/raysan5) | -| 26 | [core_loading_thread](core/core_loading_thread.c) | core_loading_thread | ⭐️⭐️⭐️☆ | 2.5 | 3.0 | [Ray](https://github.com/raysan5) | -| 27 | [core_scissor_test](core/core_scissor_test.c) | core_scissor_test | ⭐️☆☆☆ | 2.5 | 3.0 | [Chris Dill](https://github.com/MysteriousSpace) | -| 28 | [core_basic_screen_manager](core/core_basic_screen_manager.c) | core_basic_screen_manager | ⭐️☆☆☆ | **4.0** | **4.0** | [Ray](https://github.com/raysan5) | -| 29 | [core_custom_frame_control](core/core_custom_frame_control.c) | core_custom_frame_control | ⭐️⭐️⭐️⭐️ | **4.0** | **4.0** | [Ray](https://github.com/raysan5) | -| 30 | [core_smooth_pixelperfect](core/core_smooth_pixelperfect.c) | core_smooth_pixelperfect | ⭐️⭐️⭐️☆ | 3.7 | **4.0** | [Giancamillo Alessandroni](https://github.com/NotManyIdeasDev) | -| 31 | [core_window_should_close](core/core_window_should_close.c) | core_window_should_close | ⭐️⭐️☆☆ | **4.2** | **4.2** | [Ray](https://github.com/raysan5) | -| 32 | [core_random_sequence](core/core_random_sequence.c) | core_random_sequence | ⭐️☆☆☆ | **5.0** | **5.0** | [REDl3east](https://github.com/REDl3east) | +| 08 | [core_input_virtual_controls](core/core_input_virtual_controls.c) | core_input_virtual_controls | ⭐️⭐️☆☆ | **5.0** | **5.0** | [oblerion](https://github.com/oblerion) | +| 09 | [core_2d_camera](core/core_2d_camera.c) | core_2d_camera | ⭐️⭐️☆☆ | 1.5 | 3.0 | [Ray](https://github.com/raysan5) | +| 10 | [core_2d_camera_mouse_zoom](core/core_2d_camera_mouse_zoom.c) | core_2d_camera_mouse_zoom | ⭐️⭐️☆☆ | **4.2** | **4.2** | [Jeffery Myers](https://github.com/JeffM2501) | +| 11 | [core_2d_camera_platformer](core/core_2d_camera_platformer.c) | core_2d_camera_platformer | ⭐️⭐️⭐️☆ | 2.5 | 3.0 | [avyy](https://github.com/avyy) | +| 12 | [core_2d_camera_split_screen](core/core_2d_camera_split_screen.c) | core_2d_camera_split_screen | ⭐️⭐️⭐️⭐️ | **4.5** | **4.5** | [Gabriel dos Santos Sanches](https://github.com/gabrielssanches) | +| 13 | [core_3d_camera_mode](core/core_3d_camera_mode.c) | core_3d_camera_mode | ⭐️☆☆☆ | 1.0 | 1.0 | [Ray](https://github.com/raysan5) | +| 14 | [core_3d_camera_free](core/core_3d_camera_free.c) | core_3d_camera_free | ⭐️☆☆☆ | 1.3 | 1.3 | [Ray](https://github.com/raysan5) | +| 15 | [core_3d_camera_first_person](core/core_3d_camera_first_person.c) | core_3d_camera_first_person | ⭐️⭐️☆☆ | 1.3 | 1.3 | [Ray](https://github.com/raysan5) | +| 16 | [core_3d_camera:split_screen](core/core_3d_camera_split_screen.c) | core_3d_camera_split_screen | ⭐️⭐️⭐️⭐️ | 3.7 | **4.0** | [Jeffery Myers](https://github.com/JeffM2501) | +| 17 | [core_3d_picking](core/core_3d_picking.c) | core_3d_picking | ⭐️⭐️☆☆ | 1.3 | **4.0** | [Ray](https://github.com/raysan5) | +| 18 | [core_world_screen](core/core_world_screen.c) | core_world_screen | ⭐️⭐️☆☆ | 1.3 | 1.4 | [Ray](https://github.com/raysan5) | +| 19 | [core_custom_logging](core/core_custom_logging.c) | core_custom_logging | ⭐️⭐️⭐️☆ | 2.5 | 2.5 | [Pablo Marcos Oltra](https://github.com/pamarcos) | +| 20 | [core_window_flags](core/core_window_flags.c) | core_window_flags | ⭐️⭐️⭐️☆ | 3.5 | 3.5 | [Ray](https://github.com/raysan5) | +| 21 | [core_window_letterbox](core/core_window_letterbox.c) | core_window_letterbox | ⭐️⭐️☆☆ | 2.5 | **4.0** | [Anata](https://github.com/anatagawa) | +| 22 | [core_window_should_close](core/core_window_should_close.c) | core_window_should_close | ⭐️☆☆☆ | **4.2** | **4.2** | [Ray](https://github.com/raysan5) | +| 23 | [core_drop_files](core/core_drop_files.c) | core_drop_files | ⭐️⭐️☆☆ | 1.3 | **4.2** | [Ray](https://github.com/raysan5) | +| 24 | [core_random_values](core/core_random_values.c) | core_random_values | ⭐️☆☆☆ | 1.1 | 1.1 | [Ray](https://github.com/raysan5) | +| 25 | [core_storage_values](core/core_storage_values.c) | core_storage_values | ⭐️⭐️☆☆ | 1.4 | **4.2** | [Ray](https://github.com/raysan5) | +| 26 | [core_vr_simulator](core/core_vr_simulator.c) | core_vr_simulator | ⭐️⭐️⭐️☆ | 2.5 | **4.0** | [Ray](https://github.com/raysan5) | +| 27 | [core_loading_thread](core/core_loading_thread.c) | core_loading_thread | ⭐️⭐️⭐️☆ | 2.5 | 3.0 | [Ray](https://github.com/raysan5) | +| 28 | [core_scissor_test](core/core_scissor_test.c) | core_scissor_test | ⭐️☆☆☆ | 2.5 | 3.0 | [Chris Dill](https://github.com/MysteriousSpace) | +| 29 | [core_basic_screen_manager](core/core_basic_screen_manager.c) | core_basic_screen_manager | ⭐️☆☆☆ | **4.0** | **4.0** | [Ray](https://github.com/raysan5) | +| 30 | [core_custom_frame_control](core/core_custom_frame_control.c) | core_custom_frame_control | ⭐️⭐️⭐️⭐️ | **4.0** | **4.0** | [Ray](https://github.com/raysan5) | +| 31 | [core_smooth_pixelperfect](core/core_smooth_pixelperfect.c) | core_smooth_pixelperfect | ⭐️⭐️⭐️☆ | 3.7 | **4.0** | [Giancamillo Alessandroni](https://github.com/NotManyIdeasDev) | +| 32 | [core_window_should_close](core/core_window_should_close.c) | core_window_should_close | ⭐️⭐️☆☆ | **4.2** | **4.2** | [Ray](https://github.com/raysan5) | +| 33 | [core_random_sequence](core/core_random_sequence.c) | core_random_sequence | ⭐️☆☆☆ | **5.0** | **5.0** | [REDl3east](https://github.com/REDl3east) | ### category: shapes @@ -63,22 +64,22 @@ Examples using raylib shapes drawing functionality, provided by raylib [shapes]( | ## | example | image | difficulty
level | version
created | last version
updated | original
developer | |----|----------|--------|:-------------------:|:------------------:|:------------------:|:----------| -| 31 | [shapes_basic_shapes](shapes/shapes_basic_shapes.c) | shapes_basic_shapes | ⭐️☆☆☆ | 1.0 | **4.0** | [Ray](https://github.com/raysan5) | -| 32 | [shapes_bouncing_ball](shapes/shapes_bouncing_ball.c) | shapes_bouncing_ball | ⭐️☆☆☆ | 2.5 | 2.5 | [Ray](https://github.com/raysan5) | -| 33 | [shapes_colors_palette](shapes/shapes_colors_palette.c) | shapes_colors_palette | ⭐️⭐️☆☆ | 1.0 | 2.5 | [Ray](https://github.com/raysan5) | -| 34 | [shapes_logo_raylib](shapes/shapes_logo_raylib.c) | shapes_logo_raylib | ⭐️☆☆☆ | 1.0 | 1.0 | [Ray](https://github.com/raysan5) | -| 35 | [shapes_logo_raylib_anim](shapes/shapes_logo_raylib_anim.c) | shapes_logo_raylib_anim | ⭐️⭐️☆☆ | 2.5 | **4.0** | [Ray](https://github.com/raysan5) | -| 36 | [shapes_rectangle_scaling](shapes/shapes_rectangle_scaling.c) | shapes_rectangle_scaling | ⭐️⭐️☆☆ | 2.5 | 2.5 | [Vlad Adrian](https://github.com/demizdor) | -| 37 | [shapes_lines_bezier](shapes/shapes_lines_bezier.c) | shapes_lines_bezier | ⭐️☆☆☆ | 1.7 | 1.7 | [Ray](https://github.com/raysan5) | -| 38 | [shapes_collision_area](shapes/shapes_collision_area.c) | shapes_collision_area | ⭐️⭐️☆☆ | 2.5 | 2.5 | [Ray](https://github.com/raysan5) | -| 39 | [shapes_following_eyes](shapes/shapes_following_eyes.c) | shapes_following_eyes | ⭐️⭐️☆☆ | 2.5 | 2.5 | [Ray](https://github.com/raysan5) | -| 40 | [shapes_easings_ball_anim](shapes/shapes_easings_ball_anim.c) | shapes_easings_ball_anim | ⭐️⭐️☆☆ | 2.5 | 2.5 | [Ray](https://github.com/raysan5) | -| 41 | [shapes_easings_box_anim](shapes/shapes_easings_box_anim.c) | shapes_easings_box_anim | ⭐️⭐️☆☆ | 2.5 | 2.5 | [Ray](https://github.com/raysan5) | -| 42 | [shapes_easings_rectangle_array](shapes/shapes_easings_rectangle_array.c) | shapes_easings_rectangle_array | ⭐️⭐️⭐️☆ | 2.5 | 2.5 | [Ray](https://github.com/raysan5) | -| 43 | [shapes_draw_ring](shapes/shapes_draw_ring.c) | shapes_draw_ring | ⭐️⭐️⭐️☆ | 2.5 | 2.5 | [Vlad Adrian](https://github.com/demizdor) | -| 44 | [shapes_draw_circle_sector](shapes/shapes_draw_circle_sector.c) | shapes_draw_circle_sector | ⭐️⭐️⭐️☆ | 2.5 | 2.5 | [Vlad Adrian](https://github.com/demizdor) | -| 45 | [shapes_draw_rectangle_rounded](shapes/shapes_draw_rectangle_rounded.c) | shapes_draw_rectangle_rounded | ⭐️⭐️⭐️☆ | 2.5 | 2.5 | [Vlad Adrian](https://github.com/demizdor) | -| 46 | [shapes_top_down_lights](shapes/shapes_top_down_lights.c) | shapes_top_down_lights | ⭐️⭐️⭐️⭐️ | **4.2** | **4.2** | [Jeffery Myers](https://github.com/JeffM2501) | +| 34 | [shapes_basic_shapes](shapes/shapes_basic_shapes.c) | shapes_basic_shapes | ⭐️☆☆☆ | 1.0 | **4.0** | [Ray](https://github.com/raysan5) | +| 35 | [shapes_bouncing_ball](shapes/shapes_bouncing_ball.c) | shapes_bouncing_ball | ⭐️☆☆☆ | 2.5 | 2.5 | [Ray](https://github.com/raysan5) | +| 36 | [shapes_colors_palette](shapes/shapes_colors_palette.c) | shapes_colors_palette | ⭐️⭐️☆☆ | 1.0 | 2.5 | [Ray](https://github.com/raysan5) | +| 37 | [shapes_logo_raylib](shapes/shapes_logo_raylib.c) | shapes_logo_raylib | ⭐️☆☆☆ | 1.0 | 1.0 | [Ray](https://github.com/raysan5) | +| 38 | [shapes_logo_raylib_anim](shapes/shapes_logo_raylib_anim.c) | shapes_logo_raylib_anim | ⭐️⭐️☆☆ | 2.5 | **4.0** | [Ray](https://github.com/raysan5) | +| 39 | [shapes_rectangle_scaling](shapes/shapes_rectangle_scaling.c) | shapes_rectangle_scaling | ⭐️⭐️☆☆ | 2.5 | 2.5 | [Vlad Adrian](https://github.com/demizdor) | +| 40 | [shapes_lines_bezier](shapes/shapes_lines_bezier.c) | shapes_lines_bezier | ⭐️☆☆☆ | 1.7 | 1.7 | [Ray](https://github.com/raysan5) | +| 41 | [shapes_collision_area](shapes/shapes_collision_area.c) | shapes_collision_area | ⭐️⭐️☆☆ | 2.5 | 2.5 | [Ray](https://github.com/raysan5) | +| 42 | [shapes_following_eyes](shapes/shapes_following_eyes.c) | shapes_following_eyes | ⭐️⭐️☆☆ | 2.5 | 2.5 | [Ray](https://github.com/raysan5) | +| 43 | [shapes_easings_ball_anim](shapes/shapes_easings_ball_anim.c) | shapes_easings_ball_anim | ⭐️⭐️☆☆ | 2.5 | 2.5 | [Ray](https://github.com/raysan5) | +| 44 | [shapes_easings_box_anim](shapes/shapes_easings_box_anim.c) | shapes_easings_box_anim | ⭐️⭐️☆☆ | 2.5 | 2.5 | [Ray](https://github.com/raysan5) | +| 45 | [shapes_easings_rectangle_array](shapes/shapes_easings_rectangle_array.c) | shapes_easings_rectangle_array | ⭐️⭐️⭐️☆ | 2.5 | 2.5 | [Ray](https://github.com/raysan5) | +| 46 | [shapes_draw_ring](shapes/shapes_draw_ring.c) | shapes_draw_ring | ⭐️⭐️⭐️☆ | 2.5 | 2.5 | [Vlad Adrian](https://github.com/demizdor) | +| 47 | [shapes_draw_circle_sector](shapes/shapes_draw_circle_sector.c) | shapes_draw_circle_sector | ⭐️⭐️⭐️☆ | 2.5 | 2.5 | [Vlad Adrian](https://github.com/demizdor) | +| 48 | [shapes_draw_rectangle_rounded](shapes/shapes_draw_rectangle_rounded.c) | shapes_draw_rectangle_rounded | ⭐️⭐️⭐️☆ | 2.5 | 2.5 | [Vlad Adrian](https://github.com/demizdor) | +| 49 | [shapes_top_down_lights](shapes/shapes_top_down_lights.c) | shapes_top_down_lights | ⭐️⭐️⭐️⭐️ | **4.2** | **4.2** | [Jeffery Myers](https://github.com/JeffM2501) | ### category: textures @@ -86,28 +87,28 @@ Examples using raylib textures functionality, including image/textures loading/g | ## | example | image | difficulty
level | version
created | last version
updated | original
developer | |----|----------|--------|:-------------------:|:------------------:|:------------------:|:----------| -| 47 | [textures_logo_raylib](textures/textures_logo_raylib.c) | textures_logo_raylib | ⭐️☆☆☆ | 1.0 | 1.0 | [Ray](https://github.com/raysan5) | -| 48 | [textures_srcrec_dstrec](textures/textures_srcrec_dstrec.c) | textures_srcrec_dstrec | ⭐️⭐️⭐️☆ | 1.3 | 1.3 | [Ray](https://github.com/raysan5) | -| 49 | [textures_image_drawing](textures/textures_image_drawing.c) | textures_image_drawing | ⭐️⭐️☆☆ | 1.4 | 1.4 | [Ray](https://github.com/raysan5) | -| 50 | [textures_image_generation](textures/textures_image_generation.c) | textures_image_generation | ⭐️⭐️☆☆ | 1.8 | 1.8 | [Ray](https://github.com/raysan5) | -| 51 | [textures_image_loading](textures/textures_image_loading.c) | textures_image_loading | ⭐️☆☆☆ | 1.3 | 1.3 | [Ray](https://github.com/raysan5) | -| 52 | [textures_image_processing](textures/textures_image_processing.c) | textures_image_processing | ⭐️⭐️⭐️☆ | 1.4 | 3.5 | [Ray](https://github.com/raysan5) | -| 53 | [textures_image_text](textures/textures_image_text.c) | textures_image_text | ⭐️⭐️☆☆ | 1.8 | **4.0** | [Ray](https://github.com/raysan5) | -| 54 | [textures_to_image](textures/textures_to_image.c) | textures_to_image | ⭐️☆☆☆ | 1.3 | **4.0** | [Ray](https://github.com/raysan5) | -| 55 | [textures_raw_data](textures/textures_raw_data.c) | textures_raw_data | ⭐️⭐️⭐️☆ | 1.3 | 3.5 | [Ray](https://github.com/raysan5) | -| 56 | [textures_particles_blending](textures/textures_particles_blending.c) | textures_particles_blending | ⭐️☆☆☆ | 1.7 | 3.5 | [Ray](https://github.com/raysan5) | -| 57 | [textures_npatch_drawing](textures/textures_npatch_drawing.c) | textures_npatch_drawing | ⭐️⭐️⭐️☆ | 2.0 | 2.5 | [Jorge A. Gomes](https://github.com/overdev) | -| 58 | [textures_background_scrolling](textures/textures_background_scrolling.c) | textures_background_scrolling | ⭐️☆☆☆ | 2.0 | 2.5 | [Ray](https://github.com/raysan5) | -| 59 | [textures_sprite_anim](textures/textures_sprite_anim.c) | textures_sprite_anim | ⭐️⭐️☆☆ | 1.3 | 1.3 | [Ray](https://github.com/raysan5) | -| 60 | [textures_sprite_button](textures/textures_sprite_button.c) | textures_sprite_button | ⭐️⭐️☆☆ | 2.5 | 2.5 | [Ray](https://github.com/raysan5) | -| 61 | [textures_sprite_explosion](textures/textures_sprite_explosion.c) | textures_sprite_explosion | ⭐️⭐️☆☆ | 2.5 | 3.5 | [Ray](https://github.com/raysan5) | -| 62 | [textures_bunnymark](textures/textures_bunnymark.c) | textures_bunnymark | ⭐️⭐️⭐️☆ | 1.6 | 2.5 | [Ray](https://github.com/raysan5) | -| 63 | [textures_mouse_painting](textures/textures_mouse_painting.c) | textures_mouse_painting | ⭐️⭐️⭐️☆ | 3.0 | 3.0 | [Chris Dill](https://github.com/MysteriousSpace) | -| 64 | [textures_blend_modes](textures/textures_blend_modes.c) | textures_blend_modes | ⭐️☆☆☆ | 3.5 | 3.5 | [Karlo Licudine](https://github.com/accidentalrebel) | -| 65 | [textures_draw_tiled](textures/textures_draw_tiled.c) | textures_draw_tiled | ⭐️⭐️⭐️☆ | 3.0 | **4.2** | [Vlad Adrian](https://github.com/demizdor) | -| 66 | [textures_polygon](textures/textures_polygon.c) | textures_polygon | ⭐️☆☆☆ | 3.7 | 3.7 | [Chris Camacho](https://github.com/codifies) | -| 67 | [textures_fog_of_war](textures/textures_fog_of_war.c) | textures_fog_of_war | ⭐️⭐️⭐️☆ | **4.2** | **4.2** | [Ray](https://github.com/raysan5) | -| 68 | [textures_gif_player](textures/textures_gif_player.c) | textures_gif_player | ⭐️⭐️⭐️☆ | **4.2** | **4.2** | [Ray](https://github.com/raysan5) | +| 50 | [textures_logo_raylib](textures/textures_logo_raylib.c) | textures_logo_raylib | ⭐️☆☆☆ | 1.0 | 1.0 | [Ray](https://github.com/raysan5) | +| 51 | [textures_srcrec_dstrec](textures/textures_srcrec_dstrec.c) | textures_srcrec_dstrec | ⭐️⭐️⭐️☆ | 1.3 | 1.3 | [Ray](https://github.com/raysan5) | +| 52 | [textures_image_drawing](textures/textures_image_drawing.c) | textures_image_drawing | ⭐️⭐️☆☆ | 1.4 | 1.4 | [Ray](https://github.com/raysan5) | +| 53 | [textures_image_generation](textures/textures_image_generation.c) | textures_image_generation | ⭐️⭐️☆☆ | 1.8 | 1.8 | [Ray](https://github.com/raysan5) | +| 54 | [textures_image_loading](textures/textures_image_loading.c) | textures_image_loading | ⭐️☆☆☆ | 1.3 | 1.3 | [Ray](https://github.com/raysan5) | +| 55 | [textures_image_processing](textures/textures_image_processing.c) | textures_image_processing | ⭐️⭐️⭐️☆ | 1.4 | 3.5 | [Ray](https://github.com/raysan5) | +| 56 | [textures_image_text](textures/textures_image_text.c) | textures_image_text | ⭐️⭐️☆☆ | 1.8 | **4.0** | [Ray](https://github.com/raysan5) | +| 57 | [textures_to_image](textures/textures_to_image.c) | textures_to_image | ⭐️☆☆☆ | 1.3 | **4.0** | [Ray](https://github.com/raysan5) | +| 58 | [textures_raw_data](textures/textures_raw_data.c) | textures_raw_data | ⭐️⭐️⭐️☆ | 1.3 | 3.5 | [Ray](https://github.com/raysan5) | +| 59 | [textures_particles_blending](textures/textures_particles_blending.c) | textures_particles_blending | ⭐️☆☆☆ | 1.7 | 3.5 | [Ray](https://github.com/raysan5) | +| 60 | [textures_npatch_drawing](textures/textures_npatch_drawing.c) | textures_npatch_drawing | ⭐️⭐️⭐️☆ | 2.0 | 2.5 | [Jorge A. Gomes](https://github.com/overdev) | +| 61 | [textures_background_scrolling](textures/textures_background_scrolling.c) | textures_background_scrolling | ⭐️☆☆☆ | 2.0 | 2.5 | [Ray](https://github.com/raysan5) | +| 62 | [textures_sprite_anim](textures/textures_sprite_anim.c) | textures_sprite_anim | ⭐️⭐️☆☆ | 1.3 | 1.3 | [Ray](https://github.com/raysan5) | +| 63 | [textures_sprite_button](textures/textures_sprite_button.c) | textures_sprite_button | ⭐️⭐️☆☆ | 2.5 | 2.5 | [Ray](https://github.com/raysan5) | +| 64 | [textures_sprite_explosion](textures/textures_sprite_explosion.c) | textures_sprite_explosion | ⭐️⭐️☆☆ | 2.5 | 3.5 | [Ray](https://github.com/raysan5) | +| 65 | [textures_bunnymark](textures/textures_bunnymark.c) | textures_bunnymark | ⭐️⭐️⭐️☆ | 1.6 | 2.5 | [Ray](https://github.com/raysan5) | +| 66 | [textures_mouse_painting](textures/textures_mouse_painting.c) | textures_mouse_painting | ⭐️⭐️⭐️☆ | 3.0 | 3.0 | [Chris Dill](https://github.com/MysteriousSpace) | +| 67 | [textures_blend_modes](textures/textures_blend_modes.c) | textures_blend_modes | ⭐️☆☆☆ | 3.5 | 3.5 | [Karlo Licudine](https://github.com/accidentalrebel) | +| 68 | [textures_draw_tiled](textures/textures_draw_tiled.c) | textures_draw_tiled | ⭐️⭐️⭐️☆ | 3.0 | **4.2** | [Vlad Adrian](https://github.com/demizdor) | +| 69 | [textures_polygon](textures/textures_polygon.c) | textures_polygon | ⭐️☆☆☆ | 3.7 | 3.7 | [Chris Camacho](https://github.com/codifies) | +| 70 | [textures_fog_of_war](textures/textures_fog_of_war.c) | textures_fog_of_war | ⭐️⭐️⭐️☆ | **4.2** | **4.2** | [Ray](https://github.com/raysan5) | +| 71 | [textures_gif_player](textures/textures_gif_player.c) | textures_gif_player | ⭐️⭐️⭐️☆ | **4.2** | **4.2** | [Ray](https://github.com/raysan5) | ### category: text @@ -115,18 +116,18 @@ Examples using raylib text functionality, including sprite fonts loading/generat | ## | example | image | difficulty
level | version
created | last version
updated | original
developer | |----|----------|--------|:-------------------:|:------------------:|:------------------:|:----------| -| 69 | [text_raylib_fonts](text/text_raylib_fonts.c) | text_raylib_fonts | ⭐️☆☆☆ | 1.7 | 3.7 | [Ray](https://github.com/raysan5) | -| 70 | [text_font_spritefont](text/text_font_spritefont.c) | text_font_spritefont | ⭐️☆☆☆ | 1.0 | 1.0 | [Ray](https://github.com/raysan5) | -| 71 | [text_font_filters](text/text_font_filters.c) | text_font_filters | ⭐️⭐️☆☆ | 1.3 | **4.2** | [Ray](https://github.com/raysan5) | -| 72 | [text_font_loading](text/text_font_loading.c) | text_font_loading | ⭐️☆☆☆ | 1.4 | 3.0 | [Ray](https://github.com/raysan5) | -| 73 | [text_font_sdf](text/text_font_sdf.c) | text_font_sdf | ⭐️⭐️⭐️☆ | 1.3 | **4.0** | [Ray](https://github.com/raysan5) | -| 74 | [text_format_text](text/text_format_text.c) | text_format_text | ⭐️☆☆☆ | 1.1 | 3.0 | [Ray](https://github.com/raysan5) | -| 75 | [text_input_box](text/text_input_box.c) | text_input_box | ⭐️⭐️☆☆ | 1.7 | 3.5 | [Ray](https://github.com/raysan5) | -| 76 | [text_writing_anim](text/text_writing_anim.c) | text_writing_anim | ⭐️⭐️☆☆ | 1.4 | 1.4 | [Ray](https://github.com/raysan5) | -| 77 | [text_rectangle_bounds](text/text_rectangle_bounds.c) | text_rectangle_bounds | ⭐️⭐️⭐️⭐️ | 2.5 | **4.0** | [Vlad Adrian](https://github.com/demizdor) | -| 78 | [text_unicode](text/text_unicode.c) | text_unicode | ⭐️⭐️⭐️⭐️ | 2.5 | **4.0** | [Vlad Adrian](https://github.com/demizdor) | -| 79 | [text_draw_3d](text/text_draw_3d.c) | text_draw_3d | ⭐️⭐️⭐️⭐️ | 3.5 | **4.0** | [Vlad Adrian](https://github.com/demizdor) | -| 80 | [text_codepoints_loading](text/text_codepoints_loading.c) | text_codepoints_loading | ⭐️⭐️⭐️☆ | **4.2** | **4.2** | [Ray](https://github.com/raysan5) | +| 72 | [text_raylib_fonts](text/text_raylib_fonts.c) | text_raylib_fonts | ⭐️☆☆☆ | 1.7 | 3.7 | [Ray](https://github.com/raysan5) | +| 73 | [text_font_spritefont](text/text_font_spritefont.c) | text_font_spritefont | ⭐️☆☆☆ | 1.0 | 1.0 | [Ray](https://github.com/raysan5) | +| 74 | [text_font_filters](text/text_font_filters.c) | text_font_filters | ⭐️⭐️☆☆ | 1.3 | **4.2** | [Ray](https://github.com/raysan5) | +| 75 | [text_font_loading](text/text_font_loading.c) | text_font_loading | ⭐️☆☆☆ | 1.4 | 3.0 | [Ray](https://github.com/raysan5) | +| 76 | [text_font_sdf](text/text_font_sdf.c) | text_font_sdf | ⭐️⭐️⭐️☆ | 1.3 | **4.0** | [Ray](https://github.com/raysan5) | +| 77 | [text_format_text](text/text_format_text.c) | text_format_text | ⭐️☆☆☆ | 1.1 | 3.0 | [Ray](https://github.com/raysan5) | +| 78 | [text_input_box](text/text_input_box.c) | text_input_box | ⭐️⭐️☆☆ | 1.7 | 3.5 | [Ray](https://github.com/raysan5) | +| 79 | [text_writing_anim](text/text_writing_anim.c) | text_writing_anim | ⭐️⭐️☆☆ | 1.4 | 1.4 | [Ray](https://github.com/raysan5) | +| 80 | [text_rectangle_bounds](text/text_rectangle_bounds.c) | text_rectangle_bounds | ⭐️⭐️⭐️⭐️ | 2.5 | **4.0** | [Vlad Adrian](https://github.com/demizdor) | +| 81 | [text_unicode](text/text_unicode.c) | text_unicode | ⭐️⭐️⭐️⭐️ | 2.5 | **4.0** | [Vlad Adrian](https://github.com/demizdor) | +| 82 | [text_draw_3d](text/text_draw_3d.c) | text_draw_3d | ⭐️⭐️⭐️⭐️ | 3.5 | **4.0** | [Vlad Adrian](https://github.com/demizdor) | +| 83 | [text_codepoints_loading](text/text_codepoints_loading.c) | text_codepoints_loading | ⭐️⭐️⭐️☆ | **4.2** | **4.2** | [Ray](https://github.com/raysan5) | ### category: models @@ -134,24 +135,25 @@ Examples using raylib models functionality, including models loading/generation | ## | example | image | difficulty
level | version
created | last version
updated | original
developer | |----|----------|--------|:-------------------:|:------------------:|:------------------:|:----------| -| 81 | [models_animation](models/models_animation.c) | models_animation | ⭐️⭐️☆☆ | 2.5 | 3.5 | [culacant](https://github.com/culacant) | -| 82 | [models_billboard](models/models_billboard.c) | models_billboard | ⭐️⭐️⭐️☆ | 1.3 | 3.5 | [Ray](https://github.com/raysan5) | -| 83 | [models_box_collisions](models/models_box_collisions.c) | models_box_collisions | ⭐️☆☆☆ | 1.3 | 3.5 | [Ray](https://github.com/raysan5) | -| 84 | [models_cubicmap](models/models_cubicmap.c) | models_cubicmap | ⭐️⭐️☆☆ | 1.8 | 3.5 | [Ray](https://github.com/raysan5) | -| 85 | [models_first_person_maze](models/models_first_person_maze.c) | models_first_person_maze | ⭐️⭐️☆☆ | 2.5 | 3.5 | [Ray](https://github.com/raysan5) | -| 86 | [models_geometric_shapes](models/models_geometric_shapes.c) | models_geometric_shapes | ⭐️☆☆☆ | 1.0 | 3.5 | [Ray](https://github.com/raysan5) | -| 87 | [models_mesh_generation](models/models_mesh_generation.c) | models_mesh_generation | ⭐️⭐️☆☆ | 1.8 | **4.0** | [Ray](https://github.com/raysan5) | -| 88 | [models_mesh_picking](models/models_mesh_picking.c) | models_mesh_picking | ⭐️⭐️⭐️☆ | 1.7 | **4.0** | [Joel Davis](https://github.com/joeld42) | -| 89 | [models_loading](models/models_loading.c) | models_loading | ⭐️☆☆☆ | 2.5 | **4.0** | [Ray](https://github.com/raysan5) | -| 90 | [models_loading_gltf](models/models_loading_gltf.c) | models_loading_gltf | ⭐️☆☆☆ | 3.7 | **4.2** | [Ray](https://github.com/raysan5) | -| 91 | [models_loading_vox](models/models_loading_vox.c) | models_loading_vox | ⭐️☆☆☆ | **4.0** | **4.0** | [Johann Nadalutti](https://github.com/procfxgen) | -| 92 | [models_loading_m3d](models/models_loading_m3d.c) | models_loading_m3d | ⭐️☆☆☆ | **4.2** | **4.2** | [bzt](https://bztsrc.gitlab.io/model3d) | -| 93 | [models_orthographic_projection](models/models_orthographic_projection.c) | models_orthographic_projection | ⭐️☆☆☆ | 2.0 | 3.7 | [Max Danielsson](https://github.com/autious) | -| 94 | [models_rlgl_solar_system](models/models_rlgl_solar_system.c) | models_rlgl_solar_system | ⭐️⭐️⭐️⭐️ | 2.5 | **4.0** | [Ray](https://github.com/raysan5) | -| 95 | [models_yaw_pitch_roll](models/models_yaw_pitch_roll.c) | models_yaw_pitch_roll | ⭐️⭐️☆☆ | 1.8 | **4.0** | [Berni](https://github.com/Berni8k) | -| 96 | [models_waving_cubes](models/models_waving_cubes.c) | models_waving_cubes | ⭐️⭐️⭐️☆ | 2.5 | 3.7 | [codecat](https://github.com/codecat) | -| 97 | [models_heightmap](models/models_heightmap.c) | models_heightmap | ⭐️☆☆☆ | 1.8 | 3.5 | [Ray](https://github.com/raysan5) | -| 98 | [models_skybox](models/models_skybox.c) | models_skybox | ⭐️⭐️☆☆ | 1.8 | **4.0** | [Ray](https://github.com/raysan5) | +| 84 | [models_animation](models/models_animation.c) | models_animation | ⭐️⭐️☆☆ | 2.5 | 3.5 | [culacant](https://github.com/culacant) | +| 85 | [models_billboard](models/models_billboard.c) | models_billboard | ⭐️⭐️⭐️☆ | 1.3 | 3.5 | [Ray](https://github.com/raysan5) | +| 86 | [models_box_collisions](models/models_box_collisions.c) | models_box_collisions | ⭐️☆☆☆ | 1.3 | 3.5 | [Ray](https://github.com/raysan5) | +| 87 | [models_cubicmap](models/models_cubicmap.c) | models_cubicmap | ⭐️⭐️☆☆ | 1.8 | 3.5 | [Ray](https://github.com/raysan5) | +| 88 | [models_first_person_maze](models/models_first_person_maze.c) | models_first_person_maze | ⭐️⭐️☆☆ | 2.5 | 3.5 | [Ray](https://github.com/raysan5) | +| 89 | [models_geometric_shapes](models/models_geometric_shapes.c) | models_geometric_shapes | ⭐️☆☆☆ | 1.0 | 3.5 | [Ray](https://github.com/raysan5) | +| 90 | [models_mesh_generation](models/models_mesh_generation.c) | models_mesh_generation | ⭐️⭐️☆☆ | 1.8 | **4.0** | [Ray](https://github.com/raysan5) | +| 91 | [models_mesh_picking](models/models_mesh_picking.c) | models_mesh_picking | ⭐️⭐️⭐️☆ | 1.7 | **4.0** | [Joel Davis](https://github.com/joeld42) | +| 92 | [models_loading](models/models_loading.c) | models_loading | ⭐️☆☆☆ | 2.5 | **4.0** | [Ray](https://github.com/raysan5) | +| 93 | [models_loading_gltf](models/models_loading_gltf.c) | models_loading_gltf | ⭐️☆☆☆ | 3.7 | **4.2** | [Ray](https://github.com/raysan5) | +| 94 | [models_loading_vox](models/models_loading_vox.c) | models_loading_vox | ⭐️☆☆☆ | **4.0** | **4.0** | [Johann Nadalutti](https://github.com/procfxgen) | +| 95 | [models_loading_m3d](models/models_loading_m3d.c) | models_loading_m3d | ⭐️☆☆☆ | **4.2** | **4.2** | [bzt](https://bztsrc.gitlab.io/model3d) | +| 96 | [models_orthographic_projection](models/models_orthographic_projection.c) | models_orthographic_projection | ⭐️☆☆☆ | 2.0 | 3.7 | [Max Danielsson](https://github.com/autious) | +| 97 | [models_point_rendering](models/models_point_rendering.c) | models_point_rendering | ⭐️⭐️☆☆ | 5.0 | 5.0 | [Reese Gallagher](https://github.com/satchelfrost) | +| 98 | [models_rlgl_solar_system](models/models_rlgl_solar_system.c) | models_rlgl_solar_system | ⭐️⭐️⭐️⭐️ | 2.5 | **4.0** | [Ray](https://github.com/raysan5) | +| 99 | [models_yaw_pitch_roll](models/models_yaw_pitch_roll.c) | models_yaw_pitch_roll | ⭐️⭐️☆☆ | 1.8 | **4.0** | [Berni](https://github.com/Berni8k) | +| 100 | [models_waving_cubes](models/models_waving_cubes.c) | models_waving_cubes | ⭐️⭐️⭐️☆ | 2.5 | 3.7 | [codecat](https://github.com/codecat) | +| 101 | [models_heightmap](models/models_heightmap.c) | models_heightmap | ⭐️☆☆☆ | 1.8 | 3.5 | [Ray](https://github.com/raysan5) | +| 102 | [models_skybox](models/models_skybox.c) | models_skybox | ⭐️⭐️☆☆ | 1.8 | **4.0** | [Ray](https://github.com/raysan5) | ### category: shaders @@ -159,26 +161,25 @@ Examples using raylib shaders functionality, including shaders loading, paramete | ## | example | image | difficulty
level | version
created | last version
updated | original
developer | |----|----------|--------|:-------------------:|:------------------:|:------------------:|:----------| -| 99 | [shaders_basic_lighting](shaders/shaders_basic_lighting.c) | shaders_basic_lighting | ⭐️⭐️⭐️⭐️ | 3.0 | **4.2** | [Chris Camacho](https://github.com/codifies) | -| 100 | [shaders_model_shader](shaders/shaders_model_shader.c) | shaders_model_shader | ⭐️⭐️☆☆ | 1.3 | 3.7 | [Ray](https://github.com/raysan5) | -| 101 | [shaders_shapes_textures](shaders/shaders_shapes_textures.c) | shaders_shapes_textures | ⭐️⭐️☆☆ | 1.7 | 3.7 | [Ray](https://github.com/raysan5) | -| 102 | [shaders_custom_uniform](shaders/shaders_custom_uniform.c) | shaders_custom_uniform | ⭐️⭐️☆☆ | 1.3 | **4.0** | [Ray](https://github.com/raysan5) | -| 103 | [shaders_postprocessing](shaders/shaders_postprocessing.c) | shaders_postprocessing | ⭐️⭐️⭐️☆ | 1.3 | **4.0** | [Ray](https://github.com/raysan5) | -| 104 | [shaders_palette_switch](shaders/shaders_palette_switch.c) | shaders_palette_switch | ⭐️⭐️⭐️☆ | 2.5 | 3.7 | [Marco Lizza](https://github.com/MarcoLizza) | -| 105 | [shaders_raymarching](shaders/shaders_raymarching.c) | shaders_raymarching | ⭐️⭐️⭐️⭐️ | 2.0 | **4.2** | [Ray](https://github.com/raysan5) | -| 106 | [shaders_texture_drawing](shaders/shaders_texture_drawing.c) | shaders_texture_drawing | ⭐️⭐️☆☆ | 2.0 | 3.7 | [Michał Ciesielski](https://github.com/) | -| 107 | [shaders_texture_outline](shaders/shaders_texture_outline.c) | shaders_texture_outline | ⭐️⭐️⭐️☆ | **4.0** | **4.0** | [Samuel Skiff](https://github.com/GoldenThumbs) | -| 108 | [shaders_texture_waves](shaders/shaders_texture_waves.c) | shaders_texture_waves | ⭐️⭐️☆☆ | 2.5 | 3.7 | [Anata](https://github.com/anatagawa) | -| 109 | [shaders_julia_set](shaders/shaders_julia_set.c) | shaders_julia_set | ⭐️⭐️⭐️☆ | 2.5 | **4.0** | [eggmund](https://github.com/eggmund) | -| 110 | [shaders_eratosthenes](shaders/shaders_eratosthenes.c) | shaders_eratosthenes | ⭐️⭐️⭐️☆ | 2.5 | **4.0** | [ProfJski](https://github.com/ProfJski) | -| 111 | [shaders_fog](shaders/shaders_fog.c) | shaders_fog | ⭐️⭐️⭐️☆ | 2.5 | 3.7 | [Chris Camacho](https://github.com/codifies) | -| 112 | [shaders_simple_mask](shaders/shaders_simple_mask.c) | shaders_simple_mask | ⭐️⭐️☆☆ | 2.5 | 3.7 | [Chris Camacho](https://github.com/codifies) | -| 113 | [shaders_hot_reloading](shaders/shaders_hot_reloading.c) | shaders_hot_reloading | ⭐️⭐️⭐️☆ | 3.0 | 3.5 | [Ray](https://github.com/raysan5) | -| 114 | [shaders_mesh_instancing](shaders/shaders_mesh_instancing.c) | shaders_mesh_instancing | ⭐️⭐️⭐️⭐️ | 3.7 | **4.2** | [seanpringle](https://github.com/seanpringle) | -| 115 | [shaders_multi_sample2d](shaders/shaders_multi_sample2d.c) | shaders_multi_sample2d | ⭐️⭐️☆☆ | 3.5 | 3.5 | [Ray](https://github.com/raysan5) | -| 116 | [shaders_spotlight](shaders/shaders_spotlight.c) | shaders_spotlight | ⭐️⭐️☆☆ | 2.5 | 3.7 | [Chris Camacho](https://github.com/codifies) | -| 117 | [shaders_deferred_render](shaders/shaders_deferred_render.c) | shaders_deferred_render | ⭐️⭐️⭐️⭐️ | 4.5 | 4.5 | [Justin Andreas Lacoste](https://github.com/27justin) | -| 118 | [shaders_vertex_displacement](shaders/shaders_vertex_displacement.c) | shaders_deferred_render | ⭐️☆☆☆ | 1.5 | 1.5 | [Alex ZH](https://github.com/ZzzhHe) | +| 103 | [shaders_basic_lighting](shaders/shaders_basic_lighting.c) | shaders_basic_lighting | ⭐️⭐️⭐️⭐️ | 3.0 | **4.2** | [Chris Camacho](https://github.com/codifies) | +| 104 | [shaders_model_shader](shaders/shaders_model_shader.c) | shaders_model_shader | ⭐️⭐️☆☆ | 1.3 | 3.7 | [Ray](https://github.com/raysan5) | +| 105 | [shaders_shapes_textures](shaders/shaders_shapes_textures.c) | shaders_shapes_textures | ⭐️⭐️☆☆ | 1.7 | 3.7 | [Ray](https://github.com/raysan5) | +| 106 | [shaders_custom_uniform](shaders/shaders_custom_uniform.c) | shaders_custom_uniform | ⭐️⭐️☆☆ | 1.3 | **4.0** | [Ray](https://github.com/raysan5) | +| 107 | [shaders_postprocessing](shaders/shaders_postprocessing.c) | shaders_postprocessing | ⭐️⭐️⭐️☆ | 1.3 | **4.0** | [Ray](https://github.com/raysan5) | +| 108 | [shaders_palette_switch](shaders/shaders_palette_switch.c) | shaders_palette_switch | ⭐️⭐️⭐️☆ | 2.5 | 3.7 | [Marco Lizza](https://github.com/MarcoLizza) | +| 109 | [shaders_raymarching](shaders/shaders_raymarching.c) | shaders_raymarching | ⭐️⭐️⭐️⭐️ | 2.0 | **4.2** | [Ray](https://github.com/raysan5) | +| 110 | [shaders_texture_drawing](shaders/shaders_texture_drawing.c) | shaders_texture_drawing | ⭐️⭐️☆☆ | 2.0 | 3.7 | [Michał Ciesielski](https://github.com/) | +| 111 | [shaders_texture_outline](shaders/shaders_texture_outline.c) | shaders_texture_outline | ⭐️⭐️⭐️☆ | **4.0** | **4.0** | [Samuel Skiff](https://github.com/GoldenThumbs) | +| 112 | [shaders_texture_waves](shaders/shaders_texture_waves.c) | shaders_texture_waves | ⭐️⭐️☆☆ | 2.5 | 3.7 | [Anata](https://github.com/anatagawa) | +| 113 | [shaders_julia_set](shaders/shaders_julia_set.c) | shaders_julia_set | ⭐️⭐️⭐️☆ | 2.5 | **4.0** | [eggmund](https://github.com/eggmund) | +| 114 | [shaders_eratosthenes](shaders/shaders_eratosthenes.c) | shaders_eratosthenes | ⭐️⭐️⭐️☆ | 2.5 | **4.0** | [ProfJski](https://github.com/ProfJski) | +| 115 | [shaders_fog](shaders/shaders_fog.c) | shaders_fog | ⭐️⭐️⭐️☆ | 2.5 | 3.7 | [Chris Camacho](https://github.com/codifies) | +| 116 | [shaders_simple_mask](shaders/shaders_simple_mask.c) | shaders_simple_mask | ⭐️⭐️☆☆ | 2.5 | 3.7 | [Chris Camacho](https://github.com/codifies) | +| 117 | [shaders_hot_reloading](shaders/shaders_hot_reloading.c) | shaders_hot_reloading | ⭐️⭐️⭐️☆ | 3.0 | 3.5 | [Ray](https://github.com/raysan5) | +| 118 | [shaders_mesh_instancing](shaders/shaders_mesh_instancing.c) | shaders_mesh_instancing | ⭐️⭐️⭐️⭐️ | 3.7 | **4.2** | [seanpringle](https://github.com/seanpringle) | +| 119 | [shaders_multi_sample2d](shaders/shaders_multi_sample2d.c) | shaders_multi_sample2d | ⭐️⭐️☆☆ | 3.5 | 3.5 | [Ray](https://github.com/raysan5) | +| 120 | [shaders_spotlight](shaders/shaders_spotlight.c) | shaders_spotlight | ⭐️⭐️☆☆ | 2.5 | 3.7 | [Chris Camacho](https://github.com/codifies) | +| 121 | [shaders_deferred_render](shaders/shaders_deferred_render.c) | shaders_deferred_render | ⭐️⭐️⭐️⭐️ | 4.5 | 4.5 | [Justin Andreas Lacoste](https://github.com/27justin) | ### category: audio @@ -186,10 +187,10 @@ Examples using raylib audio functionality, including sound/music loading and pla | ## | example | image | difficulty
level | version
created | last version
updated | original
developer | |----|----------|--------|:-------------------:|:------------------:|:------------------:|:----------| -| 119 | [audio_module_playing](audio/audio_module_playing.c) | audio_module_playing | ⭐️☆☆☆ | 1.5 | 3.5 | [Ray](https://github.com/raysan5) | -| 120 | [audio_music_stream](audio/audio_music_stream.c) | audio_music_stream | ⭐️☆☆☆ | 1.3 | **4.2** | [Ray](https://github.com/raysan5) | -| 121 | [audio_raw_stream](audio/audio_raw_stream.c) | audio_raw_stream | ⭐️⭐️⭐️☆ | 1.6 | **4.2** | [Ray](https://github.com/raysan5) | -| 122 | [audio_sound_loading](audio/audio_sound_loading.c) | audio_sound_loading | ⭐️☆☆☆ | 1.1 | 3.5 | [Ray](https://github.com/raysan5) | +| 122 | [audio_module_playing](audio/audio_module_playing.c) | audio_module_playing | ⭐️☆☆☆ | 1.5 | 3.5 | [Ray](https://github.com/raysan5) | +| 123 | [audio_music_stream](audio/audio_music_stream.c) | audio_music_stream | ⭐️☆☆☆ | 1.3 | **4.2** | [Ray](https://github.com/raysan5) | +| 124 | [audio_raw_stream](audio/audio_raw_stream.c) | audio_raw_stream | ⭐️⭐️⭐️☆ | 1.6 | **4.2** | [Ray](https://github.com/raysan5) | +| 125 | [audio_sound_loading](audio/audio_sound_loading.c) | audio_sound_loading | ⭐️☆☆☆ | 1.1 | 3.5 | [Ray](https://github.com/raysan5) | ### category: others @@ -197,11 +198,11 @@ Examples showing raylib misc functionality that does not fit in other categories | ## | example | image | difficulty
level | version
created | last version
updated | original
developer | |----|----------|--------|:-------------------:|:------------------:|:------------------:|:----------| -| 123 | [rlgl_standalone](others/rlgl_standalone.c) | rlgl_standalone | ⭐️⭐️⭐️⭐️ | 1.6 | **4.0** | [Ray](https://github.com/raysan5) | -| 124 | [rlgl_compute_shader](others/rlgl_compute_shader.c) | rlgl_compute_shader | ⭐️⭐️⭐️⭐️ | **4.0** | **4.0** | [Teddy Astie](https://github.com/tsnake41) | -| 125 | [easings_testbed](others/easings_testbed.c) | easings_testbed | ⭐️⭐️⭐️☆ | 3.0 | 3.0 | [Juan Miguel López](https://github.com/flashback-fx) | -| 126 | [raylib_opengl_interop](others/raylib_opengl_interop.c) | raylib_opengl_interop | ⭐️⭐️⭐️⭐️ | **4.0** | **4.0** | [Stephan Soller](https://github.com/arkanis) | -| 127 | [embedded_files_loading](others/embedded_files_loading.c) | embedded_files_loading | ⭐️⭐️☆☆ | 3.5 | 3.5 | [Kristian Holmgren](https://github.com/defutura) | +| 126 | [rlgl_standalone](others/rlgl_standalone.c) | rlgl_standalone | ⭐️⭐️⭐️⭐️ | 1.6 | **4.0** | [Ray](https://github.com/raysan5) | +| 127 | [rlgl_compute_shader](others/rlgl_compute_shader.c) | rlgl_compute_shader | ⭐️⭐️⭐️⭐️ | **4.0** | **4.0** | [Teddy Astie](https://github.com/tsnake41) | +| 128 | [easings_testbed](others/easings_testbed.c) | easings_testbed | ⭐️⭐️⭐️☆ | 3.0 | 3.0 | [Juan Miguel López](https://github.com/flashback-fx) | +| 129 | [raylib_opengl_interop](others/raylib_opengl_interop.c) | raylib_opengl_interop | ⭐️⭐️⭐️⭐️ | **4.0** | **4.0** | [Stephan Soller](https://github.com/arkanis) | +| 130 | [embedded_files_loading](others/embedded_files_loading.c) | embedded_files_loading | ⭐️⭐️☆☆ | 3.5 | 3.5 | [Kristian Holmgren](https://github.com/defutura) | As always contributions are welcome, feel free to send new examples! Here is an [examples template](examples_template.c) to start with! diff --git a/examples/audio/audio_mixed_processor.c b/examples/audio/audio_mixed_processor.c index fd970dd19..df46edc4e 100644 --- a/examples/audio/audio_mixed_processor.c +++ b/examples/audio/audio_mixed_processor.c @@ -97,7 +97,7 @@ int main(void) DrawRectangle(199, 199, 402, 34, LIGHTGRAY); for (int i = 0; i < 400; i++) { - DrawLine(201 + i, 232 - (int)averageVolume[i] * 32, 201 + i, 232, MAROON); + DrawLine(201 + i, 232 - (int)(averageVolume[i] * 32), 201 + i, 232, MAROON); } DrawRectangleLines(199, 199, 402, 34, GRAY); diff --git a/examples/core/core_automation_events.c b/examples/core/core_automation_events.c index 319b013ba..64ca51fda 100644 --- a/examples/core/core_automation_events.c +++ b/examples/core/core_automation_events.c @@ -88,7 +88,7 @@ int main(void) // Update //---------------------------------------------------------------------------------- float deltaTime = 0.015f;//GetFrameTime(); - + // Dropped files logic //---------------------------------------------------------------------------------- if (IsFileDropped()) @@ -157,11 +157,6 @@ int main(void) } else player.canJump = true; - camera.zoom += ((float)GetMouseWheelMove()*0.05f); - - if (camera.zoom > 3.0f) camera.zoom = 3.0f; - else if (camera.zoom < 0.25f) camera.zoom = 0.25f; - if (IsKeyPressed(KEY_R)) { // Reset game state @@ -176,12 +171,44 @@ int main(void) } //---------------------------------------------------------------------------------- + // Events playing + // NOTE: Logic must be before Camera update because it depends on mouse-wheel value, + // that can be set by the played event... but some other inputs could be affected + //---------------------------------------------------------------------------------- + if (eventPlaying) + { + // NOTE: Multiple events could be executed in a single frame + while (playFrameCounter == aelist.events[currentPlayFrame].frame) + { + PlayAutomationEvent(aelist.events[currentPlayFrame]); + currentPlayFrame++; + + if (currentPlayFrame == aelist.count) + { + eventPlaying = false; + currentPlayFrame = 0; + playFrameCounter = 0; + + TraceLog(LOG_INFO, "FINISH PLAYING!"); + break; + } + } + + playFrameCounter++; + } + //---------------------------------------------------------------------------------- + // Update camera //---------------------------------------------------------------------------------- camera.target = player.position; camera.offset = (Vector2){ screenWidth/2.0f, screenHeight/2.0f }; float minX = 1000, minY = 1000, maxX = -1000, maxY = -1000; + // WARNING: On event replay, mouse-wheel internal value is set + camera.zoom += ((float)GetMouseWheelMove()*0.05f); + if (camera.zoom > 3.0f) camera.zoom = 3.0f; + else if (camera.zoom < 0.25f) camera.zoom = 0.25f; + for (int i = 0; i < MAX_ENVIRONMENT_ELEMENTS; i++) { EnvElement *element = &envElements[i]; @@ -200,8 +227,8 @@ int main(void) if (min.y > 0) camera.offset.y = screenHeight/2 - min.y; //---------------------------------------------------------------------------------- - // Toggle events recording - if (IsKeyPressed(KEY_S)) + // Events management + if (IsKeyPressed(KEY_S)) // Toggle events recording { if (!eventPlaying) { @@ -222,7 +249,7 @@ int main(void) } } } - else if (IsKeyPressed(KEY_A)) + else if (IsKeyPressed(KEY_A)) // Toggle events playing (WARNING: Starts next frame) { if (!eventRecording && (aelist.count > 0)) { @@ -241,32 +268,7 @@ int main(void) camera.zoom = 1.0f; } } - - if (eventPlaying) - { - // NOTE: Multiple events could be executed in a single frame - while (playFrameCounter == aelist.events[currentPlayFrame].frame) - { - TraceLog(LOG_INFO, "PLAYING: PlayFrameCount: %i | currentPlayFrame: %i | Event Frame: %i, param: %i", - playFrameCounter, currentPlayFrame, aelist.events[currentPlayFrame].frame, aelist.events[currentPlayFrame].params[0]); - - PlayAutomationEvent(aelist.events[currentPlayFrame]); - currentPlayFrame++; - if (currentPlayFrame == aelist.count) - { - eventPlaying = false; - currentPlayFrame = 0; - playFrameCounter = 0; - - TraceLog(LOG_INFO, "FINISH PLAYING!"); - break; - } - } - - playFrameCounter++; - } - if (eventRecording || eventPlaying) frameCounter++; else frameCounter = 0; //---------------------------------------------------------------------------------- diff --git a/examples/core/core_input_gamepad.c b/examples/core/core_input_gamepad.c index 656f7c244..538e1c389 100644 --- a/examples/core/core_input_gamepad.c +++ b/examples/core/core_input_gamepad.c @@ -20,9 +20,9 @@ #include "raylib.h" // NOTE: Gamepad name ID depends on drivers and OS -#define XBOX360_LEGACY_NAME_ID "Xbox Controller" -#define XBOX360_NAME_ID "Xbox 360 Controller" -#define PS3_NAME_ID "Sony PLAYSTATION(R)3 Controller" +#define XBOX_ALIAS_1 "xbox" +#define XBOX_ALIAS_2 "x-box" +#define PS_ALIAS "playstation" //------------------------------------------------------------------------------------ // Program main entry point @@ -41,6 +41,14 @@ int main(void) Texture2D texPs3Pad = LoadTexture("resources/ps3.png"); Texture2D texXboxPad = LoadTexture("resources/xbox.png"); + // Set axis deadzones + const float leftStickDeadzoneX = 0.1f; + const float leftStickDeadzoneY = 0.1f; + const float rightStickDeadzoneX = 0.1f; + const float rightStickDeadzoneY = 0.1f; + const float leftTriggerDeadzone = -0.9f; + const float rightTriggerDeadzone = -0.9f; + SetTargetFPS(60); // Set our game to run at 60 frames-per-second //-------------------------------------------------------------------------------------- @@ -67,7 +75,23 @@ int main(void) { DrawText(TextFormat("GP%d: %s", gamepad, GetGamepadName(gamepad)), 10, 10, 10, BLACK); - if (TextIsEqual(GetGamepadName(gamepad), XBOX360_LEGACY_NAME_ID) || TextIsEqual(GetGamepadName(gamepad), XBOX360_NAME_ID)) + // Get axis values + float leftStickX = GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_LEFT_X); + float leftStickY = GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_LEFT_Y); + float rightStickX = GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_RIGHT_X); + float rightStickY = GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_RIGHT_Y); + float leftTrigger = GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_LEFT_TRIGGER); + float rightTrigger = GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_RIGHT_TRIGGER); + + // Calculate deadzones + if (leftStickX > -leftStickDeadzoneX && leftStickX < leftStickDeadzoneX) leftStickX = 0.0f; + if (leftStickY > -leftStickDeadzoneY && leftStickY < leftStickDeadzoneY) leftStickY = 0.0f; + if (rightStickX > -rightStickDeadzoneX && rightStickX < rightStickDeadzoneX) rightStickX = 0.0f; + if (rightStickY > -rightStickDeadzoneY && rightStickY < rightStickDeadzoneY) rightStickY = 0.0f; + if (leftTrigger < leftTriggerDeadzone) leftTrigger = -1.0f; + if (rightTrigger < rightTriggerDeadzone) rightTrigger = -1.0f; + + if (TextFindIndex(TextToLower(GetGamepadName(gamepad)), XBOX_ALIAS_1) > -1 || TextFindIndex(TextToLower(GetGamepadName(gamepad)), XBOX_ALIAS_2) > -1) { DrawTexture(texXboxPad, 0, 0, DARKGRAY); @@ -95,32 +119,31 @@ int main(void) if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_RIGHT_TRIGGER_1)) DrawCircle(536, 61, 20, RED); // Draw axis: left joystick - Color leftGamepadColor = BLACK; if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_LEFT_THUMB)) leftGamepadColor = RED; DrawCircle(259, 152, 39, BLACK); DrawCircle(259, 152, 34, LIGHTGRAY); - DrawCircle(259 + (int)(GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_LEFT_X)*20), - 152 + (int)(GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_LEFT_Y)*20), 25, leftGamepadColor); + DrawCircle(259 + (int)(leftStickX*20), + 152 + (int)(leftStickY*20), 25, leftGamepadColor); // Draw axis: right joystick Color rightGamepadColor = BLACK; if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_RIGHT_THUMB)) rightGamepadColor = RED; DrawCircle(461, 237, 38, BLACK); DrawCircle(461, 237, 33, LIGHTGRAY); - DrawCircle(461 + (int)(GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_RIGHT_X)*20), - 237 + (int)(GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_RIGHT_Y)*20), 25, rightGamepadColor); + DrawCircle(461 + (int)(rightStickX*20), + 237 + (int)(rightStickY*20), 25, rightGamepadColor); // Draw axis: left-right triggers DrawRectangle(170, 30, 15, 70, GRAY); DrawRectangle(604, 30, 15, 70, GRAY); - DrawRectangle(170, 30, 15, (int)(((1 + GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_LEFT_TRIGGER))/2)*70), RED); - DrawRectangle(604, 30, 15, (int)(((1 + GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_RIGHT_TRIGGER))/2)*70), RED); + DrawRectangle(170, 30, 15, (int)(((1 + leftTrigger)/2)*70), RED); + DrawRectangle(604, 30, 15, (int)(((1 + rightTrigger)/2)*70), RED); //DrawText(TextFormat("Xbox axis LT: %02.02f", GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_LEFT_TRIGGER)), 10, 40, 10, BLACK); //DrawText(TextFormat("Xbox axis RT: %02.02f", GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_RIGHT_TRIGGER)), 10, 60, 10, BLACK); } - else if (TextIsEqual(GetGamepadName(gamepad), PS3_NAME_ID)) + else if (TextFindIndex(TextToLower(GetGamepadName(gamepad)), PS_ALIAS) > -1) { DrawTexture(texPs3Pad, 0, 0, DARKGRAY); @@ -150,30 +173,85 @@ int main(void) // Draw axis: left joystick Color leftGamepadColor = BLACK; if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_LEFT_THUMB)) leftGamepadColor = RED; - DrawCircle(319, 255, 35, leftGamepadColor); + DrawCircle(319, 255, 35, BLACK); DrawCircle(319, 255, 31, LIGHTGRAY); - DrawCircle(319 + (int)(GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_LEFT_X) * 20), - 255 + (int)(GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_LEFT_Y) * 20), 25, leftGamepadColor); + DrawCircle(319 + (int)(leftStickX*20), + 255 + (int)(leftStickY*20), 25, leftGamepadColor); // Draw axis: right joystick Color rightGamepadColor = BLACK; if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_RIGHT_THUMB)) rightGamepadColor = RED; DrawCircle(475, 255, 35, BLACK); DrawCircle(475, 255, 31, LIGHTGRAY); - DrawCircle(475 + (int)(GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_RIGHT_X) * 20), - 255 + (int)(GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_RIGHT_Y) * 20), 25, rightGamepadColor); + DrawCircle(475 + (int)(rightStickX*20), + 255 + (int)(rightStickY*20), 25, rightGamepadColor); // Draw axis: left-right triggers DrawRectangle(169, 48, 15, 70, GRAY); DrawRectangle(611, 48, 15, 70, GRAY); - DrawRectangle(169, 48, 15, (int)(((1 - GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_LEFT_TRIGGER)) / 2) * 70), RED); - DrawRectangle(611, 48, 15, (int)(((1 - GetGamepadAxisMovement(gamepad, GAMEPAD_AXIS_RIGHT_TRIGGER)) / 2) * 70), RED); + DrawRectangle(169, 48, 15, (int)(((1 + leftTrigger)/2)*70), RED); + DrawRectangle(611, 48, 15, (int)(((1 + rightTrigger)/2)*70), RED); } else { - DrawText("- GENERIC GAMEPAD -", 280, 180, 20, GRAY); - // TODO: Draw generic gamepad + // Draw background: generic + DrawRectangleRounded((Rectangle){ 175, 110, 460, 220}, 0.3f, 0.0f, DARKGRAY); + + // Draw buttons: basic + DrawCircle(365, 170, 12, RAYWHITE); + DrawCircle(405, 170, 12, RAYWHITE); + DrawCircle(445, 170, 12, RAYWHITE); + DrawCircle(516, 191, 17, RAYWHITE); + DrawCircle(551, 227, 17, RAYWHITE); + DrawCircle(587, 191, 17, RAYWHITE); + DrawCircle(551, 155, 17, RAYWHITE); + if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_MIDDLE_LEFT)) DrawCircle(365, 170, 10, RED); + if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_MIDDLE)) DrawCircle(405, 170, 10, GREEN); + if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_MIDDLE_RIGHT)) DrawCircle(445, 170, 10, BLUE); + if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_RIGHT_FACE_LEFT)) DrawCircle(516, 191, 15, GOLD); + if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_RIGHT_FACE_DOWN)) DrawCircle(551, 227, 15, BLUE); + if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_RIGHT_FACE_RIGHT)) DrawCircle(587, 191, 15, GREEN); + if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_RIGHT_FACE_UP)) DrawCircle(551, 155, 15, RED); + + // Draw buttons: d-pad + DrawRectangle(245, 145, 28, 88, RAYWHITE); + DrawRectangle(215, 174, 88, 29, RAYWHITE); + DrawRectangle(247, 147, 24, 84, BLACK); + DrawRectangle(217, 176, 84, 25, BLACK); + if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_LEFT_FACE_UP)) DrawRectangle(247, 147, 24, 29, RED); + if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_LEFT_FACE_DOWN)) DrawRectangle(247, 147 + 54, 24, 30, RED); + if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_LEFT_FACE_LEFT)) DrawRectangle(217, 176, 30, 25, RED); + if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_LEFT_FACE_RIGHT)) DrawRectangle(217 + 54, 176, 30, 25, RED); + + // Draw buttons: left-right back + DrawRectangleRounded((Rectangle){ 215, 98, 100, 10}, 0.5f, 0.0f, DARKGRAY); + DrawRectangleRounded((Rectangle){ 495, 98, 100, 10}, 0.5f, 0.0f, DARKGRAY); + if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_LEFT_TRIGGER_1)) DrawRectangleRounded((Rectangle){ 215, 98, 100, 10}, 0.5f, 0.0f, RED); + if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_RIGHT_TRIGGER_1)) DrawRectangleRounded((Rectangle){ 495, 98, 100, 10}, 0.5f, 0.0f, RED); + + // Draw axis: left joystick + Color leftGamepadColor = BLACK; + if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_LEFT_THUMB)) leftGamepadColor = RED; + DrawCircle(345, 260, 40, BLACK); + DrawCircle(345, 260, 35, LIGHTGRAY); + DrawCircle(345 + (int)(leftStickX*20), + 260 + (int)(leftStickY*20), 25, leftGamepadColor); + + // Draw axis: right joystick + Color rightGamepadColor = BLACK; + if (IsGamepadButtonDown(gamepad, GAMEPAD_BUTTON_RIGHT_THUMB)) rightGamepadColor = RED; + DrawCircle(465, 260, 40, BLACK); + DrawCircle(465, 260, 35, LIGHTGRAY); + DrawCircle(465 + (int)(rightStickX*20), + 260 + (int)(rightStickY*20), 25, rightGamepadColor); + + // Draw axis: left-right triggers + DrawRectangle(151, 110, 15, 70, GRAY); + DrawRectangle(644, 110, 15, 70, GRAY); + DrawRectangle(151, 110, 15, (int)(((1 + leftTrigger)/2)*70), RED); + DrawRectangle(644, 110, 15, (int)(((1 + rightTrigger)/2)*70), RED); + } DrawText(TextFormat("DETECTED AXIS [%i]:", GetGamepadAxisCount(0)), 10, 50, 10, MAROON); diff --git a/examples/core/core_input_gamepad_info.c b/examples/core/core_input_gamepad_info.c index 66fedda90..096294681 100644 --- a/examples/core/core_input_gamepad_info.c +++ b/examples/core/core_input_gamepad_info.c @@ -47,25 +47,25 @@ int main(void) ClearBackground(RAYWHITE); - for (int i = 0, y = 10; i < 4; i++) // MAX_GAMEPADS = 4 + for (int i = 0, y = 5; i < 4; i++) // MAX_GAMEPADS = 4 { if (IsGamepadAvailable(i)) { - DrawText(TextFormat("Gamepad name: %s", GetGamepadName(i)), 10, y, 20, BLACK); - y += 30; - DrawText(TextFormat("\tAxis count: %d", GetGamepadAxisCount(i)), 10, y, 20, BLACK); - y += 30; + DrawText(TextFormat("Gamepad name: %s", GetGamepadName(i)), 10, y, 10, BLACK); + y += 11; + DrawText(TextFormat("\tAxis count: %d", GetGamepadAxisCount(i)), 10, y, 10, BLACK); + y += 11; for (int axis = 0; axis < GetGamepadAxisCount(i); axis++) { - DrawText(TextFormat("\tAxis %d = %f", axis, GetGamepadAxisMovement(i, axis)), 10, y, 20, BLACK); - y += 30; + DrawText(TextFormat("\tAxis %d = %f", axis, GetGamepadAxisMovement(i, axis)), 10, y, 10, BLACK); + y += 11; } for (int button = 0; button < 32; button++) { - DrawText(TextFormat("\tButton %d = %d", button, IsGamepadButtonDown(i, button)), 10, y, 20, BLACK); - y += 30; + DrawText(TextFormat("\tButton %d = %d", button, IsGamepadButtonDown(i, button)), 10, y, 10, BLACK); + y += 11; } } } @@ -80,4 +80,4 @@ int main(void) //-------------------------------------------------------------------------------------- CloseWindow(); // Close window and OpenGL context //-------------------------------------------------------------------------------------- -} \ No newline at end of file +} diff --git a/examples/core/core_input_virtual_controls.c b/examples/core/core_input_virtual_controls.c new file mode 100644 index 000000000..2d2b91e67 --- /dev/null +++ b/examples/core/core_input_virtual_controls.c @@ -0,0 +1,123 @@ +/******************************************************************************************* +* +* raylib [core] example - input virtual controls +* +* Example originally created with raylib 5.0, last time updated with raylib 5.0 +* +* Example create by GreenSnakeLinux (@GreenSnakeLinux), +* lighter by oblerion (@oblerion) and +* reviewed by Ramon Santamaria (@raysan5) +* +* Example licensed under an unmodified zlib/libpng license, which is an OSI-certified, +* BSD-like license that allows static linking with closed source software +* +* Copyright (c) 2024 Ramon Santamaria (@raysan5) +* +********************************************************************************************/ + +#include "raylib.h" +#include +//------------------------------------------------------------------------------------ +// Program main entry point +//------------------------------------------------------------------------------------ +int main(void) +{ + // Initialization + //-------------------------------------------------------------------------------------- + const int screenWidth = 800; + const int screenHeight = 450; + + InitWindow(screenWidth, screenHeight, "raylib [core] example - input virtual controls"); + + const int dpadX = 90; + const int dpadY = 300; + const int dpadRad = 25;//radius of each pad + Color dpadColor = BLUE; + int dpadKeydown = -1;//-1 if not down, else 0,1,2,3 + + + const float dpadCollider[4][2]= // collider array with x,y position + { + {dpadX,dpadY-dpadRad*1.5},//up + {dpadX-dpadRad*1.5,dpadY},//left + {dpadX+dpadRad*1.5,dpadY},//right + {dpadX,dpadY+dpadRad*1.5}//down + }; + const char dpadLabel[4]="XYBA";//label of Dpad + + float playerX=100; + float playerY=100; + + SetTargetFPS(60); + //-------------------------------------------------------------------------------------- + + // Main game loop + while (!WindowShouldClose()) // Detect window close button or ESC key + { + // Update + //-------------------------------------------------------------------------- + dpadKeydown = -1; //reset + float inputX=0; + float inputY=0; + if(GetTouchPointCount()>0) + {//use touch pos + inputX = GetTouchX(); + inputY = GetTouchY(); + } + else + {//use mouse pos + inputX = GetMouseX(); + inputY = GetMouseY(); + } + for(int i=0;i<4;i++) + { + //test distance each collider and input < radius + if( fabsf(dpadCollider[i][1]-inputY) + fabsf(dpadCollider[i][0]-inputX) < dpadRad) + { + dpadKeydown = i; + break; + } + } + // move player + switch(dpadKeydown){ + case 0: playerY -= 50*GetFrameTime(); + break; + case 1: playerX -= 50*GetFrameTime(); + break; + case 2: playerX += 50*GetFrameTime(); + break; + case 3: playerY += 50*GetFrameTime(); + default:; + }; + //-------------------------------------------------------------------------- + // Draw + //-------------------------------------------------------------------------- + BeginDrawing(); + ClearBackground(RAYWHITE); + for(int i=0;i<4;i++) + { + //draw all pad + DrawCircle(dpadCollider[i][0],dpadCollider[i][1],dpadRad,dpadColor); + if(i!=dpadKeydown) + { + //draw label + DrawText(TextSubtext(dpadLabel,i,1), + dpadCollider[i][0]-7, + dpadCollider[i][1]-8,20,BLACK); + } + } + + DrawRectangle(playerX-4,playerY-4,75,28,RED); + DrawText("Player",playerX,playerY,20,WHITE); + EndDrawing(); + //-------------------------------------------------------------------------- + } + + // De-Initialization + //-------------------------------------------------------------------------------------- + CloseWindow(); // Close window and OpenGL context + //-------------------------------------------------------------------------------------- + + return 0; +} + diff --git a/examples/core/core_input_virtual_controls.png b/examples/core/core_input_virtual_controls.png new file mode 100644 index 000000000..cb1444598 Binary files /dev/null and b/examples/core/core_input_virtual_controls.png differ diff --git a/examples/core/core_vr_simulator.c b/examples/core/core_vr_simulator.c index c98fce931..021698edb 100644 --- a/examples/core/core_vr_simulator.c +++ b/examples/core/core_vr_simulator.c @@ -100,7 +100,7 @@ int main(void) DisableCursor(); // Limit cursor to relative movement inside the window - SetTargetFPS(90); // Set our game to run at 90 frames-per-second + SetTargetFPS(60); // Set our game to run at 60 frames-per-second //-------------------------------------------------------------------------------------- // Main game loop diff --git a/examples/models/models_box_collisions.c b/examples/models/models_box_collisions.c index 936f65f38..4d98a776a 100644 --- a/examples/models/models_box_collisions.c +++ b/examples/models/models_box_collisions.c @@ -109,7 +109,7 @@ int main(void) EndMode3D(); - DrawText("Move player with cursors to collide", 220, 40, 20, GRAY); + DrawText("Move player with arrow keys to collide", 220, 40, 20, GRAY); DrawFPS(10, 10); diff --git a/examples/models/models_gpu_skinning.c b/examples/models/models_gpu_skinning.c new file mode 100644 index 000000000..7e81b0d82 --- /dev/null +++ b/examples/models/models_gpu_skinning.c @@ -0,0 +1,119 @@ +/******************************************************************************************* +* +* raylib [core] example - Doing skinning on the gpu using a vertex shader +* +* Example originally created with raylib 4.5, last time updated with raylib 4.5 +* +* Example contributed by Daniel Holden (@orangeduck) and reviewed by Ramon Santamaria (@raysan5) +* +* Example licensed under an unmodified zlib/libpng license, which is an OSI-certified, +* BSD-like license that allows static linking with closed source software +* +* Copyright (c) 2024 Daniel Holden (@orangeduck) +* +* Note: Due to limitations in the Apple OpenGL driver, this feature does not work on MacOS +* +********************************************************************************************/ + +#include "raylib.h" + +#include "raymath.h" + +#if defined(PLATFORM_DESKTOP) + #define GLSL_VERSION 330 +#else // PLATFORM_ANDROID, PLATFORM_WEB + #define GLSL_VERSION 100 +#endif + +//------------------------------------------------------------------------------------ +// Program main entry point +//------------------------------------------------------------------------------------ +int main(void) +{ + // Initialization + //-------------------------------------------------------------------------------------- + const int screenWidth = 800; + const int screenHeight = 450; + + InitWindow(screenWidth, screenHeight, "raylib [models] example - GPU skinning"); + + // Define the camera to look into our 3d world + Camera camera = { 0 }; + camera.position = (Vector3){ 5.0f, 5.0f, 5.0f }; // Camera position + camera.target = (Vector3){ 0.0f, 2.0f, 0.0f }; // Camera looking at point + camera.up = (Vector3){ 0.0f, 1.0f, 0.0f }; // Camera up vector (rotation towards target) + camera.fovy = 45.0f; // Camera field-of-view Y + camera.projection = CAMERA_PERSPECTIVE; // Camera projection type + + // Load gltf model + Model characterModel = LoadModel("resources/models/gltf/greenman.glb"); // Load character model + + // Load skinning shader + Shader skinningShader = LoadShader(TextFormat("resources/shaders/glsl%i/skinning.vs", GLSL_VERSION), + TextFormat("resources/shaders/glsl%i/skinning.fs", GLSL_VERSION)); + + characterModel.materials[1].shader = skinningShader; + + // Load gltf model animations + int animsCount = 0; + unsigned int animIndex = 0; + unsigned int animCurrentFrame = 0; + ModelAnimation *modelAnimations = LoadModelAnimations("resources/models/gltf/greenman.glb", &animsCount); + + Vector3 position = { 0.0f, 0.0f, 0.0f }; // Set model position + + DisableCursor(); // Limit cursor to relative movement inside the window + + SetTargetFPS(60); // Set our game to run at 60 frames-per-second + //-------------------------------------------------------------------------------------- + + // Main game loop + while (!WindowShouldClose()) // Detect window close button or ESC key + { + // Update + //---------------------------------------------------------------------------------- + UpdateCamera(&camera, CAMERA_THIRD_PERSON); + + // Select current animation + if (IsKeyPressed(KEY_T)) animIndex = (animIndex + 1)%animsCount; + else if (IsKeyPressed(KEY_G)) animIndex = (animIndex + animsCount - 1)%animsCount; + + // Update model animation + ModelAnimation anim = modelAnimations[animIndex]; + animCurrentFrame = (animCurrentFrame + 1)%anim.frameCount; + characterModel.transform = MatrixTranslate(position.x, position.y, position.z); + UpdateModelAnimationBoneMatrices(characterModel, anim, animCurrentFrame); + //---------------------------------------------------------------------------------- + + // Draw + //---------------------------------------------------------------------------------- + BeginDrawing(); + + ClearBackground(RAYWHITE); + + BeginMode3D(camera); + + // Draw character mesh, pose calculation is done in shader (GPU skinning) + DrawMesh(characterModel.meshes[0], characterModel.materials[1], characterModel.transform); + + DrawGrid(10, 1.0f); + + EndMode3D(); + + DrawText("Use the T/G to switch animation", 10, 10, 20, GRAY); + + EndDrawing(); + //---------------------------------------------------------------------------------- + } + + // De-Initialization + //-------------------------------------------------------------------------------------- + UnloadModelAnimations(modelAnimations, animsCount); // Unload model animation + UnloadModel(characterModel); // Unload model and meshes/material + UnloadShader(skinningShader); // Unload GPU skinning shader + + CloseWindow(); // Close window and OpenGL context + //-------------------------------------------------------------------------------------- + + return 0; +} \ No newline at end of file diff --git a/examples/models/models_point_rendering.c b/examples/models/models_point_rendering.c new file mode 100644 index 000000000..68d498453 --- /dev/null +++ b/examples/models/models_point_rendering.c @@ -0,0 +1,182 @@ +/******************************************************************************************* +* +* raylib example - point rendering +* +* Example originally created with raylib 5.0, last time updated with raylib 5.0 +* +* Example contributed by Reese Gallagher (@satchelfrost) and reviewed by Ramon Santamaria (@raysan5) +* +* Example licensed under an unmodified zlib/libpng license, which is an OSI-certified, +* BSD-like license that allows static linking with closed source software +* +* Copyright (c) 2024 Reese Gallagher (@satchelfrost) +* +********************************************************************************************/ + +#include "raylib.h" + +#include // Required for: rand() +#include // Required for: cos(), sin() + +#define MAX_POINTS 10000000 // 10 million +#define MIN_POINTS 1000 // 1 thousand + +// Generate mesh using points +Mesh GenMeshPoints(int numPoints); + +//------------------------------------------------------------------------------------ +// Program main entry point +//------------------------------------------------------------------------------------ +int main() +{ + // Initialization + //-------------------------------------------------------------------------------------- + const int screenWidth = 800; + const int screenHeight = 450; + + InitWindow(screenWidth, screenHeight, "raylib [models] example - point rendering"); + + Camera camera = { + .position = { 3.0f, 3.0f, 3.0f }, + .target = { 0.0f, 0.0f, 0.0f }, + .up = { 0.0f, 1.0f, 0.0f }, + .fovy = 45.0f, + .projection = CAMERA_PERSPECTIVE + }; + + Vector3 position = { 0.0f, 0.0f, 0.0f }; + bool useDrawModelPoints = true; + bool numPointsChanged = false; + int numPoints = 1000; + + Mesh mesh = GenMeshPoints(numPoints); + Model model = LoadModelFromMesh(mesh); + + //SetTargetFPS(60); + //-------------------------------------------------------------------------------------- + + // Main game loop + while(!WindowShouldClose()) + { + // Update + //---------------------------------------------------------------------------------- + UpdateCamera(&camera, CAMERA_ORBITAL); + + if (IsKeyPressed(KEY_SPACE)) useDrawModelPoints = !useDrawModelPoints; + if (IsKeyPressed(KEY_UP)) + { + numPoints = (numPoints*10 > MAX_POINTS)? MAX_POINTS : numPoints*10; + numPointsChanged = true; + } + if (IsKeyPressed(KEY_DOWN)) + { + numPoints = (numPoints/10 < MIN_POINTS)? MIN_POINTS : numPoints/10; + numPointsChanged = true; + } + + // Upload a different point cloud size + if (numPointsChanged) + { + UnloadModel(model); + mesh = GenMeshPoints(numPoints); + model = LoadModelFromMesh(mesh); + numPointsChanged = false; + } + //---------------------------------------------------------------------------------- + + // Draw + //---------------------------------------------------------------------------------- + BeginDrawing(); + ClearBackground(BLACK); + + BeginMode3D(camera); + + // The new method only uploads the points once to the GPU + if (useDrawModelPoints) + { + DrawModelPoints(model, position, 1.0f, WHITE); + } + else + { + // The old method must continually draw the "points" (lines) + for (int i = 0; i < numPoints; i++) + { + Vector3 pos = { + .x = mesh.vertices[i*3 + 0], + .y = mesh.vertices[i*3 + 1], + .z = mesh.vertices[i*3 + 2], + }; + Color color = { + .r = mesh.colors[i*4 + 0], + .g = mesh.colors[i*4 + 1], + .b = mesh.colors[i*4 + 2], + .a = mesh.colors[i*4 + 3], + }; + + DrawPoint3D(pos, color); + } + } + + // Draw a unit sphere for reference + DrawSphereWires(position, 1.0f, 10, 10, YELLOW); + + EndMode3D(); + + // Draw UI text + DrawText(TextFormat("Point Count: %d", numPoints), 20, screenHeight - 50, 40, WHITE); + DrawText("Up - increase points", 20, 70, 20, WHITE); + DrawText("Down - decrease points", 20, 100, 20, WHITE); + DrawText("Space - drawing function", 20, 130, 20, WHITE); + + if (useDrawModelPoints) DrawText("Using: DrawModelPoints()", 20, 160, 20, GREEN); + else DrawText("Using: DrawPoint3D()", 20, 160, 20, RED); + + DrawFPS(10, 10); + + EndDrawing(); + //---------------------------------------------------------------------------------- + } + + // De-Initialization + //-------------------------------------------------------------------------------------- + UnloadModel(model); + + CloseWindow(); + //-------------------------------------------------------------------------------------- + return 0; +} + +// Generate a spherical point cloud +Mesh GenMeshPoints(int numPoints) +{ + Mesh mesh = { + .triangleCount = 1, + .vertexCount = numPoints, + .vertices = (float *)MemAlloc(numPoints*3*sizeof(float)), + .colors = (unsigned char*)MemAlloc(numPoints*4*sizeof(unsigned char)), + }; + + // https://en.wikipedia.org/wiki/Spherical_coordinate_system + for (int i = 0; i < numPoints; i++) + { + float theta = PI*rand()/RAND_MAX; + float phi = 2.0f*PI*rand()/RAND_MAX; + float r = 10.0f*rand()/RAND_MAX; + + mesh.vertices[i*3 + 0] = r*sin(theta)*cos(phi); + mesh.vertices[i*3 + 1] = r*sin(theta)*sin(phi); + mesh.vertices[i*3 + 2] = r*cos(theta); + + Color color = ColorFromHSV(r*360.0f, 1.0f, 1.0f); + + mesh.colors[i*4 + 0] = color.r; + mesh.colors[i*4 + 1] = color.g; + mesh.colors[i*4 + 2] = color.b; + mesh.colors[i*4 + 3] = color.a; + } + + // Upload mesh data from CPU (RAM) to GPU (VRAM) memory + UploadMesh(&mesh, false); + + return mesh; +} diff --git a/examples/models/models_point_rendering.png b/examples/models/models_point_rendering.png new file mode 100644 index 000000000..a1fc718e4 Binary files /dev/null and b/examples/models/models_point_rendering.png differ diff --git a/examples/models/models_skybox.c b/examples/models/models_skybox.c index fc9627b42..4689acd77 100644 --- a/examples/models/models_skybox.c +++ b/examples/models/models_skybox.c @@ -191,7 +191,7 @@ static TextureCubemap GenTextureCubemap(Shader shader, Texture2D panorama, int s // STEP 1: Setup framebuffer //------------------------------------------------------------------------------------------ unsigned int rbo = rlLoadTextureDepth(size, size, true); - cubemap.id = rlLoadTextureCubemap(0, size, format); + cubemap.id = rlLoadTextureCubemap(0, size, format, 1); unsigned int fbo = rlLoadFramebuffer(); rlFramebufferAttach(fbo, rbo, RL_ATTACHMENT_DEPTH, RL_ATTACHMENT_RENDERBUFFER, 0); diff --git a/examples/models/models_yaw_pitch_roll.c b/examples/models/models_yaw_pitch_roll.c index 91a11f73c..5374c035e 100644 --- a/examples/models/models_yaw_pitch_roll.c +++ b/examples/models/models_yaw_pitch_roll.c @@ -114,6 +114,7 @@ int main(void) // De-Initialization //-------------------------------------------------------------------------------------- UnloadModel(model); // Unload model data + UnloadTexture(texture); // Unload texture data CloseWindow(); // Close window and OpenGL context //-------------------------------------------------------------------------------------- diff --git a/examples/models/resources/shaders/glsl100/skinning.fs b/examples/models/resources/shaders/glsl100/skinning.fs new file mode 100644 index 000000000..96bcabe01 --- /dev/null +++ b/examples/models/resources/shaders/glsl100/skinning.fs @@ -0,0 +1,20 @@ +#version 100 + +precision mediump float; + +// Input vertex attributes (from vertex shader) +varying vec2 fragTexCoord; +varying vec4 fragColor; + +// Input uniform values +uniform sampler2D texture0; +uniform vec4 colDiffuse; + +void main() +{ + // Fetch color from texture sampler + vec4 texelColor = texture2D(texture0, fragTexCoord); + + // Calculate final fragment color + gl_FragColor = texelColor*colDiffuse*fragColor; +} diff --git a/examples/models/resources/shaders/glsl100/skinning.vs b/examples/models/resources/shaders/glsl100/skinning.vs new file mode 100644 index 000000000..627a7dda4 --- /dev/null +++ b/examples/models/resources/shaders/glsl100/skinning.vs @@ -0,0 +1,59 @@ +#version 100 + +#define MAX_BONE_NUM 64 + +// Input vertex attributes +attribute vec3 vertexPosition; +attribute vec2 vertexTexCoord; +attribute vec4 vertexColor; +attribute vec4 vertexBoneIds; +attribute vec4 vertexBoneWeights; + +// Input uniform values +uniform mat4 mvp; +uniform mat4 boneMatrices[MAX_BONE_NUM]; + +// Output vertex attributes (to fragment shader) +varying vec2 fragTexCoord; +varying vec4 fragColor; + +void main() +{ + int boneIndex0 = int(vertexBoneIds.x); + int boneIndex1 = int(vertexBoneIds.y); + int boneIndex2 = int(vertexBoneIds.z); + int boneIndex3 = int(vertexBoneIds.w); + + // WARNING: OpenGL ES 2.0 does not support automatic matrix transposing, neither transpose() function + mat4 boneMatrixTransposed0 = mat4( + vec4(boneMatrices[boneIndex0][0].x, boneMatrices[boneIndex0][1].x, boneMatrices[boneIndex0][2].x, boneMatrices[boneIndex0][3].x), + vec4(boneMatrices[boneIndex0][0].y, boneMatrices[boneIndex0][1].y, boneMatrices[boneIndex0][2].y, boneMatrices[boneIndex0][3].y), + vec4(boneMatrices[boneIndex0][0].z, boneMatrices[boneIndex0][1].z, boneMatrices[boneIndex0][2].z, boneMatrices[boneIndex0][3].z), + vec4(boneMatrices[boneIndex0][0].w, boneMatrices[boneIndex0][1].w, boneMatrices[boneIndex0][2].w, boneMatrices[boneIndex0][3].w)); + mat4 boneMatrixTransposed1 = mat4( + vec4(boneMatrices[boneIndex1][0].x, boneMatrices[boneIndex1][1].x, boneMatrices[boneIndex1][2].x, boneMatrices[boneIndex1][3].x), + vec4(boneMatrices[boneIndex1][0].y, boneMatrices[boneIndex1][1].y, boneMatrices[boneIndex1][2].y, boneMatrices[boneIndex1][3].y), + vec4(boneMatrices[boneIndex1][0].z, boneMatrices[boneIndex1][1].z, boneMatrices[boneIndex1][2].z, boneMatrices[boneIndex1][3].z), + vec4(boneMatrices[boneIndex1][0].w, boneMatrices[boneIndex1][1].w, boneMatrices[boneIndex1][2].w, boneMatrices[boneIndex1][3].w)); + mat4 boneMatrixTransposed2 = mat4( + vec4(boneMatrices[boneIndex2][0].x, boneMatrices[boneIndex2][1].x, boneMatrices[boneIndex2][2].x, boneMatrices[boneIndex2][3].x), + vec4(boneMatrices[boneIndex2][0].y, boneMatrices[boneIndex2][1].y, boneMatrices[boneIndex2][2].y, boneMatrices[boneIndex2][3].y), + vec4(boneMatrices[boneIndex2][0].z, boneMatrices[boneIndex2][1].z, boneMatrices[boneIndex2][2].z, boneMatrices[boneIndex2][3].z), + vec4(boneMatrices[boneIndex2][0].w, boneMatrices[boneIndex2][1].w, boneMatrices[boneIndex2][2].w, boneMatrices[boneIndex2][3].w)); + mat4 boneMatrixTransposed3 = mat4( + vec4(boneMatrices[boneIndex3][0].x, boneMatrices[boneIndex3][1].x, boneMatrices[boneIndex3][2].x, boneMatrices[boneIndex3][3].x), + vec4(boneMatrices[boneIndex3][0].y, boneMatrices[boneIndex3][1].y, boneMatrices[boneIndex3][2].y, boneMatrices[boneIndex3][3].y), + vec4(boneMatrices[boneIndex3][0].z, boneMatrices[boneIndex3][1].z, boneMatrices[boneIndex3][2].z, boneMatrices[boneIndex3][3].z), + vec4(boneMatrices[boneIndex3][0].w, boneMatrices[boneIndex3][1].w, boneMatrices[boneIndex3][2].w, boneMatrices[boneIndex3][3].w)); + + vec4 skinnedPosition = + vertexBoneWeights.x*(boneMatrixTransposed0*vec4(vertexPosition, 1.0)) + + vertexBoneWeights.y*(boneMatrixTransposed1*vec4(vertexPosition, 1.0)) + + vertexBoneWeights.z*(boneMatrixTransposed2*vec4(vertexPosition, 1.0)) + + vertexBoneWeights.w*(boneMatrixTransposed3*vec4(vertexPosition, 1.0)); + + fragTexCoord = vertexTexCoord; + fragColor = vertexColor; + + gl_Position = mvp*skinnedPosition; +} \ No newline at end of file diff --git a/examples/models/resources/shaders/glsl330/skinning.fs b/examples/models/resources/shaders/glsl330/skinning.fs new file mode 100644 index 000000000..d4311ffcc --- /dev/null +++ b/examples/models/resources/shaders/glsl330/skinning.fs @@ -0,0 +1,17 @@ +#version 330 + +// Input vertex attributes (from vertex shader) +in vec2 fragTexCoord; +in vec4 fragColor; + +// Output fragment color +out vec4 finalColor; + +uniform sampler2D texture0; +uniform vec4 colDiffuse; + +void main() +{ + vec4 texelColor = texture(texture0, fragTexCoord); + finalColor = texelColor*colDiffuse*fragColor; +} diff --git a/examples/models/resources/shaders/glsl330/skinning.vs b/examples/models/resources/shaders/glsl330/skinning.vs new file mode 100644 index 000000000..73ecca51e --- /dev/null +++ b/examples/models/resources/shaders/glsl330/skinning.vs @@ -0,0 +1,37 @@ +#version 330 + +#define MAX_BONE_NUM 128 + +// Input vertex attributes +in vec3 vertexPosition; +in vec2 vertexTexCoord; +in vec4 vertexColor; +in vec4 vertexBoneIds; +in vec4 vertexBoneWeights; + +// Input uniform values +uniform mat4 mvp; +uniform mat4 boneMatrices[MAX_BONE_NUM]; + +// Output vertex attributes (to fragment shader) +out vec2 fragTexCoord; +out vec4 fragColor; + +void main() +{ + int boneIndex0 = int(vertexBoneIds.x); + int boneIndex1 = int(vertexBoneIds.y); + int boneIndex2 = int(vertexBoneIds.z); + int boneIndex3 = int(vertexBoneIds.w); + + vec4 skinnedPosition = + vertexBoneWeights.x*(boneMatrices[boneIndex0]*vec4(vertexPosition, 1.0)) + + vertexBoneWeights.y*(boneMatrices[boneIndex1]*vec4(vertexPosition, 1.0)) + + vertexBoneWeights.z*(boneMatrices[boneIndex2]*vec4(vertexPosition, 1.0)) + + vertexBoneWeights.w*(boneMatrices[boneIndex3]*vec4(vertexPosition, 1.0)); + + fragTexCoord = vertexTexCoord; + fragColor = vertexColor; + + gl_Position = mvp*skinnedPosition; +} \ No newline at end of file diff --git a/examples/shaders/resources/shaders/glsl100/raymarching.fs b/examples/shaders/resources/shaders/glsl100/raymarching.fs index d58d9d331..a7339d216 100644 --- a/examples/shaders/resources/shaders/glsl100/raymarching.fs +++ b/examples/shaders/resources/shaders/glsl100/raymarching.fs @@ -38,7 +38,7 @@ uniform vec2 resolution; // // More info here: http://www.iquilezles.org/www/articles/distfunctions/distfunctions.htm -#define AA 1 // make this 1 is your machine is too slow +#define AA 1 // make this 1 if your machine is too slow //------------------------------------------------------------------ diff --git a/examples/shaders/resources/shaders/glsl120/raymarching.fs b/examples/shaders/resources/shaders/glsl120/raymarching.fs new file mode 100644 index 000000000..efe4fa108 --- /dev/null +++ b/examples/shaders/resources/shaders/glsl120/raymarching.fs @@ -0,0 +1,427 @@ +#version 120 + +// Input vertex attributes (from vertex shader) +varying vec2 fragTexCoord; +varying vec4 fragColor; + +uniform vec3 viewEye; +uniform vec3 viewCenter; +uniform float runTime; +uniform vec2 resolution; + +// The MIT License +// Copyright © 2013 Inigo Quilez +// Permission is hereby granted, free of charge, to any person obtaining a copy +// of this software and associated documentation files (the "Software"), to deal +// in the Software without restriction, including without limitation the rights +// to use, copy, modify, merge, publish, distribute, sublicense, and/or sell +// copies of the Software, and to permit persons to whom the Software is +// furnished to do so, subject to the following conditions: + +// The above copyright notice and this permission notice shall be included in all +// copies or substantial portions of the Software. + +// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, +// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE +// SOFTWARE. + +// A list of useful distance function to simple primitives, and an example on how to +// do some interesting boolean operations, repetition and displacement. +// +// More info here: http://www.iquilezles.org/www/articles/distfunctions/distfunctions.htm + +#define AA 1 // make this 1 if your machine is too slow + +//------------------------------------------------------------------ + +float sdPlane( vec3 p ) +{ + return p.y; +} + +float sdSphere( vec3 p, float s ) +{ + return length(p)-s; +} + +float sdBox( vec3 p, vec3 b ) +{ + vec3 d = abs(p) - b; + return min(max(d.x,max(d.y,d.z)),0.0) + length(max(d,0.0)); +} + +float sdEllipsoid( in vec3 p, in vec3 r ) +{ + return (length( p/r ) - 1.0) * min(min(r.x,r.y),r.z); +} + +float udRoundBox( vec3 p, vec3 b, float r ) +{ + return length(max(abs(p)-b,0.0))-r; +} + +float sdTorus( vec3 p, vec2 t ) +{ + return length( vec2(length(p.xz)-t.x,p.y) )-t.y; +} + +float sdHexPrism( vec3 p, vec2 h ) +{ + vec3 q = abs(p); +#if 0 + return max(q.z-h.y,max((q.x*0.866025+q.y*0.5),q.y)-h.x); +#else + float d1 = q.z-h.y; + float d2 = max((q.x*0.866025+q.y*0.5),q.y)-h.x; + return length(max(vec2(d1,d2),0.0)) + min(max(d1,d2), 0.); +#endif +} + +float sdCapsule( vec3 p, vec3 a, vec3 b, float r ) +{ + vec3 pa = p-a, ba = b-a; + float h = clamp( dot(pa,ba)/dot(ba,ba), 0.0, 1.0 ); + return length( pa - ba*h ) - r; +} + +float sdEquilateralTriangle( in vec2 p ) +{ + const float k = sqrt(3.0); + p.x = abs(p.x) - 1.0; + p.y = p.y + 1.0/k; + if( p.x + k*p.y > 0.0 ) p = vec2( p.x - k*p.y, -k*p.x - p.y )/2.0; + p.x += 2.0 - 2.0*clamp( (p.x+2.0)/2.0, 0.0, 1.0 ); + return -length(p)*sign(p.y); +} + +float sdTriPrism( vec3 p, vec2 h ) +{ + vec3 q = abs(p); + float d1 = q.z-h.y; +#if 1 + // distance bound + float d2 = max(q.x*0.866025+p.y*0.5,-p.y)-h.x*0.5; +#else + // correct distance + h.x *= 0.866025; + float d2 = sdEquilateralTriangle(p.xy/h.x)*h.x; +#endif + return length(max(vec2(d1,d2),0.0)) + min(max(d1,d2), 0.); +} + +float sdCylinder( vec3 p, vec2 h ) +{ + vec2 d = abs(vec2(length(p.xz),p.y)) - h; + return min(max(d.x,d.y),0.0) + length(max(d,0.0)); +} + +float sdCone( in vec3 p, in vec3 c ) +{ + vec2 q = vec2( length(p.xz), p.y ); + float d1 = -q.y-c.z; + float d2 = max( dot(q,c.xy), q.y); + return length(max(vec2(d1,d2),0.0)) + min(max(d1,d2), 0.); +} + +float sdConeSection( in vec3 p, in float h, in float r1, in float r2 ) +{ + float d1 = -p.y - h; + float q = p.y - h; + float si = 0.5*(r1-r2)/h; + float d2 = max( sqrt( dot(p.xz,p.xz)*(1.0-si*si)) + q*si - r2, q ); + return length(max(vec2(d1,d2),0.0)) + min(max(d1,d2), 0.); +} + +float sdPryamid4(vec3 p, vec3 h ) // h = { cos a, sin a, height } +{ + // Tetrahedron = Octahedron - Cube + float box = sdBox( p - vec3(0,-2.0*h.z,0), vec3(2.0*h.z) ); + + float d = 0.0; + d = max( d, abs( dot(p, vec3( -h.x, h.y, 0 )) )); + d = max( d, abs( dot(p, vec3( h.x, h.y, 0 )) )); + d = max( d, abs( dot(p, vec3( 0, h.y, h.x )) )); + d = max( d, abs( dot(p, vec3( 0, h.y,-h.x )) )); + float octa = d - h.z; + return max(-box,octa); // Subtraction + } + +float length2( vec2 p ) +{ + return sqrt( p.x*p.x + p.y*p.y ); +} + +float length6( vec2 p ) +{ + p = p*p*p; p = p*p; + return pow( p.x + p.y, 1.0/6.0 ); +} + +float length8( vec2 p ) +{ + p = p*p; p = p*p; p = p*p; + return pow( p.x + p.y, 1.0/8.0 ); +} + +float sdTorus82( vec3 p, vec2 t ) +{ + vec2 q = vec2(length2(p.xz)-t.x,p.y); + return length8(q)-t.y; +} + +float sdTorus88( vec3 p, vec2 t ) +{ + vec2 q = vec2(length8(p.xz)-t.x,p.y); + return length8(q)-t.y; +} + +float sdCylinder6( vec3 p, vec2 h ) +{ + return max( length6(p.xz)-h.x, abs(p.y)-h.y ); +} + +//------------------------------------------------------------------ + +float opS( float d1, float d2 ) +{ + return max(-d2,d1); +} + +vec2 opU( vec2 d1, vec2 d2 ) +{ + return (d1.x0.0 ) tmax = min( tmax, tp1 ); + float tp2 = (1.6-ro.y)/rd.y; if( tp2>0.0 ) { if( ro.y>1.6 ) tmin = max( tmin, tp2 ); + else tmax = min( tmax, tp2 ); } +#endif + + float t = tmin; + float m = -1.0; + for( int i=0; i<64; i++ ) + { + float precis = 0.0005*t; + vec2 res = map( ro+rd*t ); + if( res.xtmax ) break; + t += res.x; + m = res.y; + } + + if( t>tmax ) m=-1.0; + return vec2( t, m ); +} + + +float calcSoftshadow( in vec3 ro, in vec3 rd, in float mint, in float tmax ) +{ + float res = 1.0; + float t = mint; + for( int i=0; i<16; i++ ) + { + float h = map( ro + rd*t ).x; + res = min( res, 8.0*h/t ); + t += clamp( h, 0.02, 0.10 ); + if( h<0.001 || t>tmax ) break; + } + return clamp( res, 0.0, 1.0 ); +} + +vec3 calcNormal( in vec3 pos ) +{ + vec2 e = vec2(1.0,-1.0)*0.5773*0.0005; + return normalize( e.xyy*map( pos + e.xyy ).x + + e.yyx*map( pos + e.yyx ).x + + e.yxy*map( pos + e.yxy ).x + + e.xxx*map( pos + e.xxx ).x ); + /* + vec3 eps = vec3( 0.0005, 0.0, 0.0 ); + vec3 nor = vec3( + map(pos+eps.xyy).x - map(pos-eps.xyy).x, + map(pos+eps.yxy).x - map(pos-eps.yxy).x, + map(pos+eps.yyx).x - map(pos-eps.yyx).x ); + return normalize(nor); + */ +} + +float calcAO( in vec3 pos, in vec3 nor ) +{ + float occ = 0.0; + float sca = 1.0; + for( int i=0; i<5; i++ ) + { + float hr = 0.01 + 0.12*float(i)/4.0; + vec3 aopos = nor * hr + pos; + float dd = map( aopos ).x; + occ += -(dd-hr)*sca; + sca *= 0.95; + } + return clamp( 1.0 - 3.0*occ, 0.0, 1.0 ); +} + +// http://iquilezles.org/www/articles/checkerfiltering/checkerfiltering.htm +float checkersGradBox( in vec2 p ) +{ + // filter kernel + vec2 w = fwidth(p) + 0.001; + // analytical integral (box filter) + vec2 i = 2.0*(abs(fract((p-0.5*w)*0.5)-0.5)-abs(fract((p+0.5*w)*0.5)-0.5))/w; + // xor pattern + return 0.5 - 0.5*i.x*i.y; +} + +vec3 render( in vec3 ro, in vec3 rd ) +{ + vec3 col = vec3(0.7, 0.9, 1.0) +rd.y*0.8; + vec2 res = castRay(ro,rd); + float t = res.x; + float m = res.y; + if( m>-0.5 ) + { + vec3 pos = ro + t*rd; + vec3 nor = calcNormal( pos ); + vec3 ref = reflect( rd, nor ); + + // material + col = 0.45 + 0.35*sin( vec3(0.05,0.08,0.10)*(m-1.0) ); + if( m<1.5 ) + { + + float f = checkersGradBox( 5.0*pos.xz ); + col = 0.3 + f*vec3(0.1); + } + + // lighting + float occ = calcAO( pos, nor ); + vec3 lig = normalize( vec3(cos(-0.4 * runTime), sin(0.7 * runTime), -0.6) ); + vec3 hal = normalize( lig-rd ); + float amb = clamp( 0.5+0.5*nor.y, 0.0, 1.0 ); + float dif = clamp( dot( nor, lig ), 0.0, 1.0 ); + float bac = clamp( dot( nor, normalize(vec3(-lig.x,0.0,-lig.z))), 0.0, 1.0 )*clamp( 1.0-pos.y,0.0,1.0); + float dom = smoothstep( -0.1, 0.1, ref.y ); + float fre = pow( clamp(1.0+dot(nor,rd),0.0,1.0), 2.0 ); + + dif *= calcSoftshadow( pos, lig, 0.02, 2.5 ); + dom *= calcSoftshadow( pos, ref, 0.02, 2.5 ); + + float spe = pow( clamp( dot( nor, hal ), 0.0, 1.0 ),16.0)* + dif * + (0.04 + 0.96*pow( clamp(1.0+dot(hal,rd),0.0,1.0), 5.0 )); + + vec3 lin = vec3(0.0); + lin += 1.30*dif*vec3(1.00,0.80,0.55); + lin += 0.40*amb*vec3(0.40,0.60,1.00)*occ; + lin += 0.50*dom*vec3(0.40,0.60,1.00)*occ; + lin += 0.50*bac*vec3(0.25,0.25,0.25)*occ; + lin += 0.25*fre*vec3(1.00,1.00,1.00)*occ; + col = col*lin; + col += 10.00*spe*vec3(1.00,0.90,0.70); + + col = mix( col, vec3(0.8,0.9,1.0), 1.0-exp( -0.0002*t*t*t ) ); + } + + return vec3( clamp(col,0.0,1.0) ); +} + +mat3 setCamera( in vec3 ro, in vec3 ta, float cr ) +{ + vec3 cw = normalize(ta-ro); + vec3 cp = vec3(sin(cr), cos(cr),0.0); + vec3 cu = normalize( cross(cw,cp) ); + vec3 cv = normalize( cross(cu,cw) ); + return mat3( cu, cv, cw ); +} + +void main() +{ + vec3 tot = vec3(0.0); +#if AA>1 + for( int m=0; m1 + } + tot /= float(AA*AA); +#endif + + gl_FragColor = vec4( tot, 1.0 ); +} diff --git a/examples/shaders/resources/shaders/glsl330/base.fs b/examples/shaders/resources/shaders/glsl330/base.fs index 6b5006224..813f32b1d 100644 --- a/examples/shaders/resources/shaders/glsl330/base.fs +++ b/examples/shaders/resources/shaders/glsl330/base.fs @@ -20,6 +20,9 @@ void main() // NOTE: Implement here your fragment shader code - finalColor = texelColor*colDiffuse; + // final color is the color from the texture + // times the tint color (colDiffuse) + // times the fragment color (interpolated vertex color) + finalColor = texelColor*colDiffuse*fragColor; } diff --git a/examples/shaders/shaders_basic_pbr.c b/examples/shaders/shaders_basic_pbr.c index d025ab8a9..c3f2bad88 100644 --- a/examples/shaders/shaders_basic_pbr.c +++ b/examples/shaders/shaders_basic_pbr.c @@ -236,7 +236,7 @@ int main() float emissiveIntensity = 0.01f; SetShaderValue(shader, emissiveIntensityLoc, &emissiveIntensity, SHADER_UNIFORM_FLOAT); - DrawModel(car, (Vector3){ 0.0f, 0.0f, 0.0f }, 0.005f, WHITE); // Draw car model + DrawModel(car, (Vector3){ 0.0f, 0.0f, 0.0f }, 0.25f, WHITE); // Draw car model // Draw spheres to show the lights positions for (int i = 0; i < MAX_LIGHTS; i++) diff --git a/examples/shaders/shaders_lightmap.c b/examples/shaders/shaders_lightmap.c index 01b80a6fb..91ed8bfd2 100644 --- a/examples/shaders/shaders_lightmap.c +++ b/examples/shaders/shaders_lightmap.c @@ -164,6 +164,8 @@ int main(void) //-------------------------------------------------------------------------------------- UnloadMesh(mesh); // Unload the mesh UnloadShader(shader); // Unload shader + UnloadTexture(texture); // Unload texture + UnloadTexture(light); // Unload texture CloseWindow(); // Close window and OpenGL context //-------------------------------------------------------------------------------------- diff --git a/examples/shaders/shaders_model_shader.c b/examples/shaders/shaders_model_shader.c index bf2c112be..9faa2d589 100644 --- a/examples/shaders/shaders_model_shader.c +++ b/examples/shaders/shaders_model_shader.c @@ -69,7 +69,7 @@ int main(void) { // Update //---------------------------------------------------------------------------------- - UpdateCamera(&camera, CAMERA_FIRST_PERSON); + UpdateCamera(&camera, CAMERA_FREE); //---------------------------------------------------------------------------------- // Draw diff --git a/examples/shaders/shaders_texture_drawing.c b/examples/shaders/shaders_texture_drawing.c index 52b8967f6..ada44299d 100644 --- a/examples/shaders/shaders_texture_drawing.c +++ b/examples/shaders/shaders_texture_drawing.c @@ -77,6 +77,7 @@ int main(void) // De-Initialization //-------------------------------------------------------------------------------------- UnloadShader(shader); + UnloadTexture(texture); CloseWindow(); // Close window and OpenGL context //-------------------------------------------------------------------------------------- diff --git a/examples/shaders/shaders_vertex_displacement.c b/examples/shaders/shaders_vertex_displacement.c index c211d349f..207a237d0 100644 --- a/examples/shaders/shaders_vertex_displacement.c +++ b/examples/shaders/shaders_vertex_displacement.c @@ -110,6 +110,7 @@ int main(void) //-------------------------------------------------------------------------------------- UnloadShader(shader); UnloadModel(planeModel); + UnloadTexture(perlinNoiseMap); CloseWindow(); // Close window and OpenGL context //-------------------------------------------------------------------------------------- diff --git a/examples/shapes/raygui.h b/examples/shapes/raygui.h index 623115fce..16e01a28f 100644 --- a/examples/shapes/raygui.h +++ b/examples/shapes/raygui.h @@ -1,6 +1,6 @@ /******************************************************************************************* * -* raygui v4.0 - A simple and easy-to-use immediate-mode gui library +* raygui v4.5-dev - A simple and easy-to-use immediate-mode gui library * * DESCRIPTION: * raygui is a tools-dev-focused immediate-mode-gui library based on raylib but also @@ -26,7 +26,7 @@ * NOTES: * - WARNING: GuiLoadStyle() and GuiLoadStyle{Custom}() functions, allocate memory for * font atlas recs and glyphs, freeing that memory is (usually) up to the user, -* no unload function is explicitly provided... but note that GuiLoadStyleDefaulf() unloads +* no unload function is explicitly provided... but note that GuiLoadStyleDefault() unloads * by default any previously loaded font (texture, recs, glyphs). * - Global UI alpha (guiAlpha) is applied inside GuiDrawRectangle() and GuiDrawText() functions * @@ -141,6 +141,24 @@ * Draw text bounds rectangles for debug * * VERSIONS HISTORY: +* 4.5-dev (Sep-2024) Current dev version... +* ADDED: guiControlExclusiveMode and guiControlExclusiveRec for exclusive modes +* ADDED: GuiValueBoxFloat() +* ADDED: GuiDropdonwBox() properties: DROPDOWN_ARROW_HIDDEN, DROPDOWN_ROLL_UP +* ADDED: GuiListView() property: LIST_ITEMS_BORDER_WIDTH +* ADDED: Multiple new icons +* REVIEWED: GuiTabBar(), close tab with mouse middle button +* REVIEWED: GuiScrollPanel(), scroll speed proportional to content +* REVIEWED: GuiDropdownBox(), support roll up and hidden arrow +* REVIEWED: GuiTextBox(), cursor position initialization +* REVIEWED: GuiSliderPro(), control value change check +* REVIEWED: GuiGrid(), simplified implementation +* REVIEWED: GuiIconText(), increase buffer size and reviewed padding +* REVIEWED: GuiDrawText(), improved wrap mode drawing +* REVIEWED: GuiScrollBar(), minor tweaks +* REVIEWED: Functions descriptions, removed wrong return value reference +* REDESIGNED: GuiColorPanel(), improved HSV <-> RGBA convertion +* * 4.0 (12-Sep-2023) ADDED: GuiToggleSlider() * ADDED: GuiColorPickerHSV() and GuiColorPanelHSV() * ADDED: Multiple new icons, mostly compiler related @@ -314,9 +332,9 @@ #define RAYGUI_H #define RAYGUI_VERSION_MAJOR 4 -#define RAYGUI_VERSION_MINOR 0 +#define RAYGUI_VERSION_MINOR 5 #define RAYGUI_VERSION_PATCH 0 -#define RAYGUI_VERSION "4.0" +#define RAYGUI_VERSION "4.5-dev" #if !defined(RAYGUI_STANDALONE) #include "raylib.h" @@ -441,7 +459,6 @@ } Font; #endif - // Style property // NOTE: Used when exporting style as code for convenience typedef struct GuiStyleProp { @@ -546,7 +563,6 @@ typedef enum { // TEXT_SIZE, TEXT_SPACING, TEXT_LINE_SPACING, TEXT_ALIGNMENT_VERTICAL, TEXT_WRAP_MODE are global and // should be configured by user as needed while defining the UI layout - // Gui extended properties depend on control // NOTE: RAYGUI_MAX_PROPS_EXTENDED properties (by default, max 8 properties) //---------------------------------------------------------------------------------- @@ -562,12 +578,12 @@ typedef enum { TEXT_ALIGNMENT_VERTICAL, // Text vertical alignment inside text bounds (after border and padding) TEXT_WRAP_MODE // Text wrap-mode inside text bounds //TEXT_DECORATION // Text decoration: 0-None, 1-Underline, 2-Line-through, 3-Overline - //TEXT_DECORATION_THICK // Text decoration line thikness + //TEXT_DECORATION_THICK // Text decoration line thickness } GuiDefaultProperty; // Other possible text properties: // TEXT_WEIGHT // Normal, Italic, Bold -> Requires specific font change -// TEXT_INDENT // Text indentation -> Now using TEXT_PADDING... +// TEXT_INDENT // Text indentation -> Now using TEXT_PADDING... // Label //typedef enum { } GuiLabelProperty; @@ -615,7 +631,9 @@ typedef enum { // DropdownBox typedef enum { ARROW_PADDING = 16, // DropdownBox arrow separation from border and items - DROPDOWN_ITEMS_SPACING // DropdownBox items separation + DROPDOWN_ITEMS_SPACING, // DropdownBox items separation + DROPDOWN_ARROW_HIDDEN, // DropdownBox arrow hidden + DROPDOWN_ROLL_UP // DropdownBox roll up flag (default rolls down) } GuiDropdownBoxProperty; // TextBox/TextBoxMulti/ValueBox/Spinner @@ -635,6 +653,7 @@ typedef enum { LIST_ITEMS_SPACING, // ListView items separation SCROLLBAR_WIDTH, // ListView scrollbar size (usually width) SCROLLBAR_SIDE, // ListView scrollbar side (0-SCROLLBAR_LEFT_SIDE, 1-SCROLLBAR_RIGHT_SIDE) + LIST_ITEMS_BORDER_WIDTH // ListView items border width } GuiListViewProperty; // ColorPicker @@ -698,7 +717,6 @@ RAYGUIAPI char **GuiLoadIcons(const char *fileName, bool loadIconsName); // Load RAYGUIAPI void GuiDrawIcon(int iconId, int posX, int posY, int pixelSize, Color color); // Draw icon using pixel size at specified position #endif - // Controls //---------------------------------------------------------------------------------------------------------- // Container/separator controls, useful for controls organization @@ -710,29 +728,30 @@ RAYGUIAPI int GuiTabBar(Rectangle bounds, const char **text, int count, int *act RAYGUIAPI int GuiScrollPanel(Rectangle bounds, const char *text, Rectangle content, Vector2 *scroll, Rectangle *view); // Scroll Panel control // Basic controls set -RAYGUIAPI int GuiLabel(Rectangle bounds, const char *text); // Label control, shows text +RAYGUIAPI int GuiLabel(Rectangle bounds, const char *text); // Label control RAYGUIAPI int GuiButton(Rectangle bounds, const char *text); // Button control, returns true when clicked -RAYGUIAPI int GuiLabelButton(Rectangle bounds, const char *text); // Label button control, show true when clicked -RAYGUIAPI int GuiToggle(Rectangle bounds, const char *text, bool *active); // Toggle Button control, returns true when active -RAYGUIAPI int GuiToggleGroup(Rectangle bounds, const char *text, int *active); // Toggle Group control, returns active toggle index -RAYGUIAPI int GuiToggleSlider(Rectangle bounds, const char *text, int *active); // Toggle Slider control, returns true when clicked +RAYGUIAPI int GuiLabelButton(Rectangle bounds, const char *text); // Label button control, returns true when clicked +RAYGUIAPI int GuiToggle(Rectangle bounds, const char *text, bool *active); // Toggle Button control +RAYGUIAPI int GuiToggleGroup(Rectangle bounds, const char *text, int *active); // Toggle Group control +RAYGUIAPI int GuiToggleSlider(Rectangle bounds, const char *text, int *active); // Toggle Slider control RAYGUIAPI int GuiCheckBox(Rectangle bounds, const char *text, bool *checked); // Check Box control, returns true when active -RAYGUIAPI int GuiComboBox(Rectangle bounds, const char *text, int *active); // Combo Box control, returns selected item index +RAYGUIAPI int GuiComboBox(Rectangle bounds, const char *text, int *active); // Combo Box control -RAYGUIAPI int GuiDropdownBox(Rectangle bounds, const char *text, int *active, bool editMode); // Dropdown Box control, returns selected item -RAYGUIAPI int GuiSpinner(Rectangle bounds, const char *text, int *value, int minValue, int maxValue, bool editMode); // Spinner control, returns selected value +RAYGUIAPI int GuiDropdownBox(Rectangle bounds, const char *text, int *active, bool editMode); // Dropdown Box control +RAYGUIAPI int GuiSpinner(Rectangle bounds, const char *text, int *value, int minValue, int maxValue, bool editMode); // Spinner control RAYGUIAPI int GuiValueBox(Rectangle bounds, const char *text, int *value, int minValue, int maxValue, bool editMode); // Value Box control, updates input text with numbers +RAYGUIAPI int GuiValueBoxFloat(Rectangle bounds, const char *text, char *textValue, float *value, bool editMode); // Value box control for float values RAYGUIAPI int GuiTextBox(Rectangle bounds, char *text, int textSize, bool editMode); // Text Box control, updates input text -RAYGUIAPI int GuiSlider(Rectangle bounds, const char *textLeft, const char *textRight, float *value, float minValue, float maxValue); // Slider control, returns selected value -RAYGUIAPI int GuiSliderBar(Rectangle bounds, const char *textLeft, const char *textRight, float *value, float minValue, float maxValue); // Slider Bar control, returns selected value -RAYGUIAPI int GuiProgressBar(Rectangle bounds, const char *textLeft, const char *textRight, float *value, float minValue, float maxValue); // Progress Bar control, shows current progress value +RAYGUIAPI int GuiSlider(Rectangle bounds, const char *textLeft, const char *textRight, float *value, float minValue, float maxValue); // Slider control +RAYGUIAPI int GuiSliderBar(Rectangle bounds, const char *textLeft, const char *textRight, float *value, float minValue, float maxValue); // Slider Bar control +RAYGUIAPI int GuiProgressBar(Rectangle bounds, const char *textLeft, const char *textRight, float *value, float minValue, float maxValue); // Progress Bar control RAYGUIAPI int GuiStatusBar(Rectangle bounds, const char *text); // Status Bar control, shows info text RAYGUIAPI int GuiDummyRec(Rectangle bounds, const char *text); // Dummy control for placeholders -RAYGUIAPI int GuiGrid(Rectangle bounds, const char *text, float spacing, int subdivs, Vector2 *mouseCell); // Grid control, returns mouse cell position +RAYGUIAPI int GuiGrid(Rectangle bounds, const char *text, float spacing, int subdivs, Vector2 *mouseCell); // Grid control // Advance controls set -RAYGUIAPI int GuiListView(Rectangle bounds, const char *text, int *scrollIndex, int *active); // List View control, returns selected list item index +RAYGUIAPI int GuiListView(Rectangle bounds, const char *text, int *scrollIndex, int *active); // List View control RAYGUIAPI int GuiListViewEx(Rectangle bounds, const char **text, int count, int *scrollIndex, int *active, int *focus); // List View with extended parameters RAYGUIAPI int GuiMessageBox(Rectangle bounds, const char *title, const char *message, const char *buttons); // Message Box control, displays a message RAYGUIAPI int GuiTextInputBox(Rectangle bounds, const char *title, const char *message, const char *buttons, char *text, int textMaxSize, bool *secretViewActive); // Text Input Box control, ask for text, supports secret @@ -741,10 +760,9 @@ RAYGUIAPI int GuiColorPanel(Rectangle bounds, const char *text, Color *color); RAYGUIAPI int GuiColorBarAlpha(Rectangle bounds, const char *text, float *alpha); // Color Bar Alpha control RAYGUIAPI int GuiColorBarHue(Rectangle bounds, const char *text, float *value); // Color Bar Hue control RAYGUIAPI int GuiColorPickerHSV(Rectangle bounds, const char *text, Vector3 *colorHsv); // Color Picker control that avoids conversion to RGB on each call (multiple color controls) -RAYGUIAPI int GuiColorPanelHSV(Rectangle bounds, const char *text, Vector3 *colorHsv); // Color Panel control that returns HSV color value, used by GuiColorPickerHSV() +RAYGUIAPI int GuiColorPanelHSV(Rectangle bounds, const char *text, Vector3 *colorHsv); // Color Panel control that updates Hue-Saturation-Value color value, used by GuiColorPickerHSV() //---------------------------------------------------------------------------------------------------------- - #if !defined(RAYGUI_NO_ICONS) #if !defined(RAYGUI_CUSTOM_ICONS) @@ -972,14 +990,14 @@ typedef enum { ICON_FOLDER = 217, ICON_FILE = 218, ICON_SAND_TIMER = 219, - ICON_220 = 220, - ICON_221 = 221, - ICON_222 = 222, - ICON_223 = 223, - ICON_224 = 224, - ICON_225 = 225, - ICON_226 = 226, - ICON_227 = 227, + ICON_WARNING = 220, + ICON_HELP_BOX = 221, + ICON_INFO_BOX = 222, + ICON_PRIORITY = 223, + ICON_LAYERS_ISO = 224, + ICON_LAYERS2 = 225, + ICON_MLAYERS = 226, + ICON_MAPS = 227, ICON_228 = 228, ICON_229 = 229, ICON_230 = 230, @@ -1290,14 +1308,14 @@ static unsigned int guiIcons[RAYGUI_ICON_MAX_ICONS*RAYGUI_ICON_DATA_ELEMENTS] = 0x00000000, 0x0042007e, 0x40027fc2, 0x40024002, 0x40024002, 0x40024002, 0x7ffe4002, 0x00000000, // ICON_FOLDER 0x3ff00000, 0x201c2010, 0x20042004, 0x20042004, 0x20042004, 0x20042004, 0x20042004, 0x00003ffc, // ICON_FILE 0x1ff00000, 0x20082008, 0x17d02fe8, 0x05400ba0, 0x09200540, 0x23881010, 0x2fe827c8, 0x00001ff0, // ICON_SAND_TIMER - 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, // ICON_220 - 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, // ICON_221 - 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, // ICON_222 - 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, // ICON_223 - 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, // ICON_224 - 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, // ICON_225 - 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, // ICON_226 - 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, // ICON_227 + 0x01800000, 0x02400240, 0x05a00420, 0x09900990, 0x11881188, 0x21842004, 0x40024182, 0x00003ffc, // ICON_WARNING + 0x7ffe0000, 0x4ff24002, 0x4c324ff2, 0x4f824c02, 0x41824f82, 0x41824002, 0x40024182, 0x00007ffe, // ICON_HELP_BOX + 0x7ffe0000, 0x41824002, 0x40024182, 0x41824182, 0x41824182, 0x41824182, 0x40024182, 0x00007ffe, // ICON_INFO_BOX + 0x01800000, 0x04200240, 0x10080810, 0x7bde2004, 0x0a500a50, 0x08500bd0, 0x08100850, 0x00000ff0, // ICON_PRIORITY + 0x01800000, 0x18180660, 0x80016006, 0x98196006, 0x99996666, 0x19986666, 0x01800660, 0x00000000, // ICON_LAYERS_ISO + 0x07fe0000, 0x1c020402, 0x74021402, 0x54025402, 0x54025402, 0x500857fe, 0x40205ff8, 0x00007fe0, // ICON_LAYERS2 + 0x0ffe0000, 0x3ffa0802, 0x7fea200a, 0x402a402a, 0x422a422a, 0x422e422a, 0x40384e28, 0x00007fe0, // ICON_MLAYERS + 0x0ffe0000, 0x3ffa0802, 0x7fea200a, 0x402a402a, 0x5b2a512a, 0x512e552a, 0x40385128, 0x00007fe0, // ICON_MAPS 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, // ICON_228 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, // ICON_229 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, // ICON_230 @@ -1328,7 +1346,7 @@ static unsigned int guiIcons[RAYGUI_ICON_MAX_ICONS*RAYGUI_ICON_DATA_ELEMENTS] = 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, // ICON_255 }; -// NOTE: We keep a pointer to the icons array, useful to point to other sets if required +// NOTE: A pointer to current icons array should be defined static unsigned int *guiIconsPtr = guiIcons; #endif // !RAYGUI_NO_ICONS && !RAYGUI_CUSTOM_ICONS @@ -1363,8 +1381,8 @@ static unsigned int guiIconScale = 1; // Gui icon default scale (if ic static bool guiTooltip = false; // Tooltip enabled/disabled static const char *guiTooltipPtr = NULL; // Tooltip string pointer (string provided by user) -static bool guiSliderDragging = false; // Gui slider drag state (no inputs processed except dragged slider) -static Rectangle guiSliderActive = { 0 }; // Gui slider active bounds rectangle, used as an unique identifier +static bool guiControlExclusiveMode = false; // Gui control exclusive mode (no inputs processed except current control) +static Rectangle guiControlExclusiveRec = { 0 }; // Gui control exclusive bounds rectangle, used as an unique identifier static int textBoxCursorIndex = 0; // Cursor index, shared by all GuiTextBox*() //static int blinkCursorFrameCounter = 0; // Frame counter for cursor blinking @@ -1450,6 +1468,7 @@ static bool CheckCollisionPointRec(Vector2 point, Rectangle rec); // Check if static const char *TextFormat(const char *text, ...); // Formatting of text with variables to 'embed' static const char **TextSplit(const char *text, char delimiter, int *count); // Split text into multiple strings static int TextToInteger(const char *text); // Get integer value from text +static float TextToFloat(const char *text); // Get float value from text static int GetCodepointNext(const char *text, int *codepointSize); // Get next codepoint in a UTF-8 encoded text static const char *CodepointToUTF8(int codepoint, int *byteSize); // Encode codepoint into UTF-8 text (char array size returned as parameter) @@ -1744,6 +1763,9 @@ int GuiTabBar(Rectangle bounds, const char **text, int count, int *active) if (toggle) *active = i; } + // Close tab with middle mouse button pressed + if (CheckCollisionPointRec(GetMousePosition(), tabBounds) && IsMouseButtonPressed(MOUSE_MIDDLE_BUTTON)) result = i; + GuiSetStyle(TOGGLE, TEXT_PADDING, textPadding); GuiSetStyle(TOGGLE, TEXT_ALIGNMENT, textAlignment); @@ -1775,10 +1797,10 @@ int GuiScrollPanel(Rectangle bounds, const char *text, Rectangle content, Vector { #define RAYGUI_MIN_SCROLLBAR_WIDTH 40 #define RAYGUI_MIN_SCROLLBAR_HEIGHT 40 + #define RAYGUI_MIN_MOUSE_WHEEL_SPEED 20 int result = 0; GuiState state = guiState; - float mouseWheelSpeed = 20.0f; // Default movement speed with mouse wheel Rectangle temp = { 0 }; if (view == NULL) view = &temp; @@ -1820,17 +1842,8 @@ int GuiScrollPanel(Rectangle bounds, const char *text, Rectangle content, Vector }; // Make sure scroll bars have a minimum width/height - // NOTE: If content >>> bounds, size could be very small or even 0 - if (horizontalScrollBar.width < RAYGUI_MIN_SCROLLBAR_WIDTH) - { - horizontalScrollBar.width = RAYGUI_MIN_SCROLLBAR_WIDTH; - mouseWheelSpeed = 30.0f; // TODO: Calculate speed increment based on content.height vs bounds.height - } - if (verticalScrollBar.height < RAYGUI_MIN_SCROLLBAR_HEIGHT) - { - verticalScrollBar.height = RAYGUI_MIN_SCROLLBAR_HEIGHT; - mouseWheelSpeed = 30.0f; // TODO: Calculate speed increment based on content.width vs bounds.width - } + if (horizontalScrollBar.width < RAYGUI_MIN_SCROLLBAR_WIDTH) horizontalScrollBar.width = RAYGUI_MIN_SCROLLBAR_WIDTH; + if (verticalScrollBar.height < RAYGUI_MIN_SCROLLBAR_HEIGHT) verticalScrollBar.height = RAYGUI_MIN_SCROLLBAR_HEIGHT; // Calculate view area (area without the scrollbars) *view = (GuiGetStyle(LISTVIEW, SCROLLBAR_SIDE) == SCROLLBAR_LEFT_SIDE)? @@ -1873,9 +1886,14 @@ int GuiScrollPanel(Rectangle bounds, const char *text, Rectangle content, Vector #endif float wheelMove = GetMouseWheelMove(); + // Set scrolling speed with mouse wheel based on ratio between bounds and content + Vector2 mouseWheelSpeed = { content.width/bounds.width, content.height/bounds.height }; + if (mouseWheelSpeed.x < RAYGUI_MIN_MOUSE_WHEEL_SPEED) mouseWheelSpeed.x = RAYGUI_MIN_MOUSE_WHEEL_SPEED; + if (mouseWheelSpeed.y < RAYGUI_MIN_MOUSE_WHEEL_SPEED) mouseWheelSpeed.y = RAYGUI_MIN_MOUSE_WHEEL_SPEED; + // Horizontal and vertical scrolling with mouse wheel - if (hasHorizontalScrollBar && (IsKeyDown(KEY_LEFT_CONTROL) || IsKeyDown(KEY_LEFT_SHIFT))) scrollPos.x += wheelMove*mouseWheelSpeed; - else scrollPos.y += wheelMove*mouseWheelSpeed; // Vertical scroll + if (hasHorizontalScrollBar && (IsKeyDown(KEY_LEFT_CONTROL) || IsKeyDown(KEY_LEFT_SHIFT))) scrollPos.x += wheelMove*mouseWheelSpeed.x; + else scrollPos.y += wheelMove*mouseWheelSpeed.y; // Vertical scroll } } @@ -1921,7 +1939,7 @@ int GuiScrollPanel(Rectangle bounds, const char *text, Rectangle content, Vector } // Draw scrollbar lines depending on current state - GuiDrawRectangle(bounds, GuiGetStyle(DEFAULT, BORDER_WIDTH), GetColor(GuiGetStyle(LISTVIEW, BORDER + (state*3))), BLANK); + GuiDrawRectangle(bounds, GuiGetStyle(LISTVIEW, BORDER_WIDTH), GetColor(GuiGetStyle(LISTVIEW, BORDER + (state*3))), BLANK); // Set scrollbar slider size back to the way it was before GuiSetStyle(SCROLLBAR, SCROLL_SLIDER_SIZE, slider); @@ -1959,7 +1977,7 @@ int GuiButton(Rectangle bounds, const char *text) // Update control //-------------------------------------------------------------------- - if ((state != STATE_DISABLED) && !guiLocked && !guiSliderDragging) + if ((state != STATE_DISABLED) && !guiLocked && !guiControlExclusiveMode) { Vector2 mousePoint = GetMousePosition(); @@ -1997,7 +2015,7 @@ int GuiLabelButton(Rectangle bounds, const char *text) // Update control //-------------------------------------------------------------------- - if ((state != STATE_DISABLED) && !guiLocked && !guiSliderDragging) + if ((state != STATE_DISABLED) && !guiLocked && !guiControlExclusiveMode) { Vector2 mousePoint = GetMousePosition(); @@ -2020,7 +2038,7 @@ int GuiLabelButton(Rectangle bounds, const char *text) return pressed; } -// Toggle Button control, returns true when active +// Toggle Button control int GuiToggle(Rectangle bounds, const char *text, bool *active) { int result = 0; @@ -2031,7 +2049,7 @@ int GuiToggle(Rectangle bounds, const char *text, bool *active) // Update control //-------------------------------------------------------------------- - if ((state != STATE_DISABLED) && !guiLocked && !guiSliderDragging) + if ((state != STATE_DISABLED) && !guiLocked && !guiControlExclusiveMode) { Vector2 mousePoint = GetMousePosition(); @@ -2068,7 +2086,7 @@ int GuiToggle(Rectangle bounds, const char *text, bool *active) return result; } -// Toggle Group control, returns toggled button codepointIndex +// Toggle Group control int GuiToggleGroup(Rectangle bounds, const char *text, int *active) { #if !defined(RAYGUI_TOGGLEGROUP_MAX_ITEMS) @@ -2117,7 +2135,7 @@ int GuiToggleGroup(Rectangle bounds, const char *text, int *active) return result; } -// Toggle Slider control extended, returns true when clicked +// Toggle Slider control extended int GuiToggleSlider(Rectangle bounds, const char *text, int *active) { int result = 0; @@ -2211,7 +2229,7 @@ int GuiCheckBox(Rectangle bounds, const char *text, bool *checked) // Update control //-------------------------------------------------------------------- - if ((state != STATE_DISABLED) && !guiLocked && !guiSliderDragging) + if ((state != STATE_DISABLED) && !guiLocked && !guiControlExclusiveMode) { Vector2 mousePoint = GetMousePosition(); @@ -2256,7 +2274,7 @@ int GuiCheckBox(Rectangle bounds, const char *text, bool *checked) return result; } -// Combo Box control, returns selected item codepointIndex +// Combo Box control int GuiComboBox(Rectangle bounds, const char *text, int *active) { int result = 0; @@ -2279,7 +2297,7 @@ int GuiComboBox(Rectangle bounds, const char *text, int *active) // Update control //-------------------------------------------------------------------- - if ((state != STATE_DISABLED) && !guiLocked && (itemCount > 1) && !guiSliderDragging) + if ((state != STATE_DISABLED) && !guiLocked && (itemCount > 1) && !guiControlExclusiveMode) { Vector2 mousePoint = GetMousePosition(); @@ -2327,21 +2345,28 @@ int GuiDropdownBox(Rectangle bounds, const char *text, int *active, bool editMod int result = 0; GuiState state = guiState; + int temp = 0; + if (active == NULL) active = &temp; + int itemSelected = *active; int itemFocused = -1; + int direction = 0; // Dropdown box open direction: down (default) + if (GuiGetStyle(DROPDOWNBOX, DROPDOWN_ROLL_UP) == 1) direction = 1; // Up + // Get substrings items from text (items pointers, lengths and count) int itemCount = 0; const char **items = GuiTextSplit(text, ';', &itemCount, NULL); Rectangle boundsOpen = bounds; boundsOpen.height = (itemCount + 1)*(bounds.height + GuiGetStyle(DROPDOWNBOX, DROPDOWN_ITEMS_SPACING)); + if (direction == 1) boundsOpen.y -= itemCount*(bounds.height + GuiGetStyle(DROPDOWNBOX, DROPDOWN_ITEMS_SPACING)) + GuiGetStyle(DROPDOWNBOX, DROPDOWN_ITEMS_SPACING); Rectangle itemBounds = bounds; // Update control //-------------------------------------------------------------------- - if ((state != STATE_DISABLED) && (editMode || !guiLocked) && (itemCount > 1) && !guiSliderDragging) + if ((state != STATE_DISABLED) && (editMode || !guiLocked) && (itemCount > 1) && !guiControlExclusiveMode) { Vector2 mousePoint = GetMousePosition(); @@ -2362,7 +2387,8 @@ int GuiDropdownBox(Rectangle bounds, const char *text, int *active, bool editMod for (int i = 0; i < itemCount; i++) { // Update item rectangle y position for next item - itemBounds.y += (bounds.height + GuiGetStyle(DROPDOWNBOX, DROPDOWN_ITEMS_SPACING)); + if (direction == 0) itemBounds.y += (bounds.height + GuiGetStyle(DROPDOWNBOX, DROPDOWN_ITEMS_SPACING)); + else itemBounds.y -= (bounds.height + GuiGetStyle(DROPDOWNBOX, DROPDOWN_ITEMS_SPACING)); if (CheckCollisionPointRec(mousePoint, itemBounds)) { @@ -2406,7 +2432,8 @@ int GuiDropdownBox(Rectangle bounds, const char *text, int *active, bool editMod for (int i = 0; i < itemCount; i++) { // Update item rectangle y position for next item - itemBounds.y += (bounds.height + GuiGetStyle(DROPDOWNBOX, DROPDOWN_ITEMS_SPACING)); + if (direction == 0) itemBounds.y += (bounds.height + GuiGetStyle(DROPDOWNBOX, DROPDOWN_ITEMS_SPACING)); + else itemBounds.y -= (bounds.height + GuiGetStyle(DROPDOWNBOX, DROPDOWN_ITEMS_SPACING)); if (i == itemSelected) { @@ -2422,14 +2449,17 @@ int GuiDropdownBox(Rectangle bounds, const char *text, int *active, bool editMod } } - // Draw arrows (using icon if available) + if (!GuiGetStyle(DROPDOWNBOX, DROPDOWN_ARROW_HIDDEN)) + { + // Draw arrows (using icon if available) #if defined(RAYGUI_NO_ICONS) - GuiDrawText("v", RAYGUI_CLITERAL(Rectangle){ bounds.x + bounds.width - GuiGetStyle(DROPDOWNBOX, ARROW_PADDING), bounds.y + bounds.height/2 - 2, 10, 10 }, - TEXT_ALIGN_CENTER, GetColor(GuiGetStyle(DROPDOWNBOX, TEXT + (state*3)))); + GuiDrawText("v", RAYGUI_CLITERAL(Rectangle){ bounds.x + bounds.width - GuiGetStyle(DROPDOWNBOX, ARROW_PADDING), bounds.y + bounds.height/2 - 2, 10, 10 }, + TEXT_ALIGN_CENTER, GetColor(GuiGetStyle(DROPDOWNBOX, TEXT + (state*3)))); #else - GuiDrawText("#120#", RAYGUI_CLITERAL(Rectangle){ bounds.x + bounds.width - GuiGetStyle(DROPDOWNBOX, ARROW_PADDING), bounds.y + bounds.height/2 - 6, 10, 10 }, - TEXT_ALIGN_CENTER, GetColor(GuiGetStyle(DROPDOWNBOX, TEXT + (state*3)))); // ICON_ARROW_DOWN_FILL + GuiDrawText(direction? "#121#" : "#120#", RAYGUI_CLITERAL(Rectangle){ bounds.x + bounds.width - GuiGetStyle(DROPDOWNBOX, ARROW_PADDING), bounds.y + bounds.height/2 - 6, 10, 10 }, + TEXT_ALIGN_CENTER, GetColor(GuiGetStyle(DROPDOWNBOX, TEXT + (state*3)))); // ICON_ARROW_DOWN_FILL #endif + } //-------------------------------------------------------------------- *active = itemSelected; @@ -2440,7 +2470,7 @@ int GuiDropdownBox(Rectangle bounds, const char *text, int *active, bool editMod // Text Box control // NOTE: Returns true on ENTER pressed (useful for data validation) -int GuiTextBox(Rectangle bounds, char *text, int bufferSize, bool editMode) +int GuiTextBox(Rectangle bounds, char *text, int textSize, bool editMode) { #if !defined(RAYGUI_TEXTBOX_AUTO_CURSOR_COOLDOWN) #define RAYGUI_TEXTBOX_AUTO_CURSOR_COOLDOWN 40 // Frames to wait for autocursor movement @@ -2456,7 +2486,10 @@ int GuiTextBox(Rectangle bounds, char *text, int bufferSize, bool editMode) int wrapMode = GuiGetStyle(DEFAULT, TEXT_WRAP_MODE); Rectangle textBounds = GetTextBounds(TEXTBOX, bounds); - int textWidth = GetTextWidth(text) - GetTextWidth(text + textBoxCursorIndex); + int textLength = (int)strlen(text); // Get current text length + int thisCursorIndex = textBoxCursorIndex; + if (thisCursorIndex > textLength) thisCursorIndex = textLength; + int textWidth = GetTextWidth(text) - GetTextWidth(text + thisCursorIndex); int textIndexOffset = 0; // Text index offset to start drawing in the box // Cursor rectangle @@ -2496,7 +2529,7 @@ int GuiTextBox(Rectangle bounds, char *text, int bufferSize, bool editMode) if ((state != STATE_DISABLED) && // Control not disabled !GuiGetStyle(TEXTBOX, TEXT_READONLY) && // TextBox not on read-only mode !guiLocked && // Gui not locked - !guiSliderDragging && // No gui slider on dragging + !guiControlExclusiveMode && // No gui slider on dragging (wrapMode == TEXT_WRAP_NONE)) // No wrap mode { Vector2 mousePosition = GetMousePosition(); @@ -2505,6 +2538,8 @@ int GuiTextBox(Rectangle bounds, char *text, int bufferSize, bool editMode) { state = STATE_PRESSED; + if (textBoxCursorIndex > textLength) textBoxCursorIndex = textLength; + // If text does not fit in the textbox and current cursor position is out of bounds, // we add an index offset to text for drawing only what requires depending on cursor while (textWidth >= textBounds.width) @@ -2517,19 +2552,16 @@ int GuiTextBox(Rectangle bounds, char *text, int bufferSize, bool editMode) textWidth = GetTextWidth(text + textIndexOffset) - GetTextWidth(text + textBoxCursorIndex); } - int textLength = (int)strlen(text); // Get current text length int codepoint = GetCharPressed(); // Get Unicode codepoint if (multiline && IsKeyPressed(KEY_ENTER)) codepoint = (int)'\n'; - if (textBoxCursorIndex > textLength) textBoxCursorIndex = textLength; - // Encode codepoint as UTF-8 int codepointSize = 0; const char *charEncoded = CodepointToUTF8(codepoint, &codepointSize); // Add codepoint to text, at current cursor position // NOTE: Make sure we do not overflow buffer size - if (((multiline && (codepoint == (int)'\n')) || (codepoint >= 32)) && ((textLength + codepointSize) < bufferSize)) + if (((multiline && (codepoint == (int)'\n')) || (codepoint >= 32)) && ((textLength + codepointSize) < textSize)) { // Move forward data from cursor position for (int i = (textLength + codepointSize); i > textBoxCursorIndex; i--) text[i] = text[i - codepointSize]; @@ -2564,6 +2596,7 @@ int GuiTextBox(Rectangle bounds, char *text, int bufferSize, bool editMode) for (int i = textBoxCursorIndex; i < textLength; i++) text[i] = text[i + nextCodepointSize]; textLength -= codepointSize; + if (textBoxCursorIndex > textLength) textBoxCursorIndex = textLength; // Make sure text last character is EOL text[textLength] = '\0'; @@ -2583,6 +2616,8 @@ int GuiTextBox(Rectangle bounds, char *text, int bufferSize, bool editMode) // Move backward text from cursor position for (int i = (textBoxCursorIndex - prevCodepointSize); i < textLength; i++) text[i] = text[i + prevCodepointSize]; + // TODO Check: >= cursor+codepointsize and <= length-codepointsize + // Prevent cursor index from decrementing past 0 if (textBoxCursorIndex > 0) { @@ -2653,7 +2688,7 @@ int GuiTextBox(Rectangle bounds, char *text, int bufferSize, bool editMode) if (GetMousePosition().x >= (textBounds.x + textEndWidth - glyphWidth/2)) { mouseCursor.x = textBounds.x + textEndWidth; - mouseCursorIndex = (int)strlen(text); + mouseCursorIndex = textLength; } // Place cursor at required index on mouse click @@ -2685,7 +2720,7 @@ int GuiTextBox(Rectangle bounds, char *text, int bufferSize, bool editMode) if (IsMouseButtonPressed(MOUSE_LEFT_BUTTON)) { - textBoxCursorIndex = (int)strlen(text); // GLOBAL: Place cursor index to the end of current text + textBoxCursorIndex = textLength; // GLOBAL: Place cursor index to the end of current text result = 1; } } @@ -2727,7 +2762,7 @@ int GuiTextBox(Rectangle bounds, char *text, int bufferSize, bool editMode) /* // Text Box control with multiple lines and word-wrap // NOTE: This text-box is readonly, no editing supported by default -bool GuiTextBoxMulti(Rectangle bounds, char *text, int bufferSize, bool editMode) +bool GuiTextBoxMulti(Rectangle bounds, char *text, int textSize, bool editMode) { bool pressed = false; @@ -2736,7 +2771,7 @@ bool GuiTextBoxMulti(Rectangle bounds, char *text, int bufferSize, bool editMode GuiSetStyle(DEFAULT, TEXT_ALIGNMENT_VERTICAL, TEXT_ALIGN_TOP); // TODO: Implement methods to calculate cursor position properly - pressed = GuiTextBox(bounds, text, bufferSize, editMode); + pressed = GuiTextBox(bounds, text, textSize, editMode); GuiSetStyle(DEFAULT, TEXT_ALIGNMENT_VERTICAL, TEXT_ALIGN_MIDDLE); GuiSetStyle(DEFAULT, TEXT_WRAP_MODE, TEXT_WRAP_NONE); @@ -2771,7 +2806,7 @@ int GuiSpinner(Rectangle bounds, const char *text, int *value, int minValue, int // Update control //-------------------------------------------------------------------- - if ((state != STATE_DISABLED) && !guiLocked && !guiSliderDragging) + if ((state != STATE_DISABLED) && !guiLocked && !guiControlExclusiveMode) { Vector2 mousePoint = GetMousePosition(); @@ -2846,7 +2881,7 @@ int GuiValueBox(Rectangle bounds, const char *text, int *value, int minValue, in // Update control //-------------------------------------------------------------------- - if ((state != STATE_DISABLED) && !guiLocked && !guiSliderDragging) + if ((state != STATE_DISABLED) && !guiLocked && !guiControlExclusiveMode) { Vector2 mousePoint = GetMousePosition(); @@ -2890,7 +2925,13 @@ int GuiValueBox(Rectangle bounds, const char *text, int *value, int minValue, in //if (*value > maxValue) *value = maxValue; //else if (*value < minValue) *value = minValue; - if (IsKeyPressed(KEY_ENTER) || (!CheckCollisionPointRec(mousePoint, bounds) && IsMouseButtonPressed(MOUSE_LEFT_BUTTON))) result = 1; + if ((IsKeyPressed(KEY_ENTER) || IsKeyPressed(KEY_KP_ENTER)) || (!CheckCollisionPointRec(mousePoint, bounds) && IsMouseButtonPressed(MOUSE_LEFT_BUTTON))) + { + if (*value > maxValue) *value = maxValue; + else if (*value < minValue) *value = minValue; + + result = 1; + } } else { @@ -2930,55 +2971,152 @@ int GuiValueBox(Rectangle bounds, const char *text, int *value, int minValue, in return result; } +// Floating point Value Box control, updates input val_str with numbers +// NOTE: Requires static variables: frameCounter +int GuiValueBoxFloat(Rectangle bounds, const char *text, char *textValue, float *value, bool editMode) +{ + #if !defined(RAYGUI_VALUEBOX_MAX_CHARS) + #define RAYGUI_VALUEBOX_MAX_CHARS 32 + #endif + + int result = 0; + GuiState state = guiState; + + //char textValue[RAYGUI_VALUEBOX_MAX_CHARS + 1] = "\0"; + //sprintf(textValue, "%2.2f", *value); + + Rectangle textBounds = {0}; + if (text != NULL) + { + textBounds.width = (float)GetTextWidth(text) + 2; + textBounds.height = (float)GuiGetStyle(DEFAULT, TEXT_SIZE); + textBounds.x = bounds.x + bounds.width + GuiGetStyle(VALUEBOX, TEXT_PADDING); + textBounds.y = bounds.y + bounds.height/2 - GuiGetStyle(DEFAULT, TEXT_SIZE)/2; + if (GuiGetStyle(VALUEBOX, TEXT_ALIGNMENT) == TEXT_ALIGN_LEFT) textBounds.x = bounds.x - textBounds.width - GuiGetStyle(VALUEBOX, TEXT_PADDING); + } + + // Update control + //-------------------------------------------------------------------- + if ((state != STATE_DISABLED) && !guiLocked && !guiControlExclusiveMode) + { + Vector2 mousePoint = GetMousePosition(); + + bool valueHasChanged = false; + + if (editMode) + { + state = STATE_PRESSED; + + int keyCount = (int)strlen(textValue); + + // Only allow keys in range [48..57] + if (keyCount < RAYGUI_VALUEBOX_MAX_CHARS) + { + if (GetTextWidth(textValue) < bounds.width) + { + int key = GetCharPressed(); + if (((key >= 48) && (key <= 57)) || + (key == '.') || + ((keyCount == 0) && (key == '+')) || // NOTE: Sign can only be in first position + ((keyCount == 0) && (key == '-'))) + { + textValue[keyCount] = (char)key; + keyCount++; + + valueHasChanged = true; + } + } + } + + // Pressed backspace + if (IsKeyPressed(KEY_BACKSPACE)) + { + if (keyCount > 0) + { + keyCount--; + textValue[keyCount] = '\0'; + valueHasChanged = true; + } + } + + if (valueHasChanged) *value = TextToFloat(textValue); + + if ((IsKeyPressed(KEY_ENTER) || IsKeyPressed(KEY_KP_ENTER)) || (!CheckCollisionPointRec(mousePoint, bounds) && IsMouseButtonPressed(MOUSE_LEFT_BUTTON))) result = 1; + } + else + { + if (CheckCollisionPointRec(mousePoint, bounds)) + { + state = STATE_FOCUSED; + if (IsMouseButtonPressed(MOUSE_LEFT_BUTTON)) result = 1; + } + } + } + //-------------------------------------------------------------------- + + // Draw control + //-------------------------------------------------------------------- + Color baseColor = BLANK; + if (state == STATE_PRESSED) baseColor = GetColor(GuiGetStyle(VALUEBOX, BASE_COLOR_PRESSED)); + else if (state == STATE_DISABLED) baseColor = GetColor(GuiGetStyle(VALUEBOX, BASE_COLOR_DISABLED)); + + GuiDrawRectangle(bounds, GuiGetStyle(VALUEBOX, BORDER_WIDTH), GetColor(GuiGetStyle(VALUEBOX, BORDER + (state*3))), baseColor); + GuiDrawText(textValue, GetTextBounds(VALUEBOX, bounds), TEXT_ALIGN_CENTER, GetColor(GuiGetStyle(VALUEBOX, TEXT + (state*3)))); + + // Draw cursor + if (editMode) + { + // NOTE: ValueBox internal text is always centered + Rectangle cursor = {bounds.x + GetTextWidth(textValue)/2 + bounds.width/2 + 1, + bounds.y + 2*GuiGetStyle(VALUEBOX, BORDER_WIDTH), 4, + bounds.height - 4*GuiGetStyle(VALUEBOX, BORDER_WIDTH)}; + GuiDrawRectangle(cursor, 0, BLANK, GetColor(GuiGetStyle(VALUEBOX, BORDER_COLOR_PRESSED))); + } + + // Draw text label if provided + GuiDrawText(text, textBounds, + (GuiGetStyle(VALUEBOX, TEXT_ALIGNMENT) == TEXT_ALIGN_RIGHT)? TEXT_ALIGN_LEFT : TEXT_ALIGN_RIGHT, + GetColor(GuiGetStyle(LABEL, TEXT + (state*3)))); + //-------------------------------------------------------------------- + + return result; +} + // Slider control with pro parameters // NOTE: Other GuiSlider*() controls use this one int GuiSliderPro(Rectangle bounds, const char *textLeft, const char *textRight, float *value, float minValue, float maxValue, int sliderWidth) { int result = 0; - float oldValue = *value; GuiState state = guiState; float temp = (maxValue - minValue)/2.0f; if (value == NULL) value = &temp; - - int sliderValue = (int)(((*value - minValue)/(maxValue - minValue))*(bounds.width - 2*GuiGetStyle(SLIDER, BORDER_WIDTH))); + float oldValue = *value; Rectangle slider = { bounds.x, bounds.y + GuiGetStyle(SLIDER, BORDER_WIDTH) + GuiGetStyle(SLIDER, SLIDER_PADDING), 0, bounds.height - 2*GuiGetStyle(SLIDER, BORDER_WIDTH) - 2*GuiGetStyle(SLIDER, SLIDER_PADDING) }; - if (sliderWidth > 0) // Slider - { - slider.x += (sliderValue - sliderWidth/2); - slider.width = (float)sliderWidth; - } - else if (sliderWidth == 0) // SliderBar - { - slider.x += GuiGetStyle(SLIDER, BORDER_WIDTH); - slider.width = (float)sliderValue; - } - // Update control //-------------------------------------------------------------------- if ((state != STATE_DISABLED) && !guiLocked) { Vector2 mousePoint = GetMousePosition(); - if (guiSliderDragging) // Keep dragging outside of bounds + if (guiControlExclusiveMode) // Allows to keep dragging outside of bounds { if (IsMouseButtonDown(MOUSE_LEFT_BUTTON)) { - if (CHECK_BOUNDS_ID(bounds, guiSliderActive)) + if (CHECK_BOUNDS_ID(bounds, guiControlExclusiveRec)) { state = STATE_PRESSED; - // Get equivalent value and slider position from mousePosition.x - *value = ((maxValue - minValue)*(mousePoint.x - (float)(bounds.x + sliderWidth/2)))/(float)(bounds.width - sliderWidth) + minValue; + *value = (maxValue - minValue)*((mousePoint.x - bounds.x - sliderWidth/2)/(bounds.width-sliderWidth)) + minValue; } } else { - guiSliderDragging = false; - guiSliderActive = RAYGUI_CLITERAL(Rectangle){ 0, 0, 0, 0 }; + guiControlExclusiveMode = false; + guiControlExclusiveRec = RAYGUI_CLITERAL(Rectangle){ 0, 0, 0, 0 }; } } else if (CheckCollisionPointRec(mousePoint, bounds)) @@ -2986,16 +3124,13 @@ int GuiSliderPro(Rectangle bounds, const char *textLeft, const char *textRight, if (IsMouseButtonDown(MOUSE_LEFT_BUTTON)) { state = STATE_PRESSED; - guiSliderDragging = true; - guiSliderActive = bounds; // Store bounds as an identifier when dragging starts + guiControlExclusiveMode = true; + guiControlExclusiveRec = bounds; // Store bounds as an identifier when dragging starts if (!CheckCollisionPointRec(mousePoint, slider)) { // Get equivalent value and slider position from mousePosition.x - *value = ((maxValue - minValue)*(mousePoint.x - (float)(bounds.x + sliderWidth/2)))/(float)(bounds.width - sliderWidth) + minValue; - - if (sliderWidth > 0) slider.x = mousePoint.x - slider.width/2; // Slider - else if (sliderWidth == 0) slider.width = (float)sliderValue; // SliderBar + *value = (maxValue - minValue)*((mousePoint.x - bounds.x - sliderWidth/2)/(bounds.width-sliderWidth)) + minValue; } } else state = STATE_FOCUSED; @@ -3006,17 +3141,22 @@ int GuiSliderPro(Rectangle bounds, const char *textLeft, const char *textRight, } // Control value change check - if(oldValue == *value) result = 0; + if (oldValue == *value) result = 0; else result = 1; - // Bar limits check + // Slider bar limits check + float sliderValue = (((*value - minValue)/(maxValue - minValue))*(bounds.width - sliderWidth - 2*GuiGetStyle(SLIDER, BORDER_WIDTH))); if (sliderWidth > 0) // Slider { + slider.x += sliderValue; + slider.width = (float)sliderWidth; if (slider.x <= (bounds.x + GuiGetStyle(SLIDER, BORDER_WIDTH))) slider.x = bounds.x + GuiGetStyle(SLIDER, BORDER_WIDTH); else if ((slider.x + slider.width) >= (bounds.x + bounds.width)) slider.x = bounds.x + bounds.width - slider.width - GuiGetStyle(SLIDER, BORDER_WIDTH); } else if (sliderWidth == 0) // SliderBar { + slider.x += GuiGetStyle(SLIDER, BORDER_WIDTH); + slider.width = sliderValue; if (slider.width > bounds.width) slider.width = bounds.width - 2*GuiGetStyle(SLIDER, BORDER_WIDTH); } //-------------------------------------------------------------------- @@ -3171,7 +3311,7 @@ int GuiDummyRec(Rectangle bounds, const char *text) // Update control //-------------------------------------------------------------------- - if ((state != STATE_DISABLED) && !guiLocked && !guiSliderDragging) + if ((state != STATE_DISABLED) && !guiLocked && !guiControlExclusiveMode) { Vector2 mousePoint = GetMousePosition(); @@ -3238,7 +3378,7 @@ int GuiListViewEx(Rectangle bounds, const char **text, int count, int *scrollInd // Update control //-------------------------------------------------------------------- - if ((state != STATE_DISABLED) && !guiLocked && !guiSliderDragging) + if ((state != STATE_DISABLED) && !guiLocked && !guiControlExclusiveMode) { Vector2 mousePoint = GetMousePosition(); @@ -3291,6 +3431,8 @@ int GuiListViewEx(Rectangle bounds, const char **text, int count, int *scrollInd // Draw visible items for (int i = 0; ((i < visibleItems) && (text != NULL)); i++) { + GuiDrawRectangle(itemBounds, GuiGetStyle(LISTVIEW, LIST_ITEMS_BORDER_WIDTH), GetColor(GuiGetStyle(LISTVIEW, BORDER_COLOR_NORMAL)), BLANK); + if (state == STATE_DISABLED) { if ((startIndex + i) == itemSelected) GuiDrawRectangle(itemBounds, GuiGetStyle(LISTVIEW, BORDER_WIDTH), GetColor(GuiGetStyle(LISTVIEW, BORDER_COLOR_DISABLED)), GetColor(GuiGetStyle(LISTVIEW, BASE_COLOR_DISABLED))); @@ -3353,83 +3495,32 @@ int GuiListViewEx(Rectangle bounds, const char **text, int count, int *scrollInd return result; } -// Color Panel control +// Color Panel control - Color (RGBA) variant. int GuiColorPanel(Rectangle bounds, const char *text, Color *color) { int result = 0; - GuiState state = guiState; - Vector2 pickerSelector = { 0 }; - - const Color colWhite = { 255, 255, 255, 255 }; - const Color colBlack = { 0, 0, 0, 255 }; Vector3 vcolor = { (float)color->r/255.0f, (float)color->g/255.0f, (float)color->b/255.0f }; Vector3 hsv = ConvertRGBtoHSV(vcolor); + Vector3 prevHsv = hsv; // workaround to see if GuiColorPanelHSV modifies the hsv. - pickerSelector.x = bounds.x + (float)hsv.y*bounds.width; // HSV: Saturation - pickerSelector.y = bounds.y + (1.0f - (float)hsv.z)*bounds.height; // HSV: Value + GuiColorPanelHSV(bounds, text, &hsv); - Vector3 maxHue = { hsv.x, 1.0f, 1.0f }; - Vector3 rgbHue = ConvertHSVtoRGB(maxHue); - Color maxHueCol = { (unsigned char)(255.0f*rgbHue.x), - (unsigned char)(255.0f*rgbHue.y), - (unsigned char)(255.0f*rgbHue.z), 255 }; - - // Update control - //-------------------------------------------------------------------- - if ((state != STATE_DISABLED) && !guiLocked && !guiSliderDragging) + // Check if the hsv was changed, only then change the color. + // This is required, because the Color->HSV->Color conversion has precision errors. + // Thus the assignment from HSV to Color should only be made, if the HSV has a new user-entered value. + // Otherwise GuiColorPanel would often modify it's color without user input. + // TODO: GuiColorPanelHSV could return 1 if the slider was dragged, to simplify this check. + if (hsv.x != prevHsv.x || hsv.y != prevHsv.y || hsv.z != prevHsv.z) { - Vector2 mousePoint = GetMousePosition(); + Vector3 rgb = ConvertHSVtoRGB(hsv); - if (CheckCollisionPointRec(mousePoint, bounds)) - { - if (IsMouseButtonDown(MOUSE_LEFT_BUTTON)) - { - state = STATE_PRESSED; - pickerSelector = mousePoint; - - // Calculate color from picker - Vector2 colorPick = { pickerSelector.x - bounds.x, pickerSelector.y - bounds.y }; - - colorPick.x /= (float)bounds.width; // Get normalized value on x - colorPick.y /= (float)bounds.height; // Get normalized value on y - - hsv.y = colorPick.x; - hsv.z = 1.0f - colorPick.y; - - Vector3 rgb = ConvertHSVtoRGB(hsv); - - // NOTE: Vector3ToColor() only available on raylib 1.8.1 - *color = RAYGUI_CLITERAL(Color){ (unsigned char)(255.0f*rgb.x), - (unsigned char)(255.0f*rgb.y), - (unsigned char)(255.0f*rgb.z), - (unsigned char)(255.0f*(float)color->a/255.0f) }; - - } - else state = STATE_FOCUSED; - } + // NOTE: Vector3ToColor() only available on raylib 1.8.1 + *color = RAYGUI_CLITERAL(Color){ (unsigned char)(255.0f*rgb.x), + (unsigned char)(255.0f*rgb.y), + (unsigned char)(255.0f*rgb.z), + color->a }; } - //-------------------------------------------------------------------- - - // Draw control - //-------------------------------------------------------------------- - if (state != STATE_DISABLED) - { - DrawRectangleGradientEx(bounds, Fade(colWhite, guiAlpha), Fade(colWhite, guiAlpha), Fade(maxHueCol, guiAlpha), Fade(maxHueCol, guiAlpha)); - DrawRectangleGradientEx(bounds, Fade(colBlack, 0), Fade(colBlack, guiAlpha), Fade(colBlack, guiAlpha), Fade(colBlack, 0)); - - // Draw color picker: selector - Rectangle selector = { pickerSelector.x - GuiGetStyle(COLORPICKER, COLOR_SELECTOR_SIZE)/2, pickerSelector.y - GuiGetStyle(COLORPICKER, COLOR_SELECTOR_SIZE)/2, (float)GuiGetStyle(COLORPICKER, COLOR_SELECTOR_SIZE), (float)GuiGetStyle(COLORPICKER, COLOR_SELECTOR_SIZE) }; - GuiDrawRectangle(selector, 0, BLANK, colWhite); - } - else - { - DrawRectangleGradientEx(bounds, Fade(Fade(GetColor(GuiGetStyle(COLORPICKER, BASE_COLOR_DISABLED)), 0.1f), guiAlpha), Fade(Fade(colBlack, 0.6f), guiAlpha), Fade(Fade(colBlack, 0.6f), guiAlpha), Fade(Fade(GetColor(GuiGetStyle(COLORPICKER, BORDER_COLOR_DISABLED)), 0.6f), guiAlpha)); - } - - GuiDrawRectangle(bounds, GuiGetStyle(COLORPICKER, BORDER_WIDTH), GetColor(GuiGetStyle(COLORPICKER, BORDER + state*3)), BLANK); - //-------------------------------------------------------------------- - return result; } @@ -3451,11 +3542,11 @@ int GuiColorBarAlpha(Rectangle bounds, const char *text, float *alpha) { Vector2 mousePoint = GetMousePosition(); - if (guiSliderDragging) // Keep dragging outside of bounds + if (guiControlExclusiveMode) // Allows to keep dragging outside of bounds { if (IsMouseButtonDown(MOUSE_LEFT_BUTTON)) { - if (CHECK_BOUNDS_ID(bounds, guiSliderActive)) + if (CHECK_BOUNDS_ID(bounds, guiControlExclusiveRec)) { state = STATE_PRESSED; @@ -3466,8 +3557,8 @@ int GuiColorBarAlpha(Rectangle bounds, const char *text, float *alpha) } else { - guiSliderDragging = false; - guiSliderActive = RAYGUI_CLITERAL(Rectangle){ 0, 0, 0, 0 }; + guiControlExclusiveMode = false; + guiControlExclusiveRec = RAYGUI_CLITERAL(Rectangle){ 0, 0, 0, 0 }; } } else if (CheckCollisionPointRec(mousePoint, bounds) || CheckCollisionPointRec(mousePoint, selector)) @@ -3475,8 +3566,8 @@ int GuiColorBarAlpha(Rectangle bounds, const char *text, float *alpha) if (IsMouseButtonDown(MOUSE_LEFT_BUTTON)) { state = STATE_PRESSED; - guiSliderDragging = true; - guiSliderActive = bounds; // Store bounds as an identifier when dragging starts + guiControlExclusiveMode = true; + guiControlExclusiveRec = bounds; // Store bounds as an identifier when dragging starts *alpha = (mousePoint.x - bounds.x)/bounds.width; if (*alpha <= 0.0f) *alpha = 0.0f; @@ -3537,11 +3628,11 @@ int GuiColorBarHue(Rectangle bounds, const char *text, float *hue) { Vector2 mousePoint = GetMousePosition(); - if (guiSliderDragging) // Keep dragging outside of bounds + if (guiControlExclusiveMode) // Allows to keep dragging outside of bounds { if (IsMouseButtonDown(MOUSE_LEFT_BUTTON)) { - if (CHECK_BOUNDS_ID(bounds, guiSliderActive)) + if (CHECK_BOUNDS_ID(bounds, guiControlExclusiveRec)) { state = STATE_PRESSED; @@ -3552,8 +3643,8 @@ int GuiColorBarHue(Rectangle bounds, const char *text, float *hue) } else { - guiSliderDragging = false; - guiSliderActive = RAYGUI_CLITERAL(Rectangle){ 0, 0, 0, 0 }; + guiControlExclusiveMode = false; + guiControlExclusiveRec = RAYGUI_CLITERAL(Rectangle){ 0, 0, 0, 0 }; } } else if (CheckCollisionPointRec(mousePoint, bounds) || CheckCollisionPointRec(mousePoint, selector)) @@ -3561,8 +3652,8 @@ int GuiColorBarHue(Rectangle bounds, const char *text, float *hue) if (IsMouseButtonDown(MOUSE_LEFT_BUTTON)) { state = STATE_PRESSED; - guiSliderDragging = true; - guiSliderActive = bounds; // Store bounds as an identifier when dragging starts + guiControlExclusiveMode = true; + guiControlExclusiveRec = bounds; // Store bounds as an identifier when dragging starts *hue = (mousePoint.y - bounds.y)*360/bounds.height; if (*hue <= 0.0f) *hue = 0.0f; @@ -3615,6 +3706,7 @@ int GuiColorBarHue(Rectangle bounds, const char *text, float *hue) // float GuiColorBarAlpha(Rectangle bounds, float alpha) // float GuiColorBarHue(Rectangle bounds, float value) // NOTE: bounds define GuiColorPanel() size +// NOTE: this picker converts RGB to HSV, which can cause the Hue control to jump. If you have this problem, consider using the HSV variant instead int GuiColorPicker(Rectangle bounds, const char *text, Color *color) { int result = 0; @@ -3627,6 +3719,7 @@ int GuiColorPicker(Rectangle bounds, const char *text, Color *color) Rectangle boundsHue = { (float)bounds.x + bounds.width + GuiGetStyle(COLORPICKER, HUEBAR_PADDING), (float)bounds.y, (float)GuiGetStyle(COLORPICKER, HUEBAR_WIDTH), (float)bounds.height }; //Rectangle boundsAlpha = { bounds.x, bounds.y + bounds.height + GuiGetStyle(COLORPICKER, BARS_PADDING), bounds.width, GuiGetStyle(COLORPICKER, BARS_THICK) }; + // NOTE: this conversion can cause low hue-resolution, if the r, g and b value are very similar, which causes the hue bar to shift around when only the GuiColorPanel is used. Vector3 hsv = ConvertRGBtoHSV(RAYGUI_CLITERAL(Vector3){ (*color).r/255.0f, (*color).g/255.0f, (*color).b/255.0f }); GuiColorBarHue(boundsHue, NULL, &hsv.x); @@ -3668,8 +3761,7 @@ int GuiColorPickerHSV(Rectangle bounds, const char *text, Vector3 *colorHsv) return result; } -// Color Panel control, returns HSV color value in *colorHsv. -// Used by GuiColorPickerHSV() +// Color Panel control - HSV variant int GuiColorPanelHSV(Rectangle bounds, const char *text, Vector3 *colorHsv) { int result = 0; @@ -3690,15 +3782,47 @@ int GuiColorPanelHSV(Rectangle bounds, const char *text, Vector3 *colorHsv) // Update control //-------------------------------------------------------------------- - if ((state != STATE_DISABLED) && !guiLocked && !guiSliderDragging) + if ((state != STATE_DISABLED) && !guiLocked) { Vector2 mousePoint = GetMousePosition(); - if (CheckCollisionPointRec(mousePoint, bounds)) + if (guiControlExclusiveMode) // Allows to keep dragging outside of bounds + { + if (IsMouseButtonDown(MOUSE_LEFT_BUTTON)) + { + if (CHECK_BOUNDS_ID(bounds, guiControlExclusiveRec)) + { + pickerSelector = mousePoint; + + if (pickerSelector.x < bounds.x) pickerSelector.x = bounds.x; + if (pickerSelector.x > bounds.x + bounds.width) pickerSelector.x = bounds.x + bounds.width; + if (pickerSelector.y < bounds.y) pickerSelector.y = bounds.y; + if (pickerSelector.y > bounds.y + bounds.height) pickerSelector.y = bounds.y + bounds.height; + + // Calculate color from picker + Vector2 colorPick = { pickerSelector.x - bounds.x, pickerSelector.y - bounds.y }; + + colorPick.x /= (float)bounds.width; // Get normalized value on x + colorPick.y /= (float)bounds.height; // Get normalized value on y + + colorHsv->y = colorPick.x; + colorHsv->z = 1.0f - colorPick.y; + + } + } + else + { + guiControlExclusiveMode = false; + guiControlExclusiveRec = RAYGUI_CLITERAL(Rectangle){ 0, 0, 0, 0 }; + } + } + else if (CheckCollisionPointRec(mousePoint, bounds)) { if (IsMouseButtonDown(MOUSE_LEFT_BUTTON)) { state = STATE_PRESSED; + guiControlExclusiveMode = true; + guiControlExclusiveRec = bounds; pickerSelector = mousePoint; // Calculate color from picker @@ -3760,9 +3884,9 @@ int GuiMessageBox(Rectangle bounds, const char *title, const char *message, cons int textWidth = GetTextWidth(message) + 2; Rectangle textBounds = { 0 }; - textBounds.x = bounds.x + bounds.width/2 - textWidth/2; + textBounds.x = bounds.x + RAYGUI_MESSAGEBOX_BUTTON_PADDING; textBounds.y = bounds.y + RAYGUI_WINDOWBOX_STATUSBAR_HEIGHT + RAYGUI_MESSAGEBOX_BUTTON_PADDING; - textBounds.width = (float)textWidth; + textBounds.width = bounds.width - RAYGUI_MESSAGEBOX_BUTTON_PADDING*2; textBounds.height = bounds.height - RAYGUI_WINDOWBOX_STATUSBAR_HEIGHT - 3*RAYGUI_MESSAGEBOX_BUTTON_PADDING - RAYGUI_MESSAGEBOX_BUTTON_HEIGHT; // Draw control @@ -3905,7 +4029,7 @@ int GuiGrid(Rectangle bounds, const char *text, float spacing, int subdivs, Vect // Update control //-------------------------------------------------------------------- - if ((state != STATE_DISABLED) && !guiLocked && !guiSliderDragging) + if ((state != STATE_DISABLED) && !guiLocked && !guiControlExclusiveMode) { if (CheckCollisionPointRec(mousePoint, bounds)) { @@ -3925,14 +4049,14 @@ int GuiGrid(Rectangle bounds, const char *text, float spacing, int subdivs, Vect // Draw vertical grid lines for (int i = 0; i < linesV; i++) { - Rectangle lineV = { bounds.x + spacing*i/subdivs, bounds.y, 1, bounds.height }; + Rectangle lineV = { bounds.x + spacing*i/subdivs, bounds.y, 1, bounds.height + 1 }; GuiDrawRectangle(lineV, 0, BLANK, ((i%subdivs) == 0)? GuiFade(GetColor(color), RAYGUI_GRID_ALPHA*4) : GuiFade(GetColor(color), RAYGUI_GRID_ALPHA)); } // Draw horizontal grid lines for (int i = 0; i < linesH; i++) { - Rectangle lineH = { bounds.x, bounds.y + spacing*i/subdivs, bounds.width, 1 }; + Rectangle lineH = { bounds.x, bounds.y + spacing*i/subdivs, bounds.width + 1, 1 }; GuiDrawRectangle(lineH, 0, BLANK, ((i%subdivs) == 0)? GuiFade(GetColor(color), RAYGUI_GRID_ALPHA*4) : GuiFade(GetColor(color), RAYGUI_GRID_ALPHA)); } } @@ -3954,7 +4078,6 @@ void GuiDisableTooltip(void) { guiTooltip = false; } // Set tooltip string void GuiSetTooltip(const char *tooltip) { guiTooltipPtr = tooltip; } - //---------------------------------------------------------------------------------- // Styles loading functions //---------------------------------------------------------------------------------- @@ -3967,6 +4090,7 @@ void GuiLoadStyle(const char *fileName) #define MAX_LINE_BUFFER_SIZE 256 bool tryBinary = false; + if (!guiStyleLoaded) GuiLoadStyleDefault(); // Try reading the files as text file first FILE *rgsFile = fopen(fileName, "rt"); @@ -4600,7 +4724,7 @@ static int GetTextWidth(const char *text) } } - if (textIconOffset > 0) textSize.x += (RAYGUI_ICON_SIZE - ICON_TEXT_PADDING); + if (textIconOffset > 0) textSize.x += (RAYGUI_ICON_SIZE + ICON_TEXT_PADDING); } return (int)textSize.x; @@ -4773,6 +4897,7 @@ static void GuiDrawText(const char *text, Rectangle textBounds, int alignment, C // Get text position depending on alignment and iconId //--------------------------------------------------------------------------------- Vector2 textBoundsPosition = { textBounds.x, textBounds.y }; + float textBoundsWidthOffset = 0.0f; // NOTE: We get text size after icon has been processed // WARNING: GetTextWidth() also processes text icon to get width! -> Really needed? @@ -4798,6 +4923,8 @@ static void GuiDrawText(const char *text, Rectangle textBounds, int alignment, C default: break; } + if (textSizeX > textBounds.width && (lines[i] != NULL) && (lines[i][0] != '\0')) textBoundsPosition.x = textBounds.x; + switch (alignmentVertical) { // Only valid in case of wordWrap = 0; @@ -4820,7 +4947,8 @@ static void GuiDrawText(const char *text, Rectangle textBounds, int alignment, C { // NOTE: We consider icon height, probably different than text size GuiDrawIcon(iconId, (int)textBoundsPosition.x, (int)(textBounds.y + textBounds.height/2 - RAYGUI_ICON_SIZE*guiIconScale/2 + TEXT_VALIGN_PIXEL_OFFSET(textBounds.height)), guiIconScale, tint); - textBoundsPosition.x += (RAYGUI_ICON_SIZE*guiIconScale + ICON_TEXT_PADDING); + textBoundsPosition.x += (float)(RAYGUI_ICON_SIZE*guiIconScale + ICON_TEXT_PADDING); + textBoundsWidthOffset = (float)(RAYGUI_ICON_SIZE*guiIconScale + ICON_TEXT_PADDING); } #endif // Get size in bytes of text, @@ -4829,9 +4957,15 @@ static void GuiDrawText(const char *text, Rectangle textBounds, int alignment, C for (int c = 0; (lines[i][c] != '\0') && (lines[i][c] != '\n') && (lines[i][c] != '\r'); c++, lineSize++){ } float scaleFactor = (float)GuiGetStyle(DEFAULT, TEXT_SIZE)/guiFont.baseSize; + int lastSpaceIndex = 0; + bool tempWrapCharMode = false; + int textOffsetY = 0; float textOffsetX = 0.0f; float glyphWidth = 0; + + int ellipsisWidth = GetTextWidth("..."); + bool textOverflow = false; for (int c = 0, codepointSize = 0; c < lineSize; c += codepointSize) { int codepoint = GetCodepointNext(&lines[i][c], &codepointSize); @@ -4839,36 +4973,51 @@ static void GuiDrawText(const char *text, Rectangle textBounds, int alignment, C // NOTE: Normally we exit the decoding sequence as soon as a bad byte is found (and return 0x3f) // but we need to draw all of the bad bytes using the '?' symbol moving one byte - if (codepoint == 0x3f) codepointSize = 1; // TODO: Review not recognized codepoints size + if (codepoint == 0x3f) codepointSize = 1; // TODO: Review not recognized codepoints size - // Wrap mode text measuring to space to validate if it can be drawn or - // a new line is required + // Get glyph width to check if it goes out of bounds + if (guiFont.glyphs[index].advanceX == 0) glyphWidth = ((float)guiFont.recs[index].width*scaleFactor); + else glyphWidth = (float)guiFont.glyphs[index].advanceX*scaleFactor; + + // Wrap mode text measuring, to validate if + // it can be drawn or a new line is required if (wrapMode == TEXT_WRAP_CHAR) { - // Get glyph width to check if it goes out of bounds - if (guiFont.glyphs[index].advanceX == 0) glyphWidth = ((float)guiFont.recs[index].width*scaleFactor); - else glyphWidth = (float)guiFont.glyphs[index].advanceX*scaleFactor; - // Jump to next line if current character reach end of the box limits - if ((textOffsetX + glyphWidth) > textBounds.width) + if ((textOffsetX + glyphWidth) > textBounds.width - textBoundsWidthOffset) { textOffsetX = 0.0f; textOffsetY += GuiGetStyle(DEFAULT, TEXT_LINE_SPACING); + + if (tempWrapCharMode) // Wrap at char level when too long words + { + wrapMode = TEXT_WRAP_WORD; + tempWrapCharMode = false; + } } } else if (wrapMode == TEXT_WRAP_WORD) { + if (codepoint == 32) lastSpaceIndex = c; + // Get width to next space in line int nextSpaceIndex = 0; float nextSpaceWidth = GetNextSpaceWidth(lines[i] + c, &nextSpaceIndex); - if ((textOffsetX + nextSpaceWidth) > textBounds.width) + int nextSpaceIndex2 = 0; + float nextWordSize = GetNextSpaceWidth(lines[i] + lastSpaceIndex + 1, &nextSpaceIndex2); + + if (nextWordSize > textBounds.width - textBoundsWidthOffset) + { + // Considering the case the next word is longer than bounds + tempWrapCharMode = true; + wrapMode = TEXT_WRAP_CHAR; + } + else if ((textOffsetX + nextSpaceWidth) > textBounds.width - textBoundsWidthOffset) { textOffsetX = 0.0f; textOffsetY += GuiGetStyle(DEFAULT, TEXT_LINE_SPACING); } - - // TODO: Consider case: (nextSpaceWidth >= textBounds.width) } if (codepoint == '\n') break; // WARNING: Lines are already processed manually, no need to keep drawing after this codepoint @@ -4881,7 +5030,23 @@ static void GuiDrawText(const char *text, Rectangle textBounds, int alignment, C if (wrapMode == TEXT_WRAP_NONE) { // Draw only required text glyphs fitting the textBounds.width - if (textOffsetX <= (textBounds.width - glyphWidth)) + if (textSizeX > textBounds.width) + { + if (textOffsetX <= (textBounds.width - glyphWidth - textBoundsWidthOffset - ellipsisWidth)) + { + DrawTextCodepoint(guiFont, codepoint, RAYGUI_CLITERAL(Vector2){ textBoundsPosition.x + textOffsetX, textBoundsPosition.y + textOffsetY }, (float)GuiGetStyle(DEFAULT, TEXT_SIZE), GuiFade(tint, guiAlpha)); + } + else if (!textOverflow) + { + textOverflow = true; + + for (int j = 0; j < ellipsisWidth; j += ellipsisWidth/3) + { + DrawTextCodepoint(guiFont, '.', RAYGUI_CLITERAL(Vector2){ textBoundsPosition.x + textOffsetX + j, textBoundsPosition.y + textOffsetY }, (float)GuiGetStyle(DEFAULT, TEXT_SIZE), GuiFade(tint, guiAlpha)); + } + } + } + else { DrawTextCodepoint(guiFont, codepoint, RAYGUI_CLITERAL(Vector2){ textBoundsPosition.x + textOffsetX, textBoundsPosition.y + textOffsetY }, (float)GuiGetStyle(DEFAULT, TEXT_SIZE), GuiFade(tint, guiAlpha)); } @@ -4937,7 +5102,7 @@ static void GuiDrawRectangle(Rectangle rec, int borderWidth, Color borderColor, // Draw tooltip using control bounds static void GuiTooltip(Rectangle controlRec) { - if (!guiLocked && guiTooltip && (guiTooltipPtr != NULL) && !guiSliderDragging) + if (!guiLocked && guiTooltip && (guiTooltipPtr != NULL) && !guiControlExclusiveMode) { Vector2 textSize = MeasureTextEx(GuiGetFont(), guiTooltipPtr, (float)GuiGetStyle(DEFAULT, TEXT_SIZE), (float)GuiGetStyle(DEFAULT, TEXT_SPACING)); @@ -5003,7 +5168,7 @@ static const char **GuiTextSplit(const char *text, char delimiter, int *count, i buffer[i] = '\0'; // Set an end of string at this point counter++; - if (counter == RAYGUI_TEXTSPLIT_MAX_ITEMS) break; + if (counter > RAYGUI_TEXTSPLIT_MAX_ITEMS) break; } } @@ -5163,8 +5328,11 @@ static int GuiScrollBar(Rectangle bounds, int value, int minValue, int maxValue) if (value > maxValue) value = maxValue; if (value < minValue) value = minValue; - const int valueRange = maxValue - minValue; + int valueRange = maxValue - minValue; + if (valueRange <= 0) valueRange = 1; + int sliderSize = GuiGetStyle(SCROLLBAR, SCROLL_SLIDER_SIZE); + if (sliderSize < 1) sliderSize = 1; // TODO: Consider a minimum slider size // Calculate rectangles for all of the components arrowUpLeft = RAYGUI_CLITERAL(Rectangle){ @@ -5205,13 +5373,13 @@ static int GuiScrollBar(Rectangle bounds, int value, int minValue, int maxValue) { Vector2 mousePoint = GetMousePosition(); - if (guiSliderDragging) // Keep dragging outside of bounds + if (guiControlExclusiveMode) // Allows to keep dragging outside of bounds { if (IsMouseButtonDown(MOUSE_LEFT_BUTTON) && !CheckCollisionPointRec(mousePoint, arrowUpLeft) && !CheckCollisionPointRec(mousePoint, arrowDownRight)) { - if (CHECK_BOUNDS_ID(bounds, guiSliderActive)) + if (CHECK_BOUNDS_ID(bounds, guiControlExclusiveRec)) { state = STATE_PRESSED; @@ -5221,8 +5389,8 @@ static int GuiScrollBar(Rectangle bounds, int value, int minValue, int maxValue) } else { - guiSliderDragging = false; - guiSliderActive = RAYGUI_CLITERAL(Rectangle){ 0, 0, 0, 0 }; + guiControlExclusiveMode = false; + guiControlExclusiveRec = RAYGUI_CLITERAL(Rectangle){ 0, 0, 0, 0 }; } } else if (CheckCollisionPointRec(mousePoint, bounds)) @@ -5236,8 +5404,8 @@ static int GuiScrollBar(Rectangle bounds, int value, int minValue, int maxValue) // Handle mouse button down if (IsMouseButtonPressed(MOUSE_LEFT_BUTTON)) { - guiSliderDragging = true; - guiSliderActive = bounds; // Store bounds as an identifier when dragging starts + guiControlExclusiveMode = true; + guiControlExclusiveRec = bounds; // Store bounds as an identifier when dragging starts // Check arrows click if (CheckCollisionPointRec(mousePoint, arrowUpLeft)) value -= valueRange/GuiGetStyle(SCROLLBAR, SCROLL_SPEED); @@ -5437,6 +5605,37 @@ static int TextToInteger(const char *text) return value*sign; } +// Get float value from text +// NOTE: This function replaces atof() [stdlib.h] +// WARNING: Only '.' character is understood as decimal point +static float TextToFloat(const char *text) +{ + float value = 0.0f; + float sign = 1.0f; + + if ((text[0] == '+') || (text[0] == '-')) + { + if (text[0] == '-') sign = -1.0f; + text++; + } + + int i = 0; + for (; ((text[i] >= '0') && (text[i] <= '9')); i++) value = value*10.0f + (float)(text[i] - '0'); + + if (text[i++] != '.') value *= sign; + else + { + float divisor = 10.0f; + for (; ((text[i] >= '0') && (text[i] <= '9')); i++) + { + value += ((float)(text[i] - '0'))/divisor; + divisor = divisor*10.0f; + } + } + + return value; +} + // Encode codepoint into UTF-8 text (char array size returned as parameter) static const char *CodepointToUTF8(int codepoint, int *byteSize) { @@ -5490,21 +5689,21 @@ static int GetCodepointNext(const char *text, int *codepointSize) if (0xf0 == (0xf8 & ptr[0])) { // 4 byte UTF-8 codepoint - if(((ptr[1] & 0xC0) ^ 0x80) || ((ptr[2] & 0xC0) ^ 0x80) || ((ptr[3] & 0xC0) ^ 0x80)) { return codepoint; } //10xxxxxx checks + if (((ptr[1] & 0xC0) ^ 0x80) || ((ptr[2] & 0xC0) ^ 0x80) || ((ptr[3] & 0xC0) ^ 0x80)) { return codepoint; } //10xxxxxx checks codepoint = ((0x07 & ptr[0]) << 18) | ((0x3f & ptr[1]) << 12) | ((0x3f & ptr[2]) << 6) | (0x3f & ptr[3]); *codepointSize = 4; } else if (0xe0 == (0xf0 & ptr[0])) { // 3 byte UTF-8 codepoint */ - if(((ptr[1] & 0xC0) ^ 0x80) || ((ptr[2] & 0xC0) ^ 0x80)) { return codepoint; } //10xxxxxx checks + if (((ptr[1] & 0xC0) ^ 0x80) || ((ptr[2] & 0xC0) ^ 0x80)) { return codepoint; } //10xxxxxx checks codepoint = ((0x0f & ptr[0]) << 12) | ((0x3f & ptr[1]) << 6) | (0x3f & ptr[2]); *codepointSize = 3; } else if (0xc0 == (0xe0 & ptr[0])) { // 2 byte UTF-8 codepoint - if((ptr[1] & 0xC0) ^ 0x80) { return codepoint; } //10xxxxxx checks + if ((ptr[1] & 0xC0) ^ 0x80) { return codepoint; } //10xxxxxx checks codepoint = ((0x1f & ptr[0]) << 6) | (0x3f & ptr[1]); *codepointSize = 2; } @@ -5515,9 +5714,8 @@ static int GetCodepointNext(const char *text, int *codepointSize) *codepointSize = 1; } - return codepoint; } #endif // RAYGUI_STANDALONE -#endif // RAYGUI_IMPLEMENTATION +#endif // RAYGUI_IMPLEMENTATION \ No newline at end of file diff --git a/examples/shapes/shapes_bouncing_ball.c b/examples/shapes/shapes_bouncing_ball.c index 7a3068163..df0c37c1c 100644 --- a/examples/shapes/shapes_bouncing_ball.c +++ b/examples/shapes/shapes_bouncing_ball.c @@ -62,7 +62,7 @@ int main(void) ClearBackground(RAYWHITE); DrawCircleV(ballPosition, (float)ballRadius, MAROON); - //DrawText("PRESS SPACE to PAUSE BALL MOVEMENT", 10, GetScreenHeight() - 25, 20, LIGHTGRAY); + DrawText("PRESS SPACE to PAUSE BALL MOVEMENT", 10, GetScreenHeight() - 25, 20, LIGHTGRAY); // On pause, we draw a blinking message if (pause && ((framesCounter/30)%2)) DrawText("PAUSED", 350, 200, 30, GRAY); diff --git a/examples/shapes/shapes_draw_circle_sector.c b/examples/shapes/shapes_draw_circle_sector.c index 30eaaf4bd..cb9ab859b 100644 --- a/examples/shapes/shapes_draw_circle_sector.c +++ b/examples/shapes/shapes_draw_circle_sector.c @@ -63,11 +63,11 @@ int main(void) // Draw GUI controls //------------------------------------------------------------------------------ - GuiSliderBar((Rectangle){ 600, 40, 120, 20}, "StartAngle", NULL, &startAngle, 0, 720); - GuiSliderBar((Rectangle){ 600, 70, 120, 20}, "EndAngle", NULL, &endAngle, 0, 720); + GuiSliderBar((Rectangle){ 600, 40, 120, 20}, "StartAngle", TextFormat("%.2f", startAngle), &startAngle, 0, 720); + GuiSliderBar((Rectangle){ 600, 70, 120, 20}, "EndAngle", TextFormat("%.2f", endAngle), &endAngle, 0, 720); - GuiSliderBar((Rectangle){ 600, 140, 120, 20}, "Radius", NULL, &outerRadius, 0, 200); - GuiSliderBar((Rectangle){ 600, 170, 120, 20}, "Segments", NULL, &segments, 0, 100); + GuiSliderBar((Rectangle){ 600, 140, 120, 20}, "Radius", TextFormat("%.2f", outerRadius), &outerRadius, 0, 200); + GuiSliderBar((Rectangle){ 600, 170, 120, 20}, "Segments", TextFormat("%.2f", segments), &segments, 0, 100); //------------------------------------------------------------------------------ minSegments = truncf(ceilf((endAngle - startAngle) / 90)); diff --git a/examples/shapes/shapes_draw_rectangle_rounded.c b/examples/shapes/shapes_draw_rectangle_rounded.c index 19280ed00..58991884c 100644 --- a/examples/shapes/shapes_draw_rectangle_rounded.c +++ b/examples/shapes/shapes_draw_rectangle_rounded.c @@ -66,11 +66,11 @@ int main(void) // Draw GUI controls //------------------------------------------------------------------------------ - GuiSliderBar((Rectangle){ 640, 40, 105, 20 }, "Width", NULL, &width, 0, (float)GetScreenWidth() - 300); - GuiSliderBar((Rectangle){ 640, 70, 105, 20 }, "Height", NULL, &height, 0, (float)GetScreenHeight() - 50); - GuiSliderBar((Rectangle){ 640, 140, 105, 20 }, "Roundness", NULL, &roundness, 0.0f, 1.0f); - GuiSliderBar((Rectangle){ 640, 170, 105, 20 }, "Thickness", NULL, &lineThick, 0, 20); - GuiSliderBar((Rectangle){ 640, 240, 105, 20}, "Segments", NULL, &segments, 0, 60); + GuiSliderBar((Rectangle){ 640, 40, 105, 20 }, "Width", TextFormat("%.2f", width), &width, 0, (float)GetScreenWidth() - 300); + GuiSliderBar((Rectangle){ 640, 70, 105, 20 }, "Height", TextFormat("%.2f", height), &height, 0, (float)GetScreenHeight() - 50); + GuiSliderBar((Rectangle){ 640, 140, 105, 20 }, "Roundness", TextFormat("%.2f", roundness), &roundness, 0.0f, 1.0f); + GuiSliderBar((Rectangle){ 640, 170, 105, 20 }, "Thickness", TextFormat("%.2f", lineThick), &lineThick, 0, 20); + GuiSliderBar((Rectangle){ 640, 240, 105, 20}, "Segments", TextFormat("%.2f", segments), &segments, 0, 60); GuiCheckBox((Rectangle){ 640, 320, 20, 20 }, "DrawRoundedRect", &drawRoundedRect); GuiCheckBox((Rectangle){ 640, 350, 20, 20 }, "DrawRoundedLines", &drawRoundedLines); diff --git a/examples/shapes/shapes_draw_ring.c b/examples/shapes/shapes_draw_ring.c index 60c95a4c0..8bccdf729 100644 --- a/examples/shapes/shapes_draw_ring.c +++ b/examples/shapes/shapes_draw_ring.c @@ -69,13 +69,13 @@ int main(void) // Draw GUI controls //------------------------------------------------------------------------------ - GuiSliderBar((Rectangle){ 600, 40, 120, 20 }, "StartAngle", NULL, &startAngle, -450, 450); - GuiSliderBar((Rectangle){ 600, 70, 120, 20 }, "EndAngle", NULL, &endAngle, -450, 450); + GuiSliderBar((Rectangle){ 600, 40, 120, 20 }, "StartAngle", TextFormat("%.2f", startAngle), &startAngle, -450, 450); + GuiSliderBar((Rectangle){ 600, 70, 120, 20 }, "EndAngle", TextFormat("%.2f", endAngle), &endAngle, -450, 450); - GuiSliderBar((Rectangle){ 600, 140, 120, 20 }, "InnerRadius", NULL, &innerRadius, 0, 100); - GuiSliderBar((Rectangle){ 600, 170, 120, 20 }, "OuterRadius", NULL, &outerRadius, 0, 200); + GuiSliderBar((Rectangle){ 600, 140, 120, 20 }, "InnerRadius", TextFormat("%.2f", innerRadius), &innerRadius, 0, 100); + GuiSliderBar((Rectangle){ 600, 170, 120, 20 }, "OuterRadius", TextFormat("%.2f", outerRadius), &outerRadius, 0, 200); - GuiSliderBar((Rectangle){ 600, 240, 120, 20 }, "Segments", NULL, &segments, 0, 100); + GuiSliderBar((Rectangle){ 600, 240, 120, 20 }, "Segments", TextFormat("%.2f", segments), &segments, 0, 100); GuiCheckBox((Rectangle){ 600, 320, 20, 20 }, "Draw Ring", &drawRing); GuiCheckBox((Rectangle){ 600, 350, 20, 20 }, "Draw RingLines", &drawRingLines); diff --git a/examples/text/text_input_box.c b/examples/text/text_input_box.c index eeb338f1f..c53057711 100644 --- a/examples/text/text_input_box.c +++ b/examples/text/text_input_box.c @@ -35,7 +35,7 @@ int main(void) int framesCounter = 0; - SetTargetFPS(10); // Set our game to run at 10 frames-per-second + SetTargetFPS(60); // Set our game to run at 60 frames-per-second //-------------------------------------------------------------------------------------- // Main game loop diff --git a/examples/text/text_writing_anim.c b/examples/text/text_writing_anim.c index 1e7cd569f..8e2820fc9 100644 --- a/examples/text/text_writing_anim.c +++ b/examples/text/text_writing_anim.c @@ -52,7 +52,7 @@ int main(void) DrawText(TextSubtext(message, 0, framesCounter/10), 210, 160, 20, MAROON); DrawText("PRESS [ENTER] to RESTART!", 240, 260, 20, LIGHTGRAY); - DrawText("PRESS [SPACE] to SPEED UP!", 239, 300, 20, LIGHTGRAY); + DrawText("HOLD [SPACE] to SPEED UP!", 239, 300, 20, LIGHTGRAY); EndDrawing(); //---------------------------------------------------------------------------------- diff --git a/examples/textures/resources/test.svg b/examples/textures/resources/test.svg deleted file mode 100644 index 3d9bbb113..000000000 --- a/examples/textures/resources/test.svg +++ /dev/null @@ -1 +0,0 @@ - \ No newline at end of file diff --git a/examples/textures/textures_blend_modes.c b/examples/textures/textures_blend_modes.c index 660aa57a7..d97432cb2 100644 --- a/examples/textures/textures_blend_modes.c +++ b/examples/textures/textures_blend_modes.c @@ -43,6 +43,9 @@ int main(void) const int blendCountMax = 4; BlendMode blendMode = 0; + SetTargetFPS(60); // Set our game to run at 60 frames-per-second + //--------------------------------------------------------------------------------------- + // Main game loop while (!WindowShouldClose()) // Detect window close button or ESC key { diff --git a/examples/textures/textures_image_drawing.c b/examples/textures/textures_image_drawing.c index f49bc9e77..d0eee999d 100644 --- a/examples/textures/textures_image_drawing.c +++ b/examples/textures/textures_image_drawing.c @@ -47,7 +47,7 @@ int main(void) UnloadImage(cat); // Unload image from RAM - // Load custom font for frawing on image + // Load custom font for drawing on image Font font = LoadFont("resources/custom_jupiter_crash.png"); // Draw over image using custom font @@ -93,4 +93,4 @@ int main(void) //-------------------------------------------------------------------------------------- return 0; -} \ No newline at end of file +} diff --git a/examples/textures/textures_image_rotate.c b/examples/textures/textures_image_rotate.c index 51724e037..94c42034b 100644 --- a/examples/textures/textures_image_rotate.c +++ b/examples/textures/textures_image_rotate.c @@ -43,6 +43,8 @@ int main(void) textures[2] = LoadTextureFromImage(imageNeg90); int currentTexture = 0; + + SetTargetFPS(60); // Set our game to run at 60 frames-per-second //--------------------------------------------------------------------------------------- // Main game loop diff --git a/examples/textures/textures_logo_raylib.c b/examples/textures/textures_logo_raylib.c index f170dab48..35baa1223 100644 --- a/examples/textures/textures_logo_raylib.c +++ b/examples/textures/textures_logo_raylib.c @@ -27,6 +27,8 @@ int main(void) // NOTE: Textures MUST be loaded after Window initialization (OpenGL context is required) Texture2D texture = LoadTexture("resources/raylib_logo.png"); // Texture loading + + SetTargetFPS(60); // Set our game to run at 60 frames-per-second //--------------------------------------------------------------------------------------- // Main game loop diff --git a/examples/textures/textures_raw_data.c b/examples/textures/textures_raw_data.c index 38229f1ba..6fb41b143 100644 --- a/examples/textures/textures_raw_data.c +++ b/examples/textures/textures_raw_data.c @@ -63,6 +63,8 @@ int main(void) Texture2D checked = LoadTextureFromImage(checkedIm); UnloadImage(checkedIm); // Unload CPU (RAM) image data (pixels) + + SetTargetFPS(60); // Set our game to run at 60 frames-per-second //--------------------------------------------------------------------------------------- // Main game loop diff --git a/examples/textures/textures_sprite_explosion.c b/examples/textures/textures_sprite_explosion.c index 06b4f1dad..a65426cb6 100644 --- a/examples/textures/textures_sprite_explosion.c +++ b/examples/textures/textures_sprite_explosion.c @@ -48,8 +48,8 @@ int main(void) bool active = false; int framesCounter = 0; - SetTargetFPS(120); - //-------------------------------------------------------------------------------------- + SetTargetFPS(60); // Set our game to run at 60 frames-per-second + //--------------------------------------------------------------------------------------- // Main game loop while (!WindowShouldClose()) // Detect window close button or ESC key diff --git a/examples/textures/textures_svg_loading.c b/examples/textures/textures_svg_loading.c deleted file mode 100644 index 434ec7602..000000000 --- a/examples/textures/textures_svg_loading.c +++ /dev/null @@ -1,72 +0,0 @@ -/******************************************************************************************* -* -* raylib [textures] example - SVG loading and texture creation -* -* NOTE: Images are loaded in CPU memory (RAM); textures are loaded in GPU memory (VRAM) -* -* Example originally created with raylib 4.2, last time updated with raylib 4.2 -* -* Example licensed under an unmodified zlib/libpng license, which is an OSI-certified, -* BSD-like license that allows static linking with closed source software -* -* Copyright (c) 2022 Dennis Meinen (@bixxy#4258 on Discord) -* -********************************************************************************************/ - -#include "raylib.h" - -//------------------------------------------------------------------------------------ -// Program main entry point -//------------------------------------------------------------------------------------ -int main(void) -{ - // Initialization - //-------------------------------------------------------------------------------------- - const int screenWidth = 800; - const int screenHeight = 450; - - InitWindow(screenWidth, screenHeight, "raylib [textures] example - svg loading"); - - // NOTE: Textures MUST be loaded after Window initialization (OpenGL context is required) - - Image image = LoadImageSvg("resources/test.svg", 400, 350); // Loaded in CPU memory (RAM) - Texture2D texture = LoadTextureFromImage(image); // Image converted to texture, GPU memory (VRAM) - UnloadImage(image); // Once image has been converted to texture and uploaded to VRAM, it can be unloaded from RAM - - SetTargetFPS(60); // Set our game to run at 60 frames-per-second - //--------------------------------------------------------------------------------------- - - // Main game loop - while (!WindowShouldClose()) // Detect window close button or ESC key - { - // Update - //---------------------------------------------------------------------------------- - // TODO: Update your variables here - //---------------------------------------------------------------------------------- - - // Draw - //---------------------------------------------------------------------------------- - BeginDrawing(); - - ClearBackground(RAYWHITE); - - DrawTexture(texture, screenWidth/2 - texture.width/2, screenHeight/2 - texture.height/2, WHITE); - - //Red border to illustrate how the SVG is centered within the specified dimensions - DrawRectangleLines((screenWidth / 2 - texture.width / 2) - 1, (screenHeight / 2 - texture.height / 2) - 1, texture.width + 2, texture.height + 2, RED); - - DrawText("this IS a texture loaded from an SVG file!", 300, 410, 10, GRAY); - - EndDrawing(); - //---------------------------------------------------------------------------------- - } - - // De-Initialization - //-------------------------------------------------------------------------------------- - UnloadTexture(texture); // Texture unloading - - CloseWindow(); // Close window and OpenGL context - //-------------------------------------------------------------------------------------- - - return 0; -} \ No newline at end of file diff --git a/examples/textures/textures_svg_loading.png b/examples/textures/textures_svg_loading.png deleted file mode 100644 index fa98605fa..000000000 Binary files a/examples/textures/textures_svg_loading.png and /dev/null differ diff --git a/examples/textures/textures_to_image.c b/examples/textures/textures_to_image.c index 2d09623eb..e1d88c4cd 100644 --- a/examples/textures/textures_to_image.c +++ b/examples/textures/textures_to_image.c @@ -38,6 +38,8 @@ int main(void) texture = LoadTextureFromImage(image); // Recreate texture from retrieved image data (RAM -> VRAM) UnloadImage(image); // Unload retrieved image data from CPU memory (RAM) + + SetTargetFPS(60); // Set our game to run at 60 frames-per-second //--------------------------------------------------------------------------------------- // Main game loop diff --git a/parser/README.md b/parser/README.md index 45a2689a0..6616cdc51 100644 --- a/parser/README.md +++ b/parser/README.md @@ -41,7 +41,7 @@ OPTIONS: -f, --format : Define output format for parser data. Supported types: DEFAULT, JSON, XML, LUA - -d, --define : Define functions specifiers (i.e. RLAPI for raylib.h, RMDEF for raymath.h, etc.) + -d, --define : Define functions specifiers (i.e. RLAPI for raylib.h, RMAPI for raymath.h, etc.) NOTE: If no specifier defined, defaults to: RLAPI -t, --truncate : Define string to truncate input after (i.e. "RLGL IMPLEMENTATION" for rlgl.h) @@ -56,7 +56,7 @@ EXAMPLES: > raylib_parser --output raylib_data.info --format XML Process to generate as XML text data - > raylib_parser --input raymath.h --output raymath_data.info --format XML + > raylib_parser --input raymath.h --output raymath_data.info --format XML --define RMAPI Process to generate as XML text data ``` diff --git a/parser/output/raylib_api.json b/parser/output/raylib_api.json index f149d628f..37b0a16a6 100644 --- a/parser/output/raylib_api.json +++ b/parser/output/raylib_api.json @@ -27,7 +27,7 @@ { "name": "RAYLIB_VERSION", "type": "STRING", - "value": "5.5-dev", + "value": "5.5", "description": "" }, { @@ -850,12 +850,22 @@ { "type": "unsigned char *", "name": "boneIds", - "description": "Vertex bone ids, max 255 bone ids, up to 4 bones influence by vertex (skinning)" + "description": "Vertex bone ids, max 255 bone ids, up to 4 bones influence by vertex (skinning) (shader-location = 6)" }, { "type": "float *", "name": "boneWeights", - "description": "Vertex bone weight, up to 4 bones influence by vertex (skinning)" + "description": "Vertex bone weight, up to 4 bones influence by vertex (skinning) (shader-location = 7)" + }, + { + "type": "Matrix *", + "name": "boneMatrices", + "description": "Bones animated transformation matrices" + }, + { + "type": "int", + "name": "boneCount", + "description": "Number of bones" }, { "type": "unsigned int", @@ -2518,6 +2528,21 @@ "name": "SHADER_LOC_MAP_BRDF", "value": 25, "description": "Shader location: sampler2d texture: brdf" + }, + { + "name": "SHADER_LOC_VERTEX_BONEIDS", + "value": 26, + "description": "Shader location: vertex attribute: boneIds" + }, + { + "name": "SHADER_LOC_VERTEX_BONEWEIGHTS", + "value": 27, + "description": "Shader location: vertex attribute: boneWeights" + }, + { + "name": "SHADER_LOC_BONE_MATRICES", + "value": 28, + "description": "Shader location: array of matrices uniform: boneMatrices" } ] }, @@ -2814,11 +2839,6 @@ "name": "CUBEMAP_LAYOUT_CROSS_FOUR_BY_THREE", "value": 4, "description": "Layout is defined by a 4x3 cross with cubemap faces" - }, - { - "name": "CUBEMAP_LAYOUT_PANORAMA", - "value": 5, - "description": "Layout is defined by a panorama image (equirrectangular map)" } ] }, @@ -3157,22 +3177,22 @@ }, { "name": "IsWindowHidden", - "description": "Check if window is currently hidden (only PLATFORM_DESKTOP)", + "description": "Check if window is currently hidden", "returnType": "bool" }, { "name": "IsWindowMinimized", - "description": "Check if window is currently minimized (only PLATFORM_DESKTOP)", + "description": "Check if window is currently minimized", "returnType": "bool" }, { "name": "IsWindowMaximized", - "description": "Check if window is currently maximized (only PLATFORM_DESKTOP)", + "description": "Check if window is currently maximized", "returnType": "bool" }, { "name": "IsWindowFocused", - "description": "Check if window is currently focused (only PLATFORM_DESKTOP)", + "description": "Check if window is currently focused", "returnType": "bool" }, { @@ -3193,7 +3213,7 @@ }, { "name": "SetWindowState", - "description": "Set window configuration state using flags (only PLATFORM_DESKTOP)", + "description": "Set window configuration state using flags", "returnType": "void", "params": [ { @@ -3215,32 +3235,32 @@ }, { "name": "ToggleFullscreen", - "description": "Toggle window state: fullscreen/windowed (only PLATFORM_DESKTOP)", + "description": "Toggle window state: fullscreen/windowed, resizes monitor to match window resolution", "returnType": "void" }, { "name": "ToggleBorderlessWindowed", - "description": "Toggle window state: borderless windowed (only PLATFORM_DESKTOP)", + "description": "Toggle window state: borderless windowed, resizes window to match monitor resolution", "returnType": "void" }, { "name": "MaximizeWindow", - "description": "Set window state: maximized, if resizable (only PLATFORM_DESKTOP)", + "description": "Set window state: maximized, if resizable", "returnType": "void" }, { "name": "MinimizeWindow", - "description": "Set window state: minimized, if resizable (only PLATFORM_DESKTOP)", + "description": "Set window state: minimized, if resizable", "returnType": "void" }, { "name": "RestoreWindow", - "description": "Set window state: not minimized/maximized (only PLATFORM_DESKTOP)", + "description": "Set window state: not minimized/maximized", "returnType": "void" }, { "name": "SetWindowIcon", - "description": "Set icon for window (single image, RGBA 32bit, only PLATFORM_DESKTOP)", + "description": "Set icon for window (single image, RGBA 32bit)", "returnType": "void", "params": [ { @@ -3251,7 +3271,7 @@ }, { "name": "SetWindowIcons", - "description": "Set icon for window (multiple images, RGBA 32bit, only PLATFORM_DESKTOP)", + "description": "Set icon for window (multiple images, RGBA 32bit)", "returnType": "void", "params": [ { @@ -3266,7 +3286,7 @@ }, { "name": "SetWindowTitle", - "description": "Set title for window (only PLATFORM_DESKTOP and PLATFORM_WEB)", + "description": "Set title for window", "returnType": "void", "params": [ { @@ -3277,7 +3297,7 @@ }, { "name": "SetWindowPosition", - "description": "Set window position on screen (only PLATFORM_DESKTOP)", + "description": "Set window position on screen", "returnType": "void", "params": [ { @@ -3348,7 +3368,7 @@ }, { "name": "SetWindowOpacity", - "description": "Set window opacity [0.0f..1.0f] (only PLATFORM_DESKTOP)", + "description": "Set window opacity [0.0f..1.0f]", "returnType": "void", "params": [ { @@ -3359,7 +3379,7 @@ }, { "name": "SetWindowFocused", - "description": "Set window focused (only PLATFORM_DESKTOP)", + "description": "Set window focused", "returnType": "void" }, { @@ -3394,7 +3414,7 @@ }, { "name": "GetCurrentMonitor", - "description": "Get current connected monitor", + "description": "Get current monitor where window is placed", "returnType": "int" }, { @@ -3738,8 +3758,8 @@ ] }, { - "name": "IsShaderReady", - "description": "Check if a shader is ready", + "name": "IsShaderValid", + "description": "Check if a shader is valid (loaded on GPU)", "returnType": "bool", "params": [ { @@ -4477,6 +4497,17 @@ "description": "Get the directory of the running application (uses static string)", "returnType": "const char *" }, + { + "name": "MakeDirectory", + "description": "Create directories (including full path requested), returns 0 on success", + "returnType": "int", + "params": [ + { + "type": "const char *", + "name": "dirPath" + } + ] + }, { "name": "ChangeDirectory", "description": "Change working directory, return true on success", @@ -4523,7 +4554,7 @@ }, { "name": "LoadDirectoryFilesEx", - "description": "Load directory filepaths with extension filtering and recursive directory scan", + "description": "Load directory filepaths with extension filtering and recursive directory scan. Use 'DIR' in the filter string to include directories in the result", "returnType": "FilePathList", "params": [ { @@ -4655,6 +4686,51 @@ } ] }, + { + "name": "ComputeCRC32", + "description": "Compute CRC32 hash code", + "returnType": "unsigned int", + "params": [ + { + "type": "unsigned char *", + "name": "data" + }, + { + "type": "int", + "name": "dataSize" + } + ] + }, + { + "name": "ComputeMD5", + "description": "Compute MD5 hash code, returns static int[4] (16 bytes)", + "returnType": "unsigned int *", + "params": [ + { + "type": "unsigned char *", + "name": "data" + }, + { + "type": "int", + "name": "dataSize" + } + ] + }, + { + "name": "ComputeSHA1", + "description": "Compute SHA1 hash code, returns static int[5] (20 bytes)", + "returnType": "unsigned int *", + "params": [ + { + "type": "unsigned char *", + "name": "data" + }, + { + "type": "int", + "name": "dataSize" + } + ] + }, { "name": "LoadAutomationEventList", "description": "Load automation events list from file, NULL for empty list, capacity = MAX_AUTOMATION_EVENTS", @@ -4748,7 +4824,7 @@ }, { "name": "IsKeyPressedRepeat", - "description": "Check if a key has been pressed again (Only PLATFORM_DESKTOP)", + "description": "Check if a key has been pressed again", "returnType": "bool", "params": [ { @@ -4937,7 +5013,7 @@ }, { "name": "SetGamepadVibration", - "description": "Set gamepad vibration for both motors", + "description": "Set gamepad vibration for both motors (duration in seconds)", "returnType": "void", "params": [ { @@ -4951,6 +5027,10 @@ { "type": "float", "name": "rightMotor" + }, + { + "type": "float", + "name": "duration" } ] }, @@ -5150,7 +5230,7 @@ }, { "name": "GetGestureHoldDuration", - "description": "Get gesture hold time in milliseconds", + "description": "Get gesture hold time in seconds", "returnType": "float" }, { @@ -5238,7 +5318,7 @@ }, { "name": "DrawPixel", - "description": "Draw a pixel", + "description": "Draw a pixel using geometry [Can be slow, use with care]", "returnType": "void", "params": [ { @@ -5257,7 +5337,7 @@ }, { "name": "DrawPixelV", - "description": "Draw a pixel (Vector version)", + "description": "Draw a pixel using geometry (Vector version) [Can be slow, use with care]", "returnType": "void", "params": [ { @@ -5485,11 +5565,11 @@ }, { "type": "Color", - "name": "color1" + "name": "inner" }, { "type": "Color", - "name": "color2" + "name": "outer" } ] }, @@ -5785,11 +5865,11 @@ }, { "type": "Color", - "name": "color1" + "name": "top" }, { "type": "Color", - "name": "color2" + "name": "bottom" } ] }, @@ -5816,11 +5896,11 @@ }, { "type": "Color", - "name": "color1" + "name": "left" }, { "type": "Color", - "name": "color2" + "name": "right" } ] }, @@ -5835,19 +5915,19 @@ }, { "type": "Color", - "name": "col1" + "name": "topLeft" }, { "type": "Color", - "name": "col2" + "name": "bottomLeft" }, { "type": "Color", - "name": "col3" + "name": "topRight" }, { "type": "Color", - "name": "col4" + "name": "bottomRight" } ] }, @@ -6577,6 +6657,29 @@ } ] }, + { + "name": "CheckCollisionCircleLine", + "description": "Check if circle collides with a line created betweeen two points [p1] and [p2]", + "returnType": "bool", + "params": [ + { + "type": "Vector2", + "name": "center" + }, + { + "type": "float", + "name": "radius" + }, + { + "type": "Vector2", + "name": "p1" + }, + { + "type": "Vector2", + "name": "p2" + } + ] + }, { "name": "CheckCollisionPointRec", "description": "Check if point is inside rectangle", @@ -6634,6 +6737,29 @@ } ] }, + { + "name": "CheckCollisionPointLine", + "description": "Check if point belongs to line created between two points [p1] and [p2] with defined margin in pixels [threshold]", + "returnType": "bool", + "params": [ + { + "type": "Vector2", + "name": "point" + }, + { + "type": "Vector2", + "name": "p1" + }, + { + "type": "Vector2", + "name": "p2" + }, + { + "type": "int", + "name": "threshold" + } + ] + }, { "name": "CheckCollisionPointPoly", "description": "Check if point is within a polygon described by array of vertices", @@ -6680,52 +6806,6 @@ } ] }, - { - "name": "CheckCollisionPointLine", - "description": "Check if point belongs to line created between two points [p1] and [p2] with defined margin in pixels [threshold]", - "returnType": "bool", - "params": [ - { - "type": "Vector2", - "name": "point" - }, - { - "type": "Vector2", - "name": "p1" - }, - { - "type": "Vector2", - "name": "p2" - }, - { - "type": "int", - "name": "threshold" - } - ] - }, - { - "name": "CheckCollisionCircleLine", - "description": "Check if circle collides with a line created betweeen two points [p1] and [p2]", - "returnType": "bool", - "params": [ - { - "type": "Vector2", - "name": "center" - }, - { - "type": "float", - "name": "radius" - }, - { - "type": "Vector2", - "name": "p1" - }, - { - "type": "Vector2", - "name": "p2" - } - ] - }, { "name": "GetCollisionRec", "description": "Get collision rectangle for two rectangles collision", @@ -6779,25 +6859,6 @@ } ] }, - { - "name": "LoadImageSvg", - "description": "Load image from SVG file data or string with specified size", - "returnType": "Image", - "params": [ - { - "type": "const char *", - "name": "fileNameOrString" - }, - { - "type": "int", - "name": "width" - }, - { - "type": "int", - "name": "height" - } - ] - }, { "name": "LoadImageAnim", "description": "Load image sequence from file (frames appended to image.data)", @@ -6872,8 +6933,8 @@ "returnType": "Image" }, { - "name": "IsImageReady", - "description": "Check if an image is ready", + "name": "IsImageValid", + "description": "Check if an image is valid (data and parameters)", "returnType": "bool", "params": [ { @@ -8336,8 +8397,8 @@ ] }, { - "name": "IsTextureReady", - "description": "Check if a texture is ready", + "name": "IsTextureValid", + "description": "Check if a texture is valid (loaded in GPU)", "returnType": "bool", "params": [ { @@ -8358,8 +8419,8 @@ ] }, { - "name": "IsRenderTextureReady", - "description": "Check if a render texture is ready", + "name": "IsRenderTextureValid", + "description": "Check if a render texture is valid (loaded in GPU)", "returnType": "bool", "params": [ { @@ -8780,6 +8841,25 @@ } ] }, + { + "name": "ColorLerp", + "description": "Get color lerp interpolation between two colors, factor [0.0f..1.0f]", + "returnType": "Color", + "params": [ + { + "type": "Color", + "name": "color1" + }, + { + "type": "Color", + "name": "color2" + }, + { + "type": "float", + "name": "factor" + } + ] + }, { "name": "GetColor", "description": "Get Color structure from hexadecimal value", @@ -8862,7 +8942,7 @@ }, { "name": "LoadFontEx", - "description": "Load font from file with extended parameters, use NULL for codepoints and 0 for codepointCount to load the default character setFont", + "description": "Load font from file with extended parameters, use NULL for codepoints and 0 for codepointCount to load the default character set, font size is provided in pixels height", "returnType": "Font", "params": [ { @@ -8934,8 +9014,8 @@ ] }, { - "name": "IsFontReady", - "description": "Check if a font is ready", + "name": "IsFontValid", + "description": "Check if a font is valid (font data loaded, WARNING: GPU texture not checked)", "returnType": "bool", "params": [ { @@ -10226,8 +10306,8 @@ ] }, { - "name": "IsModelReady", - "description": "Check if a model is ready", + "name": "IsModelValid", + "description": "Check if a model is valid (loaded in GPU, VAO/VBOs)", "returnType": "bool", "params": [ { @@ -10366,6 +10446,60 @@ } ] }, + { + "name": "DrawModelPoints", + "description": "Draw a model as points", + "returnType": "void", + "params": [ + { + "type": "Model", + "name": "model" + }, + { + "type": "Vector3", + "name": "position" + }, + { + "type": "float", + "name": "scale" + }, + { + "type": "Color", + "name": "tint" + } + ] + }, + { + "name": "DrawModelPointsEx", + "description": "Draw a model as points with extended parameters", + "returnType": "void", + "params": [ + { + "type": "Model", + "name": "model" + }, + { + "type": "Vector3", + "name": "position" + }, + { + "type": "Vector3", + "name": "rotationAxis" + }, + { + "type": "float", + "name": "rotationAngle" + }, + { + "type": "Vector3", + "name": "scale" + }, + { + "type": "Color", + "name": "tint" + } + ] + }, { "name": "DrawBoundingBox", "description": "Draw bounding box (wires)", @@ -10859,8 +10993,8 @@ "returnType": "Material" }, { - "name": "IsMaterialReady", - "description": "Check if a material is ready", + "name": "IsMaterialValid", + "description": "Check if a material is valid (shader assigned, map textures loaded in GPU)", "returnType": "bool", "params": [ { @@ -10935,7 +11069,26 @@ }, { "name": "UpdateModelAnimation", - "description": "Update model animation pose", + "description": "Update model animation pose (CPU)", + "returnType": "void", + "params": [ + { + "type": "Model", + "name": "model" + }, + { + "type": "ModelAnimation", + "name": "anim" + }, + { + "type": "int", + "name": "frame" + } + ] + }, + { + "name": "UpdateModelAnimationBoneMatrices", + "description": "Update model animation mesh bone matrices (GPU skinning)", "returnType": "void", "params": [ { @@ -11215,8 +11368,8 @@ ] }, { - "name": "IsWaveReady", - "description": "Checks if wave data is ready", + "name": "IsWaveValid", + "description": "Checks if wave data is valid (data loaded and parameters)", "returnType": "bool", "params": [ { @@ -11259,8 +11412,8 @@ ] }, { - "name": "IsSoundReady", - "description": "Checks if a sound is ready", + "name": "IsSoundValid", + "description": "Checks if a sound is valid (data loaded and buffers initialized)", "returnType": "bool", "params": [ { @@ -11557,8 +11710,8 @@ ] }, { - "name": "IsMusicReady", - "description": "Checks if a music stream is ready", + "name": "IsMusicValid", + "description": "Checks if a music stream is valid (context and buffers initialized)", "returnType": "bool", "params": [ { @@ -11746,8 +11899,8 @@ ] }, { - "name": "IsAudioStreamReady", - "description": "Checks if an audio stream is ready", + "name": "IsAudioStreamValid", + "description": "Checks if an audio stream is valid (buffers initialized)", "returnType": "bool", "params": [ { diff --git a/parser/output/raylib_api.lua b/parser/output/raylib_api.lua index 7c00fff33..934c08eb7 100644 --- a/parser/output/raylib_api.lua +++ b/parser/output/raylib_api.lua @@ -27,7 +27,7 @@ return { { name = "RAYLIB_VERSION", type = "STRING", - value = "5.5-dev", + value = "5.5", description = "" }, { @@ -850,12 +850,22 @@ return { { type = "unsigned char *", name = "boneIds", - description = "Vertex bone ids, max 255 bone ids, up to 4 bones influence by vertex (skinning)" + description = "Vertex bone ids, max 255 bone ids, up to 4 bones influence by vertex (skinning) (shader-location = 6)" }, { type = "float *", name = "boneWeights", - description = "Vertex bone weight, up to 4 bones influence by vertex (skinning)" + description = "Vertex bone weight, up to 4 bones influence by vertex (skinning) (shader-location = 7)" + }, + { + type = "Matrix *", + name = "boneMatrices", + description = "Bones animated transformation matrices" + }, + { + type = "int", + name = "boneCount", + description = "Number of bones" }, { type = "unsigned int", @@ -2518,6 +2528,21 @@ return { name = "SHADER_LOC_MAP_BRDF", value = 25, description = "Shader location: sampler2d texture: brdf" + }, + { + name = "SHADER_LOC_VERTEX_BONEIDS", + value = 26, + description = "Shader location: vertex attribute: boneIds" + }, + { + name = "SHADER_LOC_VERTEX_BONEWEIGHTS", + value = 27, + description = "Shader location: vertex attribute: boneWeights" + }, + { + name = "SHADER_LOC_BONE_MATRICES", + value = 28, + description = "Shader location: array of matrices uniform: boneMatrices" } } }, @@ -2814,11 +2839,6 @@ return { name = "CUBEMAP_LAYOUT_CROSS_FOUR_BY_THREE", value = 4, description = "Layout is defined by a 4x3 cross with cubemap faces" - }, - { - name = "CUBEMAP_LAYOUT_PANORAMA", - value = 5, - description = "Layout is defined by a panorama image (equirrectangular map)" } } }, @@ -3109,22 +3129,22 @@ return { }, { name = "IsWindowHidden", - description = "Check if window is currently hidden (only PLATFORM_DESKTOP)", + description = "Check if window is currently hidden", returnType = "bool" }, { name = "IsWindowMinimized", - description = "Check if window is currently minimized (only PLATFORM_DESKTOP)", + description = "Check if window is currently minimized", returnType = "bool" }, { name = "IsWindowMaximized", - description = "Check if window is currently maximized (only PLATFORM_DESKTOP)", + description = "Check if window is currently maximized", returnType = "bool" }, { name = "IsWindowFocused", - description = "Check if window is currently focused (only PLATFORM_DESKTOP)", + description = "Check if window is currently focused", returnType = "bool" }, { @@ -3142,7 +3162,7 @@ return { }, { name = "SetWindowState", - description = "Set window configuration state using flags (only PLATFORM_DESKTOP)", + description = "Set window configuration state using flags", returnType = "void", params = { {type = "unsigned int", name = "flags"} @@ -3158,32 +3178,32 @@ return { }, { name = "ToggleFullscreen", - description = "Toggle window state: fullscreen/windowed (only PLATFORM_DESKTOP)", + description = "Toggle window state: fullscreen/windowed, resizes monitor to match window resolution", returnType = "void" }, { name = "ToggleBorderlessWindowed", - description = "Toggle window state: borderless windowed (only PLATFORM_DESKTOP)", + description = "Toggle window state: borderless windowed, resizes window to match monitor resolution", returnType = "void" }, { name = "MaximizeWindow", - description = "Set window state: maximized, if resizable (only PLATFORM_DESKTOP)", + description = "Set window state: maximized, if resizable", returnType = "void" }, { name = "MinimizeWindow", - description = "Set window state: minimized, if resizable (only PLATFORM_DESKTOP)", + description = "Set window state: minimized, if resizable", returnType = "void" }, { name = "RestoreWindow", - description = "Set window state: not minimized/maximized (only PLATFORM_DESKTOP)", + description = "Set window state: not minimized/maximized", returnType = "void" }, { name = "SetWindowIcon", - description = "Set icon for window (single image, RGBA 32bit, only PLATFORM_DESKTOP)", + description = "Set icon for window (single image, RGBA 32bit)", returnType = "void", params = { {type = "Image", name = "image"} @@ -3191,7 +3211,7 @@ return { }, { name = "SetWindowIcons", - description = "Set icon for window (multiple images, RGBA 32bit, only PLATFORM_DESKTOP)", + description = "Set icon for window (multiple images, RGBA 32bit)", returnType = "void", params = { {type = "Image *", name = "images"}, @@ -3200,7 +3220,7 @@ return { }, { name = "SetWindowTitle", - description = "Set title for window (only PLATFORM_DESKTOP and PLATFORM_WEB)", + description = "Set title for window", returnType = "void", params = { {type = "const char *", name = "title"} @@ -3208,7 +3228,7 @@ return { }, { name = "SetWindowPosition", - description = "Set window position on screen (only PLATFORM_DESKTOP)", + description = "Set window position on screen", returnType = "void", params = { {type = "int", name = "x"}, @@ -3252,7 +3272,7 @@ return { }, { name = "SetWindowOpacity", - description = "Set window opacity [0.0f..1.0f] (only PLATFORM_DESKTOP)", + description = "Set window opacity [0.0f..1.0f]", returnType = "void", params = { {type = "float", name = "opacity"} @@ -3260,7 +3280,7 @@ return { }, { name = "SetWindowFocused", - description = "Set window focused (only PLATFORM_DESKTOP)", + description = "Set window focused", returnType = "void" }, { @@ -3295,7 +3315,7 @@ return { }, { name = "GetCurrentMonitor", - description = "Get current connected monitor", + description = "Get current monitor where window is placed", returnType = "int" }, { @@ -3564,8 +3584,8 @@ return { } }, { - name = "IsShaderReady", - description = "Check if a shader is ready", + name = "IsShaderValid", + description = "Check if a shader is valid (loaded on GPU)", returnType = "bool", params = { {type = "Shader", name = "shader"} @@ -4042,6 +4062,14 @@ return { description = "Get the directory of the running application (uses static string)", returnType = "const char *" }, + { + name = "MakeDirectory", + description = "Create directories (including full path requested), returns 0 on success", + returnType = "int", + params = { + {type = "const char *", name = "dirPath"} + } + }, { name = "ChangeDirectory", description = "Change working directory, return true on success", @@ -4076,7 +4104,7 @@ return { }, { name = "LoadDirectoryFilesEx", - description = "Load directory filepaths with extension filtering and recursive directory scan", + description = "Load directory filepaths with extension filtering and recursive directory scan. Use 'DIR' in the filter string to include directories in the result", returnType = "FilePathList", params = { {type = "const char *", name = "basePath"}, @@ -4157,6 +4185,33 @@ return { {type = "int *", name = "outputSize"} } }, + { + name = "ComputeCRC32", + description = "Compute CRC32 hash code", + returnType = "unsigned int", + params = { + {type = "unsigned char *", name = "data"}, + {type = "int", name = "dataSize"} + } + }, + { + name = "ComputeMD5", + description = "Compute MD5 hash code, returns static int[4] (16 bytes)", + returnType = "unsigned int *", + params = { + {type = "unsigned char *", name = "data"}, + {type = "int", name = "dataSize"} + } + }, + { + name = "ComputeSHA1", + description = "Compute SHA1 hash code, returns static int[5] (20 bytes)", + returnType = "unsigned int *", + params = { + {type = "unsigned char *", name = "data"}, + {type = "int", name = "dataSize"} + } + }, { name = "LoadAutomationEventList", description = "Load automation events list from file, NULL for empty list, capacity = MAX_AUTOMATION_EVENTS", @@ -4226,7 +4281,7 @@ return { }, { name = "IsKeyPressedRepeat", - description = "Check if a key has been pressed again (Only PLATFORM_DESKTOP)", + description = "Check if a key has been pressed again", returnType = "bool", params = { {type = "int", name = "key"} @@ -4358,12 +4413,13 @@ return { }, { name = "SetGamepadVibration", - description = "Set gamepad vibration for both motors", + description = "Set gamepad vibration for both motors (duration in seconds)", returnType = "void", params = { {type = "int", name = "gamepad"}, {type = "float", name = "leftMotor"}, - {type = "float", name = "rightMotor"} + {type = "float", name = "rightMotor"}, + {type = "float", name = "duration"} } }, { @@ -4517,7 +4573,7 @@ return { }, { name = "GetGestureHoldDuration", - description = "Get gesture hold time in milliseconds", + description = "Get gesture hold time in seconds", returnType = "float" }, { @@ -4581,7 +4637,7 @@ return { }, { name = "DrawPixel", - description = "Draw a pixel", + description = "Draw a pixel using geometry [Can be slow, use with care]", returnType = "void", params = { {type = "int", name = "posX"}, @@ -4591,7 +4647,7 @@ return { }, { name = "DrawPixelV", - description = "Draw a pixel (Vector version)", + description = "Draw a pixel using geometry (Vector version) [Can be slow, use with care]", returnType = "void", params = { {type = "Vector2", name = "position"}, @@ -4697,8 +4753,8 @@ return { {type = "int", name = "centerX"}, {type = "int", name = "centerY"}, {type = "float", name = "radius"}, - {type = "Color", name = "color1"}, - {type = "Color", name = "color2"} + {type = "Color", name = "inner"}, + {type = "Color", name = "outer"} } }, { @@ -4835,8 +4891,8 @@ return { {type = "int", name = "posY"}, {type = "int", name = "width"}, {type = "int", name = "height"}, - {type = "Color", name = "color1"}, - {type = "Color", name = "color2"} + {type = "Color", name = "top"}, + {type = "Color", name = "bottom"} } }, { @@ -4848,8 +4904,8 @@ return { {type = "int", name = "posY"}, {type = "int", name = "width"}, {type = "int", name = "height"}, - {type = "Color", name = "color1"}, - {type = "Color", name = "color2"} + {type = "Color", name = "left"}, + {type = "Color", name = "right"} } }, { @@ -4858,10 +4914,10 @@ return { returnType = "void", params = { {type = "Rectangle", name = "rec"}, - {type = "Color", name = "col1"}, - {type = "Color", name = "col2"}, - {type = "Color", name = "col3"}, - {type = "Color", name = "col4"} + {type = "Color", name = "topLeft"}, + {type = "Color", name = "bottomLeft"}, + {type = "Color", name = "topRight"}, + {type = "Color", name = "bottomRight"} } }, { @@ -5203,6 +5259,17 @@ return { {type = "Rectangle", name = "rec"} } }, + { + name = "CheckCollisionCircleLine", + description = "Check if circle collides with a line created betweeen two points [p1] and [p2]", + returnType = "bool", + params = { + {type = "Vector2", name = "center"}, + {type = "float", name = "radius"}, + {type = "Vector2", name = "p1"}, + {type = "Vector2", name = "p2"} + } + }, { name = "CheckCollisionPointRec", description = "Check if point is inside rectangle", @@ -5233,6 +5300,17 @@ return { {type = "Vector2", name = "p3"} } }, + { + name = "CheckCollisionPointLine", + description = "Check if point belongs to line created between two points [p1] and [p2] with defined margin in pixels [threshold]", + returnType = "bool", + params = { + {type = "Vector2", name = "point"}, + {type = "Vector2", name = "p1"}, + {type = "Vector2", name = "p2"}, + {type = "int", name = "threshold"} + } + }, { name = "CheckCollisionPointPoly", description = "Check if point is within a polygon described by array of vertices", @@ -5255,28 +5333,6 @@ return { {type = "Vector2 *", name = "collisionPoint"} } }, - { - name = "CheckCollisionPointLine", - description = "Check if point belongs to line created between two points [p1] and [p2] with defined margin in pixels [threshold]", - returnType = "bool", - params = { - {type = "Vector2", name = "point"}, - {type = "Vector2", name = "p1"}, - {type = "Vector2", name = "p2"}, - {type = "int", name = "threshold"} - } - }, - { - name = "CheckCollisionCircleLine", - description = "Check if circle collides with a line created betweeen two points [p1] and [p2]", - returnType = "bool", - params = { - {type = "Vector2", name = "center"}, - {type = "float", name = "radius"}, - {type = "Vector2", name = "p1"}, - {type = "Vector2", name = "p2"} - } - }, { name = "GetCollisionRec", description = "Get collision rectangle for two rectangles collision", @@ -5306,16 +5362,6 @@ return { {type = "int", name = "headerSize"} } }, - { - name = "LoadImageSvg", - description = "Load image from SVG file data or string with specified size", - returnType = "Image", - params = { - {type = "const char *", name = "fileNameOrString"}, - {type = "int", name = "width"}, - {type = "int", name = "height"} - } - }, { name = "LoadImageAnim", description = "Load image sequence from file (frames appended to image.data)", @@ -5360,8 +5406,8 @@ return { returnType = "Image" }, { - name = "IsImageReady", - description = "Check if an image is ready", + name = "IsImageValid", + description = "Check if an image is valid (data and parameters)", returnType = "bool", params = { {type = "Image", name = "image"} @@ -6125,8 +6171,8 @@ return { } }, { - name = "IsTextureReady", - description = "Check if a texture is ready", + name = "IsTextureValid", + description = "Check if a texture is valid (loaded in GPU)", returnType = "bool", params = { {type = "Texture2D", name = "texture"} @@ -6141,8 +6187,8 @@ return { } }, { - name = "IsRenderTextureReady", - description = "Check if a render texture is ready", + name = "IsRenderTextureValid", + description = "Check if a render texture is valid (loaded in GPU)", returnType = "bool", params = { {type = "RenderTexture2D", name = "target"} @@ -6377,6 +6423,16 @@ return { {type = "Color", name = "tint"} } }, + { + name = "ColorLerp", + description = "Get color lerp interpolation between two colors, factor [0.0f..1.0f]", + returnType = "Color", + params = { + {type = "Color", name = "color1"}, + {type = "Color", name = "color2"}, + {type = "float", name = "factor"} + } + }, { name = "GetColor", description = "Get Color structure from hexadecimal value", @@ -6429,7 +6485,7 @@ return { }, { name = "LoadFontEx", - description = "Load font from file with extended parameters, use NULL for codepoints and 0 for codepointCount to load the default character setFont", + description = "Load font from file with extended parameters, use NULL for codepoints and 0 for codepointCount to load the default character set, font size is provided in pixels height", returnType = "Font", params = { {type = "const char *", name = "fileName"}, @@ -6462,8 +6518,8 @@ return { } }, { - name = "IsFontReady", - description = "Check if a font is ready", + name = "IsFontValid", + description = "Check if a font is valid (font data loaded, WARNING: GPU texture not checked)", returnType = "bool", params = { {type = "Font", name = "font"} @@ -7142,8 +7198,8 @@ return { } }, { - name = "IsModelReady", - description = "Check if a model is ready", + name = "IsModelValid", + description = "Check if a model is valid (loaded in GPU, VAO/VBOs)", returnType = "bool", params = { {type = "Model", name = "model"} @@ -7213,6 +7269,30 @@ return { {type = "Color", name = "tint"} } }, + { + name = "DrawModelPoints", + description = "Draw a model as points", + returnType = "void", + params = { + {type = "Model", name = "model"}, + {type = "Vector3", name = "position"}, + {type = "float", name = "scale"}, + {type = "Color", name = "tint"} + } + }, + { + name = "DrawModelPointsEx", + description = "Draw a model as points with extended parameters", + returnType = "void", + params = { + {type = "Model", name = "model"}, + {type = "Vector3", name = "position"}, + {type = "Vector3", name = "rotationAxis"}, + {type = "float", name = "rotationAngle"}, + {type = "Vector3", name = "scale"}, + {type = "Color", name = "tint"} + } + }, { name = "DrawBoundingBox", description = "Draw bounding box (wires)", @@ -7472,8 +7552,8 @@ return { returnType = "Material" }, { - name = "IsMaterialReady", - description = "Check if a material is ready", + name = "IsMaterialValid", + description = "Check if a material is valid (shader assigned, map textures loaded in GPU)", returnType = "bool", params = { {type = "Material", name = "material"} @@ -7518,7 +7598,17 @@ return { }, { name = "UpdateModelAnimation", - description = "Update model animation pose", + description = "Update model animation pose (CPU)", + returnType = "void", + params = { + {type = "Model", name = "model"}, + {type = "ModelAnimation", name = "anim"}, + {type = "int", name = "frame"} + } + }, + { + name = "UpdateModelAnimationBoneMatrices", + description = "Update model animation mesh bone matrices (GPU skinning)", returnType = "void", params = { {type = "Model", name = "model"}, @@ -7681,8 +7771,8 @@ return { } }, { - name = "IsWaveReady", - description = "Checks if wave data is ready", + name = "IsWaveValid", + description = "Checks if wave data is valid (data loaded and parameters)", returnType = "bool", params = { {type = "Wave", name = "wave"} @@ -7713,8 +7803,8 @@ return { } }, { - name = "IsSoundReady", - description = "Checks if a sound is ready", + name = "IsSoundValid", + description = "Checks if a sound is valid (data loaded and buffers initialized)", returnType = "bool", params = { {type = "Sound", name = "sound"} @@ -7903,8 +7993,8 @@ return { } }, { - name = "IsMusicReady", - description = "Checks if a music stream is ready", + name = "IsMusicValid", + description = "Checks if a music stream is valid (context and buffers initialized)", returnType = "bool", params = { {type = "Music", name = "music"} @@ -8029,8 +8119,8 @@ return { } }, { - name = "IsAudioStreamReady", - description = "Checks if an audio stream is ready", + name = "IsAudioStreamValid", + description = "Checks if an audio stream is valid (buffers initialized)", returnType = "bool", params = { {type = "AudioStream", name = "stream"} diff --git a/parser/output/raylib_api.txt b/parser/output/raylib_api.txt index 73170c860..541b5caf3 100644 --- a/parser/output/raylib_api.txt +++ b/parser/output/raylib_api.txt @@ -24,7 +24,7 @@ Define 004: RAYLIB_VERSION_PATCH Define 005: RAYLIB_VERSION Name: RAYLIB_VERSION Type: STRING - Value: "5.5-dev" + Value: "5.5" Description: Define 006: __declspec(x) Name: __declspec(x) @@ -403,7 +403,7 @@ Struct 14: Camera2D (4 fields) Field[2]: Vector2 target // Camera target (rotation and zoom origin) Field[3]: float rotation // Camera rotation in degrees Field[4]: float zoom // Camera zoom (scaling), should be 1.0f by default -Struct 15: Mesh (15 fields) +Struct 15: Mesh (17 fields) Name: Mesh Description: Mesh, vertex data and vao/vbo Field[1]: int vertexCount // Number of vertices stored in arrays @@ -417,10 +417,12 @@ Struct 15: Mesh (15 fields) Field[9]: unsigned short * indices // Vertex indices (in case vertex data comes indexed) Field[10]: float * animVertices // Animated vertex positions (after bones transformations) Field[11]: float * animNormals // Animated normals (after bones transformations) - Field[12]: unsigned char * boneIds // Vertex bone ids, max 255 bone ids, up to 4 bones influence by vertex (skinning) - Field[13]: float * boneWeights // Vertex bone weight, up to 4 bones influence by vertex (skinning) - Field[14]: unsigned int vaoId // OpenGL Vertex Array Object id - Field[15]: unsigned int * vboId // OpenGL Vertex Buffer Objects id (default vertex data) + Field[12]: unsigned char * boneIds // Vertex bone ids, max 255 bone ids, up to 4 bones influence by vertex (skinning) (shader-location = 6) + Field[13]: float * boneWeights // Vertex bone weight, up to 4 bones influence by vertex (skinning) (shader-location = 7) + Field[14]: Matrix * boneMatrices // Bones animated transformation matrices + Field[15]: int boneCount // Number of bones + Field[16]: unsigned int vaoId // OpenGL Vertex Array Object id + Field[17]: unsigned int * vboId // OpenGL Vertex Buffer Objects id (default vertex data) Struct 16: Shader (2 fields) Name: Shader Description: Shader @@ -793,7 +795,7 @@ Enum 08: MaterialMapIndex (11 values) Value[MATERIAL_MAP_IRRADIANCE]: 8 Value[MATERIAL_MAP_PREFILTER]: 9 Value[MATERIAL_MAP_BRDF]: 10 -Enum 09: ShaderLocationIndex (26 values) +Enum 09: ShaderLocationIndex (29 values) Name: ShaderLocationIndex Description: Shader location index Value[SHADER_LOC_VERTEX_POSITION]: 0 @@ -822,6 +824,9 @@ Enum 09: ShaderLocationIndex (26 values) Value[SHADER_LOC_MAP_IRRADIANCE]: 23 Value[SHADER_LOC_MAP_PREFILTER]: 24 Value[SHADER_LOC_MAP_BRDF]: 25 + Value[SHADER_LOC_VERTEX_BONEIDS]: 26 + Value[SHADER_LOC_VERTEX_BONEWEIGHTS]: 27 + Value[SHADER_LOC_BONE_MATRICES]: 28 Enum 10: ShaderUniformDataType (9 values) Name: ShaderUniformDataType Description: Shader uniform data type @@ -884,7 +889,7 @@ Enum 14: TextureWrap (4 values) Value[TEXTURE_WRAP_CLAMP]: 1 Value[TEXTURE_WRAP_MIRROR_REPEAT]: 2 Value[TEXTURE_WRAP_MIRROR_CLAMP]: 3 -Enum 15: CubemapLayout (6 values) +Enum 15: CubemapLayout (5 values) Name: CubemapLayout Description: Cubemap layouts Value[CUBEMAP_LAYOUT_AUTO_DETECT]: 0 @@ -892,7 +897,6 @@ Enum 15: CubemapLayout (6 values) Value[CUBEMAP_LAYOUT_LINE_HORIZONTAL]: 2 Value[CUBEMAP_LAYOUT_CROSS_THREE_BY_FOUR]: 3 Value[CUBEMAP_LAYOUT_CROSS_FOUR_BY_THREE]: 4 - Value[CUBEMAP_LAYOUT_PANORAMA]: 5 Enum 16: FontType (3 values) Name: FontType Description: Font type, defines generation method @@ -984,7 +988,7 @@ Callback 006: AudioCallback() (2 input parameters) Param[1]: bufferData (type: void *) Param[2]: frames (type: unsigned int) -Functions found: 573 +Functions found: 580 Function 001: InitWindow() (3 input parameters) Name: InitWindow @@ -1016,22 +1020,22 @@ Function 005: IsWindowFullscreen() (0 input parameters) Function 006: IsWindowHidden() (0 input parameters) Name: IsWindowHidden Return type: bool - Description: Check if window is currently hidden (only PLATFORM_DESKTOP) + Description: Check if window is currently hidden No input parameters Function 007: IsWindowMinimized() (0 input parameters) Name: IsWindowMinimized Return type: bool - Description: Check if window is currently minimized (only PLATFORM_DESKTOP) + Description: Check if window is currently minimized No input parameters Function 008: IsWindowMaximized() (0 input parameters) Name: IsWindowMaximized Return type: bool - Description: Check if window is currently maximized (only PLATFORM_DESKTOP) + Description: Check if window is currently maximized No input parameters Function 009: IsWindowFocused() (0 input parameters) Name: IsWindowFocused Return type: bool - Description: Check if window is currently focused (only PLATFORM_DESKTOP) + Description: Check if window is currently focused No input parameters Function 010: IsWindowResized() (0 input parameters) Name: IsWindowResized @@ -1046,7 +1050,7 @@ Function 011: IsWindowState() (1 input parameters) Function 012: SetWindowState() (1 input parameters) Name: SetWindowState Return type: void - Description: Set window configuration state using flags (only PLATFORM_DESKTOP) + Description: Set window configuration state using flags Param[1]: flags (type: unsigned int) Function 013: ClearWindowState() (1 input parameters) Name: ClearWindowState @@ -1056,48 +1060,48 @@ Function 013: ClearWindowState() (1 input parameters) Function 014: ToggleFullscreen() (0 input parameters) Name: ToggleFullscreen Return type: void - Description: Toggle window state: fullscreen/windowed (only PLATFORM_DESKTOP) + Description: Toggle window state: fullscreen/windowed, resizes monitor to match window resolution No input parameters Function 015: ToggleBorderlessWindowed() (0 input parameters) Name: ToggleBorderlessWindowed Return type: void - Description: Toggle window state: borderless windowed (only PLATFORM_DESKTOP) + Description: Toggle window state: borderless windowed, resizes window to match monitor resolution No input parameters Function 016: MaximizeWindow() (0 input parameters) Name: MaximizeWindow Return type: void - Description: Set window state: maximized, if resizable (only PLATFORM_DESKTOP) + Description: Set window state: maximized, if resizable No input parameters Function 017: MinimizeWindow() (0 input parameters) Name: MinimizeWindow Return type: void - Description: Set window state: minimized, if resizable (only PLATFORM_DESKTOP) + Description: Set window state: minimized, if resizable No input parameters Function 018: RestoreWindow() (0 input parameters) Name: RestoreWindow Return type: void - Description: Set window state: not minimized/maximized (only PLATFORM_DESKTOP) + Description: Set window state: not minimized/maximized No input parameters Function 019: SetWindowIcon() (1 input parameters) Name: SetWindowIcon Return type: void - Description: Set icon for window (single image, RGBA 32bit, only PLATFORM_DESKTOP) + Description: Set icon for window (single image, RGBA 32bit) Param[1]: image (type: Image) Function 020: SetWindowIcons() (2 input parameters) Name: SetWindowIcons Return type: void - Description: Set icon for window (multiple images, RGBA 32bit, only PLATFORM_DESKTOP) + Description: Set icon for window (multiple images, RGBA 32bit) Param[1]: images (type: Image *) Param[2]: count (type: int) Function 021: SetWindowTitle() (1 input parameters) Name: SetWindowTitle Return type: void - Description: Set title for window (only PLATFORM_DESKTOP and PLATFORM_WEB) + Description: Set title for window Param[1]: title (type: const char *) Function 022: SetWindowPosition() (2 input parameters) Name: SetWindowPosition Return type: void - Description: Set window position on screen (only PLATFORM_DESKTOP) + Description: Set window position on screen Param[1]: x (type: int) Param[2]: y (type: int) Function 023: SetWindowMonitor() (1 input parameters) @@ -1126,12 +1130,12 @@ Function 026: SetWindowSize() (2 input parameters) Function 027: SetWindowOpacity() (1 input parameters) Name: SetWindowOpacity Return type: void - Description: Set window opacity [0.0f..1.0f] (only PLATFORM_DESKTOP) + Description: Set window opacity [0.0f..1.0f] Param[1]: opacity (type: float) Function 028: SetWindowFocused() (0 input parameters) Name: SetWindowFocused Return type: void - Description: Set window focused (only PLATFORM_DESKTOP) + Description: Set window focused No input parameters Function 029: GetWindowHandle() (0 input parameters) Name: GetWindowHandle @@ -1166,7 +1170,7 @@ Function 034: GetMonitorCount() (0 input parameters) Function 035: GetCurrentMonitor() (0 input parameters) Name: GetCurrentMonitor Return type: int - Description: Get current connected monitor + Description: Get current monitor where window is placed No input parameters Function 036: GetMonitorPosition() (1 input parameters) Name: GetMonitorPosition @@ -1373,10 +1377,10 @@ Function 075: LoadShaderFromMemory() (2 input parameters) Description: Load shader from code strings and bind default locations Param[1]: vsCode (type: const char *) Param[2]: fsCode (type: const char *) -Function 076: IsShaderReady() (1 input parameters) - Name: IsShaderReady +Function 076: IsShaderValid() (1 input parameters) + Name: IsShaderValid Return type: bool - Description: Check if a shader is ready + Description: Check if a shader is valid (loaded on GPU) Param[1]: shader (type: Shader) Function 077: GetShaderLocation() (2 input parameters) Name: GetShaderLocation @@ -1699,373 +1703,397 @@ Function 133: GetApplicationDirectory() (0 input parameters) Return type: const char * Description: Get the directory of the running application (uses static string) No input parameters -Function 134: ChangeDirectory() (1 input parameters) +Function 134: MakeDirectory() (1 input parameters) + Name: MakeDirectory + Return type: int + Description: Create directories (including full path requested), returns 0 on success + Param[1]: dirPath (type: const char *) +Function 135: ChangeDirectory() (1 input parameters) Name: ChangeDirectory Return type: bool Description: Change working directory, return true on success Param[1]: dir (type: const char *) -Function 135: IsPathFile() (1 input parameters) +Function 136: IsPathFile() (1 input parameters) Name: IsPathFile Return type: bool Description: Check if a given path is a file or a directory Param[1]: path (type: const char *) -Function 136: IsFileNameValid() (1 input parameters) +Function 137: IsFileNameValid() (1 input parameters) Name: IsFileNameValid Return type: bool Description: Check if fileName is valid for the platform/OS Param[1]: fileName (type: const char *) -Function 137: LoadDirectoryFiles() (1 input parameters) +Function 138: LoadDirectoryFiles() (1 input parameters) Name: LoadDirectoryFiles Return type: FilePathList Description: Load directory filepaths Param[1]: dirPath (type: const char *) -Function 138: LoadDirectoryFilesEx() (3 input parameters) +Function 139: LoadDirectoryFilesEx() (3 input parameters) Name: LoadDirectoryFilesEx Return type: FilePathList - Description: Load directory filepaths with extension filtering and recursive directory scan + Description: Load directory filepaths with extension filtering and recursive directory scan. Use 'DIR' in the filter string to include directories in the result Param[1]: basePath (type: const char *) Param[2]: filter (type: const char *) Param[3]: scanSubdirs (type: bool) -Function 139: UnloadDirectoryFiles() (1 input parameters) +Function 140: UnloadDirectoryFiles() (1 input parameters) Name: UnloadDirectoryFiles Return type: void Description: Unload filepaths Param[1]: files (type: FilePathList) -Function 140: IsFileDropped() (0 input parameters) +Function 141: IsFileDropped() (0 input parameters) Name: IsFileDropped Return type: bool Description: Check if a file has been dropped into window No input parameters -Function 141: LoadDroppedFiles() (0 input parameters) +Function 142: LoadDroppedFiles() (0 input parameters) Name: LoadDroppedFiles Return type: FilePathList Description: Load dropped filepaths No input parameters -Function 142: UnloadDroppedFiles() (1 input parameters) +Function 143: UnloadDroppedFiles() (1 input parameters) Name: UnloadDroppedFiles Return type: void Description: Unload dropped filepaths Param[1]: files (type: FilePathList) -Function 143: GetFileModTime() (1 input parameters) +Function 144: GetFileModTime() (1 input parameters) Name: GetFileModTime Return type: long Description: Get file modification time (last write time) Param[1]: fileName (type: const char *) -Function 144: CompressData() (3 input parameters) +Function 145: CompressData() (3 input parameters) Name: CompressData Return type: unsigned char * Description: Compress data (DEFLATE algorithm), memory must be MemFree() Param[1]: data (type: const unsigned char *) Param[2]: dataSize (type: int) Param[3]: compDataSize (type: int *) -Function 145: DecompressData() (3 input parameters) +Function 146: DecompressData() (3 input parameters) Name: DecompressData Return type: unsigned char * Description: Decompress data (DEFLATE algorithm), memory must be MemFree() Param[1]: compData (type: const unsigned char *) Param[2]: compDataSize (type: int) Param[3]: dataSize (type: int *) -Function 146: EncodeDataBase64() (3 input parameters) +Function 147: EncodeDataBase64() (3 input parameters) Name: EncodeDataBase64 Return type: char * Description: Encode data to Base64 string, memory must be MemFree() Param[1]: data (type: const unsigned char *) Param[2]: dataSize (type: int) Param[3]: outputSize (type: int *) -Function 147: DecodeDataBase64() (2 input parameters) +Function 148: DecodeDataBase64() (2 input parameters) Name: DecodeDataBase64 Return type: unsigned char * Description: Decode Base64 string data, memory must be MemFree() Param[1]: data (type: const unsigned char *) Param[2]: outputSize (type: int *) -Function 148: LoadAutomationEventList() (1 input parameters) +Function 149: ComputeCRC32() (2 input parameters) + Name: ComputeCRC32 + Return type: unsigned int + Description: Compute CRC32 hash code + Param[1]: data (type: unsigned char *) + Param[2]: dataSize (type: int) +Function 150: ComputeMD5() (2 input parameters) + Name: ComputeMD5 + Return type: unsigned int * + Description: Compute MD5 hash code, returns static int[4] (16 bytes) + Param[1]: data (type: unsigned char *) + Param[2]: dataSize (type: int) +Function 151: ComputeSHA1() (2 input parameters) + Name: ComputeSHA1 + Return type: unsigned int * + Description: Compute SHA1 hash code, returns static int[5] (20 bytes) + Param[1]: data (type: unsigned char *) + Param[2]: dataSize (type: int) +Function 152: LoadAutomationEventList() (1 input parameters) Name: LoadAutomationEventList Return type: AutomationEventList Description: Load automation events list from file, NULL for empty list, capacity = MAX_AUTOMATION_EVENTS Param[1]: fileName (type: const char *) -Function 149: UnloadAutomationEventList() (1 input parameters) +Function 153: UnloadAutomationEventList() (1 input parameters) Name: UnloadAutomationEventList Return type: void Description: Unload automation events list from file Param[1]: list (type: AutomationEventList) -Function 150: ExportAutomationEventList() (2 input parameters) +Function 154: ExportAutomationEventList() (2 input parameters) Name: ExportAutomationEventList Return type: bool Description: Export automation events list as text file Param[1]: list (type: AutomationEventList) Param[2]: fileName (type: const char *) -Function 151: SetAutomationEventList() (1 input parameters) +Function 155: SetAutomationEventList() (1 input parameters) Name: SetAutomationEventList Return type: void Description: Set automation event list to record to Param[1]: list (type: AutomationEventList *) -Function 152: SetAutomationEventBaseFrame() (1 input parameters) +Function 156: SetAutomationEventBaseFrame() (1 input parameters) Name: SetAutomationEventBaseFrame Return type: void Description: Set automation event internal base frame to start recording Param[1]: frame (type: int) -Function 153: StartAutomationEventRecording() (0 input parameters) +Function 157: StartAutomationEventRecording() (0 input parameters) Name: StartAutomationEventRecording Return type: void Description: Start recording automation events (AutomationEventList must be set) No input parameters -Function 154: StopAutomationEventRecording() (0 input parameters) +Function 158: StopAutomationEventRecording() (0 input parameters) Name: StopAutomationEventRecording Return type: void Description: Stop recording automation events No input parameters -Function 155: PlayAutomationEvent() (1 input parameters) +Function 159: PlayAutomationEvent() (1 input parameters) Name: PlayAutomationEvent Return type: void Description: Play a recorded automation event Param[1]: event (type: AutomationEvent) -Function 156: IsKeyPressed() (1 input parameters) +Function 160: IsKeyPressed() (1 input parameters) Name: IsKeyPressed Return type: bool Description: Check if a key has been pressed once Param[1]: key (type: int) -Function 157: IsKeyPressedRepeat() (1 input parameters) +Function 161: IsKeyPressedRepeat() (1 input parameters) Name: IsKeyPressedRepeat Return type: bool - Description: Check if a key has been pressed again (Only PLATFORM_DESKTOP) + Description: Check if a key has been pressed again Param[1]: key (type: int) -Function 158: IsKeyDown() (1 input parameters) +Function 162: IsKeyDown() (1 input parameters) Name: IsKeyDown Return type: bool Description: Check if a key is being pressed Param[1]: key (type: int) -Function 159: IsKeyReleased() (1 input parameters) +Function 163: IsKeyReleased() (1 input parameters) Name: IsKeyReleased Return type: bool Description: Check if a key has been released once Param[1]: key (type: int) -Function 160: IsKeyUp() (1 input parameters) +Function 164: IsKeyUp() (1 input parameters) Name: IsKeyUp Return type: bool Description: Check if a key is NOT being pressed Param[1]: key (type: int) -Function 161: GetKeyPressed() (0 input parameters) +Function 165: GetKeyPressed() (0 input parameters) Name: GetKeyPressed Return type: int Description: Get key pressed (keycode), call it multiple times for keys queued, returns 0 when the queue is empty No input parameters -Function 162: GetCharPressed() (0 input parameters) +Function 166: GetCharPressed() (0 input parameters) Name: GetCharPressed Return type: int Description: Get char pressed (unicode), call it multiple times for chars queued, returns 0 when the queue is empty No input parameters -Function 163: SetExitKey() (1 input parameters) +Function 167: SetExitKey() (1 input parameters) Name: SetExitKey Return type: void Description: Set a custom key to exit program (default is ESC) Param[1]: key (type: int) -Function 164: IsGamepadAvailable() (1 input parameters) +Function 168: IsGamepadAvailable() (1 input parameters) Name: IsGamepadAvailable Return type: bool Description: Check if a gamepad is available Param[1]: gamepad (type: int) -Function 165: GetGamepadName() (1 input parameters) +Function 169: GetGamepadName() (1 input parameters) Name: GetGamepadName Return type: const char * Description: Get gamepad internal name id Param[1]: gamepad (type: int) -Function 166: IsGamepadButtonPressed() (2 input parameters) +Function 170: IsGamepadButtonPressed() (2 input parameters) Name: IsGamepadButtonPressed Return type: bool Description: Check if a gamepad button has been pressed once Param[1]: gamepad (type: int) Param[2]: button (type: int) -Function 167: IsGamepadButtonDown() (2 input parameters) +Function 171: IsGamepadButtonDown() (2 input parameters) Name: IsGamepadButtonDown Return type: bool Description: Check if a gamepad button is being pressed Param[1]: gamepad (type: int) Param[2]: button (type: int) -Function 168: IsGamepadButtonReleased() (2 input parameters) +Function 172: IsGamepadButtonReleased() (2 input parameters) Name: IsGamepadButtonReleased Return type: bool Description: Check if a gamepad button has been released once Param[1]: gamepad (type: int) Param[2]: button (type: int) -Function 169: IsGamepadButtonUp() (2 input parameters) +Function 173: IsGamepadButtonUp() (2 input parameters) Name: IsGamepadButtonUp Return type: bool Description: Check if a gamepad button is NOT being pressed Param[1]: gamepad (type: int) Param[2]: button (type: int) -Function 170: GetGamepadButtonPressed() (0 input parameters) +Function 174: GetGamepadButtonPressed() (0 input parameters) Name: GetGamepadButtonPressed Return type: int Description: Get the last gamepad button pressed No input parameters -Function 171: GetGamepadAxisCount() (1 input parameters) +Function 175: GetGamepadAxisCount() (1 input parameters) Name: GetGamepadAxisCount Return type: int Description: Get gamepad axis count for a gamepad Param[1]: gamepad (type: int) -Function 172: GetGamepadAxisMovement() (2 input parameters) +Function 176: GetGamepadAxisMovement() (2 input parameters) Name: GetGamepadAxisMovement Return type: float Description: Get axis movement value for a gamepad axis Param[1]: gamepad (type: int) Param[2]: axis (type: int) -Function 173: SetGamepadMappings() (1 input parameters) +Function 177: SetGamepadMappings() (1 input parameters) Name: SetGamepadMappings Return type: int Description: Set internal gamepad mappings (SDL_GameControllerDB) Param[1]: mappings (type: const char *) -Function 174: SetGamepadVibration() (3 input parameters) +Function 178: SetGamepadVibration() (4 input parameters) Name: SetGamepadVibration Return type: void - Description: Set gamepad vibration for both motors + Description: Set gamepad vibration for both motors (duration in seconds) Param[1]: gamepad (type: int) Param[2]: leftMotor (type: float) Param[3]: rightMotor (type: float) -Function 175: IsMouseButtonPressed() (1 input parameters) + Param[4]: duration (type: float) +Function 179: IsMouseButtonPressed() (1 input parameters) Name: IsMouseButtonPressed Return type: bool Description: Check if a mouse button has been pressed once Param[1]: button (type: int) -Function 176: IsMouseButtonDown() (1 input parameters) +Function 180: IsMouseButtonDown() (1 input parameters) Name: IsMouseButtonDown Return type: bool Description: Check if a mouse button is being pressed Param[1]: button (type: int) -Function 177: IsMouseButtonReleased() (1 input parameters) +Function 181: IsMouseButtonReleased() (1 input parameters) Name: IsMouseButtonReleased Return type: bool Description: Check if a mouse button has been released once Param[1]: button (type: int) -Function 178: IsMouseButtonUp() (1 input parameters) +Function 182: IsMouseButtonUp() (1 input parameters) Name: IsMouseButtonUp Return type: bool Description: Check if a mouse button is NOT being pressed Param[1]: button (type: int) -Function 179: GetMouseX() (0 input parameters) +Function 183: GetMouseX() (0 input parameters) Name: GetMouseX Return type: int Description: Get mouse position X No input parameters -Function 180: GetMouseY() (0 input parameters) +Function 184: GetMouseY() (0 input parameters) Name: GetMouseY Return type: int Description: Get mouse position Y No input parameters -Function 181: GetMousePosition() (0 input parameters) +Function 185: GetMousePosition() (0 input parameters) Name: GetMousePosition Return type: Vector2 Description: Get mouse position XY No input parameters -Function 182: GetMouseDelta() (0 input parameters) +Function 186: GetMouseDelta() (0 input parameters) Name: GetMouseDelta Return type: Vector2 Description: Get mouse delta between frames No input parameters -Function 183: SetMousePosition() (2 input parameters) +Function 187: SetMousePosition() (2 input parameters) Name: SetMousePosition Return type: void Description: Set mouse position XY Param[1]: x (type: int) Param[2]: y (type: int) -Function 184: SetMouseOffset() (2 input parameters) +Function 188: SetMouseOffset() (2 input parameters) Name: SetMouseOffset Return type: void Description: Set mouse offset Param[1]: offsetX (type: int) Param[2]: offsetY (type: int) -Function 185: SetMouseScale() (2 input parameters) +Function 189: SetMouseScale() (2 input parameters) Name: SetMouseScale Return type: void Description: Set mouse scaling Param[1]: scaleX (type: float) Param[2]: scaleY (type: float) -Function 186: GetMouseWheelMove() (0 input parameters) +Function 190: GetMouseWheelMove() (0 input parameters) Name: GetMouseWheelMove Return type: float Description: Get mouse wheel movement for X or Y, whichever is larger No input parameters -Function 187: GetMouseWheelMoveV() (0 input parameters) +Function 191: GetMouseWheelMoveV() (0 input parameters) Name: GetMouseWheelMoveV Return type: Vector2 Description: Get mouse wheel movement for both X and Y No input parameters -Function 188: SetMouseCursor() (1 input parameters) +Function 192: SetMouseCursor() (1 input parameters) Name: SetMouseCursor Return type: void Description: Set mouse cursor Param[1]: cursor (type: int) -Function 189: GetTouchX() (0 input parameters) +Function 193: GetTouchX() (0 input parameters) Name: GetTouchX Return type: int Description: Get touch position X for touch point 0 (relative to screen size) No input parameters -Function 190: GetTouchY() (0 input parameters) +Function 194: GetTouchY() (0 input parameters) Name: GetTouchY Return type: int Description: Get touch position Y for touch point 0 (relative to screen size) No input parameters -Function 191: GetTouchPosition() (1 input parameters) +Function 195: GetTouchPosition() (1 input parameters) Name: GetTouchPosition Return type: Vector2 Description: Get touch position XY for a touch point index (relative to screen size) Param[1]: index (type: int) -Function 192: GetTouchPointId() (1 input parameters) +Function 196: GetTouchPointId() (1 input parameters) Name: GetTouchPointId Return type: int Description: Get touch point identifier for given index Param[1]: index (type: int) -Function 193: GetTouchPointCount() (0 input parameters) +Function 197: GetTouchPointCount() (0 input parameters) Name: GetTouchPointCount Return type: int Description: Get number of touch points No input parameters -Function 194: SetGesturesEnabled() (1 input parameters) +Function 198: SetGesturesEnabled() (1 input parameters) Name: SetGesturesEnabled Return type: void Description: Enable a set of gestures using flags Param[1]: flags (type: unsigned int) -Function 195: IsGestureDetected() (1 input parameters) +Function 199: IsGestureDetected() (1 input parameters) Name: IsGestureDetected Return type: bool Description: Check if a gesture have been detected Param[1]: gesture (type: unsigned int) -Function 196: GetGestureDetected() (0 input parameters) +Function 200: GetGestureDetected() (0 input parameters) Name: GetGestureDetected Return type: int Description: Get latest detected gesture No input parameters -Function 197: GetGestureHoldDuration() (0 input parameters) +Function 201: GetGestureHoldDuration() (0 input parameters) Name: GetGestureHoldDuration Return type: float - Description: Get gesture hold time in milliseconds + Description: Get gesture hold time in seconds No input parameters -Function 198: GetGestureDragVector() (0 input parameters) +Function 202: GetGestureDragVector() (0 input parameters) Name: GetGestureDragVector Return type: Vector2 Description: Get gesture drag vector No input parameters -Function 199: GetGestureDragAngle() (0 input parameters) +Function 203: GetGestureDragAngle() (0 input parameters) Name: GetGestureDragAngle Return type: float Description: Get gesture drag angle No input parameters -Function 200: GetGesturePinchVector() (0 input parameters) +Function 204: GetGesturePinchVector() (0 input parameters) Name: GetGesturePinchVector Return type: Vector2 Description: Get gesture pinch delta No input parameters -Function 201: GetGesturePinchAngle() (0 input parameters) +Function 205: GetGesturePinchAngle() (0 input parameters) Name: GetGesturePinchAngle Return type: float Description: Get gesture pinch angle No input parameters -Function 202: UpdateCamera() (2 input parameters) +Function 206: UpdateCamera() (2 input parameters) Name: UpdateCamera Return type: void Description: Update camera position for selected mode Param[1]: camera (type: Camera *) Param[2]: mode (type: int) -Function 203: UpdateCameraPro() (4 input parameters) +Function 207: UpdateCameraPro() (4 input parameters) Name: UpdateCameraPro Return type: void Description: Update camera movement/rotation @@ -2073,36 +2101,36 @@ Function 203: UpdateCameraPro() (4 input parameters) Param[2]: movement (type: Vector3) Param[3]: rotation (type: Vector3) Param[4]: zoom (type: float) -Function 204: SetShapesTexture() (2 input parameters) +Function 208: SetShapesTexture() (2 input parameters) Name: SetShapesTexture Return type: void Description: Set texture and rectangle to be used on shapes drawing Param[1]: texture (type: Texture2D) Param[2]: source (type: Rectangle) -Function 205: GetShapesTexture() (0 input parameters) +Function 209: GetShapesTexture() (0 input parameters) Name: GetShapesTexture Return type: Texture2D Description: Get texture that is used for shapes drawing No input parameters -Function 206: GetShapesTextureRectangle() (0 input parameters) +Function 210: GetShapesTextureRectangle() (0 input parameters) Name: GetShapesTextureRectangle Return type: Rectangle Description: Get texture source rectangle that is used for shapes drawing No input parameters -Function 207: DrawPixel() (3 input parameters) +Function 211: DrawPixel() (3 input parameters) Name: DrawPixel Return type: void - Description: Draw a pixel + Description: Draw a pixel using geometry [Can be slow, use with care] Param[1]: posX (type: int) Param[2]: posY (type: int) Param[3]: color (type: Color) -Function 208: DrawPixelV() (2 input parameters) +Function 212: DrawPixelV() (2 input parameters) Name: DrawPixelV Return type: void - Description: Draw a pixel (Vector version) + Description: Draw a pixel using geometry (Vector version) [Can be slow, use with care] Param[1]: position (type: Vector2) Param[2]: color (type: Color) -Function 209: DrawLine() (5 input parameters) +Function 213: DrawLine() (5 input parameters) Name: DrawLine Return type: void Description: Draw a line @@ -2111,14 +2139,14 @@ Function 209: DrawLine() (5 input parameters) Param[3]: endPosX (type: int) Param[4]: endPosY (type: int) Param[5]: color (type: Color) -Function 210: DrawLineV() (3 input parameters) +Function 214: DrawLineV() (3 input parameters) Name: DrawLineV Return type: void Description: Draw a line (using gl lines) Param[1]: startPos (type: Vector2) Param[2]: endPos (type: Vector2) Param[3]: color (type: Color) -Function 211: DrawLineEx() (4 input parameters) +Function 215: DrawLineEx() (4 input parameters) Name: DrawLineEx Return type: void Description: Draw a line (using triangles/quads) @@ -2126,14 +2154,14 @@ Function 211: DrawLineEx() (4 input parameters) Param[2]: endPos (type: Vector2) Param[3]: thick (type: float) Param[4]: color (type: Color) -Function 212: DrawLineStrip() (3 input parameters) +Function 216: DrawLineStrip() (3 input parameters) Name: DrawLineStrip Return type: void Description: Draw lines sequence (using gl lines) Param[1]: points (type: const Vector2 *) Param[2]: pointCount (type: int) Param[3]: color (type: Color) -Function 213: DrawLineBezier() (4 input parameters) +Function 217: DrawLineBezier() (4 input parameters) Name: DrawLineBezier Return type: void Description: Draw line segment cubic-bezier in-out interpolation @@ -2141,7 +2169,7 @@ Function 213: DrawLineBezier() (4 input parameters) Param[2]: endPos (type: Vector2) Param[3]: thick (type: float) Param[4]: color (type: Color) -Function 214: DrawCircle() (4 input parameters) +Function 218: DrawCircle() (4 input parameters) Name: DrawCircle Return type: void Description: Draw a color-filled circle @@ -2149,7 +2177,7 @@ Function 214: DrawCircle() (4 input parameters) Param[2]: centerY (type: int) Param[3]: radius (type: float) Param[4]: color (type: Color) -Function 215: DrawCircleSector() (6 input parameters) +Function 219: DrawCircleSector() (6 input parameters) Name: DrawCircleSector Return type: void Description: Draw a piece of a circle @@ -2159,7 +2187,7 @@ Function 215: DrawCircleSector() (6 input parameters) Param[4]: endAngle (type: float) Param[5]: segments (type: int) Param[6]: color (type: Color) -Function 216: DrawCircleSectorLines() (6 input parameters) +Function 220: DrawCircleSectorLines() (6 input parameters) Name: DrawCircleSectorLines Return type: void Description: Draw circle sector outline @@ -2169,23 +2197,23 @@ Function 216: DrawCircleSectorLines() (6 input parameters) Param[4]: endAngle (type: float) Param[5]: segments (type: int) Param[6]: color (type: Color) -Function 217: DrawCircleGradient() (5 input parameters) +Function 221: DrawCircleGradient() (5 input parameters) Name: DrawCircleGradient Return type: void Description: Draw a gradient-filled circle Param[1]: centerX (type: int) Param[2]: centerY (type: int) Param[3]: radius (type: float) - Param[4]: color1 (type: Color) - Param[5]: color2 (type: Color) -Function 218: DrawCircleV() (3 input parameters) + Param[4]: inner (type: Color) + Param[5]: outer (type: Color) +Function 222: DrawCircleV() (3 input parameters) Name: DrawCircleV Return type: void Description: Draw a color-filled circle (Vector version) Param[1]: center (type: Vector2) Param[2]: radius (type: float) Param[3]: color (type: Color) -Function 219: DrawCircleLines() (4 input parameters) +Function 223: DrawCircleLines() (4 input parameters) Name: DrawCircleLines Return type: void Description: Draw circle outline @@ -2193,14 +2221,14 @@ Function 219: DrawCircleLines() (4 input parameters) Param[2]: centerY (type: int) Param[3]: radius (type: float) Param[4]: color (type: Color) -Function 220: DrawCircleLinesV() (3 input parameters) +Function 224: DrawCircleLinesV() (3 input parameters) Name: DrawCircleLinesV Return type: void Description: Draw circle outline (Vector version) Param[1]: center (type: Vector2) Param[2]: radius (type: float) Param[3]: color (type: Color) -Function 221: DrawEllipse() (5 input parameters) +Function 225: DrawEllipse() (5 input parameters) Name: DrawEllipse Return type: void Description: Draw ellipse @@ -2209,7 +2237,7 @@ Function 221: DrawEllipse() (5 input parameters) Param[3]: radiusH (type: float) Param[4]: radiusV (type: float) Param[5]: color (type: Color) -Function 222: DrawEllipseLines() (5 input parameters) +Function 226: DrawEllipseLines() (5 input parameters) Name: DrawEllipseLines Return type: void Description: Draw ellipse outline @@ -2218,7 +2246,7 @@ Function 222: DrawEllipseLines() (5 input parameters) Param[3]: radiusH (type: float) Param[4]: radiusV (type: float) Param[5]: color (type: Color) -Function 223: DrawRing() (7 input parameters) +Function 227: DrawRing() (7 input parameters) Name: DrawRing Return type: void Description: Draw ring @@ -2229,7 +2257,7 @@ Function 223: DrawRing() (7 input parameters) Param[5]: endAngle (type: float) Param[6]: segments (type: int) Param[7]: color (type: Color) -Function 224: DrawRingLines() (7 input parameters) +Function 228: DrawRingLines() (7 input parameters) Name: DrawRingLines Return type: void Description: Draw ring outline @@ -2240,7 +2268,7 @@ Function 224: DrawRingLines() (7 input parameters) Param[5]: endAngle (type: float) Param[6]: segments (type: int) Param[7]: color (type: Color) -Function 225: DrawRectangle() (5 input parameters) +Function 229: DrawRectangle() (5 input parameters) Name: DrawRectangle Return type: void Description: Draw a color-filled rectangle @@ -2249,20 +2277,20 @@ Function 225: DrawRectangle() (5 input parameters) Param[3]: width (type: int) Param[4]: height (type: int) Param[5]: color (type: Color) -Function 226: DrawRectangleV() (3 input parameters) +Function 230: DrawRectangleV() (3 input parameters) Name: DrawRectangleV Return type: void Description: Draw a color-filled rectangle (Vector version) Param[1]: position (type: Vector2) Param[2]: size (type: Vector2) Param[3]: color (type: Color) -Function 227: DrawRectangleRec() (2 input parameters) +Function 231: DrawRectangleRec() (2 input parameters) Name: DrawRectangleRec Return type: void Description: Draw a color-filled rectangle Param[1]: rec (type: Rectangle) Param[2]: color (type: Color) -Function 228: DrawRectanglePro() (4 input parameters) +Function 232: DrawRectanglePro() (4 input parameters) Name: DrawRectanglePro Return type: void Description: Draw a color-filled rectangle with pro parameters @@ -2270,7 +2298,7 @@ Function 228: DrawRectanglePro() (4 input parameters) Param[2]: origin (type: Vector2) Param[3]: rotation (type: float) Param[4]: color (type: Color) -Function 229: DrawRectangleGradientV() (6 input parameters) +Function 233: DrawRectangleGradientV() (6 input parameters) Name: DrawRectangleGradientV Return type: void Description: Draw a vertical-gradient-filled rectangle @@ -2278,9 +2306,9 @@ Function 229: DrawRectangleGradientV() (6 input parameters) Param[2]: posY (type: int) Param[3]: width (type: int) Param[4]: height (type: int) - Param[5]: color1 (type: Color) - Param[6]: color2 (type: Color) -Function 230: DrawRectangleGradientH() (6 input parameters) + Param[5]: top (type: Color) + Param[6]: bottom (type: Color) +Function 234: DrawRectangleGradientH() (6 input parameters) Name: DrawRectangleGradientH Return type: void Description: Draw a horizontal-gradient-filled rectangle @@ -2288,18 +2316,18 @@ Function 230: DrawRectangleGradientH() (6 input parameters) Param[2]: posY (type: int) Param[3]: width (type: int) Param[4]: height (type: int) - Param[5]: color1 (type: Color) - Param[6]: color2 (type: Color) -Function 231: DrawRectangleGradientEx() (5 input parameters) + Param[5]: left (type: Color) + Param[6]: right (type: Color) +Function 235: DrawRectangleGradientEx() (5 input parameters) Name: DrawRectangleGradientEx Return type: void Description: Draw a gradient-filled rectangle with custom vertex colors Param[1]: rec (type: Rectangle) - Param[2]: col1 (type: Color) - Param[3]: col2 (type: Color) - Param[4]: col3 (type: Color) - Param[5]: col4 (type: Color) -Function 232: DrawRectangleLines() (5 input parameters) + Param[2]: topLeft (type: Color) + Param[3]: bottomLeft (type: Color) + Param[4]: topRight (type: Color) + Param[5]: bottomRight (type: Color) +Function 236: DrawRectangleLines() (5 input parameters) Name: DrawRectangleLines Return type: void Description: Draw rectangle outline @@ -2308,14 +2336,14 @@ Function 232: DrawRectangleLines() (5 input parameters) Param[3]: width (type: int) Param[4]: height (type: int) Param[5]: color (type: Color) -Function 233: DrawRectangleLinesEx() (3 input parameters) +Function 237: DrawRectangleLinesEx() (3 input parameters) Name: DrawRectangleLinesEx Return type: void Description: Draw rectangle outline with extended parameters Param[1]: rec (type: Rectangle) Param[2]: lineThick (type: float) Param[3]: color (type: Color) -Function 234: DrawRectangleRounded() (4 input parameters) +Function 238: DrawRectangleRounded() (4 input parameters) Name: DrawRectangleRounded Return type: void Description: Draw rectangle with rounded edges @@ -2323,7 +2351,7 @@ Function 234: DrawRectangleRounded() (4 input parameters) Param[2]: roundness (type: float) Param[3]: segments (type: int) Param[4]: color (type: Color) -Function 235: DrawRectangleRoundedLines() (4 input parameters) +Function 239: DrawRectangleRoundedLines() (4 input parameters) Name: DrawRectangleRoundedLines Return type: void Description: Draw rectangle lines with rounded edges @@ -2331,7 +2359,7 @@ Function 235: DrawRectangleRoundedLines() (4 input parameters) Param[2]: roundness (type: float) Param[3]: segments (type: int) Param[4]: color (type: Color) -Function 236: DrawRectangleRoundedLinesEx() (5 input parameters) +Function 240: DrawRectangleRoundedLinesEx() (5 input parameters) Name: DrawRectangleRoundedLinesEx Return type: void Description: Draw rectangle with rounded edges outline @@ -2340,7 +2368,7 @@ Function 236: DrawRectangleRoundedLinesEx() (5 input parameters) Param[3]: segments (type: int) Param[4]: lineThick (type: float) Param[5]: color (type: Color) -Function 237: DrawTriangle() (4 input parameters) +Function 241: DrawTriangle() (4 input parameters) Name: DrawTriangle Return type: void Description: Draw a color-filled triangle (vertex in counter-clockwise order!) @@ -2348,7 +2376,7 @@ Function 237: DrawTriangle() (4 input parameters) Param[2]: v2 (type: Vector2) Param[3]: v3 (type: Vector2) Param[4]: color (type: Color) -Function 238: DrawTriangleLines() (4 input parameters) +Function 242: DrawTriangleLines() (4 input parameters) Name: DrawTriangleLines Return type: void Description: Draw triangle outline (vertex in counter-clockwise order!) @@ -2356,21 +2384,21 @@ Function 238: DrawTriangleLines() (4 input parameters) Param[2]: v2 (type: Vector2) Param[3]: v3 (type: Vector2) Param[4]: color (type: Color) -Function 239: DrawTriangleFan() (3 input parameters) +Function 243: DrawTriangleFan() (3 input parameters) Name: DrawTriangleFan Return type: void Description: Draw a triangle fan defined by points (first vertex is the center) Param[1]: points (type: const Vector2 *) Param[2]: pointCount (type: int) Param[3]: color (type: Color) -Function 240: DrawTriangleStrip() (3 input parameters) +Function 244: DrawTriangleStrip() (3 input parameters) Name: DrawTriangleStrip Return type: void Description: Draw a triangle strip defined by points Param[1]: points (type: const Vector2 *) Param[2]: pointCount (type: int) Param[3]: color (type: Color) -Function 241: DrawPoly() (5 input parameters) +Function 245: DrawPoly() (5 input parameters) Name: DrawPoly Return type: void Description: Draw a regular polygon (Vector version) @@ -2379,7 +2407,7 @@ Function 241: DrawPoly() (5 input parameters) Param[3]: radius (type: float) Param[4]: rotation (type: float) Param[5]: color (type: Color) -Function 242: DrawPolyLines() (5 input parameters) +Function 246: DrawPolyLines() (5 input parameters) Name: DrawPolyLines Return type: void Description: Draw a polygon outline of n sides @@ -2388,7 +2416,7 @@ Function 242: DrawPolyLines() (5 input parameters) Param[3]: radius (type: float) Param[4]: rotation (type: float) Param[5]: color (type: Color) -Function 243: DrawPolyLinesEx() (6 input parameters) +Function 247: DrawPolyLinesEx() (6 input parameters) Name: DrawPolyLinesEx Return type: void Description: Draw a polygon outline of n sides with extended parameters @@ -2398,7 +2426,7 @@ Function 243: DrawPolyLinesEx() (6 input parameters) Param[4]: rotation (type: float) Param[5]: lineThick (type: float) Param[6]: color (type: Color) -Function 244: DrawSplineLinear() (4 input parameters) +Function 248: DrawSplineLinear() (4 input parameters) Name: DrawSplineLinear Return type: void Description: Draw spline: Linear, minimum 2 points @@ -2406,7 +2434,7 @@ Function 244: DrawSplineLinear() (4 input parameters) Param[2]: pointCount (type: int) Param[3]: thick (type: float) Param[4]: color (type: Color) -Function 245: DrawSplineBasis() (4 input parameters) +Function 249: DrawSplineBasis() (4 input parameters) Name: DrawSplineBasis Return type: void Description: Draw spline: B-Spline, minimum 4 points @@ -2414,7 +2442,7 @@ Function 245: DrawSplineBasis() (4 input parameters) Param[2]: pointCount (type: int) Param[3]: thick (type: float) Param[4]: color (type: Color) -Function 246: DrawSplineCatmullRom() (4 input parameters) +Function 250: DrawSplineCatmullRom() (4 input parameters) Name: DrawSplineCatmullRom Return type: void Description: Draw spline: Catmull-Rom, minimum 4 points @@ -2422,7 +2450,7 @@ Function 246: DrawSplineCatmullRom() (4 input parameters) Param[2]: pointCount (type: int) Param[3]: thick (type: float) Param[4]: color (type: Color) -Function 247: DrawSplineBezierQuadratic() (4 input parameters) +Function 251: DrawSplineBezierQuadratic() (4 input parameters) Name: DrawSplineBezierQuadratic Return type: void Description: Draw spline: Quadratic Bezier, minimum 3 points (1 control point): [p1, c2, p3, c4...] @@ -2430,7 +2458,7 @@ Function 247: DrawSplineBezierQuadratic() (4 input parameters) Param[2]: pointCount (type: int) Param[3]: thick (type: float) Param[4]: color (type: Color) -Function 248: DrawSplineBezierCubic() (4 input parameters) +Function 252: DrawSplineBezierCubic() (4 input parameters) Name: DrawSplineBezierCubic Return type: void Description: Draw spline: Cubic Bezier, minimum 4 points (2 control points): [p1, c2, c3, p4, c5, c6...] @@ -2438,7 +2466,7 @@ Function 248: DrawSplineBezierCubic() (4 input parameters) Param[2]: pointCount (type: int) Param[3]: thick (type: float) Param[4]: color (type: Color) -Function 249: DrawSplineSegmentLinear() (4 input parameters) +Function 253: DrawSplineSegmentLinear() (4 input parameters) Name: DrawSplineSegmentLinear Return type: void Description: Draw spline segment: Linear, 2 points @@ -2446,7 +2474,7 @@ Function 249: DrawSplineSegmentLinear() (4 input parameters) Param[2]: p2 (type: Vector2) Param[3]: thick (type: float) Param[4]: color (type: Color) -Function 250: DrawSplineSegmentBasis() (6 input parameters) +Function 254: DrawSplineSegmentBasis() (6 input parameters) Name: DrawSplineSegmentBasis Return type: void Description: Draw spline segment: B-Spline, 4 points @@ -2456,7 +2484,7 @@ Function 250: DrawSplineSegmentBasis() (6 input parameters) Param[4]: p4 (type: Vector2) Param[5]: thick (type: float) Param[6]: color (type: Color) -Function 251: DrawSplineSegmentCatmullRom() (6 input parameters) +Function 255: DrawSplineSegmentCatmullRom() (6 input parameters) Name: DrawSplineSegmentCatmullRom Return type: void Description: Draw spline segment: Catmull-Rom, 4 points @@ -2466,7 +2494,7 @@ Function 251: DrawSplineSegmentCatmullRom() (6 input parameters) Param[4]: p4 (type: Vector2) Param[5]: thick (type: float) Param[6]: color (type: Color) -Function 252: DrawSplineSegmentBezierQuadratic() (5 input parameters) +Function 256: DrawSplineSegmentBezierQuadratic() (5 input parameters) Name: DrawSplineSegmentBezierQuadratic Return type: void Description: Draw spline segment: Quadratic Bezier, 2 points, 1 control point @@ -2475,7 +2503,7 @@ Function 252: DrawSplineSegmentBezierQuadratic() (5 input parameters) Param[3]: p3 (type: Vector2) Param[4]: thick (type: float) Param[5]: color (type: Color) -Function 253: DrawSplineSegmentBezierCubic() (6 input parameters) +Function 257: DrawSplineSegmentBezierCubic() (6 input parameters) Name: DrawSplineSegmentBezierCubic Return type: void Description: Draw spline segment: Cubic Bezier, 2 points, 2 control points @@ -2485,14 +2513,14 @@ Function 253: DrawSplineSegmentBezierCubic() (6 input parameters) Param[4]: p4 (type: Vector2) Param[5]: thick (type: float) Param[6]: color (type: Color) -Function 254: GetSplinePointLinear() (3 input parameters) +Function 258: GetSplinePointLinear() (3 input parameters) Name: GetSplinePointLinear Return type: Vector2 Description: Get (evaluate) spline point: Linear Param[1]: startPos (type: Vector2) Param[2]: endPos (type: Vector2) Param[3]: t (type: float) -Function 255: GetSplinePointBasis() (5 input parameters) +Function 259: GetSplinePointBasis() (5 input parameters) Name: GetSplinePointBasis Return type: Vector2 Description: Get (evaluate) spline point: B-Spline @@ -2501,7 +2529,7 @@ Function 255: GetSplinePointBasis() (5 input parameters) Param[3]: p3 (type: Vector2) Param[4]: p4 (type: Vector2) Param[5]: t (type: float) -Function 256: GetSplinePointCatmullRom() (5 input parameters) +Function 260: GetSplinePointCatmullRom() (5 input parameters) Name: GetSplinePointCatmullRom Return type: Vector2 Description: Get (evaluate) spline point: Catmull-Rom @@ -2510,7 +2538,7 @@ Function 256: GetSplinePointCatmullRom() (5 input parameters) Param[3]: p3 (type: Vector2) Param[4]: p4 (type: Vector2) Param[5]: t (type: float) -Function 257: GetSplinePointBezierQuad() (4 input parameters) +Function 261: GetSplinePointBezierQuad() (4 input parameters) Name: GetSplinePointBezierQuad Return type: Vector2 Description: Get (evaluate) spline point: Quadratic Bezier @@ -2518,7 +2546,7 @@ Function 257: GetSplinePointBezierQuad() (4 input parameters) Param[2]: c2 (type: Vector2) Param[3]: p3 (type: Vector2) Param[4]: t (type: float) -Function 258: GetSplinePointBezierCubic() (5 input parameters) +Function 262: GetSplinePointBezierCubic() (5 input parameters) Name: GetSplinePointBezierCubic Return type: Vector2 Description: Get (evaluate) spline point: Cubic Bezier @@ -2527,13 +2555,13 @@ Function 258: GetSplinePointBezierCubic() (5 input parameters) Param[3]: c3 (type: Vector2) Param[4]: p4 (type: Vector2) Param[5]: t (type: float) -Function 259: CheckCollisionRecs() (2 input parameters) +Function 263: CheckCollisionRecs() (2 input parameters) Name: CheckCollisionRecs Return type: bool Description: Check collision between two rectangles Param[1]: rec1 (type: Rectangle) Param[2]: rec2 (type: Rectangle) -Function 260: CheckCollisionCircles() (4 input parameters) +Function 264: CheckCollisionCircles() (4 input parameters) Name: CheckCollisionCircles Return type: bool Description: Check collision between two circles @@ -2541,27 +2569,35 @@ Function 260: CheckCollisionCircles() (4 input parameters) Param[2]: radius1 (type: float) Param[3]: center2 (type: Vector2) Param[4]: radius2 (type: float) -Function 261: CheckCollisionCircleRec() (3 input parameters) +Function 265: CheckCollisionCircleRec() (3 input parameters) Name: CheckCollisionCircleRec Return type: bool Description: Check collision between circle and rectangle Param[1]: center (type: Vector2) Param[2]: radius (type: float) Param[3]: rec (type: Rectangle) -Function 262: CheckCollisionPointRec() (2 input parameters) +Function 266: CheckCollisionCircleLine() (4 input parameters) + Name: CheckCollisionCircleLine + Return type: bool + Description: Check if circle collides with a line created betweeen two points [p1] and [p2] + Param[1]: center (type: Vector2) + Param[2]: radius (type: float) + Param[3]: p1 (type: Vector2) + Param[4]: p2 (type: Vector2) +Function 267: CheckCollisionPointRec() (2 input parameters) Name: CheckCollisionPointRec Return type: bool Description: Check if point is inside rectangle Param[1]: point (type: Vector2) Param[2]: rec (type: Rectangle) -Function 263: CheckCollisionPointCircle() (3 input parameters) +Function 268: CheckCollisionPointCircle() (3 input parameters) Name: CheckCollisionPointCircle Return type: bool Description: Check if point is inside circle Param[1]: point (type: Vector2) Param[2]: center (type: Vector2) Param[3]: radius (type: float) -Function 264: CheckCollisionPointTriangle() (4 input parameters) +Function 269: CheckCollisionPointTriangle() (4 input parameters) Name: CheckCollisionPointTriangle Return type: bool Description: Check if point is inside a triangle @@ -2569,14 +2605,22 @@ Function 264: CheckCollisionPointTriangle() (4 input parameters) Param[2]: p1 (type: Vector2) Param[3]: p2 (type: Vector2) Param[4]: p3 (type: Vector2) -Function 265: CheckCollisionPointPoly() (3 input parameters) +Function 270: CheckCollisionPointLine() (4 input parameters) + Name: CheckCollisionPointLine + Return type: bool + Description: Check if point belongs to line created between two points [p1] and [p2] with defined margin in pixels [threshold] + Param[1]: point (type: Vector2) + Param[2]: p1 (type: Vector2) + Param[3]: p2 (type: Vector2) + Param[4]: threshold (type: int) +Function 271: CheckCollisionPointPoly() (3 input parameters) Name: CheckCollisionPointPoly Return type: bool Description: Check if point is within a polygon described by array of vertices Param[1]: point (type: Vector2) Param[2]: points (type: const Vector2 *) Param[3]: pointCount (type: int) -Function 266: CheckCollisionLines() (5 input parameters) +Function 272: CheckCollisionLines() (5 input parameters) Name: CheckCollisionLines Return type: bool Description: Check the collision between two lines defined by two points each, returns collision point by reference @@ -2585,34 +2629,18 @@ Function 266: CheckCollisionLines() (5 input parameters) Param[3]: startPos2 (type: Vector2) Param[4]: endPos2 (type: Vector2) Param[5]: collisionPoint (type: Vector2 *) -Function 267: CheckCollisionPointLine() (4 input parameters) - Name: CheckCollisionPointLine - Return type: bool - Description: Check if point belongs to line created between two points [p1] and [p2] with defined margin in pixels [threshold] - Param[1]: point (type: Vector2) - Param[2]: p1 (type: Vector2) - Param[3]: p2 (type: Vector2) - Param[4]: threshold (type: int) -Function 268: CheckCollisionCircleLine() (4 input parameters) - Name: CheckCollisionCircleLine - Return type: bool - Description: Check if circle collides with a line created betweeen two points [p1] and [p2] - Param[1]: center (type: Vector2) - Param[2]: radius (type: float) - Param[3]: p1 (type: Vector2) - Param[4]: p2 (type: Vector2) -Function 269: GetCollisionRec() (2 input parameters) +Function 273: GetCollisionRec() (2 input parameters) Name: GetCollisionRec Return type: Rectangle Description: Get collision rectangle for two rectangles collision Param[1]: rec1 (type: Rectangle) Param[2]: rec2 (type: Rectangle) -Function 270: LoadImage() (1 input parameters) +Function 274: LoadImage() (1 input parameters) Name: LoadImage Return type: Image Description: Load image from file into CPU memory (RAM) Param[1]: fileName (type: const char *) -Function 271: LoadImageRaw() (5 input parameters) +Function 275: LoadImageRaw() (5 input parameters) Name: LoadImageRaw Return type: Image Description: Load image from RAW file data @@ -2621,20 +2649,13 @@ Function 271: LoadImageRaw() (5 input parameters) Param[3]: height (type: int) Param[4]: format (type: int) Param[5]: headerSize (type: int) -Function 272: LoadImageSvg() (3 input parameters) - Name: LoadImageSvg - Return type: Image - Description: Load image from SVG file data or string with specified size - Param[1]: fileNameOrString (type: const char *) - Param[2]: width (type: int) - Param[3]: height (type: int) -Function 273: LoadImageAnim() (2 input parameters) +Function 276: LoadImageAnim() (2 input parameters) Name: LoadImageAnim Return type: Image Description: Load image sequence from file (frames appended to image.data) Param[1]: fileName (type: const char *) Param[2]: frames (type: int *) -Function 274: LoadImageAnimFromMemory() (4 input parameters) +Function 277: LoadImageAnimFromMemory() (4 input parameters) Name: LoadImageAnimFromMemory Return type: Image Description: Load image sequence from memory buffer @@ -2642,60 +2663,60 @@ Function 274: LoadImageAnimFromMemory() (4 input parameters) Param[2]: fileData (type: const unsigned char *) Param[3]: dataSize (type: int) Param[4]: frames (type: int *) -Function 275: LoadImageFromMemory() (3 input parameters) +Function 278: LoadImageFromMemory() (3 input parameters) Name: LoadImageFromMemory Return type: Image Description: Load image from memory buffer, fileType refers to extension: i.e. '.png' Param[1]: fileType (type: const char *) Param[2]: fileData (type: const unsigned char *) Param[3]: dataSize (type: int) -Function 276: LoadImageFromTexture() (1 input parameters) +Function 279: LoadImageFromTexture() (1 input parameters) Name: LoadImageFromTexture Return type: Image Description: Load image from GPU texture data Param[1]: texture (type: Texture2D) -Function 277: LoadImageFromScreen() (0 input parameters) +Function 280: LoadImageFromScreen() (0 input parameters) Name: LoadImageFromScreen Return type: Image Description: Load image from screen buffer and (screenshot) No input parameters -Function 278: IsImageReady() (1 input parameters) - Name: IsImageReady +Function 281: IsImageValid() (1 input parameters) + Name: IsImageValid Return type: bool - Description: Check if an image is ready + Description: Check if an image is valid (data and parameters) Param[1]: image (type: Image) -Function 279: UnloadImage() (1 input parameters) +Function 282: UnloadImage() (1 input parameters) Name: UnloadImage Return type: void Description: Unload image from CPU memory (RAM) Param[1]: image (type: Image) -Function 280: ExportImage() (2 input parameters) +Function 283: ExportImage() (2 input parameters) Name: ExportImage Return type: bool Description: Export image data to file, returns true on success Param[1]: image (type: Image) Param[2]: fileName (type: const char *) -Function 281: ExportImageToMemory() (3 input parameters) +Function 284: ExportImageToMemory() (3 input parameters) Name: ExportImageToMemory Return type: unsigned char * Description: Export image to memory buffer Param[1]: image (type: Image) Param[2]: fileType (type: const char *) Param[3]: fileSize (type: int *) -Function 282: ExportImageAsCode() (2 input parameters) +Function 285: ExportImageAsCode() (2 input parameters) Name: ExportImageAsCode Return type: bool Description: Export image as code file defining an array of bytes, returns true on success Param[1]: image (type: Image) Param[2]: fileName (type: const char *) -Function 283: GenImageColor() (3 input parameters) +Function 286: GenImageColor() (3 input parameters) Name: GenImageColor Return type: Image Description: Generate image: plain color Param[1]: width (type: int) Param[2]: height (type: int) Param[3]: color (type: Color) -Function 284: GenImageGradientLinear() (5 input parameters) +Function 287: GenImageGradientLinear() (5 input parameters) Name: GenImageGradientLinear Return type: Image Description: Generate image: linear gradient, direction in degrees [0..360], 0=Vertical gradient @@ -2704,7 +2725,7 @@ Function 284: GenImageGradientLinear() (5 input parameters) Param[3]: direction (type: int) Param[4]: start (type: Color) Param[5]: end (type: Color) -Function 285: GenImageGradientRadial() (5 input parameters) +Function 288: GenImageGradientRadial() (5 input parameters) Name: GenImageGradientRadial Return type: Image Description: Generate image: radial gradient @@ -2713,7 +2734,7 @@ Function 285: GenImageGradientRadial() (5 input parameters) Param[3]: density (type: float) Param[4]: inner (type: Color) Param[5]: outer (type: Color) -Function 286: GenImageGradientSquare() (5 input parameters) +Function 289: GenImageGradientSquare() (5 input parameters) Name: GenImageGradientSquare Return type: Image Description: Generate image: square gradient @@ -2722,7 +2743,7 @@ Function 286: GenImageGradientSquare() (5 input parameters) Param[3]: density (type: float) Param[4]: inner (type: Color) Param[5]: outer (type: Color) -Function 287: GenImageChecked() (6 input parameters) +Function 290: GenImageChecked() (6 input parameters) Name: GenImageChecked Return type: Image Description: Generate image: checked @@ -2732,14 +2753,14 @@ Function 287: GenImageChecked() (6 input parameters) Param[4]: checksY (type: int) Param[5]: col1 (type: Color) Param[6]: col2 (type: Color) -Function 288: GenImageWhiteNoise() (3 input parameters) +Function 291: GenImageWhiteNoise() (3 input parameters) Name: GenImageWhiteNoise Return type: Image Description: Generate image: white noise Param[1]: width (type: int) Param[2]: height (type: int) Param[3]: factor (type: float) -Function 289: GenImagePerlinNoise() (5 input parameters) +Function 292: GenImagePerlinNoise() (5 input parameters) Name: GenImagePerlinNoise Return type: Image Description: Generate image: perlin noise @@ -2748,45 +2769,45 @@ Function 289: GenImagePerlinNoise() (5 input parameters) Param[3]: offsetX (type: int) Param[4]: offsetY (type: int) Param[5]: scale (type: float) -Function 290: GenImageCellular() (3 input parameters) +Function 293: GenImageCellular() (3 input parameters) Name: GenImageCellular Return type: Image Description: Generate image: cellular algorithm, bigger tileSize means bigger cells Param[1]: width (type: int) Param[2]: height (type: int) Param[3]: tileSize (type: int) -Function 291: GenImageText() (3 input parameters) +Function 294: GenImageText() (3 input parameters) Name: GenImageText Return type: Image Description: Generate image: grayscale image from text data Param[1]: width (type: int) Param[2]: height (type: int) Param[3]: text (type: const char *) -Function 292: ImageCopy() (1 input parameters) +Function 295: ImageCopy() (1 input parameters) Name: ImageCopy Return type: Image Description: Create an image duplicate (useful for transformations) Param[1]: image (type: Image) -Function 293: ImageFromImage() (2 input parameters) +Function 296: ImageFromImage() (2 input parameters) Name: ImageFromImage Return type: Image Description: Create an image from another image piece Param[1]: image (type: Image) Param[2]: rec (type: Rectangle) -Function 294: ImageFromChannel() (2 input parameters) +Function 297: ImageFromChannel() (2 input parameters) Name: ImageFromChannel Return type: Image Description: Create an image from a selected channel of another image (GRAYSCALE) Param[1]: image (type: Image) Param[2]: selectedChannel (type: int) -Function 295: ImageText() (3 input parameters) +Function 298: ImageText() (3 input parameters) Name: ImageText Return type: Image Description: Create an image from text (default font) Param[1]: text (type: const char *) Param[2]: fontSize (type: int) Param[3]: color (type: Color) -Function 296: ImageTextEx() (5 input parameters) +Function 299: ImageTextEx() (5 input parameters) Name: ImageTextEx Return type: Image Description: Create an image from text (custom sprite font) @@ -2795,76 +2816,76 @@ Function 296: ImageTextEx() (5 input parameters) Param[3]: fontSize (type: float) Param[4]: spacing (type: float) Param[5]: tint (type: Color) -Function 297: ImageFormat() (2 input parameters) +Function 300: ImageFormat() (2 input parameters) Name: ImageFormat Return type: void Description: Convert image data to desired format Param[1]: image (type: Image *) Param[2]: newFormat (type: int) -Function 298: ImageToPOT() (2 input parameters) +Function 301: ImageToPOT() (2 input parameters) Name: ImageToPOT Return type: void Description: Convert image to POT (power-of-two) Param[1]: image (type: Image *) Param[2]: fill (type: Color) -Function 299: ImageCrop() (2 input parameters) +Function 302: ImageCrop() (2 input parameters) Name: ImageCrop Return type: void Description: Crop an image to a defined rectangle Param[1]: image (type: Image *) Param[2]: crop (type: Rectangle) -Function 300: ImageAlphaCrop() (2 input parameters) +Function 303: ImageAlphaCrop() (2 input parameters) Name: ImageAlphaCrop Return type: void Description: Crop image depending on alpha value Param[1]: image (type: Image *) Param[2]: threshold (type: float) -Function 301: ImageAlphaClear() (3 input parameters) +Function 304: ImageAlphaClear() (3 input parameters) Name: ImageAlphaClear Return type: void Description: Clear alpha channel to desired color Param[1]: image (type: Image *) Param[2]: color (type: Color) Param[3]: threshold (type: float) -Function 302: ImageAlphaMask() (2 input parameters) +Function 305: ImageAlphaMask() (2 input parameters) Name: ImageAlphaMask Return type: void Description: Apply alpha mask to image Param[1]: image (type: Image *) Param[2]: alphaMask (type: Image) -Function 303: ImageAlphaPremultiply() (1 input parameters) +Function 306: ImageAlphaPremultiply() (1 input parameters) Name: ImageAlphaPremultiply Return type: void Description: Premultiply alpha channel Param[1]: image (type: Image *) -Function 304: ImageBlurGaussian() (2 input parameters) +Function 307: ImageBlurGaussian() (2 input parameters) Name: ImageBlurGaussian Return type: void Description: Apply Gaussian blur using a box blur approximation Param[1]: image (type: Image *) Param[2]: blurSize (type: int) -Function 305: ImageKernelConvolution() (3 input parameters) +Function 308: ImageKernelConvolution() (3 input parameters) Name: ImageKernelConvolution Return type: void Description: Apply custom square convolution kernel to image Param[1]: image (type: Image *) Param[2]: kernel (type: const float *) Param[3]: kernelSize (type: int) -Function 306: ImageResize() (3 input parameters) +Function 309: ImageResize() (3 input parameters) Name: ImageResize Return type: void Description: Resize image (Bicubic scaling algorithm) Param[1]: image (type: Image *) Param[2]: newWidth (type: int) Param[3]: newHeight (type: int) -Function 307: ImageResizeNN() (3 input parameters) +Function 310: ImageResizeNN() (3 input parameters) Name: ImageResizeNN Return type: void Description: Resize image (Nearest-Neighbor scaling algorithm) Param[1]: image (type: Image *) Param[2]: newWidth (type: int) Param[3]: newHeight (type: int) -Function 308: ImageResizeCanvas() (6 input parameters) +Function 311: ImageResizeCanvas() (6 input parameters) Name: ImageResizeCanvas Return type: void Description: Resize canvas and fill with color @@ -2874,12 +2895,12 @@ Function 308: ImageResizeCanvas() (6 input parameters) Param[4]: offsetX (type: int) Param[5]: offsetY (type: int) Param[6]: fill (type: Color) -Function 309: ImageMipmaps() (1 input parameters) +Function 312: ImageMipmaps() (1 input parameters) Name: ImageMipmaps Return type: void Description: Compute all mipmap levels for a provided image Param[1]: image (type: Image *) -Function 310: ImageDither() (5 input parameters) +Function 313: ImageDither() (5 input parameters) Name: ImageDither Return type: void Description: Dither image data to 16bpp or lower (Floyd-Steinberg dithering) @@ -2888,109 +2909,109 @@ Function 310: ImageDither() (5 input parameters) Param[3]: gBpp (type: int) Param[4]: bBpp (type: int) Param[5]: aBpp (type: int) -Function 311: ImageFlipVertical() (1 input parameters) +Function 314: ImageFlipVertical() (1 input parameters) Name: ImageFlipVertical Return type: void Description: Flip image vertically Param[1]: image (type: Image *) -Function 312: ImageFlipHorizontal() (1 input parameters) +Function 315: ImageFlipHorizontal() (1 input parameters) Name: ImageFlipHorizontal Return type: void Description: Flip image horizontally Param[1]: image (type: Image *) -Function 313: ImageRotate() (2 input parameters) +Function 316: ImageRotate() (2 input parameters) Name: ImageRotate Return type: void Description: Rotate image by input angle in degrees (-359 to 359) Param[1]: image (type: Image *) Param[2]: degrees (type: int) -Function 314: ImageRotateCW() (1 input parameters) +Function 317: ImageRotateCW() (1 input parameters) Name: ImageRotateCW Return type: void Description: Rotate image clockwise 90deg Param[1]: image (type: Image *) -Function 315: ImageRotateCCW() (1 input parameters) +Function 318: ImageRotateCCW() (1 input parameters) Name: ImageRotateCCW Return type: void Description: Rotate image counter-clockwise 90deg Param[1]: image (type: Image *) -Function 316: ImageColorTint() (2 input parameters) +Function 319: ImageColorTint() (2 input parameters) Name: ImageColorTint Return type: void Description: Modify image color: tint Param[1]: image (type: Image *) Param[2]: color (type: Color) -Function 317: ImageColorInvert() (1 input parameters) +Function 320: ImageColorInvert() (1 input parameters) Name: ImageColorInvert Return type: void Description: Modify image color: invert Param[1]: image (type: Image *) -Function 318: ImageColorGrayscale() (1 input parameters) +Function 321: ImageColorGrayscale() (1 input parameters) Name: ImageColorGrayscale Return type: void Description: Modify image color: grayscale Param[1]: image (type: Image *) -Function 319: ImageColorContrast() (2 input parameters) +Function 322: ImageColorContrast() (2 input parameters) Name: ImageColorContrast Return type: void Description: Modify image color: contrast (-100 to 100) Param[1]: image (type: Image *) Param[2]: contrast (type: float) -Function 320: ImageColorBrightness() (2 input parameters) +Function 323: ImageColorBrightness() (2 input parameters) Name: ImageColorBrightness Return type: void Description: Modify image color: brightness (-255 to 255) Param[1]: image (type: Image *) Param[2]: brightness (type: int) -Function 321: ImageColorReplace() (3 input parameters) +Function 324: ImageColorReplace() (3 input parameters) Name: ImageColorReplace Return type: void Description: Modify image color: replace color Param[1]: image (type: Image *) Param[2]: color (type: Color) Param[3]: replace (type: Color) -Function 322: LoadImageColors() (1 input parameters) +Function 325: LoadImageColors() (1 input parameters) Name: LoadImageColors Return type: Color * Description: Load color data from image as a Color array (RGBA - 32bit) Param[1]: image (type: Image) -Function 323: LoadImagePalette() (3 input parameters) +Function 326: LoadImagePalette() (3 input parameters) Name: LoadImagePalette Return type: Color * Description: Load colors palette from image as a Color array (RGBA - 32bit) Param[1]: image (type: Image) Param[2]: maxPaletteSize (type: int) Param[3]: colorCount (type: int *) -Function 324: UnloadImageColors() (1 input parameters) +Function 327: UnloadImageColors() (1 input parameters) Name: UnloadImageColors Return type: void Description: Unload color data loaded with LoadImageColors() Param[1]: colors (type: Color *) -Function 325: UnloadImagePalette() (1 input parameters) +Function 328: UnloadImagePalette() (1 input parameters) Name: UnloadImagePalette Return type: void Description: Unload colors palette loaded with LoadImagePalette() Param[1]: colors (type: Color *) -Function 326: GetImageAlphaBorder() (2 input parameters) +Function 329: GetImageAlphaBorder() (2 input parameters) Name: GetImageAlphaBorder Return type: Rectangle Description: Get image alpha border rectangle Param[1]: image (type: Image) Param[2]: threshold (type: float) -Function 327: GetImageColor() (3 input parameters) +Function 330: GetImageColor() (3 input parameters) Name: GetImageColor Return type: Color Description: Get image pixel color at (x, y) position Param[1]: image (type: Image) Param[2]: x (type: int) Param[3]: y (type: int) -Function 328: ImageClearBackground() (2 input parameters) +Function 331: ImageClearBackground() (2 input parameters) Name: ImageClearBackground Return type: void Description: Clear image background with given color Param[1]: dst (type: Image *) Param[2]: color (type: Color) -Function 329: ImageDrawPixel() (4 input parameters) +Function 332: ImageDrawPixel() (4 input parameters) Name: ImageDrawPixel Return type: void Description: Draw pixel within an image @@ -2998,14 +3019,14 @@ Function 329: ImageDrawPixel() (4 input parameters) Param[2]: posX (type: int) Param[3]: posY (type: int) Param[4]: color (type: Color) -Function 330: ImageDrawPixelV() (3 input parameters) +Function 333: ImageDrawPixelV() (3 input parameters) Name: ImageDrawPixelV Return type: void Description: Draw pixel within an image (Vector version) Param[1]: dst (type: Image *) Param[2]: position (type: Vector2) Param[3]: color (type: Color) -Function 331: ImageDrawLine() (6 input parameters) +Function 334: ImageDrawLine() (6 input parameters) Name: ImageDrawLine Return type: void Description: Draw line within an image @@ -3015,7 +3036,7 @@ Function 331: ImageDrawLine() (6 input parameters) Param[4]: endPosX (type: int) Param[5]: endPosY (type: int) Param[6]: color (type: Color) -Function 332: ImageDrawLineV() (4 input parameters) +Function 335: ImageDrawLineV() (4 input parameters) Name: ImageDrawLineV Return type: void Description: Draw line within an image (Vector version) @@ -3023,7 +3044,7 @@ Function 332: ImageDrawLineV() (4 input parameters) Param[2]: start (type: Vector2) Param[3]: end (type: Vector2) Param[4]: color (type: Color) -Function 333: ImageDrawLineEx() (5 input parameters) +Function 336: ImageDrawLineEx() (5 input parameters) Name: ImageDrawLineEx Return type: void Description: Draw a line defining thickness within an image @@ -3032,7 +3053,7 @@ Function 333: ImageDrawLineEx() (5 input parameters) Param[3]: end (type: Vector2) Param[4]: thick (type: int) Param[5]: color (type: Color) -Function 334: ImageDrawCircle() (5 input parameters) +Function 337: ImageDrawCircle() (5 input parameters) Name: ImageDrawCircle Return type: void Description: Draw a filled circle within an image @@ -3041,7 +3062,7 @@ Function 334: ImageDrawCircle() (5 input parameters) Param[3]: centerY (type: int) Param[4]: radius (type: int) Param[5]: color (type: Color) -Function 335: ImageDrawCircleV() (4 input parameters) +Function 338: ImageDrawCircleV() (4 input parameters) Name: ImageDrawCircleV Return type: void Description: Draw a filled circle within an image (Vector version) @@ -3049,7 +3070,7 @@ Function 335: ImageDrawCircleV() (4 input parameters) Param[2]: center (type: Vector2) Param[3]: radius (type: int) Param[4]: color (type: Color) -Function 336: ImageDrawCircleLines() (5 input parameters) +Function 339: ImageDrawCircleLines() (5 input parameters) Name: ImageDrawCircleLines Return type: void Description: Draw circle outline within an image @@ -3058,7 +3079,7 @@ Function 336: ImageDrawCircleLines() (5 input parameters) Param[3]: centerY (type: int) Param[4]: radius (type: int) Param[5]: color (type: Color) -Function 337: ImageDrawCircleLinesV() (4 input parameters) +Function 340: ImageDrawCircleLinesV() (4 input parameters) Name: ImageDrawCircleLinesV Return type: void Description: Draw circle outline within an image (Vector version) @@ -3066,7 +3087,7 @@ Function 337: ImageDrawCircleLinesV() (4 input parameters) Param[2]: center (type: Vector2) Param[3]: radius (type: int) Param[4]: color (type: Color) -Function 338: ImageDrawRectangle() (6 input parameters) +Function 341: ImageDrawRectangle() (6 input parameters) Name: ImageDrawRectangle Return type: void Description: Draw rectangle within an image @@ -3076,7 +3097,7 @@ Function 338: ImageDrawRectangle() (6 input parameters) Param[4]: width (type: int) Param[5]: height (type: int) Param[6]: color (type: Color) -Function 339: ImageDrawRectangleV() (4 input parameters) +Function 342: ImageDrawRectangleV() (4 input parameters) Name: ImageDrawRectangleV Return type: void Description: Draw rectangle within an image (Vector version) @@ -3084,14 +3105,14 @@ Function 339: ImageDrawRectangleV() (4 input parameters) Param[2]: position (type: Vector2) Param[3]: size (type: Vector2) Param[4]: color (type: Color) -Function 340: ImageDrawRectangleRec() (3 input parameters) +Function 343: ImageDrawRectangleRec() (3 input parameters) Name: ImageDrawRectangleRec Return type: void Description: Draw rectangle within an image Param[1]: dst (type: Image *) Param[2]: rec (type: Rectangle) Param[3]: color (type: Color) -Function 341: ImageDrawRectangleLines() (4 input parameters) +Function 344: ImageDrawRectangleLines() (4 input parameters) Name: ImageDrawRectangleLines Return type: void Description: Draw rectangle lines within an image @@ -3099,7 +3120,7 @@ Function 341: ImageDrawRectangleLines() (4 input parameters) Param[2]: rec (type: Rectangle) Param[3]: thick (type: int) Param[4]: color (type: Color) -Function 342: ImageDrawTriangle() (5 input parameters) +Function 345: ImageDrawTriangle() (5 input parameters) Name: ImageDrawTriangle Return type: void Description: Draw triangle within an image @@ -3108,7 +3129,7 @@ Function 342: ImageDrawTriangle() (5 input parameters) Param[3]: v2 (type: Vector2) Param[4]: v3 (type: Vector2) Param[5]: color (type: Color) -Function 343: ImageDrawTriangleEx() (7 input parameters) +Function 346: ImageDrawTriangleEx() (7 input parameters) Name: ImageDrawTriangleEx Return type: void Description: Draw triangle with interpolated colors within an image @@ -3119,7 +3140,7 @@ Function 343: ImageDrawTriangleEx() (7 input parameters) Param[5]: c1 (type: Color) Param[6]: c2 (type: Color) Param[7]: c3 (type: Color) -Function 344: ImageDrawTriangleLines() (5 input parameters) +Function 347: ImageDrawTriangleLines() (5 input parameters) Name: ImageDrawTriangleLines Return type: void Description: Draw triangle outline within an image @@ -3128,7 +3149,7 @@ Function 344: ImageDrawTriangleLines() (5 input parameters) Param[3]: v2 (type: Vector2) Param[4]: v3 (type: Vector2) Param[5]: color (type: Color) -Function 345: ImageDrawTriangleFan() (4 input parameters) +Function 348: ImageDrawTriangleFan() (4 input parameters) Name: ImageDrawTriangleFan Return type: void Description: Draw a triangle fan defined by points within an image (first vertex is the center) @@ -3136,7 +3157,7 @@ Function 345: ImageDrawTriangleFan() (4 input parameters) Param[2]: points (type: Vector2 *) Param[3]: pointCount (type: int) Param[4]: color (type: Color) -Function 346: ImageDrawTriangleStrip() (4 input parameters) +Function 349: ImageDrawTriangleStrip() (4 input parameters) Name: ImageDrawTriangleStrip Return type: void Description: Draw a triangle strip defined by points within an image @@ -3144,7 +3165,7 @@ Function 346: ImageDrawTriangleStrip() (4 input parameters) Param[2]: points (type: Vector2 *) Param[3]: pointCount (type: int) Param[4]: color (type: Color) -Function 347: ImageDraw() (5 input parameters) +Function 350: ImageDraw() (5 input parameters) Name: ImageDraw Return type: void Description: Draw a source image within a destination image (tint applied to source) @@ -3153,7 +3174,7 @@ Function 347: ImageDraw() (5 input parameters) Param[3]: srcRec (type: Rectangle) Param[4]: dstRec (type: Rectangle) Param[5]: tint (type: Color) -Function 348: ImageDrawText() (6 input parameters) +Function 351: ImageDrawText() (6 input parameters) Name: ImageDrawText Return type: void Description: Draw text (using default font) within an image (destination) @@ -3163,7 +3184,7 @@ Function 348: ImageDrawText() (6 input parameters) Param[4]: posY (type: int) Param[5]: fontSize (type: int) Param[6]: color (type: Color) -Function 349: ImageDrawTextEx() (7 input parameters) +Function 352: ImageDrawTextEx() (7 input parameters) Name: ImageDrawTextEx Return type: void Description: Draw text (custom sprite font) within an image (destination) @@ -3174,79 +3195,79 @@ Function 349: ImageDrawTextEx() (7 input parameters) Param[5]: fontSize (type: float) Param[6]: spacing (type: float) Param[7]: tint (type: Color) -Function 350: LoadTexture() (1 input parameters) +Function 353: LoadTexture() (1 input parameters) Name: LoadTexture Return type: Texture2D Description: Load texture from file into GPU memory (VRAM) Param[1]: fileName (type: const char *) -Function 351: LoadTextureFromImage() (1 input parameters) +Function 354: LoadTextureFromImage() (1 input parameters) Name: LoadTextureFromImage Return type: Texture2D Description: Load texture from image data Param[1]: image (type: Image) -Function 352: LoadTextureCubemap() (2 input parameters) +Function 355: LoadTextureCubemap() (2 input parameters) Name: LoadTextureCubemap Return type: TextureCubemap Description: Load cubemap from image, multiple image cubemap layouts supported Param[1]: image (type: Image) Param[2]: layout (type: int) -Function 353: LoadRenderTexture() (2 input parameters) +Function 356: LoadRenderTexture() (2 input parameters) Name: LoadRenderTexture Return type: RenderTexture2D Description: Load texture for rendering (framebuffer) Param[1]: width (type: int) Param[2]: height (type: int) -Function 354: IsTextureReady() (1 input parameters) - Name: IsTextureReady +Function 357: IsTextureValid() (1 input parameters) + Name: IsTextureValid Return type: bool - Description: Check if a texture is ready + Description: Check if a texture is valid (loaded in GPU) Param[1]: texture (type: Texture2D) -Function 355: UnloadTexture() (1 input parameters) +Function 358: UnloadTexture() (1 input parameters) Name: UnloadTexture Return type: void Description: Unload texture from GPU memory (VRAM) Param[1]: texture (type: Texture2D) -Function 356: IsRenderTextureReady() (1 input parameters) - Name: IsRenderTextureReady +Function 359: IsRenderTextureValid() (1 input parameters) + Name: IsRenderTextureValid Return type: bool - Description: Check if a render texture is ready + Description: Check if a render texture is valid (loaded in GPU) Param[1]: target (type: RenderTexture2D) -Function 357: UnloadRenderTexture() (1 input parameters) +Function 360: UnloadRenderTexture() (1 input parameters) Name: UnloadRenderTexture Return type: void Description: Unload render texture from GPU memory (VRAM) Param[1]: target (type: RenderTexture2D) -Function 358: UpdateTexture() (2 input parameters) +Function 361: UpdateTexture() (2 input parameters) Name: UpdateTexture Return type: void Description: Update GPU texture with new data Param[1]: texture (type: Texture2D) Param[2]: pixels (type: const void *) -Function 359: UpdateTextureRec() (3 input parameters) +Function 362: UpdateTextureRec() (3 input parameters) Name: UpdateTextureRec Return type: void Description: Update GPU texture rectangle with new data Param[1]: texture (type: Texture2D) Param[2]: rec (type: Rectangle) Param[3]: pixels (type: const void *) -Function 360: GenTextureMipmaps() (1 input parameters) +Function 363: GenTextureMipmaps() (1 input parameters) Name: GenTextureMipmaps Return type: void Description: Generate GPU mipmaps for a texture Param[1]: texture (type: Texture2D *) -Function 361: SetTextureFilter() (2 input parameters) +Function 364: SetTextureFilter() (2 input parameters) Name: SetTextureFilter Return type: void Description: Set texture scaling filter mode Param[1]: texture (type: Texture2D) Param[2]: filter (type: int) -Function 362: SetTextureWrap() (2 input parameters) +Function 365: SetTextureWrap() (2 input parameters) Name: SetTextureWrap Return type: void Description: Set texture wrapping mode Param[1]: texture (type: Texture2D) Param[2]: wrap (type: int) -Function 363: DrawTexture() (4 input parameters) +Function 366: DrawTexture() (4 input parameters) Name: DrawTexture Return type: void Description: Draw a Texture2D @@ -3254,14 +3275,14 @@ Function 363: DrawTexture() (4 input parameters) Param[2]: posX (type: int) Param[3]: posY (type: int) Param[4]: tint (type: Color) -Function 364: DrawTextureV() (3 input parameters) +Function 367: DrawTextureV() (3 input parameters) Name: DrawTextureV Return type: void Description: Draw a Texture2D with position defined as Vector2 Param[1]: texture (type: Texture2D) Param[2]: position (type: Vector2) Param[3]: tint (type: Color) -Function 365: DrawTextureEx() (5 input parameters) +Function 368: DrawTextureEx() (5 input parameters) Name: DrawTextureEx Return type: void Description: Draw a Texture2D with extended parameters @@ -3270,7 +3291,7 @@ Function 365: DrawTextureEx() (5 input parameters) Param[3]: rotation (type: float) Param[4]: scale (type: float) Param[5]: tint (type: Color) -Function 366: DrawTextureRec() (4 input parameters) +Function 369: DrawTextureRec() (4 input parameters) Name: DrawTextureRec Return type: void Description: Draw a part of a texture defined by a rectangle @@ -3278,7 +3299,7 @@ Function 366: DrawTextureRec() (4 input parameters) Param[2]: source (type: Rectangle) Param[3]: position (type: Vector2) Param[4]: tint (type: Color) -Function 367: DrawTexturePro() (6 input parameters) +Function 370: DrawTexturePro() (6 input parameters) Name: DrawTexturePro Return type: void Description: Draw a part of a texture defined by a rectangle with 'pro' parameters @@ -3288,7 +3309,7 @@ Function 367: DrawTexturePro() (6 input parameters) Param[4]: origin (type: Vector2) Param[5]: rotation (type: float) Param[6]: tint (type: Color) -Function 368: DrawTextureNPatch() (6 input parameters) +Function 371: DrawTextureNPatch() (6 input parameters) Name: DrawTextureNPatch Return type: void Description: Draws a texture (or part of it) that stretches or shrinks nicely @@ -3298,127 +3319,134 @@ Function 368: DrawTextureNPatch() (6 input parameters) Param[4]: origin (type: Vector2) Param[5]: rotation (type: float) Param[6]: tint (type: Color) -Function 369: ColorIsEqual() (2 input parameters) +Function 372: ColorIsEqual() (2 input parameters) Name: ColorIsEqual Return type: bool Description: Check if two colors are equal Param[1]: col1 (type: Color) Param[2]: col2 (type: Color) -Function 370: Fade() (2 input parameters) +Function 373: Fade() (2 input parameters) Name: Fade Return type: Color Description: Get color with alpha applied, alpha goes from 0.0f to 1.0f Param[1]: color (type: Color) Param[2]: alpha (type: float) -Function 371: ColorToInt() (1 input parameters) +Function 374: ColorToInt() (1 input parameters) Name: ColorToInt Return type: int Description: Get hexadecimal value for a Color (0xRRGGBBAA) Param[1]: color (type: Color) -Function 372: ColorNormalize() (1 input parameters) +Function 375: ColorNormalize() (1 input parameters) Name: ColorNormalize Return type: Vector4 Description: Get Color normalized as float [0..1] Param[1]: color (type: Color) -Function 373: ColorFromNormalized() (1 input parameters) +Function 376: ColorFromNormalized() (1 input parameters) Name: ColorFromNormalized Return type: Color Description: Get Color from normalized values [0..1] Param[1]: normalized (type: Vector4) -Function 374: ColorToHSV() (1 input parameters) +Function 377: ColorToHSV() (1 input parameters) Name: ColorToHSV Return type: Vector3 Description: Get HSV values for a Color, hue [0..360], saturation/value [0..1] Param[1]: color (type: Color) -Function 375: ColorFromHSV() (3 input parameters) +Function 378: ColorFromHSV() (3 input parameters) Name: ColorFromHSV Return type: Color Description: Get a Color from HSV values, hue [0..360], saturation/value [0..1] Param[1]: hue (type: float) Param[2]: saturation (type: float) Param[3]: value (type: float) -Function 376: ColorTint() (2 input parameters) +Function 379: ColorTint() (2 input parameters) Name: ColorTint Return type: Color Description: Get color multiplied with another color Param[1]: color (type: Color) Param[2]: tint (type: Color) -Function 377: ColorBrightness() (2 input parameters) +Function 380: ColorBrightness() (2 input parameters) Name: ColorBrightness Return type: Color Description: Get color with brightness correction, brightness factor goes from -1.0f to 1.0f Param[1]: color (type: Color) Param[2]: factor (type: float) -Function 378: ColorContrast() (2 input parameters) +Function 381: ColorContrast() (2 input parameters) Name: ColorContrast Return type: Color Description: Get color with contrast correction, contrast values between -1.0f and 1.0f Param[1]: color (type: Color) Param[2]: contrast (type: float) -Function 379: ColorAlpha() (2 input parameters) +Function 382: ColorAlpha() (2 input parameters) Name: ColorAlpha Return type: Color Description: Get color with alpha applied, alpha goes from 0.0f to 1.0f Param[1]: color (type: Color) Param[2]: alpha (type: float) -Function 380: ColorAlphaBlend() (3 input parameters) +Function 383: ColorAlphaBlend() (3 input parameters) Name: ColorAlphaBlend Return type: Color Description: Get src alpha-blended into dst color with tint Param[1]: dst (type: Color) Param[2]: src (type: Color) Param[3]: tint (type: Color) -Function 381: GetColor() (1 input parameters) +Function 384: ColorLerp() (3 input parameters) + Name: ColorLerp + Return type: Color + Description: Get color lerp interpolation between two colors, factor [0.0f..1.0f] + Param[1]: color1 (type: Color) + Param[2]: color2 (type: Color) + Param[3]: factor (type: float) +Function 385: GetColor() (1 input parameters) Name: GetColor Return type: Color Description: Get Color structure from hexadecimal value Param[1]: hexValue (type: unsigned int) -Function 382: GetPixelColor() (2 input parameters) +Function 386: GetPixelColor() (2 input parameters) Name: GetPixelColor Return type: Color Description: Get Color from a source pixel pointer of certain format Param[1]: srcPtr (type: void *) Param[2]: format (type: int) -Function 383: SetPixelColor() (3 input parameters) +Function 387: SetPixelColor() (3 input parameters) Name: SetPixelColor Return type: void Description: Set color formatted into destination pixel pointer Param[1]: dstPtr (type: void *) Param[2]: color (type: Color) Param[3]: format (type: int) -Function 384: GetPixelDataSize() (3 input parameters) +Function 388: GetPixelDataSize() (3 input parameters) Name: GetPixelDataSize Return type: int Description: Get pixel data size in bytes for certain format Param[1]: width (type: int) Param[2]: height (type: int) Param[3]: format (type: int) -Function 385: GetFontDefault() (0 input parameters) +Function 389: GetFontDefault() (0 input parameters) Name: GetFontDefault Return type: Font Description: Get the default Font No input parameters -Function 386: LoadFont() (1 input parameters) +Function 390: LoadFont() (1 input parameters) Name: LoadFont Return type: Font Description: Load font from file into GPU memory (VRAM) Param[1]: fileName (type: const char *) -Function 387: LoadFontEx() (4 input parameters) +Function 391: LoadFontEx() (4 input parameters) Name: LoadFontEx Return type: Font - Description: Load font from file with extended parameters, use NULL for codepoints and 0 for codepointCount to load the default character setFont + Description: Load font from file with extended parameters, use NULL for codepoints and 0 for codepointCount to load the default character set, font size is provided in pixels height Param[1]: fileName (type: const char *) Param[2]: fontSize (type: int) Param[3]: codepoints (type: int *) Param[4]: codepointCount (type: int) -Function 388: LoadFontFromImage() (3 input parameters) +Function 392: LoadFontFromImage() (3 input parameters) Name: LoadFontFromImage Return type: Font Description: Load font from Image (XNA style) Param[1]: image (type: Image) Param[2]: key (type: Color) Param[3]: firstChar (type: int) -Function 389: LoadFontFromMemory() (6 input parameters) +Function 393: LoadFontFromMemory() (6 input parameters) Name: LoadFontFromMemory Return type: Font Description: Load font from memory buffer, fileType refers to extension: i.e. '.ttf' @@ -3428,12 +3456,12 @@ Function 389: LoadFontFromMemory() (6 input parameters) Param[4]: fontSize (type: int) Param[5]: codepoints (type: int *) Param[6]: codepointCount (type: int) -Function 390: IsFontReady() (1 input parameters) - Name: IsFontReady +Function 394: IsFontValid() (1 input parameters) + Name: IsFontValid Return type: bool - Description: Check if a font is ready + Description: Check if a font is valid (font data loaded, WARNING: GPU texture not checked) Param[1]: font (type: Font) -Function 391: LoadFontData() (6 input parameters) +Function 395: LoadFontData() (6 input parameters) Name: LoadFontData Return type: GlyphInfo * Description: Load font data for further use @@ -3443,7 +3471,7 @@ Function 391: LoadFontData() (6 input parameters) Param[4]: codepoints (type: int *) Param[5]: codepointCount (type: int) Param[6]: type (type: int) -Function 392: GenImageFontAtlas() (6 input parameters) +Function 396: GenImageFontAtlas() (6 input parameters) Name: GenImageFontAtlas Return type: Image Description: Generate image font atlas using chars info @@ -3453,30 +3481,30 @@ Function 392: GenImageFontAtlas() (6 input parameters) Param[4]: fontSize (type: int) Param[5]: padding (type: int) Param[6]: packMethod (type: int) -Function 393: UnloadFontData() (2 input parameters) +Function 397: UnloadFontData() (2 input parameters) Name: UnloadFontData Return type: void Description: Unload font chars info data (RAM) Param[1]: glyphs (type: GlyphInfo *) Param[2]: glyphCount (type: int) -Function 394: UnloadFont() (1 input parameters) +Function 398: UnloadFont() (1 input parameters) Name: UnloadFont Return type: void Description: Unload font from GPU memory (VRAM) Param[1]: font (type: Font) -Function 395: ExportFontAsCode() (2 input parameters) +Function 399: ExportFontAsCode() (2 input parameters) Name: ExportFontAsCode Return type: bool Description: Export font as code file, returns true on success Param[1]: font (type: Font) Param[2]: fileName (type: const char *) -Function 396: DrawFPS() (2 input parameters) +Function 400: DrawFPS() (2 input parameters) Name: DrawFPS Return type: void Description: Draw current FPS Param[1]: posX (type: int) Param[2]: posY (type: int) -Function 397: DrawText() (5 input parameters) +Function 401: DrawText() (5 input parameters) Name: DrawText Return type: void Description: Draw text (using default font) @@ -3485,7 +3513,7 @@ Function 397: DrawText() (5 input parameters) Param[3]: posY (type: int) Param[4]: fontSize (type: int) Param[5]: color (type: Color) -Function 398: DrawTextEx() (6 input parameters) +Function 402: DrawTextEx() (6 input parameters) Name: DrawTextEx Return type: void Description: Draw text using font and additional parameters @@ -3495,7 +3523,7 @@ Function 398: DrawTextEx() (6 input parameters) Param[4]: fontSize (type: float) Param[5]: spacing (type: float) Param[6]: tint (type: Color) -Function 399: DrawTextPro() (8 input parameters) +Function 403: DrawTextPro() (8 input parameters) Name: DrawTextPro Return type: void Description: Draw text using Font and pro parameters (rotation) @@ -3507,7 +3535,7 @@ Function 399: DrawTextPro() (8 input parameters) Param[6]: fontSize (type: float) Param[7]: spacing (type: float) Param[8]: tint (type: Color) -Function 400: DrawTextCodepoint() (5 input parameters) +Function 404: DrawTextCodepoint() (5 input parameters) Name: DrawTextCodepoint Return type: void Description: Draw one character (codepoint) @@ -3516,7 +3544,7 @@ Function 400: DrawTextCodepoint() (5 input parameters) Param[3]: position (type: Vector2) Param[4]: fontSize (type: float) Param[5]: tint (type: Color) -Function 401: DrawTextCodepoints() (7 input parameters) +Function 405: DrawTextCodepoints() (7 input parameters) Name: DrawTextCodepoints Return type: void Description: Draw multiple character (codepoint) @@ -3527,18 +3555,18 @@ Function 401: DrawTextCodepoints() (7 input parameters) Param[5]: fontSize (type: float) Param[6]: spacing (type: float) Param[7]: tint (type: Color) -Function 402: SetTextLineSpacing() (1 input parameters) +Function 406: SetTextLineSpacing() (1 input parameters) Name: SetTextLineSpacing Return type: void Description: Set vertical line spacing when drawing with line-breaks Param[1]: spacing (type: int) -Function 403: MeasureText() (2 input parameters) +Function 407: MeasureText() (2 input parameters) Name: MeasureText Return type: int Description: Measure string width for default font Param[1]: text (type: const char *) Param[2]: fontSize (type: int) -Function 404: MeasureTextEx() (4 input parameters) +Function 408: MeasureTextEx() (4 input parameters) Name: MeasureTextEx Return type: Vector2 Description: Measure string size for Font @@ -3546,195 +3574,195 @@ Function 404: MeasureTextEx() (4 input parameters) Param[2]: text (type: const char *) Param[3]: fontSize (type: float) Param[4]: spacing (type: float) -Function 405: GetGlyphIndex() (2 input parameters) +Function 409: GetGlyphIndex() (2 input parameters) Name: GetGlyphIndex Return type: int Description: Get glyph index position in font for a codepoint (unicode character), fallback to '?' if not found Param[1]: font (type: Font) Param[2]: codepoint (type: int) -Function 406: GetGlyphInfo() (2 input parameters) +Function 410: GetGlyphInfo() (2 input parameters) Name: GetGlyphInfo Return type: GlyphInfo Description: Get glyph font info data for a codepoint (unicode character), fallback to '?' if not found Param[1]: font (type: Font) Param[2]: codepoint (type: int) -Function 407: GetGlyphAtlasRec() (2 input parameters) +Function 411: GetGlyphAtlasRec() (2 input parameters) Name: GetGlyphAtlasRec Return type: Rectangle Description: Get glyph rectangle in font atlas for a codepoint (unicode character), fallback to '?' if not found Param[1]: font (type: Font) Param[2]: codepoint (type: int) -Function 408: LoadUTF8() (2 input parameters) +Function 412: LoadUTF8() (2 input parameters) Name: LoadUTF8 Return type: char * Description: Load UTF-8 text encoded from codepoints array Param[1]: codepoints (type: const int *) Param[2]: length (type: int) -Function 409: UnloadUTF8() (1 input parameters) +Function 413: UnloadUTF8() (1 input parameters) Name: UnloadUTF8 Return type: void Description: Unload UTF-8 text encoded from codepoints array Param[1]: text (type: char *) -Function 410: LoadCodepoints() (2 input parameters) +Function 414: LoadCodepoints() (2 input parameters) Name: LoadCodepoints Return type: int * Description: Load all codepoints from a UTF-8 text string, codepoints count returned by parameter Param[1]: text (type: const char *) Param[2]: count (type: int *) -Function 411: UnloadCodepoints() (1 input parameters) +Function 415: UnloadCodepoints() (1 input parameters) Name: UnloadCodepoints Return type: void Description: Unload codepoints data from memory Param[1]: codepoints (type: int *) -Function 412: GetCodepointCount() (1 input parameters) +Function 416: GetCodepointCount() (1 input parameters) Name: GetCodepointCount Return type: int Description: Get total number of codepoints in a UTF-8 encoded string Param[1]: text (type: const char *) -Function 413: GetCodepoint() (2 input parameters) +Function 417: GetCodepoint() (2 input parameters) Name: GetCodepoint Return type: int Description: Get next codepoint in a UTF-8 encoded string, 0x3f('?') is returned on failure Param[1]: text (type: const char *) Param[2]: codepointSize (type: int *) -Function 414: GetCodepointNext() (2 input parameters) +Function 418: GetCodepointNext() (2 input parameters) Name: GetCodepointNext Return type: int Description: Get next codepoint in a UTF-8 encoded string, 0x3f('?') is returned on failure Param[1]: text (type: const char *) Param[2]: codepointSize (type: int *) -Function 415: GetCodepointPrevious() (2 input parameters) +Function 419: GetCodepointPrevious() (2 input parameters) Name: GetCodepointPrevious Return type: int Description: Get previous codepoint in a UTF-8 encoded string, 0x3f('?') is returned on failure Param[1]: text (type: const char *) Param[2]: codepointSize (type: int *) -Function 416: CodepointToUTF8() (2 input parameters) +Function 420: CodepointToUTF8() (2 input parameters) Name: CodepointToUTF8 Return type: const char * Description: Encode one codepoint into UTF-8 byte array (array length returned as parameter) Param[1]: codepoint (type: int) Param[2]: utf8Size (type: int *) -Function 417: TextCopy() (2 input parameters) +Function 421: TextCopy() (2 input parameters) Name: TextCopy Return type: int Description: Copy one string to another, returns bytes copied Param[1]: dst (type: char *) Param[2]: src (type: const char *) -Function 418: TextIsEqual() (2 input parameters) +Function 422: TextIsEqual() (2 input parameters) Name: TextIsEqual Return type: bool Description: Check if two text string are equal Param[1]: text1 (type: const char *) Param[2]: text2 (type: const char *) -Function 419: TextLength() (1 input parameters) +Function 423: TextLength() (1 input parameters) Name: TextLength Return type: unsigned int Description: Get text length, checks for '\0' ending Param[1]: text (type: const char *) -Function 420: TextFormat() (2 input parameters) +Function 424: TextFormat() (2 input parameters) Name: TextFormat Return type: const char * Description: Text formatting with variables (sprintf() style) Param[1]: text (type: const char *) Param[2]: args (type: ...) -Function 421: TextSubtext() (3 input parameters) +Function 425: TextSubtext() (3 input parameters) Name: TextSubtext Return type: const char * Description: Get a piece of a text string Param[1]: text (type: const char *) Param[2]: position (type: int) Param[3]: length (type: int) -Function 422: TextReplace() (3 input parameters) +Function 426: TextReplace() (3 input parameters) Name: TextReplace Return type: char * Description: Replace text string (WARNING: memory must be freed!) Param[1]: text (type: const char *) Param[2]: replace (type: const char *) Param[3]: by (type: const char *) -Function 423: TextInsert() (3 input parameters) +Function 427: TextInsert() (3 input parameters) Name: TextInsert Return type: char * Description: Insert text in a position (WARNING: memory must be freed!) Param[1]: text (type: const char *) Param[2]: insert (type: const char *) Param[3]: position (type: int) -Function 424: TextJoin() (3 input parameters) +Function 428: TextJoin() (3 input parameters) Name: TextJoin Return type: const char * Description: Join text strings with delimiter Param[1]: textList (type: const char **) Param[2]: count (type: int) Param[3]: delimiter (type: const char *) -Function 425: TextSplit() (3 input parameters) +Function 429: TextSplit() (3 input parameters) Name: TextSplit Return type: const char ** Description: Split text into multiple strings Param[1]: text (type: const char *) Param[2]: delimiter (type: char) Param[3]: count (type: int *) -Function 426: TextAppend() (3 input parameters) +Function 430: TextAppend() (3 input parameters) Name: TextAppend Return type: void Description: Append text at specific position and move cursor! Param[1]: text (type: char *) Param[2]: append (type: const char *) Param[3]: position (type: int *) -Function 427: TextFindIndex() (2 input parameters) +Function 431: TextFindIndex() (2 input parameters) Name: TextFindIndex Return type: int Description: Find first text occurrence within a string Param[1]: text (type: const char *) Param[2]: find (type: const char *) -Function 428: TextToUpper() (1 input parameters) +Function 432: TextToUpper() (1 input parameters) Name: TextToUpper Return type: const char * Description: Get upper case version of provided string Param[1]: text (type: const char *) -Function 429: TextToLower() (1 input parameters) +Function 433: TextToLower() (1 input parameters) Name: TextToLower Return type: const char * Description: Get lower case version of provided string Param[1]: text (type: const char *) -Function 430: TextToPascal() (1 input parameters) +Function 434: TextToPascal() (1 input parameters) Name: TextToPascal Return type: const char * Description: Get Pascal case notation version of provided string Param[1]: text (type: const char *) -Function 431: TextToSnake() (1 input parameters) +Function 435: TextToSnake() (1 input parameters) Name: TextToSnake Return type: const char * Description: Get Snake case notation version of provided string Param[1]: text (type: const char *) -Function 432: TextToCamel() (1 input parameters) +Function 436: TextToCamel() (1 input parameters) Name: TextToCamel Return type: const char * Description: Get Camel case notation version of provided string Param[1]: text (type: const char *) -Function 433: TextToInteger() (1 input parameters) +Function 437: TextToInteger() (1 input parameters) Name: TextToInteger Return type: int Description: Get integer value from text (negative values not supported) Param[1]: text (type: const char *) -Function 434: TextToFloat() (1 input parameters) +Function 438: TextToFloat() (1 input parameters) Name: TextToFloat Return type: float Description: Get float value from text (negative values not supported) Param[1]: text (type: const char *) -Function 435: DrawLine3D() (3 input parameters) +Function 439: DrawLine3D() (3 input parameters) Name: DrawLine3D Return type: void Description: Draw a line in 3D world space Param[1]: startPos (type: Vector3) Param[2]: endPos (type: Vector3) Param[3]: color (type: Color) -Function 436: DrawPoint3D() (2 input parameters) +Function 440: DrawPoint3D() (2 input parameters) Name: DrawPoint3D Return type: void Description: Draw a point in 3D space, actually a small line Param[1]: position (type: Vector3) Param[2]: color (type: Color) -Function 437: DrawCircle3D() (5 input parameters) +Function 441: DrawCircle3D() (5 input parameters) Name: DrawCircle3D Return type: void Description: Draw a circle in 3D world space @@ -3743,7 +3771,7 @@ Function 437: DrawCircle3D() (5 input parameters) Param[3]: rotationAxis (type: Vector3) Param[4]: rotationAngle (type: float) Param[5]: color (type: Color) -Function 438: DrawTriangle3D() (4 input parameters) +Function 442: DrawTriangle3D() (4 input parameters) Name: DrawTriangle3D Return type: void Description: Draw a color-filled triangle (vertex in counter-clockwise order!) @@ -3751,14 +3779,14 @@ Function 438: DrawTriangle3D() (4 input parameters) Param[2]: v2 (type: Vector3) Param[3]: v3 (type: Vector3) Param[4]: color (type: Color) -Function 439: DrawTriangleStrip3D() (3 input parameters) +Function 443: DrawTriangleStrip3D() (3 input parameters) Name: DrawTriangleStrip3D Return type: void Description: Draw a triangle strip defined by points Param[1]: points (type: const Vector3 *) Param[2]: pointCount (type: int) Param[3]: color (type: Color) -Function 440: DrawCube() (5 input parameters) +Function 444: DrawCube() (5 input parameters) Name: DrawCube Return type: void Description: Draw cube @@ -3767,14 +3795,14 @@ Function 440: DrawCube() (5 input parameters) Param[3]: height (type: float) Param[4]: length (type: float) Param[5]: color (type: Color) -Function 441: DrawCubeV() (3 input parameters) +Function 445: DrawCubeV() (3 input parameters) Name: DrawCubeV Return type: void Description: Draw cube (Vector version) Param[1]: position (type: Vector3) Param[2]: size (type: Vector3) Param[3]: color (type: Color) -Function 442: DrawCubeWires() (5 input parameters) +Function 446: DrawCubeWires() (5 input parameters) Name: DrawCubeWires Return type: void Description: Draw cube wires @@ -3783,21 +3811,21 @@ Function 442: DrawCubeWires() (5 input parameters) Param[3]: height (type: float) Param[4]: length (type: float) Param[5]: color (type: Color) -Function 443: DrawCubeWiresV() (3 input parameters) +Function 447: DrawCubeWiresV() (3 input parameters) Name: DrawCubeWiresV Return type: void Description: Draw cube wires (Vector version) Param[1]: position (type: Vector3) Param[2]: size (type: Vector3) Param[3]: color (type: Color) -Function 444: DrawSphere() (3 input parameters) +Function 448: DrawSphere() (3 input parameters) Name: DrawSphere Return type: void Description: Draw sphere Param[1]: centerPos (type: Vector3) Param[2]: radius (type: float) Param[3]: color (type: Color) -Function 445: DrawSphereEx() (5 input parameters) +Function 449: DrawSphereEx() (5 input parameters) Name: DrawSphereEx Return type: void Description: Draw sphere with extended parameters @@ -3806,7 +3834,7 @@ Function 445: DrawSphereEx() (5 input parameters) Param[3]: rings (type: int) Param[4]: slices (type: int) Param[5]: color (type: Color) -Function 446: DrawSphereWires() (5 input parameters) +Function 450: DrawSphereWires() (5 input parameters) Name: DrawSphereWires Return type: void Description: Draw sphere wires @@ -3815,7 +3843,7 @@ Function 446: DrawSphereWires() (5 input parameters) Param[3]: rings (type: int) Param[4]: slices (type: int) Param[5]: color (type: Color) -Function 447: DrawCylinder() (6 input parameters) +Function 451: DrawCylinder() (6 input parameters) Name: DrawCylinder Return type: void Description: Draw a cylinder/cone @@ -3825,7 +3853,7 @@ Function 447: DrawCylinder() (6 input parameters) Param[4]: height (type: float) Param[5]: slices (type: int) Param[6]: color (type: Color) -Function 448: DrawCylinderEx() (6 input parameters) +Function 452: DrawCylinderEx() (6 input parameters) Name: DrawCylinderEx Return type: void Description: Draw a cylinder with base at startPos and top at endPos @@ -3835,7 +3863,7 @@ Function 448: DrawCylinderEx() (6 input parameters) Param[4]: endRadius (type: float) Param[5]: sides (type: int) Param[6]: color (type: Color) -Function 449: DrawCylinderWires() (6 input parameters) +Function 453: DrawCylinderWires() (6 input parameters) Name: DrawCylinderWires Return type: void Description: Draw a cylinder/cone wires @@ -3845,7 +3873,7 @@ Function 449: DrawCylinderWires() (6 input parameters) Param[4]: height (type: float) Param[5]: slices (type: int) Param[6]: color (type: Color) -Function 450: DrawCylinderWiresEx() (6 input parameters) +Function 454: DrawCylinderWiresEx() (6 input parameters) Name: DrawCylinderWiresEx Return type: void Description: Draw a cylinder wires with base at startPos and top at endPos @@ -3855,7 +3883,7 @@ Function 450: DrawCylinderWiresEx() (6 input parameters) Param[4]: endRadius (type: float) Param[5]: sides (type: int) Param[6]: color (type: Color) -Function 451: DrawCapsule() (6 input parameters) +Function 455: DrawCapsule() (6 input parameters) Name: DrawCapsule Return type: void Description: Draw a capsule with the center of its sphere caps at startPos and endPos @@ -3865,7 +3893,7 @@ Function 451: DrawCapsule() (6 input parameters) Param[4]: slices (type: int) Param[5]: rings (type: int) Param[6]: color (type: Color) -Function 452: DrawCapsuleWires() (6 input parameters) +Function 456: DrawCapsuleWires() (6 input parameters) Name: DrawCapsuleWires Return type: void Description: Draw capsule wireframe with the center of its sphere caps at startPos and endPos @@ -3875,51 +3903,51 @@ Function 452: DrawCapsuleWires() (6 input parameters) Param[4]: slices (type: int) Param[5]: rings (type: int) Param[6]: color (type: Color) -Function 453: DrawPlane() (3 input parameters) +Function 457: DrawPlane() (3 input parameters) Name: DrawPlane Return type: void Description: Draw a plane XZ Param[1]: centerPos (type: Vector3) Param[2]: size (type: Vector2) Param[3]: color (type: Color) -Function 454: DrawRay() (2 input parameters) +Function 458: DrawRay() (2 input parameters) Name: DrawRay Return type: void Description: Draw a ray line Param[1]: ray (type: Ray) Param[2]: color (type: Color) -Function 455: DrawGrid() (2 input parameters) +Function 459: DrawGrid() (2 input parameters) Name: DrawGrid Return type: void Description: Draw a grid (centered at (0, 0, 0)) Param[1]: slices (type: int) Param[2]: spacing (type: float) -Function 456: LoadModel() (1 input parameters) +Function 460: LoadModel() (1 input parameters) Name: LoadModel Return type: Model Description: Load model from files (meshes and materials) Param[1]: fileName (type: const char *) -Function 457: LoadModelFromMesh() (1 input parameters) +Function 461: LoadModelFromMesh() (1 input parameters) Name: LoadModelFromMesh Return type: Model Description: Load model from generated mesh (default material) Param[1]: mesh (type: Mesh) -Function 458: IsModelReady() (1 input parameters) - Name: IsModelReady +Function 462: IsModelValid() (1 input parameters) + Name: IsModelValid Return type: bool - Description: Check if a model is ready + Description: Check if a model is valid (loaded in GPU, VAO/VBOs) Param[1]: model (type: Model) -Function 459: UnloadModel() (1 input parameters) +Function 463: UnloadModel() (1 input parameters) Name: UnloadModel Return type: void Description: Unload model (including meshes) from memory (RAM and/or VRAM) Param[1]: model (type: Model) -Function 460: GetModelBoundingBox() (1 input parameters) +Function 464: GetModelBoundingBox() (1 input parameters) Name: GetModelBoundingBox Return type: BoundingBox Description: Compute model bounding box limits (considers all meshes) Param[1]: model (type: Model) -Function 461: DrawModel() (4 input parameters) +Function 465: DrawModel() (4 input parameters) Name: DrawModel Return type: void Description: Draw a model (with texture if set) @@ -3927,7 +3955,7 @@ Function 461: DrawModel() (4 input parameters) Param[2]: position (type: Vector3) Param[3]: scale (type: float) Param[4]: tint (type: Color) -Function 462: DrawModelEx() (6 input parameters) +Function 466: DrawModelEx() (6 input parameters) Name: DrawModelEx Return type: void Description: Draw a model with extended parameters @@ -3937,7 +3965,7 @@ Function 462: DrawModelEx() (6 input parameters) Param[4]: rotationAngle (type: float) Param[5]: scale (type: Vector3) Param[6]: tint (type: Color) -Function 463: DrawModelWires() (4 input parameters) +Function 467: DrawModelWires() (4 input parameters) Name: DrawModelWires Return type: void Description: Draw a model wires (with texture if set) @@ -3945,7 +3973,7 @@ Function 463: DrawModelWires() (4 input parameters) Param[2]: position (type: Vector3) Param[3]: scale (type: float) Param[4]: tint (type: Color) -Function 464: DrawModelWiresEx() (6 input parameters) +Function 468: DrawModelWiresEx() (6 input parameters) Name: DrawModelWiresEx Return type: void Description: Draw a model wires (with texture if set) with extended parameters @@ -3955,13 +3983,31 @@ Function 464: DrawModelWiresEx() (6 input parameters) Param[4]: rotationAngle (type: float) Param[5]: scale (type: Vector3) Param[6]: tint (type: Color) -Function 465: DrawBoundingBox() (2 input parameters) +Function 469: DrawModelPoints() (4 input parameters) + Name: DrawModelPoints + Return type: void + Description: Draw a model as points + Param[1]: model (type: Model) + Param[2]: position (type: Vector3) + Param[3]: scale (type: float) + Param[4]: tint (type: Color) +Function 470: DrawModelPointsEx() (6 input parameters) + Name: DrawModelPointsEx + Return type: void + Description: Draw a model as points with extended parameters + Param[1]: model (type: Model) + Param[2]: position (type: Vector3) + Param[3]: rotationAxis (type: Vector3) + Param[4]: rotationAngle (type: float) + Param[5]: scale (type: Vector3) + Param[6]: tint (type: Color) +Function 471: DrawBoundingBox() (2 input parameters) Name: DrawBoundingBox Return type: void Description: Draw bounding box (wires) Param[1]: box (type: BoundingBox) Param[2]: color (type: Color) -Function 466: DrawBillboard() (5 input parameters) +Function 472: DrawBillboard() (5 input parameters) Name: DrawBillboard Return type: void Description: Draw a billboard texture @@ -3970,7 +4016,7 @@ Function 466: DrawBillboard() (5 input parameters) Param[3]: position (type: Vector3) Param[4]: scale (type: float) Param[5]: tint (type: Color) -Function 467: DrawBillboardRec() (6 input parameters) +Function 473: DrawBillboardRec() (6 input parameters) Name: DrawBillboardRec Return type: void Description: Draw a billboard texture defined by source @@ -3980,7 +4026,7 @@ Function 467: DrawBillboardRec() (6 input parameters) Param[4]: position (type: Vector3) Param[5]: size (type: Vector2) Param[6]: tint (type: Color) -Function 468: DrawBillboardPro() (9 input parameters) +Function 474: DrawBillboardPro() (9 input parameters) Name: DrawBillboardPro Return type: void Description: Draw a billboard texture defined by source and rotation @@ -3993,13 +4039,13 @@ Function 468: DrawBillboardPro() (9 input parameters) Param[7]: origin (type: Vector2) Param[8]: rotation (type: float) Param[9]: tint (type: Color) -Function 469: UploadMesh() (2 input parameters) +Function 475: UploadMesh() (2 input parameters) Name: UploadMesh Return type: void Description: Upload mesh vertex data in GPU and provide VAO/VBO ids Param[1]: mesh (type: Mesh *) Param[2]: dynamic (type: bool) -Function 470: UpdateMeshBuffer() (5 input parameters) +Function 476: UpdateMeshBuffer() (5 input parameters) Name: UpdateMeshBuffer Return type: void Description: Update mesh vertex data in GPU for a specific buffer index @@ -4008,19 +4054,19 @@ Function 470: UpdateMeshBuffer() (5 input parameters) Param[3]: data (type: const void *) Param[4]: dataSize (type: int) Param[5]: offset (type: int) -Function 471: UnloadMesh() (1 input parameters) +Function 477: UnloadMesh() (1 input parameters) Name: UnloadMesh Return type: void Description: Unload mesh data from CPU and GPU Param[1]: mesh (type: Mesh) -Function 472: DrawMesh() (3 input parameters) +Function 478: DrawMesh() (3 input parameters) Name: DrawMesh Return type: void Description: Draw a 3d mesh with material and transform Param[1]: mesh (type: Mesh) Param[2]: material (type: Material) Param[3]: transform (type: Matrix) -Function 473: DrawMeshInstanced() (4 input parameters) +Function 479: DrawMeshInstanced() (4 input parameters) Name: DrawMeshInstanced Return type: void Description: Draw multiple mesh instances with material and different transforms @@ -4028,35 +4074,35 @@ Function 473: DrawMeshInstanced() (4 input parameters) Param[2]: material (type: Material) Param[3]: transforms (type: const Matrix *) Param[4]: instances (type: int) -Function 474: GetMeshBoundingBox() (1 input parameters) +Function 480: GetMeshBoundingBox() (1 input parameters) Name: GetMeshBoundingBox Return type: BoundingBox Description: Compute mesh bounding box limits Param[1]: mesh (type: Mesh) -Function 475: GenMeshTangents() (1 input parameters) +Function 481: GenMeshTangents() (1 input parameters) Name: GenMeshTangents Return type: void Description: Compute mesh tangents Param[1]: mesh (type: Mesh *) -Function 476: ExportMesh() (2 input parameters) +Function 482: ExportMesh() (2 input parameters) Name: ExportMesh Return type: bool Description: Export mesh data to file, returns true on success Param[1]: mesh (type: Mesh) Param[2]: fileName (type: const char *) -Function 477: ExportMeshAsCode() (2 input parameters) +Function 483: ExportMeshAsCode() (2 input parameters) Name: ExportMeshAsCode Return type: bool Description: Export mesh as code file (.h) defining multiple arrays of vertex attributes Param[1]: mesh (type: Mesh) Param[2]: fileName (type: const char *) -Function 478: GenMeshPoly() (2 input parameters) +Function 484: GenMeshPoly() (2 input parameters) Name: GenMeshPoly Return type: Mesh Description: Generate polygonal mesh Param[1]: sides (type: int) Param[2]: radius (type: float) -Function 479: GenMeshPlane() (4 input parameters) +Function 485: GenMeshPlane() (4 input parameters) Name: GenMeshPlane Return type: Mesh Description: Generate plane mesh (with subdivisions) @@ -4064,42 +4110,42 @@ Function 479: GenMeshPlane() (4 input parameters) Param[2]: length (type: float) Param[3]: resX (type: int) Param[4]: resZ (type: int) -Function 480: GenMeshCube() (3 input parameters) +Function 486: GenMeshCube() (3 input parameters) Name: GenMeshCube Return type: Mesh Description: Generate cuboid mesh Param[1]: width (type: float) Param[2]: height (type: float) Param[3]: length (type: float) -Function 481: GenMeshSphere() (3 input parameters) +Function 487: GenMeshSphere() (3 input parameters) Name: GenMeshSphere Return type: Mesh Description: Generate sphere mesh (standard sphere) Param[1]: radius (type: float) Param[2]: rings (type: int) Param[3]: slices (type: int) -Function 482: GenMeshHemiSphere() (3 input parameters) +Function 488: GenMeshHemiSphere() (3 input parameters) Name: GenMeshHemiSphere Return type: Mesh Description: Generate half-sphere mesh (no bottom cap) Param[1]: radius (type: float) Param[2]: rings (type: int) Param[3]: slices (type: int) -Function 483: GenMeshCylinder() (3 input parameters) +Function 489: GenMeshCylinder() (3 input parameters) Name: GenMeshCylinder Return type: Mesh Description: Generate cylinder mesh Param[1]: radius (type: float) Param[2]: height (type: float) Param[3]: slices (type: int) -Function 484: GenMeshCone() (3 input parameters) +Function 490: GenMeshCone() (3 input parameters) Name: GenMeshCone Return type: Mesh Description: Generate cone/pyramid mesh Param[1]: radius (type: float) Param[2]: height (type: float) Param[3]: slices (type: int) -Function 485: GenMeshTorus() (4 input parameters) +Function 491: GenMeshTorus() (4 input parameters) Name: GenMeshTorus Return type: Mesh Description: Generate torus mesh @@ -4107,7 +4153,7 @@ Function 485: GenMeshTorus() (4 input parameters) Param[2]: size (type: float) Param[3]: radSeg (type: int) Param[4]: sides (type: int) -Function 486: GenMeshKnot() (4 input parameters) +Function 492: GenMeshKnot() (4 input parameters) Name: GenMeshKnot Return type: Mesh Description: Generate trefoil knot mesh @@ -4115,84 +4161,91 @@ Function 486: GenMeshKnot() (4 input parameters) Param[2]: size (type: float) Param[3]: radSeg (type: int) Param[4]: sides (type: int) -Function 487: GenMeshHeightmap() (2 input parameters) +Function 493: GenMeshHeightmap() (2 input parameters) Name: GenMeshHeightmap Return type: Mesh Description: Generate heightmap mesh from image data Param[1]: heightmap (type: Image) Param[2]: size (type: Vector3) -Function 488: GenMeshCubicmap() (2 input parameters) +Function 494: GenMeshCubicmap() (2 input parameters) Name: GenMeshCubicmap Return type: Mesh Description: Generate cubes-based map mesh from image data Param[1]: cubicmap (type: Image) Param[2]: cubeSize (type: Vector3) -Function 489: LoadMaterials() (2 input parameters) +Function 495: LoadMaterials() (2 input parameters) Name: LoadMaterials Return type: Material * Description: Load materials from model file Param[1]: fileName (type: const char *) Param[2]: materialCount (type: int *) -Function 490: LoadMaterialDefault() (0 input parameters) +Function 496: LoadMaterialDefault() (0 input parameters) Name: LoadMaterialDefault Return type: Material Description: Load default material (Supports: DIFFUSE, SPECULAR, NORMAL maps) No input parameters -Function 491: IsMaterialReady() (1 input parameters) - Name: IsMaterialReady +Function 497: IsMaterialValid() (1 input parameters) + Name: IsMaterialValid Return type: bool - Description: Check if a material is ready + Description: Check if a material is valid (shader assigned, map textures loaded in GPU) Param[1]: material (type: Material) -Function 492: UnloadMaterial() (1 input parameters) +Function 498: UnloadMaterial() (1 input parameters) Name: UnloadMaterial Return type: void Description: Unload material from GPU memory (VRAM) Param[1]: material (type: Material) -Function 493: SetMaterialTexture() (3 input parameters) +Function 499: SetMaterialTexture() (3 input parameters) Name: SetMaterialTexture Return type: void Description: Set texture for a material map type (MATERIAL_MAP_DIFFUSE, MATERIAL_MAP_SPECULAR...) Param[1]: material (type: Material *) Param[2]: mapType (type: int) Param[3]: texture (type: Texture2D) -Function 494: SetModelMeshMaterial() (3 input parameters) +Function 500: SetModelMeshMaterial() (3 input parameters) Name: SetModelMeshMaterial Return type: void Description: Set material for a mesh Param[1]: model (type: Model *) Param[2]: meshId (type: int) Param[3]: materialId (type: int) -Function 495: LoadModelAnimations() (2 input parameters) +Function 501: LoadModelAnimations() (2 input parameters) Name: LoadModelAnimations Return type: ModelAnimation * Description: Load model animations from file Param[1]: fileName (type: const char *) Param[2]: animCount (type: int *) -Function 496: UpdateModelAnimation() (3 input parameters) +Function 502: UpdateModelAnimation() (3 input parameters) Name: UpdateModelAnimation Return type: void - Description: Update model animation pose + Description: Update model animation pose (CPU) Param[1]: model (type: Model) Param[2]: anim (type: ModelAnimation) Param[3]: frame (type: int) -Function 497: UnloadModelAnimation() (1 input parameters) +Function 503: UpdateModelAnimationBoneMatrices() (3 input parameters) + Name: UpdateModelAnimationBoneMatrices + Return type: void + Description: Update model animation mesh bone matrices (GPU skinning) + Param[1]: model (type: Model) + Param[2]: anim (type: ModelAnimation) + Param[3]: frame (type: int) +Function 504: UnloadModelAnimation() (1 input parameters) Name: UnloadModelAnimation Return type: void Description: Unload animation data Param[1]: anim (type: ModelAnimation) -Function 498: UnloadModelAnimations() (2 input parameters) +Function 505: UnloadModelAnimations() (2 input parameters) Name: UnloadModelAnimations Return type: void Description: Unload animation array data Param[1]: animations (type: ModelAnimation *) Param[2]: animCount (type: int) -Function 499: IsModelAnimationValid() (2 input parameters) +Function 506: IsModelAnimationValid() (2 input parameters) Name: IsModelAnimationValid Return type: bool Description: Check model animation skeleton match Param[1]: model (type: Model) Param[2]: anim (type: ModelAnimation) -Function 500: CheckCollisionSpheres() (4 input parameters) +Function 507: CheckCollisionSpheres() (4 input parameters) Name: CheckCollisionSpheres Return type: bool Description: Check collision between two spheres @@ -4200,40 +4253,40 @@ Function 500: CheckCollisionSpheres() (4 input parameters) Param[2]: radius1 (type: float) Param[3]: center2 (type: Vector3) Param[4]: radius2 (type: float) -Function 501: CheckCollisionBoxes() (2 input parameters) +Function 508: CheckCollisionBoxes() (2 input parameters) Name: CheckCollisionBoxes Return type: bool Description: Check collision between two bounding boxes Param[1]: box1 (type: BoundingBox) Param[2]: box2 (type: BoundingBox) -Function 502: CheckCollisionBoxSphere() (3 input parameters) +Function 509: CheckCollisionBoxSphere() (3 input parameters) Name: CheckCollisionBoxSphere Return type: bool Description: Check collision between box and sphere Param[1]: box (type: BoundingBox) Param[2]: center (type: Vector3) Param[3]: radius (type: float) -Function 503: GetRayCollisionSphere() (3 input parameters) +Function 510: GetRayCollisionSphere() (3 input parameters) Name: GetRayCollisionSphere Return type: RayCollision Description: Get collision info between ray and sphere Param[1]: ray (type: Ray) Param[2]: center (type: Vector3) Param[3]: radius (type: float) -Function 504: GetRayCollisionBox() (2 input parameters) +Function 511: GetRayCollisionBox() (2 input parameters) Name: GetRayCollisionBox Return type: RayCollision Description: Get collision info between ray and box Param[1]: ray (type: Ray) Param[2]: box (type: BoundingBox) -Function 505: GetRayCollisionMesh() (3 input parameters) +Function 512: GetRayCollisionMesh() (3 input parameters) Name: GetRayCollisionMesh Return type: RayCollision Description: Get collision info between ray and mesh Param[1]: ray (type: Ray) Param[2]: mesh (type: Mesh) Param[3]: transform (type: Matrix) -Function 506: GetRayCollisionTriangle() (4 input parameters) +Function 513: GetRayCollisionTriangle() (4 input parameters) Name: GetRayCollisionTriangle Return type: RayCollision Description: Get collision info between ray and triangle @@ -4241,7 +4294,7 @@ Function 506: GetRayCollisionTriangle() (4 input parameters) Param[2]: p1 (type: Vector3) Param[3]: p2 (type: Vector3) Param[4]: p3 (type: Vector3) -Function 507: GetRayCollisionQuad() (5 input parameters) +Function 514: GetRayCollisionQuad() (5 input parameters) Name: GetRayCollisionQuad Return type: RayCollision Description: Get collision info between ray and quad @@ -4250,158 +4303,158 @@ Function 507: GetRayCollisionQuad() (5 input parameters) Param[3]: p2 (type: Vector3) Param[4]: p3 (type: Vector3) Param[5]: p4 (type: Vector3) -Function 508: InitAudioDevice() (0 input parameters) +Function 515: InitAudioDevice() (0 input parameters) Name: InitAudioDevice Return type: void Description: Initialize audio device and context No input parameters -Function 509: CloseAudioDevice() (0 input parameters) +Function 516: CloseAudioDevice() (0 input parameters) Name: CloseAudioDevice Return type: void Description: Close the audio device and context No input parameters -Function 510: IsAudioDeviceReady() (0 input parameters) +Function 517: IsAudioDeviceReady() (0 input parameters) Name: IsAudioDeviceReady Return type: bool Description: Check if audio device has been initialized successfully No input parameters -Function 511: SetMasterVolume() (1 input parameters) +Function 518: SetMasterVolume() (1 input parameters) Name: SetMasterVolume Return type: void Description: Set master volume (listener) Param[1]: volume (type: float) -Function 512: GetMasterVolume() (0 input parameters) +Function 519: GetMasterVolume() (0 input parameters) Name: GetMasterVolume Return type: float Description: Get master volume (listener) No input parameters -Function 513: LoadWave() (1 input parameters) +Function 520: LoadWave() (1 input parameters) Name: LoadWave Return type: Wave Description: Load wave data from file Param[1]: fileName (type: const char *) -Function 514: LoadWaveFromMemory() (3 input parameters) +Function 521: LoadWaveFromMemory() (3 input parameters) Name: LoadWaveFromMemory Return type: Wave Description: Load wave from memory buffer, fileType refers to extension: i.e. '.wav' Param[1]: fileType (type: const char *) Param[2]: fileData (type: const unsigned char *) Param[3]: dataSize (type: int) -Function 515: IsWaveReady() (1 input parameters) - Name: IsWaveReady +Function 522: IsWaveValid() (1 input parameters) + Name: IsWaveValid Return type: bool - Description: Checks if wave data is ready + Description: Checks if wave data is valid (data loaded and parameters) Param[1]: wave (type: Wave) -Function 516: LoadSound() (1 input parameters) +Function 523: LoadSound() (1 input parameters) Name: LoadSound Return type: Sound Description: Load sound from file Param[1]: fileName (type: const char *) -Function 517: LoadSoundFromWave() (1 input parameters) +Function 524: LoadSoundFromWave() (1 input parameters) Name: LoadSoundFromWave Return type: Sound Description: Load sound from wave data Param[1]: wave (type: Wave) -Function 518: LoadSoundAlias() (1 input parameters) +Function 525: LoadSoundAlias() (1 input parameters) Name: LoadSoundAlias Return type: Sound Description: Create a new sound that shares the same sample data as the source sound, does not own the sound data Param[1]: source (type: Sound) -Function 519: IsSoundReady() (1 input parameters) - Name: IsSoundReady +Function 526: IsSoundValid() (1 input parameters) + Name: IsSoundValid Return type: bool - Description: Checks if a sound is ready + Description: Checks if a sound is valid (data loaded and buffers initialized) Param[1]: sound (type: Sound) -Function 520: UpdateSound() (3 input parameters) +Function 527: UpdateSound() (3 input parameters) Name: UpdateSound Return type: void Description: Update sound buffer with new data Param[1]: sound (type: Sound) Param[2]: data (type: const void *) Param[3]: sampleCount (type: int) -Function 521: UnloadWave() (1 input parameters) +Function 528: UnloadWave() (1 input parameters) Name: UnloadWave Return type: void Description: Unload wave data Param[1]: wave (type: Wave) -Function 522: UnloadSound() (1 input parameters) +Function 529: UnloadSound() (1 input parameters) Name: UnloadSound Return type: void Description: Unload sound Param[1]: sound (type: Sound) -Function 523: UnloadSoundAlias() (1 input parameters) +Function 530: UnloadSoundAlias() (1 input parameters) Name: UnloadSoundAlias Return type: void Description: Unload a sound alias (does not deallocate sample data) Param[1]: alias (type: Sound) -Function 524: ExportWave() (2 input parameters) +Function 531: ExportWave() (2 input parameters) Name: ExportWave Return type: bool Description: Export wave data to file, returns true on success Param[1]: wave (type: Wave) Param[2]: fileName (type: const char *) -Function 525: ExportWaveAsCode() (2 input parameters) +Function 532: ExportWaveAsCode() (2 input parameters) Name: ExportWaveAsCode Return type: bool Description: Export wave sample data to code (.h), returns true on success Param[1]: wave (type: Wave) Param[2]: fileName (type: const char *) -Function 526: PlaySound() (1 input parameters) +Function 533: PlaySound() (1 input parameters) Name: PlaySound Return type: void Description: Play a sound Param[1]: sound (type: Sound) -Function 527: StopSound() (1 input parameters) +Function 534: StopSound() (1 input parameters) Name: StopSound Return type: void Description: Stop playing a sound Param[1]: sound (type: Sound) -Function 528: PauseSound() (1 input parameters) +Function 535: PauseSound() (1 input parameters) Name: PauseSound Return type: void Description: Pause a sound Param[1]: sound (type: Sound) -Function 529: ResumeSound() (1 input parameters) +Function 536: ResumeSound() (1 input parameters) Name: ResumeSound Return type: void Description: Resume a paused sound Param[1]: sound (type: Sound) -Function 530: IsSoundPlaying() (1 input parameters) +Function 537: IsSoundPlaying() (1 input parameters) Name: IsSoundPlaying Return type: bool Description: Check if a sound is currently playing Param[1]: sound (type: Sound) -Function 531: SetSoundVolume() (2 input parameters) +Function 538: SetSoundVolume() (2 input parameters) Name: SetSoundVolume Return type: void Description: Set volume for a sound (1.0 is max level) Param[1]: sound (type: Sound) Param[2]: volume (type: float) -Function 532: SetSoundPitch() (2 input parameters) +Function 539: SetSoundPitch() (2 input parameters) Name: SetSoundPitch Return type: void Description: Set pitch for a sound (1.0 is base level) Param[1]: sound (type: Sound) Param[2]: pitch (type: float) -Function 533: SetSoundPan() (2 input parameters) +Function 540: SetSoundPan() (2 input parameters) Name: SetSoundPan Return type: void Description: Set pan for a sound (0.5 is center) Param[1]: sound (type: Sound) Param[2]: pan (type: float) -Function 534: WaveCopy() (1 input parameters) +Function 541: WaveCopy() (1 input parameters) Name: WaveCopy Return type: Wave Description: Copy a wave to a new wave Param[1]: wave (type: Wave) -Function 535: WaveCrop() (3 input parameters) +Function 542: WaveCrop() (3 input parameters) Name: WaveCrop Return type: void Description: Crop a wave to defined frames range Param[1]: wave (type: Wave *) Param[2]: initFrame (type: int) Param[3]: finalFrame (type: int) -Function 536: WaveFormat() (4 input parameters) +Function 543: WaveFormat() (4 input parameters) Name: WaveFormat Return type: void Description: Convert wave data to desired format @@ -4409,203 +4462,203 @@ Function 536: WaveFormat() (4 input parameters) Param[2]: sampleRate (type: int) Param[3]: sampleSize (type: int) Param[4]: channels (type: int) -Function 537: LoadWaveSamples() (1 input parameters) +Function 544: LoadWaveSamples() (1 input parameters) Name: LoadWaveSamples Return type: float * Description: Load samples data from wave as a 32bit float data array Param[1]: wave (type: Wave) -Function 538: UnloadWaveSamples() (1 input parameters) +Function 545: UnloadWaveSamples() (1 input parameters) Name: UnloadWaveSamples Return type: void Description: Unload samples data loaded with LoadWaveSamples() Param[1]: samples (type: float *) -Function 539: LoadMusicStream() (1 input parameters) +Function 546: LoadMusicStream() (1 input parameters) Name: LoadMusicStream Return type: Music Description: Load music stream from file Param[1]: fileName (type: const char *) -Function 540: LoadMusicStreamFromMemory() (3 input parameters) +Function 547: LoadMusicStreamFromMemory() (3 input parameters) Name: LoadMusicStreamFromMemory Return type: Music Description: Load music stream from data Param[1]: fileType (type: const char *) Param[2]: data (type: const unsigned char *) Param[3]: dataSize (type: int) -Function 541: IsMusicReady() (1 input parameters) - Name: IsMusicReady +Function 548: IsMusicValid() (1 input parameters) + Name: IsMusicValid Return type: bool - Description: Checks if a music stream is ready + Description: Checks if a music stream is valid (context and buffers initialized) Param[1]: music (type: Music) -Function 542: UnloadMusicStream() (1 input parameters) +Function 549: UnloadMusicStream() (1 input parameters) Name: UnloadMusicStream Return type: void Description: Unload music stream Param[1]: music (type: Music) -Function 543: PlayMusicStream() (1 input parameters) +Function 550: PlayMusicStream() (1 input parameters) Name: PlayMusicStream Return type: void Description: Start music playing Param[1]: music (type: Music) -Function 544: IsMusicStreamPlaying() (1 input parameters) +Function 551: IsMusicStreamPlaying() (1 input parameters) Name: IsMusicStreamPlaying Return type: bool Description: Check if music is playing Param[1]: music (type: Music) -Function 545: UpdateMusicStream() (1 input parameters) +Function 552: UpdateMusicStream() (1 input parameters) Name: UpdateMusicStream Return type: void Description: Updates buffers for music streaming Param[1]: music (type: Music) -Function 546: StopMusicStream() (1 input parameters) +Function 553: StopMusicStream() (1 input parameters) Name: StopMusicStream Return type: void Description: Stop music playing Param[1]: music (type: Music) -Function 547: PauseMusicStream() (1 input parameters) +Function 554: PauseMusicStream() (1 input parameters) Name: PauseMusicStream Return type: void Description: Pause music playing Param[1]: music (type: Music) -Function 548: ResumeMusicStream() (1 input parameters) +Function 555: ResumeMusicStream() (1 input parameters) Name: ResumeMusicStream Return type: void Description: Resume playing paused music Param[1]: music (type: Music) -Function 549: SeekMusicStream() (2 input parameters) +Function 556: SeekMusicStream() (2 input parameters) Name: SeekMusicStream Return type: void Description: Seek music to a position (in seconds) Param[1]: music (type: Music) Param[2]: position (type: float) -Function 550: SetMusicVolume() (2 input parameters) +Function 557: SetMusicVolume() (2 input parameters) Name: SetMusicVolume Return type: void Description: Set volume for music (1.0 is max level) Param[1]: music (type: Music) Param[2]: volume (type: float) -Function 551: SetMusicPitch() (2 input parameters) +Function 558: SetMusicPitch() (2 input parameters) Name: SetMusicPitch Return type: void Description: Set pitch for a music (1.0 is base level) Param[1]: music (type: Music) Param[2]: pitch (type: float) -Function 552: SetMusicPan() (2 input parameters) +Function 559: SetMusicPan() (2 input parameters) Name: SetMusicPan Return type: void Description: Set pan for a music (0.5 is center) Param[1]: music (type: Music) Param[2]: pan (type: float) -Function 553: GetMusicTimeLength() (1 input parameters) +Function 560: GetMusicTimeLength() (1 input parameters) Name: GetMusicTimeLength Return type: float Description: Get music time length (in seconds) Param[1]: music (type: Music) -Function 554: GetMusicTimePlayed() (1 input parameters) +Function 561: GetMusicTimePlayed() (1 input parameters) Name: GetMusicTimePlayed Return type: float Description: Get current music time played (in seconds) Param[1]: music (type: Music) -Function 555: LoadAudioStream() (3 input parameters) +Function 562: LoadAudioStream() (3 input parameters) Name: LoadAudioStream Return type: AudioStream Description: Load audio stream (to stream raw audio pcm data) Param[1]: sampleRate (type: unsigned int) Param[2]: sampleSize (type: unsigned int) Param[3]: channels (type: unsigned int) -Function 556: IsAudioStreamReady() (1 input parameters) - Name: IsAudioStreamReady +Function 563: IsAudioStreamValid() (1 input parameters) + Name: IsAudioStreamValid Return type: bool - Description: Checks if an audio stream is ready + Description: Checks if an audio stream is valid (buffers initialized) Param[1]: stream (type: AudioStream) -Function 557: UnloadAudioStream() (1 input parameters) +Function 564: UnloadAudioStream() (1 input parameters) Name: UnloadAudioStream Return type: void Description: Unload audio stream and free memory Param[1]: stream (type: AudioStream) -Function 558: UpdateAudioStream() (3 input parameters) +Function 565: UpdateAudioStream() (3 input parameters) Name: UpdateAudioStream Return type: void Description: Update audio stream buffers with data Param[1]: stream (type: AudioStream) Param[2]: data (type: const void *) Param[3]: frameCount (type: int) -Function 559: IsAudioStreamProcessed() (1 input parameters) +Function 566: IsAudioStreamProcessed() (1 input parameters) Name: IsAudioStreamProcessed Return type: bool Description: Check if any audio stream buffers requires refill Param[1]: stream (type: AudioStream) -Function 560: PlayAudioStream() (1 input parameters) +Function 567: PlayAudioStream() (1 input parameters) Name: PlayAudioStream Return type: void Description: Play audio stream Param[1]: stream (type: AudioStream) -Function 561: PauseAudioStream() (1 input parameters) +Function 568: PauseAudioStream() (1 input parameters) Name: PauseAudioStream Return type: void Description: Pause audio stream Param[1]: stream (type: AudioStream) -Function 562: ResumeAudioStream() (1 input parameters) +Function 569: ResumeAudioStream() (1 input parameters) Name: ResumeAudioStream Return type: void Description: Resume audio stream Param[1]: stream (type: AudioStream) -Function 563: IsAudioStreamPlaying() (1 input parameters) +Function 570: IsAudioStreamPlaying() (1 input parameters) Name: IsAudioStreamPlaying Return type: bool Description: Check if audio stream is playing Param[1]: stream (type: AudioStream) -Function 564: StopAudioStream() (1 input parameters) +Function 571: StopAudioStream() (1 input parameters) Name: StopAudioStream Return type: void Description: Stop audio stream Param[1]: stream (type: AudioStream) -Function 565: SetAudioStreamVolume() (2 input parameters) +Function 572: SetAudioStreamVolume() (2 input parameters) Name: SetAudioStreamVolume Return type: void Description: Set volume for audio stream (1.0 is max level) Param[1]: stream (type: AudioStream) Param[2]: volume (type: float) -Function 566: SetAudioStreamPitch() (2 input parameters) +Function 573: SetAudioStreamPitch() (2 input parameters) Name: SetAudioStreamPitch Return type: void Description: Set pitch for audio stream (1.0 is base level) Param[1]: stream (type: AudioStream) Param[2]: pitch (type: float) -Function 567: SetAudioStreamPan() (2 input parameters) +Function 574: SetAudioStreamPan() (2 input parameters) Name: SetAudioStreamPan Return type: void Description: Set pan for audio stream (0.5 is centered) Param[1]: stream (type: AudioStream) Param[2]: pan (type: float) -Function 568: SetAudioStreamBufferSizeDefault() (1 input parameters) +Function 575: SetAudioStreamBufferSizeDefault() (1 input parameters) Name: SetAudioStreamBufferSizeDefault Return type: void Description: Default size for new audio streams Param[1]: size (type: int) -Function 569: SetAudioStreamCallback() (2 input parameters) +Function 576: SetAudioStreamCallback() (2 input parameters) Name: SetAudioStreamCallback Return type: void Description: Audio thread callback to request new data Param[1]: stream (type: AudioStream) Param[2]: callback (type: AudioCallback) -Function 570: AttachAudioStreamProcessor() (2 input parameters) +Function 577: AttachAudioStreamProcessor() (2 input parameters) Name: AttachAudioStreamProcessor Return type: void Description: Attach audio stream processor to stream, receives the samples as 'float' Param[1]: stream (type: AudioStream) Param[2]: processor (type: AudioCallback) -Function 571: DetachAudioStreamProcessor() (2 input parameters) +Function 578: DetachAudioStreamProcessor() (2 input parameters) Name: DetachAudioStreamProcessor Return type: void Description: Detach audio stream processor from stream Param[1]: stream (type: AudioStream) Param[2]: processor (type: AudioCallback) -Function 572: AttachAudioMixedProcessor() (1 input parameters) +Function 579: AttachAudioMixedProcessor() (1 input parameters) Name: AttachAudioMixedProcessor Return type: void Description: Attach audio stream processor to the entire audio pipeline, receives the samples as 'float' Param[1]: processor (type: AudioCallback) -Function 573: DetachAudioMixedProcessor() (1 input parameters) +Function 580: DetachAudioMixedProcessor() (1 input parameters) Name: DetachAudioMixedProcessor Return type: void Description: Detach audio stream processor from the entire audio pipeline diff --git a/parser/output/raylib_api.xml b/parser/output/raylib_api.xml index 474bc0473..58794b4eb 100644 --- a/parser/output/raylib_api.xml +++ b/parser/output/raylib_api.xml @@ -5,7 +5,7 @@ - + @@ -160,7 +160,7 @@ - + @@ -172,8 +172,10 @@ - - + + + + @@ -505,7 +507,7 @@ - + @@ -532,6 +534,9 @@ + + + @@ -590,13 +595,12 @@ - + - @@ -670,7 +674,7 @@ - + @@ -684,46 +688,46 @@ - + - + - + - + - + - + - + - + - + - + - + - + - + - + @@ -742,10 +746,10 @@ - + - + @@ -759,7 +763,7 @@ - + @@ -866,7 +870,7 @@ - + @@ -1069,6 +1073,9 @@ + + + @@ -1081,7 +1088,7 @@ - + @@ -1118,6 +1125,18 @@ + + + + + + + + + + + + @@ -1144,7 +1163,7 @@ - + @@ -1197,10 +1216,11 @@ - + + @@ -1261,7 +1281,7 @@ - + @@ -1289,12 +1309,12 @@ - + - + @@ -1353,8 +1373,8 @@ - - + + @@ -1431,23 +1451,23 @@ - - + + - - + + - - - - + + + + @@ -1638,6 +1658,12 @@ + + + + + + @@ -1653,6 +1679,12 @@ + + + + + + @@ -1665,18 +1697,6 @@ - - - - - - - - - - - - @@ -1691,11 +1711,6 @@ - - - - - @@ -1716,7 +1731,7 @@ - + @@ -2101,13 +2116,13 @@ - + - + @@ -2219,6 +2234,11 @@ + + + + + @@ -2241,7 +2261,7 @@ - + @@ -2260,7 +2280,7 @@ - + @@ -2600,7 +2620,7 @@ - + @@ -2637,6 +2657,20 @@ + + + + + + + + + + + + + + @@ -2767,7 +2801,7 @@ - + @@ -2787,7 +2821,12 @@ - + + + + + + @@ -2864,7 +2903,7 @@ - + @@ -2876,7 +2915,7 @@ - + @@ -2956,7 +2995,7 @@ - + @@ -3007,7 +3046,7 @@ - + diff --git a/parser/raylib_parser.c b/parser/raylib_parser.c index cfb0133c3..94a715562 100644 --- a/parser/raylib_parser.c +++ b/parser/raylib_parser.c @@ -72,7 +72,7 @@ #define MAX_CALLBACKS_TO_PARSE 64 // Maximum number of callbacks to parse #define MAX_FUNCS_TO_PARSE 1024 // Maximum number of functions to parse -#define MAX_LINE_LENGTH 512 // Maximum length of one line (including comments) +#define MAX_LINE_LENGTH 1024 // Maximum length of one line (including comments) #define MAX_STRUCT_FIELDS 64 // Maximum number of struct fields #define MAX_ENUM_VALUES 512 // Maximum number of enum values @@ -139,7 +139,7 @@ typedef struct EnumInfo { // Function info data typedef struct FunctionInfo { char name[64]; // Function name - char desc[128]; // Function description (comment at the end) + char desc[512]; // Function description (comment at the end) char retType[32]; // Return value type int paramCount; // Number of function parameters char paramType[MAX_FUNCTION_PARAMETERS][32]; // Parameters type diff --git a/projects/4coder/Makefile b/projects/4coder/Makefile index f2091f0e3..8e64702a6 100644 --- a/projects/4coder/Makefile +++ b/projects/4coder/Makefile @@ -117,8 +117,8 @@ ifeq ($(PLATFORM),PLATFORM_WEB) EMSDK_PATH ?= C:/emsdk EMSCRIPTEN_PATH ?= $(EMSDK_PATH)/upstream/emscripten CLANG_PATH = $(EMSDK_PATH)/upstream/bin - PYTHON_PATH = $(EMSDK_PATH)/python/3.9.2-1_64bit - NODE_PATH = $(EMSDK_PATH)/node/14.15.5_64bit/bin + PYTHON_PATH = $(EMSDK_PATH)/python/3.9.2-nuget_64bit + NODE_PATH = $(EMSDK_PATH)/node/20.18.0_64bit/bin export PATH = $(EMSDK_PATH);$(EMSCRIPTEN_PATH);$(CLANG_PATH);$(NODE_PATH);$(PYTHON_PATH);C:\raylib\MinGW\bin:$$(PATH) endif diff --git a/projects/CMake/CMakeLists.txt b/projects/CMake/CMakeLists.txt index 3b22964c5..96e33f344 100644 --- a/projects/CMake/CMakeLists.txt +++ b/projects/CMake/CMakeLists.txt @@ -17,9 +17,8 @@ if (NOT raylib_FOUND) # If there's none, fetch and build raylib FetchContent_GetProperties(raylib) if (NOT raylib_POPULATED) # Have we downloaded raylib yet? set(FETCHCONTENT_QUIET NO) - FetchContent_Populate(raylib) + FetchContent_MakeAvailable(raylib) set(BUILD_EXAMPLES OFF CACHE BOOL "" FORCE) # don't build the supplied examples - add_subdirectory(${raylib_SOURCE_DIR} ${raylib_BINARY_DIR}) endif() endif() @@ -31,8 +30,8 @@ target_link_libraries(${PROJECT_NAME} raylib) # Web Configurations if (${PLATFORM} STREQUAL "Web") - # Tell Emscripten to build an example.html file. - set_target_properties(${PROJECT_NAME} PROPERTIES SUFFIX ".html") + set_target_properties(${PROJECT_NAME} PROPERTIES SUFFIX ".html") # Tell Emscripten to build an example.html file. + set(CMAKE_EXE_LINKER_FLAGS "${CMAKE_EXE_LINKER_FLAGS} -s USE_GLFW=3 -s ASSERTIONS=1 -s WASM=1 -s ASYNCIFY -s GL_ENABLE_GET_PROC_ADDRESS=1") endif() # Checks if OSX and links appropriate frameworks (Only required on MacOS) diff --git a/projects/CMake/README.md b/projects/CMake/README.md index f7873c30f..fc4fe5542 100644 --- a/projects/CMake/README.md +++ b/projects/CMake/README.md @@ -22,6 +22,6 @@ Compiling for the web requires the [Emscripten SDK](https://emscripten.org/docs/ ``` bash mkdir build cd build -emcmake cmake .. -DPLATFORM=Web -DCMAKE_BUILD_TYPE=Release -DCMAKE_EXE_LINKER_FLAGS="-s USE_GLFW=3" -DCMAKE_EXECUTABLE_SUFFIX=".html" +emcmake cmake .. -DPLATFORM=Web -DCMAKE_BUILD_TYPE=Release -DCMAKE_EXECUTABLE_SUFFIX=".html" emmake make -``` \ No newline at end of file +``` diff --git a/projects/VS2022/examples/models_gpu_skinning.vcxproj b/projects/VS2022/examples/models_gpu_skinning.vcxproj new file mode 100644 index 000000000..bd596bed6 --- /dev/null +++ b/projects/VS2022/examples/models_gpu_skinning.vcxproj @@ -0,0 +1,387 @@ + + + + + Debug.DLL + Win32 + + + Debug.DLL + x64 + + + Debug + Win32 + + + Debug + x64 + + + Release.DLL + Win32 + + + Release.DLL + x64 + + + Release + Win32 + + + Release + x64 + + + + {8245DAD9-D402-4D5C-8F45-32229CD3B263} + Win32Proj + models_loading + 10.0 + models_gpu_skinning + + + + Application + true + $(DefaultPlatformToolset) + Unicode + + + Application + true + $(DefaultPlatformToolset) + Unicode + + + Application + true + $(DefaultPlatformToolset) + Unicode + + + Application + true + $(DefaultPlatformToolset) + Unicode + + + Application + false + $(DefaultPlatformToolset) + true + Unicode + + + Application + false + $(DefaultPlatformToolset) + true + Unicode + + + Application + false + $(DefaultPlatformToolset) + true + Unicode + + + Application + false + $(DefaultPlatformToolset) + true + Unicode + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + true + $(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)\ + $(SolutionDir)\build\$(ProjectName)\obj\$(Platform)\$(Configuration)\ + + + true + $(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)\ + $(SolutionDir)\build\$(ProjectName)\obj\$(Platform)\$(Configuration)\ + + + true + $(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)\ + $(SolutionDir)\build\$(ProjectName)\obj\$(Platform)\$(Configuration)\ + + + true + $(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)\ + $(SolutionDir)\build\$(ProjectName)\obj\$(Platform)\$(Configuration)\ + + + false + $(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)\ + $(SolutionDir)\build\$(ProjectName)\obj\$(Platform)\$(Configuration)\ + + + false + $(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)\ + $(SolutionDir)\build\$(ProjectName)\obj\$(Platform)\$(Configuration)\ + + + false + $(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)\ + $(SolutionDir)\build\$(ProjectName)\obj\$(Platform)\$(Configuration)\ + + + false + $(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)\ + $(SolutionDir)\build\$(ProjectName)\obj\$(Platform)\$(Configuration)\ + + + $(SolutionDir)..\..\examples\models + WindowsLocalDebugger + + + $(SolutionDir)..\..\examples\models + WindowsLocalDebugger + + + $(SolutionDir)..\..\examples\models + WindowsLocalDebugger + + + $(SolutionDir)..\..\examples\models + WindowsLocalDebugger + + + $(SolutionDir)..\..\examples\models + WindowsLocalDebugger + + + $(SolutionDir)..\..\examples\models + WindowsLocalDebugger + + + $(SolutionDir)..\..\examples\models + WindowsLocalDebugger + + + $(SolutionDir)..\..\examples\models + WindowsLocalDebugger + + + + + + Level3 + Disabled + WIN32;_DEBUG;_CONSOLE;PLATFORM_DESKTOP;%(PreprocessorDefinitions) + CompileAsC + $(SolutionDir)..\..\src;%(AdditionalIncludeDirectories) + + + Console + true + $(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\ + raylib.lib;opengl32.lib;kernel32.lib;user32.lib;gdi32.lib;winmm.lib;winspool.lib;comdlg32.lib;advapi32.lib;shell32.lib;ole32.lib;oleaut32.lib;uuid.lib;odbc32.lib;odbccp32.lib;%(AdditionalDependencies) + + + + + + + Level3 + Disabled + WIN32;_DEBUG;_CONSOLE;PLATFORM_DESKTOP;%(PreprocessorDefinitions) + CompileAsC + $(SolutionDir)..\..\src;%(AdditionalIncludeDirectories) + /FS %(AdditionalOptions) + + + Console + true + $(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\ + raylib.lib;opengl32.lib;kernel32.lib;user32.lib;gdi32.lib;winmm.lib;winspool.lib;comdlg32.lib;advapi32.lib;shell32.lib;ole32.lib;oleaut32.lib;uuid.lib;odbc32.lib;odbccp32.lib;%(AdditionalDependencies) + + + + + + + Level3 + Disabled + WIN32;_DEBUG;_CONSOLE;PLATFORM_DESKTOP;%(PreprocessorDefinitions) + CompileAsC + $(SolutionDir)..\..\src;%(AdditionalIncludeDirectories) + + + Console + true + $(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\ + raylib.lib;opengl32.lib;kernel32.lib;user32.lib;gdi32.lib;winmm.lib;winspool.lib;comdlg32.lib;advapi32.lib;shell32.lib;ole32.lib;oleaut32.lib;uuid.lib;odbc32.lib;odbccp32.lib;%(AdditionalDependencies) + + + xcopy /y /d "$(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\raylib.dll" "$(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)" + Copy Debug DLL to output directory + + + + + + + Level3 + Disabled + WIN32;_DEBUG;_CONSOLE;PLATFORM_DESKTOP;%(PreprocessorDefinitions) + CompileAsC + $(SolutionDir)..\..\src;%(AdditionalIncludeDirectories) + + + Console + true + $(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\ + raylib.lib;opengl32.lib;kernel32.lib;user32.lib;gdi32.lib;winmm.lib;winspool.lib;comdlg32.lib;advapi32.lib;shell32.lib;ole32.lib;oleaut32.lib;uuid.lib;odbc32.lib;odbccp32.lib;%(AdditionalDependencies) + + + xcopy /y /d "$(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\raylib.dll" "$(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)" + Copy Debug DLL to output directory + + + + + Level3 + + + MaxSpeed + true + true + WIN32;NDEBUG;_CONSOLE;%(PreprocessorDefinitions);PLATFORM_DESKTOP + $(SolutionDir)..\..\src;%(AdditionalIncludeDirectories) + CompileAsC + true + + + Console + true + true + true + raylib.lib;opengl32.lib;kernel32.lib;user32.lib;gdi32.lib;winmm.lib;winspool.lib;comdlg32.lib;advapi32.lib;shell32.lib;ole32.lib;oleaut32.lib;uuid.lib;odbc32.lib;odbccp32.lib;%(AdditionalDependencies) + $(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\ + + + + + Level3 + + + MaxSpeed + true + true + WIN32;NDEBUG;_CONSOLE;%(PreprocessorDefinitions);PLATFORM_DESKTOP + $(SolutionDir)..\..\src;%(AdditionalIncludeDirectories) + CompileAsC + true + + + Console + true + true + true + raylib.lib;opengl32.lib;kernel32.lib;user32.lib;gdi32.lib;winmm.lib;winspool.lib;comdlg32.lib;advapi32.lib;shell32.lib;ole32.lib;oleaut32.lib;uuid.lib;odbc32.lib;odbccp32.lib;%(AdditionalDependencies) + $(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\ + + + + + Level3 + + + MaxSpeed + true + true + WIN32;NDEBUG;_CONSOLE;%(PreprocessorDefinitions);PLATFORM_DESKTOP + $(SolutionDir)..\..\src;%(AdditionalIncludeDirectories) + CompileAsC + true + + + Console + true + true + true + raylib.lib;opengl32.lib;kernel32.lib;user32.lib;gdi32.lib;winmm.lib;winspool.lib;comdlg32.lib;advapi32.lib;shell32.lib;ole32.lib;oleaut32.lib;uuid.lib;odbc32.lib;odbccp32.lib;%(AdditionalDependencies) + $(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\ + + + xcopy /y /d "$(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\raylib.dll" "$(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)" + + + Copy Release DLL to output directory + + + + + Level3 + + + MaxSpeed + true + true + WIN32;NDEBUG;_CONSOLE;%(PreprocessorDefinitions);PLATFORM_DESKTOP + $(SolutionDir)..\..\src;%(AdditionalIncludeDirectories) + CompileAsC + true + + + Console + true + true + true + raylib.lib;opengl32.lib;kernel32.lib;user32.lib;gdi32.lib;winmm.lib;winspool.lib;comdlg32.lib;advapi32.lib;shell32.lib;ole32.lib;oleaut32.lib;uuid.lib;odbc32.lib;odbccp32.lib;%(AdditionalDependencies) + $(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\ + + + xcopy /y /d "$(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\raylib.dll" "$(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)" + + + Copy Release DLL to output directory + + + + + + + + {e89d61ac-55de-4482-afd4-df7242ebc859} + + + + + + \ No newline at end of file diff --git a/projects/VS2022/examples/shaders_shadowmap.vcxproj b/projects/VS2022/examples/shaders_shadowmap.vcxproj new file mode 100644 index 000000000..d1ec9b23a --- /dev/null +++ b/projects/VS2022/examples/shaders_shadowmap.vcxproj @@ -0,0 +1,387 @@ + + + + + Debug.DLL + Win32 + + + Debug.DLL + x64 + + + Debug + Win32 + + + Debug + x64 + + + Release.DLL + Win32 + + + Release.DLL + x64 + + + Release + Win32 + + + Release + x64 + + + + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629} + Win32Proj + shaders_shadowmap + 10.0 + shaders_shadowmap + + + + Application + true + $(DefaultPlatformToolset) + Unicode + + + Application + true + $(DefaultPlatformToolset) + Unicode + + + Application + true + $(DefaultPlatformToolset) + Unicode + + + Application + true + $(DefaultPlatformToolset) + Unicode + + + Application + false + $(DefaultPlatformToolset) + true + Unicode + + + Application + false + $(DefaultPlatformToolset) + true + Unicode + + + Application + false + $(DefaultPlatformToolset) + true + Unicode + + + Application + false + $(DefaultPlatformToolset) + true + Unicode + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + true + $(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)\ + $(SolutionDir)\build\$(ProjectName)\obj\$(Platform)\$(Configuration)\ + + + true + $(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)\ + $(SolutionDir)\build\$(ProjectName)\obj\$(Platform)\$(Configuration)\ + + + true + $(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)\ + $(SolutionDir)\build\$(ProjectName)\obj\$(Platform)\$(Configuration)\ + + + true + $(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)\ + $(SolutionDir)\build\$(ProjectName)\obj\$(Platform)\$(Configuration)\ + + + false + $(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)\ + $(SolutionDir)\build\$(ProjectName)\obj\$(Platform)\$(Configuration)\ + + + false + $(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)\ + $(SolutionDir)\build\$(ProjectName)\obj\$(Platform)\$(Configuration)\ + + + false + $(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)\ + $(SolutionDir)\build\$(ProjectName)\obj\$(Platform)\$(Configuration)\ + + + false + $(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)\ + $(SolutionDir)\build\$(ProjectName)\obj\$(Platform)\$(Configuration)\ + + + $(SolutionDir)..\..\examples\shaders + WindowsLocalDebugger + + + $(SolutionDir)..\..\examples\shaders + WindowsLocalDebugger + + + $(SolutionDir)..\..\examples\shaders + WindowsLocalDebugger + + + $(SolutionDir)..\..\examples\shaders + WindowsLocalDebugger + + + $(SolutionDir)..\..\examples\shaders + WindowsLocalDebugger + + + $(SolutionDir)..\..\examples\shaders + WindowsLocalDebugger + + + $(SolutionDir)..\..\examples\shaders + WindowsLocalDebugger + + + $(SolutionDir)..\..\examples\shaders + WindowsLocalDebugger + + + + + + Level3 + Disabled + WIN32;_DEBUG;_CONSOLE;PLATFORM_DESKTOP;%(PreprocessorDefinitions) + CompileAsC + $(SolutionDir)..\..\src;%(AdditionalIncludeDirectories) + + + Console + true + $(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\ + raylib.lib;opengl32.lib;kernel32.lib;user32.lib;gdi32.lib;winmm.lib;winspool.lib;comdlg32.lib;advapi32.lib;shell32.lib;ole32.lib;oleaut32.lib;uuid.lib;odbc32.lib;odbccp32.lib;%(AdditionalDependencies) + + + + + + + Level3 + Disabled + WIN32;_DEBUG;_CONSOLE;PLATFORM_DESKTOP;%(PreprocessorDefinitions) + CompileAsC + $(SolutionDir)..\..\src;%(AdditionalIncludeDirectories) + /FS %(AdditionalOptions) + + + Console + true + $(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\ + raylib.lib;opengl32.lib;kernel32.lib;user32.lib;gdi32.lib;winmm.lib;winspool.lib;comdlg32.lib;advapi32.lib;shell32.lib;ole32.lib;oleaut32.lib;uuid.lib;odbc32.lib;odbccp32.lib;%(AdditionalDependencies) + + + + + + + Level3 + Disabled + WIN32;_DEBUG;_CONSOLE;PLATFORM_DESKTOP;%(PreprocessorDefinitions) + CompileAsC + $(SolutionDir)..\..\src;%(AdditionalIncludeDirectories) + + + Console + true + $(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\ + raylib.lib;opengl32.lib;kernel32.lib;user32.lib;gdi32.lib;winmm.lib;winspool.lib;comdlg32.lib;advapi32.lib;shell32.lib;ole32.lib;oleaut32.lib;uuid.lib;odbc32.lib;odbccp32.lib;%(AdditionalDependencies) + + + xcopy /y /d "$(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\raylib.dll" "$(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)" + Copy Debug DLL to output directory + + + + + + + Level3 + Disabled + WIN32;_DEBUG;_CONSOLE;PLATFORM_DESKTOP;%(PreprocessorDefinitions) + CompileAsC + $(SolutionDir)..\..\src;%(AdditionalIncludeDirectories) + + + Console + true + $(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\ + raylib.lib;opengl32.lib;kernel32.lib;user32.lib;gdi32.lib;winmm.lib;winspool.lib;comdlg32.lib;advapi32.lib;shell32.lib;ole32.lib;oleaut32.lib;uuid.lib;odbc32.lib;odbccp32.lib;%(AdditionalDependencies) + + + xcopy /y /d "$(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\raylib.dll" "$(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)" + Copy Debug DLL to output directory + + + + + Level3 + + + MaxSpeed + true + true + WIN32;NDEBUG;_CONSOLE;%(PreprocessorDefinitions);PLATFORM_DESKTOP + $(SolutionDir)..\..\src;%(AdditionalIncludeDirectories) + CompileAsC + true + + + Console + true + true + true + raylib.lib;opengl32.lib;kernel32.lib;user32.lib;gdi32.lib;winmm.lib;winspool.lib;comdlg32.lib;advapi32.lib;shell32.lib;ole32.lib;oleaut32.lib;uuid.lib;odbc32.lib;odbccp32.lib;%(AdditionalDependencies) + $(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\ + + + + + Level3 + + + MaxSpeed + true + true + WIN32;NDEBUG;_CONSOLE;%(PreprocessorDefinitions);PLATFORM_DESKTOP + $(SolutionDir)..\..\src;%(AdditionalIncludeDirectories) + CompileAsC + true + + + Console + true + true + true + raylib.lib;opengl32.lib;kernel32.lib;user32.lib;gdi32.lib;winmm.lib;winspool.lib;comdlg32.lib;advapi32.lib;shell32.lib;ole32.lib;oleaut32.lib;uuid.lib;odbc32.lib;odbccp32.lib;%(AdditionalDependencies) + $(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\ + + + + + Level3 + + + MaxSpeed + true + true + WIN32;NDEBUG;_CONSOLE;%(PreprocessorDefinitions);PLATFORM_DESKTOP + $(SolutionDir)..\..\src;%(AdditionalIncludeDirectories) + CompileAsC + true + + + Console + true + true + true + raylib.lib;opengl32.lib;kernel32.lib;user32.lib;gdi32.lib;winmm.lib;winspool.lib;comdlg32.lib;advapi32.lib;shell32.lib;ole32.lib;oleaut32.lib;uuid.lib;odbc32.lib;odbccp32.lib;%(AdditionalDependencies) + $(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\ + + + xcopy /y /d "$(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\raylib.dll" "$(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)" + + + Copy Release DLL to output directory + + + + + Level3 + + + MaxSpeed + true + true + WIN32;NDEBUG;_CONSOLE;%(PreprocessorDefinitions);PLATFORM_DESKTOP + $(SolutionDir)..\..\src;%(AdditionalIncludeDirectories) + CompileAsC + true + + + Console + true + true + true + raylib.lib;opengl32.lib;kernel32.lib;user32.lib;gdi32.lib;winmm.lib;winspool.lib;comdlg32.lib;advapi32.lib;shell32.lib;ole32.lib;oleaut32.lib;uuid.lib;odbc32.lib;odbccp32.lib;%(AdditionalDependencies) + $(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\ + + + xcopy /y /d "$(SolutionDir)\build\raylib\bin\$(Platform)\$(Configuration)\raylib.dll" "$(SolutionDir)\build\$(ProjectName)\bin\$(Platform)\$(Configuration)" + + + Copy Release DLL to output directory + + + + + + + + {e89d61ac-55de-4482-afd4-df7242ebc859} + + + + + + \ No newline at end of file diff --git a/projects/VS2022/raylib.sln b/projects/VS2022/raylib.sln index 294d0e84d..acda9e25a 100644 --- a/projects/VS2022/raylib.sln +++ b/projects/VS2022/raylib.sln @@ -293,12 +293,16 @@ Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "shaders_texture_outline", " EndProject Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "shaders_texture_tiling", "examples\shaders_texture_tiling.vcxproj", "{EFA150D4-F93B-4D7D-A69C-9E8B4663BECD}" EndProject -Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "textures_svg_loading", "examples\textures_svg_loading.vcxproj", "{D8026C60-CCBC-45DF-9085-BF21569EB414}" -EndProject Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "shapes_splines_drawing", "examples\shapes_splines_drawing.vcxproj", "{DF25E545-00FF-4E64-844C-7DF98991F901}" EndProject Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "shapes_top_down_lights", "examples\shapes_top_down_lights.vcxproj", "{703BE7BA-5B99-4F70-806D-3A259F6A991E}" EndProject +Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "models_gpu_skinning", "examples\models_gpu_skinning.vcxproj", "{8245DAD9-D402-4D5C-8F45-32229CD3B263}" +EndProject +Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "shaders_shadowmap", "examples\shaders_shadowmap.vcxproj", "{41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}" +EndProject +Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "core_input_virtual_controls", "examples\core_input_virtual_controls.vcxproj", "{92B64AE7-D773-6F03-89F1-CE59BBF4F053}" +EndProject Global GlobalSection(SolutionConfigurationPlatforms) = preSolution Debug.DLL|x64 = Debug.DLL|x64 @@ -2483,22 +2487,6 @@ Global {EFA150D4-F93B-4D7D-A69C-9E8B4663BECD}.Release|x64.Build.0 = Release|x64 {EFA150D4-F93B-4D7D-A69C-9E8B4663BECD}.Release|x86.ActiveCfg = Release|Win32 {EFA150D4-F93B-4D7D-A69C-9E8B4663BECD}.Release|x86.Build.0 = Release|Win32 - {D8026C60-CCBC-45DF-9085-BF21569EB414}.Debug.DLL|x64.ActiveCfg = Debug.DLL|x64 - {D8026C60-CCBC-45DF-9085-BF21569EB414}.Debug.DLL|x64.Build.0 = Debug.DLL|x64 - {D8026C60-CCBC-45DF-9085-BF21569EB414}.Debug.DLL|x86.ActiveCfg = Debug.DLL|Win32 - {D8026C60-CCBC-45DF-9085-BF21569EB414}.Debug.DLL|x86.Build.0 = Debug.DLL|Win32 - {D8026C60-CCBC-45DF-9085-BF21569EB414}.Debug|x64.ActiveCfg = Debug|x64 - {D8026C60-CCBC-45DF-9085-BF21569EB414}.Debug|x64.Build.0 = Debug|x64 - {D8026C60-CCBC-45DF-9085-BF21569EB414}.Debug|x86.ActiveCfg = Debug|Win32 - {D8026C60-CCBC-45DF-9085-BF21569EB414}.Debug|x86.Build.0 = Debug|Win32 - {D8026C60-CCBC-45DF-9085-BF21569EB414}.Release.DLL|x64.ActiveCfg = Release.DLL|x64 - {D8026C60-CCBC-45DF-9085-BF21569EB414}.Release.DLL|x64.Build.0 = Release.DLL|x64 - {D8026C60-CCBC-45DF-9085-BF21569EB414}.Release.DLL|x86.ActiveCfg = Release.DLL|Win32 - {D8026C60-CCBC-45DF-9085-BF21569EB414}.Release.DLL|x86.Build.0 = Release.DLL|Win32 - {D8026C60-CCBC-45DF-9085-BF21569EB414}.Release|x64.ActiveCfg = Release|x64 - {D8026C60-CCBC-45DF-9085-BF21569EB414}.Release|x64.Build.0 = Release|x64 - {D8026C60-CCBC-45DF-9085-BF21569EB414}.Release|x86.ActiveCfg = Release|Win32 - {D8026C60-CCBC-45DF-9085-BF21569EB414}.Release|x86.Build.0 = Release|Win32 {DF25E545-00FF-4E64-844C-7DF98991F901}.Debug.DLL|x64.ActiveCfg = Debug.DLL|x64 {DF25E545-00FF-4E64-844C-7DF98991F901}.Debug.DLL|x64.Build.0 = Debug.DLL|x64 {DF25E545-00FF-4E64-844C-7DF98991F901}.Debug.DLL|x86.ActiveCfg = Debug.DLL|Win32 @@ -2531,6 +2519,54 @@ Global {703BE7BA-5B99-4F70-806D-3A259F6A991E}.Release|x64.Build.0 = Release|x64 {703BE7BA-5B99-4F70-806D-3A259F6A991E}.Release|x86.ActiveCfg = Release|Win32 {703BE7BA-5B99-4F70-806D-3A259F6A991E}.Release|x86.Build.0 = Release|Win32 + {8245DAD9-D402-4D5C-8F45-32229CD3B263}.Debug.DLL|x64.ActiveCfg = Debug.DLL|x64 + {8245DAD9-D402-4D5C-8F45-32229CD3B263}.Debug.DLL|x64.Build.0 = Debug.DLL|x64 + {8245DAD9-D402-4D5C-8F45-32229CD3B263}.Debug.DLL|x86.ActiveCfg = Debug.DLL|Win32 + {8245DAD9-D402-4D5C-8F45-32229CD3B263}.Debug.DLL|x86.Build.0 = Debug.DLL|Win32 + {8245DAD9-D402-4D5C-8F45-32229CD3B263}.Debug|x64.ActiveCfg = Debug|x64 + {8245DAD9-D402-4D5C-8F45-32229CD3B263}.Debug|x64.Build.0 = Debug|x64 + {8245DAD9-D402-4D5C-8F45-32229CD3B263}.Debug|x86.ActiveCfg = Debug|Win32 + {8245DAD9-D402-4D5C-8F45-32229CD3B263}.Debug|x86.Build.0 = Debug|Win32 + {8245DAD9-D402-4D5C-8F45-32229CD3B263}.Release.DLL|x64.ActiveCfg = Release.DLL|x64 + {8245DAD9-D402-4D5C-8F45-32229CD3B263}.Release.DLL|x64.Build.0 = Release.DLL|x64 + {8245DAD9-D402-4D5C-8F45-32229CD3B263}.Release.DLL|x86.ActiveCfg = Release.DLL|Win32 + {8245DAD9-D402-4D5C-8F45-32229CD3B263}.Release.DLL|x86.Build.0 = Release.DLL|Win32 + {8245DAD9-D402-4D5C-8F45-32229CD3B263}.Release|x64.ActiveCfg = Release|x64 + {8245DAD9-D402-4D5C-8F45-32229CD3B263}.Release|x64.Build.0 = Release|x64 + {8245DAD9-D402-4D5C-8F45-32229CD3B263}.Release|x86.ActiveCfg = Release|Win32 + {8245DAD9-D402-4D5C-8F45-32229CD3B263}.Release|x86.Build.0 = Release|Win32 + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}.Debug.DLL|x64.ActiveCfg = Debug.DLL|x64 + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}.Debug.DLL|x64.Build.0 = Debug.DLL|x64 + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}.Debug.DLL|x86.ActiveCfg = Debug.DLL|Win32 + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}.Debug.DLL|x86.Build.0 = Debug.DLL|Win32 + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}.Debug|x64.ActiveCfg = Debug|x64 + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}.Debug|x64.Build.0 = Debug|x64 + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}.Debug|x86.ActiveCfg = Debug|Win32 + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}.Debug|x86.Build.0 = Debug|Win32 + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}.Release.DLL|x64.ActiveCfg = Release.DLL|x64 + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}.Release.DLL|x64.Build.0 = Release.DLL|x64 + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}.Release.DLL|x86.ActiveCfg = Release.DLL|Win32 + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}.Release.DLL|x86.Build.0 = Release.DLL|Win32 + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}.Release|x64.ActiveCfg = Release|x64 + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}.Release|x64.Build.0 = Release|x64 + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}.Release|x86.ActiveCfg = Release|Win32 + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629}.Release|x86.Build.0 = Release|Win32 + {92B64AE7-D773-6F03-89F1-CE59BBF4F053}.Debug.DLL|x64.ActiveCfg = Debug.DLL|x64 + {92B64AE7-D773-6F03-89F1-CE59BBF4F053}.Debug.DLL|x64.Build.0 = Debug.DLL|x64 + {92B64AE7-D773-6F03-89F1-CE59BBF4F053}.Debug.DLL|x86.ActiveCfg = Debug.DLL|Win32 + {92B64AE7-D773-6F03-89F1-CE59BBF4F053}.Debug.DLL|x86.Build.0 = Debug.DLL|Win32 + {92B64AE7-D773-6F03-89F1-CE59BBF4F053}.Debug|x64.ActiveCfg = Debug|x64 + {92B64AE7-D773-6F03-89F1-CE59BBF4F053}.Debug|x64.Build.0 = Debug|x64 + {92B64AE7-D773-6F03-89F1-CE59BBF4F053}.Debug|x86.ActiveCfg = Debug|Win32 + {92B64AE7-D773-6F03-89F1-CE59BBF4F053}.Debug|x86.Build.0 = Debug|Win32 + {92B64AE7-D773-6F03-89F1-CE59BBF4F053}.Release.DLL|x64.ActiveCfg = Release.DLL|x64 + {92B64AE7-D773-6F03-89F1-CE59BBF4F053}.Release.DLL|x64.Build.0 = Release.DLL|x64 + {92B64AE7-D773-6F03-89F1-CE59BBF4F053}.Release.DLL|x86.ActiveCfg = Release.DLL|Win32 + {92B64AE7-D773-6F03-89F1-CE59BBF4F053}.Release.DLL|x86.Build.0 = Release.DLL|Win32 + {92B64AE7-D773-6F03-89F1-CE59BBF4F053}.Release|x64.ActiveCfg = Release|x64 + {92B64AE7-D773-6F03-89F1-CE59BBF4F053}.Release|x64.Build.0 = Release|x64 + {92B64AE7-D773-6F03-89F1-CE59BBF4F053}.Release|x86.ActiveCfg = Release|Win32 + {92B64AE7-D773-6F03-89F1-CE59BBF4F053}.Release|x86.Build.0 = Release|Win32 EndGlobalSection GlobalSection(SolutionProperties) = preSolution HideSolutionNode = FALSE @@ -2679,9 +2715,11 @@ Global {88DE5AD6-0074-4A5A-BE22-C840153E35D5} = {5317807F-61D4-4E0F-B6DC-2D9F12621ED9} {A546E75A-5242-46E6-9A9E-6C91554EAB84} = {5317807F-61D4-4E0F-B6DC-2D9F12621ED9} {EFA150D4-F93B-4D7D-A69C-9E8B4663BECD} = {5317807F-61D4-4E0F-B6DC-2D9F12621ED9} - {D8026C60-CCBC-45DF-9085-BF21569EB414} = {DA049009-21FF-4AC0-84E4-830DD1BCD0CE} {DF25E545-00FF-4E64-844C-7DF98991F901} = {278D8859-20B1-428F-8448-064F46E1F021} {703BE7BA-5B99-4F70-806D-3A259F6A991E} = {278D8859-20B1-428F-8448-064F46E1F021} + {8245DAD9-D402-4D5C-8F45-32229CD3B263} = {AF5BEC5C-1F2B-4DA8-B12D-D09FE569237C} + {41BBCC10-6FDE-48A1-B2E0-A0EC6A668629} = {5317807F-61D4-4E0F-B6DC-2D9F12621ED9} + {92B64AE7-D773-6F03-89F1-CE59BBF4F053} = {6C82BAAE-BDDF-457D-8FA8-7E2490B07035} EndGlobalSection GlobalSection(ExtensibilityGlobals) = postSolution SolutionGuid = {E926C768-6307-4423-A1EC-57E95B1FAB29} diff --git a/projects/VSCode/Makefile b/projects/VSCode/Makefile index 2f43c9ead..65a6f9544 100644 --- a/projects/VSCode/Makefile +++ b/projects/VSCode/Makefile @@ -120,8 +120,8 @@ ifeq ($(PLATFORM),PLATFORM_WEB) EMSDK_PATH ?= C:/emsdk EMSCRIPTEN_PATH ?= $(EMSDK_PATH)/upstream/emscripten CLANG_PATH = $(EMSDK_PATH)/upstream/bin - PYTHON_PATH = $(EMSDK_PATH)/python/3.9.2-1_64bit - NODE_PATH = $(EMSDK_PATH)/node/14.18.2_64bit/bin + PYTHON_PATH = $(EMSDK_PATH)/python/3.9.2-nuget_64bit + NODE_PATH = $(EMSDK_PATH)/node/20.18.0_64bit/bin export PATH = $(EMSDK_PATH);$(EMSCRIPTEN_PATH);$(CLANG_PATH);$(NODE_PATH);$(PYTHON_PATH):$$(PATH) endif @@ -352,9 +352,9 @@ SRC_DIR = src OBJ_DIR = obj # Define all object files from source files -SRC = $(call rwildcard, *.c, *.h) +SRC = $(call rwildcard, ./, *.c, *.h) #OBJS = $(SRC:$(SRC_DIR)/%.c=$(OBJ_DIR)/%.o) -OBJS ?= main.c +OBJS = $(patsubst %.c,%.o,$(filter %.c,$(SRC))) # For Android platform we call a custom Makefile.Android ifeq ($(PLATFORM),PLATFORM_ANDROID) diff --git a/src/Makefile b/src/Makefile index 4740f1f01..1f0b730c6 100644 --- a/src/Makefile +++ b/src/Makefile @@ -109,8 +109,9 @@ RAYLIB_MODULE_RAYGUI_PATH ?= $(RAYLIB_SRC_PATH)/../../raygui/src # Use external GLFW library instead of rglfw module USE_EXTERNAL_GLFW ?= FALSE -# Enable support for both Wayland and X11 by default on Linux when using GLFW -GLFW_LINUX_ENABLE_WAYLAND ?= TRUE +# Enable support for X11 by default on Linux when using GLFW +# NOTE: Wayland is disabled by default, only enable if you are sure +GLFW_LINUX_ENABLE_WAYLAND ?= FALSE GLFW_LINUX_ENABLE_X11 ?= TRUE # PLATFORM_DESKTOP_SDL: It requires SDL library to be provided externally @@ -183,8 +184,8 @@ ifeq ($(TARGET_PLATFORM),PLATFORM_WEB) EMSDK_PATH ?= C:/emsdk EMSCRIPTEN_PATH ?= $(EMSDK_PATH)/upstream/emscripten CLANG_PATH := $(EMSDK_PATH)/upstream/bin - PYTHON_PATH := $(EMSDK_PATH)/python/3.9.2-1_64bit - NODE_PATH := $(EMSDK_PATH)/node/14.15.5_64bit/bin + PYTHON_PATH := $(EMSDK_PATH)/python/3.9.2-nuget_64bit + NODE_PATH := $(EMSDK_PATH)/node/20.18.0_64bit/bin export PATH := $(EMSDK_PATH);$(EMSCRIPTEN_PATH);$(CLANG_PATH);$(NODE_PATH);$(PYTHON_PATH);C:/raylib/MinGW/bin;$(PATH) endif endif @@ -229,8 +230,8 @@ ifeq ($(TARGET_PLATFORM),PLATFORM_ANDROID) endif # Define raylib graphics api depending on selected platform +# NOTE: By default use OpenGL 3.3 on desktop platforms ifeq ($(TARGET_PLATFORM),PLATFORM_DESKTOP_GLFW) - # By default use OpenGL 3.3 on desktop platforms GRAPHICS ?= GRAPHICS_API_OPENGL_33 #GRAPHICS = GRAPHICS_API_OPENGL_11 # Uncomment to use OpenGL 1.1 #GRAPHICS = GRAPHICS_API_OPENGL_21 # Uncomment to use OpenGL 2.1 @@ -238,11 +239,9 @@ ifeq ($(TARGET_PLATFORM),PLATFORM_DESKTOP_GLFW) #GRAPHICS = GRAPHICS_API_OPENGL_ES2 # Uncomment to use OpenGL ES 2.0 (ANGLE) endif ifeq ($(TARGET_PLATFORM),PLATFORM_DESKTOP_SDL) - # By default use OpenGL 3.3 on desktop platform with SDL backend GRAPHICS ?= GRAPHICS_API_OPENGL_33 endif ifeq ($(TARGET_PLATFORM),PLATFORM_DESKTOP_RGFW) - # By default use OpenGL 3.3 on desktop platforms GRAPHICS ?= GRAPHICS_API_OPENGL_33 #GRAPHICS = GRAPHICS_API_OPENGL_11 # Uncomment to use OpenGL 1.1 #GRAPHICS = GRAPHICS_API_OPENGL_21 # Uncomment to use OpenGL 2.1 @@ -256,7 +255,7 @@ endif ifeq ($(TARGET_PLATFORM),PLATFORM_WEB) # On HTML5 OpenGL ES 2.0 is used, emscripten translates it to WebGL 1.0 GRAPHICS = GRAPHICS_API_OPENGL_ES2 - #GRAPHICS = GRAPHICS_API_OPENGL_ES3 # Uncomment to use ES3/WebGL2 (preliminary support). + #GRAPHICS = GRAPHICS_API_OPENGL_ES3 endif ifeq ($(TARGET_PLATFORM),PLATFORM_ANDROID) # By default use OpenGL ES 2.0 on Android diff --git a/src/build.zig b/src/build.zig deleted file mode 100644 index 2c9519a0e..000000000 --- a/src/build.zig +++ /dev/null @@ -1,371 +0,0 @@ -const std = @import("std"); -const builtin = @import("builtin"); - -comptime { - if (builtin.zig_version.minor < 12) @compileError("Raylib requires zig version 0.12.0"); -} - -// NOTE(freakmangd): I don't like using a global here, but it prevents having to -// get the flags a second time when adding raygui -var raylib_flags_arr: std.ArrayListUnmanaged([]const u8) = .{}; - -/// we're not inside the actual build script recognized by the -/// zig build system; use this type where one would otherwise -/// use `@This()` when inside the actual entrypoint file. -const BuildScript = @import("../build.zig"); - -// This has been tested with zig version 0.12.0 -pub fn addRaylib(b: *std.Build, target: std.Build.ResolvedTarget, optimize: std.builtin.OptimizeMode, options: Options) !*std.Build.Step.Compile { - const raylib_dep = b.dependencyFromBuildZig(BuildScript, .{ - .target = target, - .optimize = optimize, - .raudio = options.raudio, - .rmodels = options.rmodels, - .rshapes = options.rshapes, - .rtext = options.rtext, - .rtextures = options.rtextures, - .platform_drm = options.platform_drm, - .shared = options.shared, - .linux_display_backend = options.linux_display_backend, - .opengl_version = options.opengl_version, - .config = options.config, - }); - const raylib = raylib_dep.artifact("raylib"); - - if (options.raygui) { - const raygui_dep = b.dependency(options.raygui_dependency_name, .{}); - addRaygui(b, raylib, raygui_dep); - } - - return raylib; -} - -fn compileRaylib(b: *std.Build, target: std.Build.ResolvedTarget, optimize: std.builtin.OptimizeMode, options: Options) !*std.Build.Step.Compile { - raylib_flags_arr.clearRetainingCapacity(); - - const shared_flags = &[_][]const u8{ - "-fPIC", - "-DBUILD_LIBTYPE_SHARED", - }; - try raylib_flags_arr.appendSlice(b.allocator, &[_][]const u8{ - "-std=gnu99", - "-D_GNU_SOURCE", - "-DGL_SILENCE_DEPRECATION=199309L", - "-fno-sanitize=undefined", // https://github.com/raysan5/raylib/issues/3674 - }); - if (options.config) |config| { - const file = try std.fs.path.join(b.allocator, &.{ std.fs.path.dirname(@src().file) orelse ".", "config.h" }); - defer b.allocator.free(file); - const content = try std.fs.cwd().readFileAlloc(b.allocator, file, std.math.maxInt(usize)); - defer b.allocator.free(content); - - var lines = std.mem.split(u8, content, "\n"); - while (lines.next()) |line| { - if (!std.mem.containsAtLeast(u8, line, 1, "SUPPORT")) continue; - if (std.mem.startsWith(u8, line, "//")) continue; - - var flag = std.mem.trimLeft(u8, line, " \t"); // Trim whitespace - flag = flag["#define ".len - 1 ..]; // Remove #define - flag = std.mem.trimLeft(u8, flag, " \t"); // Trim whitespace - flag = flag[0..std.mem.indexOf(u8, flag, " ").?]; // Flag is only one word, so capture till space - flag = try std.fmt.allocPrint(b.allocator, "-D{s}", .{flag}); // Prepend with -D - - // If user specifies the flag skip it - if (std.mem.containsAtLeast(u8, config, 1, flag)) continue; - - // Append default value from config.h to compile flags - try raylib_flags_arr.append(b.allocator, flag); - } - - // Append config flags supplied by user to compile flags - try raylib_flags_arr.append(b.allocator, config); - - try raylib_flags_arr.append(b.allocator, "-DEXTERNAL_CONFIG_FLAGS"); - } - - if (options.shared) { - try raylib_flags_arr.appendSlice(b.allocator, shared_flags); - } - - const raylib = if (options.shared) - b.addSharedLibrary(.{ - .name = "raylib", - .target = target, - .optimize = optimize, - }) - else - b.addStaticLibrary(.{ - .name = "raylib", - .target = target, - .optimize = optimize, - }); - raylib.linkLibC(); - - // No GLFW required on PLATFORM_DRM - if (!options.platform_drm) { - raylib.addIncludePath(b.path("src/external/glfw/include")); - } - - var c_source_files = try std.ArrayList([]const u8).initCapacity(b.allocator, 2); - c_source_files.appendSliceAssumeCapacity(&.{ "rcore.c", "utils.c" }); - - if (options.raudio) { - try c_source_files.append("raudio.c"); - } - if (options.rmodels) { - try c_source_files.append("rmodels.c"); - } - if (options.rshapes) { - try c_source_files.append("rshapes.c"); - } - if (options.rtext) { - try c_source_files.append("rtext.c"); - } - if (options.rtextures) { - try c_source_files.append("rtextures.c"); - } - - if (options.opengl_version != .auto) { - raylib.defineCMacro(options.opengl_version.toCMacroStr(), null); - } - - switch (target.result.os.tag) { - .windows => { - try c_source_files.append("rglfw.c"); - raylib.linkSystemLibrary("winmm"); - raylib.linkSystemLibrary("gdi32"); - raylib.linkSystemLibrary("opengl32"); - - raylib.defineCMacro("PLATFORM_DESKTOP", null); - }, - .linux => { - if (!options.platform_drm) { - try c_source_files.append("rglfw.c"); - raylib.linkSystemLibrary("GL"); - raylib.linkSystemLibrary("rt"); - raylib.linkSystemLibrary("dl"); - raylib.linkSystemLibrary("m"); - - raylib.addLibraryPath(.{ .cwd_relative = "/usr/lib" }); - raylib.addIncludePath(.{ .cwd_relative = "/usr/include" }); - if (options.linux_display_backend == .X11 or options.linux_display_backend == .Both) { - - raylib.defineCMacro("_GLFW_X11", null); - raylib.linkSystemLibrary("X11"); - } - - if (options.linux_display_backend == .Wayland or options.linux_display_backend == .Both) { - raylib.defineCMacro("_GLFW_WAYLAND", null); - raylib.linkSystemLibrary("wayland-client"); - raylib.linkSystemLibrary("wayland-cursor"); - raylib.linkSystemLibrary("wayland-egl"); - raylib.linkSystemLibrary("xkbcommon"); - raylib.addIncludePath(b.path("src")); - waylandGenerate(b, raylib, "wayland.xml", "wayland-client-protocol"); - waylandGenerate(b, raylib, "xdg-shell.xml", "xdg-shell-client-protocol"); - waylandGenerate(b, raylib, "xdg-decoration-unstable-v1.xml", "xdg-decoration-unstable-v1-client-protocol"); - waylandGenerate(b, raylib, "viewporter.xml", "viewporter-client-protocol"); - waylandGenerate(b, raylib, "relative-pointer-unstable-v1.xml", "relative-pointer-unstable-v1-client-protocol"); - waylandGenerate(b, raylib, "pointer-constraints-unstable-v1.xml", "pointer-constraints-unstable-v1-client-protocol"); - waylandGenerate(b, raylib, "fractional-scale-v1.xml", "fractional-scale-v1-client-protocol"); - waylandGenerate(b, raylib, "xdg-activation-v1.xml", "xdg-activation-v1-client-protocol"); - waylandGenerate(b, raylib, "idle-inhibit-unstable-v1.xml", "idle-inhibit-unstable-v1-client-protocol"); - } - raylib.defineCMacro("PLATFORM_DESKTOP", null); - } else { - if (options.opengl_version == .auto) { - raylib.linkSystemLibrary("GLESv2"); - raylib.defineCMacro("GRAPHICS_API_OPENGL_ES2", null); - } - - raylib.linkSystemLibrary("EGL"); - raylib.linkSystemLibrary("drm"); - raylib.linkSystemLibrary("gbm"); - raylib.linkSystemLibrary("pthread"); - raylib.linkSystemLibrary("rt"); - raylib.linkSystemLibrary("m"); - raylib.linkSystemLibrary("dl"); - raylib.addIncludePath(.{ .cwd_relative = "/usr/include/libdrm" }); - - raylib.defineCMacro("PLATFORM_DRM", null); - raylib.defineCMacro("EGL_NO_X11", null); - raylib.defineCMacro("DEFAULT_BATCH_BUFFER_ELEMENT", "2048"); - } - }, - .freebsd, .openbsd, .netbsd, .dragonfly => { - try c_source_files.append("rglfw.c"); - raylib.linkSystemLibrary("GL"); - raylib.linkSystemLibrary("rt"); - raylib.linkSystemLibrary("dl"); - raylib.linkSystemLibrary("m"); - raylib.linkSystemLibrary("X11"); - raylib.linkSystemLibrary("Xrandr"); - raylib.linkSystemLibrary("Xinerama"); - raylib.linkSystemLibrary("Xi"); - raylib.linkSystemLibrary("Xxf86vm"); - raylib.linkSystemLibrary("Xcursor"); - - raylib.defineCMacro("PLATFORM_DESKTOP", null); - }, - .macos => { - // On macos rglfw.c include Objective-C files. - try raylib_flags_arr.append(b.allocator, "-ObjC"); - raylib.root_module.addCSourceFile(.{ - .file = b.path("src/rglfw.c"), - .flags = raylib_flags_arr.items, - }); - _ = raylib_flags_arr.pop(); - raylib.linkFramework("Foundation"); - raylib.linkFramework("CoreServices"); - raylib.linkFramework("CoreGraphics"); - raylib.linkFramework("AppKit"); - raylib.linkFramework("IOKit"); - - raylib.defineCMacro("PLATFORM_DESKTOP", null); - }, - .emscripten => { - raylib.defineCMacro("PLATFORM_WEB", null); - if (options.opengl_version == .auto) { - raylib.defineCMacro("GRAPHICS_API_OPENGL_ES2", null); - } - - if (b.sysroot == null) { - @panic("Pass '--sysroot \"$EMSDK/upstream/emscripten\"'"); - } - - const cache_include = std.fs.path.join(b.allocator, &.{ b.sysroot.?, "cache", "sysroot", "include" }) catch @panic("Out of memory"); - defer b.allocator.free(cache_include); - - var dir = std.fs.openDirAbsolute(cache_include, std.fs.Dir.OpenDirOptions{ .access_sub_paths = true, .no_follow = true }) catch @panic("No emscripten cache. Generate it!"); - dir.close(); - raylib.addIncludePath(.{ .cwd_relative = cache_include }); - }, - else => { - @panic("Unsupported OS"); - }, - } - - raylib.addIncludePath(b.path("src")); - raylib.root_module.addCSourceFiles(.{ - .root = b.path("src"), - .files = c_source_files.items, - .flags = raylib_flags_arr.items, - }); - - return raylib; -} - -/// This function does not need to be called if you passed .raygui = true to addRaylib -pub fn addRaygui(b: *std.Build, raylib: *std.Build.Step.Compile, raygui_dep: *std.Build.Dependency) void { - if (raylib_flags_arr.items.len == 0) { - @panic( - \\argument 2 `raylib` in `addRaygui` must come from b.dependency("raylib", ...).artifact("raylib") - ); - } - - var gen_step = b.addWriteFiles(); - raylib.step.dependOn(&gen_step.step); - - const raygui_c_path = gen_step.add("raygui.c", "#define RAYGUI_IMPLEMENTATION\n#include \"raygui.h\"\n"); - raylib.addCSourceFile(.{ .file = raygui_c_path, .flags = raylib_flags_arr.items }); - raylib.addIncludePath(raygui_dep.path("src")); - - raylib.installHeader(raygui_dep.path("src/raygui.h"), "raygui.h"); -} - -pub const Options = struct { - raudio: bool = true, - rmodels: bool = true, - rshapes: bool = true, - rtext: bool = true, - rtextures: bool = true, - raygui: bool = false, - platform_drm: bool = false, - shared: bool = false, - linux_display_backend: LinuxDisplayBackend = .Both, - opengl_version: OpenglVersion = .auto, - config: ?[]const u8 = null, - - raygui_dependency_name: []const u8 = "raygui", -}; - -pub const OpenglVersion = enum { - auto, - gl_1_1, - gl_2_1, - gl_3_3, - gl_4_3, - gles_2, - gles_3, - - pub fn toCMacroStr(self: @This()) []const u8 { - switch (self) { - .auto => @panic("OpenglVersion.auto cannot be turned into a C macro string"), - .gl_1_1 => return "GRAPHICS_API_OPENGL_11", - .gl_2_1 => return "GRAPHICS_API_OPENGL_21", - .gl_3_3 => return "GRAPHICS_API_OPENGL_33", - .gl_4_3 => return "GRAPHICS_API_OPENGL_43", - .gles_2 => return "GRAPHICS_API_OPENGL_ES2", - .gles_3 => return "GRAPHICS_API_OPENGL_ES3", - } - } -}; - -pub const LinuxDisplayBackend = enum { - X11, - Wayland, - Both, -}; - -pub fn build(b: *std.Build) !void { - // Standard target options allows the person running `zig build` to choose - // what target to build for. Here we do not override the defaults, which - // means any target is allowed, and the default is native. Other options - // for restricting supported target set are available. - const target = b.standardTargetOptions(.{}); - // Standard optimization options allow the person running `zig build` to select - // between Debug, ReleaseSafe, ReleaseFast, and ReleaseSmall. Here we do not - // set a preferred release mode, allowing the user to decide how to optimize. - const optimize = b.standardOptimizeOption(.{}); - - const defaults = Options{}; - const options = Options{ - .platform_drm = b.option(bool, "platform_drm", "Compile raylib in native mode (no X11)") orelse defaults.platform_drm, - .raudio = b.option(bool, "raudio", "Compile with audio support") orelse defaults.raudio, - .rmodels = b.option(bool, "rmodels", "Compile with models support") orelse defaults.rmodels, - .rtext = b.option(bool, "rtext", "Compile with text support") orelse defaults.rtext, - .rtextures = b.option(bool, "rtextures", "Compile with textures support") orelse defaults.rtextures, - .rshapes = b.option(bool, "rshapes", "Compile with shapes support") orelse defaults.rshapes, - .shared = b.option(bool, "shared", "Compile as shared library") orelse defaults.shared, - .linux_display_backend = b.option(LinuxDisplayBackend, "linux_display_backend", "Linux display backend to use") orelse defaults.linux_display_backend, - .opengl_version = b.option(OpenglVersion, "opengl_version", "OpenGL version to use") orelse defaults.opengl_version, - .config = b.option([]const u8, "config", "Compile with custom define macros overriding config.h") orelse null, - }; - - const lib = try compileRaylib(b, target, optimize, options); - - lib.installHeader(b.path("src/raylib.h"), "raylib.h"); - lib.installHeader(b.path("src/raymath.h"), "raymath.h"); - lib.installHeader(b.path("src/rlgl.h"), "rlgl.h"); - - b.installArtifact(lib); -} - -const waylandDir = "src/external/glfw/deps/wayland"; - -fn waylandGenerate(b: *std.Build, raylib: *std.Build.Step.Compile, comptime protocol: []const u8, comptime basename: []const u8) void { - const protocolDir = waylandDir ++ "/" ++ protocol; - const clientHeader = basename ++ ".h"; - const privateCode = basename ++ "-code.h"; - - const client_step = b.addSystemCommand(&.{ "wayland-scanner", "client-header" }); - client_step.addFileArg(b.path(protocolDir)); - raylib.addIncludePath(client_step.addOutputFileArg(clientHeader).dirname()); - - const private_step = b.addSystemCommand(&.{ "wayland-scanner", "private-code" }); - private_step.addFileArg(b.path(protocolDir)); - raylib.addIncludePath(private_step.addOutputFileArg(privateCode).dirname()); - - raylib.step.dependOn(&client_step.step); - raylib.step.dependOn(&private_step.step); -} diff --git a/src/config.h b/src/config.h index c54583e74..f37a9de3e 100644 --- a/src/config.h +++ b/src/config.h @@ -100,6 +100,8 @@ // Show OpenGL extensions and capabilities detailed logs on init //#define RLGL_SHOW_GL_DETAILS_INFO 1 +#define RL_SUPPORT_MESH_GPU_SKINNING 1 // GPU skinning, comment if your GPU does not support more than 8 VBOs + //#define RL_DEFAULT_BATCH_BUFFER_ELEMENTS 4096 // Default internal render batch elements limits #define RL_DEFAULT_BATCH_BUFFERS 1 // Default number of batch buffers (multi-buffering) #define RL_DEFAULT_BATCH_DRAWCALLS 256 // Default number of batch draw calls (by state changes: mode, texture) @@ -113,12 +115,17 @@ #define RL_CULL_DISTANCE_FAR 1000.0 // Default projection matrix far cull distance // Default shader vertex attribute locations -#define RL_DEFAULT_SHADER_ATTRIB_LOCATION_POSITION 0 -#define RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD 1 -#define RL_DEFAULT_SHADER_ATTRIB_LOCATION_NORMAL 2 -#define RL_DEFAULT_SHADER_ATTRIB_LOCATION_COLOR 3 -#define RL_DEFAULT_SHADER_ATTRIB_LOCATION_TANGENT 4 -#define RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD2 5 +#define RL_DEFAULT_SHADER_ATTRIB_LOCATION_POSITION 0 +#define RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD 1 +#define RL_DEFAULT_SHADER_ATTRIB_LOCATION_NORMAL 2 +#define RL_DEFAULT_SHADER_ATTRIB_LOCATION_COLOR 3 +#define RL_DEFAULT_SHADER_ATTRIB_LOCATION_TANGENT 4 +#define RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD2 5 +#define RL_DEFAULT_SHADER_ATTRIB_LOCATION_INDICES 6 +#if defined(RL_SUPPORT_MESH_GPU_SKINNING) + #define RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEIDS 7 + #define RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEWEIGHTS 8 +#endif // Default shader vertex attribute names to set location points // NOTE: When a new shader is loaded, the following locations are tried to be set for convenience @@ -170,7 +177,6 @@ //#define SUPPORT_FILEFORMAT_ASTC 1 //#define SUPPORT_FILEFORMAT_PKM 1 //#define SUPPORT_FILEFORMAT_PVR 1 -//#define SUPPORT_FILEFORMAT_SVG 1 // Support image export functionality (.png, .bmp, .tga, .jpg, .qoi) #define SUPPORT_IMAGE_EXPORT 1 @@ -225,7 +231,12 @@ // rmodels: Configuration values //------------------------------------------------------------------------------------ #define MAX_MATERIAL_MAPS 12 // Maximum number of shader maps supported + +#ifdef RL_SUPPORT_MESH_GPU_SKINNING +#define MAX_MESH_VERTEX_BUFFERS 9 // Maximum vertex buffers (VBO) per mesh +#else #define MAX_MESH_VERTEX_BUFFERS 7 // Maximum vertex buffers (VBO) per mesh +#endif //------------------------------------------------------------------------------------ // Module: raudio - Configuration Flags diff --git a/src/external/RGFW.h b/src/external/RGFW.h index 5420ccab1..fb389d5b4 100644 --- a/src/external/RGFW.h +++ b/src/external/RGFW.h @@ -57,6 +57,8 @@ #define RGFW_EXPORT - Use when building RGFW #define RGFW_IMPORT - Use when linking with RGFW (not as a single-header) + + #define RGFW_STD_INT - force the use stdint.h (for systems that might not have stdint.h (msvc)) */ /* @@ -81,6 +83,7 @@ Code-Nycticebus -> bug fixes Rob Rohan -> X11 bugs and missing features, MacOS/Cocoa fixing memory issues/bugs AICDG (@THISISAGOODNAME) -> vulkan support (example) + @Easymode -> support, testing/debugging, bug fixes and reviews */ #if _MSC_VER @@ -93,6 +96,11 @@ #ifndef RGFW_MALLOC #include + + #ifndef __USE_POSIX199309 + #define __USE_POSIX199309 + #endif + #include #define RGFW_MALLOC malloc #define RGFW_CALLOC calloc @@ -131,7 +139,7 @@ #endif #ifndef RGFWDEF - #ifdef __APPLE__ + #ifdef __clang__ #define RGFWDEF static inline #else #define RGFWDEF inline @@ -146,7 +154,7 @@ #define RGFW_UNUSED(x) (void)(x); #endif -#ifdef __cplusplus +#if defined(__cplusplus) && !defined(__EMSCRIPTEN__) extern "C" { #endif @@ -156,7 +164,7 @@ #define RGFW_HEADER #if !defined(u8) - #if defined(_MSC_VER) || defined(__SYMBIAN32__) /* MSVC might not have stdint.h */ + #if ((defined(_MSC_VER) || defined(__SYMBIAN32__)) && !defined(RGFW_STD_INT)) /* MSVC might not have stdint.h */ typedef unsigned char u8; typedef signed char i8; typedef unsigned short u16; @@ -182,10 +190,11 @@ #if !defined(b8) /* RGFW bool type */ typedef u8 b8; typedef u32 b32; - #define RGFW_TRUE 1 - #define RGFW_FALSE 0 #endif +#define RGFW_TRUE (!(0)) +#define RGFW_FALSE 0 + /* thse OS macros looks better & are standardized */ /* plus it helps with cross-compiling */ @@ -242,6 +251,14 @@ #endif #endif +#elif defined(RGFW_WAYLAND) + #if !defined(RGFW_NO_API) && (!defined(RGFW_BUFFER) || defined(RGFW_OPENGL)) + #define RGFW_EGL + #define RGFW_OPENGL + #include + #endif + + #include #elif (defined(__unix__) || defined(RGFW_MACOS_X11) || defined(RGFW_X11)) && !defined(RGFW_WEBASM) #define RGFW_MACOS_X11 #define RGFW_X11 @@ -259,11 +276,6 @@ #endif #ifdef RGFW_EGL - #if defined(__APPLE__) - #warning EGL is not supported for Cocoa, switching back to the native opengl api - #undef RGFW_EGL - #endif - #include #elif defined(RGFW_OSMESA) #ifndef __APPLE__ @@ -299,65 +311,65 @@ #define RGFW_NO_GPU_RENDER (1L<<14) /* don't render (using the GPU based API)*/ #define RGFW_NO_CPU_RENDER (1L<<15) /* don't render (using the CPU based buffer rendering)*/ +#define RGFW_WINDOW_HIDE (1L << 16)/* the window is hidden */ -/*! event codes */ -#define RGFW_keyPressed 2 /* a key has been pressed */ -#define RGFW_keyReleased 3 /*!< a key has been released*/ -/*! key event note - the code of the key pressed is stored in - RGFW_Event.keyCode - !!Keycodes defined at the bottom of the RGFW_HEADER part of this file!! +typedef RGFW_ENUM(u8, RGFW_event_types) { + /*! event codes */ + RGFW_keyPressed = 1, /* a key has been pressed */ + RGFW_keyReleased, /*!< a key has been released*/ + /*! key event note + the code of the key pressed is stored in + RGFW_Event.keyCode + !!Keycodes defined at the bottom of the RGFW_HEADER part of this file!! - while a string version is stored in - RGFW_Event.KeyString + while a string version is stored in + RGFW_Event.KeyString - RGFW_Event.lockState holds the current lockState - this means if CapsLock, NumLock are active or not -*/ -#define RGFW_mouseButtonPressed 4 /*!< a mouse button has been pressed (left,middle,right)*/ -#define RGFW_mouseButtonReleased 5 /*!< a mouse button has been released (left,middle,right)*/ -#define RGFW_mousePosChanged 6 /*!< the position of the mouse has been changed*/ -/*! mouse event note - the x and y of the mouse can be found in the vector, RGFW_Event.point + RGFW_Event.lockState holds the current lockState + this means if CapsLock, NumLock are active or not + */ + RGFW_mouseButtonPressed, /*!< a mouse button has been pressed (left,middle,right)*/ + RGFW_mouseButtonReleased, /*!< a mouse button has been released (left,middle,right)*/ + RGFW_mousePosChanged, /*!< the position of the mouse has been changed*/ + /*! mouse event note + the x and y of the mouse can be found in the vector, RGFW_Event.point - RGFW_Event.button holds which mouse button was pressed -*/ -#define RGFW_jsButtonPressed 7 /*!< a joystick button was pressed */ -#define RGFW_jsButtonReleased 8 /*!< a joystick button was released */ -#define RGFW_jsAxisMove 9 /*!< an axis of a joystick was moved*/ -/*! joystick event note - RGFW_Event.joystick holds which joystick was altered, if any - RGFW_Event.button holds which joystick button was pressed + RGFW_Event.button holds which mouse button was pressed + */ + RGFW_jsButtonPressed, /*!< a joystick button was pressed */ + RGFW_jsButtonReleased, /*!< a joystick button was released */ + RGFW_jsAxisMove, /*!< an axis of a joystick was moved*/ + /*! joystick event note + RGFW_Event.joystick holds which joystick was altered, if any + RGFW_Event.button holds which joystick button was pressed - RGFW_Event.axis holds the data of all the axis - RGFW_Event.axisCount says how many axis there are -*/ -#define RGFW_windowMoved 10 /*!< the window was moved (by the user) */ -#define RGFW_windowResized 11 /*!< the window was resized (by the user), [on webASM this means the browser was resized] */ + RGFW_Event.axis holds the data of all the axis + RGFW_Event.axisCount says how many axis there are + */ + RGFW_windowMoved, /*!< the window was moved (by the user) */ + RGFW_windowResized, /*!< the window was resized (by the user), [on webASM this means the browser was resized] */ + RGFW_focusIn, /*!< window is in focus now */ + RGFW_focusOut, /*!< window is out of focus now */ + RGFW_mouseEnter, /* mouse entered the window */ + RGFW_mouseLeave, /* mouse left the window */ + RGFW_windowRefresh, /* The window content needs to be refreshed */ -#define RGFW_focusIn 12 /*!< window is in focus now */ -#define RGFW_focusOut 13 /*!< window is out of focus now */ + /* attribs change event note + The event data is sent straight to the window structure + with win->r.x, win->r.y, win->r.w and win->r.h + */ + RGFW_quit, /*!< the user clicked the quit button*/ + RGFW_dnd, /*!< a file has been dropped into the window*/ + RGFW_dnd_init /*!< the start of a dnd event, when the place where the file drop is known */ + /* dnd data note + The x and y coords of the drop are stored in the vector RGFW_Event.point -#define RGFW_mouseEnter 14 /* mouse entered the window */ -#define RGFW_mouseLeave 15 /* mouse left the window */ + RGFW_Event.droppedFilesCount holds how many files were dropped -#define RGFW_windowRefresh 16 /* The window content needs to be refreshed */ - -/* attribs change event note - The event data is sent straight to the window structure - with win->r.x, win->r.y, win->r.w and win->r.h -*/ -#define RGFW_quit 33 /*!< the user clicked the quit button*/ -#define RGFW_dnd 34 /*!< a file has been dropped into the window*/ -#define RGFW_dnd_init 35 /*!< the start of a dnd event, when the place where the file drop is known */ -/* dnd data note - The x and y coords of the drop are stored in the vector RGFW_Event.point - - RGFW_Event.droppedFilesCount holds how many files were dropped - - This is also the size of the array which stores all the dropped file string, - RGFW_Event.droppedFiles -*/ + This is also the size of the array which stores all the dropped file string, + RGFW_Event.droppedFiles + */ +}; /*! mouse button codes (RGFW_Event.button) */ #define RGFW_mouseLeft 1 /*!< left mouse button is pressed*/ @@ -381,64 +393,72 @@ /*! joystick button codes (based on xbox/playstation), you may need to change these values per controller */ #ifndef RGFW_joystick_codes typedef RGFW_ENUM(u8, RGFW_joystick_codes) { - RGFW_JS_A = 0, /* or PS X button */ - RGFW_JS_B = 1, /* or PS circle button */ - RGFW_JS_Y = 2, /* or PS triangle button */ - RGFW_JS_X = 3, /* or PS square button */ - RGFW_JS_START = 9, /* start button */ - RGFW_JS_SELECT = 8, /* select button */ - RGFW_JS_HOME = 10, /* home button */ - RGFW_JS_UP = 13, /* dpad up */ - RGFW_JS_DOWN = 14, /* dpad down*/ - RGFW_JS_LEFT = 15, /* dpad left */ - RGFW_JS_RIGHT = 16, /* dpad right */ - RGFW_JS_L1 = 4, /* left bump */ - RGFW_JS_L2 = 5, /* left trigger*/ - RGFW_JS_R1 = 6, /* right bumper */ - RGFW_JS_R2 = 7, /* right trigger */ + RGFW_JS_A = 0, /*!< or PS X button */ + RGFW_JS_B = 1, /*!< or PS circle button */ + RGFW_JS_Y = 2, /*!< or PS triangle button */ + RGFW_JS_X = 3, /*!< or PS square button */ + RGFW_JS_START = 9, /*!< start button */ + RGFW_JS_SELECT = 8, /*!< select button */ + RGFW_JS_HOME = 10, /*!< home button */ + RGFW_JS_UP = 13, /*!< dpad up */ + RGFW_JS_DOWN = 14, /*!< dpad down*/ + RGFW_JS_LEFT = 15, /*!< dpad left */ + RGFW_JS_RIGHT = 16, /*!< dpad right */ + RGFW_JS_L1 = 4, /*!< left bump */ + RGFW_JS_L2 = 5, /*!< left trigger*/ + RGFW_JS_R1 = 6, /*!< right bumper */ + RGFW_JS_R2 = 7, /*!< right trigger */ }; #endif -/* basic vector type, if there's not already a point/vector type of choice */ +/*! basic vector type, if there's not already a point/vector type of choice */ #ifndef RGFW_point typedef struct { i32 x, y; } RGFW_point; #endif - /* basic rect type, if there's not already a rect type of choice */ +/*! basic rect type, if there's not already a rect type of choice */ #ifndef RGFW_rect typedef struct { i32 x, y, w, h; } RGFW_rect; #endif - /* basic area type, if there's not already a area type of choice */ +/*! basic area type, if there's not already a area type of choice */ #ifndef RGFW_area typedef struct { u32 w, h; } RGFW_area; #endif -#define RGFW_POINT(x, y) (RGFW_point){x, y} -#define RGFW_RECT(x, y, w, h) (RGFW_rect){x, y, w, h} -#define RGFW_AREA(w, h) (RGFW_area){w, h} +#ifndef __cplusplus +#define RGFW_POINT(x, y) (RGFW_point){(i32)(x), (i32)(y)} +#define RGFW_RECT(x, y, w, h) (RGFW_rect){(i32)(x), (i32)(y), (i32)(w), (i32)(h)} +#define RGFW_AREA(w, h) (RGFW_area){(u32)(w), (u32)(h)} +#else +#define RGFW_POINT(x, y) {(i32)(x), (i32)(y)} +#define RGFW_RECT(x, y, w, h) {(i32)(x), (i32)(y), (i32)(w), (i32)(h)} +#define RGFW_AREA(w, h) {(u32)(w), (u32)(h)} +#endif #ifndef RGFW_NO_MONITOR + /*! structure for monitor data */ typedef struct RGFW_monitor { - char name[128]; /* monitor name */ - RGFW_rect rect; /* monitor Workarea */ - float scaleX, scaleY; /* monitor content scale*/ - float physW, physH; /* monitor physical size */ + char name[128]; /*!< monitor name */ + RGFW_rect rect; /*!< monitor Workarea */ + float scaleX, scaleY; /*!< monitor content scale*/ + float physW, physH; /*!< monitor physical size */ } RGFW_monitor; /* - NOTE : Monitor functions should be ran only as many times as needed (not in a loop) + NOTE : Monitor functions should be ran only as many times as needed (not in a loop) */ - /* get an array of all the monitors (max 6) */ + /*! get an array of all the monitors (max 6) */ RGFWDEF RGFW_monitor* RGFW_getMonitors(void); - /* get the primary monitor */ + /*! get the primary monitor */ RGFWDEF RGFW_monitor RGFW_getPrimaryMonitor(void); #endif /* NOTE: some parts of the data can represent different things based on the event (read comments in RGFW_Event struct) */ +/*! Event structure for checking/getting events */ typedef struct RGFW_Event { - char keyName[16]; /* key name of event*/ + char keyName[16]; /*!< key name of event*/ /*! drag and drop data */ /* 260 max paths with a max length of 260 */ @@ -452,67 +472,85 @@ typedef struct RGFW_Event { u32 type; /*!< which event has been sent?*/ RGFW_point point; /*!< mouse x, y of event (or drop point) */ - u32 fps; /*the current fps of the window [the fps is checked when events are checked]*/ - u64 frameTime, frameTime2; /* this is used for counting the fps */ + u8 keyCode; /*!< keycode of event !!Keycodes defined at the bottom of the RGFW_HEADER part of this file!! */ - u8 keyCode; /*!< keycode of event !!Keycodes defined at the bottom of the RGFW_HEADER part of this file!! */ - - b8 inFocus; /*if the window is in focus or not (this is always true for MacOS windows due to the api being weird) */ + b8 repeat; /*!< key press event repeated (the key is being held) */ + b8 inFocus; /*!< if the window is in focus or not (this is always true for MacOS windows due to the api being weird) */ u8 lockState; + + u8 button; /* !< which mouse button was pressed */ + double scroll; /*!< the raw mouse scroll value */ - u16 joystick; /* which joystick this event applies to (if applicable to any) */ + u16 joystick; /*! which joystick this event applies to (if applicable to any) */ + u8 axisesCount; /*!< number of axises */ + RGFW_point axis[2]; /*!< x, y of axises (-100 to 100) */ - u8 button; /*!< which mouse button has been clicked (0) left (1) middle (2) right OR which joystick button was pressed*/ - double scroll; /* the raw mouse scroll value */ - - u8 axisesCount; /* number of axises */ - RGFW_point axis[2]; /* x, y of axises (-100 to 100) */ -} RGFW_Event; /*!< Event structure for checking/getting events */ - -/* source data for the window (used by the APIs) */ + u64 frameTime, frameTime2; /*!< this is used for counting the fps */ +} RGFW_Event; +/*! source data for the window (used by the APIs) */ typedef struct RGFW_window_src { #ifdef RGFW_WINDOWS HWND window; /*!< source window */ HDC hdc; /*!< source HDC */ u32 hOffset; /*!< height offset for window */ -#if (defined(RGFW_OPENGL)) && !defined(RGFW_OSMESA) && !defined(RGFW_EGL) + #if (defined(RGFW_OPENGL)) && !defined(RGFW_OSMESA) && !defined(RGFW_EGL) HGLRC ctx; /*!< source graphics context */ -#elif defined(RGFW_OSMESA) + #elif defined(RGFW_OSMESA) OSMesaContext ctx; -#elif defined(RGFW_DIRECTX) + #elif defined(RGFW_DIRECTX) IDXGISwapChain* swapchain; ID3D11RenderTargetView* renderTargetView; ID3D11DepthStencilView* pDepthStencilView; -#elif defined(RGFW_EGL) + #elif defined(RGFW_EGL) EGLSurface EGL_surface; EGLDisplay EGL_display; EGLContext EGL_context; -#endif + #endif -#if defined(RGFW_OSMESA) || defined(RGFW_BUFFER) + #if defined(RGFW_OSMESA) || defined(RGFW_BUFFER) HDC hdcMem; HBITMAP bitmap; -#endif - RGFW_area maxSize, minSize; /* for setting max/min resize (RGFW_WINDOWS) */ + #endif + RGFW_area maxSize, minSize; /*!< for setting max/min resize (RGFW_WINDOWS) */ #elif defined(RGFW_X11) Display* display; /*!< source display */ Window window; /*!< source window */ -#if (defined(RGFW_OPENGL)) && !defined(RGFW_OSMESA) && !defined(RGFW_EGL) + #if (defined(RGFW_OPENGL)) && !defined(RGFW_OSMESA) && !defined(RGFW_EGL) GLXContext ctx; /*!< source graphics context */ -#elif defined(RGFW_OSMESA) + #elif defined(RGFW_OSMESA) OSMesaContext ctx; -#elif defined(RGFW_EGL) + #elif defined(RGFW_EGL) EGLSurface EGL_surface; EGLDisplay EGL_display; EGLContext EGL_context; -#endif + #endif #if defined(RGFW_OSMESA) || defined(RGFW_BUFFER) XImage* bitmap; GC gc; #endif +#elif defined(RGFW_WAYLAND) + struct wl_display* display; + struct wl_surface* surface; + struct wl_buffer* wl_buffer; + struct wl_keyboard* keyboard; + + struct xdg_surface* xdg_surface; + struct xdg_toplevel* xdg_toplevel; + struct zxdg_toplevel_decoration_v1* decoration; + RGFW_Event events[20]; + i32 eventLen; + size_t eventIndex; + #if defined(RGFW_EGL) + struct wl_egl_window* window; + EGLSurface EGL_surface; + EGLDisplay EGL_display; + EGLContext EGL_context; + #elif defined(RGFW_OSMESA) + OSMesaContext ctx; + #endif #elif defined(RGFW_MACOS) u32 display; void* displayLink; @@ -531,7 +569,7 @@ typedef struct RGFW_window_src { void* view; /*apple viewpoint thingy*/ #if defined(RGFW_OSMESA) || defined(RGFW_BUFFER) - void* bitmap; /* API's bitmap for storing or managing */ + void* bitmap; /*!< API's bitmap for storing or managing */ void* image; #endif #elif defined(RGFW_WEBASM) @@ -542,44 +580,52 @@ typedef struct RGFW_window_src { typedef struct RGFW_window { - RGFW_window_src src; + RGFW_window_src src; /*!< src window data */ #if defined(RGFW_OSMESA) || defined(RGFW_BUFFER) - u8* buffer; /* buffer for non-GPU systems (OSMesa, basic software rendering) */ + u8* buffer; /*!< buffer for non-GPU systems (OSMesa, basic software rendering) */ /* when rendering using RGFW_BUFFER, the buffer is in the RGBA format */ #endif - + void* userPtr; /* ptr for usr data */ + RGFW_Event event; /*!< current event */ - RGFW_rect r; /* the x, y, w and h of the struct */ + RGFW_rect r; /*!< the x, y, w and h of the struct */ - RGFW_point _lastMousePoint; /* last cusor point (for raw mouse data) */ - - u32 fpsCap; /*!< the fps cap of the window should run at (change this var to change the fps cap, 0 = no limit)*/ - /*[the fps is capped when events are checked]*/ - - u32 _winArgs; /* windows args (for RGFW to check) */ + RGFW_point _lastMousePoint; /*!< last cusor point (for raw mouse data) */ + + u32 _winArgs; /*!< windows args (for RGFW to check) */ } RGFW_window; /*!< Window structure for managing the window */ #if defined(RGFW_X11) || defined(RGFW_MACOS) - typedef u64 RGFW_thread; /* thread type unix */ + typedef u64 RGFW_thread; /*!< thread type unix */ #else - typedef void* RGFW_thread; /* thread type for window */ + typedef void* RGFW_thread; /*!< thread type for window */ #endif -/* this has to be set before createWindow is called, else the fulscreen size is used */ -RGFWDEF void RGFW_setBufferSize(RGFW_area size); /* the buffer cannot be resized (by RGFW) */ +/** * @defgroup Window_management +* @{ */ -RGFW_window* RGFW_createWindow( + +/*! + * the class name for X11 and WinAPI. apps with the same class will be grouped by the WM + * by default the class name will == the root window's name +*/ +RGFWDEF void RGFW_setClassName(char* name); + +/*! this has to be set before createWindow is called, else the fulscreen size is used */ +RGFWDEF void RGFW_setBufferSize(RGFW_area size); /*!< the buffer cannot be resized (by RGFW) */ + +RGFWDEF RGFW_window* RGFW_createWindow( const char* name, /* name of the window */ RGFW_rect rect, /* rect of window */ u16 args /* extra arguments (NULL / (u16)0 means no args used)*/ ); /*!< function to create a window struct */ -/* get the size of the screen to an area struct */ +/*! get the size of the screen to an area struct */ RGFWDEF RGFW_area RGFW_getScreenSize(void); -/* +/*! this function checks an *individual* event (and updates window structure attributes) this means, using this function without a while loop may cause event lag @@ -591,9 +637,9 @@ RGFWDEF RGFW_area RGFW_getScreenSize(void); although you still need some way to tell RGFW to process events eg. `RGFW_window_checkEvents` */ -RGFW_Event* RGFW_window_checkEvent(RGFW_window* win); /*!< check current event (returns a pointer to win->event or NULL if there is no event)*/ +RGFWDEF RGFW_Event* RGFW_window_checkEvent(RGFW_window* win); /*!< check current event (returns a pointer to win->event or NULL if there is no event)*/ -/* +/*! for RGFW_window_eventWait and RGFW_window_checkEvents waitMS -> Allows th e function to keep checking for events even after `RGFW_window_checkEvent == NULL` if waitMS == 0, the loop will not wait for events @@ -605,16 +651,16 @@ typedef RGFW_ENUM(i32, RGFW_eventWait) { RGFW_NO_WAIT = 0 }; -/* sleep until RGFW gets an event or the timer ends (defined by OS) */ +/*! sleep until RGFW gets an event or the timer ends (defined by OS) */ RGFWDEF void RGFW_window_eventWait(RGFW_window* win, i32 waitMS); -/* +/*! check all the events until there are none left, this should only be used if you're using callbacks only */ RGFWDEF void RGFW_window_checkEvents(RGFW_window* win, i32 waitMS); -/* +/*! Tell RGFW_window_eventWait to stop waiting, to be ran from another thread */ RGFWDEF void RGFW_stopCheckEvents(void); @@ -622,47 +668,47 @@ RGFWDEF void RGFW_stopCheckEvents(void); /*! window managment functions*/ RGFWDEF void RGFW_window_close(RGFW_window* win); /*!< close the window and free leftover data */ -/* moves window to a given point */ +/*! moves window to a given point */ RGFWDEF void RGFW_window_move(RGFW_window* win, - RGFW_point v/* new pos*/ + RGFW_point v/*!< new pos*/ ); #ifndef RGFW_NO_MONITOR - /* move to a specific monitor */ + /*! move to a specific monitor */ RGFWDEF void RGFW_window_moveToMonitor(RGFW_window* win, RGFW_monitor m /* monitor */); #endif -/* resize window to a current size/area */ -RGFWDEF void RGFW_window_resize(RGFW_window* win, - RGFW_area a/* new size*/ +/*! resize window to a current size/area */ +RGFWDEF void RGFW_window_resize(RGFW_window* win, /*!< source window */ + RGFW_area a/*!< new size*/ ); -/* set the minimum size a user can shrink a window to a given size/area */ +/*! set the minimum size a user can shrink a window to a given size/area */ RGFWDEF void RGFW_window_setMinSize(RGFW_window* win, RGFW_area a); -/* set the minimum size a user can extend a window to a given size/area */ +/*! set the minimum size a user can extend a window to a given size/area */ RGFWDEF void RGFW_window_setMaxSize(RGFW_window* win, RGFW_area a); -RGFWDEF void RGFW_window_maximize(RGFW_window* win); /* maximize the window size */ -RGFWDEF void RGFW_window_minimize(RGFW_window* win); /* minimize the window (in taskbar (per OS))*/ -RGFWDEF void RGFW_window_restore(RGFW_window* win); /* restore the window from minimized (per OS)*/ +RGFWDEF void RGFW_window_maximize(RGFW_window* win); /*!< maximize the window size */ +RGFWDEF void RGFW_window_minimize(RGFW_window* win); /*!< minimize the window (in taskbar (per OS))*/ +RGFWDEF void RGFW_window_restore(RGFW_window* win); /*!< restore the window from minimized (per OS)*/ -/* if the window should have a border or not (borderless) based on bool value of `border` */ +/*! if the window should have a border or not (borderless) based on bool value of `border` */ RGFWDEF void RGFW_window_setBorder(RGFW_window* win, b8 border); -/* turn on / off dnd (RGFW_ALLOW_DND stil must be passed to the window)*/ +/*! turn on / off dnd (RGFW_ALLOW_DND stil must be passed to the window)*/ RGFWDEF void RGFW_window_setDND(RGFW_window* win, b8 allow); #ifndef RGFW_NO_PASSTHROUGH - /* turn on / off mouse passthrough */ + /*!! turn on / off mouse passthrough */ RGFWDEF void RGFW_window_setMousePassthrough(RGFW_window* win, b8 passthrough); #endif -/* rename window to a given string */ +/*! rename window to a given string */ RGFWDEF void RGFW_window_setName(RGFW_window* win, char* name ); -void RGFW_window_setIcon(RGFW_window* win, /*!< source window */ +RGFWDEF void RGFW_window_setIcon(RGFW_window* win, /*!< source window */ u8* icon /*!< icon bitmap */, RGFW_area a /*!< width and height of the bitmap*/, i32 channels /*!< how many channels the bitmap has (rgb : 3, rgba : 4) */ @@ -674,7 +720,7 @@ RGFWDEF void RGFW_window_setMouse(RGFW_window* win, u8* image, RGFW_area a, i32 /*!< sets the mouse to a standard API cursor (based on RGFW_MOUSE, as seen at the end of the RGFW_HEADER part of this file) */ RGFWDEF void RGFW_window_setMouseStandard(RGFW_window* win, u8 mouse); -RGFWDEF void RGFW_window_setMouseDefault(RGFW_window* win); /* sets the mouse to the default mouse icon */ +RGFWDEF void RGFW_window_setMouseDefault(RGFW_window* win); /*!< sets the mouse to the default mouse icon */ /* Locks cursor at the center of the window win->event.point become raw mouse movement data @@ -682,12 +728,12 @@ RGFWDEF void RGFW_window_setMouseDefault(RGFW_window* win); /* sets the mouse to this is useful for a 3D camera */ RGFWDEF void RGFW_window_mouseHold(RGFW_window* win, RGFW_area area); -/* stop holding the mouse and let it move freely */ +/*! stop holding the mouse and let it move freely */ RGFWDEF void RGFW_window_mouseUnhold(RGFW_window* win); -/* hide the window */ +/*! hide the window */ RGFWDEF void RGFW_window_hide(RGFW_window* win); -/* show the window */ +/*! show the window */ RGFWDEF void RGFW_window_show(RGFW_window* win); /* @@ -696,28 +742,32 @@ RGFWDEF void RGFW_window_show(RGFW_window* win); */ RGFWDEF void RGFW_window_setShouldClose(RGFW_window* win); -/* where the mouse is on the screen */ +/*! where the mouse is on the screen */ RGFWDEF RGFW_point RGFW_getGlobalMousePoint(void); -/* where the mouse is on the window */ +/*! where the mouse is on the window */ RGFWDEF RGFW_point RGFW_window_getMousePoint(RGFW_window* win); -/* show the mouse or hide the mouse*/ +/*! show the mouse or hide the mouse*/ RGFWDEF void RGFW_window_showMouse(RGFW_window* win, i8 show); -/* move the mouse to a set x, y pos*/ +/*! move the mouse to a set x, y pos*/ RGFWDEF void RGFW_window_moveMouse(RGFW_window* win, RGFW_point v); -/* if the window should close (RGFW_close was sent or escape was pressed) */ +/*! if the window should close (RGFW_close was sent or escape was pressed) */ RGFWDEF b8 RGFW_window_shouldClose(RGFW_window* win); -/* if window is fullscreen'd */ +/*! if window is fullscreen'd */ RGFWDEF b8 RGFW_window_isFullscreen(RGFW_window* win); -/* if window is hidden */ +/*! if window is hidden */ RGFWDEF b8 RGFW_window_isHidden(RGFW_window* win); -/* if window is minimized */ +/*! if window is minimized */ RGFWDEF b8 RGFW_window_isMinimized(RGFW_window* win); -/* if window is maximized */ +/*! if window is maximized */ RGFWDEF b8 RGFW_window_isMaximized(RGFW_window* win); +/** @} */ + +/** * @defgroup Monitor +* @{ */ #ifndef RGFW_NO_MONITOR /* @@ -725,17 +775,27 @@ scale the window to the monitor, this is run by default if the user uses the arg `RGFW_SCALE_TO_MONITOR` during window creation */ RGFWDEF void RGFW_window_scaleToMonitor(RGFW_window* win); -/* get the struct of the window's monitor */ +/*! get the struct of the window's monitor */ RGFWDEF RGFW_monitor RGFW_window_getMonitor(RGFW_window* win); #endif -/*!< make the window the current opengl drawing context */ -RGFWDEF void RGFW_window_makeCurrent(RGFW_window* win); +/** @} */ + +/** * @defgroup Input +* @{ */ /*error handling*/ -RGFWDEF b8 RGFW_Error(void); /* returns true if an error has occurred (doesn't print errors itself) */ +RGFWDEF b8 RGFW_Error(void); /*!< returns true if an error has occurred (doesn't print errors itself) */ -/*!< if window == NULL, it checks if the key is pressed globally. Otherwise, it checks only if the key is pressed while the window in focus.*/ +/*! returns true if the key should be shifted */ +RGFWDEF b8 RGFW_shouldShift(u32 keycode, u8 lockState); + +/*! get char from RGFW keycode (using a LUT), uses shift'd version if shift = true */ +RGFWDEF char RGFW_keyCodeToChar(u32 keycode, b8 shift); +/*! get char from RGFW keycode (using a LUT), uses lockState for shouldShift) */ +RGFWDEF char RGFW_keyCodeToCharAuto(u32 keycode, u8 lockState); + +/*! if window == NULL, it checks if the key is pressed globally. Otherwise, it checks only if the key is pressed while the window in focus.*/ RGFWDEF b8 RGFW_isPressed(RGFW_window* win, u8 key); /*!< if key is pressed (key code)*/ RGFWDEF b8 RGFW_wasPressed(RGFW_window* win, u8 key); /*!< if key was pressed (checks previous state only) (key code)*/ @@ -744,90 +804,100 @@ RGFWDEF b8 RGFW_isHeld(RGFW_window* win, u8 key); /*!< if key is held (key code) RGFWDEF b8 RGFW_isReleased(RGFW_window* win, u8 key); /*!< if key is released (key code)*/ /* if a key is pressed and then released, pretty much the same as RGFW_isReleased */ -RGFWDEF b8 RGFW_isClicked(RGFW_window* win, u8 key /* key code*/); +RGFWDEF b8 RGFW_isClicked(RGFW_window* win, u8 key /*!< key code*/); -/* if a mouse button is pressed */ -RGFWDEF b8 RGFW_isMousePressed(RGFW_window* win, u8 button /* mouse button code */ ); -/* if a mouse button is held */ -RGFWDEF b8 RGFW_isMouseHeld(RGFW_window* win, u8 button /* mouse button code */ ); -/* if a mouse button was released */ -RGFWDEF b8 RGFW_isMouseReleased(RGFW_window* win, u8 button /* mouse button code */ ); -/* if a mouse button was pressed (checks previous state only) */ -RGFWDEF b8 RGFW_wasMousePressed(RGFW_window* win, u8 button /* mouse button code */ ); +/*! if a mouse button is pressed */ +RGFWDEF b8 RGFW_isMousePressed(RGFW_window* win, u8 button /*!< mouse button code */ ); +/*! if a mouse button is held */ +RGFWDEF b8 RGFW_isMouseHeld(RGFW_window* win, u8 button /*!< mouse button code */ ); +/*! if a mouse button was released */ +RGFWDEF b8 RGFW_isMouseReleased(RGFW_window* win, u8 button /*!< mouse button code */ ); +/*! if a mouse button was pressed (checks previous state only) */ +RGFWDEF b8 RGFW_wasMousePressed(RGFW_window* win, u8 button /*!< mouse button code */ ); +/** @} */ -/*! clipboard functions*/ +/** * @defgroup Clipboard +* @{ */ RGFWDEF char* RGFW_readClipboard(size_t* size); /*!< read clipboard data */ -RGFWDEF void RGFW_clipboardFree(char* str); /* the string returned from RGFW_readClipboard must be freed */ +RGFWDEF void RGFW_clipboardFree(char* str); /*!< the string returned from RGFW_readClipboard must be freed */ RGFWDEF void RGFW_writeClipboard(const char* text, u32 textLen); /*!< write text to the clipboard */ +/** @} */ -/* +/** Event callbacks, these are completely optional, you can use the normal RGFW_checkEvent() method if you prefer that +* @defgroup Callbacks +* @{ */ -/* RGFW_windowMoved, the window and its new rect value */ +/*! RGFW_windowMoved, the window and its new rect value */ typedef void (* RGFW_windowmovefunc)(RGFW_window* win, RGFW_rect r); -/* RGFW_windowResized, the window and its new rect value */ +/*! RGFW_windowResized, the window and its new rect value */ typedef void (* RGFW_windowresizefunc)(RGFW_window* win, RGFW_rect r); -/* RGFW_quit, the window that was closed */ +/*! RGFW_quit, the window that was closed */ typedef void (* RGFW_windowquitfunc)(RGFW_window* win); -/* RGFW_focusIn / RGFW_focusOut, the window who's focus has changed and if its inFocus */ +/*! RGFW_focusIn / RGFW_focusOut, the window who's focus has changed and if its inFocus */ typedef void (* RGFW_focusfunc)(RGFW_window* win, b8 inFocus); -/* RGFW_mouseEnter / RGFW_mouseLeave, the window that changed, the point of the mouse (enter only) and if the mouse has entered */ +/*! RGFW_mouseEnter / RGFW_mouseLeave, the window that changed, the point of the mouse (enter only) and if the mouse has entered */ typedef void (* RGFW_mouseNotifyfunc)(RGFW_window* win, RGFW_point point, b8 status); -/* RGFW_mousePosChanged, the window that the move happened on and the new point of the mouse */ +/*! RGFW_mousePosChanged, the window that the move happened on and the new point of the mouse */ typedef void (* RGFW_mouseposfunc)(RGFW_window* win, RGFW_point point); -/* RGFW_dnd_init, the window, the point of the drop on the windows */ +/*! RGFW_dnd_init, the window, the point of the drop on the windows */ typedef void (* RGFW_dndInitfunc)(RGFW_window* win, RGFW_point point); -/* RGFW_windowRefresh, the window that needs to be refreshed */ +/*! RGFW_windowRefresh, the window that needs to be refreshed */ typedef void (* RGFW_windowrefreshfunc)(RGFW_window* win); -/* RGFW_keyPressed / RGFW_keyReleased, the window that got the event, the keycode, the string version, the state of mod keys, if it was a press (else it's a release) */ +/*! RGFW_keyPressed / RGFW_keyReleased, the window that got the event, the keycode, the string version, the state of mod keys, if it was a press (else it's a release) */ typedef void (* RGFW_keyfunc)(RGFW_window* win, u32 keycode, char keyName[16], u8 lockState, b8 pressed); -/* RGFW_mouseButtonPressed / RGFW_mouseButtonReleased, the window that got the event, the button that was pressed, the scroll value, if it was a press (else it's a release) */ +/*! RGFW_mouseButtonPressed / RGFW_mouseButtonReleased, the window that got the event, the button that was pressed, the scroll value, if it was a press (else it's a release) */ typedef void (* RGFW_mousebuttonfunc)(RGFW_window* win, u8 button, double scroll, b8 pressed); -/* RGFW_jsButtonPressed / RGFW_jsButtonReleased, the window that got the event, the button that was pressed, the scroll value, if it was a press (else it's a release) */ +/*! RGFW_jsButtonPressed / RGFW_jsButtonReleased, the window that got the event, the button that was pressed, the scroll value, if it was a press (else it's a release) */ typedef void (* RGFW_jsButtonfunc)(RGFW_window* win, u16 joystick, u8 button, b8 pressed); -/* RGFW_jsAxisMove, the window that got the event, the joystick in question, the axis values and the amount of axises */ +/*! RGFW_jsAxisMove, the window that got the event, the joystick in question, the axis values and the amount of axises */ typedef void (* RGFW_jsAxisfunc)(RGFW_window* win, u16 joystick, RGFW_point axis[2], u8 axisesCount); -/* RGFW_dnd, the window that had the drop, the drop data and the amount files dropped */ + +/*! RGFW_dnd, the window that had the drop, the drop data and the amount files dropped returns previous callback function (if it was set) */ #ifdef RGFW_ALLOC_DROPFILES typedef void (* RGFW_dndfunc)(RGFW_window* win, char** droppedFiles, u32 droppedFilesCount); #else typedef void (* RGFW_dndfunc)(RGFW_window* win, char droppedFiles[RGFW_MAX_DROPS][RGFW_MAX_PATH], u32 droppedFilesCount); #endif -/* set callback for a window move event */ -RGFWDEF void RGFW_setWindowMoveCallback(RGFW_windowmovefunc func); -/* set callbacksfor a window resize event */ -RGFWDEF void RGFW_setWindowResizeCallback(RGFW_windowresizefunc func); -/* set callbacksfor a window quit event */ -RGFWDEF void RGFW_setWindowQuitCallback(RGFW_windowquitfunc func); -/* set callbacksfor a mouse move event */ -RGFWDEF void RGFW_setMousePosCallback(RGFW_mouseposfunc func); -/* set callbacksfor a window refresh event */ -RGFWDEF void RGFW_setWindowRefreshCallback(RGFW_windowrefreshfunc func); -/* set callbacksfor a window focus change event */ -RGFWDEF void RGFW_setFocusCallback(RGFW_focusfunc func); -/* set callbacksfor a mouse notify event */ -RGFWDEF void RGFW_setMouseNotifyCallBack(RGFW_mouseNotifyfunc func); -/* set callbacksfor a drop event event */ -RGFWDEF void RGFW_setDndCallback(RGFW_dndfunc func); -/* set callbacksfor a start of a drop event */ -RGFWDEF void RGFW_setDndInitCallback(RGFW_dndInitfunc func); -/* set callbacksfor a key (press / release ) event */ -RGFWDEF void RGFW_setKeyCallback(RGFW_keyfunc func); -/* set callbacksfor a mouse button (press / release ) event */ -RGFWDEF void RGFW_setMouseButtonCallback(RGFW_mousebuttonfunc func); -/* set callbacksfor a controller button (press / release ) event */ -RGFWDEF void RGFW_setjsButtonCallback(RGFW_jsButtonfunc func); -/* set callbacksfor a joystick axis mov event */ -RGFWDEF void RGFW_setjsAxisCallback(RGFW_jsAxisfunc func); +/*! set callback for a window move event returns previous callback function (if it was set) */ +RGFWDEF RGFW_windowmovefunc RGFW_setWindowMoveCallback(RGFW_windowmovefunc func); +/*! set callback for a window resize event returns previous callback function (if it was set) */ +RGFWDEF RGFW_windowresizefunc RGFW_setWindowResizeCallback(RGFW_windowresizefunc func); +/*! set callback for a window quit event returns previous callback function (if it was set) */ +RGFWDEF RGFW_windowquitfunc RGFW_setWindowQuitCallback(RGFW_windowquitfunc func); +/*! set callback for a mouse move event returns previous callback function (if it was set) */ +RGFWDEF RGFW_mouseposfunc RGFW_setMousePosCallback(RGFW_mouseposfunc func); +/*! set callback for a window refresh event returns previous callback function (if it was set) */ +RGFWDEF RGFW_windowrefreshfunc RGFW_setWindowRefreshCallback(RGFW_windowrefreshfunc func); +/*! set callback for a window focus change event returns previous callback function (if it was set) */ +RGFWDEF RGFW_focusfunc RGFW_setFocusCallback(RGFW_focusfunc func); +/*! set callback for a mouse notify event returns previous callback function (if it was set) */ +RGFWDEF RGFW_mouseNotifyfunc RGFW_setMouseNotifyCallBack(RGFW_mouseNotifyfunc func); +/*! set callback for a drop event event returns previous callback function (if it was set) */ +RGFWDEF RGFW_dndfunc RGFW_setDndCallback(RGFW_dndfunc func); +/*! set callback for a start of a drop event returns previous callback function (if it was set) */ +RGFWDEF RGFW_dndInitfunc RGFW_setDndInitCallback(RGFW_dndInitfunc func); +/*! set callback for a key (press / release ) event returns previous callback function (if it was set) */ +RGFWDEF RGFW_keyfunc RGFW_setKeyCallback(RGFW_keyfunc func); +/*! set callback for a mouse button (press / release ) event returns previous callback function (if it was set) */ +RGFWDEF RGFW_mousebuttonfunc RGFW_setMouseButtonCallback(RGFW_mousebuttonfunc func); +/*! set callback for a controller button (press / release ) event returns previous callback function (if it was set) */ +RGFWDEF RGFW_jsButtonfunc RGFW_setjsButtonCallback(RGFW_jsButtonfunc func); +/*! set callback for a joystick axis mov event returns previous callback function (if it was set) */ +RGFWDEF RGFW_jsAxisfunc RGFW_setjsAxisCallback(RGFW_jsAxisfunc func); +/** @} */ + +/** * @defgroup Threads +* @{ */ #ifndef RGFW_NO_THREADS /*! threading functions*/ @@ -851,7 +921,10 @@ RGFWDEF void RGFW_setjsAxisCallback(RGFW_jsAxisfunc func); RGFWDEF void RGFW_setThreadPriority(RGFW_thread thread, u8 priority); /*!< sets the priority priority */ #endif -/*! gamepad/joystick functions (linux-only currently) */ +/** @} */ + +/** * @defgroup joystick +* @{ */ /*! joystick count starts at 0*/ /*!< register joystick to window based on a number (the number is based on when it was connected eg. /dev/js0)*/ @@ -860,27 +933,45 @@ RGFWDEF u16 RGFW_registerJoystickF(RGFW_window* win, char* file); RGFWDEF u32 RGFW_isPressedJS(RGFW_window* win, u16 controller, u8 button); +/** @} */ + +/** * @defgroup graphics_API +* @{ */ + +/*!< make the window the current opengl drawing context + + NOTE: + if you want to switch the graphics context's thread, + you have to run RGFW_window_makeCurrent(NULL); on the old thread + then RGFW_window_makeCurrent(valid_window) on the new thread +*/ +RGFWDEF void RGFW_window_makeCurrent(RGFW_window* win); + +/*< updates fps / sets fps to cap (must by ran manually by the user at the end of a frame), returns current fps */ +RGFWDEF u32 RGFW_window_checkFPS(RGFW_window* win, u32 fpsCap); + /* supports openGL, directX, OSMesa, EGL and software rendering */ -RGFWDEF void RGFW_window_swapBuffers(RGFW_window* win); /* swap the rendering buffer */ +RGFWDEF void RGFW_window_swapBuffers(RGFW_window* win); /*!< swap the rendering buffer */ RGFWDEF void RGFW_window_swapInterval(RGFW_window* win, i32 swapInterval); RGFWDEF void RGFW_window_setGPURender(RGFW_window* win, i8 set); RGFWDEF void RGFW_window_setCPURender(RGFW_window* win, i8 set); /*! native API functions */ -#ifdef RGFW_OPENGL - /*! Get max OpenGL version */ - RGFWDEF u8* RGFW_getMaxGLVersion(void); - /* OpenGL init hints */ - RGFWDEF void RGFW_setGLStencil(i32 stencil); /* set stencil buffer bit size (8 by default) */ - RGFWDEF void RGFW_setGLSamples(i32 samples); /* set number of sampiling buffers (4 by default) */ - RGFWDEF void RGFW_setGLStereo(i32 stereo); /* use GL_STEREO (GL_FALSE by default) */ - RGFWDEF void RGFW_setGLAuxBuffers(i32 auxBuffers); /* number of aux buffers (0 by default) */ +#if defined(RGFW_OPENGL) || defined(RGFW_EGL) + /*! OpenGL init hints */ + RGFWDEF void RGFW_setGLStencil(i32 stencil); /*!< set stencil buffer bit size (8 by default) */ + RGFWDEF void RGFW_setGLSamples(i32 samples); /*!< set number of sampiling buffers (4 by default) */ + RGFWDEF void RGFW_setGLStereo(i32 stereo); /*!< use GL_STEREO (GL_FALSE by default) */ + RGFWDEF void RGFW_setGLAuxBuffers(i32 auxBuffers); /*!< number of aux buffers (0 by default) */ - /*! Set OpenGL version hint */ - RGFWDEF void RGFW_setGLVersion(i32 major, i32 minor); - RGFWDEF void* RGFW_getProcAddress(const char* procname); /* get native opengl proc address */ - RGFWDEF void RGFW_window_makeCurrent_OpenGL(RGFW_window* win); /* to be called by RGFW_window_makeCurrent */ + /*! which profile to use for the opengl verion */ + typedef RGFW_ENUM(u8, RGFW_GL_profile) { RGFW_GL_CORE = 0, RGFW_GL_COMPATIBILITY }; + /*! Set OpenGL version hint (core or compatibility profile)*/ + RGFWDEF void RGFW_setGLVersion(RGFW_GL_profile profile, i32 major, i32 minor); + RGFWDEF void RGFW_setDoubleBuffer(b8 useDoubleBuffer); + RGFWDEF void* RGFW_getProcAddress(const char* procname); /*!< get native opengl proc address */ + RGFWDEF void RGFW_window_makeCurrent_OpenGL(RGFW_window* win); /*!< to be called by RGFW_window_makeCurrent */ #elif defined(RGFW_DIRECTX) typedef struct { IDXGIFactory* pFactory; @@ -896,13 +987,15 @@ RGFWDEF void RGFW_window_setCPURender(RGFW_window* win, i8 set); RGFWDEF RGFW_directXinfo* RGFW_getDirectXInfo(void); #endif -/*! Supporting functions */ -RGFWDEF void RGFW_window_checkFPS(RGFW_window* win); /*!< updates fps / sets fps to cap (ran by RGFW_window_checkEvent)*/ -RGFWDEF u64 RGFW_getTime(void); /* get time in seconds */ -RGFWDEF u64 RGFW_getTimeNS(void); /* get time in nanoseconds */ -RGFWDEF void RGFW_sleep(u64 milisecond); /* sleep for a set time */ +/** @} */ -/* +/** * @defgroup Supporting +* @{ */ +RGFWDEF u64 RGFW_getTime(void); /*!< get time in seconds */ +RGFWDEF u64 RGFW_getTimeNS(void); /*!< get time in nanoseconds */ +RGFWDEF void RGFW_sleep(u64 milisecond); /*!< sleep for a set time */ + +/*! key codes and mouse icon enums */ @@ -1019,6 +1112,7 @@ typedef RGFW_ENUM(u8, RGFW_Key) { final_key, }; + typedef RGFW_ENUM(u8, RGFW_mouseIcons) { RGFW_MOUSE_NORMAL = 0, RGFW_MOUSE_ARROW, @@ -1033,6 +1127,8 @@ typedef RGFW_ENUM(u8, RGFW_mouseIcons) { RGFW_MOUSE_NOT_ALLOWED, }; +/** @} */ + #endif /* RGFW_HEADER */ /* @@ -1092,15 +1188,18 @@ int main() { */ #ifdef RGFW_X11 - #define RGFW_OS_BASED_VALUE(l, w, m, a) l + #define RGFW_OS_BASED_VALUE(l, w, m, h, ww) l #elif defined(RGFW_WINDOWS) - #define RGFW_OS_BASED_VALUE(l, w, m, a) w + #define RGFW_OS_BASED_VALUE(l, w, m, h, ww) w #elif defined(RGFW_MACOS) - #define RGFW_OS_BASED_VALUE(l, w, m, a) m + #define RGFW_OS_BASED_VALUE(l, w, m, h, ww) m #elif defined(RGFW_WEBASM) - #define RGFW_OS_BASED_VALUE(l, w, m, a) a + #define RGFW_OS_BASED_VALUE(l, w, m, h, ww) h +#elif defined(RGFW_WAYLAND) + #define RGFW_OS_BASED_VALUE(l, w, m, h, ww) ww #endif + #ifdef RGFW_IMPLEMENTATION #include @@ -1119,120 +1218,147 @@ This is the start of keycode data MacOS -> windows and linux already don't have keycodes as macros, so there's no point */ -u8 RGFW_keycodes[] = { - [RGFW_OS_BASED_VALUE(49, 192, 50, DOM_VK_BACK_QUOTE)] = RGFW_Backtick, - [RGFW_OS_BASED_VALUE(19, 0x30, 29, DOM_VK_0)] = RGFW_0, - [RGFW_OS_BASED_VALUE(10, 0x31, 18, DOM_VK_1)] = RGFW_1, - [RGFW_OS_BASED_VALUE(11, 0x32, 19, DOM_VK_2)] = RGFW_2, - [RGFW_OS_BASED_VALUE(12, 0x33, 20, DOM_VK_3)] = RGFW_3, - [RGFW_OS_BASED_VALUE(13, 0x34, 21, DOM_VK_4)] = RGFW_4, - [RGFW_OS_BASED_VALUE(14, 0x35, 23, DOM_VK_5)] = RGFW_5, - [RGFW_OS_BASED_VALUE(15, 0x36, 22, DOM_VK_6)] = RGFW_6, - [RGFW_OS_BASED_VALUE(16, 0x37, 26, DOM_VK_7)] = RGFW_7, - [RGFW_OS_BASED_VALUE(17, 0x38, 28, DOM_VK_8)] = RGFW_8, - [RGFW_OS_BASED_VALUE(18, 0x39, 25, DOM_VK_9)] = RGFW_9, - [RGFW_OS_BASED_VALUE(65, 0x20, 49, DOM_VK_SPACE)] = RGFW_Space, +/* + the c++ compiler doesn't support setting up an array like, + we'll have to do it during runtime using a function & this messy setup +*/ +#ifndef __cplusplus +#define RGFW_NEXT , +#define RGFW_MAP +#else +#define RGFW_NEXT ; +#define RGFW_MAP RGFW_keycodes +#endif - [RGFW_OS_BASED_VALUE(38, 0x41, 0, DOM_VK_A)] = RGFW_a, - [RGFW_OS_BASED_VALUE(56, 0x42, 11, DOM_VK_B)] = RGFW_b, - [RGFW_OS_BASED_VALUE(54, 0x43, 8, DOM_VK_C)] = RGFW_c, - [RGFW_OS_BASED_VALUE(40, 0x44, 2, DOM_VK_D)] = RGFW_d, - [RGFW_OS_BASED_VALUE(26, 0x45, 14, DOM_VK_E)] = RGFW_e, - [RGFW_OS_BASED_VALUE(41, 0x46, 3, DOM_VK_F)] = RGFW_f, - [RGFW_OS_BASED_VALUE(42, 0x47, 5, DOM_VK_G)] = RGFW_g, - [RGFW_OS_BASED_VALUE(43, 0x48, 4, DOM_VK_H)] = RGFW_h, - [RGFW_OS_BASED_VALUE(31, 0x49, 34, DOM_VK_I)] = RGFW_i, - [RGFW_OS_BASED_VALUE(44, 0x4A, 38, DOM_VK_J)] = RGFW_j, - [RGFW_OS_BASED_VALUE(45, 0x4B, 40, DOM_VK_K)] = RGFW_k, - [RGFW_OS_BASED_VALUE(46, 0x4C, 37, DOM_VK_L)] = RGFW_l, - [RGFW_OS_BASED_VALUE(58, 0x4D, 46, DOM_VK_M)] = RGFW_m, - [RGFW_OS_BASED_VALUE(57, 0x4E, 45, DOM_VK_N)] = RGFW_n, - [RGFW_OS_BASED_VALUE(32, 0x4F, 31, DOM_VK_O)] = RGFW_o, - [RGFW_OS_BASED_VALUE(33, 0x50, 35, DOM_VK_P)] = RGFW_p, - [RGFW_OS_BASED_VALUE(24, 0x51, 12, DOM_VK_Q)] = RGFW_q, - [RGFW_OS_BASED_VALUE(27, 0x52, 15, DOM_VK_R)] = RGFW_r, - [RGFW_OS_BASED_VALUE(39, 0x53, 1, DOM_VK_S)] = RGFW_s, - [RGFW_OS_BASED_VALUE(28, 0x54, 17, DOM_VK_T)] = RGFW_t, - [RGFW_OS_BASED_VALUE(30, 0x55, 32, DOM_VK_U)] = RGFW_u, - [RGFW_OS_BASED_VALUE(55, 0x56, 9, DOM_VK_V)] = RGFW_v, - [RGFW_OS_BASED_VALUE(25, 0x57, 13, DOM_VK_W)] = RGFW_w, - [RGFW_OS_BASED_VALUE(53, 0x58, 7, DOM_VK_X)] = RGFW_x, - [RGFW_OS_BASED_VALUE(29, 0x59, 16, DOM_VK_Y)] = RGFW_y, - [RGFW_OS_BASED_VALUE(52, 0x5A, 6, DOM_VK_Z)] = RGFW_z, +#ifdef RGFW_WAYLAND +#include +#endif - [RGFW_OS_BASED_VALUE(60, 190, 47, DOM_VK_PERIOD)] = RGFW_Period, - [RGFW_OS_BASED_VALUE(59, 188, 43, DOM_VK_COMMA)] = RGFW_Comma, - [RGFW_OS_BASED_VALUE(61, 191, 44, DOM_VK_SLASH)] = RGFW_Slash, - [RGFW_OS_BASED_VALUE(34, 219, 33, DOM_VK_OPEN_BRACKET)] = RGFW_Bracket, - [RGFW_OS_BASED_VALUE(35, 221, 30, DOM_VK_CLOSE_BRACKET)] = RGFW_CloseBracket, - [RGFW_OS_BASED_VALUE(47, 186, 41, DOM_VK_SEMICOLON)] = RGFW_Semicolon, - [RGFW_OS_BASED_VALUE(48, 222, 39, DOM_VK_QUOTE)] = RGFW_Quote, - [RGFW_OS_BASED_VALUE(51, 322, 42, DOM_VK_BACK_SLASH)] = RGFW_BackSlash, +u8 RGFW_keycodes [RGFW_OS_BASED_VALUE(136, 337, 128, DOM_VK_WIN_OEM_CLEAR + 1, 130)] = { +#ifdef __cplusplus + 0 +}; +void RGFW_init_keys(void) { +#endif + RGFW_MAP [RGFW_OS_BASED_VALUE(49, 192, 50, DOM_VK_BACK_QUOTE, KEY_GRAVE)] = RGFW_Backtick RGFW_NEXT + + RGFW_MAP [RGFW_OS_BASED_VALUE(19, 0x30, 29, DOM_VK_0, KEY_0)] = RGFW_0 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(10, 0x31, 18, DOM_VK_1, KEY_1)] = RGFW_1 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(11, 0x32, 19, DOM_VK_2, KEY_2)] = RGFW_2 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(12, 0x33, 20, DOM_VK_3, KEY_3)] = RGFW_3 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(13, 0x34, 21, DOM_VK_4, KEY_4)] = RGFW_4 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(14, 0x35, 23, DOM_VK_5, KEY_5)] = RGFW_5 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(15, 0x36, 22, DOM_VK_6, KEY_6)] = RGFW_6 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(16, 0x37, 26, DOM_VK_7, KEY_7)] = RGFW_7 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(17, 0x38, 28, DOM_VK_8, KEY_8)] = RGFW_8 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(18, 0x39, 25, DOM_VK_9, KEY_9)] = RGFW_9, + + RGFW_MAP [RGFW_OS_BASED_VALUE(65, 0x20, 49, DOM_VK_SPACE, KEY_SPACE)] = RGFW_Space, + + RGFW_MAP [RGFW_OS_BASED_VALUE(38, 0x41, 0, DOM_VK_A, KEY_A)] = RGFW_a RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(56, 0x42, 11, DOM_VK_B, KEY_B)] = RGFW_b RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(54, 0x43, 8, DOM_VK_C, KEY_C)] = RGFW_c RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(40, 0x44, 2, DOM_VK_D, KEY_D)] = RGFW_d RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(26, 0x45, 14, DOM_VK_E, KEY_E)] = RGFW_e RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(41, 0x46, 3, DOM_VK_F, KEY_F)] = RGFW_f RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(42, 0x47, 5, DOM_VK_G, KEY_G)] = RGFW_g RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(43, 0x48, 4, DOM_VK_H, KEY_H)] = RGFW_h RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(31, 0x49, 34, DOM_VK_I, KEY_I)] = RGFW_i RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(44, 0x4A, 38, DOM_VK_J, KEY_J)] = RGFW_j RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(45, 0x4B, 40, DOM_VK_K, KEY_K)] = RGFW_k RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(46, 0x4C, 37, DOM_VK_L, KEY_L)] = RGFW_l RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(58, 0x4D, 46, DOM_VK_M, KEY_M)] = RGFW_m RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(57, 0x4E, 45, DOM_VK_N, KEY_N)] = RGFW_n RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(32, 0x4F, 31, DOM_VK_O, KEY_O)] = RGFW_o RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(33, 0x50, 35, DOM_VK_P, KEY_P)] = RGFW_p RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(24, 0x51, 12, DOM_VK_Q, KEY_Q)] = RGFW_q RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(27, 0x52, 15, DOM_VK_R, KEY_R)] = RGFW_r RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(39, 0x53, 1, DOM_VK_S, KEY_S)] = RGFW_s RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(28, 0x54, 17, DOM_VK_T, KEY_T)] = RGFW_t RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(30, 0x55, 32, DOM_VK_U, KEY_U)] = RGFW_u RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(55, 0x56, 9, DOM_VK_V, KEY_V)] = RGFW_v RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(25, 0x57, 13, DOM_VK_W, KEY_W)] = RGFW_w RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(53, 0x58, 7, DOM_VK_X, KEY_X)] = RGFW_x RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(29, 0x59, 16, DOM_VK_Y, KEY_Y)] = RGFW_y RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(52, 0x5A, 6, DOM_VK_Z, KEY_Z)] = RGFW_z, + + RGFW_MAP [RGFW_OS_BASED_VALUE(60, 190, 47, DOM_VK_PERIOD, KEY_DOT)] = RGFW_Period RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(59, 188, 43, DOM_VK_COMMA, KEY_COMMA)] = RGFW_Comma RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(61, 191, 44, DOM_VK_SLASH, KEY_SLASH)] = RGFW_Slash RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(34, 219, 33, DOM_VK_OPEN_BRACKET, KEY_LEFTBRACE)] = RGFW_Bracket RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(35, 221, 30, DOM_VK_CLOSE_BRACKET, KEY_RIGHTBRACE)] = RGFW_CloseBracket RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(47, 186, 41, DOM_VK_SEMICOLON, KEY_SEMICOLON)] = RGFW_Semicolon RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(48, 222, 39, DOM_VK_QUOTE, KEY_APOSTROPHE)] = RGFW_Quote RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(51, 322, 42, DOM_VK_BACK_SLASH, KEY_BACKSLASH)] = RGFW_BackSlash, - [RGFW_OS_BASED_VALUE(36, 0x0D, 36, DOM_VK_RETURN)] = RGFW_Return, - [RGFW_OS_BASED_VALUE(119, 0x2E, 118, DOM_VK_DELETE)] = RGFW_Delete, - [RGFW_OS_BASED_VALUE(77, 0x90, 72, DOM_VK_NUM_LOCK)] = RGFW_Numlock, - [RGFW_OS_BASED_VALUE(106, 0x6F, 82, DOM_VK_DIVIDE)] = RGFW_KP_Slash, - [RGFW_OS_BASED_VALUE(63, 0x6A, 76, DOM_VK_MULTIPLY)] = RGFW_Multiply, - [RGFW_OS_BASED_VALUE(82, 0x6D, 67, DOM_VK_SUBTRACT)] = RGFW_KP_Minus, - [RGFW_OS_BASED_VALUE(87, 0x61, 84, DOM_VK_NUMPAD1)] = RGFW_KP_1, - [RGFW_OS_BASED_VALUE(88, 0x62, 85, DOM_VK_NUMPAD2)] = RGFW_KP_2, - [RGFW_OS_BASED_VALUE(89, 0x63, 86, DOM_VK_NUMPAD3)] = RGFW_KP_3, - [RGFW_OS_BASED_VALUE(83, 0x64, 87, DOM_VK_NUMPAD4)] = RGFW_KP_4, - [RGFW_OS_BASED_VALUE(84, 0x65, 88, DOM_VK_NUMPAD5)] = RGFW_KP_5, - [RGFW_OS_BASED_VALUE(85, 0x66, 89, DOM_VK_NUMPAD6)] = RGFW_KP_6, - [RGFW_OS_BASED_VALUE(79, 0x67, 90, DOM_VK_NUMPAD7)] = RGFW_KP_7, - [RGFW_OS_BASED_VALUE(80, 0x68, 92, DOM_VK_NUMPAD8)] = RGFW_KP_8, - [RGFW_OS_BASED_VALUE(81, 0x69, 93, DOM_VK_NUMPAD9)] = RGFW_KP_9, - [RGFW_OS_BASED_VALUE(90, 0x60, 83, DOM_VK_NUMPAD0)] = RGFW_KP_0, - [RGFW_OS_BASED_VALUE(91, 0x6E, 65, DOM_VK_DECIMAL)] = RGFW_KP_Period, - [RGFW_OS_BASED_VALUE(104, 0x92, 77, 0)] = RGFW_KP_Return, + RGFW_MAP [RGFW_OS_BASED_VALUE(36, 0x0D, 36, DOM_VK_RETURN, KEY_ENTER)] = RGFW_Return RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(119, 0x2E, 118, DOM_VK_DELETE, KEY_DELETE)] = RGFW_Delete RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(77, 0x90, 72, DOM_VK_NUM_LOCK, KEY_NUMLOCK)] = RGFW_Numlock RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(106, 0x6F, 82, DOM_VK_DIVIDE, KEY_KPSLASH)] = RGFW_KP_Slash RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(63, 0x6A, 76, DOM_VK_MULTIPLY, KEY_KPASTERISK)] = RGFW_Multiply RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(82, 0x6D, 67, DOM_VK_SUBTRACT, KEY_KPMINUS)] = RGFW_KP_Minus RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(87, 0x61, 84, DOM_VK_NUMPAD1, KEY_KP1)] = RGFW_KP_1 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(88, 0x62, 85, DOM_VK_NUMPAD2, KEY_KP2)] = RGFW_KP_2 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(89, 0x63, 86, DOM_VK_NUMPAD3, KEY_KP3)] = RGFW_KP_3 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(83, 0x64, 87, DOM_VK_NUMPAD4, KEY_KP4)] = RGFW_KP_4 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(84, 0x65, 88, DOM_VK_NUMPAD5, KEY_KP5)] = RGFW_KP_5 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(85, 0x66, 89, DOM_VK_NUMPAD6, KEY_KP6)] = RGFW_KP_6 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(79, 0x67, 90, DOM_VK_NUMPAD7, KEY_KP7)] = RGFW_KP_7 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(80, 0x68, 92, DOM_VK_NUMPAD8, KEY_KP8)] = RGFW_KP_8 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(81, 0x69, 93, DOM_VK_NUMPAD9, KEY_KP9)] = RGFW_KP_9 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(90, 0x60, 83, DOM_VK_NUMPAD0, KEY_KP0)] = RGFW_KP_0 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(91, 0x6E, 65, DOM_VK_DECIMAL, KEY_KPDOT)] = RGFW_KP_Period RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(104, 0x92, 77, 0, KEY_KPENTER)] = RGFW_KP_Return, - [RGFW_OS_BASED_VALUE(20, 189, 27, DOM_VK_HYPHEN_MINUS)] = RGFW_Minus, - [RGFW_OS_BASED_VALUE(21, 187, 24, DOM_VK_EQUALS)] = RGFW_Equals, - [RGFW_OS_BASED_VALUE(22, 8, 51, DOM_VK_BACK_SPACE)] = RGFW_BackSpace, - [RGFW_OS_BASED_VALUE(23, 0x09, 48, DOM_VK_TAB)] = RGFW_Tab, - [RGFW_OS_BASED_VALUE(66, 20, 57, DOM_VK_CAPS_LOCK)] = RGFW_CapsLock, - [RGFW_OS_BASED_VALUE(50, 0xA0, 56, DOM_VK_SHIFT)] = RGFW_ShiftL, - [RGFW_OS_BASED_VALUE(37, 0x11, 59, DOM_VK_CONTROL)] = RGFW_ControlL, - [RGFW_OS_BASED_VALUE(64, 164, 58, DOM_VK_ALT)] = RGFW_AltL, - [RGFW_OS_BASED_VALUE(133, 0x5B, 55, DOM_VK_WIN)] = RGFW_SuperL, + RGFW_MAP [RGFW_OS_BASED_VALUE(20, 189, 27, DOM_VK_HYPHEN_MINUS, KEY_MINUS)] = RGFW_Minus RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(21, 187, 24, DOM_VK_EQUALS, KEY_EQUAL)] = RGFW_Equals RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(22, 8, 51, DOM_VK_BACK_SPACE, KEY_BACKSPACE)] = RGFW_BackSpace RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(23, 0x09, 48, DOM_VK_TAB, KEY_TAB)] = RGFW_Tab RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(66, 20, 57, DOM_VK_CAPS_LOCK, KEY_CAPSLOCK)] = RGFW_CapsLock RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(50, 0x10, 56, DOM_VK_SHIFT, KEY_LEFTSHIFT)] = RGFW_ShiftL RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(37, 0x11, 59, DOM_VK_CONTROL, KEY_LEFTCTRL)] = RGFW_ControlL RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(64,0x12, 58, DOM_VK_ALT, KEY_LEFTALT)] = RGFW_AltL RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(133, 0x5B, 55, DOM_VK_WIN, KEY_LEFTMETA)] = RGFW_SuperL, #if !defined(RGFW_WINDOWS) && !defined(RGFW_MACOS) && !defined(RGFW_WEBASM) - [RGFW_OS_BASED_VALUE(105, 0x11, 59, 0)] = RGFW_ControlR, - [RGFW_OS_BASED_VALUE(135, 0xA4, 55, 0)] = RGFW_SuperR, + RGFW_MAP [RGFW_OS_BASED_VALUE(105, 0x11, 59, 0, KEY_RIGHTCTRL)] = RGFW_ControlR RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(135, 0xA4, 55, 0, KEY_RIGHTMETA)] = RGFW_SuperR, + RGFW_MAP [RGFW_OS_BASED_VALUE(62, 0x5C, 56, 0, KEY_RIGHTSHIFT)] = RGFW_ShiftR RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(108, 165, 58, 0, KEY_RIGHTALT)] = RGFW_AltR, #endif - #if !defined(RGFW_MACOS) && !defined(RGFW_WEBASM) - [RGFW_OS_BASED_VALUE(62, 0x5C, 56, 0)] = RGFW_ShiftR, - [RGFW_OS_BASED_VALUE(108, 165, 58, 0)] = RGFW_AltR, - #endif - - [RGFW_OS_BASED_VALUE(67, 0x70, 127, DOM_VK_F1)] = RGFW_F1, - [RGFW_OS_BASED_VALUE(68, 0x71, 121, DOM_VK_F2)] = RGFW_F2, - [RGFW_OS_BASED_VALUE(69, 0x72, 100, DOM_VK_F3)] = RGFW_F3, - [RGFW_OS_BASED_VALUE(70, 0x73, 119, DOM_VK_F4)] = RGFW_F4, - [RGFW_OS_BASED_VALUE(71, 0x74, 97, DOM_VK_F5)] = RGFW_F5, - [RGFW_OS_BASED_VALUE(72, 0x75, 98, DOM_VK_F6)] = RGFW_F6, - [RGFW_OS_BASED_VALUE(73, 0x76, 99, DOM_VK_F7)] = RGFW_F7, - [RGFW_OS_BASED_VALUE(74, 0x77, 101, DOM_VK_F8)] = RGFW_F8, - [RGFW_OS_BASED_VALUE(75, 0x78, 102, DOM_VK_F9)] = RGFW_F9, - [RGFW_OS_BASED_VALUE(76, 0x79, 110, DOM_VK_F10)] = RGFW_F10, - [RGFW_OS_BASED_VALUE(95, 0x7A, 104, DOM_VK_F11)] = RGFW_F11, - [RGFW_OS_BASED_VALUE(96, 0x7B, 112, DOM_VK_F12)] = RGFW_F12, - [RGFW_OS_BASED_VALUE(111, 0x26, 126, DOM_VK_UP)] = RGFW_Up, - [RGFW_OS_BASED_VALUE(116, 0x28, 125, DOM_VK_DOWN)] = RGFW_Down, - [RGFW_OS_BASED_VALUE(113, 0x25, 123, DOM_VK_LEFT)] = RGFW_Left, - [RGFW_OS_BASED_VALUE(114, 0x27, 124, DOM_VK_RIGHT)] = RGFW_Right, - [RGFW_OS_BASED_VALUE(118, 0x2D, 115, DOM_VK_INSERT)] = RGFW_Insert, - [RGFW_OS_BASED_VALUE(115, 0x23, 120, DOM_VK_END)] = RGFW_End, - [RGFW_OS_BASED_VALUE(112, 336, 117, DOM_VK_PAGE_UP)] = RGFW_PageUp, - [RGFW_OS_BASED_VALUE(117, 325, 122, DOM_VK_PAGE_DOWN)] = RGFW_PageDown, - [RGFW_OS_BASED_VALUE(9, 0x1B, 53, DOM_VK_ESCAPE)] = RGFW_Escape, - [RGFW_OS_BASED_VALUE(110, 0x24, 116, DOM_VK_HOME)] = RGFW_Home, + RGFW_MAP [RGFW_OS_BASED_VALUE(67, 0x70, 127, DOM_VK_F1, KEY_F1)] = RGFW_F1 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(68, 0x71, 121, DOM_VK_F2, KEY_F2)] = RGFW_F2 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(69, 0x72, 100, DOM_VK_F3, KEY_F3)] = RGFW_F3 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(70, 0x73, 119, DOM_VK_F4, KEY_F4)] = RGFW_F4 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(71, 0x74, 97, DOM_VK_F5, KEY_F5)] = RGFW_F5 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(72, 0x75, 98, DOM_VK_F6, KEY_F6)] = RGFW_F6 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(73, 0x76, 99, DOM_VK_F7, KEY_F7)] = RGFW_F7 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(74, 0x77, 101, DOM_VK_F8, KEY_F8)] = RGFW_F8 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(75, 0x78, 102, DOM_VK_F9, KEY_F9)] = RGFW_F9 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(76, 0x79, 110, DOM_VK_F10, KEY_F10)] = RGFW_F10 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(95, 0x7A, 104, DOM_VK_F11, KEY_F11)] = RGFW_F11 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(96, 0x7B, 112, DOM_VK_F12, KEY_F12)] = RGFW_F12 RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(111, 0x26, 126, DOM_VK_UP, KEY_UP)] = RGFW_Up RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(116, 0x28, 125, DOM_VK_DOWN, KEY_DOWN)] = RGFW_Down RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(113, 0x25, 123, DOM_VK_LEFT, KEY_LEFT)] = RGFW_Left RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(114, 0x27, 124, DOM_VK_RIGHT, KEY_RIGHT)] = RGFW_Right RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(118, 0x2D, 115, DOM_VK_INSERT, KEY_INSERT)] = RGFW_Insert RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(115, 0x23, 120, DOM_VK_END, KEY_END)] = RGFW_End RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(112, 336, 117, DOM_VK_PAGE_UP, KEY_PAGEUP)] = RGFW_PageUp RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(117, 325, 122, DOM_VK_PAGE_DOWN, KEY_PAGEDOWN)] = RGFW_PageDown RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(9, 0x1B, 53, DOM_VK_ESCAPE, KEY_ESC)] = RGFW_Escape RGFW_NEXT + RGFW_MAP [RGFW_OS_BASED_VALUE(110, 0x24, 116, DOM_VK_HOME, KEY_HOME)] = RGFW_Home RGFW_NEXT +#ifndef __cplusplus }; +#else +} +#endif + +#undef RGFW_NEXT +#undef RGFW_MAP typedef struct { b8 current : 1; @@ -1244,6 +1370,12 @@ RGFW_keyState RGFW_keyboard[final_key] = { {0, 0} }; RGFWDEF u32 RGFW_apiKeyCodeToRGFW(u32 keycode); u32 RGFW_apiKeyCodeToRGFW(u32 keycode) { + #ifdef __cplusplus + if (RGFW_OS_BASED_VALUE(49, 192, 50, DOM_VK_BACK_QUOTE, KEY_GRAVE) != RGFW_Backtick) { + RGFW_init_keys(); + } + #endif + /* make sure the key isn't out of bounds */ if (keycode > sizeof(RGFW_keycodes) / sizeof(u8)) return 0; @@ -1253,22 +1385,54 @@ u32 RGFW_apiKeyCodeToRGFW(u32 keycode) { RGFWDEF void RGFW_resetKey(void); void RGFW_resetKey(void) { - size_t len = final_key; /* last_key == length */ + size_t len = final_key; /*!< last_key == length */ - size_t i; /* reset each previous state */ + size_t i; /*!< reset each previous state */ for (i = 0; i < len; i++) RGFW_keyboard[i].prev = 0; } +b8 RGFW_shouldShift(u32 keycode, u8 lockState) { + #define RGFW_xor(x, y) (( (x) && (!(y)) ) || ((y) && (!(x)) )) + b8 caps4caps = (lockState & RGFW_CAPSLOCK) && ((keycode >= RGFW_a) && (keycode <= RGFW_z)); + b8 shouldShift = RGFW_xor((RGFW_isPressed(NULL, RGFW_ShiftL) || RGFW_isPressed(NULL, RGFW_ShiftR)), caps4caps); + #undef RGFW_xor + + return shouldShift; +} + +char RGFW_keyCodeToChar(u32 keycode, b8 shift) { + static const char map[] = { + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, '`', '0', '1', '2', '3', '4', '5', '6', '7', '8', + '9', '-', '=', 0, '\t', 0, 0, 0, 0, 0, 0, 0, 0, 0, ' ', 'a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j', 'k', 'l', 'm', 'n', 'o', + 'p', 'q', 'r', 's', 't', 'u', 'v', 'w', 'x', 'y', 'z', '.', ',', '/', '[', ']', ';', '\n', '\'', '\\', + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, '/', '*', '-', '1', '2', '3', '3', '5', '6', '7', '8', '9', '0', '\n' + }; + + static const char mapCaps[] = { + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, '~', ')', '!', '@', '#', '$', '%', '^', '&', '*', + '(', '_', '+', 0, '0', 0, 0, 0, 0, 0, 0, 0, 0, 0, ' ', 'A', 'B', 'C', 'D', 'E', 'F', 'G', + 'H', 'I', 'J', 'K', 'L', 'M', 'N', 'O', 'P', 'Q', 'R', 'S', 'T', 'U', 'V', 'W', + 'X', 'Y', 'Z', '>', '<', '?', '{', '}', ':', '\n', '"', '|', + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, '?', '*', '-', 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 + }; + + if (shift == RGFW_FALSE) + return map[keycode]; + return mapCaps[keycode]; +} + +char RGFW_keyCodeToCharAuto(u32 keycode, u8 lockState) { return RGFW_keyCodeToChar(keycode, RGFW_shouldShift(keycode, lockState)); } + /* this is the end of keycode data */ /* joystick data */ -u8 RGFW_jsPressed[4][16]; /* if a key is currently pressed or not (per joystick) */ +u8 RGFW_jsPressed[4][16]; /*!< if a key is currently pressed or not (per joystick) */ -i32 RGFW_joysticks[4]; /* limit of 4 joysticks at a time */ -u16 RGFW_joystickCount; /* the actual amount of joysticks */ +i32 RGFW_joysticks[4]; /*!< limit of 4 joysticks at a time */ +u16 RGFW_joystickCount; /*!< the actual amount of joysticks */ /* event callback defines start here @@ -1325,19 +1489,73 @@ void RGFW_window_checkEvents(RGFW_window* win, i32 waitMS) { #endif } -void RGFW_setWindowMoveCallback(RGFW_windowmovefunc func) { RGFW_windowMoveCallback = func; } -void RGFW_setWindowResizeCallback(RGFW_windowresizefunc func) { RGFW_windowResizeCallback = func; } -void RGFW_setWindowQuitCallback(RGFW_windowquitfunc func) { RGFW_windowQuitCallback = func; } -void RGFW_setMousePosCallback(RGFW_mouseposfunc func) { RGFW_mousePosCallback = func; } -void RGFW_setWindowRefreshCallback(RGFW_windowrefreshfunc func) { RGFW_windowRefreshCallback = func; } -void RGFW_setFocusCallback(RGFW_focusfunc func) { RGFW_focusCallback = func; } -void RGFW_setMouseNotifyCallBack(RGFW_mouseNotifyfunc func) { RGFW_mouseNotifyCallBack = func; } -void RGFW_setDndCallback(RGFW_dndfunc func) { RGFW_dndCallback = func; } -void RGFW_setDndInitCallback(RGFW_dndInitfunc func) { RGFW_dndInitCallback = func; } -void RGFW_setKeyCallback(RGFW_keyfunc func) { RGFW_keyCallback = func; } -void RGFW_setMouseButtonCallback(RGFW_mousebuttonfunc func) { RGFW_mouseButtonCallback = func; } -void RGFW_setjsButtonCallback(RGFW_jsButtonfunc func) { RGFW_jsButtonCallback = func; } -void RGFW_setjsAxisCallback(RGFW_jsAxisfunc func) { RGFW_jsAxisCallback = func; } +RGFW_windowmovefunc RGFW_setWindowMoveCallback(RGFW_windowmovefunc func) { + RGFW_windowmovefunc prev = (RGFW_windowMoveCallback == RGFW_windowmovefuncEMPTY) ? NULL : RGFW_windowMoveCallback; + RGFW_windowMoveCallback = func; + return prev; +} +RGFW_windowresizefunc RGFW_setWindowResizeCallback(RGFW_windowresizefunc func) { + RGFW_windowresizefunc prev = (RGFW_windowResizeCallback == RGFW_windowresizefuncEMPTY) ? NULL : RGFW_windowResizeCallback; + RGFW_windowResizeCallback = func; + return prev; +} +RGFW_windowquitfunc RGFW_setWindowQuitCallback(RGFW_windowquitfunc func) { + RGFW_windowquitfunc prev = (RGFW_windowQuitCallback == RGFW_windowquitfuncEMPTY) ? NULL : RGFW_windowQuitCallback; + RGFW_windowQuitCallback = func; + return prev; +} + +RGFW_mouseposfunc RGFW_setMousePosCallback(RGFW_mouseposfunc func) { + RGFW_mouseposfunc prev = (RGFW_mousePosCallback == RGFW_mouseposfuncEMPTY) ? NULL : RGFW_mousePosCallback; + RGFW_mousePosCallback = func; + return prev; +} +RGFW_windowrefreshfunc RGFW_setWindowRefreshCallback(RGFW_windowrefreshfunc func) { + RGFW_windowrefreshfunc prev = (RGFW_windowRefreshCallback == RGFW_windowrefreshfuncEMPTY) ? NULL : RGFW_windowRefreshCallback; + RGFW_windowRefreshCallback = func; + return prev; +} +RGFW_focusfunc RGFW_setFocusCallback(RGFW_focusfunc func) { + RGFW_focusfunc prev = (RGFW_focusCallback == RGFW_focusfuncEMPTY) ? NULL : RGFW_focusCallback; + RGFW_focusCallback = func; + return prev; +} + +RGFW_mouseNotifyfunc RGFW_setMouseNotifyCallBack(RGFW_mouseNotifyfunc func) { + RGFW_mouseNotifyfunc prev = (RGFW_mouseNotifyCallBack == RGFW_mouseNotifyfuncEMPTY) ? NULL : RGFW_mouseNotifyCallBack; + RGFW_mouseNotifyCallBack = func; + return prev; +} +RGFW_dndfunc RGFW_setDndCallback(RGFW_dndfunc func) { + RGFW_dndfunc prev = (RGFW_dndCallback == RGFW_dndfuncEMPTY) ? NULL : RGFW_dndCallback; + RGFW_dndCallback = func; + return prev; +} +RGFW_dndInitfunc RGFW_setDndInitCallback(RGFW_dndInitfunc func) { + RGFW_dndInitfunc prev = (RGFW_dndInitCallback == RGFW_dndInitfuncEMPTY) ? NULL : RGFW_dndInitCallback; + RGFW_dndInitCallback = func; + return prev; +} +RGFW_keyfunc RGFW_setKeyCallback(RGFW_keyfunc func) { + RGFW_keyfunc prev = (RGFW_keyCallback == RGFW_keyfuncEMPTY) ? NULL : RGFW_keyCallback; + RGFW_keyCallback = func; + return prev; +} +RGFW_mousebuttonfunc RGFW_setMouseButtonCallback(RGFW_mousebuttonfunc func) { + RGFW_mousebuttonfunc prev = (RGFW_mouseButtonCallback == RGFW_mousebuttonfuncEMPTY) ? NULL : RGFW_mouseButtonCallback; + RGFW_mouseButtonCallback = func; + return prev; +} +RGFW_jsButtonfunc RGFW_setjsButtonCallback(RGFW_jsButtonfunc func) { + RGFW_jsButtonfunc prev = (RGFW_jsButtonCallback == RGFW_jsButtonfuncEMPTY) ? NULL : RGFW_jsButtonCallback; + RGFW_jsButtonCallback = func; + return prev; +} +RGFW_jsAxisfunc RGFW_setjsAxisCallback(RGFW_jsAxisfunc func) { + RGFW_jsAxisfunc prev = (RGFW_jsAxisCallback == RGFW_jsAxisfuncEMPTY) ? NULL : RGFW_jsAxisCallback; + RGFW_jsAxisCallback = func; + return prev; +} /* no more event call back defines */ @@ -1368,7 +1586,7 @@ RGFWDEF RGFW_window* RGFW_window_basic_init(RGFW_rect rect, u16 args); /* do a basic initialization for RGFW_window, this is to standard it for each OS */ RGFW_window* RGFW_window_basic_init(RGFW_rect rect, u16 args) { - RGFW_window* win = (RGFW_window*) RGFW_MALLOC(sizeof(RGFW_window)); /* make a new RGFW struct */ + RGFW_window* win = (RGFW_window*) RGFW_MALLOC(sizeof(RGFW_window)); /*!< make a new RGFW struct */ /* clear out dnd info */ #ifdef RGFW_ALLOC_DROPFILES @@ -1386,19 +1604,15 @@ RGFW_window* RGFW_window_basic_init(RGFW_rect rect, u16 args) { assert(win->src.display != NULL); Screen* scrn = DefaultScreenOfDisplay((Display*)win->src.display); - RGFW_area screenR = RGFW_AREA(scrn->width, scrn->height); + RGFW_area screenR = RGFW_AREA((u32)scrn->width, (u32)scrn->height); #endif /* rect based the requested args */ if (args & RGFW_FULLSCREEN) rect = RGFW_RECT(0, 0, screenR.w, screenR.h); - if (args & RGFW_CENTER) - rect = RGFW_RECT((screenR.w - rect.w) / 2, (screenR.h - rect.h) / 2, rect.w, rect.h); - /* set and init the new window's data */ win->r = rect; - win->fpsCap = 0; win->event.inFocus = 1; win->event.droppedFilesCount = 0; RGFW_joystickCount = 0; @@ -1412,7 +1626,7 @@ RGFW_window* RGFW_window_basic_init(RGFW_rect rect, u16 args) { void RGFW_window_scaleToMonitor(RGFW_window* win) { RGFW_monitor monitor = RGFW_window_getMonitor(win); - RGFW_window_resize(win, RGFW_AREA(((u32) monitor.scaleX) * win->r.w, ((u32) monitor.scaleX) * win->r.h)); + RGFW_window_resize(win, RGFW_AREA((u32)(monitor.scaleX * (float)win->r.w), (u32)(monitor.scaleX * (float)win->r.h))); } #endif @@ -1422,9 +1636,19 @@ RGFW_window* RGFW_root = NULL; #define RGFW_HOLD_MOUSE (1L<<2) /*!< hold the moues still */ #define RGFW_MOUSE_LEFT (1L<<3) /* if mouse left the window */ +#ifdef RGFW_MACOS +RGFWDEF void RGFW_window_cocoaSetLayer(RGFW_window* win, void* layer); +RGFWDEF void* RGFW_cocoaGetLayer(void); +#endif + +char* RGFW_className = NULL; +void RGFW_setClassName(char* name) { + RGFW_className = name; +} + void RGFW_clipboardFree(char* str) { RGFW_FREE(str); } -RGFW_keyState RGFW_mouseButtons[5] = { 0 }; +RGFW_keyState RGFW_mouseButtons[5] = { {0, 0}, {0, 0}, {0, 0}, {0, 0}, {0, 0} }; b8 RGFW_isMousePressed(RGFW_window* win, u8 button) { assert(win != NULL); @@ -1461,20 +1685,28 @@ b8 RGFW_isReleased(RGFW_window* win, u8 key) { return (!RGFW_isPressed(win, key) && RGFW_wasPressed(win, key)); } -void RGFW_window_makeCurrent(RGFW_window* win) { - assert(win != NULL); +#if defined(RGFW_WINDOWS) && defined(RGFW_DIRECTX) /* defines for directX context*/ + RGFW_directXinfo RGFW_dxInfo; + RGFW_directXinfo* RGFW_getDirectXInfo(void) { return &RGFW_dxInfo; } +#endif +void RGFW_window_makeCurrent(RGFW_window* win) { #if defined(RGFW_WINDOWS) && defined(RGFW_DIRECTX) - RGFW_dxInfo.pDeviceContext->lpVtbl->OMSetRenderTargets(RGFW_dxInfo.pDeviceContext, 1, &win->src.renderTargetView, NULL); + if (win == NULL) + RGFW_dxInfo.pDeviceContext->lpVtbl->OMSetRenderTargets(RGFW_dxInfo.pDeviceContext, 1, NULL, NULL); + else + RGFW_dxInfo.pDeviceContext->lpVtbl->OMSetRenderTargets(RGFW_dxInfo.pDeviceContext, 1, &win->src.renderTargetView, NULL); #elif defined(RGFW_OPENGL) RGFW_window_makeCurrent_OpenGL(win); +#else + RGFW_UNUSED(win) #endif } void RGFW_window_setGPURender(RGFW_window* win, i8 set) { if (!set && !(win->_winArgs & RGFW_NO_GPU_RENDER)) win->_winArgs |= RGFW_NO_GPU_RENDER; - + else if (set && win->_winArgs & RGFW_NO_GPU_RENDER) win->_winArgs ^= RGFW_NO_GPU_RENDER; } @@ -1510,6 +1742,7 @@ void RGFW_window_setShouldClose(RGFW_window* win) { win->event.type = RGFW_quit; #endif RGFWDEF void RGFW_captureCursor(RGFW_window* win, RGFW_rect); +RGFWDEF void RGFW_releaseCursor(RGFW_window* win); void RGFW_window_mouseHold(RGFW_window* win, RGFW_area area) { if ((win->_winArgs & RGFW_HOLD_MOUSE)) @@ -1521,25 +1754,26 @@ void RGFW_window_mouseHold(RGFW_window* win, RGFW_area area) { win->_winArgs |= RGFW_HOLD_MOUSE; RGFW_captureCursor(win, win->r); - RGFW_window_moveMouse(win, RGFW_POINT(win->r.x + (area.w), win->r.y + (area.h))); + RGFW_window_moveMouse(win, RGFW_POINT(win->r.x + (win->r.w / 2), win->r.y + (win->r.h / 2))); } void RGFW_window_mouseUnhold(RGFW_window* win) { if ((win->_winArgs & RGFW_HOLD_MOUSE)) { win->_winArgs ^= RGFW_HOLD_MOUSE; - RGFW_captureCursor(win, RGFW_RECT(0, 0, 0, 0)); + RGFW_releaseCursor(win); } } -void RGFW_window_checkFPS(RGFW_window* win) { +u32 RGFW_window_checkFPS(RGFW_window* win, u32 fpsCap) { u64 deltaTime = RGFW_getTimeNS() - win->event.frameTime; + u32 output_fps = 0; u64 fps = round(1e+9 / deltaTime); - win->event.fps = fps; + output_fps= fps; - if (win->fpsCap && fps > win->fpsCap) { - u64 frameTimeNS = 1e+9 / win->fpsCap; + if (fpsCap && fps > fpsCap) { + u64 frameTimeNS = 1e+9 / fpsCap; u64 sleepTimeMS = (frameTimeNS - deltaTime) / 1e6; if (sleepTimeMS > 0) { @@ -1550,12 +1784,14 @@ void RGFW_window_checkFPS(RGFW_window* win) { win->event.frameTime = RGFW_getTimeNS(); - if (win->fpsCap == 0) - return; + if (fpsCap == 0) + return (u32) output_fps; deltaTime = RGFW_getTimeNS() - win->event.frameTime2; - win->event.fps = round(1e+9 / deltaTime); + output_fps = round(1e+9 / deltaTime); win->event.frameTime2 = RGFW_getTimeNS(); + + return output_fps; } u32 RGFW_isPressedJS(RGFW_window* win, u16 c, u8 button) { @@ -1586,7 +1822,7 @@ void RGFW_updateLockState(RGFW_window* win, b8 capital, b8 numlock) { win->event.lockState ^= RGFW_NUMLOCK; } -#if defined(RGFW_X11) || defined(RGFW_MACOS) +#if defined(RGFW_X11) || defined(RGFW_MACOS) || defined(RGFW_WEBASM) || defined(RGFW_WAYLAND) struct timespec; int nanosleep(const struct timespec* duration, struct timespec* rem); @@ -1603,7 +1839,7 @@ void RGFW_updateLockState(RGFW_window* win, b8 capital, b8 numlock) { #endif /* - graphics API spcific code (end of generic code) + graphics API specific code (end of generic code) starts here */ @@ -1615,12 +1851,13 @@ void RGFW_updateLockState(RGFW_window* win, b8 capital, b8 numlock) { #if defined(RGFW_OPENGL) || defined(RGFW_EGL) || defined(RGFW_OSMESA) #ifdef RGFW_WINDOWS #define WIN32_LEAN_AND_MEAN + #define OEMRESOURCE #include #endif - #ifndef __APPLE__ + #if !defined(__APPLE__) && !defined(RGFW_NO_GL_HEADER) #include - #else + #elif defined(__APPLE__) #ifndef GL_SILENCE_DEPRECATION #define GL_SILENCE_DEPRECATION #endif @@ -1631,11 +1868,12 @@ void RGFW_updateLockState(RGFW_window* win, b8 capital, b8 numlock) { /* EGL, normal OpenGL only */ #if !defined(RGFW_OSMESA) i32 RGFW_majorVersion = 0, RGFW_minorVersion = 0; + b8 RGFW_profile = RGFW_GL_CORE; #ifndef RGFW_EGL - i32 RGFW_STENCIL = 8, RGFW_SAMPLES = 4, RGFW_STEREO = GL_FALSE, RGFW_AUX_BUFFERS = 0; + i32 RGFW_STENCIL = 8, RGFW_SAMPLES = 4, RGFW_STEREO = 0, RGFW_AUX_BUFFERS = 0, RGFW_DOUBLE_BUFFER = 1; #else - i32 RGFW_STENCIL = 0, RGFW_SAMPLES = 0, RGFW_STEREO = GL_FALSE, RGFW_AUX_BUFFERS = 0; + i32 RGFW_STENCIL = 0, RGFW_SAMPLES = 0, RGFW_STEREO = 0, RGFW_AUX_BUFFERS = 0, RGFW_DOUBLE_BUFFER = 1; #endif @@ -1643,55 +1881,44 @@ void RGFW_updateLockState(RGFW_window* win, b8 capital, b8 numlock) { void RGFW_setGLSamples(i32 samples) { RGFW_SAMPLES = samples; } void RGFW_setGLStereo(i32 stereo) { RGFW_STEREO = stereo; } void RGFW_setGLAuxBuffers(i32 auxBuffers) { RGFW_AUX_BUFFERS = auxBuffers; } + void RGFW_setDoubleBuffer(b8 useDoubleBuffer) { RGFW_DOUBLE_BUFFER = useDoubleBuffer; } - void RGFW_setGLVersion(i32 major, i32 minor) { + void RGFW_setGLVersion(b8 profile, i32 major, i32 minor) { + RGFW_profile = profile; RGFW_majorVersion = major; RGFW_minorVersion = minor; } - u8* RGFW_getMaxGLVersion(void) { - RGFW_window* dummy = RGFW_createWindow("dummy", RGFW_RECT(0, 0, 1, 1), 0); - - const char* versionStr = (const char*) glGetString(GL_VERSION); - - static u8 version[2]; - version[0] = versionStr[0] - '0', - version[1] = versionStr[2] - '0'; - - RGFW_window_close(dummy); - - return version; - } - /* OPENGL normal only (no EGL / OSMesa) */ #ifndef RGFW_EGL -#define RGFW_GL_RENDER_TYPE RGFW_OS_BASED_VALUE(GLX_X_VISUAL_TYPE, 0x2003, 73, 0) - #define RGFW_GL_ALPHA_SIZE RGFW_OS_BASED_VALUE(GLX_ALPHA_SIZE, 0x201b, 11, 0) - #define RGFW_GL_DEPTH_SIZE RGFW_OS_BASED_VALUE(GLX_DEPTH_SIZE, 0x2022, 12, 0) - #define RGFW_GL_DOUBLEBUFFER RGFW_OS_BASED_VALUE(GLX_DOUBLEBUFFER, 0x2011, 5, 0) - #define RGFW_GL_STENCIL_SIZE RGFW_OS_BASED_VALUE(GLX_STENCIL_SIZE, 0x2023, 13, 0) - #define RGFW_GL_SAMPLES RGFW_OS_BASED_VALUE(GLX_SAMPLES, 0x2042, 55, 0) - #define RGFW_GL_STEREO RGFW_OS_BASED_VALUE(GLX_STEREO, 0x2012, 6, 0) - #define RGFW_GL_AUX_BUFFERS RGFW_OS_BASED_VALUE(GLX_AUX_BUFFERS, 0x2024, 7, 0) +#define RGFW_GL_RENDER_TYPE RGFW_OS_BASED_VALUE(GLX_X_VISUAL_TYPE, 0x2003, 73, 0, 0) + #define RGFW_GL_ALPHA_SIZE RGFW_OS_BASED_VALUE(GLX_ALPHA_SIZE, 0x201b, 11, 0, 0) + #define RGFW_GL_DEPTH_SIZE RGFW_OS_BASED_VALUE(GLX_DEPTH_SIZE, 0x2022, 12, 0, 0) + #define RGFW_GL_DOUBLEBUFFER RGFW_OS_BASED_VALUE(GLX_DOUBLEBUFFER, 0x2011, 5, 0, 0) + #define RGFW_GL_STENCIL_SIZE RGFW_OS_BASED_VALUE(GLX_STENCIL_SIZE, 0x2023, 13, 0, 0) + #define RGFW_GL_SAMPLES RGFW_OS_BASED_VALUE(GLX_SAMPLES, 0x2042, 55, 0, 0) + #define RGFW_GL_STEREO RGFW_OS_BASED_VALUE(GLX_STEREO, 0x2012, 6, 0, 0) + #define RGFW_GL_AUX_BUFFERS RGFW_OS_BASED_VALUE(GLX_AUX_BUFFERS, 0x2024, 7, 0, 0) #if defined(RGFW_X11) || defined(RGFW_WINDOWS) - #define RGFW_GL_DRAW RGFW_OS_BASED_VALUE(GLX_X_RENDERABLE, 0x2001, 0, 0) - #define RGFW_GL_DRAW_TYPE RGFW_OS_BASED_VALUE(GLX_RENDER_TYPE, 0x2013, 0, 0) - #define RGFW_GL_USE_OPENGL RGFW_OS_BASED_VALUE(GLX_USE_GL, 0x2010, 0, 0) - #define RGFW_GL_FULL_FORMAT RGFW_OS_BASED_VALUE(GLX_TRUE_COLOR, 0x2027, 0, 0) - #define RGFW_GL_RED_SIZE RGFW_OS_BASED_VALUE(GLX_RED_SIZE, 0x2015, 0, 0) - #define RGFW_GL_GREEN_SIZE RGFW_OS_BASED_VALUE(GLX_GREEN_SIZE, 0x2017, 0, 0) - #define RGFW_GL_BLUE_SIZE RGFW_OS_BASED_VALUE(GLX_BLUE_SIZE, 0x2019, 0, 0) - #define RGFW_GL_USE_RGBA RGFW_OS_BASED_VALUE(GLX_RGBA_BIT, 0x202B, 0, 0) + #define RGFW_GL_DRAW RGFW_OS_BASED_VALUE(GLX_X_RENDERABLE, 0x2001, 0, 0, 0) + #define RGFW_GL_DRAW_TYPE RGFW_OS_BASED_VALUE(GLX_RENDER_TYPE, 0x2013, 0, 0, 0) + #define RGFW_GL_FULL_FORMAT RGFW_OS_BASED_VALUE(GLX_TRUE_COLOR, 0x2027, 0, 0, 0) + #define RGFW_GL_RED_SIZE RGFW_OS_BASED_VALUE(GLX_RED_SIZE, 0x2015, 0, 0, 0) + #define RGFW_GL_GREEN_SIZE RGFW_OS_BASED_VALUE(GLX_GREEN_SIZE, 0x2017, 0, 0, 0) + #define RGFW_GL_BLUE_SIZE RGFW_OS_BASED_VALUE(GLX_BLUE_SIZE, 0x2019, 0, 0, 0) + #define RGFW_GL_USE_RGBA RGFW_OS_BASED_VALUE(GLX_RGBA_BIT, 0x202B, 0, 0, 0) #endif #ifdef RGFW_WINDOWS + #define WGL_SUPPORT_OPENGL_ARB 0x2010 #define WGL_COLOR_BITS_ARB 0x2014 #define WGL_NUMBER_PIXEL_FORMATS_ARB 0x2000 #define WGL_CONTEXT_MAJOR_VERSION_ARB 0x2091 #define WGL_CONTEXT_MINOR_VERSION_ARB 0x2092 #define WGL_CONTEXT_PROFILE_MASK_ARB 0x9126 + #define WGL_CONTEXT_CORE_PROFILE_BIT_ARB 0x00000001 #define WGL_CONTEXT_COMPATIBILITY_PROFILE_BIT_ARB 0x00000002 #define WGL_SAMPLE_BUFFERS_ARB 0x2041 #define WGL_FRAMEBUFFER_SRGB_CAPABLE_ARB 0x20a9 @@ -1700,8 +1927,12 @@ void RGFW_updateLockState(RGFW_window* win, b8 capital, b8 numlock) { #define WGL_TRANSPARENT_ARB 0x200A #endif - - static u32* RGFW_initAttribs(u32 useSoftware) { + +/* The window'ing api needs to know how to render the data we (or opengl) give it + MacOS and Windows do this using a structure called a "pixel format" + X11 calls it a "Visual" + This function returns the attributes for the format we want */ + static u32* RGFW_initFormatAttribs(u32 useSoftware) { RGFW_UNUSED(useSoftware); static u32 attribs[] = { #if defined(RGFW_X11) || defined(RGFW_WINDOWS) @@ -1710,13 +1941,7 @@ void RGFW_updateLockState(RGFW_window* win, b8 capital, b8 numlock) { #endif RGFW_GL_ALPHA_SIZE , 8, RGFW_GL_DEPTH_SIZE , 24, - RGFW_GL_DOUBLEBUFFER , - #ifndef RGFW_MACOS - 1, - #endif - #if defined(RGFW_X11) || defined(RGFW_WINDOWS) - RGFW_GL_USE_OPENGL, 1, RGFW_GL_DRAW, 1, RGFW_GL_RED_SIZE , 8, RGFW_GL_GREEN_SIZE , 8, @@ -1726,7 +1951,7 @@ void RGFW_updateLockState(RGFW_window* win, b8 capital, b8 numlock) { #ifdef RGFW_X11 GLX_DRAWABLE_TYPE , GLX_WINDOW_BIT, - #endif + #endif #ifdef RGFW_MACOS 72, @@ -1734,8 +1959,8 @@ void RGFW_updateLockState(RGFW_window* win, b8 capital, b8 numlock) { #endif #ifdef RGFW_WINDOWS + WGL_SUPPORT_OPENGL_ARB, 1, WGL_PIXEL_TYPE_ARB, WGL_TYPE_RGBA_ARB, - WGL_TRANSPARENT_ARB, TRUE, WGL_COLOR_BITS_ARB, 32, #endif @@ -1750,8 +1975,10 @@ void RGFW_updateLockState(RGFW_window* win, b8 capital, b8 numlock) { attribs[index + 1] = attVal;\ index += 2;\ } - - RGFW_GL_ADD_ATTRIB(RGFW_GL_STENCIL_SIZE, RGFW_STENCIL); + + RGFW_GL_ADD_ATTRIB(RGFW_GL_DOUBLEBUFFER, 1); + + RGFW_GL_ADD_ATTRIB(RGFW_GL_STENCIL_SIZE, RGFW_STENCIL); RGFW_GL_ADD_ATTRIB(RGFW_GL_STEREO, RGFW_STEREO); RGFW_GL_ADD_ATTRIB(RGFW_GL_AUX_BUFFERS, RGFW_AUX_BUFFERS); @@ -1769,13 +1996,15 @@ void RGFW_updateLockState(RGFW_window* win, b8 capital, b8 numlock) { #endif #ifdef RGFW_MACOS + /* macOS has the surface attribs and the opengl attribs connected for some reason + maybe this is to give macOS more control to limit openGL/the opengl version? */ + attribs[index] = 99; attribs[index + 1] = 0x1000; if (RGFW_majorVersion >= 4 || RGFW_majorVersion >= 3) { attribs[index + 1] = (u32) ((RGFW_majorVersion >= 4) ? 0x4100 : 0x3200); } - #endif RGFW_GL_ADD_ATTRIB(0, 0); @@ -1853,6 +2082,8 @@ void RGFW_updateLockState(RGFW_window* win, b8 capital, b8 numlock) { #ifdef RGFW_WINDOWS win->src.EGL_display = eglGetDisplay((EGLNativeDisplayType) win->src.hdc); + #elif defined(RGFW_MACOS) + win->src.EGL_display = eglGetDisplay((EGLNativeDisplayType)0); #else win->src.EGL_display = eglGetDisplay((EGLNativeDisplayType) win->src.display); #endif @@ -1884,8 +2115,15 @@ void RGFW_updateLockState(RGFW_window* win, b8 capital, b8 numlock) { EGLint numConfigs; eglChooseConfig(win->src.EGL_display, egl_config, &config, 1, &numConfigs); - - win->src.EGL_surface = eglCreateWindowSurface(win->src.EGL_display, config, (EGLNativeWindowType) win->src.window, NULL); + #if defined(RGFW_MACOS) + void* layer = RGFW_cocoaGetLayer(); + + RGFW_window_cocoaSetLayer(win, layer); + + win->src.EGL_surface = eglCreateWindowSurface(win->src.EGL_display, config, (EGLNativeWindowType) layer, NULL); + #else + win->src.EGL_surface = eglCreateWindowSurface(win->src.EGL_display, config, (EGLNativeWindowType) win->src.window, NULL); + #endif EGLint attribs[] = { EGL_CONTEXT_CLIENT_VERSION, @@ -1894,18 +2132,29 @@ void RGFW_updateLockState(RGFW_window* win, b8 capital, b8 numlock) { #else 2, #endif - EGL_NONE, EGL_NONE, EGL_NONE, EGL_NONE, EGL_NONE, EGL_NONE + EGL_NONE, EGL_NONE, EGL_NONE, EGL_NONE, EGL_NONE, EGL_NONE, EGL_NONE, EGL_NONE, EGL_NONE }; size_t index = 4; RGFW_GL_ADD_ATTRIB(EGL_STENCIL_SIZE, RGFW_STENCIL); RGFW_GL_ADD_ATTRIB(EGL_SAMPLES, RGFW_SAMPLES); + if (RGFW_DOUBLE_BUFFER) + RGFW_GL_ADD_ATTRIB(EGL_RENDER_BUFFER, EGL_BACK_BUFFER); + if (RGFW_majorVersion) { attribs[1] = RGFW_majorVersion; - RGFW_GL_ADD_ATTRIB(EGL_CONTEXT_OPENGL_PROFILE_MASK, EGL_CONTEXT_OPENGL_COMPATIBILITY_PROFILE_BIT); + RGFW_GL_ADD_ATTRIB(EGL_CONTEXT_MAJOR_VERSION, RGFW_majorVersion); RGFW_GL_ADD_ATTRIB(EGL_CONTEXT_MINOR_VERSION, RGFW_minorVersion); + + if (RGFW_profile == RGFW_GL_CORE) { + RGFW_GL_ADD_ATTRIB(EGL_CONTEXT_OPENGL_PROFILE_MASK, EGL_CONTEXT_OPENGL_CORE_PROFILE_BIT); + } + else { + RGFW_GL_ADD_ATTRIB(EGL_CONTEXT_OPENGL_PROFILE_MASK, EGL_CONTEXT_OPENGL_COMPATIBILITY_PROFILE_BIT); + } + } #if defined(RGFW_OPENGL_ES1) || defined(RGFW_OPENGL_ES2) || defined(RGFW_OPENGL_ES3) @@ -1913,13 +2162,20 @@ void RGFW_updateLockState(RGFW_window* win, b8 capital, b8 numlock) { #else eglBindAPI(EGL_OPENGL_API); #endif - - win->src.EGL_context = eglCreateContext(win->src.EGL_display, config, EGL_NO_CONTEXT, attribs); + + win->src.EGL_context = eglCreateContext(win->src.EGL_display, config, EGL_NO_CONTEXT, attribs); + + if (win->src.EGL_context == NULL) + fprintf(stderr, "failed to create an EGL opengl context\n"); eglMakeCurrent(win->src.EGL_display, win->src.EGL_surface, win->src.EGL_surface, win->src.EGL_context); eglSwapBuffers(win->src.EGL_display, win->src.EGL_surface); } + void RGFW_window_makeCurrent_OpenGL(RGFW_window* win) { + eglMakeCurrent(win->src.EGL_display, win->src.EGL_surface, win->src.EGL_surface, win->src.EGL_context); + } + #ifdef RGFW_APPLE void* RGFWnsglFramework = NULL; #elif defined(RGFW_WINDOWS) @@ -1949,8 +2205,6 @@ void RGFW_updateLockState(RGFW_window* win, b8 capital, b8 numlock) { eglSwapInterval(win->src.EGL_display, swapInterval); - win->fpsCap = (swapInterval == 1) ? 0 : swapInterval; - } #endif /* RGFW_EGL */ @@ -1990,6 +2244,62 @@ This is where OS specific stuff starts */ +#if defined(RGFW_WAYLAND) || defined(RGFW_X11) + int RGFW_eventWait_forceStop[] = {0, 0, 0}; /* for wait events */ + + #ifdef __linux__ + #include + #include + #include + + RGFW_Event* RGFW_linux_updateJoystick(RGFW_window* win) { + static int xAxis = 0, yAxis = 0; + u8 i; + for (i = 0; i < RGFW_joystickCount; i++) { + struct js_event e; + + + if (RGFW_joysticks[i] == 0) + continue; + + i32 flags = fcntl(RGFW_joysticks[i], F_GETFL, 0); + fcntl(RGFW_joysticks[i], F_SETFL, flags | O_NONBLOCK); + + ssize_t bytes; + while ((bytes = read(RGFW_joysticks[i], &e, sizeof(e))) > 0) { + switch (e.type) { + case JS_EVENT_BUTTON: + win->event.type = e.value ? RGFW_jsButtonPressed : RGFW_jsButtonReleased; + win->event.button = e.number; + RGFW_jsPressed[i][e.number] = e.value; + RGFW_jsButtonCallback(win, i, e.number, e.value); + return &win->event; + case JS_EVENT_AXIS: + ioctl(RGFW_joysticks[i], JSIOCGAXES, &win->event.axisesCount); + + if ((e.number == 0 || e.number % 2) && e.number != 1) + xAxis = e.value; + else + yAxis = e.value; + + win->event.axis[e.number / 2].x = xAxis; + win->event.axis[e.number / 2].y = yAxis; + win->event.type = RGFW_jsAxisMove; + win->event.joystick = i; + RGFW_jsAxisCallback(win, i, win->event.axis, win->event.axisesCount); + return &win->event; + + default: break; + } + } + } + + return NULL; + } + + #endif +#endif + /* @@ -2021,16 +2331,16 @@ Start of Linux / Unix defines #include #include /* for data limits (mainly used in drag and drop functions) */ -#include #include + #ifdef __linux__ #include #endif u8 RGFW_mouseIconSrc[] = { XC_arrow, XC_left_ptr, XC_xterm, XC_crosshair, XC_hand2, XC_sb_h_double_arrow, XC_sb_v_double_arrow, XC_bottom_left_corner, XC_bottom_right_corner, XC_fleur, XC_X_cursor}; /*atoms needed for drag and drop*/ - Atom XdndAware, XdndTypeList, XdndSelection, XdndEnter, XdndPosition, XdndStatus, XdndLeave, XdndDrop, XdndFinished, XdndActionCopy, XdndActionMove, XdndActionLink, XdndActionAsk, XdndActionPrivate; + Atom XdndAware, XdndTypeList, XdndSelection, XdndEnter, XdndPosition, XdndStatus, XdndLeave, XdndDrop, XdndFinished, XdndActionCopy, XtextPlain, XtextUriList; Atom wm_delete_window = 0; @@ -2075,7 +2385,7 @@ Start of Linux / Unix defines if (RGFW_bufferSize.w == 0 && RGFW_bufferSize.h == 0) RGFW_bufferSize = RGFW_getScreenSize(); - win->buffer = RGFW_MALLOC(RGFW_bufferSize.w * RGFW_bufferSize.h * 4); + win->buffer = (u8*)RGFW_MALLOC(RGFW_bufferSize.w * RGFW_bufferSize.h * 4); #ifdef RGFW_OSMESA win->src.ctx = OSMesaCreateContext(OSMESA_RGBA, NULL); @@ -2092,7 +2402,7 @@ Start of Linux / Unix defines win->src.gc = XCreateGC(win->src.display, win->src.window, 0, NULL); #else - RGFW_UNUSED(win); /* if buffer rendering is not being used */ + RGFW_UNUSED(win); /*!< if buffer rendering is not being used */ RGFW_UNUSED(vi) #endif } @@ -2117,30 +2427,30 @@ Start of Linux / Unix defines 32, PropModeReplace, (u8*)&hints, 5 ); } + + void RGFW_releaseCursor(RGFW_window* win) { + XUngrabPointer(win->src.display, CurrentTime); - void RGFW_captureCursor(RGFW_window* win, RGFW_rect r) { + /* disable raw input */ + unsigned char mask[] = { 0 }; XIEventMask em; em.deviceid = XIAllMasterDevices; - - /* grab the cursor if the rect struct isn't zeroed out, else ungrab*/ - if (!r.x && !r.y && r.w && !r.h) { - XUngrabPointer(win->src.display, CurrentTime); - - /* disable raw input */ - unsigned char mask[] = { 0 }; - em.mask_len = sizeof(mask); - em.mask = mask; - XISelectEvents(win->src.display, XDefaultRootWindow(win->src.display), &em, 1); - return; - } - - /* enable raw input */ - unsigned char mask[XIMaskLen(XI_RawMotion)] = { 0 }; - em.mask_len = sizeof(mask); em.mask = mask; + + XISelectEvents(win->src.display, XDefaultRootWindow(win->src.display), &em, 1); + } + + void RGFW_captureCursor(RGFW_window* win, RGFW_rect r) { + /* enable raw input */ + unsigned char mask[XIMaskLen(XI_RawMotion)] = { 0 }; XISetMask(mask, XI_RawMotion); + XIEventMask em; + em.deviceid = XIAllMasterDevices; + em.mask_len = sizeof(mask); + em.mask = mask; + XISelectEvents(win->src.display, XDefaultRootWindow(win->src.display), &em, 1); XGrabPointer(win->src.display, win->src.window, True, PointerMotionMask, GrabModeAsync, GrabModeAsync, None, None, CurrentTime); @@ -2179,24 +2489,24 @@ Start of Linux / Unix defines } #endif - XInitThreads(); /* init X11 threading*/ + XInitThreads(); /*!< init X11 threading*/ if (args & RGFW_OPENGL_SOFTWARE) setenv("LIBGL_ALWAYS_SOFTWARE", "1", 1); RGFW_window* win = RGFW_window_basic_init(rect, args); - u64 event_mask = KeyPressMask | KeyReleaseMask | ButtonPressMask | ButtonReleaseMask | PointerMotionMask | StructureNotifyMask | FocusChangeMask | LeaveWindowMask | EnterWindowMask | ExposureMask; /* X11 events accepted*/ + u64 event_mask = KeyPressMask | KeyReleaseMask | ButtonPressMask | ButtonReleaseMask | PointerMotionMask | StructureNotifyMask | FocusChangeMask | LeaveWindowMask | EnterWindowMask | ExposureMask; /*!< X11 events accepted*/ #ifdef RGFW_OPENGL - u32* visual_attribs = RGFW_initAttribs(args & RGFW_OPENGL_SOFTWARE); + u32* visual_attribs = RGFW_initFormatAttribs(args & RGFW_OPENGL_SOFTWARE); i32 fbcount; GLXFBConfig* fbc = glXChooseFBConfig((Display*) win->src.display, DefaultScreen(win->src.display), (i32*) visual_attribs, &fbcount); i32 best_fbc = -1; if (fbcount == 0) { - printf("Failed to find any valid GLX configs\n"); + printf("Failed to find any valid GLX visual configs\n"); return NULL; } @@ -2230,7 +2540,7 @@ Start of Linux / Unix defines XFree(fbc); if (args & RGFW_TRANSPARENT_WINDOW) { - XMatchVisualInfo((Display*) win->src.display, DefaultScreen((Display*) win->src.display), 32, TrueColor, vi); /* for RGBA backgrounds*/ + XMatchVisualInfo((Display*) win->src.display, DefaultScreen((Display*) win->src.display), 32, TrueColor, vi); /*!< for RGBA backgrounds*/ } #else @@ -2241,7 +2551,7 @@ Start of Linux / Unix defines viNorm.depth = 0; XVisualInfo* vi = &viNorm; - XMatchVisualInfo((Display*) win->src.display, DefaultScreen((Display*) win->src.display), 32, TrueColor, vi); /* for RGBA backgrounds*/ + XMatchVisualInfo((Display*) win->src.display, DefaultScreen((Display*) win->src.display), 32, TrueColor, vi); /*!< for RGBA backgrounds*/ #endif /* make X window attrubutes*/ XSetWindowAttributes swa; @@ -2271,18 +2581,25 @@ Start of Linux / Unix defines // In your .desktop app, if you set the property // StartupWMClass=RGFW that will assoicate the launcher icon // with your application - robrohan + + if (RGFW_className == NULL) + RGFW_className = (char*)name; + XClassHint *hint = XAllocClassHint(); assert(hint != NULL); - hint->res_class = "RGFW"; + hint->res_class = (char*)RGFW_className; hint->res_name = (char*)name; // just use the window name as the app name XSetClassHint((Display*) win->src.display, win->src.window, hint); XFree(hint); if ((args & RGFW_NO_INIT_API) == 0) { -#ifdef RGFW_OPENGL +#ifdef RGFW_OPENGL /* This is the second part of setting up opengl. This is where we ask OpenGL for a specific version. */ i32 context_attribs[7] = { 0, 0, 0, 0, 0, 0, 0 }; context_attribs[0] = GLX_CONTEXT_PROFILE_MASK_ARB; - context_attribs[1] = GLX_CONTEXT_COMPATIBILITY_PROFILE_BIT_ARB; + if (RGFW_profile == RGFW_GL_CORE) + context_attribs[1] = GLX_CONTEXT_CORE_PROFILE_BIT_ARB; + else + context_attribs[1] = GLX_CONTEXT_COMPATIBILITY_PROFILE_BIT_ARB; if (RGFW_majorVersion || RGFW_minorVersion) { context_attribs[2] = GLX_CONTEXT_MAJOR_VERSION_ARB; @@ -2314,6 +2631,11 @@ Start of Linux / Unix defines RGFW_window_scaleToMonitor(win); #endif + if (args & RGFW_CENTER) { + RGFW_area screenR = RGFW_getScreenSize(); + RGFW_window_move(win, RGFW_POINT((screenR.w - win->r.w) / 2, (screenR.h - win->r.h) / 2)); + } + if (args & RGFW_NO_RESIZE) { /* make it so the user can't resize the window*/ XSizeHints* sh = XAllocSizeHints(); sh->flags = (1L << 4) | (1L << 5); @@ -2328,7 +2650,7 @@ Start of Linux / Unix defines RGFW_window_setBorder(win, 0); } - XSelectInput((Display*) win->src.display, (Drawable) win->src.window, event_mask); /* tell X11 what events we want*/ + XSelectInput((Display*) win->src.display, (Drawable) win->src.window, event_mask); /*!< tell X11 what events we want*/ /* make it so the user can't close the window until the program does*/ if (wm_delete_window == 0) @@ -2343,15 +2665,14 @@ Start of Linux / Unix defines #endif /* set the background*/ - XStoreName((Display*) win->src.display, (Drawable) win->src.window, name); /* set the name*/ + XStoreName((Display*) win->src.display, (Drawable) win->src.window, name); /*!< set the name*/ XMapWindow((Display*) win->src.display, (Drawable) win->src.window); /* draw the window*/ - XMoveWindow((Display*) win->src.display, (Drawable) win->src.window, win->r.x, win->r.y); /* move the window to it's proper cords*/ + XMoveWindow((Display*) win->src.display, (Drawable) win->src.window, win->r.x, win->r.y); /*!< move the window to it's proper cords*/ if (args & RGFW_ALLOW_DND) { /* init drag and drop atoms and turn on drag and drop for this window */ win->_winArgs |= RGFW_ALLOW_DND; - XdndAware = XInternAtom((Display*) win->src.display, "XdndAware", False); XdndTypeList = XInternAtom((Display*) win->src.display, "XdndTypeList", False); XdndSelection = XInternAtom((Display*) win->src.display, "XdndSelection", False); @@ -2365,15 +2686,16 @@ Start of Linux / Unix defines /* actions */ XdndActionCopy = XInternAtom((Display*) win->src.display, "XdndActionCopy", False); - XdndActionMove = XInternAtom((Display*) win->src.display, "XdndActionMove", False); - XdndActionLink = XInternAtom((Display*) win->src.display, "XdndActionLink", False); - XdndActionAsk = XInternAtom((Display*) win->src.display, "XdndActionAsk", False); - XdndActionPrivate = XInternAtom((Display*) win->src.display, "XdndActionPrivate", False); - const Atom version = 5; + + XtextUriList = XInternAtom((Display*) win->src.display, "text/uri-list", False); + XtextPlain = XInternAtom((Display*) win->src.display, "text/plain", False); + + XdndAware = XInternAtom((Display*) win->src.display, "XdndAware", False); + const u8 version = 5; XChangeProperty((Display*) win->src.display, (Window) win->src.window, XdndAware, 4, 32, - PropModeReplace, (u8*) &version, 1); /* turns on drag and drop */ + PropModeReplace, &version, 1); /*!< turns on drag and drop */ } #ifdef RGFW_EGL @@ -2421,86 +2743,16 @@ Start of Linux / Unix defines return RGFWMouse; } - - int RGFW_eventWait_forceStop[] = {0, 0, 0}; - - void RGFW_stopCheckEvents(void) { - RGFW_eventWait_forceStop[2] = 1; - while (1) { - const char byte = 0; - const ssize_t result = write(RGFW_eventWait_forceStop[1], &byte, 1); - if (result == 1 || result == -1) - break; - } - } - - void RGFW_window_eventWait(RGFW_window* win, i32 waitMS) { - if (waitMS == 0) - return; - - u8 i; - - if (RGFW_eventWait_forceStop[0] == 0 || RGFW_eventWait_forceStop[1] == 0) { - if (pipe(RGFW_eventWait_forceStop) != -1) { - fcntl(RGFW_eventWait_forceStop[0], F_GETFL, 0); - fcntl(RGFW_eventWait_forceStop[0], F_GETFD, 0); - fcntl(RGFW_eventWait_forceStop[1], F_GETFL, 0); - fcntl(RGFW_eventWait_forceStop[1], F_GETFD, 0); - } - } - - struct pollfd fds[] = { - { ConnectionNumber(win->src.display), POLLIN, 0 }, - { RGFW_eventWait_forceStop[0], POLLIN, 0 }, - #ifdef __linux__ /* blank space for 4 joystick files*/ - { -1, POLLIN, 0 }, {-1, POLLIN, 0 }, {-1, POLLIN, 0 }, {-1, POLLIN, 0} - #endif - }; - - u8 index = 2; - - #if defined(__linux__) - for (i = 0; i < RGFW_joystickCount; i++) { - if (RGFW_joysticks[i] == 0) - continue; - - fds[index].fd = RGFW_joysticks[i]; - index++; - } - #endif - - - u64 start = RGFW_getTimeNS(); - - while (XPending(win->src.display) == 0 && waitMS >= -1) { - if (poll(fds, index, waitMS) <= 0) - break; - - if (waitMS > 0) { - waitMS -= (RGFW_getTimeNS() - start) / 1e+6; - } - } - - /* drain any data in the stop request */ - if (RGFW_eventWait_forceStop[2]) { - char data[64]; - read(RGFW_eventWait_forceStop[0], data, sizeof(data)); - - RGFW_eventWait_forceStop[2] = 0; - } - } - - typedef struct XDND { - long source, version; - i32 format; - } XDND; /* data structure for xdnd events */ - XDND xdnd; - int xAxis = 0, yAxis = 0; RGFW_Event* RGFW_window_checkEvent(RGFW_window* win) { assert(win != NULL); + static struct { + long source, version; + i32 format; + } xdnd; + if (win->event.type == 0) RGFW_resetKey(); @@ -2511,52 +2763,14 @@ Start of Linux / Unix defines win->event.type = 0; #ifdef __linux__ - { - u8 i; - for (i = 0; i < RGFW_joystickCount; i++) { - struct js_event e; - - - if (RGFW_joysticks[i] == 0) - continue; - - i32 flags = fcntl(RGFW_joysticks[i], F_GETFL, 0); - fcntl(RGFW_joysticks[i], F_SETFL, flags | O_NONBLOCK); - - ssize_t bytes; - while ((bytes = read(RGFW_joysticks[i], &e, sizeof(e))) > 0) { - switch (e.type) { - case JS_EVENT_BUTTON: - win->event.type = e.value ? RGFW_jsButtonPressed : RGFW_jsButtonReleased; - win->event.button = e.number; - RGFW_jsPressed[i][e.number] = e.value; - RGFW_jsButtonCallback(win, i, e.number, e.value); - return &win->event; - case JS_EVENT_AXIS: - ioctl(RGFW_joysticks[i], JSIOCGAXES, &win->event.axisesCount); - - if ((e.number == 0 || e.number % 2) && e.number != 1) - xAxis = e.value; - else - yAxis = e.value; - - win->event.axis[e.number / 2].x = xAxis; - win->event.axis[e.number / 2].y = yAxis; - win->event.type = RGFW_jsAxisMove; - win->event.joystick = i; - RGFW_jsAxisCallback(win, i, win->event.axis, win->event.axisesCount); - return &win->event; - - default: break; - } - } - } - } + RGFW_Event* event = RGFW_linux_updateJoystick(win); + if (event != NULL) + return event; #endif XPending(win->src.display); - XEvent E; /* raw X11 event */ + XEvent E; /*!< raw X11 event */ /* if there is no unread qued events, get a new one */ if ((QLength(win->src.display) || XEventsQueued((Display*) win->src.display, QueuedAlready) + XEventsQueued((Display*) win->src.display, QueuedAfterReading)) @@ -2573,21 +2787,22 @@ Start of Linux / Unix defines switch (E.type) { case KeyPress: - case KeyRelease: + case KeyRelease: { + win->event.repeat = RGFW_FALSE; /* check if it's a real key release */ if (E.type == KeyRelease && XEventsQueued((Display*) win->src.display, QueuedAfterReading)) { /* get next event if there is one*/ XEvent NE; XPeekEvent((Display*) win->src.display, &NE); if (E.xkey.time == NE.xkey.time && E.xkey.keycode == NE.xkey.keycode) /* check if the current and next are both the same*/ - break; + win->event.repeat = RGFW_TRUE; } /* set event key data */ - KeySym sym = XkbKeycodeToKeysym((Display*) win->src.display, E.xkey.keycode, 0, E.xkey.state & ShiftMask ? 1 : 0); + KeySym sym = (KeySym)XkbKeycodeToKeysym((Display*) win->src.display, E.xkey.keycode, 0, E.xkey.state & ShiftMask ? 1 : 0); win->event.keyCode = RGFW_apiKeyCodeToRGFW(E.xkey.keycode); - char* str = XKeysymToString(sym); + char* str = (char*)XKeysymToString(sym); if (str != NULL) strncpy(win->event.keyName, str, 16); @@ -2602,14 +2817,13 @@ Start of Linux / Unix defines XGetKeyboardControl((Display*) win->src.display, &keystate); RGFW_updateLockState(win, (keystate.led_mask & 1), (keystate.led_mask & 2)); - RGFW_keyboard[win->event.keyCode].current = (E.type == KeyPress); RGFW_keyCallback(win, win->event.keyCode, win->event.keyName, win->event.lockState, (E.type == KeyPress)); break; - + } case ButtonPress: case ButtonRelease: - win->event.type = E.type; // the events match + win->event.type = RGFW_mouseButtonPressed + (E.type == ButtonRelease); // the events match switch(win->event.button) { case RGFW_mouseScrollUp: @@ -2623,19 +2837,23 @@ Start of Linux / Unix defines win->event.button = E.xbutton.button; RGFW_mouseButtons[win->event.button].prev = RGFW_mouseButtons[win->event.button].current; + + if (win->event.repeat == RGFW_FALSE) + win->event.repeat = RGFW_isPressed(win, win->event.keyCode); + RGFW_mouseButtons[win->event.button].current = (E.type == ButtonPress); RGFW_mouseButtonCallback(win, win->event.button, win->event.scroll, (E.type == ButtonPress)); break; - case MotionNotify: + case MotionNotify: win->event.point.x = E.xmotion.x; win->event.point.y = E.xmotion.y; if ((win->_winArgs & RGFW_HOLD_MOUSE)) { - win->event.point.x = win->_lastMousePoint.x - win->event.point.x; - win->event.point.y = win->_lastMousePoint.y - win->event.point.y; + win->event.point.y = E.xmotion.y; - RGFW_window_moveMouse(win, RGFW_POINT(win->r.x + (win->r.w / 2), win->r.y + (win->r.h / 2))); + win->event.point.x = win->_lastMousePoint.x - abs(win->event.point.x); + win->event.point.y = win->_lastMousePoint.y - abs(win->event.point.y); } win->_lastMousePoint = RGFW_POINT(E.xmotion.x, E.xmotion.y); @@ -2668,7 +2886,9 @@ Start of Linux / Unix defines if (XIMaskIsSet(raw->valuators.mask, 1) != 0) deltaY += raw->raw_values[1]; - win->event.point = RGFW_POINT((u32)-deltaX, (u32)-deltaY); + win->event.point = RGFW_POINT((i32)deltaX, (i32)deltaY); + + RGFW_window_moveMouse(win, RGFW_POINT(win->r.x + (win->r.w / 2), win->r.y + (win->r.h / 2))); win->event.type = RGFW_mousePosChanged; RGFW_mousePosCallback(win, win->event.point); @@ -2699,13 +2919,16 @@ Start of Linux / Unix defines win->event.droppedFilesCount = 0; - /* - much of this event (drag and drop code) is source from glfw - */ - if ((win->_winArgs & RGFW_ALLOW_DND) == 0) break; + XEvent reply = { ClientMessage }; + reply.xclient.window = xdnd.source; + reply.xclient.format = 32; + reply.xclient.data.l[0] = (long) win->src.window; + reply.xclient.data.l[1] = 0; + reply.xclient.data.l[2] = None; + if (E.xclient.message_type == XdndEnter) { unsigned long count; Atom* formats; @@ -2750,28 +2973,11 @@ Start of Linux / Unix defines formats = real_formats; } - u32 i; - for (i = 0; i < (u32)count; i++) { - char* name = XGetAtomName((Display*) win->src.display, formats[i]); - - char* links[2] = { (char*) (const char*) "text/uri-list", (char*) (const char*) "text/plain" }; - for (; 1; name++) { - u32 j; - for (j = 0; j < 2; j++) { - if (*links[j] != *name) { - links[j] = (char*) (const char*) "\1"; - continue; - } - - if (*links[j] == '\0' && *name == '\0') - xdnd.format = formats[i]; - - if (*links[j] != '\0' && *links[j] != '\1') - links[j]++; - } - - if (*name == '\0') - break; + unsigned long i; + for (i = 0; i < count; i++) { + if (formats[i] == XtextUriList || formats[i] == XtextPlain) { + xdnd.format = formats[i]; + break; } } @@ -2800,13 +3006,8 @@ Start of Linux / Unix defines win->event.point.x = xpos; win->event.point.y = ypos; - XEvent reply = { ClientMessage }; reply.xclient.window = xdnd.source; reply.xclient.message_type = XdndStatus; - reply.xclient.format = 32; - reply.xclient.data.l[0] = (long) win->src.window; - reply.xclient.data.l[2] = 0; - reply.xclient.data.l[3] = 0; if (xdnd.format) { reply.xclient.data.l[1] = 1; @@ -2841,12 +3042,6 @@ Start of Linux / Unix defines time); } else if (xdnd.version >= 2) { XEvent reply = { ClientMessage }; - reply.xclient.window = xdnd.source; - reply.xclient.message_type = XdndFinished; - reply.xclient.format = 32; - reply.xclient.data.l[0] = (long) win->src.window; - reply.xclient.data.l[1] = 0; - reply.xclient.data.l[2] = None; XSendEvent((Display*) win->src.display, xdnd.source, False, NoEventMask, &reply); @@ -2855,7 +3050,7 @@ Start of Linux / Unix defines RGFW_dndInitCallback(win, win->event.point); break; - case SelectionNotify: + case SelectionNotify: { /* this is only for checking for xdnd drops */ if (E.xselection.property != XdndSelection || !(win->_winArgs | RGFW_ALLOW_DND)) break; @@ -2878,7 +3073,7 @@ Start of Linux / Unix defines Copyright (c) 2006-2019 Camilla Löwy */ - const char* prefix = "file://"; + const char* prefix = (const char*)"file://"; char* line; @@ -2931,11 +3126,7 @@ Start of Linux / Unix defines XFree(data); if (xdnd.version >= 2) { - XEvent reply = { ClientMessage }; - reply.xclient.window = xdnd.source; reply.xclient.message_type = XdndFinished; - reply.xclient.format = 32; - reply.xclient.data.l[0] = (long) win->src.window; reply.xclient.data.l[1] = result; reply.xclient.data.l[2] = XdndActionCopy; @@ -2945,7 +3136,7 @@ Start of Linux / Unix defines RGFW_dndCallback(win, win->event.droppedFiles, win->event.droppedFilesCount); break; - + } case FocusIn: win->event.inFocus = 1; win->event.type = RGFW_focusIn; @@ -3222,7 +3413,7 @@ Start of Linux / Unix defines void RGFW_window_setMouseStandard(RGFW_window* win, u8 mouse) { assert(win != NULL); - + if (mouse > (sizeof(RGFW_mouseIconSrc) / sizeof(u8))) return; @@ -3309,28 +3500,23 @@ Start of Linux / Unix defines ATOM_PAIR = XInternAtom((Display*) RGFW_root->src.display, "ATOM_PAIR", False); CLIPBOARD_MANAGER = XInternAtom((Display*) RGFW_root->src.display, "CLIPBOARD_MANAGER", False); } - + XSetSelectionOwner((Display*) RGFW_root->src.display, CLIPBOARD, (Window) RGFW_root->src.window, CurrentTime); XConvertSelection((Display*) RGFW_root->src.display, CLIPBOARD_MANAGER, SAVE_TARGETS, None, (Window) RGFW_root->src.window, CurrentTime); - for (;;) { XEvent event; XNextEvent((Display*) RGFW_root->src.display, &event); - if (event.type != SelectionRequest) - return; + if (event.type != SelectionRequest) { + break; + } const XSelectionRequestEvent* request = &event.xselectionrequest; XEvent reply = { SelectionNotify }; + reply.xselection.property = 0; - char* selectionString = NULL; - const Atom formats[] = { UTF8_STRING, XA_STRING }; - const i32 formatCount = sizeof(formats) / sizeof(formats[0]); - - selectionString = (char*) text; - if (request->target == TARGETS) { const Atom targets[] = { TARGETS, MULTIPLE, @@ -3350,35 +3536,29 @@ Start of Linux / Unix defines } if (request->target == MULTIPLE) { - Atom* targets; + Atom* targets = NULL; - Atom actualType; - i32 actualFormat; - unsigned long count, bytesAfter; + Atom actualType = 0; + int actualFormat = 0; + unsigned long count = 0, bytesAfter = 0; XGetWindowProperty((Display*) RGFW_root->src.display, request->requestor, request->property, 0, LONG_MAX, False, ATOM_PAIR, &actualType, &actualFormat, &count, &bytesAfter, (u8**) &targets); unsigned long i; for (i = 0; i < (u32)count; i += 2) { - i32 j; - - for (j = 0; j < formatCount; j++) { - if (targets[i] == formats[j]) - break; - } - - if (j < formatCount) - { + if (targets[i] == UTF8_STRING || targets[i] == XA_STRING) { XChangeProperty((Display*) RGFW_root->src.display, request->requestor, targets[i + 1], targets[i], 8, PropModeReplace, - (u8*) selectionString, + (u8*) text, textLen); - } else + XFlush(RGFW_root->src.display); + } else { targets[i + 1] = None; + } } XChangeProperty((Display*) RGFW_root->src.display, @@ -3390,6 +3570,7 @@ Start of Linux / Unix defines (u8*) targets, count); + XFlush(RGFW_root->src.display); XFree(targets); reply.xselection.property = request->property; @@ -3402,49 +3583,10 @@ Start of Linux / Unix defines reply.xselection.time = request->time; XSendEvent((Display*) RGFW_root->src.display, request->requestor, False, 0, &reply); + XFlush(RGFW_root->src.display); } } - u16 RGFW_registerJoystick(RGFW_window* win, i32 jsNumber) { - assert(win != NULL); - -#ifdef __linux__ - char file[15]; - sprintf(file, "/dev/input/js%i", jsNumber); - - return RGFW_registerJoystickF(win, file); -#endif - } - - u16 RGFW_registerJoystickF(RGFW_window* win, char* file) { - assert(win != NULL); - -#ifdef __linux__ - - i32 js = open(file, O_RDONLY); - - if (js && RGFW_joystickCount < 4) { - RGFW_joystickCount++; - - RGFW_joysticks[RGFW_joystickCount - 1] = open(file, O_RDONLY); - - u8 i; - for (i = 0; i < 16; i++) - RGFW_jsPressed[RGFW_joystickCount - 1][i] = 0; - - } - - else { -#ifdef RGFW_PRINT_ERRORS - RGFW_error = 1; - fprintf(stderr, "Error RGFW_registerJoystickF : Cannot open file %s\n", file); -#endif - } - - return RGFW_joystickCount - 1; -#endif - } - u8 RGFW_window_isFullscreen(RGFW_window* win) { assert(win != NULL); @@ -3571,32 +3713,54 @@ Start of Linux / Unix defines RGFW_monitor monitor; Display* display = XOpenDisplay(NULL); + + RGFW_area size = RGFW_getScreenSize(); - monitor.rect = RGFW_RECT(0, 0, DisplayWidth(display, screen), DisplayHeight(display, screen)); - monitor.physW = (monitor.rect.w * 25.4f / 96.f); - monitor.physH = (monitor.rect.h * 25.4f / 96.f); - - strncpy(monitor.name, DisplayString(display), 128); - + monitor.rect = RGFW_RECT(0, 0, size.w, size.h); + monitor.physW = DisplayWidthMM(display, screen); + monitor.physH = DisplayHeightMM(display, screen); + XGetSystemContentScale(display, &monitor.scaleX, &monitor.scaleY); - XRRScreenResources* sr = XRRGetScreenResourcesCurrent(display, RootWindow(display, screen)); XRRCrtcInfo* ci = NULL; - int crtc = 0; + int crtc = screen; if (sr->ncrtc > crtc) { ci = XRRGetCrtcInfo(display, sr, sr->crtcs[crtc]); } - + if (ci == NULL) { + float dpi_width = round((double)monitor.rect.w/(((double)monitor.physW)/25.4)); + float dpi_height = round((double)monitor.rect.h/(((double)monitor.physH)/25.4)); + + monitor.scaleX = (float) (dpi_width) / (float) 96; + monitor.scaleY = (float) (dpi_height) / (float) 96; XRRFreeScreenResources(sr); XCloseDisplay(display); return monitor; } + + XRROutputInfo* info = XRRGetOutputInfo (display, sr, sr->outputs[screen]); + monitor.physW = info->mm_width; + monitor.physH = info->mm_height; monitor.rect.x = ci->x; monitor.rect.y = ci->y; + monitor.rect.w = ci->width; + monitor.rect.h = ci->height; + + float dpi_width = round((double)monitor.rect.w/(((double)monitor.physW)/25.4)); + float dpi_height = round((double)monitor.rect.h/(((double)monitor.physH)/25.4)); + + monitor.scaleX = (float) (dpi_width) / (float) 96; + monitor.scaleY = (float) (dpi_height) / (float) 96; + + if (monitor.scaleX > 1 && monitor.scaleX < 1.1) + monitor.scaleX = 1; + + if (monitor.scaleY > 1 && monitor.scaleY < 1.1) + monitor.scaleY = 1; XRRFreeCrtcInfo(ci); XRRFreeScreenResources(sr); @@ -3648,9 +3812,10 @@ Start of Linux / Unix defines #ifdef RGFW_OPENGL void RGFW_window_makeCurrent_OpenGL(RGFW_window* win) { - assert(win != NULL); - - glXMakeCurrent((Display*) win->src.display, (Drawable) win->src.window, (GLXContext) win->src.ctx); + if (win == NULL) + glXMakeCurrent((Display*) NULL, (Drawable)NULL, (GLXContext) NULL); + else + glXMakeCurrent((Display*) win->src.display, (Drawable) win->src.window, (GLXContext) win->src.ctx); } #endif @@ -3658,8 +3823,6 @@ Start of Linux / Unix defines void RGFW_window_swapBuffers(RGFW_window* win) { assert(win != NULL); - RGFW_window_makeCurrent(win); - /* clear the window*/ if (!(win->_winArgs & RGFW_NO_CPU_RENDER)) { #if defined(RGFW_OSMESA) || defined(RGFW_BUFFER) @@ -3693,8 +3856,6 @@ Start of Linux / Unix defines glXSwapBuffers((Display*) win->src.display, (Window) win->src.window); #endif } - - RGFW_window_checkFPS(win); } #if !defined(RGFW_EGL) @@ -3703,9 +3864,9 @@ Start of Linux / Unix defines #if defined(RGFW_OPENGL) ((PFNGLXSWAPINTERVALEXTPROC) glXGetProcAddress((GLubyte*) "glXSwapIntervalEXT"))((Display*) win->src.display, (Window) win->src.window, swapInterval); + #else + RGFW_UNUSED(swapInterval); #endif - - win->fpsCap = (swapInterval == 1) ? 0 : swapInterval; } #endif @@ -3736,9 +3897,9 @@ Start of Linux / Unix defines RGFW_root = NULL; if ((Drawable) win->src.window) - XDestroyWindow((Display*) win->src.display, (Drawable) win->src.window); /* close the window*/ + XDestroyWindow((Display*) win->src.display, (Drawable) win->src.window); /*!< close the window*/ - XCloseDisplay((Display*) win->src.display); /* kill the display*/ + XCloseDisplay((Display*) win->src.display); /*!< kill the display*/ } #ifdef RGFW_ALLOC_DROPFILES @@ -3788,7 +3949,134 @@ Start of Linux / Unix defines win->src.display = (Display*) 0; win->src.window = (Window) 0; - RGFW_FREE(win); /* free collected window data */ + RGFW_FREE(win); /*!< free collected window data */ + } + + +/* + End of X11 linux / unix defines +*/ + +#endif /* RGFW_X11 */ + + +/* wayland or X11 defines*/ +#if defined(RGFW_WAYLAND) || defined(RGFW_X11) +#include +#include +#include + u16 RGFW_registerJoystickF(RGFW_window* win, char* file) { + assert(win != NULL); + +#ifdef __linux__ + + i32 js = open(file, O_RDONLY); + + if (js && RGFW_joystickCount < 4) { + RGFW_joystickCount++; + + RGFW_joysticks[RGFW_joystickCount - 1] = open(file, O_RDONLY); + + u8 i; + for (i = 0; i < 16; i++) + RGFW_jsPressed[RGFW_joystickCount - 1][i] = 0; + + } + + else { +#ifdef RGFW_PRINT_ERRORS + RGFW_error = 1; + fprintf(stderr, "Error RGFW_registerJoystickF : Cannot open file %s\n", file); +#endif + } + + return RGFW_joystickCount - 1; +#endif + } + + u16 RGFW_registerJoystick(RGFW_window* win, i32 jsNumber) { + assert(win != NULL); + +#ifdef __linux__ + char file[15]; + sprintf(file, "/dev/input/js%i", jsNumber); + + return RGFW_registerJoystickF(win, file); +#endif + } + + void RGFW_stopCheckEvents(void) { + RGFW_eventWait_forceStop[2] = 1; + while (1) { + const char byte = 0; + const ssize_t result = write(RGFW_eventWait_forceStop[1], &byte, 1); + if (result == 1 || result == -1) + break; + } + } + + void RGFW_window_eventWait(RGFW_window* win, i32 waitMS) { + if (waitMS == 0) + return; + + u8 i; + + if (RGFW_eventWait_forceStop[0] == 0 || RGFW_eventWait_forceStop[1] == 0) { + if (pipe(RGFW_eventWait_forceStop) != -1) { + fcntl(RGFW_eventWait_forceStop[0], F_GETFL, 0); + fcntl(RGFW_eventWait_forceStop[0], F_GETFD, 0); + fcntl(RGFW_eventWait_forceStop[1], F_GETFL, 0); + fcntl(RGFW_eventWait_forceStop[1], F_GETFD, 0); + } + } + + struct pollfd fds[] = { + #ifdef RGFW_WAYLAND + { wl_display_get_fd(win->src.display), POLLIN, 0 }, + #else + { ConnectionNumber(win->src.display), POLLIN, 0 }, + #endif + { RGFW_eventWait_forceStop[0], POLLIN, 0 }, + #ifdef __linux__ /* blank space for 4 joystick files*/ + { -1, POLLIN, 0 }, {-1, POLLIN, 0 }, {-1, POLLIN, 0 }, {-1, POLLIN, 0} + #endif + }; + + u8 index = 2; + + #if defined(__linux__) + for (i = 0; i < RGFW_joystickCount; i++) { + if (RGFW_joysticks[i] == 0) + continue; + + fds[index].fd = RGFW_joysticks[i]; + index++; + } + #endif + + + u64 start = RGFW_getTimeNS(); + + #ifdef RGFW_WAYLAND + while (wl_display_dispatch(win->src.display) <= 0 && waitMS >= -1) { + #else + while (XPending(win->src.display) == 0 && waitMS >= -1) { + #endif + if (poll(fds, index, waitMS) <= 0) + break; + + if (waitMS > 0) { + waitMS -= (RGFW_getTimeNS() - start) / 1e+6; + } + } + + /* drain any data in the stop request */ + if (RGFW_eventWait_forceStop[2]) { + char data[64]; + (void)!read(RGFW_eventWait_forceStop[0], data, sizeof(data)); + + RGFW_eventWait_forceStop[2] = 0; + } } u64 RGFW_getTimeNS(void) { @@ -3806,11 +4094,907 @@ Start of Linux / Unix defines return (double)(nanoSeconds) * 1e-9; } -/* - End of linux / unix defines +#endif /* end of wayland or X11 time defines*/ + + +/* + + Start of Wayland defines + + */ -#endif /* RGFW_X11 */ +#ifdef RGFW_WAYLAND +/* +Wayland TODO: +- fix RGFW_keyPressed lock state + + RGFW_windowMoved, the window was moved (by the user) + RGFW_windowResized the window was resized (by the user), [on webASM this means the browser was resized] + RGFW_windowRefresh The window content needs to be refreshed + + RGFW_dnd a file has been dropped into the window + RGFW_dnd_init + +- window args: + #define RGFW_NO_RESIZE the window cannot be resized by the user + #define RGFW_ALLOW_DND the window supports drag and drop + #define RGFW_SCALE_TO_MONITOR scale the window to the screen + +- other missing functions functions ("TODO wayland") (~30 functions) +- fix buffer rendering weird behavior +*/ + #include + #include + #include + #include + #include + #include + #include + #include + +RGFW_window* RGFW_key_win = NULL; + +void RGFW_eventPipe_push(RGFW_window* win, RGFW_Event event) { + if (win == NULL) { + win = RGFW_key_win; + + if (win == NULL) return; + } + + if (win->src.eventLen >= (i32)(sizeof(win->src.events) / sizeof(win->src.events[0]))) + return; + + win->src.events[win->src.eventLen] = event; + win->src.eventLen += 1; +} + +RGFW_Event RGFW_eventPipe_pop(RGFW_window* win) { + RGFW_Event ev; + ev.type = 0; + + if (win->src.eventLen > -1) + win->src.eventLen -= 1; + + if (win->src.eventLen >= 0) + ev = win->src.events[win->src.eventLen]; + + return ev; +} + +/* wayland global garbage (wayland bad, X11 is fine (ish) (not really)) */ +#include "xdg-shell.h" +#include "xdg-decoration-unstable-v1.h" + +struct xdg_wm_base *xdg_wm_base; +struct wl_compositor* RGFW_compositor = NULL; +struct wl_shm* shm = NULL; +struct wl_shell* RGFW_shell = NULL; +static struct wl_seat *seat = NULL; +static struct xkb_context *xkb_context; +static struct xkb_keymap *keymap = NULL; +static struct xkb_state *xkb_state = NULL; +enum zxdg_toplevel_decoration_v1_mode client_preferred_mode, RGFW_current_mode; +static struct zxdg_decoration_manager_v1 *decoration_manager = NULL; + +struct wl_cursor_theme* RGFW_wl_cursor_theme = NULL; +struct wl_surface* RGFW_cursor_surface = NULL; +struct wl_cursor_image* RGFW_cursor_image = NULL; + +static void xdg_wm_base_ping_handler(void *data, + struct xdg_wm_base *wm_base, uint32_t serial) +{ + RGFW_UNUSED(data); + xdg_wm_base_pong(wm_base, serial); +} + +static const struct xdg_wm_base_listener xdg_wm_base_listener = { + .ping = xdg_wm_base_ping_handler, +}; + +b8 RGFW_wl_configured = 0; + +static void xdg_surface_configure_handler(void *data, + struct xdg_surface *xdg_surface, uint32_t serial) +{ + RGFW_UNUSED(data); + xdg_surface_ack_configure(xdg_surface, serial); + #ifdef RGFW_DEBUG + printf("Surface configured\n"); + #endif + RGFW_wl_configured = 1; +} + +static const struct xdg_surface_listener xdg_surface_listener = { + .configure = xdg_surface_configure_handler, +}; + +static void xdg_toplevel_configure_handler(void *data, + struct xdg_toplevel *toplevel, int32_t width, int32_t height, + struct wl_array *states) +{ + RGFW_UNUSED(data); RGFW_UNUSED(toplevel); RGFW_UNUSED(states) + fprintf(stderr, "XDG toplevel configure: %dx%d\n", width, height); +} + +static void xdg_toplevel_close_handler(void *data, + struct xdg_toplevel *toplevel) +{ + RGFW_UNUSED(data); + RGFW_window* win = (RGFW_window*)xdg_toplevel_get_user_data(toplevel); + if (win == NULL) + win = RGFW_key_win; + + RGFW_Event ev; + ev.type = RGFW_quit; + + RGFW_eventPipe_push(win, ev); + + RGFW_windowQuitCallback(win); +} + +static void shm_format_handler(void *data, + struct wl_shm *shm, uint32_t format) +{ + RGFW_UNUSED(data); RGFW_UNUSED(shm); + fprintf(stderr, "Format %d\n", format); +} + +static const struct wl_shm_listener shm_listener = { + .format = shm_format_handler, +}; + +static const struct xdg_toplevel_listener xdg_toplevel_listener = { + .configure = xdg_toplevel_configure_handler, + .close = xdg_toplevel_close_handler, +}; + +RGFW_window* RGFW_mouse_win = NULL; + +static void pointer_enter(void *data, struct wl_pointer *pointer, uint32_t serial, struct wl_surface *surface, wl_fixed_t surface_x, wl_fixed_t surface_y) { + RGFW_UNUSED(data); RGFW_UNUSED(pointer); RGFW_UNUSED(serial); RGFW_UNUSED(surface_x); RGFW_UNUSED(surface_y); + RGFW_window* win = (RGFW_window*)wl_surface_get_user_data(surface); + RGFW_mouse_win = win; + + RGFW_Event ev; + ev.type = RGFW_mouseEnter; + ev.point = win->event.point; + + RGFW_eventPipe_push(win, ev); + + RGFW_mouseNotifyCallBack(win, win->event.point, RGFW_TRUE); +} +static void pointer_leave(void *data, struct wl_pointer *pointer, uint32_t serial, struct wl_surface *surface) { + RGFW_UNUSED(data); RGFW_UNUSED(pointer); RGFW_UNUSED(serial); RGFW_UNUSED(surface); + RGFW_window* win = (RGFW_window*)wl_surface_get_user_data(surface); + if (RGFW_mouse_win == win) + RGFW_mouse_win = NULL; + + RGFW_Event ev; + ev.type = RGFW_mouseLeave; + ev.point = win->event.point; + RGFW_eventPipe_push(win, ev); + + RGFW_mouseNotifyCallBack(win, win->event.point, RGFW_FALSE); +} +static void pointer_motion(void *data, struct wl_pointer *pointer, uint32_t time, wl_fixed_t x, wl_fixed_t y) { + RGFW_UNUSED(data); RGFW_UNUSED(pointer); RGFW_UNUSED(time); RGFW_UNUSED(x); RGFW_UNUSED(y); + + assert(RGFW_mouse_win != NULL); + + RGFW_Event ev; + ev.type = RGFW_mousePosChanged; + ev.point = RGFW_POINT(wl_fixed_to_double(x), wl_fixed_to_double(y)); + RGFW_eventPipe_push(RGFW_mouse_win, ev); + + RGFW_mousePosCallback(RGFW_mouse_win, RGFW_POINT(wl_fixed_to_double(x), wl_fixed_to_double(y))); +} +static void pointer_button(void *data, struct wl_pointer *pointer, uint32_t serial, uint32_t time, uint32_t button, uint32_t state) { + RGFW_UNUSED(data); RGFW_UNUSED(pointer); RGFW_UNUSED(time); RGFW_UNUSED(serial); + assert(RGFW_mouse_win != NULL); + + u32 b = (button - 0x110) + 1; + + /* flip right and middle button codes */ + if (b == 2) b = 3; + else if (b == 3) b = 2; + + RGFW_mouseButtons[b].prev = RGFW_mouseButtons[b].current; + RGFW_mouseButtons[b].current = state; + + RGFW_Event ev; + ev.type = RGFW_mouseButtonPressed + state; + ev.button = b; + RGFW_eventPipe_push(RGFW_mouse_win, ev); + + RGFW_mouseButtonCallback(RGFW_mouse_win, b, 0, state); +} +static void pointer_axis(void *data, struct wl_pointer *pointer, uint32_t time, uint32_t axis, wl_fixed_t value) { + RGFW_UNUSED(data); RGFW_UNUSED(pointer); RGFW_UNUSED(time); RGFW_UNUSED(axis); + assert(RGFW_mouse_win != NULL); + + double scroll = wl_fixed_to_double(value); + + RGFW_Event ev; + ev.type = RGFW_mouseButtonPressed; + ev.button = RGFW_mouseScrollUp + (scroll < 0); + RGFW_eventPipe_push(RGFW_mouse_win, ev); + + RGFW_mouseButtonCallback(RGFW_mouse_win, RGFW_mouseScrollUp + (scroll < 0), scroll, 1); +} + +void RGFW_doNothing(void) { } +static struct wl_pointer_listener pointer_listener = (struct wl_pointer_listener){&pointer_enter, &pointer_leave, &pointer_motion, &pointer_button, &pointer_axis, (void*)&RGFW_doNothing, (void*)&RGFW_doNothing, (void*)&RGFW_doNothing, (void*)&RGFW_doNothing, (void*)&RGFW_doNothing, (void*)&RGFW_doNothing}; + +static void keyboard_keymap (void *data, struct wl_keyboard *keyboard, uint32_t format, int32_t fd, uint32_t size) { + RGFW_UNUSED(data); RGFW_UNUSED(keyboard); RGFW_UNUSED(format); + + char *keymap_string = mmap (NULL, size, PROT_READ, MAP_SHARED, fd, 0); + xkb_keymap_unref (keymap); + keymap = xkb_keymap_new_from_string (xkb_context, keymap_string, XKB_KEYMAP_FORMAT_TEXT_V1, XKB_KEYMAP_COMPILE_NO_FLAGS); + + munmap (keymap_string, size); + close (fd); + xkb_state_unref (xkb_state); + xkb_state = xkb_state_new (keymap); +} +static void keyboard_enter (void *data, struct wl_keyboard *keyboard, uint32_t serial, struct wl_surface *surface, struct wl_array *keys) { + RGFW_UNUSED(data); RGFW_UNUSED(keyboard); RGFW_UNUSED(serial); RGFW_UNUSED(keys); + + RGFW_key_win = (RGFW_window*)wl_surface_get_user_data(surface); + + RGFW_Event ev; + ev.type = RGFW_focusIn; + ev.inFocus = RGFW_TRUE; + RGFW_key_win->event.inFocus = RGFW_TRUE; + + RGFW_eventPipe_push((RGFW_window*)RGFW_mouse_win, ev); + + RGFW_focusCallback(RGFW_key_win, RGFW_TRUE); +} +static void keyboard_leave (void *data, struct wl_keyboard *keyboard, uint32_t serial, struct wl_surface *surface) { + RGFW_UNUSED(data); RGFW_UNUSED(keyboard); RGFW_UNUSED(serial); + + RGFW_window* win = (RGFW_window*)wl_surface_get_user_data(surface); + if (RGFW_key_win == win) + RGFW_key_win = NULL; + + RGFW_Event ev; + ev.type = RGFW_focusOut; + ev.inFocus = RGFW_FALSE; + win->event.inFocus = RGFW_FALSE; + RGFW_eventPipe_push(win, ev); + + RGFW_focusCallback(win, RGFW_FALSE); +} +static void keyboard_key (void *data, struct wl_keyboard *keyboard, uint32_t serial, uint32_t time, uint32_t key, uint32_t state) { + RGFW_UNUSED(data); RGFW_UNUSED(keyboard); RGFW_UNUSED(serial); RGFW_UNUSED(time); + + assert(RGFW_key_win != NULL); + + xkb_keysym_t keysym = xkb_state_key_get_one_sym (xkb_state, key+8); + char name[16]; + xkb_keysym_get_name(keysym, name, 16); + + u32 RGFW_key = RGFW_apiKeyCodeToRGFW(key); + RGFW_keyboard[RGFW_key].prev = RGFW_keyboard[RGFW_key].current; + RGFW_keyboard[RGFW_key].current = state; + RGFW_Event ev; + ev.type = RGFW_keyPressed + state; + ev.keyCode = RGFW_key; + strcpy(ev.keyName, name); + ev.repeat = RGFW_isHeld(RGFW_key_win, RGFW_key); + RGFW_eventPipe_push(RGFW_key_win, ev); + + RGFW_updateLockState(RGFW_key_win, xkb_keymap_mod_get_index(keymap, "Lock"), xkb_keymap_mod_get_index(keymap, "Mod2")); + + RGFW_keyCallback(RGFW_key_win, RGFW_key, name, RGFW_key_win->event.lockState, state); +} +static void keyboard_modifiers (void *data, struct wl_keyboard *keyboard, uint32_t serial, uint32_t mods_depressed, uint32_t mods_latched, uint32_t mods_locked, uint32_t group) { + RGFW_UNUSED(data); RGFW_UNUSED(keyboard); RGFW_UNUSED(serial); RGFW_UNUSED(time); + xkb_state_update_mask (xkb_state, mods_depressed, mods_latched, mods_locked, 0, 0, group); +} +static struct wl_keyboard_listener keyboard_listener = {&keyboard_keymap, &keyboard_enter, &keyboard_leave, &keyboard_key, &keyboard_modifiers, (void*)&RGFW_doNothing}; + +static void seat_capabilities (void *data, struct wl_seat *seat, uint32_t capabilities) { + RGFW_UNUSED(data); + + if (capabilities & WL_SEAT_CAPABILITY_POINTER) { + struct wl_pointer *pointer = wl_seat_get_pointer (seat); + wl_pointer_add_listener (pointer, &pointer_listener, NULL); + } + if (capabilities & WL_SEAT_CAPABILITY_KEYBOARD) { + struct wl_keyboard *keyboard = wl_seat_get_keyboard (seat); + wl_keyboard_add_listener (keyboard, &keyboard_listener, NULL); + } +} +static struct wl_seat_listener seat_listener = {&seat_capabilities, (void*)&RGFW_doNothing}; + +static void wl_global_registry_handler(void *data, + struct wl_registry *registry, uint32_t id, const char *interface, + uint32_t version) +{ + RGFW_UNUSED(data); RGFW_UNUSED(version); + + if (strcmp(interface, "wl_compositor") == 0) { + RGFW_compositor = wl_registry_bind(registry, + id, &wl_compositor_interface, 4); + } else if (strcmp(interface, "xdg_wm_base") == 0) { + xdg_wm_base = wl_registry_bind(registry, + id, &xdg_wm_base_interface, 1); + } else if (strcmp(interface, zxdg_decoration_manager_v1_interface.name) == 0) { + decoration_manager = wl_registry_bind(registry, id, &zxdg_decoration_manager_v1_interface, 1); + } else if (strcmp(interface, "wl_shm") == 0) { + shm = wl_registry_bind(registry, + id, &wl_shm_interface, 1); + wl_shm_add_listener(shm, &shm_listener, NULL); + } else if (strcmp(interface,"wl_seat") == 0) { + seat = wl_registry_bind(registry, id, &wl_seat_interface, 1); + wl_seat_add_listener(seat, &seat_listener, NULL); + } + + else { + #ifdef RGFW_DEBUG + printf("did not register %s\n", interface); + return; + #endif + } + + #ifdef RGFW_DEBUG + printf("registered %s\n", interface); + #endif +} + +static void wl_global_registry_remove(void *data, struct wl_registry *registry, uint32_t name) { RGFW_UNUSED(data); RGFW_UNUSED(registry); RGFW_UNUSED(name); } +static const struct wl_registry_listener registry_listener = { + .global = wl_global_registry_handler, + .global_remove = wl_global_registry_remove, +}; + +static const char *get_mode_name(enum zxdg_toplevel_decoration_v1_mode mode) { + switch (mode) { + case ZXDG_TOPLEVEL_DECORATION_V1_MODE_CLIENT_SIDE: + return "client-side decorations"; + case ZXDG_TOPLEVEL_DECORATION_V1_MODE_SERVER_SIDE: + return "server-side decorations"; + } + abort(); +} + + +static void decoration_handle_configure(void *data, + struct zxdg_toplevel_decoration_v1 *decoration, + enum zxdg_toplevel_decoration_v1_mode mode) { + RGFW_UNUSED(data); RGFW_UNUSED(decoration); + printf("Using %s\n", get_mode_name(mode)); + RGFW_current_mode = mode; +} + +static const struct zxdg_toplevel_decoration_v1_listener decoration_listener = { + .configure = decoration_handle_configure, +}; + +static void randname(char *buf) { + struct timespec ts; + clock_gettime(CLOCK_REALTIME, &ts); + long r = ts.tv_nsec; + for (int i = 0; i < 6; ++i) { + buf[i] = 'A'+(r&15)+(r&16)*2; + r >>= 5; + } +} + +static int anonymous_shm_open(void) { + char name[] = "/RGFW-wayland-XXXXXX"; + int retries = 100; + + do { + randname(name + strlen(name) - 6); + + --retries; + // shm_open guarantees that O_CLOEXEC is set + int fd = shm_open(name, O_RDWR | O_CREAT | O_EXCL, 0600); + if (fd >= 0) { + shm_unlink(name); + return fd; + } + } while (retries > 0 && errno == EEXIST); + + return -1; +} + +int create_shm_file(off_t size) { + int fd = anonymous_shm_open(); + if (fd < 0) { + return fd; + } + + if (ftruncate(fd, size) < 0) { + close(fd); + return -1; + } + + return fd; +} + +static void wl_surface_frame_done(void *data, struct wl_callback *cb, uint32_t time) { + #ifdef RGFW_BUFFER + RGFW_window* win = (RGFW_window*)data; + if ((win->_winArgs & RGFW_NO_CPU_RENDER)) + return; + + #ifndef RGFW_X11_DONT_CONVERT_BGR + u32 x, y; + for (y = 0; y < (u32)win->r.h; y++) { + for (x = 0; x < (u32)win->r.w; x++) { + u32 index = (y * 4 * win->r.w) + x * 4; + + u8 red = win->buffer[index]; + win->buffer[index] = win->buffer[index + 2]; + win->buffer[index + 2] = red; + + } + } + #endif + + wl_surface_attach(win->src.surface, win->src.wl_buffer, 0, 0); + wl_surface_damage_buffer(win->src.surface, 0, 0, win->r.w, win->r.h); + wl_surface_commit(win->src.surface); + #endif +} + +static const struct wl_callback_listener wl_surface_frame_listener = { + .done = wl_surface_frame_done, +}; + + + /* normal wayland RGFW stuff */ + + RGFW_area RGFW_getScreenSize(void) { + RGFW_area area = {}; + + if (RGFW_root != NULL) + /* this isn't right but it's here for buffers */ + area = RGFW_AREA(RGFW_root->r.w, RGFW_root->r.h); + + /* TODO wayland */ + return area; + } + + void RGFW_releaseCursor(RGFW_window* win) { + RGFW_UNUSED(win); + } + + void RGFW_captureCursor(RGFW_window* win, RGFW_rect r) { + RGFW_UNUSED(win); RGFW_UNUSED(r); + + /* TODO wayland */ + } + + + RGFWDEF void RGFW_init_buffer(RGFW_window* win); + void RGFW_init_buffer(RGFW_window* win) { + #if defined(RGFW_OSMESA) || defined(RGFW_BUFFER) + size_t size = win->r.w * win->r.h * 4; + int fd = create_shm_file(size); + if (fd < 0) { + fprintf(stderr, "Failed to create a buffer. size: %ld\n", size); + exit(1); + } + + win->buffer = mmap(NULL, size, PROT_READ | PROT_WRITE, MAP_SHARED, fd, 0); + if (win->buffer == MAP_FAILED) { + fprintf(stderr, "mmap failed!\n"); + close(fd); + exit(1); + } + + struct wl_shm_pool* pool = wl_shm_create_pool(shm, fd, size); + win->src.wl_buffer = wl_shm_pool_create_buffer(pool, 0, win->r.w, win->r.h, win->r.w * 4, + WL_SHM_FORMAT_ARGB8888); + wl_shm_pool_destroy(pool); + + close(fd); + + wl_surface_attach(win->src.surface, win->src.wl_buffer, 0, 0); + wl_surface_commit(win->src.surface); + + u8 color[] = {0x00, 0x00, 0x00, 0xFF}; + + size_t i; + for (i = 0; i < size; i += 4) { + memcpy(&win->buffer[i], color, 4); + } + + #if defined(RGFW_OSMESA) + win->src.ctx = OSMesaCreateContext(OSMESA_RGBA, NULL); + OSMesaMakeCurrent(win->src.ctx, win->buffer, GL_UNSIGNED_BYTE, win->r.w, win->r.h); + #endif + #else + RGFW_UNUSED(win); + #endif + } + + + RGFW_window* RGFW_createWindow(const char* name, RGFW_rect rect, u16 args) { + RGFW_window* win = RGFW_window_basic_init(rect, args); + + fprintf(stderr, "Warning: RGFW Wayland support is experimental\n"); + + win->src.display = wl_display_connect(NULL); + if (win->src.display == NULL) { + #ifdef RGFW_DEBUG + fprintf(stderr, "Failed to load Wayland display\n"); + #endif + return NULL; + } + + struct wl_registry *registry = wl_display_get_registry(win->src.display); + wl_registry_add_listener(registry, ®istry_listener, NULL); + + wl_display_dispatch(win->src.display); + wl_display_roundtrip(win->src.display); + + if (RGFW_compositor == NULL) { + #ifdef RGFW_DEBUG + fprintf(stderr, "Can't find compositor.\n"); + #endif + + return NULL; + } + + if (RGFW_wl_cursor_theme == NULL) { + RGFW_wl_cursor_theme = wl_cursor_theme_load(NULL, 24, shm); + RGFW_cursor_surface = wl_compositor_create_surface(RGFW_compositor); + + struct wl_cursor* cursor = wl_cursor_theme_get_cursor(RGFW_wl_cursor_theme, "left_ptr"); + RGFW_cursor_image = cursor->images[0]; + struct wl_buffer* cursor_buffer = wl_cursor_image_get_buffer(RGFW_cursor_image); + + wl_surface_attach(RGFW_cursor_surface, cursor_buffer, 0, 0); + wl_surface_commit(RGFW_cursor_surface); + } + + if (RGFW_root == NULL) + xdg_wm_base_add_listener(xdg_wm_base, &xdg_wm_base_listener, NULL); + + xkb_context = xkb_context_new(XKB_CONTEXT_NO_FLAGS); + + win->src.surface = wl_compositor_create_surface(RGFW_compositor); + wl_surface_set_user_data(win->src.surface, win); + + win->src.xdg_surface = xdg_wm_base_get_xdg_surface(xdg_wm_base, win->src.surface); + xdg_surface_add_listener(win->src.xdg_surface, &xdg_surface_listener, NULL); + + xdg_wm_base_set_user_data(xdg_wm_base, win); + + win->src.xdg_toplevel = xdg_surface_get_toplevel(win->src.xdg_surface); + xdg_toplevel_set_user_data(win->src.xdg_toplevel, win); + xdg_toplevel_set_title(win->src.xdg_toplevel, name); + xdg_toplevel_add_listener(win->src.xdg_toplevel, &xdg_toplevel_listener, NULL); + + xdg_surface_set_window_geometry(win->src.xdg_surface, 0, 0, win->r.w, win->r.h); + + if (!(args & RGFW_NO_BORDER)) { + win->src.decoration = zxdg_decoration_manager_v1_get_toplevel_decoration( + decoration_manager, win->src.xdg_toplevel); + } + + if (args & RGFW_CENTER) { + RGFW_area screenR = RGFW_getScreenSize(); + RGFW_window_move(win, RGFW_POINT((screenR.w - win->r.w) / 2, (screenR.h - win->r.h) / 2)); + } + + if (args & RGFW_OPENGL_SOFTWARE) + setenv("LIBGL_ALWAYS_SOFTWARE", "1", 1); + + wl_display_roundtrip(win->src.display); + + wl_surface_commit(win->src.surface); + + /* wait for the surface to be configured */ + while (wl_display_dispatch(win->src.display) != -1 && !RGFW_wl_configured) { } + + + #ifdef RGFW_OPENGL + if ((args & RGFW_NO_INIT_API) == 0) { + win->src.window = wl_egl_window_create(win->src.surface, win->r.w, win->r.h); + RGFW_createOpenGLContext(win); + } + #endif + + RGFW_init_buffer(win); + + struct wl_callback* callback = wl_surface_frame(win->src.surface); + wl_callback_add_listener(callback, &wl_surface_frame_listener, win); + wl_surface_commit(win->src.surface); + + if (args & RGFW_HIDE_MOUSE) { + RGFW_window_showMouse(win, 0); + } + + if (RGFW_root == NULL) { + RGFW_root = win; + } + + win->src.eventIndex = 0; + win->src.eventLen = 0; + + return win; + } + + RGFW_Event* RGFW_window_checkEvent(RGFW_window* win) { + if (win->_winArgs & RGFW_WINDOW_HIDE) + return NULL; + + if (win->src.eventIndex == 0) { + if (wl_display_roundtrip(win->src.display) == -1) { + return NULL; + } + RGFW_resetKey(); + } + + #ifdef __linux__ + RGFW_Event* event = RGFW_linux_updateJoystick(win); + if (event != NULL) + return event; + #endif + + if (win->src.eventLen == 0) { + return NULL; + } + + RGFW_Event ev = RGFW_eventPipe_pop(win); + + if (ev.type == 0 || win->event.type == RGFW_quit) { + return NULL; + } + + ev.frameTime = win->event.frameTime; + ev.frameTime2 = win->event.frameTime2; + ev.inFocus = win->event.inFocus; + win->event = ev; + + return &win->event; + } + + + void RGFW_window_resize(RGFW_window* win, RGFW_area a) { + RGFW_UNUSED(win); RGFW_UNUSED(a); + + /* TODO wayland */ + } + + void RGFW_window_move(RGFW_window* win, RGFW_point v) { + RGFW_UNUSED(win); RGFW_UNUSED(v); + + /* TODO wayland */ + } + + void RGFW_window_setIcon(RGFW_window* win, u8* src, RGFW_area a, i32 channels) { + RGFW_UNUSED(win); RGFW_UNUSED(src); RGFW_UNUSED(a); RGFW_UNUSED(channels) + /* TODO wayland */ + } + + void RGFW_window_moveMouse(RGFW_window* win, RGFW_point v) { + RGFW_UNUSED(win); RGFW_UNUSED(v); + + /* TODO wayland */ + } + + void RGFW_window_showMouse(RGFW_window* win, i8 show) { + RGFW_UNUSED(win); + + if (show) { + + } + else { + + } + + /* TODO wayland */ + } + + b8 RGFW_window_isMaximized(RGFW_window* win) { + RGFW_UNUSED(win); + /* TODO wayland */ + return 0; + } + + b8 RGFW_window_isMinimized(RGFW_window* win) { + RGFW_UNUSED(win); + /* TODO wayland */ + return 0; + } + + b8 RGFW_window_isHidden(RGFW_window* win) { + RGFW_UNUSED(win); + /* TODO wayland */ + return 0; + } + + b8 RGFW_window_isFullscreen(RGFW_window* win) { + RGFW_UNUSED(win); + /* TODO wayland */ + return 0; + } + + RGFW_point RGFW_window_getMousePoint(RGFW_window* win) { + RGFW_UNUSED(win); + /* TODO wayland */ + return RGFW_POINT(0, 0); + } + + RGFW_point RGFW_getGlobalMousePoint(void) { + /* TODO wayland */ + return RGFW_POINT(0, 0); + } + + void RGFW_window_show(RGFW_window* win) { + //wl_surface_attach(win->src.surface, win->rc., 0, 0); + wl_surface_commit(win->src.surface); + + if (win->_winArgs & RGFW_WINDOW_HIDE) + win->_winArgs ^= RGFW_WINDOW_HIDE; + } + + void RGFW_window_hide(RGFW_window* win) { + wl_surface_attach(win->src.surface, NULL, 0, 0); + wl_surface_commit(win->src.surface); + win->_winArgs |= RGFW_WINDOW_HIDE; + } + + void RGFW_window_setMouseDefault(RGFW_window* win) { + RGFW_UNUSED(win); + + RGFW_window_setMouseStandard(win, RGFW_MOUSE_NORMAL); + } + + void RGFW_window_setMouseStandard(RGFW_window* win, u8 mouse) { + RGFW_UNUSED(win); + + static const char* iconStrings[] = { "left_ptr", "left_ptr", "text", "cross", "pointer", "e-resize", "n-resize", "nw-resize", "ne-resize", "all-resize", "not-allowed" }; + + struct wl_cursor* cursor = wl_cursor_theme_get_cursor(RGFW_wl_cursor_theme, iconStrings[mouse]); + RGFW_cursor_image = cursor->images[0]; + struct wl_buffer* cursor_buffer = wl_cursor_image_get_buffer(RGFW_cursor_image); + + wl_surface_attach(RGFW_cursor_surface, cursor_buffer, 0, 0); + wl_surface_commit(RGFW_cursor_surface); + } + + void RGFW_window_setMouse(RGFW_window* win, u8* image, RGFW_area a, i32 channels) { + RGFW_UNUSED(win); RGFW_UNUSED(image); RGFW_UNUSED(a); RGFW_UNUSED(channels) + //struct wl_cursor* cursor = wl_cursor_theme_get_cursor(RGFW_wl_cursor_theme, iconStrings[mouse]); + //RGFW_cursor_image = image; + struct wl_buffer* cursor_buffer = wl_cursor_image_get_buffer(RGFW_cursor_image); + + wl_surface_attach(RGFW_cursor_surface, cursor_buffer, 0, 0); + wl_surface_commit(RGFW_cursor_surface); + } + + void RGFW_window_setName(RGFW_window* win, char* name) { + xdg_toplevel_set_title(win->src.xdg_toplevel, name); + } + + void RGFW_window_setMousePassthrough(RGFW_window* win, b8 passthrough) { + RGFW_UNUSED(win); RGFW_UNUSED(passthrough); + + /* TODO wayland */ + } + + void RGFW_window_setBorder(RGFW_window* win, b8 border) { + RGFW_UNUSED(win); RGFW_UNUSED(border); + + /* TODO wayland */ + } + + void RGFW_window_restore(RGFW_window* win) { + RGFW_UNUSED(win); + + /* TODO wayland */ + } + + void RGFW_window_minimize(RGFW_window* win) { + RGFW_UNUSED(win); + + /* TODO wayland */ + } + + void RGFW_window_setMaxSize(RGFW_window* win, RGFW_area a) { + RGFW_UNUSED(win); RGFW_UNUSED(a); + + /* TODO wayland */ + } + + void RGFW_window_setMinSize(RGFW_window* win, RGFW_area a) { + RGFW_UNUSED(win); RGFW_UNUSED(a); + + /* TODO wayland */ + } + + RGFW_monitor RGFW_window_getMonitor(RGFW_window* win) { + RGFW_monitor m = {}; + RGFW_UNUSED(win); + RGFW_UNUSED(m); + /* TODO wayland */ + + return m; + } + + + #ifndef RGFW_EGL + void RGFW_window_swapInterval(RGFW_window* win, i32 swapInterval) { RGFW_UNUSED(win); RGFW_UNUSED(swapInterval); } + #endif + + void RGFW_window_swapBuffers(RGFW_window* win) { + assert(win != NULL); + + /* clear the window*/ + #ifdef RGFW_BUFFER + wl_surface_frame_done(win, NULL, 0); + if (!(win->_winArgs & RGFW_NO_GPU_RENDER)) + #endif + { + #ifdef RGFW_OPENGL + eglSwapBuffers(win->src.EGL_display, win->src.EGL_surface); + #endif + } + + wl_display_flush(win->src.display); + } + + void RGFW_window_close(RGFW_window* win) { + #ifdef RGFW_EGL + RGFW_closeEGL(win); + #endif + + if (RGFW_root == win) { + RGFW_root = NULL; + } + + xdg_toplevel_destroy(win->src.xdg_toplevel); + xdg_surface_destroy(win->src.xdg_surface); + wl_surface_destroy(win->src.surface); + + #ifdef RGFW_BUFFER + wl_buffer_destroy(win->src.wl_buffer); + #endif + + wl_display_disconnect(win->src.display); + RGFW_FREE(win); + } + + RGFW_monitor RGFW_getPrimaryMonitor(void) { + /* TODO wayland */ + + return (RGFW_monitor){}; + } + + RGFW_monitor* RGFW_getMonitors(void) { + /* TODO wayland */ + + return NULL; + } + + void RGFW_writeClipboard(const char* text, u32 textLen) { + RGFW_UNUSED(text); RGFW_UNUSED(textLen); + + /* TODO wayland */ + } + + char* RGFW_readClipboard(size_t* size) { + RGFW_UNUSED(size); + + /* TODO wayland */ + + return NULL; + } +#endif /* RGFW_WAYLAND */ + +/* + End of Wayland defines +*/ /* @@ -3822,6 +5006,8 @@ Start of Linux / Unix defines #ifdef RGFW_WINDOWS #define WIN32_LEAN_AND_MEAN + #define OEMRESOURCE + #include #include #include @@ -3829,9 +5015,11 @@ Start of Linux / Unix defines #include #include #include - #include - #include + #include + + __declspec(dllimport) int __stdcall WideCharToMultiByte( UINT CodePage, DWORD dwFlags, const WCHAR* lpWideCharStr, int cchWideChar, LPSTR lpMultiByteStr, int cbMultiByte, LPCCH lpDefaultChar, LPBOOL lpUsedDefaultChar); + #ifndef RGFW_NO_XINPUT typedef DWORD (WINAPI * PFN_XInputGetState)(DWORD,XINPUT_STATE*); PFN_XInputGetState XInputGetStateSRC = NULL; @@ -3873,13 +5061,6 @@ Start of Linux / Unix defines #define wglGetSwapIntervalEXT wglGetSwapIntervalEXTSrc - -#if defined(RGFW_DIRECTX) - RGFW_directXinfo RGFW_dxInfo; - - RGFW_directXinfo* RGFW_getDirectXInfo(void) { return &RGFW_dxInfo; } -#endif - void* RGFWjoystickApi = NULL; /* these two wgl functions need to be preloaded */ @@ -3893,7 +5074,6 @@ Start of Linux / Unix defines #define WGL_DRAW_TO_WINDOW_ARB 0x2001 #define WGL_ACCELERATION_ARB 0x2003 #define WGL_NO_ACCELERATION_ARB 0x2025 -#define WGL_SUPPORT_OPENGL_ARB 0x2010 #define WGL_DOUBLE_BUFFER_ARB 0x2011 #define WGL_COLOR_BITS_ARB 0x2014 #define WGL_RED_BITS_ARB 0x2015 @@ -3990,7 +5170,7 @@ static HMODULE wglinstance = NULL; #endif __declspec(dllimport) u32 __stdcall timeBeginPeriod(u32 uPeriod); - + #ifndef RGFW_NO_XINPUT void RGFW_loadXInput(void) { u32 i; @@ -4048,7 +5228,7 @@ static HMODULE wglinstance = NULL; OSMesaMakeCurrent(win->src.ctx, win->buffer, GL_UNSIGNED_BYTE, win->r.w, win->r.h); #endif #else -RGFW_UNUSED(win); /* if buffer rendering is not being used */ +RGFW_UNUSED(win); /*!< if buffer rendering is not being used */ #endif } @@ -4056,17 +5236,16 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ DragAcceptFiles(win->src.window, allow); } + void RGFW_releaseCursor(RGFW_window* win) { + RGFW_UNUSED(win); + ClipCursor(NULL); + const RAWINPUTDEVICE id = { 0x01, 0x02, RIDEV_REMOVE, NULL }; + RegisterRawInputDevices(&id, 1, sizeof(id)); + } + void RGFW_captureCursor(RGFW_window* win, RGFW_rect rect) { - RGFW_UNUSED(win) + RGFW_UNUSED(win); RGFW_UNUSED(rect); - if (!rect.x && !rect.y && rect.w && !rect.h) { - ClipCursor(NULL); - const RAWINPUTDEVICE id = { 0x01, 0x02, RIDEV_REMOVE, NULL }; - RegisterRawInputDevices(&id, 1, sizeof(id)); - - return; - } - RECT clipRect; GetClientRect(win->src.window, &clipRect); ClientToScreen(win->src.window, (POINT*) &clipRect.left); @@ -4087,6 +5266,7 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ if (RGFW_Shcore_dll == NULL) { RGFW_Shcore_dll = LoadLibraryA("shcore.dll"); GetDpiForMonitorSRC = (PFN_GetDpiForMonitor)(void*)GetProcAddress(RGFW_Shcore_dll, "GetDpiForMonitor"); + SetProcessDPIAware(); } #endif @@ -4101,9 +5281,7 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ wglGetCurrentContextSRC = (PFN_wglGetCurrentContext) GetProcAddress(wglinstance, "wglGetCurrentContext"); #endif } - - timeBeginPeriod(1); - + if (name[0] == 0) name = (char*) " "; RGFW_eventWindow.r = RGFW_RECT(-1, -1, -1, -1); @@ -4117,8 +5295,16 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ HINSTANCE inh = GetModuleHandleA(NULL); - WNDCLASSA Class = { 0 }; /* Setup the Window class. */ - Class.lpszClassName = name; + #ifndef __cplusplus + WNDCLASSA Class = { 0 }; /*!< Setup the Window class. */ + #else + WNDCLASSA Class = { }; + #endif + + if (RGFW_className == NULL) + RGFW_className = (char*)name; + + Class.lpszClassName = RGFW_className; Class.hInstance = inh; Class.hCursor = LoadCursor(NULL, IDC_ARROW); Class.lpfnWndProc = WndProc; @@ -4130,7 +5316,7 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ RECT windowRect, clientRect; if (!(args & RGFW_NO_BORDER)) { - window_style |= WS_CAPTION | WS_SYSMENU | WS_BORDER | WS_VISIBLE | WS_MINIMIZEBOX; + window_style |= WS_CAPTION | WS_SYSMENU | WS_BORDER | WS_MINIMIZEBOX; if (!(args & RGFW_NO_RESIZE)) window_style |= WS_SIZEBOX | WS_MAXIMIZEBOX | WS_THICKFRAME; @@ -4215,17 +5401,26 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ #ifdef RGFW_OPENGL HDC dummy_dc = GetDC(dummyWin); - - PIXELFORMATDESCRIPTOR pfd = { - .nSize = sizeof(pfd), - .nVersion = 1, - .iPixelType = PFD_TYPE_RGBA, - .dwFlags = PFD_DRAW_TO_WINDOW | PFD_SUPPORT_OPENGL | PFD_DOUBLEBUFFER, - .cColorBits = 24, - .cAlphaBits = 8, - .iLayerType = PFD_MAIN_PLANE, - .cDepthBits = 32, - .cStencilBits = 8, + + u32 pfd_flags = PFD_DRAW_TO_WINDOW | PFD_SUPPORT_OPENGL; + + //if (RGFW_DOUBLE_BUFFER) + pfd_flags |= PFD_DOUBLEBUFFER; + + PIXELFORMATDESCRIPTOR pfd = { + sizeof(pfd), + 1, /* version */ + pfd_flags, + PFD_TYPE_RGBA, /* ipixel type */ + 24, /* color bits */ + 0, 0, 0, 0, 0, 0, + 8, /* alpha bits */ + 0, 0, 0, 0, 0, 0, + 32, /* depth bits */ + 8, /* stencil bits */ + 0, + PFD_MAIN_PLANE, /* Layer type */ + 0, 0, 0, 0 }; int pixel_format = ChoosePixelFormat(dummy_dc, &pfd); @@ -4242,41 +5437,41 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ wglMakeCurrent(dummy_dc, 0); wglDeleteContext(dummy_context); ReleaseDC(dummyWin, dummy_dc); - + + /* try to create the pixel format we want for opengl and then try to create an opengl context for the specified version */ if (wglCreateContextAttribsARB != NULL) { - PIXELFORMATDESCRIPTOR pfd = (PIXELFORMATDESCRIPTOR){ sizeof(pfd), 1, PFD_TYPE_RGBA, PFD_DRAW_TO_WINDOW | PFD_SUPPORT_OPENGL | PFD_DOUBLEBUFFER, 32, 8, PFD_MAIN_PLANE, 24, 8, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}; + PIXELFORMATDESCRIPTOR pfd = {sizeof(pfd), 1, pfd_flags, PFD_TYPE_RGBA, 32, 8, PFD_MAIN_PLANE, 24, 8, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}; if (args & RGFW_OPENGL_SOFTWARE) pfd.dwFlags |= PFD_GENERIC_FORMAT | PFD_GENERIC_ACCELERATED; if (wglChoosePixelFormatARB != NULL) { - i32* pixel_format_attribs = (i32*)RGFW_initAttribs(args & RGFW_OPENGL_SOFTWARE); + i32* pixel_format_attribs = (i32*)RGFW_initFormatAttribs(args & RGFW_OPENGL_SOFTWARE); int pixel_format; UINT num_formats; wglChoosePixelFormatARB(win->src.hdc, pixel_format_attribs, 0, 1, &pixel_format, &num_formats); if (!num_formats) { - printf("Failed to set the OpenGL 3.3 pixel format.\n"); + printf("Failed to create a pixel format for WGL.\n"); } DescribePixelFormat(win->src.hdc, pixel_format, sizeof(pfd), &pfd); if (!SetPixelFormat(win->src.hdc, pixel_format, &pfd)) { - printf("Failed to set the OpenGL 3.3 pixel format.\n"); + printf("Failed to set the WGL pixel format.\n"); } } - + + /* create opengl/WGL context for the specified version */ u32 index = 0; i32 attribs[40]; - SET_ATTRIB(WGL_CONTEXT_PROFILE_MASK_ARB, WGL_CONTEXT_COMPATIBILITY_PROFILE_BIT_ARB); - - if (RGFW_majorVersion || RGFW_minorVersion) { - SET_ATTRIB(WGL_CONTEXT_MAJOR_VERSION_ARB, RGFW_majorVersion); - SET_ATTRIB(WGL_CONTEXT_MINOR_VERSION_ARB, RGFW_minorVersion); + if (RGFW_profile == RGFW_GL_CORE) { + SET_ATTRIB(WGL_CONTEXT_PROFILE_MASK_ARB, WGL_CONTEXT_CORE_PROFILE_BIT_ARB); } - - SET_ATTRIB(WGL_CONTEXT_PROFILE_MASK_ARB, WGL_CONTEXT_COMPATIBILITY_PROFILE_BIT_ARB); - + else { + SET_ATTRIB(WGL_CONTEXT_PROFILE_MASK_ARB, WGL_CONTEXT_COMPATIBILITY_PROFILE_BIT_ARB); + } + if (RGFW_majorVersion || RGFW_minorVersion) { SET_ATTRIB(WGL_CONTEXT_MAJOR_VERSION_ARB, RGFW_majorVersion); SET_ATTRIB(WGL_CONTEXT_MINOR_VERSION_ARB, RGFW_minorVersion); @@ -4285,7 +5480,7 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ SET_ATTRIB(0, 0); win->src.ctx = (HGLRC)wglCreateContextAttribsARB(win->src.hdc, NULL, attribs); - } else { + } else { /* fall back to a default context (probably opengl 2 or something) */ fprintf(stderr, "Failed to create an accelerated OpenGL Context\n"); int pixel_format = ChoosePixelFormat(win->src.hdc, &pfd); @@ -4322,6 +5517,11 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ if (args & RGFW_SCALE_TO_MONITOR) RGFW_window_scaleToMonitor(win); #endif + + if (args & RGFW_CENTER) { + RGFW_area screenR = RGFW_getScreenSize(); + RGFW_window_move(win, RGFW_POINT((screenR.w - win->r.w) / 2, (screenR.h - win->r.h) / 2)); + } #ifdef RGFW_EGL if ((args & RGFW_NO_INIT_API) == 0) @@ -4659,7 +5859,7 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ CharLowerBuffA(keyName, 16); } } - + RGFW_updateLockState(win, (GetKeyState(VK_CAPITAL) & 0x0001), (GetKeyState(VK_NUMLOCK) & 0x0001)); strncpy(win->event.keyName, keyName, 16); @@ -4670,6 +5870,7 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ } win->event.type = RGFW_keyPressed; + win->event.repeat = RGFW_isPressed(win, win->event.keyCode); RGFW_keyboard[win->event.keyCode].current = 1; RGFW_keyCallback(win, win->event.keyCode, win->event.keyName, win->event.lockState, 1); break; @@ -4706,8 +5907,8 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ break; win->event.type = RGFW_mousePosChanged; - win->event.point.x = -raw->data.mouse.lLastX; - win->event.point.y = -raw->data.mouse.lLastY; + win->event.point.x = raw->data.mouse.lLastX; + win->event.point.y = raw->data.mouse.lLastY; break; } @@ -4830,7 +6031,11 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ u8 RGFW_window_isFullscreen(RGFW_window* win) { assert(win != NULL); + #ifndef __cplusplus WINDOWPLACEMENT placement = { 0 }; + #else + WINDOWPLACEMENT placement = { }; + #endif GetWindowPlacement(win->src.window, &placement); return placement.showCmd == SW_SHOWMAXIMIZED; } @@ -4844,7 +6049,11 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ u8 RGFW_window_isMinimized(RGFW_window* win) { assert(win != NULL); + #ifndef __cplusplus WINDOWPLACEMENT placement = { 0 }; + #else + WINDOWPLACEMENT placement = { }; + #endif GetWindowPlacement(win->src.window, &placement); return placement.showCmd == SW_SHOWMINIMIZED; } @@ -4852,7 +6061,11 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ u8 RGFW_window_isMaximized(RGFW_window* win) { assert(win != NULL); + #ifndef __cplusplus WINDOWPLACEMENT placement = { 0 }; + #else + WINDOWPLACEMENT placement = { }; + #endif GetWindowPlacement(win->src.window, &placement); return placement.showCmd == SW_SHOWMAXIMIZED; } @@ -4892,7 +6105,7 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ for (deviceIndex = 0; EnumDisplayDevicesA(0, (DWORD) deviceIndex, &dd, 0); deviceIndex++) { char* deviceName = dd.DeviceName; if (EnumDisplayDevicesA(deviceName, info.iIndex, &dd, 0)) { - strncpy(monitor.name, dd.DeviceString, 128); /* copy the monitor's name */ + strncpy(monitor.name, dd.DeviceString, 128); /*!< copy the monitor's name */ break; } } @@ -4904,9 +6117,14 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ monitor.rect.h = monitorInfo.rcWork.bottom - monitorInfo.rcWork.top; #ifndef RGFW_NO_DPI + #ifndef USER_DEFAULT_SCREEN_DPI + #define USER_DEFAULT_SCREEN_DPI 96 + #endif + if (GetDpiForMonitor != NULL) { u32 x, y; - GetDpiForMonitor(src, MDT_ANGULAR_DPI, &x, &y); + GetDpiForMonitor(src, MDT_EFFECTIVE_DPI, &x, &y); + monitor.scaleX = (float) (x) / (float) USER_DEFAULT_SCREEN_DPI; monitor.scaleY = (float) (y) / (float) USER_DEFAULT_SCREEN_DPI; } @@ -4921,7 +6139,7 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ /* Calculate physical height in inches */ monitor.physW = GetSystemMetrics(SM_CYSCREEN) / (float) ppiX; monitor.physH = GetSystemMetrics(SM_CXSCREEN) / (float) ppiY; - + return monitor; } #endif /* RGFW_NO_MONITOR */ @@ -4945,14 +6163,18 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ } RGFW_monitor RGFW_getPrimaryMonitor(void) { + #ifdef __cplusplus + return win32CreateMonitor(MonitorFromPoint({ 0, 0 }, MONITOR_DEFAULTTOPRIMARY)); + #else return win32CreateMonitor(MonitorFromPoint((POINT) { 0, 0 }, MONITOR_DEFAULTTOPRIMARY)); - } + #endif + } RGFW_monitor* RGFW_getMonitors(void) { RGFW_mInfo info; info.iIndex = 0; while (EnumDisplayMonitors(NULL, NULL, GetMonitorHandle, (LPARAM) &info)); - + return RGFW_monitors; } @@ -5102,10 +6324,10 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ #endif #ifdef RGFW_OPENGL - wglDeleteContext((HGLRC) win->src.ctx); /* delete opengl context */ + wglDeleteContext((HGLRC) win->src.ctx); /*!< delete opengl context */ #endif - DeleteDC(win->src.hdc); /* delete device context */ - DestroyWindow(win->src.window); /* delete window */ + DeleteDC(win->src.hdc); /*!< delete device context */ + DestroyWindow(win->src.window); /*!< delete window */ #if defined(RGFW_OSMESA) if (win->buffer != NULL) @@ -5292,8 +6514,10 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ #ifdef RGFW_OPENGL void RGFW_window_makeCurrent_OpenGL(RGFW_window* win) { - assert(win != NULL); - wglMakeCurrent(win->src.hdc, (HGLRC) win->src.ctx); + if (win == NULL) + wglMakeCurrent(NULL, NULL); + else + wglMakeCurrent(win->src.hdc, (HGLRC) win->src.ctx); } #endif @@ -5308,7 +6532,6 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ if (loadSwapFunc == NULL) { fprintf(stderr, "wglSwapIntervalEXT not supported\n"); - win->fpsCap = (swapInterval == 1) ? 0 : swapInterval; return; } @@ -5319,18 +6542,15 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ if (wglSwapIntervalEXT(swapInterval) == FALSE) fprintf(stderr, "Failed to set swap interval\n"); - #endif - - win->fpsCap = (swapInterval == 1) ? 0 : swapInterval; + #else + RGFW_UNUSED(swapInterval); + #endif } #endif void RGFW_window_swapBuffers(RGFW_window* win) { - assert(win != NULL); - - RGFW_window_makeCurrent(win); - + //assert(win != NULL); /* clear the window*/ if (!(win->_winArgs & RGFW_NO_CPU_RENDER)) { @@ -5356,8 +6576,6 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ win->src.swapchain->lpVtbl->Present(win->src.swapchain, 0, 0); #endif } - - RGFW_window_checkFPS(win); } char* createUTF8FromWideStringWin32(const WCHAR* source) { @@ -5378,20 +6596,28 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ return target; } + + static inline LARGE_INTEGER RGFW_win32_initTimer(void) { + static LARGE_INTEGER frequency = {{0, 0}}; + if (frequency.QuadPart == 0) { + timeBeginPeriod(1); + QueryPerformanceFrequency(&frequency); + } + + return frequency; + } u64 RGFW_getTimeNS(void) { - LARGE_INTEGER frequency; - QueryPerformanceFrequency(&frequency); + LARGE_INTEGER frequency = RGFW_win32_initTimer(); LARGE_INTEGER counter; QueryPerformanceCounter(&counter); - return (u64) (counter.QuadPart * 1e9 / frequency.QuadPart); + return (u64) ((counter.QuadPart * 1e9) / frequency.QuadPart); } u64 RGFW_getTime(void) { - LARGE_INTEGER frequency; - QueryPerformanceFrequency(&frequency); + LARGE_INTEGER frequency = RGFW_win32_initTimer(); LARGE_INTEGER counter; QueryPerformanceCounter(&counter); @@ -5720,11 +6946,9 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ NSWindowStyleMaskHUDWindow = 1 << 13 }; - typedef const char* NSPasteboardType; NSPasteboardType const NSPasteboardTypeString = "public.utf8-plain-text"; // Replaces NSStringPboardType - typedef NS_ENUM(i32, NSDragOperation) { NSDragOperationNone = 0, NSDragOperationCopy = 1, @@ -5902,7 +7126,6 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ for (int i = 0; i < count; i++) { id fileURL = objc_msgSend_arr(fileURLs, sel_registerName("objectAtIndex:"), i); const char *filePath = ((const char* (*)(id, SEL))objc_msgSend)(fileURL, sel_registerName("UTF8String")); - // printf("File: %s\n", filePath); strncpy(win->event.droppedFiles[i], filePath, RGFW_MAX_PATH); win->event.droppedFiles[i][RGFW_MAX_PATH - 1] = '\0'; } @@ -6002,10 +7225,20 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ OSMesaMakeCurrent(win->src.ctx, win->buffer, GL_UNSIGNED_BYTE, win->r.w, win->r.h); #endif #else - RGFW_UNUSED(win); /* if buffer rendering is not being used */ + RGFW_UNUSED(win); /*!< if buffer rendering is not being used */ #endif } + + void RGFW_window_cocoaSetLayer(RGFW_window* win, void* layer) { + objc_msgSend_void_id(win->src.view, sel_registerName("setLayer"), layer); + } + + void* RGFW_cocoaGetLayer(void) { + return objc_msgSend_class(objc_getClass("CAMetalLayer"), sel_registerName("layer")); + } + + NSPasteboardType const NSPasteboardTypeURL = "public.url"; NSPasteboardType const NSPasteboardTypeFileURL = "public.file-url"; @@ -6061,22 +7294,29 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ NSString* str = NSString_stringWithUTF8String(name); objc_msgSend_void_id(win->src.window, sel_registerName("setTitle:"), str); +#ifdef RGFW_EGL + if ((args & RGFW_NO_INIT_API) == 0) + RGFW_createOpenGLContext(win); +#endif + #ifdef RGFW_OPENGL if ((args & RGFW_NO_INIT_API) == 0) { - void* attrs = RGFW_initAttribs(args & RGFW_OPENGL_SOFTWARE); + void* attrs = RGFW_initFormatAttribs(args & RGFW_OPENGL_SOFTWARE); void* format = NSOpenGLPixelFormat_initWithAttributes(attrs); if (format == NULL) { - printf("Failed to load pixel format "); + printf("Failed to load pixel format for OpenGL\n"); - void* attrs = RGFW_initAttribs(1); + void* attrs = RGFW_initFormatAttribs(1); format = NSOpenGLPixelFormat_initWithAttributes(attrs); if (format == NULL) printf("and loading software rendering OpenGL failed\n"); else printf("Switching to software rendering\n"); } - + + /* the pixel format can be passed directly to opengl context creation to create a context + this is because the format also includes information about the opengl version (which may be a bad thing) */ win->src.view = NSOpenGLView_initWithFrame((NSRect){{0, 0}, {win->r.w, win->r.h}}, format); objc_msgSend_void(win->src.view, sel_registerName("prepareOpenGL")); win->src.ctx = objc_msgSend_id(win->src.view, sel_registerName("openGLContext")); @@ -6125,6 +7365,11 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ RGFW_window_scaleToMonitor(win); #endif + if (args & RGFW_CENTER) { + RGFW_area screenR = RGFW_getScreenSize(); + RGFW_window_move(win, RGFW_POINT((screenR.w - win->r.w) / 2, (screenR.h - win->r.h) / 2)); + } + if (args & RGFW_HIDE_MOUSE) RGFW_window_showMouse(win, 0); @@ -6164,6 +7409,7 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ } // Show the window + objc_msgSend_void_bool(NSApp, sel_registerName("activateIgnoringOtherApps:"), true); ((id(*)(id, SEL, SEL))objc_msgSend)(win->src.window, sel_registerName("makeKeyAndOrderFront:"), NULL); objc_msgSend_void_bool(win->src.window, sel_registerName("setIsVisible:"), true); @@ -6216,7 +7462,7 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ CGPoint point = CGEventGetLocation(e); CFRelease(e); - return RGFW_POINT((u32) point.x, (u32) point.y); /* the point is loaded during event checks */ + return RGFW_POINT((u32) point.x, (u32) point.y); /*!< the point is loaded during event checks */ } RGFW_point RGFW_window_getMousePoint(RGFW_window* win) { @@ -6340,7 +7586,7 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ id eventPool = objc_msgSend_class(objc_getClass("NSAutoreleasePool"), sel_registerName("alloc")); eventPool = objc_msgSend_id(eventPool, sel_registerName("init")); - void* date = (void*) ((id(*)(id, SEL, double))objc_msgSend) + void* date = (void*) ((id(*)(Class, SEL, double))objc_msgSend) (objc_getClass("NSDate"), sel_registerName("dateWithTimeIntervalSinceNow:"), waitMS); NSEvent* e = (NSEvent*) ((id(*)(id, SEL, NSEventMask, void*, NSString*, bool))objc_msgSend) @@ -6411,7 +7657,7 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ win->event.type = RGFW_mouseEnter; NSPoint p = ((NSPoint(*)(id, SEL)) objc_msgSend)(e, sel_registerName("locationInWindow")); - win->event.point = RGFW_POINT((u32) p.x, (u32) (win->r.h - p.y)); + win->event.point = RGFW_POINT((i32) p.x, (i32) (win->r.h - p.y)); RGFW_mouseNotifyCallBack(win, win->event.point, 1); break; } @@ -6429,6 +7675,7 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ win->event.type = RGFW_keyPressed; char* str = (char*)(const char*) NSString_to_char(objc_msgSend_id(e, sel_registerName("characters"))); strncpy(win->event.keyName, str, 16); + win->event.repeat = RGFW_isPressed(win, win->event.keyCode); RGFW_keyboard[win->event.keyCode].current = 1; RGFW_keyCallback(win, win->event.keyCode, win->event.keyName, win->event.lockState, 1); @@ -6501,7 +7748,7 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ p.x = ((CGFloat(*)(id, SEL))abi_objc_msgSend_fpret)(e, sel_registerName("deltaX")); p.y = ((CGFloat(*)(id, SEL))abi_objc_msgSend_fpret)(e, sel_registerName("deltaY")); - win->event.point = RGFW_POINT((u32) p.x, (u32) (p.y)); + win->event.point = RGFW_POINT((i32)p.x, (i32)p.y); } RGFW_mousePosCallback(win, win->event.point); @@ -6727,12 +7974,17 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ CGDisplayShowCursor(kCGDirectMainDisplay); objc_msgSend_void(mouse, sel_registerName("set")); } + + void RGFW_releaseCursor(RGFW_window* win) { + RGFW_UNUSED(win); + CGAssociateMouseAndMouseCursorPosition(1); + } void RGFW_captureCursor(RGFW_window* win, RGFW_rect r) { RGFW_UNUSED(win) CGWarpMouseCursorPosition(CGPointMake(r.x + (r.w / 2), r.y + (r.h / 2))); - CGAssociateMouseAndMouseCursorPosition((!r.x && !r.y && r.w && !r.h)); + CGAssociateMouseAndMouseCursorPosition(0); } void RGFW_window_moveMouse(RGFW_window* win, RGFW_point v) { @@ -6784,13 +8036,11 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ monitor.rect = RGFW_RECT((int) bounds.origin.x, (int) bounds.origin.y, (int) bounds.size.width, (int) bounds.size.height); CGSize screenSizeMM = CGDisplayScreenSize(display); - monitor.physW = screenSizeMM.width / 25.4; - monitor.physH = screenSizeMM.height / 25.4; + monitor.physW = screenSizeMM.width; + monitor.physH = screenSizeMM.height; - monitor.scaleX = (monitor.rect.w / (screenSizeMM.width)) / 2.6; - monitor.scaleY = (monitor.rect.h / (screenSizeMM.height)) / 2.6; - - snprintf(monitor.name, 128, "%i %i %i", CGDisplayModelNumber(display), CGDisplayVendorNumber(display), CGDisplaySerialNumber(display)); + monitor.scaleX = ((monitor.rect.w / (screenSizeMM.width / 25.4)) / 96) + 0.25; + monitor.scaleY = ((monitor.rect.h / (screenSizeMM.height / 25.4)) / 96) + 0.25; return monitor; } @@ -6880,9 +8130,9 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ #if defined(RGFW_OPENGL) NSOpenGLContext_setValues(win->src.ctx, &swapInterval, 222); + #else + RGFW_UNUSED(swapInterval); #endif - - win->fpsCap = (swapInterval == 1) ? 0 : swapInterval; } #endif @@ -6910,9 +8160,6 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ void RGFW_window_swapBuffers(RGFW_window* win) { assert(win != NULL); - - RGFW_window_makeCurrent(win); - /* clear the window*/ if (!(win->_winArgs & RGFW_NO_CPU_RENDER)) { @@ -6953,8 +8200,6 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ objc_msgSend_void(win->src.ctx, sel_registerName("flushBuffer")); #endif } - - RGFW_window_checkFPS(win); } void RGFW_window_close(RGFW_window* win) { @@ -7005,23 +8250,14 @@ RGFW_UNUSED(win); /* if buffer rendering is not being used */ */ /* - Start of Web ASM defines + WEBASM defines */ #ifdef RGFW_WEBASM - - -#define RGFW_jsButtonPressed 7 /*!< a joystick button was pressed */ -#define RGFW_jsButtonReleased 8 /*!< a joystick button was released */ -#define RGFW_jsAxisMove 9 /*!< an axis of a joystick was moved*/ - -#define RGFW_mouseEnter 14 /* mouse entered the window */ -#define RGFW_mouseLeave 15 /* mouse left the window */ - RGFW_Event RGFW_events[20]; size_t RGFW_eventLen = 0; -EM_BOOL on_keydown(int eventType, const EmscriptenKeyboardEvent* e, void* userData) { +EM_BOOL Emscripten_on_keydown(int eventType, const EmscriptenKeyboardEvent* e, void* userData) { RGFW_UNUSED(eventType); RGFW_UNUSED(userData); RGFW_events[RGFW_eventLen].type = RGFW_keyPressed; @@ -7032,12 +8268,12 @@ EM_BOOL on_keydown(int eventType, const EmscriptenKeyboardEvent* e, void* userDa RGFW_keyboard[RGFW_apiKeyCodeToRGFW(e->keyCode)].prev = RGFW_keyboard[RGFW_apiKeyCodeToRGFW(e->keyCode)].current; RGFW_keyboard[RGFW_apiKeyCodeToRGFW(e->keyCode)].current = 1; - RGFW_keyCallback(RGFW_root, e->keyCode, RGFW_events[RGFW_eventLen].keyName, 0, 1); - + RGFW_keyCallback(RGFW_root, RGFW_apiKeyCodeToRGFW(e->keyCode), RGFW_events[RGFW_eventLen].keyName, 0, 1); + return EM_TRUE; } -EM_BOOL on_keyup(int eventType, const EmscriptenKeyboardEvent* e, void* userData) { +EM_BOOL Emscripten_on_keyup(int eventType, const EmscriptenKeyboardEvent* e, void* userData) { RGFW_UNUSED(eventType); RGFW_UNUSED(userData); RGFW_events[RGFW_eventLen].type = RGFW_keyReleased; @@ -7049,12 +8285,12 @@ EM_BOOL on_keyup(int eventType, const EmscriptenKeyboardEvent* e, void* userData RGFW_keyboard[RGFW_apiKeyCodeToRGFW(e->keyCode)].prev = RGFW_keyboard[RGFW_apiKeyCodeToRGFW(e->keyCode)].current; RGFW_keyboard[RGFW_apiKeyCodeToRGFW(e->keyCode)].current = 0; - RGFW_keyCallback(RGFW_root, e->keyCode, RGFW_events[RGFW_eventLen].keyName, 0, 0); + RGFW_keyCallback(RGFW_root, RGFW_apiKeyCodeToRGFW(e->keyCode), RGFW_events[RGFW_eventLen].keyName, 0, 0); return EM_TRUE; } -EM_BOOL on_resize(int eventType, const EmscriptenUiEvent* e, void* userData) { +EM_BOOL Emscripten_on_resize(int eventType, const EmscriptenUiEvent* e, void* userData) { RGFW_UNUSED(eventType); RGFW_UNUSED(userData); RGFW_events[RGFW_eventLen].type = RGFW_windowResized; @@ -7064,7 +8300,7 @@ EM_BOOL on_resize(int eventType, const EmscriptenUiEvent* e, void* userData) { return EM_TRUE; } -EM_BOOL on_fullscreenchange(int eventType, const EmscriptenFullscreenChangeEvent* e, void* userData) { +EM_BOOL Emscripten_on_fullscreenchange(int eventType, const EmscriptenFullscreenChangeEvent* e, void* userData) { RGFW_UNUSED(eventType); RGFW_UNUSED(userData); RGFW_events[RGFW_eventLen].type = RGFW_windowResized; @@ -7075,7 +8311,7 @@ EM_BOOL on_fullscreenchange(int eventType, const EmscriptenFullscreenChangeEvent return EM_TRUE; } -EM_BOOL on_focusin(int eventType, const EmscriptenFocusEvent* e, void* userData) { +EM_BOOL Emscripten_on_focusin(int eventType, const EmscriptenFocusEvent* e, void* userData) { RGFW_UNUSED(eventType); RGFW_UNUSED(userData); RGFW_UNUSED(e); RGFW_events[RGFW_eventLen].type = RGFW_focusIn; @@ -7086,7 +8322,7 @@ EM_BOOL on_focusin(int eventType, const EmscriptenFocusEvent* e, void* userData) return EM_TRUE; } -EM_BOOL on_focusout(int eventType, const EmscriptenFocusEvent* e, void* userData) { +EM_BOOL Emscripten_on_focusout(int eventType, const EmscriptenFocusEvent* e, void* userData) { RGFW_UNUSED(eventType); RGFW_UNUSED(userData); RGFW_UNUSED(e); RGFW_events[RGFW_eventLen].type = RGFW_focusOut; @@ -7097,13 +8333,13 @@ EM_BOOL on_focusout(int eventType, const EmscriptenFocusEvent* e, void* userData return EM_TRUE; } -EM_BOOL on_mousemove(int eventType, const EmscriptenMouseEvent* e, void* userData) { +EM_BOOL Emscripten_on_mousemove(int eventType, const EmscriptenMouseEvent* e, void* userData) { RGFW_UNUSED(eventType); RGFW_UNUSED(userData); RGFW_events[RGFW_eventLen].type = RGFW_mousePosChanged; if ((RGFW_root->_winArgs & RGFW_HOLD_MOUSE)) { - RGFW_point p = RGFW_POINT(-e->movementX, -e->movementY); + RGFW_point p = RGFW_POINT(e->movementX, e->movementY); RGFW_events[RGFW_eventLen].point = p; } else @@ -7114,7 +8350,7 @@ EM_BOOL on_mousemove(int eventType, const EmscriptenMouseEvent* e, void* userDat return EM_TRUE; } -EM_BOOL on_mousedown(int eventType, const EmscriptenMouseEvent* e, void* userData) { +EM_BOOL Emscripten_on_mousedown(int eventType, const EmscriptenMouseEvent* e, void* userData) { RGFW_UNUSED(eventType); RGFW_UNUSED(userData); RGFW_events[RGFW_eventLen].type = RGFW_mouseButtonPressed; @@ -7131,7 +8367,7 @@ EM_BOOL on_mousedown(int eventType, const EmscriptenMouseEvent* e, void* userDat return EM_TRUE; } -EM_BOOL on_mouseup(int eventType, const EmscriptenMouseEvent* e, void* userData) { +EM_BOOL Emscripten_on_mouseup(int eventType, const EmscriptenMouseEvent* e, void* userData) { RGFW_UNUSED(eventType); RGFW_UNUSED(userData); RGFW_events[RGFW_eventLen].type = RGFW_mouseButtonReleased; @@ -7147,7 +8383,7 @@ EM_BOOL on_mouseup(int eventType, const EmscriptenMouseEvent* e, void* userData) return EM_TRUE; } -EM_BOOL on_wheel(int eventType, const EmscriptenWheelEvent* e, void* userData) { +EM_BOOL Emscripten_on_wheel(int eventType, const EmscriptenWheelEvent* e, void* userData) { RGFW_UNUSED(eventType); RGFW_UNUSED(userData); RGFW_events[RGFW_eventLen].type = RGFW_mouseButtonPressed; @@ -7164,54 +8400,82 @@ EM_BOOL on_wheel(int eventType, const EmscriptenWheelEvent* e, void* userData) { return EM_TRUE; } -EM_BOOL on_touchstart(int eventType, const EmscriptenTouchEvent* e, void* userData) { +EM_BOOL Emscripten_on_touchstart(int eventType, const EmscriptenTouchEvent* e, void* userData) { RGFW_UNUSED(eventType); RGFW_UNUSED(userData); - RGFW_events[RGFW_eventLen].type = RGFW_mouseButtonPressed; - RGFW_events[RGFW_eventLen].point = RGFW_POINT(e->touches[0].targetX, e->touches[0].targetY); - RGFW_events[RGFW_eventLen].button = 1; - RGFW_events[RGFW_eventLen].scroll = 0; + size_t i; + for (i = 0; i < (size_t)e->numTouches; i++) { + RGFW_events[RGFW_eventLen].type = RGFW_mouseButtonPressed; + RGFW_events[RGFW_eventLen].point = RGFW_POINT(e->touches[i].targetX, e->touches[i].targetY); + RGFW_events[RGFW_eventLen].button = 1; + RGFW_events[RGFW_eventLen].scroll = 0; - RGFW_mouseButtons[RGFW_events[RGFW_eventLen].button].prev = RGFW_mouseButtons[RGFW_events[RGFW_eventLen].button].current; - RGFW_mouseButtons[RGFW_events[RGFW_eventLen].button].current = 1; + RGFW_mouseButtons[RGFW_events[RGFW_eventLen].button].prev = RGFW_mouseButtons[RGFW_events[RGFW_eventLen].button].current; + RGFW_mouseButtons[RGFW_events[RGFW_eventLen].button].current = 1; - RGFW_mouseButtonCallback(RGFW_root, RGFW_events[RGFW_eventLen].button, RGFW_events[RGFW_eventLen].scroll, 1); - RGFW_eventLen++; + RGFW_mousePosCallback(RGFW_root, RGFW_events[RGFW_eventLen].point); + + RGFW_mouseButtonCallback(RGFW_root, RGFW_events[RGFW_eventLen].button, RGFW_events[RGFW_eventLen].scroll, 1); + RGFW_eventLen++; + } return EM_TRUE; } -EM_BOOL on_touchmove(int eventType, const EmscriptenTouchEvent* e, void* userData) { +EM_BOOL Emscripten_on_touchmove(int eventType, const EmscriptenTouchEvent* e, void* userData) { RGFW_UNUSED(eventType); RGFW_UNUSED(userData); + + size_t i; + for (i = 0; i < (size_t)e->numTouches; i++) { + RGFW_events[RGFW_eventLen].type = RGFW_mousePosChanged; + RGFW_events[RGFW_eventLen].point = RGFW_POINT(e->touches[i].targetX, e->touches[i].targetY); - RGFW_events[RGFW_eventLen].type = RGFW_mousePosChanged; - RGFW_events[RGFW_eventLen].point = RGFW_POINT(e->touches[0].targetX, e->touches[0].targetY); - - RGFW_mousePosCallback(RGFW_root, RGFW_events[RGFW_eventLen].point); - RGFW_eventLen++; - - return EM_TRUE; + RGFW_mousePosCallback(RGFW_root, RGFW_events[RGFW_eventLen].point); + RGFW_eventLen++; + } + return EM_TRUE; } -EM_BOOL on_touchend(int eventType, const EmscriptenTouchEvent* e, void* userData) { +EM_BOOL Emscripten_on_touchend(int eventType, const EmscriptenTouchEvent* e, void* userData) { RGFW_UNUSED(eventType); RGFW_UNUSED(userData); - RGFW_events[RGFW_eventLen].type = RGFW_mouseButtonReleased; - RGFW_events[RGFW_eventLen].point = RGFW_POINT(e->touches[0].targetX, e->touches[0].targetY); - RGFW_events[RGFW_eventLen].button = 1; - RGFW_events[RGFW_eventLen].scroll = 0; - - RGFW_mouseButtons[RGFW_events[RGFW_eventLen].button].prev = RGFW_mouseButtons[RGFW_events[RGFW_eventLen].button].current; - RGFW_mouseButtons[RGFW_events[RGFW_eventLen].button].current = 0; - - RGFW_mouseButtonCallback(RGFW_root, RGFW_events[RGFW_eventLen].button, RGFW_events[RGFW_eventLen].scroll, 0); - RGFW_eventLen++; + size_t i; + for (i = 0; i < (size_t)e->numTouches; i++) { + RGFW_events[RGFW_eventLen].type = RGFW_mouseButtonReleased; + RGFW_events[RGFW_eventLen].point = RGFW_POINT(e->touches[i].targetX, e->touches[i].targetY); + RGFW_events[RGFW_eventLen].button = 1; + RGFW_events[RGFW_eventLen].scroll = 0; + RGFW_mouseButtons[RGFW_events[RGFW_eventLen].button].prev = RGFW_mouseButtons[RGFW_events[RGFW_eventLen].button].current; + RGFW_mouseButtons[RGFW_events[RGFW_eventLen].button].current = 0; + + RGFW_mouseButtonCallback(RGFW_root, RGFW_events[RGFW_eventLen].button, RGFW_events[RGFW_eventLen].scroll, 0); + RGFW_eventLen++; + } return EM_TRUE; } -EM_BOOL on_touchcancel(int eventType, const EmscriptenTouchEvent* e, void* userData) { RGFW_UNUSED(eventType); RGFW_UNUSED(userData); RGFW_UNUSED(e); return EM_TRUE; } +EM_BOOL Emscripten_on_touchcancel(int eventType, const EmscriptenTouchEvent* e, void* userData) { RGFW_UNUSED(eventType); RGFW_UNUSED(userData); RGFW_UNUSED(e); return EM_TRUE; } +EM_BOOL Emscripten_on_gamepad(int eventType, const EmscriptenGamepadEvent *gamepadEvent, void *userData) { + RGFW_UNUSED(eventType); RGFW_UNUSED(userData); + + if (gamepadEvent->index >= 4) + return 0; + + RGFW_joysticks[gamepadEvent->index] = gamepadEvent->connected; + + return 1; // The event was consumed by the callback handler +} + +void EMSCRIPTEN_KEEPALIVE Emscripten_onDrop(size_t count) { + if (!(RGFW_root->_winArgs & RGFW_ALLOW_DND)) + return; + + RGFW_events[RGFW_eventLen].droppedFilesCount = count; + RGFW_dndCallback(RGFW_root, RGFW_events[RGFW_eventLen].droppedFiles, count); + RGFW_eventLen++; +} b8 RGFW_stopCheckEvents_bool = RGFW_FALSE; void RGFW_stopCheckEvents(void) { @@ -7221,6 +8485,9 @@ void RGFW_stopCheckEvents(void) { void RGFW_window_eventWait(RGFW_window* win, i32 waitMS) { RGFW_UNUSED(win); + if (waitMS == 0) + return; + u32 start = (u32)(((u64)RGFW_getTimeNS()) / 1e+6); while ((RGFW_eventLen == 0) && RGFW_stopCheckEvents_bool == RGFW_FALSE && @@ -7244,25 +8511,57 @@ void RGFW_init_buffer(RGFW_window* win) { OSMesaMakeCurrent(win->src.ctx, win->buffer, GL_UNSIGNED_BYTE, win->r.w, win->r.h); #endif #else - RGFW_UNUSED(win); /* if buffer rendering is not being used */ + RGFW_UNUSED(win); /*!< if buffer rendering is not being used */ #endif } +void EMSCRIPTEN_KEEPALIVE RGFW_makeSetValue(size_t index, char* file) { + /* This seems like a terrible idea, don't replicate this unless you hate yourself or the OS */ + /* TODO: find a better way to do this, + strcpy doesn't seem to work, maybe because of asyncio + */ + + RGFW_events[RGFW_eventLen].type = RGFW_dnd; + char** arr = (char**)&RGFW_events[RGFW_eventLen].droppedFiles[index]; + *arr = file; +} + +#include +#include +#include + +void EMSCRIPTEN_KEEPALIVE RGFW_mkdir(char* name) { mkdir(name, 0755); } + +void EMSCRIPTEN_KEEPALIVE RGFW_writeFile(const char *path, const char *data, size_t len) { + FILE* file = fopen(path, "w+"); + if (file == NULL) + return; + + fwrite(data, sizeof(char), len, file); + fclose(file); +} + RGFW_window* RGFW_createWindow(const char* name, RGFW_rect rect, u16 args) { RGFW_UNUSED(name) - RGFW_UNUSED(RGFW_initAttribs); - + RGFW_UNUSED(RGFW_initFormatAttribs); + RGFW_window* win = RGFW_window_basic_init(rect, args); EmscriptenWebGLContextAttributes attrs; attrs.alpha = EM_TRUE; attrs.depth = EM_TRUE; + attrs.alpha = EM_TRUE; attrs.stencil = RGFW_STENCIL; attrs.antialias = RGFW_SAMPLES; attrs.premultipliedAlpha = EM_TRUE; attrs.preserveDrawingBuffer = EM_FALSE; - attrs.renderViaOffscreenBackBuffer = RGFW_AUX_BUFFERS; + + if (RGFW_DOUBLE_BUFFER == 0) + attrs.renderViaOffscreenBackBuffer = 0; + else + attrs.renderViaOffscreenBackBuffer = RGFW_AUX_BUFFERS; + attrs.failIfMajorPerformanceCaveat = EM_FALSE; attrs.majorVersion = (RGFW_majorVersion == 0) ? 1 : RGFW_majorVersion; attrs.minorVersion = RGFW_minorVersion; @@ -7275,26 +8574,83 @@ RGFW_window* RGFW_createWindow(const char* name, RGFW_rect rect, u16 args) { emscripten_webgl_make_context_current(win->src.ctx); #ifdef LEGACY_GL_EMULATION - EM_ASM("Module.useWebGL = true; GLImmediate.init();"); + EM_ASM("Module.useWebGL = true; GLImmediate.init();"); #endif emscripten_set_canvas_element_size("#canvas", rect.w, rect.h); + emscripten_set_window_title(name); /* load callbacks */ - emscripten_set_keydown_callback(EMSCRIPTEN_EVENT_TARGET_WINDOW, NULL, EM_FALSE, on_keydown); - emscripten_set_keyup_callback(EMSCRIPTEN_EVENT_TARGET_WINDOW, NULL, EM_FALSE, on_keyup); - emscripten_set_resize_callback(EMSCRIPTEN_EVENT_TARGET_WINDOW, NULL, EM_FALSE, on_resize); - emscripten_set_fullscreenchange_callback(EMSCRIPTEN_EVENT_TARGET_DOCUMENT, NULL, EM_FALSE, on_fullscreenchange); - emscripten_set_mousemove_callback("#canvas", NULL, EM_FALSE, on_mousemove); - emscripten_set_touchstart_callback("#canvas", NULL, EM_FALSE, on_touchstart); - emscripten_set_touchend_callback("#canvas", NULL, EM_FALSE, on_touchend); - emscripten_set_touchmove_callback("#canvas", NULL, EM_FALSE, on_touchmove); - emscripten_set_touchcancel_callback("#canvas", NULL, EM_FALSE, on_touchcancel); - emscripten_set_mousedown_callback("#canvas", NULL, EM_FALSE, on_mousedown); - emscripten_set_mouseup_callback("#canvas", NULL, EM_FALSE, on_mouseup); - emscripten_set_wheel_callback("#canvas", NULL, EM_FALSE, on_wheel); - emscripten_set_focusin_callback(EMSCRIPTEN_EVENT_TARGET_WINDOW, NULL, EM_FALSE, on_focusin); - emscripten_set_focusout_callback(EMSCRIPTEN_EVENT_TARGET_WINDOW, NULL, EM_FALSE, on_focusout); + emscripten_set_keydown_callback(EMSCRIPTEN_EVENT_TARGET_WINDOW, NULL, EM_FALSE, Emscripten_on_keydown); + emscripten_set_keyup_callback(EMSCRIPTEN_EVENT_TARGET_WINDOW, NULL, EM_FALSE, Emscripten_on_keyup); + emscripten_set_resize_callback(EMSCRIPTEN_EVENT_TARGET_WINDOW, NULL, EM_FALSE, Emscripten_on_resize); + emscripten_set_fullscreenchange_callback(EMSCRIPTEN_EVENT_TARGET_DOCUMENT, NULL, EM_FALSE, Emscripten_on_fullscreenchange); + emscripten_set_mousemove_callback("#canvas", NULL, EM_FALSE, Emscripten_on_mousemove); + emscripten_set_touchstart_callback("#canvas", NULL, EM_FALSE, Emscripten_on_touchstart); + emscripten_set_touchend_callback("#canvas", NULL, EM_FALSE, Emscripten_on_touchend); + emscripten_set_touchmove_callback("#canvas", NULL, EM_FALSE, Emscripten_on_touchmove); + emscripten_set_touchcancel_callback("#canvas", NULL, EM_FALSE, Emscripten_on_touchcancel); + emscripten_set_mousedown_callback("#canvas", NULL, EM_FALSE, Emscripten_on_mousedown); + emscripten_set_mouseup_callback("#canvas", NULL, EM_FALSE, Emscripten_on_mouseup); + emscripten_set_wheel_callback("#canvas", NULL, EM_FALSE, Emscripten_on_wheel); + emscripten_set_focusin_callback(EMSCRIPTEN_EVENT_TARGET_WINDOW, NULL, EM_FALSE, Emscripten_on_focusin); + emscripten_set_focusout_callback(EMSCRIPTEN_EVENT_TARGET_WINDOW, NULL, EM_FALSE, Emscripten_on_focusout); + emscripten_set_gamepadconnected_callback(NULL, 1, Emscripten_on_gamepad); + emscripten_set_gamepaddisconnected_callback(NULL, 1, Emscripten_on_gamepad); + + if (args & RGFW_ALLOW_DND) { + win->_winArgs |= RGFW_ALLOW_DND; + } + + EM_ASM({ + var canvas = document.getElementById('canvas'); + canvas.addEventListener('drop', function(e) { + e.preventDefault(); + if (e.dataTransfer.file < 0) + return; + + var filenamesArray = []; + var count = e.dataTransfer.files.length; + + /* Read and save the files to emscripten's files */ + var drop_dir = '.rgfw_dropped_files'; + Module._RGFW_mkdir(drop_dir); + + for (var i = 0; i < count; i++) { + var file = e.dataTransfer.files[i]; + + var path = '/' + drop_dir + '/' + file.name.replace("//", '_'); + var reader = new FileReader(); + + reader.onloadend = (e) => { + if (reader.readyState != 2) { + out('failed to read dropped file: '+file.name+': '+reader.error); + } + else { + var data = e.target.result; + + _RGFW_writeFile(path, new Uint8Array(data), file.size); + } + }; + + reader.readAsArrayBuffer(file); + // This works weird on modern opengl + var filename = stringToNewUTF8(path); + + filenamesArray.push(filename); + + Module._RGFW_makeSetValue(i, filename); + } + + Module._Emscripten_onDrop(count); + + for (var i = 0; i < count; ++i) { + _free(filenamesArray[i]); + } + }, true); + + canvas.addEventListener('dragover', function(e) { e.preventDefault(); return false; }, true); + }); RGFW_init_buffer(win); glViewport(0, 0, rect.w, rect.h); @@ -7314,14 +8670,59 @@ RGFW_window* RGFW_createWindow(const char* name, RGFW_rect rect, u16 args) { RGFW_Event* RGFW_window_checkEvent(RGFW_window* win) { static u8 index = 0; - + if (index == 0) RGFW_resetKey(); + /* check gamepads */ + for (int i = 0; (i < emscripten_get_num_gamepads()) && (i < 4); i++) { + if (RGFW_joysticks[i] == 0) + continue;; + + EmscriptenGamepadEvent gamepadState; + + if (emscripten_get_gamepad_status(i, &gamepadState) != EMSCRIPTEN_RESULT_SUCCESS) + break; + + // Register buttons data for every connected gamepad + for (int j = 0; (j < gamepadState.numButtons) && (j < 16); j++) { + u32 map[] = { + RGFW_JS_A, RGFW_JS_X, RGFW_JS_B, RGFW_JS_Y, + RGFW_JS_L1, RGFW_JS_R1, RGFW_JS_L2, RGFW_JS_R2, + RGFW_JS_SELECT, RGFW_JS_START, + 0, 0, + RGFW_JS_UP, RGFW_JS_DOWN, RGFW_JS_LEFT, RGFW_JS_RIGHT + }; + + u32 button = map[j]; + if (RGFW_jsPressed[i][button] != gamepadState.digitalButton[j]) { + win->event.type = RGFW_jsButtonPressed; + win->event.joystick = i; + win->event.button = map[j]; + return &win->event; + } + + RGFW_jsPressed[i][button] = gamepadState.digitalButton[j]; + } + + for (int j = 0; (j < gamepadState.numAxes) && (j < 4); j += 2) { + win->event.axisesCount = gamepadState.numAxes; + if (win->event.axis[j].x != gamepadState.axis[j] || + win->event.axis[j].y != gamepadState.axis[j + 1] + ) { + win->event.axis[j].x = gamepadState.axis[j]; + win->event.axis[j].y = gamepadState.axis[j + 1]; + win->event.type = RGFW_jsAxisMove; + win->event.joystick = i; + return &win->event; + } + } + } + + /* check queued events */ if (RGFW_eventLen == 0) return NULL; - RGFW_events[index].fps = win->event.fps; RGFW_events[index].frameTime = win->event.frameTime; RGFW_events[index].frameTime2 = win->event.frameTime2; RGFW_events[index].inFocus = win->event.inFocus; @@ -7389,6 +8790,14 @@ RGFW_point RGFW_getGlobalMousePoint(void) { return point; } +RGFW_point RGFW_window_getMousePoint(RGFW_window* win) { + RGFW_UNUSED(win); + + EmscriptenMouseEvent mouseEvent; + emscripten_get_mouse_status(&mouseEvent); + return RGFW_POINT( mouseEvent.targetX, mouseEvent.targetY); +} + void RGFW_window_setMousePassthrough(RGFW_window* win, b8 passthrough) { RGFW_UNUSED(win); @@ -7417,13 +8826,15 @@ char* RGFW_readClipboard(size_t* size) { if (size != NULL) *size = 0; - char* str = malloc(1); + char* str = (char*)malloc(1); str[0] = '\0'; return str; } void RGFW_window_swapBuffers(RGFW_window* win) { + RGFW_UNUSED(win); + #ifdef RGFW_BUFFER if (!(win->_winArgs & RGFW_NO_CPU_RENDER)) { glEnable(GL_TEXTURE_2D); @@ -7431,9 +8842,6 @@ void RGFW_window_swapBuffers(RGFW_window* win) { GLuint texture; glGenTextures(1,&texture); - //glPixelStorei( GL_PACK_ROW_LENGTH, RGFW_bufferSize.w); - //glPixelStorei(GL_UNPACK_IMAGE_HEIGHT, RGFW_bufferSize.h); - glBindTexture(GL_TEXTURE_2D,texture); glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, GL_CLAMP_TO_EDGE); @@ -7464,23 +8872,19 @@ void RGFW_window_swapBuffers(RGFW_window* win) { #endif emscripten_webgl_commit_frame(); - - if (win->fpsCap == 0 || win->fpsCap < 100) { - emscripten_sleep(0); - } - - RGFW_window_checkFPS(win); + emscripten_sleep(0); } void RGFW_window_makeCurrent_OpenGL(RGFW_window* win) { - emscripten_webgl_make_context_current(win->src.ctx); + if (win == NULL) + emscripten_webgl_make_context_current(0); + else + emscripten_webgl_make_context_current(win->src.ctx); } #ifndef RGFW_EGL -void RGFW_window_swapInterval(RGFW_window* win, i32 swapInterval) { - win->fpsCap = (swapInterval == 1) ? 0 : swapInterval; -} +void RGFW_window_swapInterval(RGFW_window* win, i32 swapInterval) { RGFW_UNUSED(win); RGFW_UNUSED(swapInterval); } #endif void RGFW_window_close(RGFW_window* win) { @@ -7512,16 +8916,23 @@ u64 RGFW_getTime(void) { return emscripten_get_now() * 1000; } +void RGFW_releaseCursor(RGFW_window* win) { + RGFW_UNUSED(win); + emscripten_exit_pointerlock(); +} + void RGFW_captureCursor(RGFW_window* win, RGFW_rect r) { - RGFW_UNUSED(win) - if (!r.x && !r.y && !r.w && !r.h) { - emscripten_exit_pointerlock(); - return; - } + RGFW_UNUSED(win); RGFW_UNUSED(r); emscripten_request_pointerlock("#canvas", 1); } + +void RGFW_window_setName(RGFW_window* win, char* name) { + RGFW_UNUSED(win); + emscripten_set_window_title(name); +} + /* unsupported functions */ RGFW_monitor* RGFW_getMonitors(void) { return NULL; } RGFW_monitor RGFW_getPrimaryMonitor(void) { return (RGFW_monitor){}; } @@ -7531,8 +8942,6 @@ void RGFW_window_setMaxSize(RGFW_window* win, RGFW_area a) { RGFW_UNUSED(win) RG void RGFW_window_minimize(RGFW_window* win) { RGFW_UNUSED(win)} void RGFW_window_restore(RGFW_window* win) { RGFW_UNUSED(win) } void RGFW_window_setBorder(RGFW_window* win, b8 border) { RGFW_UNUSED(win) RGFW_UNUSED(border) } -void RGFW_window_setDND(RGFW_window* win, b8 allow) { RGFW_UNUSED(win) RGFW_UNUSED(allow) } -void RGFW_window_setName(RGFW_window* win, char* name) { RGFW_UNUSED(win) RGFW_UNUSED(name) } void RGFW_window_setIcon(RGFW_window* win, u8* icon, RGFW_area a, i32 channels) { RGFW_UNUSED(win) RGFW_UNUSED(icon) RGFW_UNUSED(a) RGFW_UNUSED(channels) } void RGFW_window_hide(RGFW_window* win) { RGFW_UNUSED(win) } void RGFW_window_show(RGFW_window* win) {RGFW_UNUSED(win) } @@ -7546,7 +8955,7 @@ RGFW_monitor RGFW_window_getMonitor(RGFW_window* win) { RGFW_UNUSED(win) return /* end of web asm defines */ /* unix (macOS, linux, web asm) only stuff */ -#if defined(RGFW_X11) || defined(RGFW_MACOS) || defined(RGFW_WEBASM) +#if defined(RGFW_X11) || defined(RGFW_MACOS) || defined(RGFW_WEBASM) || defined(RGFW_WAYLAND) /* unix threading */ #ifndef RGFW_NO_THREADS #include @@ -7561,7 +8970,7 @@ RGFW_monitor RGFW_window_getMonitor(RGFW_window* win) { RGFW_UNUSED(win) return void RGFW_cancelThread(RGFW_thread thread) { pthread_cancel((pthread_t) thread); } void RGFW_joinThread(RGFW_thread thread) { pthread_join((pthread_t) thread, NULL); } #ifdef __linux__ - void RGFW_setThreadPriority(RGFW_thread thread, u8 priority) { pthread_setschedprio(thread, priority); } + void RGFW_setThreadPriority(RGFW_thread thread, u8 priority) { pthread_setschedprio((pthread_t)thread, priority); } #endif #endif @@ -7579,6 +8988,6 @@ RGFW_monitor RGFW_window_getMonitor(RGFW_window* win) { RGFW_UNUSED(win) return #endif /* end of unix / mac stuff*/ #endif /*RGFW_IMPLEMENTATION*/ -#ifdef __cplusplus +#if defined(__cplusplus) && !defined(__EMSCRIPTEN__) } #endif diff --git a/src/external/glfw/src/mappings.h b/src/external/glfw/src/mappings.h index 270fa4cd8..7b0f35a26 100644 --- a/src/external/glfw/src/mappings.h +++ b/src/external/glfw/src/mappings.h @@ -996,6 +996,7 @@ const char* _glfwDefaultMappings[] = "03000000c0160000e105000001010000,Xin-Mo Xin-Mo Dual Arcade,a:b4,b:b3,back:b6,dpdown:b12,dpleft:b13,dpright:b14,dpup:b11,guide:b9,leftshoulder:b2,leftx:a0,lefty:a1,rightshoulder:b5,start:b7,x:b1,y:b0,platform:Linux,", "03000000120c0000100e000011010000,ZEROPLUS P4 Gamepad,a:b1,b:b2,back:b8,dpdown:h0.4,dpleft:h0.8,dpright:h0.2,dpup:h0.1,guide:b12,leftshoulder:b4,leftstick:b10,lefttrigger:a3,leftx:a0,lefty:a1,rightshoulder:b5,rightstick:b11,righttrigger:a4,rightx:a2,righty:a5,start:b9,x:b0,y:b3,platform:Linux,", "03000000120c0000101e000011010000,ZEROPLUS P4 Wired Gamepad,a:b1,b:b2,back:b8,dpdown:h0.4,dpleft:h0.8,dpright:h0.2,dpup:h0.1,guide:b12,leftshoulder:b4,leftstick:b10,lefttrigger:a3,leftx:a0,lefty:a1,rightshoulder:b5,rightstick:b11,righttrigger:a4,rightx:a2,righty:a5,start:b9,x:b0,y:b3,platform:Linux,", +"03000000af1e00002400000010010000,Clockwork Pi DevTerm,a:b2,b:b1,back:b8,dpdown:+a1,dpleft:-a0,dpright:+a0,dpup:-a1,start:b9,x:b3,y:b0,platform:Linux,", #endif // GLFW_BUILD_LINUX_JOYSTICK }; diff --git a/src/external/nanosvg.h b/src/external/nanosvg.h deleted file mode 100644 index b80f540ba..000000000 --- a/src/external/nanosvg.h +++ /dev/null @@ -1,3053 +0,0 @@ -/* - * Copyright (c) 2013-14 Mikko Mononen memon@inside.org - * - * This software is provided 'as-is', without any express or implied - * warranty. In no event will the authors be held liable for any damages - * arising from the use of this software. - * - * Permission is granted to anyone to use this software for any purpose, - * including commercial applications, and to alter it and redistribute it - * freely, subject to the following restrictions: - * - * 1. The origin of this software must not be misrepresented; you must not - * claim that you wrote the original software. If you use this software - * in a product, an acknowledgment in the product documentation would be - * appreciated but is not required. - * 2. Altered source versions must be plainly marked as such, and must not be - * misrepresented as being the original software. - * 3. This notice may not be removed or altered from any source distribution. - * - * The SVG parser is based on Anti-Grain Geometry 2.4 SVG example - * Copyright (C) 2002-2004 Maxim Shemanarev (McSeem) (http://www.antigrain.com/) - * - * Arc calculation code based on canvg (https://code.google.com/p/canvg/) - * - * Bounding box calculation based on http://blog.hackers-cafe.net/2009/06/how-to-calculate-bezier-curves-bounding.html - * - */ - -#ifndef NANOSVG_H -#define NANOSVG_H - -#ifndef NANOSVG_CPLUSPLUS -#ifdef __cplusplus -extern "C" { -#endif -#endif - -// NanoSVG is a simple stupid single-header-file SVG parse. The output of the parser is a list of cubic bezier shapes. -// -// The library suits well for anything from rendering scalable icons in your editor application to prototyping a game. -// -// NanoSVG supports a wide range of SVG features, but something may be missing, feel free to create a pull request! -// -// The shapes in the SVG images are transformed by the viewBox and converted to specified units. -// That is, you should get the same looking data as your designed in your favorite app. -// -// NanoSVG can return the paths in few different units. For example if you want to render an image, you may choose -// to get the paths in pixels, or if you are feeding the data into a CNC-cutter, you may want to use millimeters. -// -// The units passed to NanoSVG should be one of: 'px', 'pt', 'pc' 'mm', 'cm', or 'in'. -// DPI (dots-per-inch) controls how the unit conversion is done. -// -// If you don't know or care about the units stuff, "px" and 96 should get you going. - - -/* Example Usage: - // Load SVG - NSVGimage* image; - image = nsvgParseFromFile("test.svg", "px", 96); - printf("size: %f x %f\n", image->width, image->height); - // Use... - for (NSVGshape *shape = image->shapes; shape != NULL; shape = shape->next) { - for (NSVGpath *path = shape->paths; path != NULL; path = path->next) { - for (int i = 0; i < path->npts-1; i += 3) { - float* p = &path->pts[i*2]; - drawCubicBez(p[0],p[1], p[2],p[3], p[4],p[5], p[6],p[7]); - } - } - } - // Delete - nsvgDelete(image); -*/ - -enum NSVGpaintType { - NSVG_PAINT_NONE = 0, - NSVG_PAINT_COLOR = 1, - NSVG_PAINT_LINEAR_GRADIENT = 2, - NSVG_PAINT_RADIAL_GRADIENT = 3 -}; - -enum NSVGspreadType { - NSVG_SPREAD_PAD = 0, - NSVG_SPREAD_REFLECT = 1, - NSVG_SPREAD_REPEAT = 2 -}; - -enum NSVGlineJoin { - NSVG_JOIN_MITER = 0, - NSVG_JOIN_ROUND = 1, - NSVG_JOIN_BEVEL = 2 -}; - -enum NSVGlineCap { - NSVG_CAP_BUTT = 0, - NSVG_CAP_ROUND = 1, - NSVG_CAP_SQUARE = 2 -}; - -enum NSVGfillRule { - NSVG_FILLRULE_NONZERO = 0, - NSVG_FILLRULE_EVENODD = 1 -}; - -enum NSVGflags { - NSVG_FLAGS_VISIBLE = 0x01 -}; - -typedef struct NSVGgradientStop { - unsigned int color; - float offset; -} NSVGgradientStop; - -typedef struct NSVGgradient { - float xform[6]; - char spread; - float fx, fy; - int nstops; - NSVGgradientStop stops[1]; -} NSVGgradient; - -typedef struct NSVGpaint { - char type; - union { - unsigned int color; - NSVGgradient* gradient; - }; -} NSVGpaint; - -typedef struct NSVGpath -{ - float* pts; // Cubic bezier points: x0,y0, [cpx1,cpx1,cpx2,cpy2,x1,y1], ... - int npts; // Total number of bezier points. - char closed; // Flag indicating if shapes should be treated as closed. - float bounds[4]; // Tight bounding box of the shape [minx,miny,maxx,maxy]. - struct NSVGpath* next; // Pointer to next path, or NULL if last element. -} NSVGpath; - -typedef struct NSVGshape -{ - char id[64]; // Optional 'id' attr of the shape or its group - NSVGpaint fill; // Fill paint - NSVGpaint stroke; // Stroke paint - float opacity; // Opacity of the shape. - float strokeWidth; // Stroke width (scaled). - float strokeDashOffset; // Stroke dash offset (scaled). - float strokeDashArray[8]; // Stroke dash array (scaled). - char strokeDashCount; // Number of dash values in dash array. - char strokeLineJoin; // Stroke join type. - char strokeLineCap; // Stroke cap type. - float miterLimit; // Miter limit - char fillRule; // Fill rule, see NSVGfillRule. - unsigned char flags; // Logical or of NSVG_FLAGS_* flags - float bounds[4]; // Tight bounding box of the shape [minx,miny,maxx,maxy]. - NSVGpath* paths; // Linked list of paths in the image. - struct NSVGshape* next; // Pointer to next shape, or NULL if last element. -} NSVGshape; - -typedef struct NSVGimage -{ - float width; // Width of the image. - float height; // Height of the image. - NSVGshape* shapes; // Linked list of shapes in the image. -} NSVGimage; - -// Parses SVG file from a file, returns SVG image as paths. -NSVGimage* nsvgParseFromFile(const char* filename, const char* units, float dpi); - -// Parses SVG file from a null terminated string, returns SVG image as paths. -// Important note: changes the string. -NSVGimage* nsvgParse(char* input, const char* units, float dpi); - -// Duplicates a path. -NSVGpath* nsvgDuplicatePath(NSVGpath* p); - -// Deletes an image. -void nsvgDelete(NSVGimage* image); - -#ifndef NANOSVG_CPLUSPLUS -#ifdef __cplusplus -} -#endif -#endif - -#ifdef NANOSVG_IMPLEMENTATION - -#include -#include -#include -#include - -#define NSVG_PI (3.14159265358979323846264338327f) -#define NSVG_KAPPA90 (0.5522847493f) // Length proportional to radius of a cubic bezier handle for 90deg arcs. - -#define NSVG_ALIGN_MIN 0 -#define NSVG_ALIGN_MID 1 -#define NSVG_ALIGN_MAX 2 -#define NSVG_ALIGN_NONE 0 -#define NSVG_ALIGN_MEET 1 -#define NSVG_ALIGN_SLICE 2 - -#define NSVG_NOTUSED(v) do { (void)(1 ? (void)0 : ( (void)(v) ) ); } while(0) -#define NSVG_RGB(r, g, b) (((unsigned int)r) | ((unsigned int)g << 8) | ((unsigned int)b << 16)) - -#ifdef _MSC_VER - #pragma warning (disable: 4996) // Switch off security warnings - #pragma warning (disable: 4100) // Switch off unreferenced formal parameter warnings - #ifdef __cplusplus - #define NSVG_INLINE inline - #else - #define NSVG_INLINE - #endif -#else - #define NSVG_INLINE inline -#endif - - -static int nsvg__isspace(char c) -{ - return strchr(" \t\n\v\f\r", c) != 0; -} - -static int nsvg__isdigit(char c) -{ - return c >= '0' && c <= '9'; -} - -static NSVG_INLINE float nsvg__minf(float a, float b) { return a < b ? a : b; } -static NSVG_INLINE float nsvg__maxf(float a, float b) { return a > b ? a : b; } - - -// Simple XML parser - -#define NSVG_XML_TAG 1 -#define NSVG_XML_CONTENT 2 -#define NSVG_XML_MAX_ATTRIBS 256 - -static void nsvg__parseContent(char* s, - void (*contentCb)(void* ud, const char* s), - void* ud) -{ - // Trim start white spaces - while (*s && nsvg__isspace(*s)) s++; - if (!*s) return; - - if (contentCb) - (*contentCb)(ud, s); -} - -static void nsvg__parseElement(char* s, - void (*startelCb)(void* ud, const char* el, const char** attr), - void (*endelCb)(void* ud, const char* el), - void* ud) -{ - const char* attr[NSVG_XML_MAX_ATTRIBS]; - int nattr = 0; - char* name; - int start = 0; - int end = 0; - char quote; - - // Skip white space after the '<' - while (*s && nsvg__isspace(*s)) s++; - - // Check if the tag is end tag - if (*s == '/') { - s++; - end = 1; - } else { - start = 1; - } - - // Skip comments, data and preprocessor stuff. - if (!*s || *s == '?' || *s == '!') - return; - - // Get tag name - name = s; - while (*s && !nsvg__isspace(*s)) s++; - if (*s) { *s++ = '\0'; } - - // Get attribs - while (!end && *s && nattr < NSVG_XML_MAX_ATTRIBS-3) { - char* name = NULL; - char* value = NULL; - - // Skip white space before the attrib name - while (*s && nsvg__isspace(*s)) s++; - if (!*s) break; - if (*s == '/') { - end = 1; - break; - } - name = s; - // Find end of the attrib name. - while (*s && !nsvg__isspace(*s) && *s != '=') s++; - if (*s) { *s++ = '\0'; } - // Skip until the beginning of the value. - while (*s && *s != '\"' && *s != '\'') s++; - if (!*s) break; - quote = *s; - s++; - // Store value and find the end of it. - value = s; - while (*s && *s != quote) s++; - if (*s) { *s++ = '\0'; } - - // Store only well formed attributes - if (name && value) { - attr[nattr++] = name; - attr[nattr++] = value; - } - } - - // List terminator - attr[nattr++] = 0; - attr[nattr++] = 0; - - // Call callbacks. - if (start && startelCb) - (*startelCb)(ud, name, attr); - if (end && endelCb) - (*endelCb)(ud, name); -} - -int nsvg__parseXML(char* input, - void (*startelCb)(void* ud, const char* el, const char** attr), - void (*endelCb)(void* ud, const char* el), - void (*contentCb)(void* ud, const char* s), - void* ud) -{ - char* s = input; - char* mark = s; - int state = NSVG_XML_CONTENT; - while (*s) { - if (*s == '<' && state == NSVG_XML_CONTENT) { - // Start of a tag - *s++ = '\0'; - nsvg__parseContent(mark, contentCb, ud); - mark = s; - state = NSVG_XML_TAG; - } else if (*s == '>' && state == NSVG_XML_TAG) { - // Start of a content or new tag. - *s++ = '\0'; - nsvg__parseElement(mark, startelCb, endelCb, ud); - mark = s; - state = NSVG_XML_CONTENT; - } else { - s++; - } - } - - return 1; -} - - -/* Simple SVG parser. */ - -#define NSVG_MAX_ATTR 128 - -enum NSVGgradientUnits { - NSVG_USER_SPACE = 0, - NSVG_OBJECT_SPACE = 1 -}; - -#define NSVG_MAX_DASHES 8 - -enum NSVGunits { - NSVG_UNITS_USER, - NSVG_UNITS_PX, - NSVG_UNITS_PT, - NSVG_UNITS_PC, - NSVG_UNITS_MM, - NSVG_UNITS_CM, - NSVG_UNITS_IN, - NSVG_UNITS_PERCENT, - NSVG_UNITS_EM, - NSVG_UNITS_EX -}; - -typedef struct NSVGcoordinate { - float value; - int units; -} NSVGcoordinate; - -typedef struct NSVGlinearData { - NSVGcoordinate x1, y1, x2, y2; -} NSVGlinearData; - -typedef struct NSVGradialData { - NSVGcoordinate cx, cy, r, fx, fy; -} NSVGradialData; - -typedef struct NSVGgradientData -{ - char id[64]; - char ref[64]; - char type; - union { - NSVGlinearData linear; - NSVGradialData radial; - }; - char spread; - char units; - float xform[6]; - int nstops; - NSVGgradientStop* stops; - struct NSVGgradientData* next; -} NSVGgradientData; - -typedef struct NSVGattrib -{ - char id[64]; - float xform[6]; - unsigned int fillColor; - unsigned int strokeColor; - float opacity; - float fillOpacity; - float strokeOpacity; - char fillGradient[64]; - char strokeGradient[64]; - float strokeWidth; - float strokeDashOffset; - float strokeDashArray[NSVG_MAX_DASHES]; - int strokeDashCount; - char strokeLineJoin; - char strokeLineCap; - float miterLimit; - char fillRule; - float fontSize; - unsigned int stopColor; - float stopOpacity; - float stopOffset; - char hasFill; - char hasStroke; - char visible; -} NSVGattrib; - -typedef struct NSVGparser -{ - NSVGattrib attr[NSVG_MAX_ATTR]; - int attrHead; - float* pts; - int npts; - int cpts; - NSVGpath* plist; - NSVGimage* image; - NSVGgradientData* gradients; - NSVGshape* shapesTail; - float viewMinx, viewMiny, viewWidth, viewHeight; - int alignX, alignY, alignType; - float dpi; - char pathFlag; - char defsFlag; -} NSVGparser; - -static void nsvg__xformIdentity(float* t) -{ - t[0] = 1.0f; t[1] = 0.0f; - t[2] = 0.0f; t[3] = 1.0f; - t[4] = 0.0f; t[5] = 0.0f; -} - -static void nsvg__xformSetTranslation(float* t, float tx, float ty) -{ - t[0] = 1.0f; t[1] = 0.0f; - t[2] = 0.0f; t[3] = 1.0f; - t[4] = tx; t[5] = ty; -} - -static void nsvg__xformSetScale(float* t, float sx, float sy) -{ - t[0] = sx; t[1] = 0.0f; - t[2] = 0.0f; t[3] = sy; - t[4] = 0.0f; t[5] = 0.0f; -} - -static void nsvg__xformSetSkewX(float* t, float a) -{ - t[0] = 1.0f; t[1] = 0.0f; - t[2] = tanf(a); t[3] = 1.0f; - t[4] = 0.0f; t[5] = 0.0f; -} - -static void nsvg__xformSetSkewY(float* t, float a) -{ - t[0] = 1.0f; t[1] = tanf(a); - t[2] = 0.0f; t[3] = 1.0f; - t[4] = 0.0f; t[5] = 0.0f; -} - -static void nsvg__xformSetRotation(float* t, float a) -{ - float cs = cosf(a), sn = sinf(a); - t[0] = cs; t[1] = sn; - t[2] = -sn; t[3] = cs; - t[4] = 0.0f; t[5] = 0.0f; -} - -static void nsvg__xformMultiply(float* t, float* s) -{ - float t0 = t[0] * s[0] + t[1] * s[2]; - float t2 = t[2] * s[0] + t[3] * s[2]; - float t4 = t[4] * s[0] + t[5] * s[2] + s[4]; - t[1] = t[0] * s[1] + t[1] * s[3]; - t[3] = t[2] * s[1] + t[3] * s[3]; - t[5] = t[4] * s[1] + t[5] * s[3] + s[5]; - t[0] = t0; - t[2] = t2; - t[4] = t4; -} - -static void nsvg__xformInverse(float* inv, float* t) -{ - double invdet, det = (double)t[0] * t[3] - (double)t[2] * t[1]; - if (det > -1e-6 && det < 1e-6) { - nsvg__xformIdentity(t); - return; - } - invdet = 1.0 / det; - inv[0] = (float)(t[3] * invdet); - inv[2] = (float)(-t[2] * invdet); - inv[4] = (float)(((double)t[2] * t[5] - (double)t[3] * t[4]) * invdet); - inv[1] = (float)(-t[1] * invdet); - inv[3] = (float)(t[0] * invdet); - inv[5] = (float)(((double)t[1] * t[4] - (double)t[0] * t[5]) * invdet); -} - -static void nsvg__xformPremultiply(float* t, float* s) -{ - float s2[6]; - memcpy(s2, s, sizeof(float)*6); - nsvg__xformMultiply(s2, t); - memcpy(t, s2, sizeof(float)*6); -} - -static void nsvg__xformPoint(float* dx, float* dy, float x, float y, float* t) -{ - *dx = x*t[0] + y*t[2] + t[4]; - *dy = x*t[1] + y*t[3] + t[5]; -} - -static void nsvg__xformVec(float* dx, float* dy, float x, float y, float* t) -{ - *dx = x*t[0] + y*t[2]; - *dy = x*t[1] + y*t[3]; -} - -#define NSVG_EPSILON (1e-12) - -static int nsvg__ptInBounds(float* pt, float* bounds) -{ - return pt[0] >= bounds[0] && pt[0] <= bounds[2] && pt[1] >= bounds[1] && pt[1] <= bounds[3]; -} - - -static double nsvg__evalBezier(double t, double p0, double p1, double p2, double p3) -{ - double it = 1.0-t; - return it*it*it*p0 + 3.0*it*it*t*p1 + 3.0*it*t*t*p2 + t*t*t*p3; -} - -static void nsvg__curveBounds(float* bounds, float* curve) -{ - int i, j, count; - double roots[2], a, b, c, b2ac, t, v; - float* v0 = &curve[0]; - float* v1 = &curve[2]; - float* v2 = &curve[4]; - float* v3 = &curve[6]; - - // Start the bounding box by end points - bounds[0] = nsvg__minf(v0[0], v3[0]); - bounds[1] = nsvg__minf(v0[1], v3[1]); - bounds[2] = nsvg__maxf(v0[0], v3[0]); - bounds[3] = nsvg__maxf(v0[1], v3[1]); - - // Bezier curve fits inside the convex hull of it's control points. - // If control points are inside the bounds, we're done. - if (nsvg__ptInBounds(v1, bounds) && nsvg__ptInBounds(v2, bounds)) - return; - - // Add bezier curve inflection points in X and Y. - for (i = 0; i < 2; i++) { - a = -3.0 * v0[i] + 9.0 * v1[i] - 9.0 * v2[i] + 3.0 * v3[i]; - b = 6.0 * v0[i] - 12.0 * v1[i] + 6.0 * v2[i]; - c = 3.0 * v1[i] - 3.0 * v0[i]; - count = 0; - if (fabs(a) < NSVG_EPSILON) { - if (fabs(b) > NSVG_EPSILON) { - t = -c / b; - if (t > NSVG_EPSILON && t < 1.0-NSVG_EPSILON) - roots[count++] = t; - } - } else { - b2ac = b*b - 4.0*c*a; - if (b2ac > NSVG_EPSILON) { - t = (-b + sqrt(b2ac)) / (2.0 * a); - if (t > NSVG_EPSILON && t < 1.0-NSVG_EPSILON) - roots[count++] = t; - t = (-b - sqrt(b2ac)) / (2.0 * a); - if (t > NSVG_EPSILON && t < 1.0-NSVG_EPSILON) - roots[count++] = t; - } - } - for (j = 0; j < count; j++) { - v = nsvg__evalBezier(roots[j], v0[i], v1[i], v2[i], v3[i]); - bounds[0+i] = nsvg__minf(bounds[0+i], (float)v); - bounds[2+i] = nsvg__maxf(bounds[2+i], (float)v); - } - } -} - -static NSVGparser* nsvg__createParser(void) -{ - NSVGparser* p; - p = (NSVGparser*)malloc(sizeof(NSVGparser)); - if (p == NULL) goto error; - memset(p, 0, sizeof(NSVGparser)); - - p->image = (NSVGimage*)malloc(sizeof(NSVGimage)); - if (p->image == NULL) goto error; - memset(p->image, 0, sizeof(NSVGimage)); - - // Init style - nsvg__xformIdentity(p->attr[0].xform); - memset(p->attr[0].id, 0, sizeof p->attr[0].id); - p->attr[0].fillColor = NSVG_RGB(0,0,0); - p->attr[0].strokeColor = NSVG_RGB(0,0,0); - p->attr[0].opacity = 1; - p->attr[0].fillOpacity = 1; - p->attr[0].strokeOpacity = 1; - p->attr[0].stopOpacity = 1; - p->attr[0].strokeWidth = 1; - p->attr[0].strokeLineJoin = NSVG_JOIN_MITER; - p->attr[0].strokeLineCap = NSVG_CAP_BUTT; - p->attr[0].miterLimit = 4; - p->attr[0].fillRule = NSVG_FILLRULE_NONZERO; - p->attr[0].hasFill = 1; - p->attr[0].visible = 1; - - return p; - -error: - if (p) { - if (p->image) free(p->image); - free(p); - } - return NULL; -} - -static void nsvg__deletePaths(NSVGpath* path) -{ - while (path) { - NSVGpath *next = path->next; - if (path->pts != NULL) - free(path->pts); - free(path); - path = next; - } -} - -static void nsvg__deletePaint(NSVGpaint* paint) -{ - if (paint->type == NSVG_PAINT_LINEAR_GRADIENT || paint->type == NSVG_PAINT_RADIAL_GRADIENT) - free(paint->gradient); -} - -static void nsvg__deleteGradientData(NSVGgradientData* grad) -{ - NSVGgradientData* next; - while (grad != NULL) { - next = grad->next; - free(grad->stops); - free(grad); - grad = next; - } -} - -static void nsvg__deleteParser(NSVGparser* p) -{ - if (p != NULL) { - nsvg__deletePaths(p->plist); - nsvg__deleteGradientData(p->gradients); - nsvgDelete(p->image); - free(p->pts); - free(p); - } -} - -static void nsvg__resetPath(NSVGparser* p) -{ - p->npts = 0; -} - -static void nsvg__addPoint(NSVGparser* p, float x, float y) -{ - if (p->npts+1 > p->cpts) { - p->cpts = p->cpts ? p->cpts*2 : 8; - p->pts = (float*)realloc(p->pts, p->cpts*2*sizeof(float)); - if (!p->pts) return; - } - p->pts[p->npts*2+0] = x; - p->pts[p->npts*2+1] = y; - p->npts++; -} - -static void nsvg__moveTo(NSVGparser* p, float x, float y) -{ - if (p->npts > 0) { - p->pts[(p->npts-1)*2+0] = x; - p->pts[(p->npts-1)*2+1] = y; - } else { - nsvg__addPoint(p, x, y); - } -} - -static void nsvg__lineTo(NSVGparser* p, float x, float y) -{ - float px,py, dx,dy; - if (p->npts > 0) { - px = p->pts[(p->npts-1)*2+0]; - py = p->pts[(p->npts-1)*2+1]; - dx = x - px; - dy = y - py; - nsvg__addPoint(p, px + dx/3.0f, py + dy/3.0f); - nsvg__addPoint(p, x - dx/3.0f, y - dy/3.0f); - nsvg__addPoint(p, x, y); - } -} - -static void nsvg__cubicBezTo(NSVGparser* p, float cpx1, float cpy1, float cpx2, float cpy2, float x, float y) -{ - if (p->npts > 0) { - nsvg__addPoint(p, cpx1, cpy1); - nsvg__addPoint(p, cpx2, cpy2); - nsvg__addPoint(p, x, y); - } -} - -static NSVGattrib* nsvg__getAttr(NSVGparser* p) -{ - return &p->attr[p->attrHead]; -} - -static void nsvg__pushAttr(NSVGparser* p) -{ - if (p->attrHead < NSVG_MAX_ATTR-1) { - p->attrHead++; - memcpy(&p->attr[p->attrHead], &p->attr[p->attrHead-1], sizeof(NSVGattrib)); - } -} - -static void nsvg__popAttr(NSVGparser* p) -{ - if (p->attrHead > 0) - p->attrHead--; -} - -static float nsvg__actualOrigX(NSVGparser* p) -{ - return p->viewMinx; -} - -static float nsvg__actualOrigY(NSVGparser* p) -{ - return p->viewMiny; -} - -static float nsvg__actualWidth(NSVGparser* p) -{ - return p->viewWidth; -} - -static float nsvg__actualHeight(NSVGparser* p) -{ - return p->viewHeight; -} - -static float nsvg__actualLength(NSVGparser* p) -{ - float w = nsvg__actualWidth(p), h = nsvg__actualHeight(p); - return sqrtf(w*w + h*h) / sqrtf(2.0f); -} - -static float nsvg__convertToPixels(NSVGparser* p, NSVGcoordinate c, float orig, float length) -{ - NSVGattrib* attr = nsvg__getAttr(p); - switch (c.units) { - case NSVG_UNITS_USER: return c.value; - case NSVG_UNITS_PX: return c.value; - case NSVG_UNITS_PT: return c.value / 72.0f * p->dpi; - case NSVG_UNITS_PC: return c.value / 6.0f * p->dpi; - case NSVG_UNITS_MM: return c.value / 25.4f * p->dpi; - case NSVG_UNITS_CM: return c.value / 2.54f * p->dpi; - case NSVG_UNITS_IN: return c.value * p->dpi; - case NSVG_UNITS_EM: return c.value * attr->fontSize; - case NSVG_UNITS_EX: return c.value * attr->fontSize * 0.52f; // x-height of Helvetica. - case NSVG_UNITS_PERCENT: return orig + c.value / 100.0f * length; - default: return c.value; - } - return c.value; -} - -static NSVGgradientData* nsvg__findGradientData(NSVGparser* p, const char* id) -{ - NSVGgradientData* grad = p->gradients; - if (id == NULL || *id == '\0') - return NULL; - while (grad != NULL) { - if (strcmp(grad->id, id) == 0) - return grad; - grad = grad->next; - } - return NULL; -} - -static NSVGgradient* nsvg__createGradient(NSVGparser* p, const char* id, const float* localBounds, char* paintType) -{ - NSVGattrib* attr = nsvg__getAttr(p); - NSVGgradientData* data = NULL; - NSVGgradientData* ref = NULL; - NSVGgradientStop* stops = NULL; - NSVGgradient* grad; - float ox, oy, sw, sh, sl; - int nstops = 0; - int refIter; - - data = nsvg__findGradientData(p, id); - if (data == NULL) return NULL; - - // TODO: use ref to fill in all unset values too. - ref = data; - refIter = 0; - while (ref != NULL) { - NSVGgradientData* nextRef = NULL; - if (stops == NULL && ref->stops != NULL) { - stops = ref->stops; - nstops = ref->nstops; - break; - } - nextRef = nsvg__findGradientData(p, ref->ref); - if (nextRef == ref) break; // prevent infite loops on malformed data - ref = nextRef; - refIter++; - if (refIter > 32) break; // prevent infite loops on malformed data - } - if (stops == NULL) return NULL; - - grad = (NSVGgradient*)malloc(sizeof(NSVGgradient) + sizeof(NSVGgradientStop)*(nstops-1)); - if (grad == NULL) return NULL; - - // The shape width and height. - if (data->units == NSVG_OBJECT_SPACE) { - ox = localBounds[0]; - oy = localBounds[1]; - sw = localBounds[2] - localBounds[0]; - sh = localBounds[3] - localBounds[1]; - } else { - ox = nsvg__actualOrigX(p); - oy = nsvg__actualOrigY(p); - sw = nsvg__actualWidth(p); - sh = nsvg__actualHeight(p); - } - sl = sqrtf(sw*sw + sh*sh) / sqrtf(2.0f); - - if (data->type == NSVG_PAINT_LINEAR_GRADIENT) { - float x1, y1, x2, y2, dx, dy; - x1 = nsvg__convertToPixels(p, data->linear.x1, ox, sw); - y1 = nsvg__convertToPixels(p, data->linear.y1, oy, sh); - x2 = nsvg__convertToPixels(p, data->linear.x2, ox, sw); - y2 = nsvg__convertToPixels(p, data->linear.y2, oy, sh); - // Calculate transform aligned to the line - dx = x2 - x1; - dy = y2 - y1; - grad->xform[0] = dy; grad->xform[1] = -dx; - grad->xform[2] = dx; grad->xform[3] = dy; - grad->xform[4] = x1; grad->xform[5] = y1; - } else { - float cx, cy, fx, fy, r; - cx = nsvg__convertToPixels(p, data->radial.cx, ox, sw); - cy = nsvg__convertToPixels(p, data->radial.cy, oy, sh); - fx = nsvg__convertToPixels(p, data->radial.fx, ox, sw); - fy = nsvg__convertToPixels(p, data->radial.fy, oy, sh); - r = nsvg__convertToPixels(p, data->radial.r, 0, sl); - // Calculate transform aligned to the circle - grad->xform[0] = r; grad->xform[1] = 0; - grad->xform[2] = 0; grad->xform[3] = r; - grad->xform[4] = cx; grad->xform[5] = cy; - grad->fx = fx / r; - grad->fy = fy / r; - } - - nsvg__xformMultiply(grad->xform, data->xform); - nsvg__xformMultiply(grad->xform, attr->xform); - - grad->spread = data->spread; - memcpy(grad->stops, stops, nstops*sizeof(NSVGgradientStop)); - grad->nstops = nstops; - - *paintType = data->type; - - return grad; -} - -static float nsvg__getAverageScale(float* t) -{ - float sx = sqrtf(t[0]*t[0] + t[2]*t[2]); - float sy = sqrtf(t[1]*t[1] + t[3]*t[3]); - return (sx + sy) * 0.5f; -} - -static void nsvg__getLocalBounds(float* bounds, NSVGshape *shape, float* xform) -{ - NSVGpath* path; - float curve[4*2], curveBounds[4]; - int i, first = 1; - for (path = shape->paths; path != NULL; path = path->next) { - nsvg__xformPoint(&curve[0], &curve[1], path->pts[0], path->pts[1], xform); - for (i = 0; i < path->npts-1; i += 3) { - nsvg__xformPoint(&curve[2], &curve[3], path->pts[(i+1)*2], path->pts[(i+1)*2+1], xform); - nsvg__xformPoint(&curve[4], &curve[5], path->pts[(i+2)*2], path->pts[(i+2)*2+1], xform); - nsvg__xformPoint(&curve[6], &curve[7], path->pts[(i+3)*2], path->pts[(i+3)*2+1], xform); - nsvg__curveBounds(curveBounds, curve); - if (first) { - bounds[0] = curveBounds[0]; - bounds[1] = curveBounds[1]; - bounds[2] = curveBounds[2]; - bounds[3] = curveBounds[3]; - first = 0; - } else { - bounds[0] = nsvg__minf(bounds[0], curveBounds[0]); - bounds[1] = nsvg__minf(bounds[1], curveBounds[1]); - bounds[2] = nsvg__maxf(bounds[2], curveBounds[2]); - bounds[3] = nsvg__maxf(bounds[3], curveBounds[3]); - } - curve[0] = curve[6]; - curve[1] = curve[7]; - } - } -} - -static void nsvg__addShape(NSVGparser* p) -{ - NSVGattrib* attr = nsvg__getAttr(p); - float scale = 1.0f; - NSVGshape* shape; - NSVGpath* path; - int i; - - if (p->plist == NULL) - return; - - shape = (NSVGshape*)malloc(sizeof(NSVGshape)); - if (shape == NULL) goto error; - memset(shape, 0, sizeof(NSVGshape)); - - memcpy(shape->id, attr->id, sizeof shape->id); - scale = nsvg__getAverageScale(attr->xform); - shape->strokeWidth = attr->strokeWidth * scale; - shape->strokeDashOffset = attr->strokeDashOffset * scale; - shape->strokeDashCount = (char)attr->strokeDashCount; - for (i = 0; i < attr->strokeDashCount; i++) - shape->strokeDashArray[i] = attr->strokeDashArray[i] * scale; - shape->strokeLineJoin = attr->strokeLineJoin; - shape->strokeLineCap = attr->strokeLineCap; - shape->miterLimit = attr->miterLimit; - shape->fillRule = attr->fillRule; - shape->opacity = attr->opacity; - - shape->paths = p->plist; - p->plist = NULL; - - // Calculate shape bounds - shape->bounds[0] = shape->paths->bounds[0]; - shape->bounds[1] = shape->paths->bounds[1]; - shape->bounds[2] = shape->paths->bounds[2]; - shape->bounds[3] = shape->paths->bounds[3]; - for (path = shape->paths->next; path != NULL; path = path->next) { - shape->bounds[0] = nsvg__minf(shape->bounds[0], path->bounds[0]); - shape->bounds[1] = nsvg__minf(shape->bounds[1], path->bounds[1]); - shape->bounds[2] = nsvg__maxf(shape->bounds[2], path->bounds[2]); - shape->bounds[3] = nsvg__maxf(shape->bounds[3], path->bounds[3]); - } - - // Set fill - if (attr->hasFill == 0) { - shape->fill.type = NSVG_PAINT_NONE; - } else if (attr->hasFill == 1) { - shape->fill.type = NSVG_PAINT_COLOR; - shape->fill.color = attr->fillColor; - shape->fill.color |= (unsigned int)(attr->fillOpacity*255) << 24; - } else if (attr->hasFill == 2) { - float inv[6], localBounds[4]; - nsvg__xformInverse(inv, attr->xform); - nsvg__getLocalBounds(localBounds, shape, inv); - shape->fill.gradient = nsvg__createGradient(p, attr->fillGradient, localBounds, &shape->fill.type); - if (shape->fill.gradient == NULL) { - shape->fill.type = NSVG_PAINT_NONE; - } - } - - // Set stroke - if (attr->hasStroke == 0) { - shape->stroke.type = NSVG_PAINT_NONE; - } else if (attr->hasStroke == 1) { - shape->stroke.type = NSVG_PAINT_COLOR; - shape->stroke.color = attr->strokeColor; - shape->stroke.color |= (unsigned int)(attr->strokeOpacity*255) << 24; - } else if (attr->hasStroke == 2) { - float inv[6], localBounds[4]; - nsvg__xformInverse(inv, attr->xform); - nsvg__getLocalBounds(localBounds, shape, inv); - shape->stroke.gradient = nsvg__createGradient(p, attr->strokeGradient, localBounds, &shape->stroke.type); - if (shape->stroke.gradient == NULL) - shape->stroke.type = NSVG_PAINT_NONE; - } - - // Set flags - shape->flags = (attr->visible ? NSVG_FLAGS_VISIBLE : 0x00); - - // Add to tail - if (p->image->shapes == NULL) - p->image->shapes = shape; - else - p->shapesTail->next = shape; - p->shapesTail = shape; - - return; - -error: - if (shape) free(shape); -} - -static void nsvg__addPath(NSVGparser* p, char closed) -{ - NSVGattrib* attr = nsvg__getAttr(p); - NSVGpath* path = NULL; - float bounds[4]; - float* curve; - int i; - - if (p->npts < 4) - return; - - if (closed) - nsvg__lineTo(p, p->pts[0], p->pts[1]); - - // Expect 1 + N*3 points (N = number of cubic bezier segments). - if ((p->npts % 3) != 1) - return; - - path = (NSVGpath*)malloc(sizeof(NSVGpath)); - if (path == NULL) goto error; - memset(path, 0, sizeof(NSVGpath)); - - path->pts = (float*)malloc(p->npts*2*sizeof(float)); - if (path->pts == NULL) goto error; - path->closed = closed; - path->npts = p->npts; - - // Transform path. - for (i = 0; i < p->npts; ++i) - nsvg__xformPoint(&path->pts[i*2], &path->pts[i*2+1], p->pts[i*2], p->pts[i*2+1], attr->xform); - - // Find bounds - for (i = 0; i < path->npts-1; i += 3) { - curve = &path->pts[i*2]; - nsvg__curveBounds(bounds, curve); - if (i == 0) { - path->bounds[0] = bounds[0]; - path->bounds[1] = bounds[1]; - path->bounds[2] = bounds[2]; - path->bounds[3] = bounds[3]; - } else { - path->bounds[0] = nsvg__minf(path->bounds[0], bounds[0]); - path->bounds[1] = nsvg__minf(path->bounds[1], bounds[1]); - path->bounds[2] = nsvg__maxf(path->bounds[2], bounds[2]); - path->bounds[3] = nsvg__maxf(path->bounds[3], bounds[3]); - } - } - - path->next = p->plist; - p->plist = path; - - return; - -error: - if (path != NULL) { - if (path->pts != NULL) free(path->pts); - free(path); - } -} - -// We roll our own string to float because the std library one uses locale and messes things up. -static double nsvg__atof(const char* s) -{ - char* cur = (char*)s; - char* end = NULL; - double res = 0.0, sign = 1.0; - long long intPart = 0, fracPart = 0; - char hasIntPart = 0, hasFracPart = 0; - - // Parse optional sign - if (*cur == '+') { - cur++; - } else if (*cur == '-') { - sign = -1; - cur++; - } - - // Parse integer part - if (nsvg__isdigit(*cur)) { - // Parse digit sequence - intPart = strtoll(cur, &end, 10); - if (cur != end) { - res = (double)intPart; - hasIntPart = 1; - cur = end; - } - } - - // Parse fractional part. - if (*cur == '.') { - cur++; // Skip '.' - if (nsvg__isdigit(*cur)) { - // Parse digit sequence - fracPart = strtoll(cur, &end, 10); - if (cur != end) { - res += (double)fracPart / pow(10.0, (double)(end - cur)); - hasFracPart = 1; - cur = end; - } - } - } - - // A valid number should have integer or fractional part. - if (!hasIntPart && !hasFracPart) - return 0.0; - - // Parse optional exponent - if (*cur == 'e' || *cur == 'E') { - long expPart = 0; - cur++; // skip 'E' - expPart = strtol(cur, &end, 10); // Parse digit sequence with sign - if (cur != end) { - res *= pow(10.0, (double)expPart); - } - } - - return res * sign; -} - - -static const char* nsvg__parseNumber(const char* s, char* it, const int size) -{ - const int last = size-1; - int i = 0; - - // sign - if (*s == '-' || *s == '+') { - if (i < last) it[i++] = *s; - s++; - } - // integer part - while (*s && nsvg__isdigit(*s)) { - if (i < last) it[i++] = *s; - s++; - } - if (*s == '.') { - // decimal point - if (i < last) it[i++] = *s; - s++; - // fraction part - while (*s && nsvg__isdigit(*s)) { - if (i < last) it[i++] = *s; - s++; - } - } - // exponent - if ((*s == 'e' || *s == 'E') && (s[1] != 'm' && s[1] != 'x')) { - if (i < last) it[i++] = *s; - s++; - if (*s == '-' || *s == '+') { - if (i < last) it[i++] = *s; - s++; - } - while (*s && nsvg__isdigit(*s)) { - if (i < last) it[i++] = *s; - s++; - } - } - it[i] = '\0'; - - return s; -} - -static const char* nsvg__getNextPathItem(const char* s, char* it) -{ - it[0] = '\0'; - // Skip white spaces and commas - while (*s && (nsvg__isspace(*s) || *s == ',')) s++; - if (!*s) return s; - if (*s == '-' || *s == '+' || *s == '.' || nsvg__isdigit(*s)) { - s = nsvg__parseNumber(s, it, 64); - } else { - // Parse command - it[0] = *s++; - it[1] = '\0'; - return s; - } - - return s; -} - -static unsigned int nsvg__parseColorHex(const char* str) -{ - unsigned int r=0, g=0, b=0; - if (sscanf(str, "#%2x%2x%2x", &r, &g, &b) == 3 ) // 2 digit hex - return NSVG_RGB(r, g, b); - if (sscanf(str, "#%1x%1x%1x", &r, &g, &b) == 3 ) // 1 digit hex, e.g. #abc -> 0xccbbaa - return NSVG_RGB(r*17, g*17, b*17); // same effect as (r<<4|r), (g<<4|g), .. - return NSVG_RGB(128, 128, 128); -} - -// Parse rgb color. The pointer 'str' must point at "rgb(" (4+ characters). -// This function returns gray (rgb(128, 128, 128) == '#808080') on parse errors -// for backwards compatibility. Note: other image viewers return black instead. - -static unsigned int nsvg__parseColorRGB(const char* str) -{ - int i; - unsigned int rgbi[3]; - float rgbf[3]; - // try decimal integers first - if (sscanf(str, "rgb(%u, %u, %u)", &rgbi[0], &rgbi[1], &rgbi[2]) != 3) { - // integers failed, try percent values (float, locale independent) - const char delimiter[3] = {',', ',', ')'}; - str += 4; // skip "rgb(" - for (i = 0; i < 3; i++) { - while (*str && (nsvg__isspace(*str))) str++; // skip leading spaces - if (*str == '+') str++; // skip '+' (don't allow '-') - if (!*str) break; - rgbf[i] = nsvg__atof(str); - - // Note 1: it would be great if nsvg__atof() returned how many - // bytes it consumed but it doesn't. We need to skip the number, - // the '%' character, spaces, and the delimiter ',' or ')'. - - // Note 2: The following code does not allow values like "33.%", - // i.e. a decimal point w/o fractional part, but this is consistent - // with other image viewers, e.g. firefox, chrome, eog, gimp. - - while (*str && nsvg__isdigit(*str)) str++; // skip integer part - if (*str == '.') { - str++; - if (!nsvg__isdigit(*str)) break; // error: no digit after '.' - while (*str && nsvg__isdigit(*str)) str++; // skip fractional part - } - if (*str == '%') str++; else break; - while (nsvg__isspace(*str)) str++; - if (*str == delimiter[i]) str++; - else break; - } - if (i == 3) { - rgbi[0] = roundf(rgbf[0] * 2.55f); - rgbi[1] = roundf(rgbf[1] * 2.55f); - rgbi[2] = roundf(rgbf[2] * 2.55f); - } else { - rgbi[0] = rgbi[1] = rgbi[2] = 128; - } - } - // clip values as the CSS spec requires - for (i = 0; i < 3; i++) { - if (rgbi[i] > 255) rgbi[i] = 255; - } - return NSVG_RGB(rgbi[0], rgbi[1], rgbi[2]); -} - -typedef struct NSVGNamedColor { - const char* name; - unsigned int color; -} NSVGNamedColor; - -NSVGNamedColor nsvg__colors[] = { - - { "red", NSVG_RGB(255, 0, 0) }, - { "green", NSVG_RGB( 0, 128, 0) }, - { "blue", NSVG_RGB( 0, 0, 255) }, - { "yellow", NSVG_RGB(255, 255, 0) }, - { "cyan", NSVG_RGB( 0, 255, 255) }, - { "magenta", NSVG_RGB(255, 0, 255) }, - { "black", NSVG_RGB( 0, 0, 0) }, - { "grey", NSVG_RGB(128, 128, 128) }, - { "gray", NSVG_RGB(128, 128, 128) }, - { "white", NSVG_RGB(255, 255, 255) }, - -#ifdef NANOSVG_ALL_COLOR_KEYWORDS - { "aliceblue", NSVG_RGB(240, 248, 255) }, - { "antiquewhite", NSVG_RGB(250, 235, 215) }, - { "aqua", NSVG_RGB( 0, 255, 255) }, - { "aquamarine", NSVG_RGB(127, 255, 212) }, - { "azure", NSVG_RGB(240, 255, 255) }, - { "beige", NSVG_RGB(245, 245, 220) }, - { "bisque", NSVG_RGB(255, 228, 196) }, - { "blanchedalmond", NSVG_RGB(255, 235, 205) }, - { "blueviolet", NSVG_RGB(138, 43, 226) }, - { "brown", NSVG_RGB(165, 42, 42) }, - { "burlywood", NSVG_RGB(222, 184, 135) }, - { "cadetblue", NSVG_RGB( 95, 158, 160) }, - { "chartreuse", NSVG_RGB(127, 255, 0) }, - { "chocolate", NSVG_RGB(210, 105, 30) }, - { "coral", NSVG_RGB(255, 127, 80) }, - { "cornflowerblue", NSVG_RGB(100, 149, 237) }, - { "cornsilk", NSVG_RGB(255, 248, 220) }, - { "crimson", NSVG_RGB(220, 20, 60) }, - { "darkblue", NSVG_RGB( 0, 0, 139) }, - { "darkcyan", NSVG_RGB( 0, 139, 139) }, - { "darkgoldenrod", NSVG_RGB(184, 134, 11) }, - { "darkgray", NSVG_RGB(169, 169, 169) }, - { "darkgreen", NSVG_RGB( 0, 100, 0) }, - { "darkgrey", NSVG_RGB(169, 169, 169) }, - { "darkkhaki", NSVG_RGB(189, 183, 107) }, - { "darkmagenta", NSVG_RGB(139, 0, 139) }, - { "darkolivegreen", NSVG_RGB( 85, 107, 47) }, - { "darkorange", NSVG_RGB(255, 140, 0) }, - { "darkorchid", NSVG_RGB(153, 50, 204) }, - { "darkred", NSVG_RGB(139, 0, 0) }, - { "darksalmon", NSVG_RGB(233, 150, 122) }, - { "darkseagreen", NSVG_RGB(143, 188, 143) }, - { "darkslateblue", NSVG_RGB( 72, 61, 139) }, - { "darkslategray", NSVG_RGB( 47, 79, 79) }, - { "darkslategrey", NSVG_RGB( 47, 79, 79) }, - { "darkturquoise", NSVG_RGB( 0, 206, 209) }, - { "darkviolet", NSVG_RGB(148, 0, 211) }, - { "deeppink", NSVG_RGB(255, 20, 147) }, - { "deepskyblue", NSVG_RGB( 0, 191, 255) }, - { "dimgray", NSVG_RGB(105, 105, 105) }, - { "dimgrey", NSVG_RGB(105, 105, 105) }, - { "dodgerblue", NSVG_RGB( 30, 144, 255) }, - { "firebrick", NSVG_RGB(178, 34, 34) }, - { "floralwhite", NSVG_RGB(255, 250, 240) }, - { "forestgreen", NSVG_RGB( 34, 139, 34) }, - { "fuchsia", NSVG_RGB(255, 0, 255) }, - { "gainsboro", NSVG_RGB(220, 220, 220) }, - { "ghostwhite", NSVG_RGB(248, 248, 255) }, - { "gold", NSVG_RGB(255, 215, 0) }, - { "goldenrod", NSVG_RGB(218, 165, 32) }, - { "greenyellow", NSVG_RGB(173, 255, 47) }, - { "honeydew", NSVG_RGB(240, 255, 240) }, - { "hotpink", NSVG_RGB(255, 105, 180) }, - { "indianred", NSVG_RGB(205, 92, 92) }, - { "indigo", NSVG_RGB( 75, 0, 130) }, - { "ivory", NSVG_RGB(255, 255, 240) }, - { "khaki", NSVG_RGB(240, 230, 140) }, - { "lavender", NSVG_RGB(230, 230, 250) }, - { "lavenderblush", NSVG_RGB(255, 240, 245) }, - { "lawngreen", NSVG_RGB(124, 252, 0) }, - { "lemonchiffon", NSVG_RGB(255, 250, 205) }, - { "lightblue", NSVG_RGB(173, 216, 230) }, - { "lightcoral", NSVG_RGB(240, 128, 128) }, - { "lightcyan", NSVG_RGB(224, 255, 255) }, - { "lightgoldenrodyellow", NSVG_RGB(250, 250, 210) }, - { "lightgray", NSVG_RGB(211, 211, 211) }, - { "lightgreen", NSVG_RGB(144, 238, 144) }, - { "lightgrey", NSVG_RGB(211, 211, 211) }, - { "lightpink", NSVG_RGB(255, 182, 193) }, - { "lightsalmon", NSVG_RGB(255, 160, 122) }, - { "lightseagreen", NSVG_RGB( 32, 178, 170) }, - { "lightskyblue", NSVG_RGB(135, 206, 250) }, - { "lightslategray", NSVG_RGB(119, 136, 153) }, - { "lightslategrey", NSVG_RGB(119, 136, 153) }, - { "lightsteelblue", NSVG_RGB(176, 196, 222) }, - { "lightyellow", NSVG_RGB(255, 255, 224) }, - { "lime", NSVG_RGB( 0, 255, 0) }, - { "limegreen", NSVG_RGB( 50, 205, 50) }, - { "linen", NSVG_RGB(250, 240, 230) }, - { "maroon", NSVG_RGB(128, 0, 0) }, - { "mediumaquamarine", NSVG_RGB(102, 205, 170) }, - { "mediumblue", NSVG_RGB( 0, 0, 205) }, - { "mediumorchid", NSVG_RGB(186, 85, 211) }, - { "mediumpurple", NSVG_RGB(147, 112, 219) }, - { "mediumseagreen", NSVG_RGB( 60, 179, 113) }, - { "mediumslateblue", NSVG_RGB(123, 104, 238) }, - { "mediumspringgreen", NSVG_RGB( 0, 250, 154) }, - { "mediumturquoise", NSVG_RGB( 72, 209, 204) }, - { "mediumvioletred", NSVG_RGB(199, 21, 133) }, - { "midnightblue", NSVG_RGB( 25, 25, 112) }, - { "mintcream", NSVG_RGB(245, 255, 250) }, - { "mistyrose", NSVG_RGB(255, 228, 225) }, - { "moccasin", NSVG_RGB(255, 228, 181) }, - { "navajowhite", NSVG_RGB(255, 222, 173) }, - { "navy", NSVG_RGB( 0, 0, 128) }, - { "oldlace", NSVG_RGB(253, 245, 230) }, - { "olive", NSVG_RGB(128, 128, 0) }, - { "olivedrab", NSVG_RGB(107, 142, 35) }, - { "orange", NSVG_RGB(255, 165, 0) }, - { "orangered", NSVG_RGB(255, 69, 0) }, - { "orchid", NSVG_RGB(218, 112, 214) }, - { "palegoldenrod", NSVG_RGB(238, 232, 170) }, - { "palegreen", NSVG_RGB(152, 251, 152) }, - { "paleturquoise", NSVG_RGB(175, 238, 238) }, - { "palevioletred", NSVG_RGB(219, 112, 147) }, - { "papayawhip", NSVG_RGB(255, 239, 213) }, - { "peachpuff", NSVG_RGB(255, 218, 185) }, - { "peru", NSVG_RGB(205, 133, 63) }, - { "pink", NSVG_RGB(255, 192, 203) }, - { "plum", NSVG_RGB(221, 160, 221) }, - { "powderblue", NSVG_RGB(176, 224, 230) }, - { "purple", NSVG_RGB(128, 0, 128) }, - { "rosybrown", NSVG_RGB(188, 143, 143) }, - { "royalblue", NSVG_RGB( 65, 105, 225) }, - { "saddlebrown", NSVG_RGB(139, 69, 19) }, - { "salmon", NSVG_RGB(250, 128, 114) }, - { "sandybrown", NSVG_RGB(244, 164, 96) }, - { "seagreen", NSVG_RGB( 46, 139, 87) }, - { "seashell", NSVG_RGB(255, 245, 238) }, - { "sienna", NSVG_RGB(160, 82, 45) }, - { "silver", NSVG_RGB(192, 192, 192) }, - { "skyblue", NSVG_RGB(135, 206, 235) }, - { "slateblue", NSVG_RGB(106, 90, 205) }, - { "slategray", NSVG_RGB(112, 128, 144) }, - { "slategrey", NSVG_RGB(112, 128, 144) }, - { "snow", NSVG_RGB(255, 250, 250) }, - { "springgreen", NSVG_RGB( 0, 255, 127) }, - { "steelblue", NSVG_RGB( 70, 130, 180) }, - { "tan", NSVG_RGB(210, 180, 140) }, - { "teal", NSVG_RGB( 0, 128, 128) }, - { "thistle", NSVG_RGB(216, 191, 216) }, - { "tomato", NSVG_RGB(255, 99, 71) }, - { "turquoise", NSVG_RGB( 64, 224, 208) }, - { "violet", NSVG_RGB(238, 130, 238) }, - { "wheat", NSVG_RGB(245, 222, 179) }, - { "whitesmoke", NSVG_RGB(245, 245, 245) }, - { "yellowgreen", NSVG_RGB(154, 205, 50) }, -#endif -}; - -static unsigned int nsvg__parseColorName(const char* str) -{ - int i, ncolors = sizeof(nsvg__colors) / sizeof(NSVGNamedColor); - - for (i = 0; i < ncolors; i++) { - if (strcmp(nsvg__colors[i].name, str) == 0) { - return nsvg__colors[i].color; - } - } - - return NSVG_RGB(128, 128, 128); -} - -static unsigned int nsvg__parseColor(const char* str) -{ - size_t len = 0; - while(*str == ' ') ++str; - len = strlen(str); - if (len >= 1 && *str == '#') - return nsvg__parseColorHex(str); - else if (len >= 4 && str[0] == 'r' && str[1] == 'g' && str[2] == 'b' && str[3] == '(') - return nsvg__parseColorRGB(str); - return nsvg__parseColorName(str); -} - -static float nsvg__parseOpacity(const char* str) -{ - float val = nsvg__atof(str); - if (val < 0.0f) val = 0.0f; - if (val > 1.0f) val = 1.0f; - return val; -} - -static float nsvg__parseMiterLimit(const char* str) -{ - float val = nsvg__atof(str); - if (val < 0.0f) val = 0.0f; - return val; -} - -static int nsvg__parseUnits(const char* units) -{ - if (units[0] == 'p' && units[1] == 'x') - return NSVG_UNITS_PX; - else if (units[0] == 'p' && units[1] == 't') - return NSVG_UNITS_PT; - else if (units[0] == 'p' && units[1] == 'c') - return NSVG_UNITS_PC; - else if (units[0] == 'm' && units[1] == 'm') - return NSVG_UNITS_MM; - else if (units[0] == 'c' && units[1] == 'm') - return NSVG_UNITS_CM; - else if (units[0] == 'i' && units[1] == 'n') - return NSVG_UNITS_IN; - else if (units[0] == '%') - return NSVG_UNITS_PERCENT; - else if (units[0] == 'e' && units[1] == 'm') - return NSVG_UNITS_EM; - else if (units[0] == 'e' && units[1] == 'x') - return NSVG_UNITS_EX; - return NSVG_UNITS_USER; -} - -static int nsvg__isCoordinate(const char* s) -{ - // optional sign - if (*s == '-' || *s == '+') - s++; - // must have at least one digit, or start by a dot - return (nsvg__isdigit(*s) || *s == '.'); -} - -static NSVGcoordinate nsvg__parseCoordinateRaw(const char* str) -{ - NSVGcoordinate coord = {0, NSVG_UNITS_USER}; - char buf[64]; - coord.units = nsvg__parseUnits(nsvg__parseNumber(str, buf, 64)); - coord.value = nsvg__atof(buf); - return coord; -} - -static NSVGcoordinate nsvg__coord(float v, int units) -{ - NSVGcoordinate coord = {v, units}; - return coord; -} - -static float nsvg__parseCoordinate(NSVGparser* p, const char* str, float orig, float length) -{ - NSVGcoordinate coord = nsvg__parseCoordinateRaw(str); - return nsvg__convertToPixels(p, coord, orig, length); -} - -static int nsvg__parseTransformArgs(const char* str, float* args, int maxNa, int* na) -{ - const char* end; - const char* ptr; - char it[64]; - - *na = 0; - ptr = str; - while (*ptr && *ptr != '(') ++ptr; - if (*ptr == 0) - return 1; - end = ptr; - while (*end && *end != ')') ++end; - if (*end == 0) - return 1; - - while (ptr < end) { - if (*ptr == '-' || *ptr == '+' || *ptr == '.' || nsvg__isdigit(*ptr)) { - if (*na >= maxNa) return 0; - ptr = nsvg__parseNumber(ptr, it, 64); - args[(*na)++] = (float)nsvg__atof(it); - } else { - ++ptr; - } - } - return (int)(end - str); -} - - -static int nsvg__parseMatrix(float* xform, const char* str) -{ - float t[6]; - int na = 0; - int len = nsvg__parseTransformArgs(str, t, 6, &na); - if (na != 6) return len; - memcpy(xform, t, sizeof(float)*6); - return len; -} - -static int nsvg__parseTranslate(float* xform, const char* str) -{ - float args[2]; - float t[6]; - int na = 0; - int len = nsvg__parseTransformArgs(str, args, 2, &na); - if (na == 1) args[1] = 0.0; - - nsvg__xformSetTranslation(t, args[0], args[1]); - memcpy(xform, t, sizeof(float)*6); - return len; -} - -static int nsvg__parseScale(float* xform, const char* str) -{ - float args[2]; - int na = 0; - float t[6]; - int len = nsvg__parseTransformArgs(str, args, 2, &na); - if (na == 1) args[1] = args[0]; - nsvg__xformSetScale(t, args[0], args[1]); - memcpy(xform, t, sizeof(float)*6); - return len; -} - -static int nsvg__parseSkewX(float* xform, const char* str) -{ - float args[1]; - int na = 0; - float t[6]; - int len = nsvg__parseTransformArgs(str, args, 1, &na); - nsvg__xformSetSkewX(t, args[0]/180.0f*NSVG_PI); - memcpy(xform, t, sizeof(float)*6); - return len; -} - -static int nsvg__parseSkewY(float* xform, const char* str) -{ - float args[1]; - int na = 0; - float t[6]; - int len = nsvg__parseTransformArgs(str, args, 1, &na); - nsvg__xformSetSkewY(t, args[0]/180.0f*NSVG_PI); - memcpy(xform, t, sizeof(float)*6); - return len; -} - -static int nsvg__parseRotate(float* xform, const char* str) -{ - float args[3]; - int na = 0; - float m[6]; - float t[6]; - int len = nsvg__parseTransformArgs(str, args, 3, &na); - if (na == 1) - args[1] = args[2] = 0.0f; - nsvg__xformIdentity(m); - - if (na > 1) { - nsvg__xformSetTranslation(t, -args[1], -args[2]); - nsvg__xformMultiply(m, t); - } - - nsvg__xformSetRotation(t, args[0]/180.0f*NSVG_PI); - nsvg__xformMultiply(m, t); - - if (na > 1) { - nsvg__xformSetTranslation(t, args[1], args[2]); - nsvg__xformMultiply(m, t); - } - - memcpy(xform, m, sizeof(float)*6); - - return len; -} - -static void nsvg__parseTransform(float* xform, const char* str) -{ - float t[6]; - int len; - nsvg__xformIdentity(xform); - while (*str) - { - if (strncmp(str, "matrix", 6) == 0) - len = nsvg__parseMatrix(t, str); - else if (strncmp(str, "translate", 9) == 0) - len = nsvg__parseTranslate(t, str); - else if (strncmp(str, "scale", 5) == 0) - len = nsvg__parseScale(t, str); - else if (strncmp(str, "rotate", 6) == 0) - len = nsvg__parseRotate(t, str); - else if (strncmp(str, "skewX", 5) == 0) - len = nsvg__parseSkewX(t, str); - else if (strncmp(str, "skewY", 5) == 0) - len = nsvg__parseSkewY(t, str); - else{ - ++str; - continue; - } - if (len != 0) { - str += len; - } else { - ++str; - continue; - } - - nsvg__xformPremultiply(xform, t); - } -} - -static void nsvg__parseUrl(char* id, const char* str) -{ - int i = 0; - str += 4; // "url("; - if (*str && *str == '#') - str++; - while (i < 63 && *str && *str != ')') { - id[i] = *str++; - i++; - } - id[i] = '\0'; -} - -static char nsvg__parseLineCap(const char* str) -{ - if (strcmp(str, "butt") == 0) - return NSVG_CAP_BUTT; - else if (strcmp(str, "round") == 0) - return NSVG_CAP_ROUND; - else if (strcmp(str, "square") == 0) - return NSVG_CAP_SQUARE; - // TODO: handle inherit. - return NSVG_CAP_BUTT; -} - -static char nsvg__parseLineJoin(const char* str) -{ - if (strcmp(str, "miter") == 0) - return NSVG_JOIN_MITER; - else if (strcmp(str, "round") == 0) - return NSVG_JOIN_ROUND; - else if (strcmp(str, "bevel") == 0) - return NSVG_JOIN_BEVEL; - // TODO: handle inherit. - return NSVG_JOIN_MITER; -} - -static char nsvg__parseFillRule(const char* str) -{ - if (strcmp(str, "nonzero") == 0) - return NSVG_FILLRULE_NONZERO; - else if (strcmp(str, "evenodd") == 0) - return NSVG_FILLRULE_EVENODD; - // TODO: handle inherit. - return NSVG_FILLRULE_NONZERO; -} - -static const char* nsvg__getNextDashItem(const char* s, char* it) -{ - int n = 0; - it[0] = '\0'; - // Skip white spaces and commas - while (*s && (nsvg__isspace(*s) || *s == ',')) s++; - // Advance until whitespace, comma or end. - while (*s && (!nsvg__isspace(*s) && *s != ',')) { - if (n < 63) - it[n++] = *s; - s++; - } - it[n++] = '\0'; - return s; -} - -static int nsvg__parseStrokeDashArray(NSVGparser* p, const char* str, float* strokeDashArray) -{ - char item[64]; - int count = 0, i; - float sum = 0.0f; - - // Handle "none" - if (str[0] == 'n') - return 0; - - // Parse dashes - while (*str) { - str = nsvg__getNextDashItem(str, item); - if (!*item) break; - if (count < NSVG_MAX_DASHES) - strokeDashArray[count++] = fabsf(nsvg__parseCoordinate(p, item, 0.0f, nsvg__actualLength(p))); - } - - for (i = 0; i < count; i++) - sum += strokeDashArray[i]; - if (sum <= 1e-6f) - count = 0; - - return count; -} - -static void nsvg__parseStyle(NSVGparser* p, const char* str); - -static int nsvg__parseAttr(NSVGparser* p, const char* name, const char* value) -{ - float xform[6]; - NSVGattrib* attr = nsvg__getAttr(p); - if (!attr) return 0; - - if (strcmp(name, "style") == 0) { - nsvg__parseStyle(p, value); - } else if (strcmp(name, "display") == 0) { - if (strcmp(value, "none") == 0) - attr->visible = 0; - // Don't reset ->visible on display:inline, one display:none hides the whole subtree - - } else if (strcmp(name, "fill") == 0) { - if (strcmp(value, "none") == 0) { - attr->hasFill = 0; - } else if (strncmp(value, "url(", 4) == 0) { - attr->hasFill = 2; - nsvg__parseUrl(attr->fillGradient, value); - } else { - attr->hasFill = 1; - attr->fillColor = nsvg__parseColor(value); - } - } else if (strcmp(name, "opacity") == 0) { - attr->opacity = nsvg__parseOpacity(value); - } else if (strcmp(name, "fill-opacity") == 0) { - attr->fillOpacity = nsvg__parseOpacity(value); - } else if (strcmp(name, "stroke") == 0) { - if (strcmp(value, "none") == 0) { - attr->hasStroke = 0; - } else if (strncmp(value, "url(", 4) == 0) { - attr->hasStroke = 2; - nsvg__parseUrl(attr->strokeGradient, value); - } else { - attr->hasStroke = 1; - attr->strokeColor = nsvg__parseColor(value); - } - } else if (strcmp(name, "stroke-width") == 0) { - attr->strokeWidth = nsvg__parseCoordinate(p, value, 0.0f, nsvg__actualLength(p)); - } else if (strcmp(name, "stroke-dasharray") == 0) { - attr->strokeDashCount = nsvg__parseStrokeDashArray(p, value, attr->strokeDashArray); - } else if (strcmp(name, "stroke-dashoffset") == 0) { - attr->strokeDashOffset = nsvg__parseCoordinate(p, value, 0.0f, nsvg__actualLength(p)); - } else if (strcmp(name, "stroke-opacity") == 0) { - attr->strokeOpacity = nsvg__parseOpacity(value); - } else if (strcmp(name, "stroke-linecap") == 0) { - attr->strokeLineCap = nsvg__parseLineCap(value); - } else if (strcmp(name, "stroke-linejoin") == 0) { - attr->strokeLineJoin = nsvg__parseLineJoin(value); - } else if (strcmp(name, "stroke-miterlimit") == 0) { - attr->miterLimit = nsvg__parseMiterLimit(value); - } else if (strcmp(name, "fill-rule") == 0) { - attr->fillRule = nsvg__parseFillRule(value); - } else if (strcmp(name, "font-size") == 0) { - attr->fontSize = nsvg__parseCoordinate(p, value, 0.0f, nsvg__actualLength(p)); - } else if (strcmp(name, "transform") == 0) { - nsvg__parseTransform(xform, value); - nsvg__xformPremultiply(attr->xform, xform); - } else if (strcmp(name, "stop-color") == 0) { - attr->stopColor = nsvg__parseColor(value); - } else if (strcmp(name, "stop-opacity") == 0) { - attr->stopOpacity = nsvg__parseOpacity(value); - } else if (strcmp(name, "offset") == 0) { - attr->stopOffset = nsvg__parseCoordinate(p, value, 0.0f, 1.0f); - } else if (strcmp(name, "id") == 0) { - strncpy(attr->id, value, 63); - attr->id[63] = '\0'; - } else { - return 0; - } - return 1; -} - -static int nsvg__parseNameValue(NSVGparser* p, const char* start, const char* end) -{ - const char* str; - const char* val; - char name[512]; - char value[512]; - int n; - - str = start; - while (str < end && *str != ':') ++str; - - val = str; - - // Right Trim - while (str > start && (*str == ':' || nsvg__isspace(*str))) --str; - ++str; - - n = (int)(str - start); - if (n > 511) n = 511; - if (n) memcpy(name, start, n); - name[n] = 0; - - while (val < end && (*val == ':' || nsvg__isspace(*val))) ++val; - - n = (int)(end - val); - if (n > 511) n = 511; - if (n) memcpy(value, val, n); - value[n] = 0; - - return nsvg__parseAttr(p, name, value); -} - -static void nsvg__parseStyle(NSVGparser* p, const char* str) -{ - const char* start; - const char* end; - - while (*str) { - // Left Trim - while(*str && nsvg__isspace(*str)) ++str; - start = str; - while(*str && *str != ';') ++str; - end = str; - - // Right Trim - while (end > start && (*end == ';' || nsvg__isspace(*end))) --end; - ++end; - - nsvg__parseNameValue(p, start, end); - if (*str) ++str; - } -} - -static void nsvg__parseAttribs(NSVGparser* p, const char** attr) -{ - int i; - for (i = 0; attr[i]; i += 2) - { - if (strcmp(attr[i], "style") == 0) - nsvg__parseStyle(p, attr[i + 1]); - else - nsvg__parseAttr(p, attr[i], attr[i + 1]); - } -} - -static int nsvg__getArgsPerElement(char cmd) -{ - switch (cmd) { - case 'v': - case 'V': - case 'h': - case 'H': - return 1; - case 'm': - case 'M': - case 'l': - case 'L': - case 't': - case 'T': - return 2; - case 'q': - case 'Q': - case 's': - case 'S': - return 4; - case 'c': - case 'C': - return 6; - case 'a': - case 'A': - return 7; - case 'z': - case 'Z': - return 0; - } - return -1; -} - -static void nsvg__pathMoveTo(NSVGparser* p, float* cpx, float* cpy, float* args, int rel) -{ - if (rel) { - *cpx += args[0]; - *cpy += args[1]; - } else { - *cpx = args[0]; - *cpy = args[1]; - } - nsvg__moveTo(p, *cpx, *cpy); -} - -static void nsvg__pathLineTo(NSVGparser* p, float* cpx, float* cpy, float* args, int rel) -{ - if (rel) { - *cpx += args[0]; - *cpy += args[1]; - } else { - *cpx = args[0]; - *cpy = args[1]; - } - nsvg__lineTo(p, *cpx, *cpy); -} - -static void nsvg__pathHLineTo(NSVGparser* p, float* cpx, float* cpy, float* args, int rel) -{ - if (rel) - *cpx += args[0]; - else - *cpx = args[0]; - nsvg__lineTo(p, *cpx, *cpy); -} - -static void nsvg__pathVLineTo(NSVGparser* p, float* cpx, float* cpy, float* args, int rel) -{ - if (rel) - *cpy += args[0]; - else - *cpy = args[0]; - nsvg__lineTo(p, *cpx, *cpy); -} - -static void nsvg__pathCubicBezTo(NSVGparser* p, float* cpx, float* cpy, - float* cpx2, float* cpy2, float* args, int rel) -{ - float x2, y2, cx1, cy1, cx2, cy2; - - if (rel) { - cx1 = *cpx + args[0]; - cy1 = *cpy + args[1]; - cx2 = *cpx + args[2]; - cy2 = *cpy + args[3]; - x2 = *cpx + args[4]; - y2 = *cpy + args[5]; - } else { - cx1 = args[0]; - cy1 = args[1]; - cx2 = args[2]; - cy2 = args[3]; - x2 = args[4]; - y2 = args[5]; - } - - nsvg__cubicBezTo(p, cx1,cy1, cx2,cy2, x2,y2); - - *cpx2 = cx2; - *cpy2 = cy2; - *cpx = x2; - *cpy = y2; -} - -static void nsvg__pathCubicBezShortTo(NSVGparser* p, float* cpx, float* cpy, - float* cpx2, float* cpy2, float* args, int rel) -{ - float x1, y1, x2, y2, cx1, cy1, cx2, cy2; - - x1 = *cpx; - y1 = *cpy; - if (rel) { - cx2 = *cpx + args[0]; - cy2 = *cpy + args[1]; - x2 = *cpx + args[2]; - y2 = *cpy + args[3]; - } else { - cx2 = args[0]; - cy2 = args[1]; - x2 = args[2]; - y2 = args[3]; - } - - cx1 = 2*x1 - *cpx2; - cy1 = 2*y1 - *cpy2; - - nsvg__cubicBezTo(p, cx1,cy1, cx2,cy2, x2,y2); - - *cpx2 = cx2; - *cpy2 = cy2; - *cpx = x2; - *cpy = y2; -} - -static void nsvg__pathQuadBezTo(NSVGparser* p, float* cpx, float* cpy, - float* cpx2, float* cpy2, float* args, int rel) -{ - float x1, y1, x2, y2, cx, cy; - float cx1, cy1, cx2, cy2; - - x1 = *cpx; - y1 = *cpy; - if (rel) { - cx = *cpx + args[0]; - cy = *cpy + args[1]; - x2 = *cpx + args[2]; - y2 = *cpy + args[3]; - } else { - cx = args[0]; - cy = args[1]; - x2 = args[2]; - y2 = args[3]; - } - - // Convert to cubic bezier - cx1 = x1 + 2.0f/3.0f*(cx - x1); - cy1 = y1 + 2.0f/3.0f*(cy - y1); - cx2 = x2 + 2.0f/3.0f*(cx - x2); - cy2 = y2 + 2.0f/3.0f*(cy - y2); - - nsvg__cubicBezTo(p, cx1,cy1, cx2,cy2, x2,y2); - - *cpx2 = cx; - *cpy2 = cy; - *cpx = x2; - *cpy = y2; -} - -static void nsvg__pathQuadBezShortTo(NSVGparser* p, float* cpx, float* cpy, - float* cpx2, float* cpy2, float* args, int rel) -{ - float x1, y1, x2, y2, cx, cy; - float cx1, cy1, cx2, cy2; - - x1 = *cpx; - y1 = *cpy; - if (rel) { - x2 = *cpx + args[0]; - y2 = *cpy + args[1]; - } else { - x2 = args[0]; - y2 = args[1]; - } - - cx = 2*x1 - *cpx2; - cy = 2*y1 - *cpy2; - - // Convert to cubix bezier - cx1 = x1 + 2.0f/3.0f*(cx - x1); - cy1 = y1 + 2.0f/3.0f*(cy - y1); - cx2 = x2 + 2.0f/3.0f*(cx - x2); - cy2 = y2 + 2.0f/3.0f*(cy - y2); - - nsvg__cubicBezTo(p, cx1,cy1, cx2,cy2, x2,y2); - - *cpx2 = cx; - *cpy2 = cy; - *cpx = x2; - *cpy = y2; -} - -static float nsvg__sqr(float x) { return x*x; } -static float nsvg__vmag(float x, float y) { return sqrtf(x*x + y*y); } - -static float nsvg__vecrat(float ux, float uy, float vx, float vy) -{ - return (ux*vx + uy*vy) / (nsvg__vmag(ux,uy) * nsvg__vmag(vx,vy)); -} - -static float nsvg__vecang(float ux, float uy, float vx, float vy) -{ - float r = nsvg__vecrat(ux,uy, vx,vy); - if (r < -1.0f) r = -1.0f; - if (r > 1.0f) r = 1.0f; - return ((ux*vy < uy*vx) ? -1.0f : 1.0f) * acosf(r); -} - -static void nsvg__pathArcTo(NSVGparser* p, float* cpx, float* cpy, float* args, int rel) -{ - // Ported from canvg (https://code.google.com/p/canvg/) - float rx, ry, rotx; - float x1, y1, x2, y2, cx, cy, dx, dy, d; - float x1p, y1p, cxp, cyp, s, sa, sb; - float ux, uy, vx, vy, a1, da; - float x, y, tanx, tany, a, px = 0, py = 0, ptanx = 0, ptany = 0, t[6]; - float sinrx, cosrx; - int fa, fs; - int i, ndivs; - float hda, kappa; - - rx = fabsf(args[0]); // y radius - ry = fabsf(args[1]); // x radius - rotx = args[2] / 180.0f * NSVG_PI; // x rotation angle - fa = fabsf(args[3]) > 1e-6 ? 1 : 0; // Large arc - fs = fabsf(args[4]) > 1e-6 ? 1 : 0; // Sweep direction - x1 = *cpx; // start point - y1 = *cpy; - if (rel) { // end point - x2 = *cpx + args[5]; - y2 = *cpy + args[6]; - } else { - x2 = args[5]; - y2 = args[6]; - } - - dx = x1 - x2; - dy = y1 - y2; - d = sqrtf(dx*dx + dy*dy); - if (d < 1e-6f || rx < 1e-6f || ry < 1e-6f) { - // The arc degenerates to a line - nsvg__lineTo(p, x2, y2); - *cpx = x2; - *cpy = y2; - return; - } - - sinrx = sinf(rotx); - cosrx = cosf(rotx); - - // Convert to center point parameterization. - // http://www.w3.org/TR/SVG11/implnote.html#ArcImplementationNotes - // 1) Compute x1', y1' - x1p = cosrx * dx / 2.0f + sinrx * dy / 2.0f; - y1p = -sinrx * dx / 2.0f + cosrx * dy / 2.0f; - d = nsvg__sqr(x1p)/nsvg__sqr(rx) + nsvg__sqr(y1p)/nsvg__sqr(ry); - if (d > 1) { - d = sqrtf(d); - rx *= d; - ry *= d; - } - // 2) Compute cx', cy' - s = 0.0f; - sa = nsvg__sqr(rx)*nsvg__sqr(ry) - nsvg__sqr(rx)*nsvg__sqr(y1p) - nsvg__sqr(ry)*nsvg__sqr(x1p); - sb = nsvg__sqr(rx)*nsvg__sqr(y1p) + nsvg__sqr(ry)*nsvg__sqr(x1p); - if (sa < 0.0f) sa = 0.0f; - if (sb > 0.0f) - s = sqrtf(sa / sb); - if (fa == fs) - s = -s; - cxp = s * rx * y1p / ry; - cyp = s * -ry * x1p / rx; - - // 3) Compute cx,cy from cx',cy' - cx = (x1 + x2)/2.0f + cosrx*cxp - sinrx*cyp; - cy = (y1 + y2)/2.0f + sinrx*cxp + cosrx*cyp; - - // 4) Calculate theta1, and delta theta. - ux = (x1p - cxp) / rx; - uy = (y1p - cyp) / ry; - vx = (-x1p - cxp) / rx; - vy = (-y1p - cyp) / ry; - a1 = nsvg__vecang(1.0f,0.0f, ux,uy); // Initial angle - da = nsvg__vecang(ux,uy, vx,vy); // Delta angle - -// if (vecrat(ux,uy,vx,vy) <= -1.0f) da = NSVG_PI; -// if (vecrat(ux,uy,vx,vy) >= 1.0f) da = 0; - - if (fs == 0 && da > 0) - da -= 2 * NSVG_PI; - else if (fs == 1 && da < 0) - da += 2 * NSVG_PI; - - // Approximate the arc using cubic spline segments. - t[0] = cosrx; t[1] = sinrx; - t[2] = -sinrx; t[3] = cosrx; - t[4] = cx; t[5] = cy; - - // Split arc into max 90 degree segments. - // The loop assumes an iteration per end point (including start and end), this +1. - ndivs = (int)(fabsf(da) / (NSVG_PI*0.5f) + 1.0f); - hda = (da / (float)ndivs) / 2.0f; - // Fix for ticket #179: division by 0: avoid cotangens around 0 (infinite) - if ((hda < 1e-3f) && (hda > -1e-3f)) - hda *= 0.5f; - else - hda = (1.0f - cosf(hda)) / sinf(hda); - kappa = fabsf(4.0f / 3.0f * hda); - if (da < 0.0f) - kappa = -kappa; - - for (i = 0; i <= ndivs; i++) { - a = a1 + da * ((float)i/(float)ndivs); - dx = cosf(a); - dy = sinf(a); - nsvg__xformPoint(&x, &y, dx*rx, dy*ry, t); // position - nsvg__xformVec(&tanx, &tany, -dy*rx * kappa, dx*ry * kappa, t); // tangent - if (i > 0) - nsvg__cubicBezTo(p, px+ptanx,py+ptany, x-tanx, y-tany, x, y); - px = x; - py = y; - ptanx = tanx; - ptany = tany; - } - - *cpx = x2; - *cpy = y2; -} - -static void nsvg__parsePath(NSVGparser* p, const char** attr) -{ - const char* s = NULL; - char cmd = '\0'; - float args[10]; - int nargs; - int rargs = 0; - char initPoint; - float cpx, cpy, cpx2, cpy2; - const char* tmp[4]; - char closedFlag; - int i; - char item[64]; - - for (i = 0; attr[i]; i += 2) { - if (strcmp(attr[i], "d") == 0) { - s = attr[i + 1]; - } else { - tmp[0] = attr[i]; - tmp[1] = attr[i + 1]; - tmp[2] = 0; - tmp[3] = 0; - nsvg__parseAttribs(p, tmp); - } - } - - if (s) { - nsvg__resetPath(p); - cpx = 0; cpy = 0; - cpx2 = 0; cpy2 = 0; - initPoint = 0; - closedFlag = 0; - nargs = 0; - - while (*s) { - s = nsvg__getNextPathItem(s, item); - if (!*item) break; - if (cmd != '\0' && nsvg__isCoordinate(item)) { - if (nargs < 10) - args[nargs++] = (float)nsvg__atof(item); - if (nargs >= rargs) { - switch (cmd) { - case 'm': - case 'M': - nsvg__pathMoveTo(p, &cpx, &cpy, args, cmd == 'm' ? 1 : 0); - // Moveto can be followed by multiple coordinate pairs, - // which should be treated as linetos. - cmd = (cmd == 'm') ? 'l' : 'L'; - rargs = nsvg__getArgsPerElement(cmd); - cpx2 = cpx; cpy2 = cpy; - initPoint = 1; - break; - case 'l': - case 'L': - nsvg__pathLineTo(p, &cpx, &cpy, args, cmd == 'l' ? 1 : 0); - cpx2 = cpx; cpy2 = cpy; - break; - case 'H': - case 'h': - nsvg__pathHLineTo(p, &cpx, &cpy, args, cmd == 'h' ? 1 : 0); - cpx2 = cpx; cpy2 = cpy; - break; - case 'V': - case 'v': - nsvg__pathVLineTo(p, &cpx, &cpy, args, cmd == 'v' ? 1 : 0); - cpx2 = cpx; cpy2 = cpy; - break; - case 'C': - case 'c': - nsvg__pathCubicBezTo(p, &cpx, &cpy, &cpx2, &cpy2, args, cmd == 'c' ? 1 : 0); - break; - case 'S': - case 's': - nsvg__pathCubicBezShortTo(p, &cpx, &cpy, &cpx2, &cpy2, args, cmd == 's' ? 1 : 0); - break; - case 'Q': - case 'q': - nsvg__pathQuadBezTo(p, &cpx, &cpy, &cpx2, &cpy2, args, cmd == 'q' ? 1 : 0); - break; - case 'T': - case 't': - nsvg__pathQuadBezShortTo(p, &cpx, &cpy, &cpx2, &cpy2, args, cmd == 't' ? 1 : 0); - break; - case 'A': - case 'a': - nsvg__pathArcTo(p, &cpx, &cpy, args, cmd == 'a' ? 1 : 0); - cpx2 = cpx; cpy2 = cpy; - break; - default: - if (nargs >= 2) { - cpx = args[nargs-2]; - cpy = args[nargs-1]; - cpx2 = cpx; cpy2 = cpy; - } - break; - } - nargs = 0; - } - } else { - cmd = item[0]; - if (cmd == 'M' || cmd == 'm') { - // Commit path. - if (p->npts > 0) - nsvg__addPath(p, closedFlag); - // Start new subpath. - nsvg__resetPath(p); - closedFlag = 0; - nargs = 0; - } else if (initPoint == 0) { - // Do not allow other commands until initial point has been set (moveTo called once). - cmd = '\0'; - } - if (cmd == 'Z' || cmd == 'z') { - closedFlag = 1; - // Commit path. - if (p->npts > 0) { - // Move current point to first point - cpx = p->pts[0]; - cpy = p->pts[1]; - cpx2 = cpx; cpy2 = cpy; - nsvg__addPath(p, closedFlag); - } - // Start new subpath. - nsvg__resetPath(p); - nsvg__moveTo(p, cpx, cpy); - closedFlag = 0; - nargs = 0; - } - rargs = nsvg__getArgsPerElement(cmd); - if (rargs == -1) { - // Command not recognized - cmd = '\0'; - rargs = 0; - } - } - } - // Commit path. - if (p->npts) - nsvg__addPath(p, closedFlag); - } - - nsvg__addShape(p); -} - -static void nsvg__parseRect(NSVGparser* p, const char** attr) -{ - float x = 0.0f; - float y = 0.0f; - float w = 0.0f; - float h = 0.0f; - float rx = -1.0f; // marks not set - float ry = -1.0f; - int i; - - for (i = 0; attr[i]; i += 2) { - if (!nsvg__parseAttr(p, attr[i], attr[i + 1])) { - if (strcmp(attr[i], "x") == 0) x = nsvg__parseCoordinate(p, attr[i+1], nsvg__actualOrigX(p), nsvg__actualWidth(p)); - if (strcmp(attr[i], "y") == 0) y = nsvg__parseCoordinate(p, attr[i+1], nsvg__actualOrigY(p), nsvg__actualHeight(p)); - if (strcmp(attr[i], "width") == 0) w = nsvg__parseCoordinate(p, attr[i+1], 0.0f, nsvg__actualWidth(p)); - if (strcmp(attr[i], "height") == 0) h = nsvg__parseCoordinate(p, attr[i+1], 0.0f, nsvg__actualHeight(p)); - if (strcmp(attr[i], "rx") == 0) rx = fabsf(nsvg__parseCoordinate(p, attr[i+1], 0.0f, nsvg__actualWidth(p))); - if (strcmp(attr[i], "ry") == 0) ry = fabsf(nsvg__parseCoordinate(p, attr[i+1], 0.0f, nsvg__actualHeight(p))); - } - } - - if (rx < 0.0f && ry > 0.0f) rx = ry; - if (ry < 0.0f && rx > 0.0f) ry = rx; - if (rx < 0.0f) rx = 0.0f; - if (ry < 0.0f) ry = 0.0f; - if (rx > w/2.0f) rx = w/2.0f; - if (ry > h/2.0f) ry = h/2.0f; - - if (w != 0.0f && h != 0.0f) { - nsvg__resetPath(p); - - if (rx < 0.00001f || ry < 0.0001f) { - nsvg__moveTo(p, x, y); - nsvg__lineTo(p, x+w, y); - nsvg__lineTo(p, x+w, y+h); - nsvg__lineTo(p, x, y+h); - } else { - // Rounded rectangle - nsvg__moveTo(p, x+rx, y); - nsvg__lineTo(p, x+w-rx, y); - nsvg__cubicBezTo(p, x+w-rx*(1-NSVG_KAPPA90), y, x+w, y+ry*(1-NSVG_KAPPA90), x+w, y+ry); - nsvg__lineTo(p, x+w, y+h-ry); - nsvg__cubicBezTo(p, x+w, y+h-ry*(1-NSVG_KAPPA90), x+w-rx*(1-NSVG_KAPPA90), y+h, x+w-rx, y+h); - nsvg__lineTo(p, x+rx, y+h); - nsvg__cubicBezTo(p, x+rx*(1-NSVG_KAPPA90), y+h, x, y+h-ry*(1-NSVG_KAPPA90), x, y+h-ry); - nsvg__lineTo(p, x, y+ry); - nsvg__cubicBezTo(p, x, y+ry*(1-NSVG_KAPPA90), x+rx*(1-NSVG_KAPPA90), y, x+rx, y); - } - - nsvg__addPath(p, 1); - - nsvg__addShape(p); - } -} - -static void nsvg__parseCircle(NSVGparser* p, const char** attr) -{ - float cx = 0.0f; - float cy = 0.0f; - float r = 0.0f; - int i; - - for (i = 0; attr[i]; i += 2) { - if (!nsvg__parseAttr(p, attr[i], attr[i + 1])) { - if (strcmp(attr[i], "cx") == 0) cx = nsvg__parseCoordinate(p, attr[i+1], nsvg__actualOrigX(p), nsvg__actualWidth(p)); - if (strcmp(attr[i], "cy") == 0) cy = nsvg__parseCoordinate(p, attr[i+1], nsvg__actualOrigY(p), nsvg__actualHeight(p)); - if (strcmp(attr[i], "r") == 0) r = fabsf(nsvg__parseCoordinate(p, attr[i+1], 0.0f, nsvg__actualLength(p))); - } - } - - if (r > 0.0f) { - nsvg__resetPath(p); - - nsvg__moveTo(p, cx+r, cy); - nsvg__cubicBezTo(p, cx+r, cy+r*NSVG_KAPPA90, cx+r*NSVG_KAPPA90, cy+r, cx, cy+r); - nsvg__cubicBezTo(p, cx-r*NSVG_KAPPA90, cy+r, cx-r, cy+r*NSVG_KAPPA90, cx-r, cy); - nsvg__cubicBezTo(p, cx-r, cy-r*NSVG_KAPPA90, cx-r*NSVG_KAPPA90, cy-r, cx, cy-r); - nsvg__cubicBezTo(p, cx+r*NSVG_KAPPA90, cy-r, cx+r, cy-r*NSVG_KAPPA90, cx+r, cy); - - nsvg__addPath(p, 1); - - nsvg__addShape(p); - } -} - -static void nsvg__parseEllipse(NSVGparser* p, const char** attr) -{ - float cx = 0.0f; - float cy = 0.0f; - float rx = 0.0f; - float ry = 0.0f; - int i; - - for (i = 0; attr[i]; i += 2) { - if (!nsvg__parseAttr(p, attr[i], attr[i + 1])) { - if (strcmp(attr[i], "cx") == 0) cx = nsvg__parseCoordinate(p, attr[i+1], nsvg__actualOrigX(p), nsvg__actualWidth(p)); - if (strcmp(attr[i], "cy") == 0) cy = nsvg__parseCoordinate(p, attr[i+1], nsvg__actualOrigY(p), nsvg__actualHeight(p)); - if (strcmp(attr[i], "rx") == 0) rx = fabsf(nsvg__parseCoordinate(p, attr[i+1], 0.0f, nsvg__actualWidth(p))); - if (strcmp(attr[i], "ry") == 0) ry = fabsf(nsvg__parseCoordinate(p, attr[i+1], 0.0f, nsvg__actualHeight(p))); - } - } - - if (rx > 0.0f && ry > 0.0f) { - - nsvg__resetPath(p); - - nsvg__moveTo(p, cx+rx, cy); - nsvg__cubicBezTo(p, cx+rx, cy+ry*NSVG_KAPPA90, cx+rx*NSVG_KAPPA90, cy+ry, cx, cy+ry); - nsvg__cubicBezTo(p, cx-rx*NSVG_KAPPA90, cy+ry, cx-rx, cy+ry*NSVG_KAPPA90, cx-rx, cy); - nsvg__cubicBezTo(p, cx-rx, cy-ry*NSVG_KAPPA90, cx-rx*NSVG_KAPPA90, cy-ry, cx, cy-ry); - nsvg__cubicBezTo(p, cx+rx*NSVG_KAPPA90, cy-ry, cx+rx, cy-ry*NSVG_KAPPA90, cx+rx, cy); - - nsvg__addPath(p, 1); - - nsvg__addShape(p); - } -} - -static void nsvg__parseLine(NSVGparser* p, const char** attr) -{ - float x1 = 0.0; - float y1 = 0.0; - float x2 = 0.0; - float y2 = 0.0; - int i; - - for (i = 0; attr[i]; i += 2) { - if (!nsvg__parseAttr(p, attr[i], attr[i + 1])) { - if (strcmp(attr[i], "x1") == 0) x1 = nsvg__parseCoordinate(p, attr[i + 1], nsvg__actualOrigX(p), nsvg__actualWidth(p)); - if (strcmp(attr[i], "y1") == 0) y1 = nsvg__parseCoordinate(p, attr[i + 1], nsvg__actualOrigY(p), nsvg__actualHeight(p)); - if (strcmp(attr[i], "x2") == 0) x2 = nsvg__parseCoordinate(p, attr[i + 1], nsvg__actualOrigX(p), nsvg__actualWidth(p)); - if (strcmp(attr[i], "y2") == 0) y2 = nsvg__parseCoordinate(p, attr[i + 1], nsvg__actualOrigY(p), nsvg__actualHeight(p)); - } - } - - nsvg__resetPath(p); - - nsvg__moveTo(p, x1, y1); - nsvg__lineTo(p, x2, y2); - - nsvg__addPath(p, 0); - - nsvg__addShape(p); -} - -static void nsvg__parsePoly(NSVGparser* p, const char** attr, int closeFlag) -{ - int i; - const char* s; - float args[2]; - int nargs, npts = 0; - char item[64]; - - nsvg__resetPath(p); - - for (i = 0; attr[i]; i += 2) { - if (!nsvg__parseAttr(p, attr[i], attr[i + 1])) { - if (strcmp(attr[i], "points") == 0) { - s = attr[i + 1]; - nargs = 0; - while (*s) { - s = nsvg__getNextPathItem(s, item); - args[nargs++] = (float)nsvg__atof(item); - if (nargs >= 2) { - if (npts == 0) - nsvg__moveTo(p, args[0], args[1]); - else - nsvg__lineTo(p, args[0], args[1]); - nargs = 0; - npts++; - } - } - } - } - } - - nsvg__addPath(p, (char)closeFlag); - - nsvg__addShape(p); -} - -static void nsvg__parseSVG(NSVGparser* p, const char** attr) -{ - int i; - for (i = 0; attr[i]; i += 2) { - if (!nsvg__parseAttr(p, attr[i], attr[i + 1])) { - if (strcmp(attr[i], "width") == 0) { - p->image->width = nsvg__parseCoordinate(p, attr[i + 1], 0.0f, 0.0f); - } else if (strcmp(attr[i], "height") == 0) { - p->image->height = nsvg__parseCoordinate(p, attr[i + 1], 0.0f, 0.0f); - } else if (strcmp(attr[i], "viewBox") == 0) { - const char *s = attr[i + 1]; - char buf[64]; - s = nsvg__parseNumber(s, buf, 64); - p->viewMinx = nsvg__atof(buf); - while (*s && (nsvg__isspace(*s) || *s == '%' || *s == ',')) s++; - if (!*s) return; - s = nsvg__parseNumber(s, buf, 64); - p->viewMiny = nsvg__atof(buf); - while (*s && (nsvg__isspace(*s) || *s == '%' || *s == ',')) s++; - if (!*s) return; - s = nsvg__parseNumber(s, buf, 64); - p->viewWidth = nsvg__atof(buf); - while (*s && (nsvg__isspace(*s) || *s == '%' || *s == ',')) s++; - if (!*s) return; - s = nsvg__parseNumber(s, buf, 64); - p->viewHeight = nsvg__atof(buf); - } else if (strcmp(attr[i], "preserveAspectRatio") == 0) { - if (strstr(attr[i + 1], "none") != 0) { - // No uniform scaling - p->alignType = NSVG_ALIGN_NONE; - } else { - // Parse X align - if (strstr(attr[i + 1], "xMin") != 0) - p->alignX = NSVG_ALIGN_MIN; - else if (strstr(attr[i + 1], "xMid") != 0) - p->alignX = NSVG_ALIGN_MID; - else if (strstr(attr[i + 1], "xMax") != 0) - p->alignX = NSVG_ALIGN_MAX; - // Parse X align - if (strstr(attr[i + 1], "yMin") != 0) - p->alignY = NSVG_ALIGN_MIN; - else if (strstr(attr[i + 1], "yMid") != 0) - p->alignY = NSVG_ALIGN_MID; - else if (strstr(attr[i + 1], "yMax") != 0) - p->alignY = NSVG_ALIGN_MAX; - // Parse meet/slice - p->alignType = NSVG_ALIGN_MEET; - if (strstr(attr[i + 1], "slice") != 0) - p->alignType = NSVG_ALIGN_SLICE; - } - } - } - } -} - -static void nsvg__parseGradient(NSVGparser* p, const char** attr, char type) -{ - int i; - NSVGgradientData* grad = (NSVGgradientData*)malloc(sizeof(NSVGgradientData)); - if (grad == NULL) return; - memset(grad, 0, sizeof(NSVGgradientData)); - grad->units = NSVG_OBJECT_SPACE; - grad->type = type; - if (grad->type == NSVG_PAINT_LINEAR_GRADIENT) { - grad->linear.x1 = nsvg__coord(0.0f, NSVG_UNITS_PERCENT); - grad->linear.y1 = nsvg__coord(0.0f, NSVG_UNITS_PERCENT); - grad->linear.x2 = nsvg__coord(100.0f, NSVG_UNITS_PERCENT); - grad->linear.y2 = nsvg__coord(0.0f, NSVG_UNITS_PERCENT); - } else if (grad->type == NSVG_PAINT_RADIAL_GRADIENT) { - grad->radial.cx = nsvg__coord(50.0f, NSVG_UNITS_PERCENT); - grad->radial.cy = nsvg__coord(50.0f, NSVG_UNITS_PERCENT); - grad->radial.r = nsvg__coord(50.0f, NSVG_UNITS_PERCENT); - } - - nsvg__xformIdentity(grad->xform); - - for (i = 0; attr[i]; i += 2) { - if (strcmp(attr[i], "id") == 0) { - strncpy(grad->id, attr[i+1], 63); - grad->id[63] = '\0'; - } else if (!nsvg__parseAttr(p, attr[i], attr[i + 1])) { - if (strcmp(attr[i], "gradientUnits") == 0) { - if (strcmp(attr[i+1], "objectBoundingBox") == 0) - grad->units = NSVG_OBJECT_SPACE; - else - grad->units = NSVG_USER_SPACE; - } else if (strcmp(attr[i], "gradientTransform") == 0) { - nsvg__parseTransform(grad->xform, attr[i + 1]); - } else if (strcmp(attr[i], "cx") == 0) { - grad->radial.cx = nsvg__parseCoordinateRaw(attr[i + 1]); - } else if (strcmp(attr[i], "cy") == 0) { - grad->radial.cy = nsvg__parseCoordinateRaw(attr[i + 1]); - } else if (strcmp(attr[i], "r") == 0) { - grad->radial.r = nsvg__parseCoordinateRaw(attr[i + 1]); - } else if (strcmp(attr[i], "fx") == 0) { - grad->radial.fx = nsvg__parseCoordinateRaw(attr[i + 1]); - } else if (strcmp(attr[i], "fy") == 0) { - grad->radial.fy = nsvg__parseCoordinateRaw(attr[i + 1]); - } else if (strcmp(attr[i], "x1") == 0) { - grad->linear.x1 = nsvg__parseCoordinateRaw(attr[i + 1]); - } else if (strcmp(attr[i], "y1") == 0) { - grad->linear.y1 = nsvg__parseCoordinateRaw(attr[i + 1]); - } else if (strcmp(attr[i], "x2") == 0) { - grad->linear.x2 = nsvg__parseCoordinateRaw(attr[i + 1]); - } else if (strcmp(attr[i], "y2") == 0) { - grad->linear.y2 = nsvg__parseCoordinateRaw(attr[i + 1]); - } else if (strcmp(attr[i], "spreadMethod") == 0) { - if (strcmp(attr[i+1], "pad") == 0) - grad->spread = NSVG_SPREAD_PAD; - else if (strcmp(attr[i+1], "reflect") == 0) - grad->spread = NSVG_SPREAD_REFLECT; - else if (strcmp(attr[i+1], "repeat") == 0) - grad->spread = NSVG_SPREAD_REPEAT; - } else if (strcmp(attr[i], "xlink:href") == 0) { - const char *href = attr[i+1]; - strncpy(grad->ref, href+1, 62); - grad->ref[62] = '\0'; - } - } - } - - grad->next = p->gradients; - p->gradients = grad; -} - -static void nsvg__parseGradientStop(NSVGparser* p, const char** attr) -{ - NSVGattrib* curAttr = nsvg__getAttr(p); - NSVGgradientData* grad; - NSVGgradientStop* stop; - int i, idx; - - curAttr->stopOffset = 0; - curAttr->stopColor = 0; - curAttr->stopOpacity = 1.0f; - - for (i = 0; attr[i]; i += 2) { - nsvg__parseAttr(p, attr[i], attr[i + 1]); - } - - // Add stop to the last gradient. - grad = p->gradients; - if (grad == NULL) return; - - grad->nstops++; - grad->stops = (NSVGgradientStop*)realloc(grad->stops, sizeof(NSVGgradientStop)*grad->nstops); - if (grad->stops == NULL) return; - - // Insert - idx = grad->nstops-1; - for (i = 0; i < grad->nstops-1; i++) { - if (curAttr->stopOffset < grad->stops[i].offset) { - idx = i; - break; - } - } - if (idx != grad->nstops-1) { - for (i = grad->nstops-1; i > idx; i--) - grad->stops[i] = grad->stops[i-1]; - } - - stop = &grad->stops[idx]; - stop->color = curAttr->stopColor; - stop->color |= (unsigned int)(curAttr->stopOpacity*255) << 24; - stop->offset = curAttr->stopOffset; -} - -static void nsvg__startElement(void* ud, const char* el, const char** attr) -{ - NSVGparser* p = (NSVGparser*)ud; - - if (p->defsFlag) { - // Skip everything but gradients in defs - if (strcmp(el, "linearGradient") == 0) { - nsvg__parseGradient(p, attr, NSVG_PAINT_LINEAR_GRADIENT); - } else if (strcmp(el, "radialGradient") == 0) { - nsvg__parseGradient(p, attr, NSVG_PAINT_RADIAL_GRADIENT); - } else if (strcmp(el, "stop") == 0) { - nsvg__parseGradientStop(p, attr); - } - return; - } - - if (strcmp(el, "g") == 0) { - nsvg__pushAttr(p); - nsvg__parseAttribs(p, attr); - } else if (strcmp(el, "path") == 0) { - if (p->pathFlag) // Do not allow nested paths. - return; - nsvg__pushAttr(p); - nsvg__parsePath(p, attr); - nsvg__popAttr(p); - } else if (strcmp(el, "rect") == 0) { - nsvg__pushAttr(p); - nsvg__parseRect(p, attr); - nsvg__popAttr(p); - } else if (strcmp(el, "circle") == 0) { - nsvg__pushAttr(p); - nsvg__parseCircle(p, attr); - nsvg__popAttr(p); - } else if (strcmp(el, "ellipse") == 0) { - nsvg__pushAttr(p); - nsvg__parseEllipse(p, attr); - nsvg__popAttr(p); - } else if (strcmp(el, "line") == 0) { - nsvg__pushAttr(p); - nsvg__parseLine(p, attr); - nsvg__popAttr(p); - } else if (strcmp(el, "polyline") == 0) { - nsvg__pushAttr(p); - nsvg__parsePoly(p, attr, 0); - nsvg__popAttr(p); - } else if (strcmp(el, "polygon") == 0) { - nsvg__pushAttr(p); - nsvg__parsePoly(p, attr, 1); - nsvg__popAttr(p); - } else if (strcmp(el, "linearGradient") == 0) { - nsvg__parseGradient(p, attr, NSVG_PAINT_LINEAR_GRADIENT); - } else if (strcmp(el, "radialGradient") == 0) { - nsvg__parseGradient(p, attr, NSVG_PAINT_RADIAL_GRADIENT); - } else if (strcmp(el, "stop") == 0) { - nsvg__parseGradientStop(p, attr); - } else if (strcmp(el, "defs") == 0) { - p->defsFlag = 1; - } else if (strcmp(el, "svg") == 0) { - nsvg__parseSVG(p, attr); - } -} - -static void nsvg__endElement(void* ud, const char* el) -{ - NSVGparser* p = (NSVGparser*)ud; - - if (strcmp(el, "g") == 0) { - nsvg__popAttr(p); - } else if (strcmp(el, "path") == 0) { - p->pathFlag = 0; - } else if (strcmp(el, "defs") == 0) { - p->defsFlag = 0; - } -} - -static void nsvg__content(void* ud, const char* s) -{ - NSVG_NOTUSED(ud); - NSVG_NOTUSED(s); - // empty -} - -static void nsvg__imageBounds(NSVGparser* p, float* bounds) -{ - NSVGshape* shape; - shape = p->image->shapes; - if (shape == NULL) { - bounds[0] = bounds[1] = bounds[2] = bounds[3] = 0.0; - return; - } - bounds[0] = shape->bounds[0]; - bounds[1] = shape->bounds[1]; - bounds[2] = shape->bounds[2]; - bounds[3] = shape->bounds[3]; - for (shape = shape->next; shape != NULL; shape = shape->next) { - bounds[0] = nsvg__minf(bounds[0], shape->bounds[0]); - bounds[1] = nsvg__minf(bounds[1], shape->bounds[1]); - bounds[2] = nsvg__maxf(bounds[2], shape->bounds[2]); - bounds[3] = nsvg__maxf(bounds[3], shape->bounds[3]); - } -} - -static float nsvg__viewAlign(float content, float container, int type) -{ - if (type == NSVG_ALIGN_MIN) - return 0; - else if (type == NSVG_ALIGN_MAX) - return container - content; - // mid - return (container - content) * 0.5f; -} - -static void nsvg__scaleGradient(NSVGgradient* grad, float tx, float ty, float sx, float sy) -{ - float t[6]; - nsvg__xformSetTranslation(t, tx, ty); - nsvg__xformMultiply (grad->xform, t); - - nsvg__xformSetScale(t, sx, sy); - nsvg__xformMultiply (grad->xform, t); -} - -static void nsvg__scaleToViewbox(NSVGparser* p, const char* units) -{ - NSVGshape* shape; - NSVGpath* path; - float tx, ty, sx, sy, us, bounds[4], t[6], avgs; - int i; - float* pt; - - // Guess image size if not set completely. - nsvg__imageBounds(p, bounds); - - if (p->viewWidth == 0) { - if (p->image->width > 0) { - p->viewWidth = p->image->width; - } else { - p->viewMinx = bounds[0]; - p->viewWidth = bounds[2] - bounds[0]; - } - } - if (p->viewHeight == 0) { - if (p->image->height > 0) { - p->viewHeight = p->image->height; - } else { - p->viewMiny = bounds[1]; - p->viewHeight = bounds[3] - bounds[1]; - } - } - if (p->image->width == 0) - p->image->width = p->viewWidth; - if (p->image->height == 0) - p->image->height = p->viewHeight; - - tx = -p->viewMinx; - ty = -p->viewMiny; - sx = p->viewWidth > 0 ? p->image->width / p->viewWidth : 0; - sy = p->viewHeight > 0 ? p->image->height / p->viewHeight : 0; - // Unit scaling - us = 1.0f / nsvg__convertToPixels(p, nsvg__coord(1.0f, nsvg__parseUnits(units)), 0.0f, 1.0f); - - // Fix aspect ratio - if (p->alignType == NSVG_ALIGN_MEET) { - // fit whole image into viewbox - sx = sy = nsvg__minf(sx, sy); - tx += nsvg__viewAlign(p->viewWidth*sx, p->image->width, p->alignX) / sx; - ty += nsvg__viewAlign(p->viewHeight*sy, p->image->height, p->alignY) / sy; - } else if (p->alignType == NSVG_ALIGN_SLICE) { - // fill whole viewbox with image - sx = sy = nsvg__maxf(sx, sy); - tx += nsvg__viewAlign(p->viewWidth*sx, p->image->width, p->alignX) / sx; - ty += nsvg__viewAlign(p->viewHeight*sy, p->image->height, p->alignY) / sy; - } - - // Transform - sx *= us; - sy *= us; - avgs = (sx+sy) / 2.0f; - for (shape = p->image->shapes; shape != NULL; shape = shape->next) { - shape->bounds[0] = (shape->bounds[0] + tx) * sx; - shape->bounds[1] = (shape->bounds[1] + ty) * sy; - shape->bounds[2] = (shape->bounds[2] + tx) * sx; - shape->bounds[3] = (shape->bounds[3] + ty) * sy; - for (path = shape->paths; path != NULL; path = path->next) { - path->bounds[0] = (path->bounds[0] + tx) * sx; - path->bounds[1] = (path->bounds[1] + ty) * sy; - path->bounds[2] = (path->bounds[2] + tx) * sx; - path->bounds[3] = (path->bounds[3] + ty) * sy; - for (i =0; i < path->npts; i++) { - pt = &path->pts[i*2]; - pt[0] = (pt[0] + tx) * sx; - pt[1] = (pt[1] + ty) * sy; - } - } - - if (shape->fill.type == NSVG_PAINT_LINEAR_GRADIENT || shape->fill.type == NSVG_PAINT_RADIAL_GRADIENT) { - nsvg__scaleGradient(shape->fill.gradient, tx,ty, sx,sy); - memcpy(t, shape->fill.gradient->xform, sizeof(float)*6); - nsvg__xformInverse(shape->fill.gradient->xform, t); - } - if (shape->stroke.type == NSVG_PAINT_LINEAR_GRADIENT || shape->stroke.type == NSVG_PAINT_RADIAL_GRADIENT) { - nsvg__scaleGradient(shape->stroke.gradient, tx,ty, sx,sy); - memcpy(t, shape->stroke.gradient->xform, sizeof(float)*6); - nsvg__xformInverse(shape->stroke.gradient->xform, t); - } - - shape->strokeWidth *= avgs; - shape->strokeDashOffset *= avgs; - for (i = 0; i < shape->strokeDashCount; i++) - shape->strokeDashArray[i] *= avgs; - } -} - -NSVGimage* nsvgParse(char* input, const char* units, float dpi) -{ - NSVGparser* p; - NSVGimage* ret = 0; - - p = nsvg__createParser(); - if (p == NULL) { - return NULL; - } - p->dpi = dpi; - - nsvg__parseXML(input, nsvg__startElement, nsvg__endElement, nsvg__content, p); - - // Scale to viewBox - nsvg__scaleToViewbox(p, units); - - ret = p->image; - p->image = NULL; - - nsvg__deleteParser(p); - - return ret; -} - -NSVGimage* nsvgParseFromFile(const char* filename, const char* units, float dpi) -{ - FILE* fp = NULL; - size_t size; - char* data = NULL; - NSVGimage* image = NULL; - - fp = fopen(filename, "rb"); - if (!fp) goto error; - fseek(fp, 0, SEEK_END); - size = ftell(fp); - fseek(fp, 0, SEEK_SET); - data = (char*)malloc(size+1); - if (data == NULL) goto error; - if (fread(data, 1, size, fp) != size) goto error; - data[size] = '\0'; // Must be null terminated. - fclose(fp); - image = nsvgParse(data, units, dpi); - free(data); - - return image; - -error: - if (fp) fclose(fp); - if (data) free(data); - if (image) nsvgDelete(image); - return NULL; -} - -NSVGpath* nsvgDuplicatePath(NSVGpath* p) -{ - NSVGpath* res = NULL; - - if (p == NULL) - return NULL; - - res = (NSVGpath*)malloc(sizeof(NSVGpath)); - if (res == NULL) goto error; - memset(res, 0, sizeof(NSVGpath)); - - res->pts = (float*)malloc(p->npts*2*sizeof(float)); - if (res->pts == NULL) goto error; - memcpy(res->pts, p->pts, p->npts * sizeof(float) * 2); - res->npts = p->npts; - - memcpy(res->bounds, p->bounds, sizeof(p->bounds)); - - res->closed = p->closed; - - return res; - -error: - if (res != NULL) { - free(res->pts); - free(res); - } - return NULL; -} - -void nsvgDelete(NSVGimage* image) -{ - NSVGshape *snext, *shape; - if (image == NULL) return; - shape = image->shapes; - while (shape != NULL) { - snext = shape->next; - nsvg__deletePaths(shape->paths); - nsvg__deletePaint(&shape->fill); - nsvg__deletePaint(&shape->stroke); - free(shape); - shape = snext; - } - free(image); -} - -#endif // NANOSVG_IMPLEMENTATION - -#endif // NANOSVG_H diff --git a/src/external/nanosvgrast.h b/src/external/nanosvgrast.h deleted file mode 100644 index 6e23acb7b..000000000 --- a/src/external/nanosvgrast.h +++ /dev/null @@ -1,1458 +0,0 @@ -/* - * Copyright (c) 2013-14 Mikko Mononen memon@inside.org - * - * This software is provided 'as-is', without any express or implied - * warranty. In no event will the authors be held liable for any damages - * arising from the use of this software. - * - * Permission is granted to anyone to use this software for any purpose, - * including commercial applications, and to alter it and redistribute it - * freely, subject to the following restrictions: - * - * 1. The origin of this software must not be misrepresented; you must not - * claim that you wrote the original software. If you use this software - * in a product, an acknowledgment in the product documentation would be - * appreciated but is not required. - * 2. Altered source versions must be plainly marked as such, and must not be - * misrepresented as being the original software. - * 3. This notice may not be removed or altered from any source distribution. - * - * The polygon rasterization is heavily based on stb_truetype rasterizer - * by Sean Barrett - http://nothings.org/ - * - */ - -#ifndef NANOSVGRAST_H -#define NANOSVGRAST_H - -#include "nanosvg.h" - -#ifndef NANOSVGRAST_CPLUSPLUS -#ifdef __cplusplus -extern "C" { -#endif -#endif - -typedef struct NSVGrasterizer NSVGrasterizer; - -/* Example Usage: - // Load SVG - NSVGimage* image; - image = nsvgParseFromFile("test.svg", "px", 96); - - // Create rasterizer (can be used to render multiple images). - struct NSVGrasterizer* rast = nsvgCreateRasterizer(); - // Allocate memory for image - unsigned char* img = malloc(w*h*4); - // Rasterize - nsvgRasterize(rast, image, 0,0,1, img, w, h, w*4); -*/ - -// Allocated rasterizer context. -NSVGrasterizer* nsvgCreateRasterizer(void); - -// Rasterizes SVG image, returns RGBA image (non-premultiplied alpha) -// r - pointer to rasterizer context -// image - pointer to image to rasterize -// tx,ty - image offset (applied after scaling) -// scale - image scale -// dst - pointer to destination image data, 4 bytes per pixel (RGBA) -// w - width of the image to render -// h - height of the image to render -// stride - number of bytes per scaleline in the destination buffer -void nsvgRasterize(NSVGrasterizer* r, - NSVGimage* image, float tx, float ty, float scale, - unsigned char* dst, int w, int h, int stride); - -// Deletes rasterizer context. -void nsvgDeleteRasterizer(NSVGrasterizer*); - - -#ifndef NANOSVGRAST_CPLUSPLUS -#ifdef __cplusplus -} -#endif -#endif - -#ifdef NANOSVGRAST_IMPLEMENTATION - -#include -#include -#include - -#define NSVG__SUBSAMPLES 5 -#define NSVG__FIXSHIFT 10 -#define NSVG__FIX (1 << NSVG__FIXSHIFT) -#define NSVG__FIXMASK (NSVG__FIX-1) -#define NSVG__MEMPAGE_SIZE 1024 - -typedef struct NSVGedge { - float x0,y0, x1,y1; - int dir; - struct NSVGedge* next; -} NSVGedge; - -typedef struct NSVGpoint { - float x, y; - float dx, dy; - float len; - float dmx, dmy; - unsigned char flags; -} NSVGpoint; - -typedef struct NSVGactiveEdge { - int x,dx; - float ey; - int dir; - struct NSVGactiveEdge *next; -} NSVGactiveEdge; - -typedef struct NSVGmemPage { - unsigned char mem[NSVG__MEMPAGE_SIZE]; - int size; - struct NSVGmemPage* next; -} NSVGmemPage; - -typedef struct NSVGcachedPaint { - char type; - char spread; - float xform[6]; - unsigned int colors[256]; -} NSVGcachedPaint; - -struct NSVGrasterizer -{ - float px, py; - - float tessTol; - float distTol; - - NSVGedge* edges; - int nedges; - int cedges; - - NSVGpoint* points; - int npoints; - int cpoints; - - NSVGpoint* points2; - int npoints2; - int cpoints2; - - NSVGactiveEdge* freelist; - NSVGmemPage* pages; - NSVGmemPage* curpage; - - unsigned char* scanline; - int cscanline; - - unsigned char* bitmap; - int width, height, stride; -}; - -NSVGrasterizer* nsvgCreateRasterizer(void) -{ - NSVGrasterizer* r = (NSVGrasterizer*)malloc(sizeof(NSVGrasterizer)); - if (r == NULL) goto error; - memset(r, 0, sizeof(NSVGrasterizer)); - - r->tessTol = 0.25f; - r->distTol = 0.01f; - - return r; - -error: - nsvgDeleteRasterizer(r); - return NULL; -} - -void nsvgDeleteRasterizer(NSVGrasterizer* r) -{ - NSVGmemPage* p; - - if (r == NULL) return; - - p = r->pages; - while (p != NULL) { - NSVGmemPage* next = p->next; - free(p); - p = next; - } - - if (r->edges) free(r->edges); - if (r->points) free(r->points); - if (r->points2) free(r->points2); - if (r->scanline) free(r->scanline); - - free(r); -} - -static NSVGmemPage* nsvg__nextPage(NSVGrasterizer* r, NSVGmemPage* cur) -{ - NSVGmemPage *newp; - - // If using existing chain, return the next page in chain - if (cur != NULL && cur->next != NULL) { - return cur->next; - } - - // Alloc new page - newp = (NSVGmemPage*)malloc(sizeof(NSVGmemPage)); - if (newp == NULL) return NULL; - memset(newp, 0, sizeof(NSVGmemPage)); - - // Add to linked list - if (cur != NULL) - cur->next = newp; - else - r->pages = newp; - - return newp; -} - -static void nsvg__resetPool(NSVGrasterizer* r) -{ - NSVGmemPage* p = r->pages; - while (p != NULL) { - p->size = 0; - p = p->next; - } - r->curpage = r->pages; -} - -static unsigned char* nsvg__alloc(NSVGrasterizer* r, int size) -{ - unsigned char* buf; - if (size > NSVG__MEMPAGE_SIZE) return NULL; - if (r->curpage == NULL || r->curpage->size+size > NSVG__MEMPAGE_SIZE) { - r->curpage = nsvg__nextPage(r, r->curpage); - } - buf = &r->curpage->mem[r->curpage->size]; - r->curpage->size += size; - return buf; -} - -static int nsvg__ptEquals(float x1, float y1, float x2, float y2, float tol) -{ - float dx = x2 - x1; - float dy = y2 - y1; - return dx*dx + dy*dy < tol*tol; -} - -static void nsvg__addPathPoint(NSVGrasterizer* r, float x, float y, int flags) -{ - NSVGpoint* pt; - - if (r->npoints > 0) { - pt = &r->points[r->npoints-1]; - if (nsvg__ptEquals(pt->x,pt->y, x,y, r->distTol)) { - pt->flags = (unsigned char)(pt->flags | flags); - return; - } - } - - if (r->npoints+1 > r->cpoints) { - r->cpoints = r->cpoints > 0 ? r->cpoints * 2 : 64; - r->points = (NSVGpoint*)realloc(r->points, sizeof(NSVGpoint) * r->cpoints); - if (r->points == NULL) return; - } - - pt = &r->points[r->npoints]; - pt->x = x; - pt->y = y; - pt->flags = (unsigned char)flags; - r->npoints++; -} - -static void nsvg__appendPathPoint(NSVGrasterizer* r, NSVGpoint pt) -{ - if (r->npoints+1 > r->cpoints) { - r->cpoints = r->cpoints > 0 ? r->cpoints * 2 : 64; - r->points = (NSVGpoint*)realloc(r->points, sizeof(NSVGpoint) * r->cpoints); - if (r->points == NULL) return; - } - r->points[r->npoints] = pt; - r->npoints++; -} - -static void nsvg__duplicatePoints(NSVGrasterizer* r) -{ - if (r->npoints > r->cpoints2) { - r->cpoints2 = r->npoints; - r->points2 = (NSVGpoint*)realloc(r->points2, sizeof(NSVGpoint) * r->cpoints2); - if (r->points2 == NULL) return; - } - - memcpy(r->points2, r->points, sizeof(NSVGpoint) * r->npoints); - r->npoints2 = r->npoints; -} - -static void nsvg__addEdge(NSVGrasterizer* r, float x0, float y0, float x1, float y1) -{ - NSVGedge* e; - - // Skip horizontal edges - if (y0 == y1) - return; - - if (r->nedges+1 > r->cedges) { - r->cedges = r->cedges > 0 ? r->cedges * 2 : 64; - r->edges = (NSVGedge*)realloc(r->edges, sizeof(NSVGedge) * r->cedges); - if (r->edges == NULL) return; - } - - e = &r->edges[r->nedges]; - r->nedges++; - - if (y0 < y1) { - e->x0 = x0; - e->y0 = y0; - e->x1 = x1; - e->y1 = y1; - e->dir = 1; - } else { - e->x0 = x1; - e->y0 = y1; - e->x1 = x0; - e->y1 = y0; - e->dir = -1; - } -} - -static float nsvg__normalize(float *x, float* y) -{ - float d = sqrtf((*x)*(*x) + (*y)*(*y)); - if (d > 1e-6f) { - float id = 1.0f / d; - *x *= id; - *y *= id; - } - return d; -} - -static float nsvg__absf(float x) { return x < 0 ? -x : x; } - -static void nsvg__flattenCubicBez(NSVGrasterizer* r, - float x1, float y1, float x2, float y2, - float x3, float y3, float x4, float y4, - int level, int type) -{ - float x12,y12,x23,y23,x34,y34,x123,y123,x234,y234,x1234,y1234; - float dx,dy,d2,d3; - - if (level > 10) return; - - x12 = (x1+x2)*0.5f; - y12 = (y1+y2)*0.5f; - x23 = (x2+x3)*0.5f; - y23 = (y2+y3)*0.5f; - x34 = (x3+x4)*0.5f; - y34 = (y3+y4)*0.5f; - x123 = (x12+x23)*0.5f; - y123 = (y12+y23)*0.5f; - - dx = x4 - x1; - dy = y4 - y1; - d2 = nsvg__absf(((x2 - x4) * dy - (y2 - y4) * dx)); - d3 = nsvg__absf(((x3 - x4) * dy - (y3 - y4) * dx)); - - if ((d2 + d3)*(d2 + d3) < r->tessTol * (dx*dx + dy*dy)) { - nsvg__addPathPoint(r, x4, y4, type); - return; - } - - x234 = (x23+x34)*0.5f; - y234 = (y23+y34)*0.5f; - x1234 = (x123+x234)*0.5f; - y1234 = (y123+y234)*0.5f; - - nsvg__flattenCubicBez(r, x1,y1, x12,y12, x123,y123, x1234,y1234, level+1, 0); - nsvg__flattenCubicBez(r, x1234,y1234, x234,y234, x34,y34, x4,y4, level+1, type); -} - -static void nsvg__flattenShape(NSVGrasterizer* r, NSVGshape* shape, float scale) -{ - int i, j; - NSVGpath* path; - - for (path = shape->paths; path != NULL; path = path->next) { - r->npoints = 0; - // Flatten path - nsvg__addPathPoint(r, path->pts[0]*scale, path->pts[1]*scale, 0); - for (i = 0; i < path->npts-1; i += 3) { - float* p = &path->pts[i*2]; - nsvg__flattenCubicBez(r, p[0]*scale,p[1]*scale, p[2]*scale,p[3]*scale, p[4]*scale,p[5]*scale, p[6]*scale,p[7]*scale, 0, 0); - } - // Close path - nsvg__addPathPoint(r, path->pts[0]*scale, path->pts[1]*scale, 0); - // Build edges - for (i = 0, j = r->npoints-1; i < r->npoints; j = i++) - nsvg__addEdge(r, r->points[j].x, r->points[j].y, r->points[i].x, r->points[i].y); - } -} - -enum NSVGpointFlags -{ - NSVG_PT_CORNER = 0x01, - NSVG_PT_BEVEL = 0x02, - NSVG_PT_LEFT = 0x04 -}; - -static void nsvg__initClosed(NSVGpoint* left, NSVGpoint* right, NSVGpoint* p0, NSVGpoint* p1, float lineWidth) -{ - float w = lineWidth * 0.5f; - float dx = p1->x - p0->x; - float dy = p1->y - p0->y; - float len = nsvg__normalize(&dx, &dy); - float px = p0->x + dx*len*0.5f, py = p0->y + dy*len*0.5f; - float dlx = dy, dly = -dx; - float lx = px - dlx*w, ly = py - dly*w; - float rx = px + dlx*w, ry = py + dly*w; - left->x = lx; left->y = ly; - right->x = rx; right->y = ry; -} - -static void nsvg__buttCap(NSVGrasterizer* r, NSVGpoint* left, NSVGpoint* right, NSVGpoint* p, float dx, float dy, float lineWidth, int connect) -{ - float w = lineWidth * 0.5f; - float px = p->x, py = p->y; - float dlx = dy, dly = -dx; - float lx = px - dlx*w, ly = py - dly*w; - float rx = px + dlx*w, ry = py + dly*w; - - nsvg__addEdge(r, lx, ly, rx, ry); - - if (connect) { - nsvg__addEdge(r, left->x, left->y, lx, ly); - nsvg__addEdge(r, rx, ry, right->x, right->y); - } - left->x = lx; left->y = ly; - right->x = rx; right->y = ry; -} - -static void nsvg__squareCap(NSVGrasterizer* r, NSVGpoint* left, NSVGpoint* right, NSVGpoint* p, float dx, float dy, float lineWidth, int connect) -{ - float w = lineWidth * 0.5f; - float px = p->x - dx*w, py = p->y - dy*w; - float dlx = dy, dly = -dx; - float lx = px - dlx*w, ly = py - dly*w; - float rx = px + dlx*w, ry = py + dly*w; - - nsvg__addEdge(r, lx, ly, rx, ry); - - if (connect) { - nsvg__addEdge(r, left->x, left->y, lx, ly); - nsvg__addEdge(r, rx, ry, right->x, right->y); - } - left->x = lx; left->y = ly; - right->x = rx; right->y = ry; -} - -#ifndef NSVG_PI -#define NSVG_PI (3.14159265358979323846264338327f) -#endif - -static void nsvg__roundCap(NSVGrasterizer* r, NSVGpoint* left, NSVGpoint* right, NSVGpoint* p, float dx, float dy, float lineWidth, int ncap, int connect) -{ - int i; - float w = lineWidth * 0.5f; - float px = p->x, py = p->y; - float dlx = dy, dly = -dx; - float lx = 0, ly = 0, rx = 0, ry = 0, prevx = 0, prevy = 0; - - for (i = 0; i < ncap; i++) { - float a = (float)i/(float)(ncap-1)*NSVG_PI; - float ax = cosf(a) * w, ay = sinf(a) * w; - float x = px - dlx*ax - dx*ay; - float y = py - dly*ax - dy*ay; - - if (i > 0) - nsvg__addEdge(r, prevx, prevy, x, y); - - prevx = x; - prevy = y; - - if (i == 0) { - lx = x; ly = y; - } else if (i == ncap-1) { - rx = x; ry = y; - } - } - - if (connect) { - nsvg__addEdge(r, left->x, left->y, lx, ly); - nsvg__addEdge(r, rx, ry, right->x, right->y); - } - - left->x = lx; left->y = ly; - right->x = rx; right->y = ry; -} - -static void nsvg__bevelJoin(NSVGrasterizer* r, NSVGpoint* left, NSVGpoint* right, NSVGpoint* p0, NSVGpoint* p1, float lineWidth) -{ - float w = lineWidth * 0.5f; - float dlx0 = p0->dy, dly0 = -p0->dx; - float dlx1 = p1->dy, dly1 = -p1->dx; - float lx0 = p1->x - (dlx0 * w), ly0 = p1->y - (dly0 * w); - float rx0 = p1->x + (dlx0 * w), ry0 = p1->y + (dly0 * w); - float lx1 = p1->x - (dlx1 * w), ly1 = p1->y - (dly1 * w); - float rx1 = p1->x + (dlx1 * w), ry1 = p1->y + (dly1 * w); - - nsvg__addEdge(r, lx0, ly0, left->x, left->y); - nsvg__addEdge(r, lx1, ly1, lx0, ly0); - - nsvg__addEdge(r, right->x, right->y, rx0, ry0); - nsvg__addEdge(r, rx0, ry0, rx1, ry1); - - left->x = lx1; left->y = ly1; - right->x = rx1; right->y = ry1; -} - -static void nsvg__miterJoin(NSVGrasterizer* r, NSVGpoint* left, NSVGpoint* right, NSVGpoint* p0, NSVGpoint* p1, float lineWidth) -{ - float w = lineWidth * 0.5f; - float dlx0 = p0->dy, dly0 = -p0->dx; - float dlx1 = p1->dy, dly1 = -p1->dx; - float lx0, rx0, lx1, rx1; - float ly0, ry0, ly1, ry1; - - if (p1->flags & NSVG_PT_LEFT) { - lx0 = lx1 = p1->x - p1->dmx * w; - ly0 = ly1 = p1->y - p1->dmy * w; - nsvg__addEdge(r, lx1, ly1, left->x, left->y); - - rx0 = p1->x + (dlx0 * w); - ry0 = p1->y + (dly0 * w); - rx1 = p1->x + (dlx1 * w); - ry1 = p1->y + (dly1 * w); - nsvg__addEdge(r, right->x, right->y, rx0, ry0); - nsvg__addEdge(r, rx0, ry0, rx1, ry1); - } else { - lx0 = p1->x - (dlx0 * w); - ly0 = p1->y - (dly0 * w); - lx1 = p1->x - (dlx1 * w); - ly1 = p1->y - (dly1 * w); - nsvg__addEdge(r, lx0, ly0, left->x, left->y); - nsvg__addEdge(r, lx1, ly1, lx0, ly0); - - rx0 = rx1 = p1->x + p1->dmx * w; - ry0 = ry1 = p1->y + p1->dmy * w; - nsvg__addEdge(r, right->x, right->y, rx1, ry1); - } - - left->x = lx1; left->y = ly1; - right->x = rx1; right->y = ry1; -} - -static void nsvg__roundJoin(NSVGrasterizer* r, NSVGpoint* left, NSVGpoint* right, NSVGpoint* p0, NSVGpoint* p1, float lineWidth, int ncap) -{ - int i, n; - float w = lineWidth * 0.5f; - float dlx0 = p0->dy, dly0 = -p0->dx; - float dlx1 = p1->dy, dly1 = -p1->dx; - float a0 = atan2f(dly0, dlx0); - float a1 = atan2f(dly1, dlx1); - float da = a1 - a0; - float lx, ly, rx, ry; - - if (da < NSVG_PI) da += NSVG_PI*2; - if (da > NSVG_PI) da -= NSVG_PI*2; - - n = (int)ceilf((nsvg__absf(da) / NSVG_PI) * (float)ncap); - if (n < 2) n = 2; - if (n > ncap) n = ncap; - - lx = left->x; - ly = left->y; - rx = right->x; - ry = right->y; - - for (i = 0; i < n; i++) { - float u = (float)i/(float)(n-1); - float a = a0 + u*da; - float ax = cosf(a) * w, ay = sinf(a) * w; - float lx1 = p1->x - ax, ly1 = p1->y - ay; - float rx1 = p1->x + ax, ry1 = p1->y + ay; - - nsvg__addEdge(r, lx1, ly1, lx, ly); - nsvg__addEdge(r, rx, ry, rx1, ry1); - - lx = lx1; ly = ly1; - rx = rx1; ry = ry1; - } - - left->x = lx; left->y = ly; - right->x = rx; right->y = ry; -} - -static void nsvg__straightJoin(NSVGrasterizer* r, NSVGpoint* left, NSVGpoint* right, NSVGpoint* p1, float lineWidth) -{ - float w = lineWidth * 0.5f; - float lx = p1->x - (p1->dmx * w), ly = p1->y - (p1->dmy * w); - float rx = p1->x + (p1->dmx * w), ry = p1->y + (p1->dmy * w); - - nsvg__addEdge(r, lx, ly, left->x, left->y); - nsvg__addEdge(r, right->x, right->y, rx, ry); - - left->x = lx; left->y = ly; - right->x = rx; right->y = ry; -} - -static int nsvg__curveDivs(float r, float arc, float tol) -{ - float da = acosf(r / (r + tol)) * 2.0f; - int divs = (int)ceilf(arc / da); - if (divs < 2) divs = 2; - return divs; -} - -static void nsvg__expandStroke(NSVGrasterizer* r, NSVGpoint* points, int npoints, int closed, int lineJoin, int lineCap, float lineWidth) -{ - int ncap = nsvg__curveDivs(lineWidth*0.5f, NSVG_PI, r->tessTol); // Calculate divisions per half circle. - NSVGpoint left = {0,0,0,0,0,0,0,0}, right = {0,0,0,0,0,0,0,0}, firstLeft = {0,0,0,0,0,0,0,0}, firstRight = {0,0,0,0,0,0,0,0}; - NSVGpoint* p0, *p1; - int j, s, e; - - // Build stroke edges - if (closed) { - // Looping - p0 = &points[npoints-1]; - p1 = &points[0]; - s = 0; - e = npoints; - } else { - // Add cap - p0 = &points[0]; - p1 = &points[1]; - s = 1; - e = npoints-1; - } - - if (closed) { - nsvg__initClosed(&left, &right, p0, p1, lineWidth); - firstLeft = left; - firstRight = right; - } else { - // Add cap - float dx = p1->x - p0->x; - float dy = p1->y - p0->y; - nsvg__normalize(&dx, &dy); - if (lineCap == NSVG_CAP_BUTT) - nsvg__buttCap(r, &left, &right, p0, dx, dy, lineWidth, 0); - else if (lineCap == NSVG_CAP_SQUARE) - nsvg__squareCap(r, &left, &right, p0, dx, dy, lineWidth, 0); - else if (lineCap == NSVG_CAP_ROUND) - nsvg__roundCap(r, &left, &right, p0, dx, dy, lineWidth, ncap, 0); - } - - for (j = s; j < e; ++j) { - if (p1->flags & NSVG_PT_CORNER) { - if (lineJoin == NSVG_JOIN_ROUND) - nsvg__roundJoin(r, &left, &right, p0, p1, lineWidth, ncap); - else if (lineJoin == NSVG_JOIN_BEVEL || (p1->flags & NSVG_PT_BEVEL)) - nsvg__bevelJoin(r, &left, &right, p0, p1, lineWidth); - else - nsvg__miterJoin(r, &left, &right, p0, p1, lineWidth); - } else { - nsvg__straightJoin(r, &left, &right, p1, lineWidth); - } - p0 = p1++; - } - - if (closed) { - // Loop it - nsvg__addEdge(r, firstLeft.x, firstLeft.y, left.x, left.y); - nsvg__addEdge(r, right.x, right.y, firstRight.x, firstRight.y); - } else { - // Add cap - float dx = p1->x - p0->x; - float dy = p1->y - p0->y; - nsvg__normalize(&dx, &dy); - if (lineCap == NSVG_CAP_BUTT) - nsvg__buttCap(r, &right, &left, p1, -dx, -dy, lineWidth, 1); - else if (lineCap == NSVG_CAP_SQUARE) - nsvg__squareCap(r, &right, &left, p1, -dx, -dy, lineWidth, 1); - else if (lineCap == NSVG_CAP_ROUND) - nsvg__roundCap(r, &right, &left, p1, -dx, -dy, lineWidth, ncap, 1); - } -} - -static void nsvg__prepareStroke(NSVGrasterizer* r, float miterLimit, int lineJoin) -{ - int i, j; - NSVGpoint* p0, *p1; - - p0 = &r->points[r->npoints-1]; - p1 = &r->points[0]; - for (i = 0; i < r->npoints; i++) { - // Calculate segment direction and length - p0->dx = p1->x - p0->x; - p0->dy = p1->y - p0->y; - p0->len = nsvg__normalize(&p0->dx, &p0->dy); - // Advance - p0 = p1++; - } - - // calculate joins - p0 = &r->points[r->npoints-1]; - p1 = &r->points[0]; - for (j = 0; j < r->npoints; j++) { - float dlx0, dly0, dlx1, dly1, dmr2, cross; - dlx0 = p0->dy; - dly0 = -p0->dx; - dlx1 = p1->dy; - dly1 = -p1->dx; - // Calculate extrusions - p1->dmx = (dlx0 + dlx1) * 0.5f; - p1->dmy = (dly0 + dly1) * 0.5f; - dmr2 = p1->dmx*p1->dmx + p1->dmy*p1->dmy; - if (dmr2 > 0.000001f) { - float s2 = 1.0f / dmr2; - if (s2 > 600.0f) { - s2 = 600.0f; - } - p1->dmx *= s2; - p1->dmy *= s2; - } - - // Clear flags, but keep the corner. - p1->flags = (p1->flags & NSVG_PT_CORNER) ? NSVG_PT_CORNER : 0; - - // Keep track of left turns. - cross = p1->dx * p0->dy - p0->dx * p1->dy; - if (cross > 0.0f) - p1->flags |= NSVG_PT_LEFT; - - // Check to see if the corner needs to be beveled. - if (p1->flags & NSVG_PT_CORNER) { - if ((dmr2 * miterLimit*miterLimit) < 1.0f || lineJoin == NSVG_JOIN_BEVEL || lineJoin == NSVG_JOIN_ROUND) { - p1->flags |= NSVG_PT_BEVEL; - } - } - - p0 = p1++; - } -} - -static void nsvg__flattenShapeStroke(NSVGrasterizer* r, NSVGshape* shape, float scale) -{ - int i, j, closed; - NSVGpath* path; - NSVGpoint* p0, *p1; - float miterLimit = shape->miterLimit; - int lineJoin = shape->strokeLineJoin; - int lineCap = shape->strokeLineCap; - float lineWidth = shape->strokeWidth * scale; - - for (path = shape->paths; path != NULL; path = path->next) { - // Flatten path - r->npoints = 0; - nsvg__addPathPoint(r, path->pts[0]*scale, path->pts[1]*scale, NSVG_PT_CORNER); - for (i = 0; i < path->npts-1; i += 3) { - float* p = &path->pts[i*2]; - nsvg__flattenCubicBez(r, p[0]*scale,p[1]*scale, p[2]*scale,p[3]*scale, p[4]*scale,p[5]*scale, p[6]*scale,p[7]*scale, 0, NSVG_PT_CORNER); - } - if (r->npoints < 2) - continue; - - closed = path->closed; - - // If the first and last points are the same, remove the last, mark as closed path. - p0 = &r->points[r->npoints-1]; - p1 = &r->points[0]; - if (nsvg__ptEquals(p0->x,p0->y, p1->x,p1->y, r->distTol)) { - r->npoints--; - p0 = &r->points[r->npoints-1]; - closed = 1; - } - - if (shape->strokeDashCount > 0) { - int idash = 0, dashState = 1; - float totalDist = 0, dashLen, allDashLen, dashOffset; - NSVGpoint cur; - - if (closed) - nsvg__appendPathPoint(r, r->points[0]); - - // Duplicate points -> points2. - nsvg__duplicatePoints(r); - - r->npoints = 0; - cur = r->points2[0]; - nsvg__appendPathPoint(r, cur); - - // Figure out dash offset. - allDashLen = 0; - for (j = 0; j < shape->strokeDashCount; j++) - allDashLen += shape->strokeDashArray[j]; - if (shape->strokeDashCount & 1) - allDashLen *= 2.0f; - // Find location inside pattern - dashOffset = fmodf(shape->strokeDashOffset, allDashLen); - if (dashOffset < 0.0f) - dashOffset += allDashLen; - - while (dashOffset > shape->strokeDashArray[idash]) { - dashOffset -= shape->strokeDashArray[idash]; - idash = (idash + 1) % shape->strokeDashCount; - } - dashLen = (shape->strokeDashArray[idash] - dashOffset) * scale; - - for (j = 1; j < r->npoints2; ) { - float dx = r->points2[j].x - cur.x; - float dy = r->points2[j].y - cur.y; - float dist = sqrtf(dx*dx + dy*dy); - - if ((totalDist + dist) > dashLen) { - // Calculate intermediate point - float d = (dashLen - totalDist) / dist; - float x = cur.x + dx * d; - float y = cur.y + dy * d; - nsvg__addPathPoint(r, x, y, NSVG_PT_CORNER); - - // Stroke - if (r->npoints > 1 && dashState) { - nsvg__prepareStroke(r, miterLimit, lineJoin); - nsvg__expandStroke(r, r->points, r->npoints, 0, lineJoin, lineCap, lineWidth); - } - // Advance dash pattern - dashState = !dashState; - idash = (idash+1) % shape->strokeDashCount; - dashLen = shape->strokeDashArray[idash] * scale; - // Restart - cur.x = x; - cur.y = y; - cur.flags = NSVG_PT_CORNER; - totalDist = 0.0f; - r->npoints = 0; - nsvg__appendPathPoint(r, cur); - } else { - totalDist += dist; - cur = r->points2[j]; - nsvg__appendPathPoint(r, cur); - j++; - } - } - // Stroke any leftover path - if (r->npoints > 1 && dashState) - nsvg__expandStroke(r, r->points, r->npoints, 0, lineJoin, lineCap, lineWidth); - } else { - nsvg__prepareStroke(r, miterLimit, lineJoin); - nsvg__expandStroke(r, r->points, r->npoints, closed, lineJoin, lineCap, lineWidth); - } - } -} - -static int nsvg__cmpEdge(const void *p, const void *q) -{ - const NSVGedge* a = (const NSVGedge*)p; - const NSVGedge* b = (const NSVGedge*)q; - - if (a->y0 < b->y0) return -1; - if (a->y0 > b->y0) return 1; - return 0; -} - - -static NSVGactiveEdge* nsvg__addActive(NSVGrasterizer* r, NSVGedge* e, float startPoint) -{ - NSVGactiveEdge* z; - - if (r->freelist != NULL) { - // Restore from freelist. - z = r->freelist; - r->freelist = z->next; - } else { - // Alloc new edge. - z = (NSVGactiveEdge*)nsvg__alloc(r, sizeof(NSVGactiveEdge)); - if (z == NULL) return NULL; - } - - float dxdy = (e->x1 - e->x0) / (e->y1 - e->y0); -// STBTT_assert(e->y0 <= start_point); - // round dx down to avoid going too far - if (dxdy < 0) - z->dx = (int)(-floorf(NSVG__FIX * -dxdy)); - else - z->dx = (int)floorf(NSVG__FIX * dxdy); - z->x = (int)floorf(NSVG__FIX * (e->x0 + dxdy * (startPoint - e->y0))); -// z->x -= off_x * FIX; - z->ey = e->y1; - z->next = 0; - z->dir = e->dir; - - return z; -} - -static void nsvg__freeActive(NSVGrasterizer* r, NSVGactiveEdge* z) -{ - z->next = r->freelist; - r->freelist = z; -} - -static void nsvg__fillScanline(unsigned char* scanline, int len, int x0, int x1, int maxWeight, int* xmin, int* xmax) -{ - int i = x0 >> NSVG__FIXSHIFT; - int j = x1 >> NSVG__FIXSHIFT; - if (i < *xmin) *xmin = i; - if (j > *xmax) *xmax = j; - if (i < len && j >= 0) { - if (i == j) { - // x0,x1 are the same pixel, so compute combined coverage - scanline[i] = (unsigned char)(scanline[i] + ((x1 - x0) * maxWeight >> NSVG__FIXSHIFT)); - } else { - if (i >= 0) // add antialiasing for x0 - scanline[i] = (unsigned char)(scanline[i] + (((NSVG__FIX - (x0 & NSVG__FIXMASK)) * maxWeight) >> NSVG__FIXSHIFT)); - else - i = -1; // clip - - if (j < len) // add antialiasing for x1 - scanline[j] = (unsigned char)(scanline[j] + (((x1 & NSVG__FIXMASK) * maxWeight) >> NSVG__FIXSHIFT)); - else - j = len; // clip - - for (++i; i < j; ++i) // fill pixels between x0 and x1 - scanline[i] = (unsigned char)(scanline[i] + maxWeight); - } - } -} - -// note: this routine clips fills that extend off the edges... ideally this -// wouldn't happen, but it could happen if the truetype glyph bounding boxes -// are wrong, or if the user supplies a too-small bitmap -static void nsvg__fillActiveEdges(unsigned char* scanline, int len, NSVGactiveEdge* e, int maxWeight, int* xmin, int* xmax, char fillRule) -{ - // non-zero winding fill - int x0 = 0, w = 0; - - if (fillRule == NSVG_FILLRULE_NONZERO) { - // Non-zero - while (e != NULL) { - if (w == 0) { - // if we're currently at zero, we need to record the edge start point - x0 = e->x; w += e->dir; - } else { - int x1 = e->x; w += e->dir; - // if we went to zero, we need to draw - if (w == 0) - nsvg__fillScanline(scanline, len, x0, x1, maxWeight, xmin, xmax); - } - e = e->next; - } - } else if (fillRule == NSVG_FILLRULE_EVENODD) { - // Even-odd - while (e != NULL) { - if (w == 0) { - // if we're currently at zero, we need to record the edge start point - x0 = e->x; w = 1; - } else { - int x1 = e->x; w = 0; - nsvg__fillScanline(scanline, len, x0, x1, maxWeight, xmin, xmax); - } - e = e->next; - } - } -} - -static float nsvg__clampf(float a, float mn, float mx) { return a < mn ? mn : (a > mx ? mx : a); } - -static unsigned int nsvg__RGBA(unsigned char r, unsigned char g, unsigned char b, unsigned char a) -{ - return ((unsigned int)r) | ((unsigned int)g << 8) | ((unsigned int)b << 16) | ((unsigned int)a << 24); -} - -static unsigned int nsvg__lerpRGBA(unsigned int c0, unsigned int c1, float u) -{ - int iu = (int)(nsvg__clampf(u, 0.0f, 1.0f) * 256.0f); - int r = (((c0) & 0xff)*(256-iu) + (((c1) & 0xff)*iu)) >> 8; - int g = (((c0>>8) & 0xff)*(256-iu) + (((c1>>8) & 0xff)*iu)) >> 8; - int b = (((c0>>16) & 0xff)*(256-iu) + (((c1>>16) & 0xff)*iu)) >> 8; - int a = (((c0>>24) & 0xff)*(256-iu) + (((c1>>24) & 0xff)*iu)) >> 8; - return nsvg__RGBA((unsigned char)r, (unsigned char)g, (unsigned char)b, (unsigned char)a); -} - -static unsigned int nsvg__applyOpacity(unsigned int c, float u) -{ - int iu = (int)(nsvg__clampf(u, 0.0f, 1.0f) * 256.0f); - int r = (c) & 0xff; - int g = (c>>8) & 0xff; - int b = (c>>16) & 0xff; - int a = (((c>>24) & 0xff)*iu) >> 8; - return nsvg__RGBA((unsigned char)r, (unsigned char)g, (unsigned char)b, (unsigned char)a); -} - -static inline int nsvg__div255(int x) -{ - return ((x+1) * 257) >> 16; -} - -static void nsvg__scanlineSolid(unsigned char* dst, int count, unsigned char* cover, int x, int y, - float tx, float ty, float scale, NSVGcachedPaint* cache) -{ - - if (cache->type == NSVG_PAINT_COLOR) { - int i, cr, cg, cb, ca; - cr = cache->colors[0] & 0xff; - cg = (cache->colors[0] >> 8) & 0xff; - cb = (cache->colors[0] >> 16) & 0xff; - ca = (cache->colors[0] >> 24) & 0xff; - - for (i = 0; i < count; i++) { - int r,g,b; - int a = nsvg__div255((int)cover[0] * ca); - int ia = 255 - a; - // Premultiply - r = nsvg__div255(cr * a); - g = nsvg__div255(cg * a); - b = nsvg__div255(cb * a); - - // Blend over - r += nsvg__div255(ia * (int)dst[0]); - g += nsvg__div255(ia * (int)dst[1]); - b += nsvg__div255(ia * (int)dst[2]); - a += nsvg__div255(ia * (int)dst[3]); - - dst[0] = (unsigned char)r; - dst[1] = (unsigned char)g; - dst[2] = (unsigned char)b; - dst[3] = (unsigned char)a; - - cover++; - dst += 4; - } - } else if (cache->type == NSVG_PAINT_LINEAR_GRADIENT) { - // TODO: spread modes. - // TODO: plenty of opportunities to optimize. - float fx, fy, dx, gy; - float* t = cache->xform; - int i, cr, cg, cb, ca; - unsigned int c; - - fx = ((float)x - tx) / scale; - fy = ((float)y - ty) / scale; - dx = 1.0f / scale; - - for (i = 0; i < count; i++) { - int r,g,b,a,ia; - gy = fx*t[1] + fy*t[3] + t[5]; - c = cache->colors[(int)nsvg__clampf(gy*255.0f, 0, 255.0f)]; - cr = (c) & 0xff; - cg = (c >> 8) & 0xff; - cb = (c >> 16) & 0xff; - ca = (c >> 24) & 0xff; - - a = nsvg__div255((int)cover[0] * ca); - ia = 255 - a; - - // Premultiply - r = nsvg__div255(cr * a); - g = nsvg__div255(cg * a); - b = nsvg__div255(cb * a); - - // Blend over - r += nsvg__div255(ia * (int)dst[0]); - g += nsvg__div255(ia * (int)dst[1]); - b += nsvg__div255(ia * (int)dst[2]); - a += nsvg__div255(ia * (int)dst[3]); - - dst[0] = (unsigned char)r; - dst[1] = (unsigned char)g; - dst[2] = (unsigned char)b; - dst[3] = (unsigned char)a; - - cover++; - dst += 4; - fx += dx; - } - } else if (cache->type == NSVG_PAINT_RADIAL_GRADIENT) { - // TODO: spread modes. - // TODO: plenty of opportunities to optimize. - // TODO: focus (fx,fy) - float fx, fy, dx, gx, gy, gd; - float* t = cache->xform; - int i, cr, cg, cb, ca; - unsigned int c; - - fx = ((float)x - tx) / scale; - fy = ((float)y - ty) / scale; - dx = 1.0f / scale; - - for (i = 0; i < count; i++) { - int r,g,b,a,ia; - gx = fx*t[0] + fy*t[2] + t[4]; - gy = fx*t[1] + fy*t[3] + t[5]; - gd = sqrtf(gx*gx + gy*gy); - c = cache->colors[(int)nsvg__clampf(gd*255.0f, 0, 255.0f)]; - cr = (c) & 0xff; - cg = (c >> 8) & 0xff; - cb = (c >> 16) & 0xff; - ca = (c >> 24) & 0xff; - - a = nsvg__div255((int)cover[0] * ca); - ia = 255 - a; - - // Premultiply - r = nsvg__div255(cr * a); - g = nsvg__div255(cg * a); - b = nsvg__div255(cb * a); - - // Blend over - r += nsvg__div255(ia * (int)dst[0]); - g += nsvg__div255(ia * (int)dst[1]); - b += nsvg__div255(ia * (int)dst[2]); - a += nsvg__div255(ia * (int)dst[3]); - - dst[0] = (unsigned char)r; - dst[1] = (unsigned char)g; - dst[2] = (unsigned char)b; - dst[3] = (unsigned char)a; - - cover++; - dst += 4; - fx += dx; - } - } -} - -static void nsvg__rasterizeSortedEdges(NSVGrasterizer *r, float tx, float ty, float scale, NSVGcachedPaint* cache, char fillRule) -{ - NSVGactiveEdge *active = NULL; - int y, s; - int e = 0; - int maxWeight = (255 / NSVG__SUBSAMPLES); // weight per vertical scanline - int xmin, xmax; - - for (y = 0; y < r->height; y++) { - memset(r->scanline, 0, r->width); - xmin = r->width; - xmax = 0; - for (s = 0; s < NSVG__SUBSAMPLES; ++s) { - // find center of pixel for this scanline - float scany = (float)(y*NSVG__SUBSAMPLES + s) + 0.5f; - NSVGactiveEdge **step = &active; - - // update all active edges; - // remove all active edges that terminate before the center of this scanline - while (*step) { - NSVGactiveEdge *z = *step; - if (z->ey <= scany) { - *step = z->next; // delete from list -// NSVG__assert(z->valid); - nsvg__freeActive(r, z); - } else { - z->x += z->dx; // advance to position for current scanline - step = &((*step)->next); // advance through list - } - } - - // resort the list if needed - for (;;) { - int changed = 0; - step = &active; - while (*step && (*step)->next) { - if ((*step)->x > (*step)->next->x) { - NSVGactiveEdge* t = *step; - NSVGactiveEdge* q = t->next; - t->next = q->next; - q->next = t; - *step = q; - changed = 1; - } - step = &(*step)->next; - } - if (!changed) break; - } - - // insert all edges that start before the center of this scanline -- omit ones that also end on this scanline - while (e < r->nedges && r->edges[e].y0 <= scany) { - if (r->edges[e].y1 > scany) { - NSVGactiveEdge* z = nsvg__addActive(r, &r->edges[e], scany); - if (z == NULL) break; - // find insertion point - if (active == NULL) { - active = z; - } else if (z->x < active->x) { - // insert at front - z->next = active; - active = z; - } else { - // find thing to insert AFTER - NSVGactiveEdge* p = active; - while (p->next && p->next->x < z->x) - p = p->next; - // at this point, p->next->x is NOT < z->x - z->next = p->next; - p->next = z; - } - } - e++; - } - - // now process all active edges in non-zero fashion - if (active != NULL) - nsvg__fillActiveEdges(r->scanline, r->width, active, maxWeight, &xmin, &xmax, fillRule); - } - // Blit - if (xmin < 0) xmin = 0; - if (xmax > r->width-1) xmax = r->width-1; - if (xmin <= xmax) { - nsvg__scanlineSolid(&r->bitmap[y * r->stride] + xmin*4, xmax-xmin+1, &r->scanline[xmin], xmin, y, tx,ty, scale, cache); - } - } - -} - -static void nsvg__unpremultiplyAlpha(unsigned char* image, int w, int h, int stride) -{ - int x,y; - - // Unpremultiply - for (y = 0; y < h; y++) { - unsigned char *row = &image[y*stride]; - for (x = 0; x < w; x++) { - int r = row[0], g = row[1], b = row[2], a = row[3]; - if (a != 0) { - row[0] = (unsigned char)(r*255/a); - row[1] = (unsigned char)(g*255/a); - row[2] = (unsigned char)(b*255/a); - } - row += 4; - } - } - - // Defringe - for (y = 0; y < h; y++) { - unsigned char *row = &image[y*stride]; - for (x = 0; x < w; x++) { - int r = 0, g = 0, b = 0, a = row[3], n = 0; - if (a == 0) { - if (x-1 > 0 && row[-1] != 0) { - r += row[-4]; - g += row[-3]; - b += row[-2]; - n++; - } - if (x+1 < w && row[7] != 0) { - r += row[4]; - g += row[5]; - b += row[6]; - n++; - } - if (y-1 > 0 && row[-stride+3] != 0) { - r += row[-stride]; - g += row[-stride+1]; - b += row[-stride+2]; - n++; - } - if (y+1 < h && row[stride+3] != 0) { - r += row[stride]; - g += row[stride+1]; - b += row[stride+2]; - n++; - } - if (n > 0) { - row[0] = (unsigned char)(r/n); - row[1] = (unsigned char)(g/n); - row[2] = (unsigned char)(b/n); - } - } - row += 4; - } - } -} - - -static void nsvg__initPaint(NSVGcachedPaint* cache, NSVGpaint* paint, float opacity) -{ - int i, j; - NSVGgradient* grad; - - cache->type = paint->type; - - if (paint->type == NSVG_PAINT_COLOR) { - cache->colors[0] = nsvg__applyOpacity(paint->color, opacity); - return; - } - - grad = paint->gradient; - - cache->spread = grad->spread; - memcpy(cache->xform, grad->xform, sizeof(float)*6); - - if (grad->nstops == 0) { - for (i = 0; i < 256; i++) - cache->colors[i] = 0; - } if (grad->nstops == 1) { - for (i = 0; i < 256; i++) - cache->colors[i] = nsvg__applyOpacity(grad->stops[i].color, opacity); - } else { - unsigned int ca, cb = 0; - float ua, ub, du, u; - int ia, ib, count; - - ca = nsvg__applyOpacity(grad->stops[0].color, opacity); - ua = nsvg__clampf(grad->stops[0].offset, 0, 1); - ub = nsvg__clampf(grad->stops[grad->nstops-1].offset, ua, 1); - ia = (int)(ua * 255.0f); - ib = (int)(ub * 255.0f); - for (i = 0; i < ia; i++) { - cache->colors[i] = ca; - } - - for (i = 0; i < grad->nstops-1; i++) { - ca = nsvg__applyOpacity(grad->stops[i].color, opacity); - cb = nsvg__applyOpacity(grad->stops[i+1].color, opacity); - ua = nsvg__clampf(grad->stops[i].offset, 0, 1); - ub = nsvg__clampf(grad->stops[i+1].offset, 0, 1); - ia = (int)(ua * 255.0f); - ib = (int)(ub * 255.0f); - count = ib - ia; - if (count <= 0) continue; - u = 0; - du = 1.0f / (float)count; - for (j = 0; j < count; j++) { - cache->colors[ia+j] = nsvg__lerpRGBA(ca,cb,u); - u += du; - } - } - - for (i = ib; i < 256; i++) - cache->colors[i] = cb; - } - -} - -/* -static void dumpEdges(NSVGrasterizer* r, const char* name) -{ - float xmin = 0, xmax = 0, ymin = 0, ymax = 0; - NSVGedge *e = NULL; - int i; - if (r->nedges == 0) return; - FILE* fp = fopen(name, "w"); - if (fp == NULL) return; - - xmin = xmax = r->edges[0].x0; - ymin = ymax = r->edges[0].y0; - for (i = 0; i < r->nedges; i++) { - e = &r->edges[i]; - xmin = nsvg__minf(xmin, e->x0); - xmin = nsvg__minf(xmin, e->x1); - xmax = nsvg__maxf(xmax, e->x0); - xmax = nsvg__maxf(xmax, e->x1); - ymin = nsvg__minf(ymin, e->y0); - ymin = nsvg__minf(ymin, e->y1); - ymax = nsvg__maxf(ymax, e->y0); - ymax = nsvg__maxf(ymax, e->y1); - } - - fprintf(fp, "", xmin, ymin, (xmax - xmin), (ymax - ymin)); - - for (i = 0; i < r->nedges; i++) { - e = &r->edges[i]; - fprintf(fp ,"", e->x0,e->y0, e->x1,e->y1); - } - - for (i = 0; i < r->npoints; i++) { - if (i+1 < r->npoints) - fprintf(fp ,"", r->points[i].x, r->points[i].y, r->points[i+1].x, r->points[i+1].y); - fprintf(fp ,"", r->points[i].x, r->points[i].y, r->points[i].flags == 0 ? "#f00" : "#0f0"); - } - - fprintf(fp, ""); - fclose(fp); -} -*/ - -void nsvgRasterize(NSVGrasterizer* r, - NSVGimage* image, float tx, float ty, float scale, - unsigned char* dst, int w, int h, int stride) -{ - NSVGshape *shape = NULL; - NSVGedge *e = NULL; - NSVGcachedPaint cache; - int i; - - r->bitmap = dst; - r->width = w; - r->height = h; - r->stride = stride; - - if (w > r->cscanline) { - r->cscanline = w; - r->scanline = (unsigned char*)realloc(r->scanline, w); - if (r->scanline == NULL) return; - } - - for (i = 0; i < h; i++) - memset(&dst[i*stride], 0, w*4); - - for (shape = image->shapes; shape != NULL; shape = shape->next) { - if (!(shape->flags & NSVG_FLAGS_VISIBLE)) - continue; - - if (shape->fill.type != NSVG_PAINT_NONE) { - nsvg__resetPool(r); - r->freelist = NULL; - r->nedges = 0; - - nsvg__flattenShape(r, shape, scale); - - // Scale and translate edges - for (i = 0; i < r->nedges; i++) { - e = &r->edges[i]; - e->x0 = tx + e->x0; - e->y0 = (ty + e->y0) * NSVG__SUBSAMPLES; - e->x1 = tx + e->x1; - e->y1 = (ty + e->y1) * NSVG__SUBSAMPLES; - } - - // Rasterize edges - if (r->nedges != 0) - qsort(r->edges, r->nedges, sizeof(NSVGedge), nsvg__cmpEdge); - - // now, traverse the scanlines and find the intersections on each scanline, use non-zero rule - nsvg__initPaint(&cache, &shape->fill, shape->opacity); - - nsvg__rasterizeSortedEdges(r, tx,ty,scale, &cache, shape->fillRule); - } - if (shape->stroke.type != NSVG_PAINT_NONE && (shape->strokeWidth * scale) > 0.01f) { - nsvg__resetPool(r); - r->freelist = NULL; - r->nedges = 0; - - nsvg__flattenShapeStroke(r, shape, scale); - -// dumpEdges(r, "edge.svg"); - - // Scale and translate edges - for (i = 0; i < r->nedges; i++) { - e = &r->edges[i]; - e->x0 = tx + e->x0; - e->y0 = (ty + e->y0) * NSVG__SUBSAMPLES; - e->x1 = tx + e->x1; - e->y1 = (ty + e->y1) * NSVG__SUBSAMPLES; - } - - // Rasterize edges - if (r->nedges != 0) - qsort(r->edges, r->nedges, sizeof(NSVGedge), nsvg__cmpEdge); - - // now, traverse the scanlines and find the intersections on each scanline, use non-zero rule - nsvg__initPaint(&cache, &shape->stroke, shape->opacity); - - nsvg__rasterizeSortedEdges(r, tx,ty,scale, &cache, NSVG_FILLRULE_NONZERO); - } - } - - nsvg__unpremultiplyAlpha(dst, w, h, stride); - - r->bitmap = NULL; - r->width = 0; - r->height = 0; - r->stride = 0; -} - -#endif // NANOSVGRAST_IMPLEMENTATION - -#endif // NANOSVGRAST_H diff --git a/src/external/par_shapes.h b/src/external/par_shapes.h index 994a605a9..d5309137b 100644 --- a/src/external/par_shapes.h +++ b/src/external/par_shapes.h @@ -1130,7 +1130,7 @@ static par_shapes__rule* par_shapes__pick_rule(const char* name, total += rule->weight; } } - float r = (float) rand() / RAND_MAX; + float r = (float) rand() / (float) RAND_MAX; float t = 0; for (int i = 0; i < nrules; i++) { rule = rules + i; diff --git a/src/external/rl_gputex.h b/src/external/rl_gputex.h index 6b26d1c8d..4043a9239 100644 --- a/src/external/rl_gputex.h +++ b/src/external/rl_gputex.h @@ -185,6 +185,7 @@ void *rl_load_dds_from_memory(const unsigned char *file_data, unsigned int file_ if (header->ddspf.flags == 0x40) // No alpha channel { int data_size = image_pixel_size*sizeof(unsigned short); + if (header->mipmap_count > 1) data_size = data_size + data_size / 3; image_data = RL_MALLOC(data_size); memcpy(image_data, file_data_ptr, data_size); @@ -196,6 +197,7 @@ void *rl_load_dds_from_memory(const unsigned char *file_data, unsigned int file_ if (header->ddspf.a_bit_mask == 0x8000) // 1bit alpha { int data_size = image_pixel_size*sizeof(unsigned short); + if (header->mipmap_count > 1) data_size = data_size + data_size / 3; image_data = RL_MALLOC(data_size); memcpy(image_data, file_data_ptr, data_size); @@ -215,6 +217,7 @@ void *rl_load_dds_from_memory(const unsigned char *file_data, unsigned int file_ else if (header->ddspf.a_bit_mask == 0xf000) // 4bit alpha { int data_size = image_pixel_size*sizeof(unsigned short); + if (header->mipmap_count > 1) data_size = data_size + data_size / 3; image_data = RL_MALLOC(data_size); memcpy(image_data, file_data_ptr, data_size); @@ -236,6 +239,7 @@ void *rl_load_dds_from_memory(const unsigned char *file_data, unsigned int file_ else if ((header->ddspf.flags == 0x40) && (header->ddspf.rgb_bit_count == 24)) // DDS_RGB, no compressed { int data_size = image_pixel_size*3*sizeof(unsigned char); + if (header->mipmap_count > 1) data_size = data_size + data_size / 3; image_data = RL_MALLOC(data_size); memcpy(image_data, file_data_ptr, data_size); @@ -245,6 +249,7 @@ void *rl_load_dds_from_memory(const unsigned char *file_data, unsigned int file_ else if ((header->ddspf.flags == 0x41) && (header->ddspf.rgb_bit_count == 32)) // DDS_RGBA, no compressed { int data_size = image_pixel_size*4*sizeof(unsigned char); + if (header->mipmap_count > 1) data_size = data_size + data_size / 3; image_data = RL_MALLOC(data_size); memcpy(image_data, file_data_ptr, data_size); @@ -265,9 +270,11 @@ void *rl_load_dds_from_memory(const unsigned char *file_data, unsigned int file_ } else if (((header->ddspf.flags == 0x04) || (header->ddspf.flags == 0x05)) && (header->ddspf.fourcc > 0)) // Compressed { - // NOTE: This forces only 1 mipmap to be loaded which is not really correct but it works - int data_size = (header->pitch_or_linear_size < file_size - 0x80) ? header->pitch_or_linear_size : file_size - 0x80; - *mips = 1; + int data_size = 0; + + // Calculate data size, including all mipmaps + if (header->mipmap_count > 1) data_size = header->pitch_or_linear_size + header->pitch_or_linear_size / 3; + else data_size = header->pitch_or_linear_size; image_data = RL_MALLOC(data_size*sizeof(unsigned char)); diff --git a/src/external/stb_image_resize2.h b/src/external/stb_image_resize2.h index e0c428246..ae8d730bf 100644 --- a/src/external/stb_image_resize2.h +++ b/src/external/stb_image_resize2.h @@ -1,9 +1,9 @@ -/* stb_image_resize2 - v2.01 - public domain image resizing - - by Jeff Roberts (v2) and Jorge L Rodriguez +/* stb_image_resize2 - v2.10 - public domain image resizing + + by Jeff Roberts (v2) and Jorge L Rodriguez http://github.com/nothings/stb - Can be threaded with the extended API. SSE2, AVX, Neon and WASM SIMD support. Only + Can be threaded with the extended API. SSE2, AVX, Neon and WASM SIMD support. Only scaling and translation is supported, no rotations or shears. COMPILING & LINKING @@ -67,60 +67,60 @@ ADDITIONAL DOCUMENTATION MEMORY ALLOCATION - By default, we use malloc and free for memory allocation. To override the + By default, we use malloc and free for memory allocation. To override the memory allocation, before the implementation #include, add a: #define STBIR_MALLOC(size,user_data) ... #define STBIR_FREE(ptr,user_data) ... - Each resize makes exactly one call to malloc/free (unless you use the + Each resize makes exactly one call to malloc/free (unless you use the extended API where you can do one allocation for many resizes). Under address sanitizer, we do separate allocations to find overread/writes. PERFORMANCE This library was written with an emphasis on performance. When testing - stb_image_resize with RGBA, the fastest mode is STBIR_4CHANNEL with + stb_image_resize with RGBA, the fastest mode is STBIR_4CHANNEL with STBIR_TYPE_UINT8 pixels and CLAMPed edges (which is what many other resize - libs do by default). Also, make sure SIMD is turned on of course (default + libs do by default). Also, make sure SIMD is turned on of course (default for 64-bit targets). Avoid WRAP edge mode if you want the fastest speed. This library also comes with profiling built-in. If you define STBIR_PROFILE, - you can use the advanced API and get low-level profiling information by + you can use the advanced API and get low-level profiling information by calling stbir_resize_extended_profile_info() or stbir_resize_split_profile_info() after a resize. SIMD - Most of the routines have optimized SSE2, AVX, NEON and WASM versions. + Most of the routines have optimized SSE2, AVX, NEON and WASM versions. - On Microsoft compilers, we automatically turn on SIMD for 64-bit x64 and - ARM; for 32-bit x86 and ARM, you select SIMD mode by defining STBIR_SSE2 or + On Microsoft compilers, we automatically turn on SIMD for 64-bit x64 and + ARM; for 32-bit x86 and ARM, you select SIMD mode by defining STBIR_SSE2 or STBIR_NEON. For AVX and AVX2, we auto-select it by detecting the /arch:AVX - or /arch:AVX2 switches. You can also always manually turn SSE2, AVX or AVX2 + or /arch:AVX2 switches. You can also always manually turn SSE2, AVX or AVX2 support on by defining STBIR_SSE2, STBIR_AVX or STBIR_AVX2. On Linux, SSE2 and Neon is on by default for 64-bit x64 or ARM64. For 32-bit, we select x86 SIMD mode by whether you have -msse2, -mavx or -mavx2 enabled on the command line. For 32-bit ARM, you must pass -mfpu=neon-vfpv4 for both - clang and GCC, but GCC also requires an additional -mfp16-format=ieee to + clang and GCC, but GCC also requires an additional -mfp16-format=ieee to automatically enable NEON. On x86 platforms, you can also define STBIR_FP16C to turn on FP16C instructions for converting back and forth to half-floats. This is autoselected when we - are using AVX2. Clang and GCC also require the -mf16c switch. ARM always uses - the built-in half float hardware NEON instructions. + are using AVX2. Clang and GCC also require the -mf16c switch. ARM always uses + the built-in half float hardware NEON instructions. - You can also tell us to use multiply-add instructions with STBIR_USE_FMA. + You can also tell us to use multiply-add instructions with STBIR_USE_FMA. Because x86 doesn't always have fma, we turn it off by default to maintain determinism across all platforms. If you don't care about non-FMA determinism - and are willing to restrict yourself to more recent x86 CPUs (around the AVX + and are willing to restrict yourself to more recent x86 CPUs (around the AVX timeframe), then fma will give you around a 15% speedup. You can force off SIMD in all cases by defining STBIR_NO_SIMD. You can turn off AVX or AVX2 specifically with STBIR_NO_AVX or STBIR_NO_AVX2. AVX is 10% to 40% faster, and AVX2 is generally another 12%. - + ALPHA CHANNEL - Most of the resizing functions provide the ability to control how the alpha + Most of the resizing functions provide the ability to control how the alpha channel of an image is processed. When alpha represents transparency, it is important that when combining @@ -167,33 +167,33 @@ stb_image_resize expects case #1 by default, applying alpha weighting to images, expecting the input images to be unpremultiplied. This is what the - COLOR+ALPHA buffer types tell the resizer to do. + COLOR+ALPHA buffer types tell the resizer to do. - When you use the pixel layouts STBIR_RGBA, STBIR_BGRA, STBIR_ARGB, - STBIR_ABGR, STBIR_RX, or STBIR_XR you are telling us that the pixels are - non-premultiplied. In these cases, the resizer will alpha weight the colors - (effectively creating the premultiplied image), do the filtering, and then + When you use the pixel layouts STBIR_RGBA, STBIR_BGRA, STBIR_ARGB, + STBIR_ABGR, STBIR_RX, or STBIR_XR you are telling us that the pixels are + non-premultiplied. In these cases, the resizer will alpha weight the colors + (effectively creating the premultiplied image), do the filtering, and then convert back to non-premult on exit. When you use the pixel layouts STBIR_RGBA_PM, STBIR_RGBA_PM, STBIR_RGBA_PM, - STBIR_RGBA_PM, STBIR_RX_PM or STBIR_XR_PM, you are telling that the pixels - ARE premultiplied. In this case, the resizer doesn't have to do the - premultipling - it can filter directly on the input. This about twice as - fast as the non-premultiplied case, so it's the right option if your data is + STBIR_RGBA_PM, STBIR_RX_PM or STBIR_XR_PM, you are telling that the pixels + ARE premultiplied. In this case, the resizer doesn't have to do the + premultipling - it can filter directly on the input. This about twice as + fast as the non-premultiplied case, so it's the right option if your data is already setup correctly. - When you use the pixel layout STBIR_4CHANNEL or STBIR_2CHANNEL, you are - telling us that there is no channel that represents transparency; it may be - RGB and some unrelated fourth channel that has been stored in the alpha - channel, but it is actually not alpha. No special processing will be - performed. + When you use the pixel layout STBIR_4CHANNEL or STBIR_2CHANNEL, you are + telling us that there is no channel that represents transparency; it may be + RGB and some unrelated fourth channel that has been stored in the alpha + channel, but it is actually not alpha. No special processing will be + performed. - The difference between the generic 4 or 2 channel layouts, and the + The difference between the generic 4 or 2 channel layouts, and the specialized _PM versions is with the _PM versions you are telling us that the data *is* alpha, just don't premultiply it. That's important when using SRGB pixel formats, we need to know where the alpha is, because it is converted linearly (rather than with the SRGB converters). - + Because alpha weighting produces the same effect as premultiplying, you even have the option with non-premultiplied inputs to let the resizer produce a premultiplied output. Because the intially computed alpha-weighted @@ -201,10 +201,10 @@ than the normal path which un-premultiplies the output image as a final step. Finally, when converting both in and out of non-premulitplied space (for - example, when using STBIR_RGBA), we go to somewhat heroic measures to - ensure that areas with zero alpha value pixels get something reasonable - in the RGB values. If you don't care about the RGB values of zero alpha - pixels, you can call the stbir_set_non_pm_alpha_speed_over_quality() + example, when using STBIR_RGBA), we go to somewhat heroic measures to + ensure that areas with zero alpha value pixels get something reasonable + in the RGB values. If you don't care about the RGB values of zero alpha + pixels, you can call the stbir_set_non_pm_alpha_speed_over_quality() function - this runs a premultiplied resize about 25% faster. That said, when you really care about speed, using premultiplied pixels for both in and out (STBIR_RGBA_PM, etc) much faster than both of these premultiplied @@ -218,38 +218,38 @@ layouts with the same number of channels. DETERMINISM - We commit to being deterministic (from x64 to ARM to scalar to SIMD, etc). - This requires compiling with fast-math off (using at least /fp:precise). + We commit to being deterministic (from x64 to ARM to scalar to SIMD, etc). + This requires compiling with fast-math off (using at least /fp:precise). Also, you must turn off fp-contracting (which turns mult+adds into fmas)! - We attempt to do this with pragmas, but with Clang, you usually want to add + We attempt to do this with pragmas, but with Clang, you usually want to add -ffp-contract=off to the command line as well. - For 32-bit x86, you must use SSE and SSE2 codegen for determinism. That is, - if the scalar x87 unit gets used at all, we immediately lose determinism. + For 32-bit x86, you must use SSE and SSE2 codegen for determinism. That is, + if the scalar x87 unit gets used at all, we immediately lose determinism. On Microsoft Visual Studio 2008 and earlier, from what we can tell there is - no way to be deterministic in 32-bit x86 (some x87 always leaks in, even - with fp:strict). On 32-bit x86 GCC, determinism requires both -msse2 and + no way to be deterministic in 32-bit x86 (some x87 always leaks in, even + with fp:strict). On 32-bit x86 GCC, determinism requires both -msse2 and -fpmath=sse. Note that we will not be deterministic with float data containing NaNs - - the NaNs will propagate differently on different SIMD and platforms. + the NaNs will propagate differently on different SIMD and platforms. - If you turn on STBIR_USE_FMA, then we will be deterministic with other - fma targets, but we will differ from non-fma targets (this is unavoidable, - because a fma isn't simply an add with a mult - it also introduces a - rounding difference compared to non-fma instruction sequences. + If you turn on STBIR_USE_FMA, then we will be deterministic with other + fma targets, but we will differ from non-fma targets (this is unavoidable, + because a fma isn't simply an add with a mult - it also introduces a + rounding difference compared to non-fma instruction sequences. FLOAT PIXEL FORMAT RANGE - Any range of values can be used for the non-alpha float data that you pass - in (0 to 1, -1 to 1, whatever). However, if you are inputting float values - but *outputting* bytes or shorts, you must use a range of 0 to 1 so that we - scale back properly. The alpha channel must also be 0 to 1 for any format - that does premultiplication prior to resizing. + Any range of values can be used for the non-alpha float data that you pass + in (0 to 1, -1 to 1, whatever). However, if you are inputting float values + but *outputting* bytes or shorts, you must use a range of 0 to 1 so that we + scale back properly. The alpha channel must also be 0 to 1 for any format + that does premultiplication prior to resizing. - Note also that with float output, using filters with negative lobes, the - output filtered values might go slightly out of range. You can define - STBIR_FLOAT_LOW_CLAMP and/or STBIR_FLOAT_HIGH_CLAMP to specify the range - to clamp to on output, if that's important. + Note also that with float output, using filters with negative lobes, the + output filtered values might go slightly out of range. You can define + STBIR_FLOAT_LOW_CLAMP and/or STBIR_FLOAT_HIGH_CLAMP to specify the range + to clamp to on output, if that's important. MAX/MIN SCALE FACTORS The input pixel resolutions are in integers, and we do the internal pointer @@ -263,13 +263,13 @@ buffers). FLIPPED IMAGES - Stride is just the delta from one scanline to the next. This means you can - use a negative stride to handle inverted images (point to the final + Stride is just the delta from one scanline to the next. This means you can + use a negative stride to handle inverted images (point to the final scanline and use a negative stride). You can invert the input or output, using negative strides. DEFAULT FILTERS - For functions which don't provide explicit control over what filters to + For functions which don't provide explicit control over what filters to use, you can change the compile-time defaults with: #define STBIR_DEFAULT_FILTER_UPSAMPLE STBIR_FILTER_something @@ -278,18 +278,18 @@ See stbir_filter in the header-file section for the list of filters. NEW FILTERS - A number of 1D filter kernels are supplied. For a list of supported - filters, see the stbir_filter enum. You can install your own filters by + A number of 1D filter kernels are supplied. For a list of supported + filters, see the stbir_filter enum. You can install your own filters by using the stbir_set_filter_callbacks function. PROGRESS - For interactive use with slow resize operations, you can use the the - scanline callbacks in the extended API. It would have to be a *very* large + For interactive use with slow resize operations, you can use the the + scanline callbacks in the extended API. It would have to be a *very* large image resample to need progress though - we're very fast. CEIL and FLOOR - In scalar mode, the only functions we use from math.h are ceilf and floorf, - but if you have your own versions, you can define the STBIR_CEILF(v) and + In scalar mode, the only functions we use from math.h are ceilf and floorf, + but if you have your own versions, you can define the STBIR_CEILF(v) and STBIR_FLOORF(v) macros and we'll use them instead. In SIMD, we just use our own versions. @@ -304,7 +304,7 @@ * For SIMD encode and decode scanline routines, do any pre-aligning for bad input/output buffer alignments and pitch? * For very wide scanlines, we should we do vertical strips to stay within - L2 cache. Maybe do chunks of 1K pixels at a time. There would be + L2 cache. Maybe do chunks of 1K pixels at a time. There would be some pixel reconversion, but probably dwarfed by things falling out of cache. Probably also something possible with alternating between scattering and gathering at high resize scales? @@ -316,21 +316,38 @@ the pivot cost and the extra memory touches). Need to buffer the whole image so have to balance memory use. * Most of our code is internally function pointers, should we compile - all the SIMD stuff always and dynamically dispatch? + all the SIMD stuff always and dynamically dispatch? CONTRIBUTORS Jeff Roberts: 2.0 implementation, optimizations, SIMD - Martins Mozeiko: NEON simd, WASM simd, clang and GCC whisperer. + Martins Mozeiko: NEON simd, WASM simd, clang and GCC whisperer Fabian Giesen: half float and srgb converters Sean Barrett: API design, optimizations Jorge L Rodriguez: Original 1.0 implementation - Aras Pranckevicius: bugfixes for 1.0 + Aras Pranckevicius: bugfixes Nathan Reed: warning fixes for 1.0 REVISIONS - 2.00 (2022-02-20) mostly new source: new api, optimizations, simd, vertical-first, etc - (2x-5x faster without simd, 4x-12x faster with simd) - (in some cases, 20x to 40x faster - resizing to very small for example) + 2.10 (2024-07-27) fix the defines GCC and mingw for loop unroll control, + fix MSVC 32-bit arm half float routines. + 2.09 (2024-06-19) fix the defines for 32-bit ARM GCC builds (was selecting + hardware half floats). + 2.08 (2024-06-10) fix for RGB->BGR three channel flips and add SIMD (thanks + to Ryan Salsbury), fix for sub-rect resizes, use the + pragmas to control unrolling when they are available. + 2.07 (2024-05-24) fix for slow final split during threaded conversions of very + wide scanlines when downsampling (caused by extra input + converting), fix for wide scanline resamples with many + splits (int overflow), fix GCC warning. + 2.06 (2024-02-10) fix for identical width/height 3x or more down-scaling + undersampling a single row on rare resize ratios (about 1%). + 2.05 (2024-02-07) fix for 2 pixel to 1 pixel resizes with wrap (thanks Aras), + fix for output callback (thanks Julien Koenen). + 2.04 (2023-11-17) fix for rare AVX bug, shadowed symbol (thanks Nikola Smiljanic). + 2.03 (2023-11-01) ASAN and TSAN warnings fixed, minor tweaks. + 2.00 (2023-10-10) mostly new source: new api, optimizations, simd, vertical-first, etc + 2x-5x faster without simd, 4x-12x faster with simd, + in some cases, 20x to 40x faster esp resizing large to very small. 0.96 (2019-03-04) fixed warnings 0.95 (2017-07-23) fixed warnings 0.94 (2017-03-18) fixed warnings @@ -368,7 +385,7 @@ typedef uint64_t stbir_uint64; #define STBIR_SSE #endif #endif -#endif +#endif #if defined(_x86_64) || defined( __x86_64__ ) || defined( _M_X64 ) || defined(__x86_64) || defined(_M_AMD64) || defined(__SSE2__) || defined(STBIR_SSE) || defined(STBIR_SSE2) #ifndef STBIR_SSE2 @@ -383,7 +400,7 @@ typedef uint64_t stbir_uint64; #endif #if defined(__AVX2__) || defined(STBIR_AVX2) #ifndef STBIR_NO_AVX2 - #ifndef STBIR_AVX2 + #ifndef STBIR_AVX2 #define STBIR_AVX2 #endif #if defined( _MSC_VER ) && !defined(__clang__) @@ -400,15 +417,15 @@ typedef uint64_t stbir_uint64; #endif #endif -#if defined( _M_ARM64 ) || defined( __aarch64__ ) || defined( __arm64__ ) || defined(_M_ARM) || (__ARM_NEON_FP & 4) != 0 && __ARM_FP16_FORMAT_IEEE != 0 +#if defined( _M_ARM64 ) || defined( __aarch64__ ) || defined( __arm64__ ) || ((__ARM_NEON_FP & 4) != 0) || defined(__ARM_NEON__) #ifndef STBIR_NEON #define STBIR_NEON #endif #endif -#if defined(_M_ARM) +#if defined(_M_ARM) || defined(__arm__) #ifdef STBIR_USE_FMA -#undef STBIR_USE_FMA // no FMA for 32-bit arm on MSVC +#undef STBIR_USE_FMA // no FMA for 32-bit arm on MSVC #endif #endif @@ -435,7 +452,7 @@ typedef uint64_t stbir_uint64; // // Easy-to-use API: // -// * stride is the offset between successive rows of image data +// * stride is the offset between successive rows of image data // in memory, in bytes. specify 0 for packed continuously in memory // * colorspace is linear or sRGB as specified by function name // * Uses the default filters @@ -448,27 +465,35 @@ typedef uint64_t stbir_uint64; // order of channels // whether color is premultiplied by alpha // for back compatibility, you can cast the old channel count to an stbir_pixel_layout -typedef enum +typedef enum { - STBIR_BGR = 0, // 3-chan, with order specified (for channel flipping) - STBIR_1CHANNEL = 1, + STBIR_1CHANNEL = 1, STBIR_2CHANNEL = 2, - STBIR_RGB = 3, // 3-chan, with order specified (for channel flipping) - STBIR_RGBA = 4, // alpha formats, alpha is NOT premultiplied into color channels - + STBIR_RGB = 3, // 3-chan, with order specified (for channel flipping) + STBIR_BGR = 0, // 3-chan, with order specified (for channel flipping) STBIR_4CHANNEL = 5, + + STBIR_RGBA = 4, // alpha formats, where alpha is NOT premultiplied into color channels STBIR_BGRA = 6, STBIR_ARGB = 7, STBIR_ABGR = 8, STBIR_RA = 9, STBIR_AR = 10, - STBIR_RGBA_PM = 11, // alpha formats, alpha is premultiplied into color channels + STBIR_RGBA_PM = 11, // alpha formats, where alpha is premultiplied into color channels STBIR_BGRA_PM = 12, STBIR_ARGB_PM = 13, STBIR_ABGR_PM = 14, STBIR_RA_PM = 15, STBIR_AR_PM = 16, + + STBIR_RGBA_NO_AW = 11, // alpha formats, where NO alpha weighting is applied at all! + STBIR_BGRA_NO_AW = 12, // these are just synonyms for the _PM flags (which also do + STBIR_ARGB_NO_AW = 13, // no alpha weighting). These names just make it more clear + STBIR_ABGR_NO_AW = 14, // for some folks). + STBIR_RA_NO_AW = 15, + STBIR_AR_NO_AW = 16, + } stbir_pixel_layout; //=============================================================== @@ -549,8 +574,8 @@ STBIRDEF void * stbir_resize( const void *input_pixels , int input_w , int inpu // * Separate input and output data types // * Can specify regions with subpixel correctness // * Can specify alpha flags -// * Can specify a memory callback -// * Can specify a callback data type for pixel input and output +// * Can specify a memory callback +// * Can specify a callback data type for pixel input and output // * Can be threaded for a single resize // * Can be used to resize many frames without recalculating the sampler info // @@ -577,7 +602,7 @@ typedef float stbir__kernel_callback( float x, float scale, void * user_data ); typedef float stbir__support_callback( float scale, void * user_data ); // internal structure with precomputed scaling -typedef struct stbir__info stbir__info; +typedef struct stbir__info stbir__info; typedef struct STBIR_RESIZE // use the stbir_resize_init and stbir_override functions to set these values for future compatibility { @@ -604,7 +629,7 @@ typedef struct STBIR_RESIZE // use the stbir_resize_init and stbir_override fun stbir_edge horizontal_edge, vertical_edge; stbir__kernel_callback * horizontal_filter_kernel; stbir__support_callback * horizontal_filter_support; stbir__kernel_callback * vertical_filter_kernel; stbir__support_callback * vertical_filter_support; - stbir__info * samplers; + stbir__info * samplers; } STBIR_RESIZE; // extended complexity api @@ -620,7 +645,7 @@ STBIRDEF void stbir_resize_init( STBIR_RESIZE * resize, // You can update these parameters any time after resize_init and there is no cost //-------------------------------- -STBIRDEF void stbir_set_datatypes( STBIR_RESIZE * resize, stbir_datatype input_type, stbir_datatype output_type ); +STBIRDEF void stbir_set_datatypes( STBIR_RESIZE * resize, stbir_datatype input_type, stbir_datatype output_type ); STBIRDEF void stbir_set_pixel_callbacks( STBIR_RESIZE * resize, stbir_input_callback * input_cb, stbir_output_callback * output_cb ); // no callbacks by default STBIRDEF void stbir_set_user_data( STBIR_RESIZE * resize, void * user_data ); // pass back STBIR_RESIZE* by default STBIRDEF void stbir_set_buffer_ptrs( STBIR_RESIZE * resize, const void * input_pixels, int input_stride_in_bytes, void * output_pixels, int output_stride_in_bytes ); @@ -636,7 +661,7 @@ STBIRDEF int stbir_set_pixel_layouts( STBIR_RESIZE * resize, stbir_pixel_layout STBIRDEF int stbir_set_edgemodes( STBIR_RESIZE * resize, stbir_edge horizontal_edge, stbir_edge vertical_edge ); // CLAMP by default STBIRDEF int stbir_set_filters( STBIR_RESIZE * resize, stbir_filter horizontal_filter, stbir_filter vertical_filter ); // STBIR_DEFAULT_FILTER_UPSAMPLE/DOWNSAMPLE by default -STBIRDEF int stbir_set_filter_callbacks( STBIR_RESIZE * resize, stbir__kernel_callback * horizontal_filter, stbir__support_callback * horizontal_support, stbir__kernel_callback * vertical_filter, stbir__support_callback * vertical_support ); +STBIRDEF int stbir_set_filter_callbacks( STBIR_RESIZE * resize, stbir__kernel_callback * horizontal_filter, stbir__support_callback * horizontal_support, stbir__kernel_callback * vertical_filter, stbir__support_callback * vertical_support ); STBIRDEF int stbir_set_pixel_subrect( STBIR_RESIZE * resize, int subx, int suby, int subw, int subh ); // sets both sub-regions (full regions by default) STBIRDEF int stbir_set_input_subrect( STBIR_RESIZE * resize, double s0, double t0, double s1, double t1 ); // sets input sub-region (full region by default) @@ -658,7 +683,7 @@ STBIRDEF int stbir_set_non_pm_alpha_speed_over_quality( STBIR_RESIZE * resize, i //-------------------------------- // This builds the samplers and does one allocation -STBIRDEF int stbir_build_samplers( STBIR_RESIZE * resize ); +STBIRDEF int stbir_build_samplers( STBIR_RESIZE * resize ); // You MUST call this, if you call stbir_build_samplers or stbir_build_samplers_with_splits STBIRDEF void stbir_free_samplers( STBIR_RESIZE * resize ); @@ -681,7 +706,7 @@ STBIRDEF int stbir_resize_extended( STBIR_RESIZE * resize ); // It returns the number of splits (threads) that you can call it with. /// It might be less if the image resize can't be split up that many ways. -STBIRDEF int stbir_build_samplers_with_splits( STBIR_RESIZE * resize, int try_splits ); +STBIRDEF int stbir_build_samplers_with_splits( STBIR_RESIZE * resize, int try_splits ); // This function does a split of the resizing (you call this fuction for each // split, on multiple threads). A split is a piece of the output resize pixel space. @@ -691,10 +716,10 @@ STBIRDEF int stbir_build_samplers_with_splits( STBIR_RESIZE * resize, int try_sp // Usually, you will always call stbir_resize_split with split_start as the thread_index // and "1" for the split_count. // But, if you have a weird situation where you MIGHT want 8 threads, but sometimes -// only 4 threads, you can use 0,2,4,6 for the split_start's and use "2" for the +// only 4 threads, you can use 0,2,4,6 for the split_start's and use "2" for the // split_count each time to turn in into a 4 thread resize. (This is unusual). -STBIRDEF int stbir_resize_extended_split( STBIR_RESIZE * resize, int split_start, int split_count ); +STBIRDEF int stbir_resize_extended_split( STBIR_RESIZE * resize, int split_start, int split_count ); //=============================================================== @@ -705,10 +730,10 @@ STBIRDEF int stbir_resize_extended_split( STBIR_RESIZE * resize, int split_start // The input callback is super flexible - it calls you with the input address // (based on the stride and base pointer), it gives you an optional_output // pointer that you can fill, or you can just return your own pointer into -// your own data. +// your own data. // -// You can also do conversion from non-supported data types if necessary - in -// this case, you ignore the input_ptr and just use the x and y parameters to +// You can also do conversion from non-supported data types if necessary - in +// this case, you ignore the input_ptr and just use the x and y parameters to // calculate your own input_ptr based on the size of each non-supported pixel. // (Something like the third example below.) // @@ -722,14 +747,14 @@ STBIRDEF int stbir_resize_extended_split( STBIR_RESIZE * resize, int split_start // return input_ptr; // use buffer from call // } // -// Next example, copying: (copy from some other buffer or stream): +// Next example, copying: (copy from some other buffer or stream): // void const * my_callback( void * optional_output, void const * input_ptr, int num_pixels, int x, int y, void * context ) // { // CopyOrStreamData( optional_output, other_data_src, num_pixels * pixel_width_in_bytes ); // return optional_output; // return the optional buffer that we filled // } // -// Third example, input another buffer without copying: (zero-copy from other buffer): +// Third example, input another buffer without copying: (zero-copy from other buffer): // void const * my_callback( void * optional_output, void const * input_ptr, int num_pixels, int x, int y, void * context ) // { // void * pixels = ( (char*) other_image_base ) + ( y * other_image_stride ) + ( x * other_pixel_width_in_bytes ); @@ -758,7 +783,7 @@ STBIRDEF int stbir_resize_extended_split( STBIR_RESIZE * resize, int split_start #ifdef STBIR_PROFILE -typedef struct STBIR_PROFILE_INFO +typedef struct STBIR_PROFILE_INFO { stbir_uint64 total_clocks; @@ -766,7 +791,7 @@ typedef struct STBIR_PROFILE_INFO // there are "resize_count" number of zones stbir_uint64 clocks[ 8 ]; char const ** descriptions; - + // count of clocks and descriptions stbir_uint32 count; } STBIR_PROFILE_INFO; @@ -865,15 +890,15 @@ STBIRDEF void stbir_resize_split_profile_info( STBIR_PROFILE_INFO * out_info, ST #endif // the internal pixel layout enums are in a different order, so we can easily do range comparisons of types -// the public pixel layout is ordered in a way that if you cast num_channels (1-4) to the enum, you get something sensible -typedef enum +// the public pixel layout is ordered in a way that if you cast num_channels (1-4) to the enum, you get something sensible +typedef enum { STBIRI_1CHANNEL = 0, STBIRI_2CHANNEL = 1, STBIRI_RGB = 2, STBIRI_BGR = 3, STBIRI_4CHANNEL = 4, - + STBIRI_RGBA = 5, STBIRI_BGRA = 6, STBIRI_ARGB = 7, @@ -979,7 +1004,7 @@ typedef struct stbir__span spans[2]; // can be two spans, if doing input subrect with clamp mode WRAP } stbir__extents; -typedef struct +typedef struct { #ifdef STBIR_PROFILE union @@ -1010,7 +1035,7 @@ typedef struct typedef void stbir__decode_pixels_func( float * decode, int width_times_channels, void const * input ); typedef void stbir__alpha_weight_func( float * decode_buffer, int width_times_channels ); -typedef void stbir__horizontal_gather_channels_func( float * output_buffer, unsigned int output_sub_size, float const * decode_buffer, +typedef void stbir__horizontal_gather_channels_func( float * output_buffer, unsigned int output_sub_size, float const * decode_buffer, stbir__contributors const * horizontal_contributors, float const * horizontal_coefficients, int coefficient_width ); typedef void stbir__alpha_unweight_func(float * encode_buffer, int width_times_channels ); typedef void stbir__encode_pixels_func( void * output, int width_times_channels, float const * encode ); @@ -1053,10 +1078,10 @@ struct stbir__info stbir__horizontal_gather_channels_func * horizontal_gather_channels; stbir__alpha_unweight_func * alpha_unweight; stbir__encode_pixels_func * encode_pixels; - - int alloced_total; + + int alloc_ring_buffer_num_entries; // Number of entries in the ring buffer that will be allocated int splits; // count of splits - + stbir_internal_pixel_layout input_pixel_layout_internal; stbir_internal_pixel_layout output_pixel_layout_internal; @@ -1065,7 +1090,7 @@ struct stbir__info int vertical_first; int channels; int effective_channels; // same as channels, except on RGBA/ARGB (7), or XA/AX (3) - int alloc_ring_buffer_num_entries; // Number of entries in the ring buffer that will be allocated + size_t alloced_total; }; @@ -1076,10 +1101,11 @@ struct stbir__info #define stbir__small_float ((float)1 / (1 << 20) / (1 << 20) / (1 << 20) / (1 << 20) / (1 << 20) / (1 << 20)) // min/max friendly -#define STBIR_CLAMP(x, xmin, xmax) do { \ +#define STBIR_CLAMP(x, xmin, xmax) for(;;) { \ if ( (x) < (xmin) ) (x) = (xmin); \ if ( (x) > (xmax) ) (x) = (xmax); \ -} while (0) + break; \ +} static stbir__inline int stbir__min(int a, int b) { @@ -1141,7 +1167,7 @@ static const stbir_uint32 fp32_to_srgb8_tab4[104] = { 0x44c20798, 0x488e071e, 0x4c1c06b6, 0x4f76065d, 0x52a50610, 0x55ac05cc, 0x5892058f, 0x5b590559, 0x5e0c0a23, 0x631c0980, 0x67db08f6, 0x6c55087f, 0x70940818, 0x74a007bd, 0x787d076c, 0x7c330723, }; - + static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) { static const stbir__FP32 almostone = { 0x3f7fffff }; // 1-eps @@ -1172,19 +1198,44 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) #define STBIR_FORCE_GATHER_FILTER_SCANLINES_AMOUNT 32 // when downsampling and <= 32 scanlines of buffering, use gather. gather used down to 1/8th scaling for 25% win. #endif -// restrict pointers for the output pointers +#ifndef STBIR_FORCE_MINIMUM_SCANLINES_FOR_SPLITS +#define STBIR_FORCE_MINIMUM_SCANLINES_FOR_SPLITS 4 // when threading, what is the minimum number of scanlines for a split? +#endif + +// restrict pointers for the output pointers, other loop and unroll control #if defined( _MSC_VER ) && !defined(__clang__) #define STBIR_STREAMOUT_PTR( star ) star __restrict #define STBIR_NO_UNROLL( ptr ) __assume(ptr) // this oddly keeps msvc from unrolling a loop -#elif defined( __clang__ ) - #define STBIR_STREAMOUT_PTR( star ) star __restrict__ - #define STBIR_NO_UNROLL( ptr ) __asm__ (""::"r"(ptr)) -#elif defined( __GNUC__ ) + #if _MSC_VER >= 1900 + #define STBIR_NO_UNROLL_LOOP_START __pragma(loop( no_vector )) + #else + #define STBIR_NO_UNROLL_LOOP_START + #endif +#elif defined( __clang__ ) + #define STBIR_STREAMOUT_PTR( star ) star __restrict__ + #define STBIR_NO_UNROLL( ptr ) __asm__ (""::"r"(ptr)) + #if ( __clang_major__ >= 4 ) || ( ( __clang_major__ >= 3 ) && ( __clang_minor__ >= 5 ) ) + #define STBIR_NO_UNROLL_LOOP_START _Pragma("clang loop unroll(disable)") _Pragma("clang loop vectorize(disable)") + #else + #define STBIR_NO_UNROLL_LOOP_START + #endif +#elif defined( __GNUC__ ) #define STBIR_STREAMOUT_PTR( star ) star __restrict__ #define STBIR_NO_UNROLL( ptr ) __asm__ (""::"r"(ptr)) + #if __GNUC__ >= 14 + #define STBIR_NO_UNROLL_LOOP_START _Pragma("GCC unroll 0") _Pragma("GCC novector") + #else + #define STBIR_NO_UNROLL_LOOP_START + #endif + #define STBIR_NO_UNROLL_LOOP_START_INF_FOR #else #define STBIR_STREAMOUT_PTR( star ) star #define STBIR_NO_UNROLL( ptr ) + #define STBIR_NO_UNROLL_LOOP_START +#endif + +#ifndef STBIR_NO_UNROLL_LOOP_START_INF_FOR +#define STBIR_NO_UNROLL_LOOP_START_INF_FOR STBIR_NO_UNROLL_LOOP_START #endif #ifdef STBIR_NO_SIMD // force simd off for whatever reason @@ -1223,7 +1274,7 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) #ifdef STBIR_SSE2 #include - + #define stbir__simdf __m128 #define stbir__simdi __m128i @@ -1254,7 +1305,7 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) #define stbir__simdi_store2( ptr, reg ) _mm_storel_epi64( (__m128i*)(ptr), (reg) ) #define stbir__prefetch( ptr ) _mm_prefetch((char*)(ptr), _MM_HINT_T0 ) - + #define stbir__simdi_expand_u8_to_u32(out0,out1,out2,out3,ireg) \ { \ stbir__simdi zero = _mm_setzero_si128(); \ @@ -1285,7 +1336,7 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) #define stbir__simdf_convert_float_to_uint8( f ) ((unsigned char)_mm_cvtsi128_si32(_mm_cvttps_epi32(_mm_max_ps(_mm_min_ps(f,STBIR__CONSTF(STBIR_max_uint8_as_float)),_mm_setzero_ps())))) #define stbir__simdf_convert_float_to_short( f ) ((unsigned short)_mm_cvtsi128_si32(_mm_cvttps_epi32(_mm_max_ps(_mm_min_ps(f,STBIR__CONSTF(STBIR_max_uint16_as_float)),_mm_setzero_ps())))) - #define stbir__simdi_to_int( i ) _mm_cvtsi128_si32(i) + #define stbir__simdi_to_int( i ) _mm_cvtsi128_si32(i) #define stbir__simdi_convert_i32_to_float(out, ireg) (out) = _mm_cvtepi32_ps( ireg ) #define stbir__simdf_add( out, reg0, reg1 ) (out) = _mm_add_ps( reg0, reg1 ) #define stbir__simdf_mult( out, reg0, reg1 ) (out) = _mm_mul_ps( reg0, reg1 ) @@ -1440,10 +1491,10 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) #define stbir__simdi8_convert_i32_to_float(out, ireg) (out) = _mm256_cvtepi32_ps( ireg ) #define stbir__simdf8_convert_float_to_i32( i, f ) (i) = _mm256_cvttps_epi32(f) - + #define stbir__simdf8_bot4s( out, a, b ) (out) = _mm256_permute2f128_ps(a,b, (0<<0)+(2<<4) ) #define stbir__simdf8_top4s( out, a, b ) (out) = _mm256_permute2f128_ps(a,b, (1<<0)+(3<<4) ) - + #define stbir__simdf8_gettop4( reg ) _mm256_extractf128_ps(reg,1) #ifdef STBIR_AVX2 @@ -1471,8 +1522,8 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) out = _mm256_castsi256_si128( _mm256_permute4x64_epi64( _mm256_packus_epi16( t, t ), (0<<0)+(2<<2)+(1<<4)+(3<<6) ) ); \ } - #define stbir__simdi8_expand_u16_to_u32(out,ireg) out = _mm256_unpacklo_epi16( _mm256_permute4x64_epi64(_mm256_castsi128_si256(ireg),(0<<0)+(2<<2)+(1<<4)+(3<<6)), _mm256_setzero_si256() ); - + #define stbir__simdi8_expand_u16_to_u32(out,ireg) out = _mm256_unpacklo_epi16( _mm256_permute4x64_epi64(_mm256_castsi128_si256(ireg),(0<<0)+(2<<2)+(1<<4)+(3<<6)), _mm256_setzero_si256() ); + #define stbir__simdf8_pack_to_16words(out,aa,bb) \ { \ stbir__simdf8 af,bf; \ @@ -1496,7 +1547,7 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) a = _mm_unpackhi_epi8( ireg, zero ); \ out1 = _mm256_setr_m128i( _mm_unpacklo_epi16( a, zero ), _mm_unpackhi_epi16( a, zero ) ); \ } - + #define stbir__simdf8_pack_to_16bytes(out,aa,bb) \ { \ stbir__simdi t; \ @@ -1514,7 +1565,7 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) t = _mm_packus_epi16( t, t ); \ out = _mm_castps_si128( _mm_shuffle_ps( _mm_castsi128_ps(out), _mm_castsi128_ps(t), (0<<0)+(1<<2)+(0<<4)+(1<<6) ) ); \ } - + #define stbir__simdi8_expand_u16_to_u32(out,ireg) \ { \ stbir__simdi a,b,zero = _mm_setzero_si128(); \ @@ -1549,7 +1600,6 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) #define stbir__simdf8_0123to2222( out, in ) (out) = stbir__simdf_swiz(_mm256_castps256_ps128(in), 2,2,2,2 ) - #define stbir__simdf8_load2( out, ptr ) (out) = _mm256_castsi256_ps(_mm256_castsi128_si256( _mm_loadl_epi64( (__m128i*)(ptr)) )) // top values can be random (not denormal or nan for perf) #define stbir__simdf8_load4b( out, ptr ) (out) = _mm256_broadcast_ps( (__m128 const *)(ptr) ) static __m256i stbir_00112233 = { STBIR__CONST_4d_32i( 0, 0, 1, 1 ), STBIR__CONST_4d_32i( 2, 2, 3, 3 ) }; @@ -1582,11 +1632,11 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) #ifdef STBIR_USE_FMA // not on by default to maintain bit identical simd to non-simd #define stbir__simdf8_madd( out, add, mul1, mul2 ) (out) = _mm256_fmadd_ps( mul1, mul2, add ) #define stbir__simdf8_madd_mem( out, add, mul, ptr ) (out) = _mm256_fmadd_ps( mul, _mm256_loadu_ps( (float const*)(ptr) ), add ) - #define stbir__simdf8_madd_mem4( out, add, mul, ptr ) (out) = _mm256_fmadd_ps( _mm256_castps128_ps256( mul ), _mm256_castps128_ps256( _mm_loadu_ps( (float const*)(ptr) ) ), add ) + #define stbir__simdf8_madd_mem4( out, add, mul, ptr )(out) = _mm256_fmadd_ps( _mm256_setr_m128( mul, _mm_setzero_ps() ), _mm256_setr_m128( _mm_loadu_ps( (float const*)(ptr) ), _mm_setzero_ps() ), add ) #else #define stbir__simdf8_madd( out, add, mul1, mul2 ) (out) = _mm256_add_ps( add, _mm256_mul_ps( mul1, mul2 ) ) #define stbir__simdf8_madd_mem( out, add, mul, ptr ) (out) = _mm256_add_ps( add, _mm256_mul_ps( mul, _mm256_loadu_ps( (float const*)(ptr) ) ) ) - #define stbir__simdf8_madd_mem4( out, add, mul, ptr ) (out) = _mm256_add_ps( add, _mm256_castps128_ps256( _mm_mul_ps( mul, _mm_loadu_ps( (float const*)(ptr) ) ) ) ) + #define stbir__simdf8_madd_mem4( out, add, mul, ptr ) (out) = _mm256_add_ps( add, _mm256_setr_m128( _mm_mul_ps( mul, _mm_loadu_ps( (float const*)(ptr) ) ), _mm_setzero_ps() ) ) #endif #define stbir__if_simdf8_cast_to_simdf4( val ) _mm256_castps256_ps128( val ) @@ -1627,7 +1677,7 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) } #elif defined(STBIR_NEON) - + #include #define stbir__simdf float32x4_t @@ -1686,7 +1736,7 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) #define stbir__simdf_convert_float_to_i32( i, f ) (i) = vreinterpretq_u32_s32( vcvtq_s32_f32(f) ) #define stbir__simdf_convert_float_to_int( f ) vgetq_lane_s32(vcvtq_s32_f32(f), 0) - #define stbir__simdi_to_int( i ) (int)vgetq_lane_u32(i, 0) + #define stbir__simdi_to_int( i ) (int)vgetq_lane_u32(i, 0) #define stbir__simdf_convert_float_to_uint8( f ) ((unsigned char)vgetq_lane_s32(vcvtq_s32_f32(vmaxq_f32(vminq_f32(f,STBIR__CONSTF(STBIR_max_uint8_as_float)),vdupq_n_f32(0))), 0)) #define stbir__simdf_convert_float_to_short( f ) ((unsigned short)vgetq_lane_s32(vcvtq_s32_f32(vmaxq_f32(vminq_f32(f,STBIR__CONSTF(STBIR_max_uint16_as_float)),vdupq_n_f32(0))), 0)) #define stbir__simdi_convert_i32_to_float(out, ireg) (out) = vcvtq_f32_s32( vreinterpretq_s32_u32(ireg) ) @@ -1737,12 +1787,20 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) ((stbir_uint64)(4*b+0)<<32) | ((stbir_uint64)(4*b+1)<<40) | ((stbir_uint64)(4*b+2)<<48) | ((stbir_uint64)(4*b+3)<<56)), \ vcreate_u8( (4*c+0) | ((4*c+1)<<8) | ((4*c+2)<<16) | ((4*c+3)<<24) | \ ((stbir_uint64)(4*d+0)<<32) | ((stbir_uint64)(4*d+1)<<40) | ((stbir_uint64)(4*d+2)<<48) | ((stbir_uint64)(4*d+3)<<56) ) ) + + static stbir__inline uint8x16x2_t stbir_make16x2(float32x4_t rega,float32x4_t regb) + { + uint8x16x2_t r = { vreinterpretq_u8_f32(rega), vreinterpretq_u8_f32(regb) }; + return r; + } #else #define stbir_make16(a,b,c,d) (uint8x16_t){4*a+0,4*a+1,4*a+2,4*a+3,4*b+0,4*b+1,4*b+2,4*b+3,4*c+0,4*c+1,4*c+2,4*c+3,4*d+0,4*d+1,4*d+2,4*d+3} + #define stbir_make16x2(a,b) (uint8x16x2_t){{vreinterpretq_u8_f32(a),vreinterpretq_u8_f32(b)}} #endif #define stbir__simdf_swiz( reg, one, two, three, four ) vreinterpretq_f32_u8( vqtbl1q_u8( vreinterpretq_u8_f32(reg), stbir_make16(one, two, three, four) ) ) - + #define stbir__simdf_swiz2( rega, regb, one, two, three, four ) vreinterpretq_f32_u8( vqtbl2q_u8( stbir_make16x2(rega,regb), stbir_make16(one, two, three, four) ) ) + #define stbir__simdi_16madd( out, reg0, reg1 ) \ { \ int16x8_t r0 = vreinterpretq_s16_u32(reg0); \ @@ -1942,7 +2000,7 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) #define stbir__simdf_convert_float_to_i32( i, f ) (i) = wasm_i32x4_trunc_sat_f32x4(f) #define stbir__simdf_convert_float_to_int( f ) wasm_i32x4_extract_lane(wasm_i32x4_trunc_sat_f32x4(f), 0) - #define stbir__simdi_to_int( i ) wasm_i32x4_extract_lane(i, 0) + #define stbir__simdi_to_int( i ) wasm_i32x4_extract_lane(i, 0) #define stbir__simdf_convert_float_to_uint8( f ) ((unsigned char)wasm_i32x4_extract_lane(wasm_i32x4_trunc_sat_f32x4(wasm_f32x4_max(wasm_f32x4_min(f,STBIR_max_uint8_as_float),wasm_f32x4_const_splat(0))), 0)) #define stbir__simdf_convert_float_to_short( f ) ((unsigned short)wasm_i32x4_extract_lane(wasm_i32x4_trunc_sat_f32x4(wasm_f32x4_max(wasm_f32x4_min(f,STBIR_max_uint16_as_float),wasm_f32x4_const_splat(0))), 0)) #define stbir__simdi_convert_i32_to_float(out, ireg) (out) = wasm_f32x4_convert_i32x4(ireg) @@ -2125,7 +2183,7 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) #endif -#if defined(STBIR_NEON) && !defined(_M_ARM) +#if defined(STBIR_NEON) && !defined(_M_ARM) && !defined(__arm__) #if defined( _MSC_VER ) && !defined(__clang__) typedef __int16 stbir__FP16; @@ -2142,7 +2200,7 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) #endif -#if !defined(STBIR_NEON) && !defined(STBIR_FP16C) || defined(STBIR_NEON) && defined(_M_ARM) +#if (!defined(STBIR_NEON) && !defined(STBIR_FP16C)) || (defined(STBIR_NEON) && defined(_M_ARM)) || (defined(STBIR_NEON) && defined(__arm__)) // Fabian's half float routines, see: https://gist.github.com/rygorous/2156668 @@ -2168,7 +2226,7 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) unsigned int sign_mask = 0x80000000u; stbir__FP16 o = { 0 }; stbir__FP32 f; - unsigned int sign; + unsigned int sign; f.f = val; sign = f.u & sign_mask; @@ -2369,24 +2427,6 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) stbir__simdi_store( output,final ); } -#elif defined(STBIR_WASM) || (defined(STBIR_NEON) && defined(_MSC_VER) && defined(_M_ARM)) // WASM or 32-bit ARM on MSVC/clang - - static stbir__inline void stbir__half_to_float_SIMD(float * output, stbir__FP16 const * input) - { - for (int i=0; i<8; i++) - { - output[i] = stbir__half_to_float(input[i]); - } - } - - static stbir__inline void stbir__float_to_half_SIMD(stbir__FP16 * output, float const * input) - { - for (int i=0; i<8; i++) - { - output[i] = stbir__float_to_half(input[i]); - } - } - #elif defined(STBIR_NEON) && defined(_MSC_VER) && defined(_M_ARM64) && !defined(__clang__) // 64-bit ARM on MSVC (not clang) static stbir__inline void stbir__half_to_float_SIMD(float * output, stbir__FP16 const * input) @@ -2415,7 +2455,7 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) return vget_lane_f16(vcvt_f16_f32(vdupq_n_f32(f)), 0).n16_u16[0]; } -#elif defined(STBIR_NEON) // 64-bit ARM +#elif defined(STBIR_NEON) && ( defined( _M_ARM64 ) || defined( __aarch64__ ) || defined( __arm64__ ) ) // 64-bit ARM static stbir__inline void stbir__half_to_float_SIMD(float * output, stbir__FP16 const * input) { @@ -2441,6 +2481,23 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) return vget_lane_f16(vcvt_f16_f32(vdupq_n_f32(f)), 0); } +#elif defined(STBIR_WASM) || (defined(STBIR_NEON) && (defined(_MSC_VER) || defined(_M_ARM) || defined(__arm__))) // WASM or 32-bit ARM on MSVC/clang + + static stbir__inline void stbir__half_to_float_SIMD(float * output, stbir__FP16 const * input) + { + for (int i=0; i<8; i++) + { + output[i] = stbir__half_to_float(input[i]); + } + } + static stbir__inline void stbir__float_to_half_SIMD(stbir__FP16 * output, float const * input) + { + for (int i=0; i<8; i++) + { + output[i] = stbir__float_to_half(input[i]); + } + } + #endif @@ -2462,10 +2519,10 @@ static stbir__inline stbir_uint8 stbir__linear_to_srgb_uchar(float in) #define stbir__simdf_0123to3012( out, reg ) (out) = stbir__simdf_swiz( reg, 3,0,1,2 ) #define stbir__simdf_0123to0011( out, reg ) (out) = stbir__simdf_swiz( reg, 0,0,1,1 ) #define stbir__simdf_0123to1100( out, reg ) (out) = stbir__simdf_swiz( reg, 1,1,0,0 ) -#define stbir__simdf_0123to2233( out, reg ) (out) = stbir__simdf_swiz( reg, 2,2,3,3 ) -#define stbir__simdf_0123to1133( out, reg ) (out) = stbir__simdf_swiz( reg, 1,1,3,3 ) -#define stbir__simdf_0123to0022( out, reg ) (out) = stbir__simdf_swiz( reg, 0,0,2,2 ) -#define stbir__simdf_0123to1032( out, reg ) (out) = stbir__simdf_swiz( reg, 1,0,3,2 ) +#define stbir__simdf_0123to2233( out, reg ) (out) = stbir__simdf_swiz( reg, 2,2,3,3 ) +#define stbir__simdf_0123to1133( out, reg ) (out) = stbir__simdf_swiz( reg, 1,1,3,3 ) +#define stbir__simdf_0123to0022( out, reg ) (out) = stbir__simdf_swiz( reg, 0,0,2,2 ) +#define stbir__simdf_0123to1032( out, reg ) (out) = stbir__simdf_swiz( reg, 1,0,3,2 ) typedef union stbir__simdi_u32 { @@ -2493,14 +2550,16 @@ static const STBIR__SIMDI_CONST(STBIR_topscale, 0x02000000); // Adding this switch saves about 5K on clang which is Captain Unroll the 3rd. #define STBIR_SIMD_STREAMOUT_PTR( star ) STBIR_STREAMOUT_PTR( star ) #define STBIR_SIMD_NO_UNROLL(ptr) STBIR_NO_UNROLL(ptr) +#define STBIR_SIMD_NO_UNROLL_LOOP_START STBIR_NO_UNROLL_LOOP_START +#define STBIR_SIMD_NO_UNROLL_LOOP_START_INF_FOR STBIR_NO_UNROLL_LOOP_START_INF_FOR #ifdef STBIR_MEMCPY #undef STBIR_MEMCPY -#define STBIR_MEMCPY stbir_simd_memcpy #endif +#define STBIR_MEMCPY stbir_simd_memcpy // override normal use of memcpy with much simpler copy (faster and smaller with our sized copies) -static void stbir_simd_memcpy( void * dest, void const * src, size_t bytes ) +static void stbir_simd_memcpy( void * dest, void const * src, size_t bytes ) { char STBIR_SIMD_STREAMOUT_PTR (*) d = (char*) dest; char STBIR_SIMD_STREAMOUT_PTR( * ) d_end = ((char*) dest) + bytes; @@ -2513,8 +2572,9 @@ static void stbir_simd_memcpy( void * dest, void const * src, size_t bytes ) { if ( bytes < 16 ) { - if ( bytes ) + if ( bytes ) { + STBIR_SIMD_NO_UNROLL_LOOP_START do { STBIR_SIMD_NO_UNROLL(d); @@ -2529,8 +2589,9 @@ static void stbir_simd_memcpy( void * dest, void const * src, size_t bytes ) // do one unaligned to get us aligned for the stream out below stbir__simdf_load( x, ( d + ofs_to_src ) ); stbir__simdf_store( d, x ); - d = (char*)( ( ( (ptrdiff_t)d ) + 16 ) & ~15 ); + d = (char*)( ( ( (size_t)d ) + 16 ) & ~15 ); + STBIR_SIMD_NO_UNROLL_LOOP_START_INF_FOR for(;;) { STBIR_SIMD_NO_UNROLL(d); @@ -2561,12 +2622,13 @@ static void stbir_simd_memcpy( void * dest, void const * src, size_t bytes ) stbir__simdfX_store( d + 4*stbir__simdfX_float_count, x1 ); stbir__simdfX_store( d + 8*stbir__simdfX_float_count, x2 ); stbir__simdfX_store( d + 12*stbir__simdfX_float_count, x3 ); - d = (char*)( ( ( (ptrdiff_t)d ) + (16*stbir__simdfX_float_count) ) & ~((16*stbir__simdfX_float_count)-1) ); + d = (char*)( ( ( (size_t)d ) + (16*stbir__simdfX_float_count) ) & ~((16*stbir__simdfX_float_count)-1) ); + STBIR_SIMD_NO_UNROLL_LOOP_START_INF_FOR for(;;) { STBIR_SIMD_NO_UNROLL(d); - + if ( d > ( d_end - (16*stbir__simdfX_float_count) ) ) { if ( d == d_end ) @@ -2590,7 +2652,7 @@ static void stbir_simd_memcpy( void * dest, void const * src, size_t bytes ) // memcpy that is specically intentionally overlapping (src is smaller then dest, so can be // a normal forward copy, bytes is divisible by 4 and bytes is greater than or equal to // the diff between dest and src) -static void stbir_overlapping_memcpy( void * dest, void const * src, size_t bytes ) +static void stbir_overlapping_memcpy( void * dest, void const * src, size_t bytes ) { char STBIR_SIMD_STREAMOUT_PTR (*) sd = (char*) src; char STBIR_SIMD_STREAMOUT_PTR( * ) s_end = ((char*) src) + bytes; @@ -2599,6 +2661,7 @@ static void stbir_overlapping_memcpy( void * dest, void const * src, size_t byte if ( ofs_to_dest >= 16 ) // is the overlap more than 16 away? { char STBIR_SIMD_STREAMOUT_PTR( * ) s_end16 = ((char*) src) + (bytes&~15); + STBIR_SIMD_NO_UNROLL_LOOP_START do { stbir__simdf x; @@ -2615,7 +2678,7 @@ static void stbir_overlapping_memcpy( void * dest, void const * src, size_t byte do { STBIR_SIMD_NO_UNROLL(sd); - *(int*)( sd + ofs_to_dest ) = *(int*) sd; + *(int*)( sd + ofs_to_dest ) = *(int*) sd; sd += 4; } while ( sd < s_end ); } @@ -2624,13 +2687,17 @@ static void stbir_overlapping_memcpy( void * dest, void const * src, size_t byte // when in scalar mode, we let unrolling happen, so this macro just does the __restrict #define STBIR_SIMD_STREAMOUT_PTR( star ) STBIR_STREAMOUT_PTR( star ) -#define STBIR_SIMD_NO_UNROLL(ptr) +#define STBIR_SIMD_NO_UNROLL(ptr) +#define STBIR_SIMD_NO_UNROLL_LOOP_START +#define STBIR_SIMD_NO_UNROLL_LOOP_START_INF_FOR #endif // SSE2 #ifdef STBIR_PROFILE +#ifndef STBIR_PROFILE_FUNC + #if defined(_x86_64) || defined( __x86_64__ ) || defined( _M_X64 ) || defined(__x86_64) || defined(__SSE2__) || defined(STBIR_SSE) || defined( _M_IX86_FP ) || defined(__i386) || defined( __i386__ ) || defined( _M_IX86 ) || defined( _X86_ ) #ifdef _MSC_VER @@ -2640,7 +2707,7 @@ static void stbir_overlapping_memcpy( void * dest, void const * src, size_t byte #else // non msvc - static stbir__inline stbir_uint64 STBIR_PROFILE_FUNC() + static stbir__inline stbir_uint64 STBIR_PROFILE_FUNC() { stbir_uint32 lo, hi; asm volatile ("rdtsc" : "=a" (lo), "=d" (hi) ); @@ -2649,7 +2716,7 @@ static void stbir_overlapping_memcpy( void * dest, void const * src, size_t byte #endif // msvc -#elif defined( _M_ARM64 ) || defined( __aarch64__ ) || defined( __arm64__ ) || defined(__ARM_NEON__) +#elif defined( _M_ARM64 ) || defined( __aarch64__ ) || defined( __arm64__ ) || defined(__ARM_NEON__) #if defined( _MSC_VER ) && !defined(__clang__) @@ -2670,8 +2737,9 @@ static void stbir_overlapping_memcpy( void * dest, void const * src, size_t byte #error Unknown platform for profiling. -#endif //x64 and +#endif // x64, arm +#endif // STBIR_PROFILE_FUNC #define STBIR_ONLY_PROFILE_GET_SPLIT_INFO ,stbir__per_split_info * split_info #define STBIR_ONLY_PROFILE_SET_SPLIT_INFO ,split_info @@ -2680,7 +2748,7 @@ static void stbir_overlapping_memcpy( void * dest, void const * src, size_t byte #define STBIR_ONLY_PROFILE_BUILD_SET_INFO ,profile_info // super light-weight micro profiler -#define STBIR_PROFILE_START_ll( info, wh ) { stbir_uint64 wh##thiszonetime = STBIR_PROFILE_FUNC(); stbir_uint64 * wh##save_parent_excluded_ptr = info->current_zone_excluded_ptr; stbir_uint64 wh##current_zone_excluded = 0; info->current_zone_excluded_ptr = &wh##current_zone_excluded; +#define STBIR_PROFILE_START_ll( info, wh ) { stbir_uint64 wh##thiszonetime = STBIR_PROFILE_FUNC(); stbir_uint64 * wh##save_parent_excluded_ptr = info->current_zone_excluded_ptr; stbir_uint64 wh##current_zone_excluded = 0; info->current_zone_excluded_ptr = &wh##current_zone_excluded; #define STBIR_PROFILE_END_ll( info, wh ) wh##thiszonetime = STBIR_PROFILE_FUNC() - wh##thiszonetime; info->profile.named.wh += wh##thiszonetime - wh##current_zone_excluded; *wh##save_parent_excluded_ptr += wh##thiszonetime; info->current_zone_excluded_ptr = wh##save_parent_excluded_ptr; } #define STBIR_PROFILE_FIRST_START_ll( info, wh ) { int i; info->current_zone_excluded_ptr = &info->profile.named.total; for(i=0;iprofile.array);i++) info->profile.array[i]=0; } STBIR_PROFILE_START_ll( info, wh ); #define STBIR_PROFILE_CLEAR_EXTRAS_ll( info, num ) { int extra; for(extra=1;extra<(num);extra++) { int i; for(i=0;iprofile.array);i++) (info)[extra].profile.array[i]=0; } } @@ -2710,8 +2778,8 @@ static void stbir_overlapping_memcpy( void * dest, void const * src, size_t byte #define STBIR_PROFILE_FIRST_START( wh ) #define STBIR_PROFILE_CLEAR_EXTRAS( ) -#define STBIR_PROFILE_BUILD_START( wh ) -#define STBIR_PROFILE_BUILD_END( wh ) +#define STBIR_PROFILE_BUILD_START( wh ) +#define STBIR_PROFILE_BUILD_END( wh ) #define STBIR_PROFILE_BUILD_FIRST_START( wh ) #define STBIR_PROFILE_BUILD_CLEAR( info ) @@ -2736,10 +2804,10 @@ static void stbir_overlapping_memcpy( void * dest, void const * src, size_t byte #ifndef STBIR_SIMD -// memcpy that is specically intentionally overlapping (src is smaller then dest, so can be +// memcpy that is specifically intentionally overlapping (src is smaller then dest, so can be // a normal forward copy, bytes is divisible by 4 and bytes is greater than or equal to // the diff between dest and src) -static void stbir_overlapping_memcpy( void * dest, void const * src, size_t bytes ) +static void stbir_overlapping_memcpy( void * dest, void const * src, size_t bytes ) { char STBIR_SIMD_STREAMOUT_PTR (*) sd = (char*) src; char STBIR_SIMD_STREAMOUT_PTR( * ) s_end = ((char*) src) + bytes; @@ -2748,10 +2816,11 @@ static void stbir_overlapping_memcpy( void * dest, void const * src, size_t byte if ( ofs_to_dest >= 8 ) // is the overlap more than 8 away? { char STBIR_SIMD_STREAMOUT_PTR( * ) s_end8 = ((char*) src) + (bytes&~7); + STBIR_NO_UNROLL_LOOP_START do { STBIR_NO_UNROLL(sd); - *(stbir_uint64*)( sd + ofs_to_dest ) = *(stbir_uint64*) sd; + *(stbir_uint64*)( sd + ofs_to_dest ) = *(stbir_uint64*) sd; sd += 8; } while ( sd < s_end8 ); @@ -2759,10 +2828,11 @@ static void stbir_overlapping_memcpy( void * dest, void const * src, size_t byte return; } + STBIR_NO_UNROLL_LOOP_START do { STBIR_NO_UNROLL(sd); - *(int*)( sd + ofs_to_dest ) = *(int*) sd; + *(int*)( sd + ofs_to_dest ) = *(int*) sd; sd += 4; } while ( sd < s_end ); } @@ -2863,13 +2933,6 @@ static float stbir__filter_mitchell(float x, float s, void * user_data) return (0.0f); } -static float stbir__support_zero(float s, void * user_data) -{ - STBIR__UNUSED(s); - STBIR__UNUSED(user_data); - return 0; -} - static float stbir__support_zeropoint5(float s, void * user_data) { STBIR__UNUSED(s); @@ -2884,7 +2947,7 @@ static float stbir__support_one(float s, void * user_data) return 1; } -static float stbir__support_two(float s, void * user_data) +static float stbir__support_two(float s, void * user_data) { STBIR__UNUSED(s); STBIR__UNUSED(user_data); @@ -2903,7 +2966,7 @@ static int stbir__get_filter_pixel_width(stbir__support_callback * support, floa return (int)STBIR_CEILF(support(scale,user_data) * 2.0f / scale); } -// this is how many coefficents per run of the filter (which is different +// this is how many coefficents per run of the filter (which is different // from the filter_pixel_width depending on if we are scattering or gathering) static int stbir__get_coefficient_width(stbir__sampler * samp, int is_gather, void * user_data) { @@ -2924,7 +2987,7 @@ static int stbir__get_coefficient_width(stbir__sampler * samp, int is_gather, vo } } -static int stbir__get_contributors(stbir__sampler * samp, int is_gather) +static int stbir__get_contributors(stbir__sampler * samp, int is_gather) { if (is_gather) return samp->scale_info.output_sub_size; @@ -2954,7 +3017,7 @@ static int stbir__edge_reflect_full( int n, int max ) { if (n < 0) { - if (n > -max) + if (n > -max) return -n; else return max - 1; @@ -3056,7 +3119,7 @@ static void stbir__get_extents( stbir__sampler * samp, stbir__extents * scanline left_margin = -min_n; min_n = 0; } - + right_margin = 0; if ( max_n >= input_full_size ) { @@ -3081,7 +3144,7 @@ static void stbir__get_extents( stbir__sampler * samp, stbir__extents * scanline // don't have to do edge calc for zero clamp if ( edge == STBIR_EDGE_ZERO ) return; - + // convert margin pixels to the pixels within the input (min and max) for( j = -left_margin ; j < 0 ; j++ ) { @@ -3179,20 +3242,20 @@ static void stbir__calculate_in_pixel_range( int * first_pixel, int * last_pixel float out_pixel_influence_lowerbound = out_pixel_center - out_filter_radius; float out_pixel_influence_upperbound = out_pixel_center + out_filter_radius; - float in_pixel_influence_lowerbound = (out_pixel_influence_lowerbound + out_shift) * inv_scale; - float in_pixel_influence_upperbound = (out_pixel_influence_upperbound + out_shift) * inv_scale; + float in_pixel_influence_lowerbound = (out_pixel_influence_lowerbound + out_shift) * inv_scale; + float in_pixel_influence_upperbound = (out_pixel_influence_upperbound + out_shift) * inv_scale; first = (int)(STBIR_FLOORF(in_pixel_influence_lowerbound + 0.5f)); last = (int)(STBIR_FLOORF(in_pixel_influence_upperbound - 0.5f)); if ( edge == STBIR_EDGE_WRAP ) { - if ( first <= -input_size ) - first = -(input_size-1); + if ( first < -input_size ) + first = -input_size; if ( last >= (input_size*2)) last = (input_size*2) - 1; } - + *first_pixel = first; *last_pixel = last; } @@ -3213,10 +3276,10 @@ static void stbir__calculate_coefficients_for_gather_upsample( float out_filter_ int i; int last_non_zero; float out_pixel_center = (float)n + 0.5f; - float in_center_of_out = (out_pixel_center + out_shift) * inv_scale; + float in_center_of_out = (out_pixel_center + out_shift) * inv_scale; int in_first_pixel, in_last_pixel; - + stbir__calculate_in_pixel_range( &in_first_pixel, &in_last_pixel, out_pixel_center, out_filter_radius, inv_scale, out_shift, input_size, edge ); last_non_zero = -1; @@ -3229,7 +3292,7 @@ static void stbir__calculate_coefficients_for_gather_upsample( float out_filter_ if ( ( ( coeff < stbir__small_float ) && ( coeff > -stbir__small_float ) ) ) { if ( i == 0 ) // if we're at the front, just eat zero contributors - { + { STBIR_ASSERT ( ( in_last_pixel - in_first_pixel ) != 0 ); // there should be at least one contrib ++in_first_pixel; i--; @@ -3239,10 +3302,10 @@ static void stbir__calculate_coefficients_for_gather_upsample( float out_filter_ } else last_non_zero = i; - + coefficient_group[i] = coeff; } - + in_last_pixel = last_non_zero+in_first_pixel; // kills trailing zeros contributors->n0 = in_first_pixel; contributors->n1 = in_last_pixel; @@ -3354,7 +3417,7 @@ static void stbir__calculate_coefficients_for_gather_downsample( int start, int stbir__contributors * contribs = contributors + out; // is this the first time this output pixel has been seen? Init it. - if ( out > first_out_inited ) + if ( out > first_out_inited ) { STBIR_ASSERT( out == ( first_out_inited + 1 ) ); // ensure we have only advanced one at time first_out_inited = out; @@ -3362,7 +3425,7 @@ static void stbir__calculate_coefficients_for_gather_downsample( int start, int contribs->n1 = in_pixel; coeffs[0] = coeff; } - else + else { // insert on end (always in order) if ( coeffs[0] == 0.0f ) // if the first coefficent is zero, then zap it for this coeffs @@ -3379,10 +3442,16 @@ static void stbir__calculate_coefficients_for_gather_downsample( int start, int } } +#ifdef STBIR_RENORMALIZE_IN_FLOAT +#define STBIR_RENORM_TYPE float +#else +#define STBIR_RENORM_TYPE double +#endif + static void stbir__cleanup_gathered_coefficients( stbir_edge edge, stbir__filter_extent_info* filter_info, stbir__scale_info * scale_info, int num_contributors, stbir__contributors* contributors, float * coefficient_group, int coefficient_width ) { int input_size = scale_info->input_full_size; - int input_last_n1 = input_size - 1; + int input_last_n1 = input_size - 1; int n, end; int lowest = 0x7fffffff; int highest = -0x7fffffff; @@ -3400,14 +3469,14 @@ static void stbir__cleanup_gathered_coefficients( stbir_edge edge, stbir__filter for (n = 0; n < end; n++) { int i; - float filter_scale, total_filter = 0; + STBIR_RENORM_TYPE filter_scale, total_filter = 0; int e; // add all contribs e = contribs->n1 - contribs->n0; for( i = 0 ; i <= e ; i++ ) { - total_filter += coeffs[i]; + total_filter += (STBIR_RENORM_TYPE) coeffs[i]; STBIR_ASSERT( ( coeffs[i] >= -2.0f ) && ( coeffs[i] <= 2.0f ) ); // check for wonky weights } @@ -3423,10 +3492,11 @@ static void stbir__cleanup_gathered_coefficients( stbir_edge edge, stbir__filter // if the total isn't 1.0, rescale everything if ( ( total_filter < (1.0f-stbir__small_float) ) || ( total_filter > (1.0f+stbir__small_float) ) ) { - filter_scale = 1.0f / total_filter; + filter_scale = ((STBIR_RENORM_TYPE)1.0) / total_filter; + // scale them all for (i = 0; i <= e; i++) - coeffs[i] *= filter_scale; + coeffs[i] = (float) ( coeffs[i] * filter_scale ); } } ++contribs; @@ -3483,13 +3553,13 @@ static void stbir__cleanup_gathered_coefficients( stbir_edge edge, stbir__filter else if ( ( edge == STBIR_EDGE_CLAMP ) || ( edge == STBIR_EDGE_REFLECT ) ) { // for clamp and reflect, calculate the true inbounds position (based on edge type) and just add that to the existing weight - + // right hand side first if ( contribs->n1 > input_last_n1 ) { int start = contribs->n0; int endi = contribs->n1; - contribs->n1 = input_last_n1; + contribs->n1 = input_last_n1; for( i = input_size; i <= endi; i++ ) stbir__insert_coeff( contribs, coeffs, stbir__edge_wrap_slow[edge]( i, input_size ), coeffs[i-start] ); } @@ -3500,18 +3570,18 @@ static void stbir__cleanup_gathered_coefficients( stbir_edge edge, stbir__filter int save_n0; float save_n0_coeff; float * c = coeffs - ( contribs->n0 + 1 ); - + // reinsert the coeffs with it reflected or clamped (insert accumulates, if the coeffs exist) - for( i = -1 ; i > contribs->n0 ; i-- ) + for( i = -1 ; i > contribs->n0 ; i-- ) stbir__insert_coeff( contribs, coeffs, stbir__edge_wrap_slow[edge]( i, input_size ), *c-- ); save_n0 = contribs->n0; save_n0_coeff = c[0]; // save it, since we didn't do the final one (i==n0), because there might be too many coeffs to hold (before we resize)! // now slide all the coeffs down (since we have accumulated them in the positive contribs) and reset the first contrib - contribs->n0 = 0; + contribs->n0 = 0; for(i = 0 ; i <= contribs->n1 ; i++ ) coeffs[i] = coeffs[i-save_n0]; - + // now that we have shrunk down the contribs, we insert the first one safely stbir__insert_coeff( contribs, coeffs, stbir__edge_wrap_slow[edge]( save_n0, input_size ), save_n0_coeff ); } @@ -3547,7 +3617,9 @@ static void stbir__cleanup_gathered_coefficients( stbir_edge edge, stbir__filter filter_info->widest = widest; } -static int stbir__pack_coefficients( int num_contributors, stbir__contributors* contributors, float * coefficents, int coefficient_width, int widest, int row_width ) +#undef STBIR_RENORM_TYPE + +static int stbir__pack_coefficients( int num_contributors, stbir__contributors* contributors, float * coefficents, int coefficient_width, int widest, int row0, int row1 ) { #define STBIR_MOVE_1( dest, src ) { STBIR_NO_UNROLL(dest); ((stbir_uint32*)(dest))[0] = ((stbir_uint32*)(src))[0]; } #define STBIR_MOVE_2( dest, src ) { STBIR_NO_UNROLL(dest); ((stbir_uint64*)(dest))[0] = ((stbir_uint64*)(src))[0]; } @@ -3556,6 +3628,10 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* #else #define STBIR_MOVE_4( dest, src ) { STBIR_NO_UNROLL(dest); ((stbir_uint64*)(dest))[0] = ((stbir_uint64*)(src))[0]; ((stbir_uint64*)(dest))[1] = ((stbir_uint64*)(src))[1]; } #endif + + int row_end = row1 + 1; + STBIR__UNUSED( row0 ); // only used in an assert + if ( coefficient_width != widest ) { float * pc = coefficents; @@ -3564,6 +3640,7 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* switch( widest ) { case 1: + STBIR_NO_UNROLL_LOOP_START do { STBIR_MOVE_1( pc, coeffs ); ++pc; @@ -3571,6 +3648,7 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* } while ( pc < pc_end ); break; case 2: + STBIR_NO_UNROLL_LOOP_START do { STBIR_MOVE_2( pc, coeffs ); pc += 2; @@ -3578,6 +3656,7 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* } while ( pc < pc_end ); break; case 3: + STBIR_NO_UNROLL_LOOP_START do { STBIR_MOVE_2( pc, coeffs ); STBIR_MOVE_1( pc+2, coeffs+2 ); @@ -3586,6 +3665,7 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* } while ( pc < pc_end ); break; case 4: + STBIR_NO_UNROLL_LOOP_START do { STBIR_MOVE_4( pc, coeffs ); pc += 4; @@ -3593,6 +3673,7 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* } while ( pc < pc_end ); break; case 5: + STBIR_NO_UNROLL_LOOP_START do { STBIR_MOVE_4( pc, coeffs ); STBIR_MOVE_1( pc+4, coeffs+4 ); @@ -3601,6 +3682,7 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* } while ( pc < pc_end ); break; case 6: + STBIR_NO_UNROLL_LOOP_START do { STBIR_MOVE_4( pc, coeffs ); STBIR_MOVE_2( pc+4, coeffs+4 ); @@ -3609,6 +3691,7 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* } while ( pc < pc_end ); break; case 7: + STBIR_NO_UNROLL_LOOP_START do { STBIR_MOVE_4( pc, coeffs ); STBIR_MOVE_2( pc+4, coeffs+4 ); @@ -3618,6 +3701,7 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* } while ( pc < pc_end ); break; case 8: + STBIR_NO_UNROLL_LOOP_START do { STBIR_MOVE_4( pc, coeffs ); STBIR_MOVE_4( pc+4, coeffs+4 ); @@ -3626,6 +3710,7 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* } while ( pc < pc_end ); break; case 9: + STBIR_NO_UNROLL_LOOP_START do { STBIR_MOVE_4( pc, coeffs ); STBIR_MOVE_4( pc+4, coeffs+4 ); @@ -3635,6 +3720,7 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* } while ( pc < pc_end ); break; case 10: + STBIR_NO_UNROLL_LOOP_START do { STBIR_MOVE_4( pc, coeffs ); STBIR_MOVE_4( pc+4, coeffs+4 ); @@ -3644,6 +3730,7 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* } while ( pc < pc_end ); break; case 11: + STBIR_NO_UNROLL_LOOP_START do { STBIR_MOVE_4( pc, coeffs ); STBIR_MOVE_4( pc+4, coeffs+4 ); @@ -3654,6 +3741,7 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* } while ( pc < pc_end ); break; case 12: + STBIR_NO_UNROLL_LOOP_START do { STBIR_MOVE_4( pc, coeffs ); STBIR_MOVE_4( pc+4, coeffs+4 ); @@ -3663,6 +3751,7 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* } while ( pc < pc_end ); break; default: + STBIR_NO_UNROLL_LOOP_START do { float * copy_end = pc + widest - 4; float * c = coeffs; @@ -3673,6 +3762,7 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* c += 4; } while ( pc <= copy_end ); copy_end += 4; + STBIR_NO_UNROLL_LOOP_START while ( pc < copy_end ) { STBIR_MOVE_1( pc, c ); @@ -3688,7 +3778,7 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* coefficents[ widest * num_contributors ] = 8888.0f; // the minimum we might read for unrolled filters widths is 12. So, we need to - // make sure we never read outside the decode buffer, by possibly moving + // make sure we never read outside the decode buffer, by possibly moving // the sample area back into the scanline, and putting zeros weights first. // we start on the right edge and check until we're well past the possible // clip area (2*widest). @@ -3697,13 +3787,13 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* float * coeffs = coefficents + widest * ( num_contributors - 1 ); // go until no chance of clipping (this is usually less than 8 lops) - while ( ( ( contribs->n0 + widest*2 ) >= row_width ) && ( contribs >= contributors ) ) + while ( ( contribs >= contributors ) && ( ( contribs->n0 + widest*2 ) >= row_end ) ) { // might we clip?? - if ( ( contribs->n0 + widest ) > row_width ) + if ( ( contribs->n0 + widest ) > row_end ) { int stop_range = widest; - + // if range is larger than 12, it will be handled by generic loops that can terminate on the exact length // of this contrib n1, instead of a fixed widest amount - so calculate this if ( widest > 12 ) @@ -3712,22 +3802,22 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* // how far will be read in the n_coeff loop (which depends on the widest count mod4); mod = widest & 3; - stop_range = ( ( ( contribs->n1 - contribs->n0 + 1 ) - mod + 3 ) & ~3 ) + mod; + stop_range = ( ( ( contribs->n1 - contribs->n0 + 1 ) - mod + 3 ) & ~3 ) + mod; // the n_coeff loops do a minimum amount of coeffs, so factor that in! if ( stop_range < ( 8 + mod ) ) stop_range = 8 + mod; } // now see if we still clip with the refined range - if ( ( contribs->n0 + stop_range ) > row_width ) + if ( ( contribs->n0 + stop_range ) > row_end ) { - int new_n0 = row_width - stop_range; + int new_n0 = row_end - stop_range; int num = contribs->n1 - contribs->n0 + 1; int backup = contribs->n0 - new_n0; float * from_co = coeffs + num - 1; float * to_co = from_co + backup; - STBIR_ASSERT( ( new_n0 >= 0 ) && ( new_n0 < contribs->n0 ) ); + STBIR_ASSERT( ( new_n0 >= row0 ) && ( new_n0 < contribs->n0 ) ); // move the coeffs over while( num ) @@ -3746,7 +3836,7 @@ static int stbir__pack_coefficients( int num_contributors, stbir__contributors* // how far will be read in the n_coeff loop (which depends on the widest count mod4); mod = widest & 3; - stop_range = ( ( ( contribs->n1 - contribs->n0 + 1 ) - mod + 3 ) & ~3 ) + mod; + stop_range = ( ( ( contribs->n1 - contribs->n0 + 1 ) - mod + 3 ) & ~3 ) + mod; // the n_coeff loops do a minimum amount of coeffs, so factor that in! if ( stop_range < ( 8 + mod ) ) stop_range = 8 + mod; @@ -3774,7 +3864,7 @@ static void stbir__calculate_filters( stbir__sampler * samp, stbir__sampler * ot int input_full_size = samp->scale_info.input_full_size; int gather_num_contributors = samp->num_contributors; stbir__contributors* gather_contributors = samp->contributors; - float * gather_coeffs = samp->coefficients; + float * gather_coeffs = samp->coefficients; int gather_coefficient_width = samp->coefficient_width; switch ( samp->is_gather ) @@ -3792,16 +3882,16 @@ static void stbir__calculate_filters( stbir__sampler * samp, stbir__sampler * ot break; case 0: // scatter downsample (only on vertical) - case 2: // gather downsample + case 2: // gather downsample { float in_pixels_radius = support(scale,user_data) * inv_scale; int filter_pixel_margin = samp->filter_pixel_margin; int input_end = input_full_size + filter_pixel_margin; - + // if this is a scatter, we do a downsample gather to get the coeffs, and then pivot after if ( !samp->is_gather ) { - // check if we are using the same gather downsample on the horizontal as this vertical, + // check if we are using the same gather downsample on the horizontal as this vertical, // if so, then we don't have to generate them, we can just pivot from the horizontal. if ( other_axis_for_pivot ) { @@ -3846,30 +3936,37 @@ static void stbir__calculate_filters( stbir__sampler * samp, stbir__sampler * ot float * scatter_coeffs = samp->coefficients + ( gn0 + filter_pixel_margin ) * scatter_coefficient_width; float * g_coeffs = gather_coeffs; scatter_contributors = samp->contributors + ( gn0 + filter_pixel_margin ); - + for (k = gn0 ; k <= gn1 ; k++ ) { float gc = *g_coeffs++; - if ( ( k > highest_set ) || ( scatter_contributors->n0 > scatter_contributors->n1 ) ) + + // skip zero and denormals - must skip zeros to avoid adding coeffs beyond scatter_coefficient_width + // (which happens when pivoting from horizontal, which might have dummy zeros) + if ( ( ( gc >= stbir__small_float ) || ( gc <= -stbir__small_float ) ) ) { + if ( ( k > highest_set ) || ( scatter_contributors->n0 > scatter_contributors->n1 ) ) { - // if we are skipping over several contributors, we need to clear the skipped ones - stbir__contributors * clear_contributors = samp->contributors + ( highest_set + filter_pixel_margin + 1); - while ( clear_contributors < scatter_contributors ) { - clear_contributors->n0 = 0; - clear_contributors->n1 = -1; - ++clear_contributors; + // if we are skipping over several contributors, we need to clear the skipped ones + stbir__contributors * clear_contributors = samp->contributors + ( highest_set + filter_pixel_margin + 1); + while ( clear_contributors < scatter_contributors ) + { + clear_contributors->n0 = 0; + clear_contributors->n1 = -1; + ++clear_contributors; + } } + scatter_contributors->n0 = n; + scatter_contributors->n1 = n; + scatter_coeffs[0] = gc; + highest_set = k; } - scatter_contributors->n0 = n; - scatter_contributors->n1 = n; - scatter_coeffs[0] = gc; - highest_set = k; - } - else - { - stbir__insert_coeff( scatter_contributors, scatter_coeffs, n, gc ); + else + { + stbir__insert_coeff( scatter_contributors, scatter_coeffs, n, gc ); + } + STBIR_ASSERT( ( scatter_contributors->n1 - scatter_contributors->n0 + 1 ) <= scatter_coefficient_width ); } ++scatter_contributors; scatter_coeffs += scatter_coefficient_width; @@ -3908,11 +4005,11 @@ static void stbir__calculate_filters( stbir__sampler * samp, stbir__sampler * ot #define stbir__decode_suffix BGRA #define stbir__decode_swizzle -#define stbir__decode_order0 2 +#define stbir__decode_order0 2 #define stbir__decode_order1 1 #define stbir__decode_order2 0 #define stbir__decode_order3 3 -#define stbir__encode_order0 2 +#define stbir__encode_order0 2 #define stbir__encode_order1 1 #define stbir__encode_order2 0 #define stbir__encode_order3 3 @@ -3922,11 +4019,11 @@ static void stbir__calculate_filters( stbir__sampler * samp, stbir__sampler * ot #define stbir__decode_suffix ARGB #define stbir__decode_swizzle -#define stbir__decode_order0 1 +#define stbir__decode_order0 1 #define stbir__decode_order1 2 #define stbir__decode_order2 3 #define stbir__decode_order3 0 -#define stbir__encode_order0 3 +#define stbir__encode_order0 3 #define stbir__encode_order1 0 #define stbir__encode_order2 1 #define stbir__encode_order3 2 @@ -3936,11 +4033,11 @@ static void stbir__calculate_filters( stbir__sampler * samp, stbir__sampler * ot #define stbir__decode_suffix ABGR #define stbir__decode_swizzle -#define stbir__decode_order0 3 +#define stbir__decode_order0 3 #define stbir__decode_order1 2 #define stbir__decode_order2 1 #define stbir__decode_order3 0 -#define stbir__encode_order0 3 +#define stbir__encode_order0 3 #define stbir__encode_order1 2 #define stbir__encode_order2 1 #define stbir__encode_order3 0 @@ -3950,12 +4047,12 @@ static void stbir__calculate_filters( stbir__sampler * samp, stbir__sampler * ot #define stbir__decode_suffix AR #define stbir__decode_swizzle -#define stbir__decode_order0 1 -#define stbir__decode_order1 0 +#define stbir__decode_order0 1 +#define stbir__decode_order1 0 #define stbir__decode_order2 3 #define stbir__decode_order3 2 -#define stbir__encode_order0 1 -#define stbir__encode_order1 0 +#define stbir__encode_order0 1 +#define stbir__encode_order1 0 #define stbir__encode_order2 3 #define stbir__encode_order3 2 #define stbir__coder_min_num 2 @@ -3973,9 +4070,10 @@ static void stbir__fancy_alpha_weight_4ch( float * out_buffer, int width_times_c // fancy alpha is stored internally as R G B A Rpm Gpm Bpm #ifdef STBIR_SIMD - + #ifdef STBIR_SIMD8 decode += 16; + STBIR_NO_UNROLL_LOOP_START while ( decode <= end_decode ) { stbir__simdf8 d0,d1,a0,a1,p0,p1; @@ -3998,8 +4096,9 @@ static void stbir__fancy_alpha_weight_4ch( float * out_buffer, int width_times_c out += 28; } decode -= 16; - #else + #else decode += 8; + STBIR_NO_UNROLL_LOOP_START while ( decode <= end_decode ) { stbir__simdf d0,a0,d1,a1,p0,p1; @@ -4022,12 +4121,14 @@ static void stbir__fancy_alpha_weight_4ch( float * out_buffer, int width_times_c // might be one last odd pixel #ifdef STBIR_SIMD8 + STBIR_NO_UNROLL_LOOP_START while ( decode < end_decode ) #else if ( decode < end_decode ) #endif { stbir__simdf d,a,p; + STBIR_NO_UNROLL(decode); stbir__simdf_load( d, decode ); stbir__simdf_0123to3333( a, d ); stbir__simdf_mult( p, a, d ); @@ -4069,6 +4170,7 @@ static void stbir__fancy_alpha_weight_2ch( float * out_buffer, int width_times_c decode += 8; if ( decode <= end_decode ) { + STBIR_NO_UNROLL_LOOP_START do { #ifdef STBIR_SIMD8 stbir__simdf8 d0,a0,p0; @@ -4077,11 +4179,11 @@ static void stbir__fancy_alpha_weight_2ch( float * out_buffer, int width_times_c stbir__simdf8_0123to11331133( p0, d0 ); stbir__simdf8_0123to00220022( a0, d0 ); stbir__simdf8_mult( p0, p0, a0 ); - + stbir__simdf_store2( out, stbir__if_simdf8_cast_to_simdf4( d0 ) ); stbir__simdf_store( out+2, stbir__if_simdf8_cast_to_simdf4( p0 ) ); stbir__simdf_store2h( out+3, stbir__if_simdf8_cast_to_simdf4( d0 ) ); - + stbir__simdf_store2( out+6, stbir__simdf8_gettop4( d0 ) ); stbir__simdf_store( out+8, stbir__simdf8_gettop4( p0 ) ); stbir__simdf_store2h( out+9, stbir__simdf8_gettop4( d0 ) ); @@ -4112,6 +4214,7 @@ static void stbir__fancy_alpha_weight_2ch( float * out_buffer, int width_times_c decode -= 8; #endif + STBIR_SIMD_NO_UNROLL_LOOP_START while( decode < end_decode ) { float x = decode[0], y = decode[1]; @@ -4132,6 +4235,7 @@ static void stbir__fancy_alpha_unweight_4ch( float * encode_buffer, int width_ti // fancy RGBA is stored internally as R G B A Rpm Gpm Bpm + STBIR_SIMD_NO_UNROLL_LOOP_START do { float alpha = input[3]; #ifdef STBIR_SIMD @@ -4199,6 +4303,7 @@ static void stbir__simple_alpha_weight_4ch( float * decode_buffer, int width_tim #ifdef STBIR_SIMD { decode += 2 * stbir__simdfX_float_count; + STBIR_NO_UNROLL_LOOP_START while ( decode <= end_decode ) { stbir__simdfX d0,a0,d1,a1; @@ -4217,6 +4322,7 @@ static void stbir__simple_alpha_weight_4ch( float * decode_buffer, int width_tim // few last pixels remnants #ifdef STBIR_SIMD8 + STBIR_NO_UNROLL_LOOP_START while ( decode < end_decode ) #else if ( decode < end_decode ) @@ -4252,6 +4358,7 @@ static void stbir__simple_alpha_weight_2ch( float * decode_buffer, int width_tim #ifdef STBIR_SIMD decode += 2 * stbir__simdfX_float_count; + STBIR_NO_UNROLL_LOOP_START while ( decode <= end_decode ) { stbir__simdfX d0,a0,d1,a1; @@ -4269,6 +4376,7 @@ static void stbir__simple_alpha_weight_2ch( float * decode_buffer, int width_tim decode -= 2 * stbir__simdfX_float_count; #endif + STBIR_SIMD_NO_UNROLL_LOOP_START while( decode < end_decode ) { float alpha = decode[1]; @@ -4283,6 +4391,7 @@ static void stbir__simple_alpha_unweight_4ch( float * encode_buffer, int width_t float STBIR_SIMD_STREAMOUT_PTR(*) encode = encode_buffer; float const * end_output = encode_buffer + width_times_channels; + STBIR_SIMD_NO_UNROLL_LOOP_START do { float alpha = encode[3]; @@ -4330,9 +4439,77 @@ static void stbir__simple_flip_3ch( float * decode_buffer, int width_times_chann float STBIR_STREAMOUT_PTR(*) decode = decode_buffer; float const * end_decode = decode_buffer + width_times_channels; - decode += 12; +#ifdef STBIR_SIMD + #ifdef stbir__simdf_swiz2 // do we have two argument swizzles? + end_decode -= 12; + STBIR_NO_UNROLL_LOOP_START + while( decode <= end_decode ) + { + // on arm64 8 instructions, no overlapping stores + stbir__simdf a,b,c,na,nb; + STBIR_SIMD_NO_UNROLL(decode); + stbir__simdf_load( a, decode ); + stbir__simdf_load( b, decode+4 ); + stbir__simdf_load( c, decode+8 ); + + na = stbir__simdf_swiz2( a, b, 2, 1, 0, 5 ); + b = stbir__simdf_swiz2( a, b, 4, 3, 6, 7 ); + nb = stbir__simdf_swiz2( b, c, 0, 1, 4, 3 ); + c = stbir__simdf_swiz2( b, c, 2, 7, 6, 5 ); + + stbir__simdf_store( decode, na ); + stbir__simdf_store( decode+4, nb ); + stbir__simdf_store( decode+8, c ); + decode += 12; + } + end_decode += 12; + #else + end_decode -= 24; + STBIR_NO_UNROLL_LOOP_START + while( decode <= end_decode ) + { + // 26 instructions on x64 + stbir__simdf a,b,c,d,e,f,g; + float i21, i23; + STBIR_SIMD_NO_UNROLL(decode); + stbir__simdf_load( a, decode ); + stbir__simdf_load( b, decode+3 ); + stbir__simdf_load( c, decode+6 ); + stbir__simdf_load( d, decode+9 ); + stbir__simdf_load( e, decode+12 ); + stbir__simdf_load( f, decode+15 ); + stbir__simdf_load( g, decode+18 ); + + a = stbir__simdf_swiz( a, 2, 1, 0, 3 ); + b = stbir__simdf_swiz( b, 2, 1, 0, 3 ); + c = stbir__simdf_swiz( c, 2, 1, 0, 3 ); + d = stbir__simdf_swiz( d, 2, 1, 0, 3 ); + e = stbir__simdf_swiz( e, 2, 1, 0, 3 ); + f = stbir__simdf_swiz( f, 2, 1, 0, 3 ); + g = stbir__simdf_swiz( g, 2, 1, 0, 3 ); + + // stores overlap, need to be in order, + stbir__simdf_store( decode, a ); + i21 = decode[21]; + stbir__simdf_store( decode+3, b ); + i23 = decode[23]; + stbir__simdf_store( decode+6, c ); + stbir__simdf_store( decode+9, d ); + stbir__simdf_store( decode+12, e ); + stbir__simdf_store( decode+15, f ); + stbir__simdf_store( decode+18, g ); + decode[21] = i23; + decode[23] = i21; + decode += 24; + } + end_decode += 24; + #endif +#else + end_decode -= 12; + STBIR_NO_UNROLL_LOOP_START while( decode <= end_decode ) { + // 16 instructions float t0,t1,t2,t3; STBIR_NO_UNROLL(decode); t0 = decode[0]; t1 = decode[3]; t2 = decode[6]; t3 = decode[9]; @@ -4340,8 +4517,10 @@ static void stbir__simple_flip_3ch( float * decode_buffer, int width_times_chann decode[2] = t0; decode[5] = t1; decode[8] = t2; decode[11] = t3; decode += 12; } - decode -= 12; + end_decode += 12; +#endif + STBIR_NO_UNROLL_LOOP_START while( decode < end_decode ) { float t = decode[0]; @@ -4362,14 +4541,14 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir_edge edge_horizontal = stbir_info->horizontal.edge; stbir_edge edge_vertical = stbir_info->vertical.edge; int row = stbir__edge_wrap(edge_vertical, n, stbir_info->vertical.scale_info.input_full_size); - const void* input_plane_data = ( (char *) stbir_info->input_data ) + (ptrdiff_t)row * (ptrdiff_t) stbir_info->input_stride_bytes; + const void* input_plane_data = ( (char *) stbir_info->input_data ) + (size_t)row * (size_t) stbir_info->input_stride_bytes; stbir__span const * spans = stbir_info->scanline_extents.spans; float* full_decode_buffer = output_buffer - stbir_info->scanline_extents.conservative.n0 * effective_channels; // if we are on edge_zero, and we get in here with an out of bounds n, then the calculate filters has failed STBIR_ASSERT( !(edge_vertical == STBIR_EDGE_ZERO && (n < 0 || n >= stbir_info->vertical.scale_info.input_full_size)) ); - do + do { float * decode_buffer; void const * input_data; @@ -4377,7 +4556,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float int width_times_channels; int width; - if ( spans->n1 < spans->n0 ) + if ( spans->n1 < spans->n0 ) break; width = spans->n1 + 1 - spans->n0; @@ -4394,7 +4573,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float // call the callback with a temp buffer (that they can choose to use or not). the temp is just right aligned memory in the decode_buffer itself input_data = stbir_info->in_pixels_cb( ( (char*) end_decode ) - ( width * input_sample_in_bytes ), input_plane_data, width, spans->pixel_offset_for_input, row, stbir_info->user_data ); } - + STBIR_PROFILE_START( decode ); // convert the pixels info the float decode_buffer, (we index from end_decode, so that when channelsdecode_pixels( (float*)end_decode - width_times_channels, width_times_channels, input_data ); @@ -4418,7 +4597,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float // this code only runs if we're in edge_wrap, and we're doing the entire scanline int e, start_x[2]; int input_full_size = stbir_info->horizontal.scale_info.input_full_size; - + start_x[0] = -stbir_info->scanline_extents.edge_sizes[0]; // left edge start x start_x[1] = input_full_size; // right edge @@ -4447,7 +4626,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf tot,c; \ STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf_load1( c, hc ); \ - stbir__simdf_mult1_mem( tot, c, decode ); + stbir__simdf_mult1_mem( tot, c, decode ); #define stbir__2_coeff_only() \ stbir__simdf tot,c,d; \ @@ -4456,7 +4635,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_load2( d, decode ); \ stbir__simdf_mult( tot, c, d ); \ stbir__simdf_0123to1230( c, tot ); \ - stbir__simdf_add1( tot, tot, c ); + stbir__simdf_add1( tot, tot, c ); #define stbir__3_coeff_only() \ stbir__simdf tot,c,t; \ @@ -4466,7 +4645,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_0123to1230( c, tot ); \ stbir__simdf_0123to2301( t, tot ); \ stbir__simdf_add1( tot, tot, c ); \ - stbir__simdf_add1( tot, tot, t ); + stbir__simdf_add1( tot, tot, t ); #define stbir__store_output_tiny() \ stbir__simdf_store1( output, tot ); \ @@ -4483,7 +4662,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float #define stbir__4_coeff_continue_from_4( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf_load( c, hc + (ofs) ); \ - stbir__simdf_madd_mem( tot, tot, c, decode+(ofs) ); + stbir__simdf_madd_mem( tot, tot, c, decode+(ofs) ); #define stbir__1_coeff_remnant( ofs ) \ { stbir__simdf d; \ @@ -4495,7 +4674,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float { stbir__simdf d; \ stbir__simdf_load2z( c, hc+(ofs) ); \ stbir__simdf_load2( d, decode+(ofs) ); \ - stbir__simdf_madd( tot, tot, d, c ); } + stbir__simdf_madd( tot, tot, d, c ); } #define stbir__3_coeff_setup() \ stbir__simdf mask; \ @@ -4520,18 +4699,18 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float #define stbir__1_coeff_only() \ float tot; \ - tot = decode[0]*hc[0]; + tot = decode[0]*hc[0]; #define stbir__2_coeff_only() \ float tot; \ tot = decode[0] * hc[0]; \ - tot += decode[1] * hc[1]; + tot += decode[1] * hc[1]; #define stbir__3_coeff_only() \ float tot; \ tot = decode[0] * hc[0]; \ tot += decode[1] * hc[1]; \ - tot += decode[2] * hc[2]; + tot += decode[2] * hc[2]; #define stbir__store_output_tiny() \ output[0] = tot; \ @@ -4544,16 +4723,16 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float tot0 = decode[0] * hc[0]; \ tot1 = decode[1] * hc[1]; \ tot2 = decode[2] * hc[2]; \ - tot3 = decode[3] * hc[3]; + tot3 = decode[3] * hc[3]; #define stbir__4_coeff_continue_from_4( ofs ) \ tot0 += decode[0+(ofs)] * hc[0+(ofs)]; \ tot1 += decode[1+(ofs)] * hc[1+(ofs)]; \ tot2 += decode[2+(ofs)] * hc[2+(ofs)]; \ - tot3 += decode[3+(ofs)] * hc[3+(ofs)]; + tot3 += decode[3+(ofs)] * hc[3+(ofs)]; #define stbir__1_coeff_remnant( ofs ) \ - tot0 += decode[0+(ofs)] * hc[0+(ofs)]; + tot0 += decode[0+(ofs)] * hc[0+(ofs)]; #define stbir__2_coeff_remnant( ofs ) \ tot0 += decode[0+(ofs)] * hc[0+(ofs)]; \ @@ -4562,7 +4741,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float #define stbir__3_coeff_remnant( ofs ) \ tot0 += decode[0+(ofs)] * hc[0+(ofs)]; \ tot1 += decode[1+(ofs)] * hc[1+(ofs)]; \ - tot2 += decode[2+(ofs)] * hc[2+(ofs)]; + tot2 += decode[2+(ofs)] * hc[2+(ofs)]; #define stbir__store_output() \ output[0] = (tot0+tot2)+(tot1+tot3); \ @@ -4570,7 +4749,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float ++horizontal_contributors; \ output += 1; -#endif +#endif #define STBIR__horizontal_channels 1 #define STB_IMAGE_RESIZE_DO_HORIZONTALS @@ -4588,14 +4767,14 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_load1z( c, hc ); \ stbir__simdf_0123to0011( c, c ); \ stbir__simdf_load2( d, decode ); \ - stbir__simdf_mult( tot, d, c ); + stbir__simdf_mult( tot, d, c ); #define stbir__2_coeff_only() \ stbir__simdf tot,c; \ STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf_load2( c, hc ); \ stbir__simdf_0123to0011( c, c ); \ - stbir__simdf_mult_mem( tot, c, decode ); + stbir__simdf_mult_mem( tot, c, decode ); #define stbir__3_coeff_only() \ stbir__simdf tot,c,cs,d; \ @@ -4605,7 +4784,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_mult_mem( tot, c, decode ); \ stbir__simdf_0123to2222( c, cs ); \ stbir__simdf_load2z( d, decode+4 ); \ - stbir__simdf_madd( tot, tot, d, c ); + stbir__simdf_madd( tot, tot, d, c ); #define stbir__store_output_tiny() \ stbir__simdf_0123to2301( c, tot ); \ @@ -4628,7 +4807,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf8_load4b( cs, hc + (ofs) ); \ stbir__simdf8_0123to00112233( c, cs ); \ - stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*2 ); + stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*2 ); #define stbir__1_coeff_remnant( ofs ) \ { stbir__simdf t; \ @@ -4649,13 +4828,13 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf8_load4b( cs, hc + (ofs) ); \ stbir__simdf8_0123to00112233( c, cs ); \ stbir__simdf8_load6z( d, decode+(ofs)*2 ); \ - stbir__simdf8_madd( tot0, tot0, c, d ); } + stbir__simdf8_madd( tot0, tot0, c, d ); } #define stbir__store_output() \ - { stbir__simdf t,c; \ + { stbir__simdf t,d; \ stbir__simdf8_add4halves( t, stbir__if_simdf8_cast_to_simdf4(tot0), tot0 ); \ - stbir__simdf_0123to2301( c, t ); \ - stbir__simdf_add( t, t, c ); \ + stbir__simdf_0123to2301( d, t ); \ + stbir__simdf_add( t, t, d ); \ stbir__simdf_store2( output, t ); \ horizontal_coefficients += coefficient_width; \ ++horizontal_contributors; \ @@ -4670,7 +4849,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_0123to0011( c, cs ); \ stbir__simdf_mult_mem( tot0, c, decode ); \ stbir__simdf_0123to2233( c, cs ); \ - stbir__simdf_mult_mem( tot1, c, decode+4 ); + stbir__simdf_mult_mem( tot1, c, decode+4 ); #define stbir__4_coeff_continue_from_4( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ @@ -4678,7 +4857,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_0123to0011( c, cs ); \ stbir__simdf_madd_mem( tot0, tot0, c, decode+(ofs)*2 ); \ stbir__simdf_0123to2233( c, cs ); \ - stbir__simdf_madd_mem( tot1, tot1, c, decode+(ofs)*2+4 ); + stbir__simdf_madd_mem( tot1, tot1, c, decode+(ofs)*2+4 ); #define stbir__1_coeff_remnant( ofs ) \ { stbir__simdf d; \ @@ -4690,7 +4869,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float #define stbir__2_coeff_remnant( ofs ) \ stbir__simdf_load2( cs, hc + (ofs) ); \ stbir__simdf_0123to0011( c, cs ); \ - stbir__simdf_madd_mem( tot0, tot0, c, decode+(ofs)*2 ); + stbir__simdf_madd_mem( tot0, tot0, c, decode+(ofs)*2 ); #define stbir__3_coeff_remnant( ofs ) \ { stbir__simdf d; \ @@ -4699,7 +4878,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_madd_mem( tot0, tot0, c, decode+(ofs)*2 ); \ stbir__simdf_0123to2222( c, cs ); \ stbir__simdf_load2z( d, decode + (ofs) * 2 + 4 ); \ - stbir__simdf_madd( tot1, tot1, d, c ); } + stbir__simdf_madd( tot1, tot1, d, c ); } #define stbir__store_output() \ stbir__simdf_add( tot0, tot0, tot1 ); \ @@ -4718,7 +4897,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float float tota,totb,c; \ c = hc[0]; \ tota = decode[0]*c; \ - totb = decode[1]*c; + totb = decode[1]*c; #define stbir__2_coeff_only() \ float tota,totb,c; \ @@ -4727,7 +4906,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float totb = decode[1]*c; \ c = hc[1]; \ tota += decode[2]*c; \ - totb += decode[3]*c; + totb += decode[3]*c; // this weird order of add matches the simd #define stbir__3_coeff_only() \ @@ -4740,7 +4919,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float totb += decode[5]*c; \ c = hc[1]; \ tota += decode[2]*c; \ - totb += decode[3]*c; + totb += decode[3]*c; #define stbir__store_output_tiny() \ output[0] = tota; \ @@ -4762,7 +4941,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float totb2 = decode[5]*c; \ c = hc[3]; \ tota3 = decode[6]*c; \ - totb3 = decode[7]*c; + totb3 = decode[7]*c; #define stbir__4_coeff_continue_from_4( ofs ) \ c = hc[0+(ofs)]; \ @@ -4776,12 +4955,12 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float totb2 += decode[5+(ofs)*2]*c; \ c = hc[3+(ofs)]; \ tota3 += decode[6+(ofs)*2]*c; \ - totb3 += decode[7+(ofs)*2]*c; + totb3 += decode[7+(ofs)*2]*c; #define stbir__1_coeff_remnant( ofs ) \ c = hc[0+(ofs)]; \ tota0 += decode[0+(ofs)*2] * c; \ - totb0 += decode[1+(ofs)*2] * c; + totb0 += decode[1+(ofs)*2] * c; #define stbir__2_coeff_remnant( ofs ) \ c = hc[0+(ofs)]; \ @@ -4789,7 +4968,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float totb0 += decode[1+(ofs)*2] * c; \ c = hc[1+(ofs)]; \ tota1 += decode[2+(ofs)*2] * c; \ - totb1 += decode[3+(ofs)*2] * c; + totb1 += decode[3+(ofs)*2] * c; #define stbir__3_coeff_remnant( ofs ) \ c = hc[0+(ofs)]; \ @@ -4800,7 +4979,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float totb1 += decode[3+(ofs)*2] * c; \ c = hc[2+(ofs)]; \ tota2 += decode[4+(ofs)*2] * c; \ - totb2 += decode[5+(ofs)*2] * c; + totb2 += decode[5+(ofs)*2] * c; #define stbir__store_output() \ output[0] = (tota0+tota2)+(tota1+tota3); \ @@ -4809,7 +4988,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float ++horizontal_contributors; \ output += 2; -#endif +#endif #define STBIR__horizontal_channels 2 #define STB_IMAGE_RESIZE_DO_HORIZONTALS @@ -4827,7 +5006,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_load1z( c, hc ); \ stbir__simdf_0123to0001( c, c ); \ stbir__simdf_load( d, decode ); \ - stbir__simdf_mult( tot, d, c ); + stbir__simdf_mult( tot, d, c ); #define stbir__2_coeff_only() \ stbir__simdf tot,c,cs,d; \ @@ -4838,7 +5017,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_mult( tot, d, c ); \ stbir__simdf_0123to1111( c, cs ); \ stbir__simdf_load( d, decode+3 ); \ - stbir__simdf_madd( tot, tot, d, c ); + stbir__simdf_madd( tot, tot, d, c ); #define stbir__3_coeff_only() \ stbir__simdf tot,c,d,cs; \ @@ -4852,7 +5031,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_madd( tot, tot, d, c ); \ stbir__simdf_0123to2222( c, cs ); \ stbir__simdf_load( d, decode+6 ); \ - stbir__simdf_madd( tot, tot, d, c ); + stbir__simdf_madd( tot, tot, d, c ); #define stbir__store_output_tiny() \ stbir__simdf_store2( output, tot ); \ @@ -4872,7 +5051,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf8_0123to00001111( c, cs ); \ stbir__simdf8_mult_mem( tot0, c, decode - 1 ); \ stbir__simdf8_0123to22223333( c, cs ); \ - stbir__simdf8_mult_mem( tot1, c, decode+6 - 1 ); + stbir__simdf8_mult_mem( tot1, c, decode+6 - 1 ); #define stbir__4_coeff_continue_from_4( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ @@ -4880,26 +5059,26 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf8_0123to00001111( c, cs ); \ stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*3 - 1 ); \ stbir__simdf8_0123to22223333( c, cs ); \ - stbir__simdf8_madd_mem( tot1, tot1, c, decode+(ofs)*3 + 6 - 1 ); + stbir__simdf8_madd_mem( tot1, tot1, c, decode+(ofs)*3 + 6 - 1 ); #define stbir__1_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf_load1rep4( t, hc + (ofs) ); \ - stbir__simdf8_madd_mem4( tot0, tot0, t, decode+(ofs)*3 - 1 ); + stbir__simdf8_madd_mem4( tot0, tot0, t, decode+(ofs)*3 - 1 ); #define stbir__2_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf8_load4b( cs, hc + (ofs) - 2 ); \ stbir__simdf8_0123to22223333( c, cs ); \ - stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*3 - 1 ); - + stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*3 - 1 ); + #define stbir__3_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf8_load4b( cs, hc + (ofs) ); \ stbir__simdf8_0123to00001111( c, cs ); \ stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*3 - 1 ); \ stbir__simdf8_0123to2222( t, cs ); \ - stbir__simdf8_madd_mem4( tot1, tot1, t, decode+(ofs)*3 + 6 - 1 ); + stbir__simdf8_madd_mem4( tot1, tot1, t, decode+(ofs)*3 + 6 - 1 ); #define stbir__store_output() \ stbir__simdf8_add( tot0, tot0, tot1 ); \ @@ -4930,7 +5109,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_0123to1122( c, cs ); \ stbir__simdf_mult_mem( tot1, c, decode+4 ); \ stbir__simdf_0123to2333( c, cs ); \ - stbir__simdf_mult_mem( tot2, c, decode+8 ); + stbir__simdf_mult_mem( tot2, c, decode+8 ); #define stbir__4_coeff_continue_from_4( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ @@ -4940,13 +5119,13 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_0123to1122( c, cs ); \ stbir__simdf_madd_mem( tot1, tot1, c, decode+(ofs)*3+4 ); \ stbir__simdf_0123to2333( c, cs ); \ - stbir__simdf_madd_mem( tot2, tot2, c, decode+(ofs)*3+8 ); + stbir__simdf_madd_mem( tot2, tot2, c, decode+(ofs)*3+8 ); #define stbir__1_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf_load1z( c, hc + (ofs) ); \ stbir__simdf_0123to0001( c, c ); \ - stbir__simdf_madd_mem( tot0, tot0, c, decode+(ofs)*3 ); + stbir__simdf_madd_mem( tot0, tot0, c, decode+(ofs)*3 ); #define stbir__2_coeff_remnant( ofs ) \ { stbir__simdf d; \ @@ -4956,7 +5135,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_madd_mem( tot0, tot0, c, decode+(ofs)*3 ); \ stbir__simdf_0123to1122( c, cs ); \ stbir__simdf_load2z( d, decode+(ofs)*3+4 ); \ - stbir__simdf_madd( tot1, tot1, c, d ); } + stbir__simdf_madd( tot1, tot1, c, d ); } #define stbir__3_coeff_remnant( ofs ) \ { stbir__simdf d; \ @@ -4968,7 +5147,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_madd_mem( tot1, tot1, c, decode+(ofs)*3+4 ); \ stbir__simdf_0123to2222( c, cs ); \ stbir__simdf_load1z( d, decode+(ofs)*3+8 ); \ - stbir__simdf_madd( tot2, tot2, c, d ); } + stbir__simdf_madd( tot2, tot2, c, d ); } #define stbir__store_output() \ stbir__simdf_0123ABCDto3ABx( c, tot0, tot1 ); \ @@ -4999,7 +5178,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float c = hc[0]; \ tot0 = decode[0]*c; \ tot1 = decode[1]*c; \ - tot2 = decode[2]*c; + tot2 = decode[2]*c; #define stbir__2_coeff_only() \ float tot0, tot1, tot2, c; \ @@ -5010,7 +5189,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float c = hc[1]; \ tot0 += decode[3]*c; \ tot1 += decode[4]*c; \ - tot2 += decode[5]*c; + tot2 += decode[5]*c; #define stbir__3_coeff_only() \ float tot0, tot1, tot2, c; \ @@ -5025,7 +5204,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float c = hc[2]; \ tot0 += decode[6]*c; \ tot1 += decode[7]*c; \ - tot2 += decode[8]*c; + tot2 += decode[8]*c; #define stbir__store_output_tiny() \ output[0] = tot0; \ @@ -5052,7 +5231,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float c = hc[3]; \ totd0 = decode[9]*c; \ totd1 = decode[10]*c; \ - totd2 = decode[11]*c; + totd2 = decode[11]*c; #define stbir__4_coeff_continue_from_4( ofs ) \ c = hc[0+(ofs)]; \ @@ -5070,7 +5249,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float c = hc[3+(ofs)]; \ totd0 += decode[9+(ofs)*3]*c; \ totd1 += decode[10+(ofs)*3]*c; \ - totd2 += decode[11+(ofs)*3]*c; + totd2 += decode[11+(ofs)*3]*c; #define stbir__1_coeff_remnant( ofs ) \ c = hc[0+(ofs)]; \ @@ -5100,7 +5279,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float c = hc[2+(ofs)]; \ totc0 += decode[6+(ofs)*3]*c; \ totc1 += decode[7+(ofs)*3]*c; \ - totc2 += decode[8+(ofs)*3]*c; + totc2 += decode[8+(ofs)*3]*c; #define stbir__store_output() \ output[0] = (tota0+totc0)+(totb0+totd0); \ @@ -5110,7 +5289,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float ++horizontal_contributors; \ output += 3; -#endif +#endif #define STBIR__horizontal_channels 3 #define STB_IMAGE_RESIZE_DO_HORIZONTALS @@ -5126,7 +5305,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf_load1( c, hc ); \ stbir__simdf_0123to0000( c, c ); \ - stbir__simdf_mult_mem( tot, c, decode ); + stbir__simdf_mult_mem( tot, c, decode ); #define stbir__2_coeff_only() \ stbir__simdf tot,c,cs; \ @@ -5135,7 +5314,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_0123to0000( c, cs ); \ stbir__simdf_mult_mem( tot, c, decode ); \ stbir__simdf_0123to1111( c, cs ); \ - stbir__simdf_madd_mem( tot, tot, c, decode+4 ); + stbir__simdf_madd_mem( tot, tot, c, decode+4 ); #define stbir__3_coeff_only() \ stbir__simdf tot,c,cs; \ @@ -5146,7 +5325,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_0123to1111( c, cs ); \ stbir__simdf_madd_mem( tot, tot, c, decode+4 ); \ stbir__simdf_0123to2222( c, cs ); \ - stbir__simdf_madd_mem( tot, tot, c, decode+8 ); + stbir__simdf_madd_mem( tot, tot, c, decode+8 ); #define stbir__store_output_tiny() \ stbir__simdf_store( output, tot ); \ @@ -5163,7 +5342,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf8_0123to00001111( c, cs ); \ stbir__simdf8_mult_mem( tot0, c, decode ); \ stbir__simdf8_0123to22223333( c, cs ); \ - stbir__simdf8_madd_mem( tot0, tot0, c, decode+8 ); + stbir__simdf8_madd_mem( tot0, tot0, c, decode+8 ); #define stbir__4_coeff_continue_from_4( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ @@ -5171,26 +5350,26 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf8_0123to00001111( c, cs ); \ stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*4 ); \ stbir__simdf8_0123to22223333( c, cs ); \ - stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*4+8 ); + stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*4+8 ); #define stbir__1_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf_load1rep4( t, hc + (ofs) ); \ - stbir__simdf8_madd_mem4( tot0, tot0, t, decode+(ofs)*4 ); + stbir__simdf8_madd_mem4( tot0, tot0, t, decode+(ofs)*4 ); #define stbir__2_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf8_load4b( cs, hc + (ofs) - 2 ); \ stbir__simdf8_0123to22223333( c, cs ); \ - stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*4 ); - + stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*4 ); + #define stbir__3_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf8_load4b( cs, hc + (ofs) ); \ stbir__simdf8_0123to00001111( c, cs ); \ stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*4 ); \ stbir__simdf8_0123to2222( t, cs ); \ - stbir__simdf8_madd_mem4( tot0, tot0, t, decode+(ofs)*4+8 ); + stbir__simdf8_madd_mem4( tot0, tot0, t, decode+(ofs)*4+8 ); #define stbir__store_output() \ stbir__simdf8_add4halves( t, stbir__if_simdf8_cast_to_simdf4(tot0), tot0 ); \ @@ -5199,7 +5378,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float ++horizontal_contributors; \ output += 4; -#else +#else #define stbir__4_coeff_start() \ stbir__simdf tot0,tot1,c,cs; \ @@ -5212,7 +5391,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_0123to2222( c, cs ); \ stbir__simdf_madd_mem( tot0, tot0, c, decode+8 ); \ stbir__simdf_0123to3333( c, cs ); \ - stbir__simdf_madd_mem( tot1, tot1, c, decode+12 ); + stbir__simdf_madd_mem( tot1, tot1, c, decode+12 ); #define stbir__4_coeff_continue_from_4( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ @@ -5224,13 +5403,13 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_0123to2222( c, cs ); \ stbir__simdf_madd_mem( tot0, tot0, c, decode+(ofs)*4+8 ); \ stbir__simdf_0123to3333( c, cs ); \ - stbir__simdf_madd_mem( tot1, tot1, c, decode+(ofs)*4+12 ); + stbir__simdf_madd_mem( tot1, tot1, c, decode+(ofs)*4+12 ); #define stbir__1_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf_load1( c, hc + (ofs) ); \ stbir__simdf_0123to0000( c, c ); \ - stbir__simdf_madd_mem( tot0, tot0, c, decode+(ofs)*4 ); + stbir__simdf_madd_mem( tot0, tot0, c, decode+(ofs)*4 ); #define stbir__2_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ @@ -5238,8 +5417,8 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_0123to0000( c, cs ); \ stbir__simdf_madd_mem( tot0, tot0, c, decode+(ofs)*4 ); \ stbir__simdf_0123to1111( c, cs ); \ - stbir__simdf_madd_mem( tot1, tot1, c, decode+(ofs)*4+4 ); - + stbir__simdf_madd_mem( tot1, tot1, c, decode+(ofs)*4+4 ); + #define stbir__3_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf_load( cs, hc + (ofs) ); \ @@ -5365,7 +5544,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float x0 += decode[0+(ofs)*4] * c; \ x1 += decode[1+(ofs)*4] * c; \ x2 += decode[2+(ofs)*4] * c; \ - x3 += decode[3+(ofs)*4] * c; + x3 += decode[3+(ofs)*4] * c; #define stbir__2_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ @@ -5378,8 +5557,8 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float y0 += decode[4+(ofs)*4] * c; \ y1 += decode[5+(ofs)*4] * c; \ y2 += decode[6+(ofs)*4] * c; \ - y3 += decode[7+(ofs)*4] * c; - + y3 += decode[7+(ofs)*4] * c; + #define stbir__3_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ c = hc[0+(ofs)]; \ @@ -5396,7 +5575,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float x0 += decode[8+(ofs)*4] * c; \ x1 += decode[9+(ofs)*4] * c; \ x2 += decode[10+(ofs)*4] * c; \ - x3 += decode[11+(ofs)*4] * c; + x3 += decode[11+(ofs)*4] * c; #define stbir__store_output() \ output[0] = x0 + y0; \ @@ -5407,7 +5586,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float ++horizontal_contributors; \ output += 4; -#endif +#endif #define STBIR__horizontal_channels 4 #define STB_IMAGE_RESIZE_DO_HORIZONTALS @@ -5426,7 +5605,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_load1( c, hc ); \ stbir__simdf_0123to0000( c, c ); \ stbir__simdf_mult_mem( tot0, c, decode ); \ - stbir__simdf_mult_mem( tot1, c, decode+3 ); + stbir__simdf_mult_mem( tot1, c, decode+3 ); #define stbir__2_coeff_only() \ stbir__simdf tot0,tot1,c,cs; \ @@ -5437,7 +5616,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_mult_mem( tot1, c, decode+3 ); \ stbir__simdf_0123to1111( c, cs ); \ stbir__simdf_madd_mem( tot0, tot0, c, decode+7 ); \ - stbir__simdf_madd_mem( tot1, tot1, c,decode+10 ); + stbir__simdf_madd_mem( tot1, tot1, c,decode+10 ); #define stbir__3_coeff_only() \ stbir__simdf tot0,tot1,c,cs; \ @@ -5451,7 +5630,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_madd_mem( tot1, tot1, c, decode+10 ); \ stbir__simdf_0123to2222( c, cs ); \ stbir__simdf_madd_mem( tot0, tot0, c, decode+14 ); \ - stbir__simdf_madd_mem( tot1, tot1, c, decode+17 ); + stbir__simdf_madd_mem( tot1, tot1, c, decode+17 ); #define stbir__store_output_tiny() \ stbir__simdf_store( output+3, tot1 ); \ @@ -5473,7 +5652,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf8_0123to22222222( c, cs ); \ stbir__simdf8_madd_mem( tot0, tot0, c, decode+14 ); \ stbir__simdf8_0123to33333333( c, cs ); \ - stbir__simdf8_madd_mem( tot1, tot1, c, decode+21 ); + stbir__simdf8_madd_mem( tot1, tot1, c, decode+21 ); #define stbir__4_coeff_continue_from_4( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ @@ -5485,19 +5664,19 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf8_0123to22222222( c, cs ); \ stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*7+14 ); \ stbir__simdf8_0123to33333333( c, cs ); \ - stbir__simdf8_madd_mem( tot1, tot1, c, decode+(ofs)*7+21 ); + stbir__simdf8_madd_mem( tot1, tot1, c, decode+(ofs)*7+21 ); #define stbir__1_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf8_load1b( c, hc + (ofs) ); \ - stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*7 ); + stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*7 ); #define stbir__2_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf8_load1b( c, hc + (ofs) ); \ stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*7 ); \ stbir__simdf8_load1b( c, hc + (ofs)+1 ); \ - stbir__simdf8_madd_mem( tot1, tot1, c, decode+(ofs)*7+7 ); + stbir__simdf8_madd_mem( tot1, tot1, c, decode+(ofs)*7+7 ); #define stbir__3_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ @@ -5507,7 +5686,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf8_0123to11111111( c, cs ); \ stbir__simdf8_madd_mem( tot1, tot1, c, decode+(ofs)*7+7 ); \ stbir__simdf8_0123to22222222( c, cs ); \ - stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*7+14 ); + stbir__simdf8_madd_mem( tot0, tot0, c, decode+(ofs)*7+14 ); #define stbir__store_output() \ stbir__simdf8_add( tot0, tot0, tot1 ); \ @@ -5540,7 +5719,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_madd_mem( tot1, tot1, c, decode+17 ); \ stbir__simdf_0123to3333( c, cs ); \ stbir__simdf_madd_mem( tot2, tot2, c, decode+21 ); \ - stbir__simdf_madd_mem( tot3, tot3, c, decode+24 ); + stbir__simdf_madd_mem( tot3, tot3, c, decode+24 ); #define stbir__4_coeff_continue_from_4( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ @@ -5556,7 +5735,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_madd_mem( tot1, tot1, c, decode+(ofs)*7+17 ); \ stbir__simdf_0123to3333( c, cs ); \ stbir__simdf_madd_mem( tot2, tot2, c, decode+(ofs)*7+21 ); \ - stbir__simdf_madd_mem( tot3, tot3, c, decode+(ofs)*7+24 ); + stbir__simdf_madd_mem( tot3, tot3, c, decode+(ofs)*7+24 ); #define stbir__1_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ @@ -5573,8 +5752,8 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_madd_mem( tot1, tot1, c, decode+(ofs)*7+3 ); \ stbir__simdf_0123to1111( c, cs ); \ stbir__simdf_madd_mem( tot2, tot2, c, decode+(ofs)*7+7 ); \ - stbir__simdf_madd_mem( tot3, tot3, c, decode+(ofs)*7+10 ); - + stbir__simdf_madd_mem( tot3, tot3, c, decode+(ofs)*7+10 ); + #define stbir__3_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ stbir__simdf_load( cs, hc + (ofs) ); \ @@ -5586,7 +5765,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float stbir__simdf_madd_mem( tot3, tot3, c, decode+(ofs)*7+10 ); \ stbir__simdf_0123to2222( c, cs ); \ stbir__simdf_madd_mem( tot0, tot0, c, decode+(ofs)*7+14 ); \ - stbir__simdf_madd_mem( tot1, tot1, c, decode+(ofs)*7+17 ); + stbir__simdf_madd_mem( tot1, tot1, c, decode+(ofs)*7+17 ); #define stbir__store_output() \ stbir__simdf_add( tot0, tot0, tot2 ); \ @@ -5610,7 +5789,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float tot3 = decode[3]*c; \ tot4 = decode[4]*c; \ tot5 = decode[5]*c; \ - tot6 = decode[6]*c; + tot6 = decode[6]*c; #define stbir__2_coeff_only() \ float tot0, tot1, tot2, tot3, tot4, tot5, tot6, c; \ @@ -5704,7 +5883,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float y3 += decode[24] * c; \ y4 += decode[25] * c; \ y5 += decode[26] * c; \ - y6 += decode[27] * c; + y6 += decode[27] * c; #define stbir__4_coeff_continue_from_4( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ @@ -5739,7 +5918,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float y3 += decode[24+(ofs)*7] * c; \ y4 += decode[25+(ofs)*7] * c; \ y5 += decode[26+(ofs)*7] * c; \ - y6 += decode[27+(ofs)*7] * c; + y6 += decode[27+(ofs)*7] * c; #define stbir__1_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ @@ -5770,7 +5949,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float y4 += decode[11+(ofs)*7] * c; \ y5 += decode[12+(ofs)*7] * c; \ y6 += decode[13+(ofs)*7] * c; \ - + #define stbir__3_coeff_remnant( ofs ) \ STBIR_SIMD_NO_UNROLL(decode); \ c = hc[0+(ofs)]; \ @@ -5810,7 +5989,7 @@ static void stbir__decode_scanline(stbir__info const * stbir_info, int n, float ++horizontal_contributors; \ output += 7; -#endif +#endif #define STBIR__horizontal_channels 7 #define STB_IMAGE_RESIZE_DO_HORIZONTALS @@ -5937,7 +6116,7 @@ static void stbir__encode_scanline( stbir__info const * stbir_info, void *output // if we have an output callback, we first convert the decode buffer in place (and then hand that to the callback) if ( stbir_info->out_pixels_cb ) output_buffer = encode_buffer; - + STBIR_PROFILE_START( encode ); // convert into the output buffer stbir_info->encode_pixels( output_buffer, width_times_channels, encode_buffer ); @@ -5945,7 +6124,7 @@ static void stbir__encode_scanline( stbir__info const * stbir_info, void *output // if we have an output callback, call it to send the data if ( stbir_info->out_pixels_cb ) - stbir_info->out_pixels_cb( output_buffer_data, num_pixels, row, stbir_info->user_data ); + stbir_info->out_pixels_cb( output_buffer, num_pixels, row, stbir_info->user_data ); } @@ -6015,7 +6194,7 @@ static void stbir__resample_vertical_gather(stbir__info const * stbir_info, stbi stbir__resample_horizontal_gather(stbir_info, encode_buffer, decode_buffer STBIR_ONLY_PROFILE_SET_SPLIT_INFO ); } - stbir__encode_scanline( stbir_info, ( (char *) stbir_info->output_data ) + ((ptrdiff_t)n * (ptrdiff_t)stbir_info->output_stride_bytes), + stbir__encode_scanline( stbir_info, ( (char *) stbir_info->output_data ) + ((size_t)n * (size_t)stbir_info->output_stride_bytes), encode_buffer, n STBIR_ONLY_PROFILE_SET_SPLIT_INFO ); } @@ -6030,7 +6209,7 @@ static void stbir__decode_and_resample_for_vertical_gather_loop(stbir__info cons // update new end scanline split_info->ring_buffer_last_scanline = n; - // get ring buffer + // get ring buffer ring_buffer_index = (split_info->ring_buffer_begin_index + (split_info->ring_buffer_last_scanline - split_info->ring_buffer_first_scanline)) % stbir_info->ring_buffer_num_entries; ring_buffer = stbir__get_ring_buffer_entry(stbir_info, split_info, ring_buffer_index); @@ -6056,7 +6235,7 @@ static void stbir__vertical_gather_loop( stbir__info const * stbir_info, stbir__ // initialize the ring buffer for gathering split_info->ring_buffer_begin_index = 0; - split_info->ring_buffer_first_scanline = stbir_info->vertical.extent_info.lowest; + split_info->ring_buffer_first_scanline = vertical_contributors->n0; split_info->ring_buffer_last_scanline = split_info->ring_buffer_first_scanline - 1; // means "empty" for (y = start_output_y; y < end_output_y; y++) @@ -6080,12 +6259,12 @@ static void stbir__vertical_gather_loop( stbir__info const * stbir_info, stbir__ split_info->ring_buffer_first_scanline++; split_info->ring_buffer_begin_index++; } - + if ( stbir_info->vertical_first ) { float * ring_buffer = stbir__get_ring_buffer_scanline( stbir_info, split_info, ++split_info->ring_buffer_last_scanline ); // Decode the nth scanline from the source image into the decode buffer. - stbir__decode_scanline( stbir_info, split_info->ring_buffer_last_scanline, ring_buffer STBIR_ONLY_PROFILE_SET_SPLIT_INFO ); + stbir__decode_scanline( stbir_info, split_info->ring_buffer_last_scanline, ring_buffer STBIR_ONLY_PROFILE_SET_SPLIT_INFO ); } else { @@ -6108,10 +6287,10 @@ static void stbir__encode_first_scanline_from_scatter(stbir__info const * stbir_ { // evict a scanline out into the output buffer float* ring_buffer_entry = stbir__get_ring_buffer_entry(stbir_info, split_info, split_info->ring_buffer_begin_index ); - + // dump the scanline out - stbir__encode_scanline( stbir_info, ( (char *)stbir_info->output_data ) + ( (ptrdiff_t)split_info->ring_buffer_first_scanline * (ptrdiff_t)stbir_info->output_stride_bytes ), ring_buffer_entry, split_info->ring_buffer_first_scanline STBIR_ONLY_PROFILE_SET_SPLIT_INFO ); - + stbir__encode_scanline( stbir_info, ( (char *)stbir_info->output_data ) + ( (size_t)split_info->ring_buffer_first_scanline * (size_t)stbir_info->output_stride_bytes ), ring_buffer_entry, split_info->ring_buffer_first_scanline STBIR_ONLY_PROFILE_SET_SPLIT_INFO ); + // mark it as empty ring_buffer_entry[ 0 ] = STBIR__FLOAT_EMPTY_MARKER; @@ -6129,10 +6308,10 @@ static void stbir__horizontal_resample_and_encode_first_scanline_from_scatter(st // Now resample it into the buffer. stbir__resample_horizontal_gather( stbir_info, split_info->vertical_buffer, ring_buffer_entry STBIR_ONLY_PROFILE_SET_SPLIT_INFO ); - + // dump the scanline out - stbir__encode_scanline( stbir_info, ( (char *)stbir_info->output_data ) + ( (ptrdiff_t)split_info->ring_buffer_first_scanline * (ptrdiff_t)stbir_info->output_stride_bytes ), split_info->vertical_buffer, split_info->ring_buffer_first_scanline STBIR_ONLY_PROFILE_SET_SPLIT_INFO ); - + stbir__encode_scanline( stbir_info, ( (char *)stbir_info->output_data ) + ( (size_t)split_info->ring_buffer_first_scanline * (size_t)stbir_info->output_stride_bytes ), split_info->vertical_buffer, split_info->ring_buffer_first_scanline STBIR_ONLY_PROFILE_SET_SPLIT_INFO ); + // mark it as empty ring_buffer_entry[ 0 ] = STBIR__FLOAT_EMPTY_MARKER; @@ -6172,7 +6351,7 @@ static void stbir__resample_vertical_scatter(stbir__info const * stbir_info, stb STBIR_PROFILE_END( vertical ); } -typedef void stbir__handle_scanline_for_scatter_func(stbir__info const * stbir_info, stbir__per_split_info* split_info); +typedef void stbir__handle_scanline_for_scatter_func(stbir__info const * stbir_info, stbir__per_split_info* split_info); static void stbir__vertical_scatter_loop( stbir__info const * stbir_info, stbir__per_split_info* split_info, int split_count ) { @@ -6193,7 +6372,7 @@ static void stbir__vertical_scatter_loop( stbir__info const * stbir_info, stbir_ end_input_y = split_info[split_count-1].end_input_y; // adjust for starting offset start_input_y - y = start_input_y + stbir_info->vertical.filter_pixel_margin; + y = start_input_y + stbir_info->vertical.filter_pixel_margin; vertical_contributors += y ; vertical_coefficients += stbir_info->vertical.coefficient_width * y; @@ -6240,7 +6419,7 @@ static void stbir__vertical_scatter_loop( stbir__info const * stbir_info, stbir_ split_info->start_input_y = y; on_first_input_y = 0; - // clip the region + // clip the region if ( out_first_scanline < start_output_y ) { vc += start_output_y - out_first_scanline; @@ -6253,11 +6432,11 @@ static void stbir__vertical_scatter_loop( stbir__info const * stbir_info, stbir_ // if very first scanline, init the index if (split_info->ring_buffer_begin_index < 0) split_info->ring_buffer_begin_index = out_first_scanline - start_output_y; - + STBIR_ASSERT( split_info->ring_buffer_begin_index <= out_first_scanline ); // Decode the nth scanline from the source image into the decode buffer. - stbir__decode_scanline( stbir_info, y, split_info->decode_buffer STBIR_ONLY_PROFILE_SET_SPLIT_INFO ); + stbir__decode_scanline( stbir_info, y, split_info->decode_buffer STBIR_ONLY_PROFILE_SET_SPLIT_INFO ); // When horizontal first, we resample horizontally into the vertical buffer before we scatter it out if ( !stbir_info->vertical_first ) @@ -6269,7 +6448,7 @@ static void stbir__vertical_scatter_loop( stbir__info const * stbir_info, stbir_ if ( ( ( split_info->ring_buffer_last_scanline - split_info->ring_buffer_first_scanline + 1 ) == stbir_info->ring_buffer_num_entries ) && ( out_last_scanline > split_info->ring_buffer_last_scanline ) ) handle_scanline_for_scatter( stbir_info, split_info ); - + // Now the horizontal buffer is ready to write to all ring buffer rows, so do it. stbir__resample_vertical_scatter(stbir_info, split_info, out_first_scanline, out_last_scanline, vc, (float*)scanline_scatter_buffer, (float*)scanline_scatter_buffer_end ); @@ -6305,7 +6484,7 @@ static void stbir__set_sampler(stbir__sampler * samp, stbir_filter filter, stbir if (scale_info->scale >= ( 1.0f - stbir__small_float ) ) { if ( (scale_info->scale <= ( 1.0f + stbir__small_float ) ) && ( STBIR_CEILF(scale_info->pixel_shift) == scale_info->pixel_shift ) ) - filter = STBIR_FILTER_POINT_SAMPLE; + filter = STBIR_FILTER_POINT_SAMPLE; else filter = STBIR_DEFAULT_FILTER_UPSAMPLE; } @@ -6313,7 +6492,7 @@ static void stbir__set_sampler(stbir__sampler * samp, stbir_filter filter, stbir samp->filter_enum = filter; STBIR_ASSERT(samp->filter_enum != 0); - STBIR_ASSERT((unsigned)samp->filter_enum < STBIR_FILTER_OTHER); + STBIR_ASSERT((unsigned)samp->filter_enum < STBIR_FILTER_OTHER); samp->filter_kernel = stbir__builtin_kernels[ filter ]; samp->filter_support = stbir__builtin_supports[ filter ]; @@ -6339,15 +6518,31 @@ static void stbir__set_sampler(stbir__sampler * samp, stbir_filter filter, stbir // pre calculate stuff based on the above samp->coefficient_width = stbir__get_coefficient_width(samp, samp->is_gather, user_data); + // filter_pixel_width is the conservative size in pixels of input that affect an output pixel. + // In rare cases (only with 2 pix to 1 pix with the default filters), it's possible that the + // filter will extend before or after the scanline beyond just one extra entire copy of the + // scanline (we would hit the edge twice). We don't let you do that, so we clamp the total + // width to 3x the total of input pixel (once for the scanline, once for the left side + // overhang, and once for the right side). We only do this for edge mode, since the other + // modes can just re-edge clamp back in again. if ( edge == STBIR_EDGE_WRAP ) - if ( samp->filter_pixel_width > ( scale_info->input_full_size * 2 ) ) // this can only happen when shrinking to a single pixel - samp->filter_pixel_width = scale_info->input_full_size * 2; + if ( samp->filter_pixel_width > ( scale_info->input_full_size * 3 ) ) + samp->filter_pixel_width = scale_info->input_full_size * 3; // This is how much to expand buffers to account for filters seeking outside // the image boundaries. samp->filter_pixel_margin = samp->filter_pixel_width / 2; + + // filter_pixel_margin is the amount that this filter can overhang on just one side of either + // end of the scanline (left or the right). Since we only allow you to overhang 1 scanline's + // worth of pixels, we clamp this one side of overhang to the input scanline size. Again, + // this clamping only happens in rare cases with the default filters (2 pix to 1 pix). + if ( edge == STBIR_EDGE_WRAP ) + if ( samp->filter_pixel_margin > scale_info->input_full_size ) + samp->filter_pixel_margin = scale_info->input_full_size; samp->num_contributors = stbir__get_contributors(samp, samp->is_gather); + samp->contributors_size = samp->num_contributors * sizeof(stbir__contributors); samp->coefficients_size = samp->num_contributors * samp->coefficient_width * sizeof(float) + sizeof(float); // extra sizeof(float) is padding @@ -6397,8 +6592,8 @@ static void stbir__get_conservative_extents( stbir__sampler * samp, stbir__contr range->n0 = in_first_pixel; stbir__calculate_in_pixel_range( &in_first_pixel, &in_last_pixel, (float)output_sub_size, 0, inv_scale, out_shift, input_full_size, edge ); range->n1 = in_last_pixel; - - // now go through the margin to the start of area to find bottom + + // now go through the margin to the start of area to find bottom n = range->n0 + 1; input_end = -filter_pixel_margin; while( n >= input_end ) @@ -6413,7 +6608,7 @@ static void stbir__get_conservative_extents( stbir__sampler * samp, stbir__contr --n; } - // now go through the end of the area through the margin to find top + // now go through the end of the area through the margin to find top n = range->n1 - 1; input_end = n + 1 + filter_pixel_margin; while( n <= input_end ) @@ -6462,7 +6657,7 @@ static void stbir__get_split_info( stbir__per_split_info* split_info, int splits cur = 0; for( i = 0 ; i < splits ; i++ ) { - int each; + int each; split_info[i].start_output_y = cur; each = left / ( splits - i ); split_info[i].end_output_y = cur + each; @@ -6478,7 +6673,7 @@ static void stbir__get_split_info( stbir__per_split_info* split_info, int splits static void stbir__free_internal_mem( stbir__info *info ) { #define STBIR__FREE_AND_CLEAR( ptr ) { if ( ptr ) { void * p = (ptr); (ptr) = 0; STBIR_FREE( p, info->user_data); } } - + if ( info ) { #ifndef STBIR__SEPARATE_ALLOCATIONS @@ -6496,16 +6691,16 @@ static void stbir__free_internal_mem( stbir__info *info ) for( j = 0 ; j < info->alloc_ring_buffer_num_entries ; j++ ) { #ifdef STBIR_SIMD8 - if ( info->effective_channels == 3 ) + if ( info->effective_channels == 3 ) --info->split_info[i].ring_buffers[j]; // avx in 3 channel mode needs one float at the start of the buffer - #endif + #endif STBIR__FREE_AND_CLEAR( info->split_info[i].ring_buffers[j] ); } #ifdef STBIR_SIMD8 - if ( info->effective_channels == 3 ) + if ( info->effective_channels == 3 ) --info->split_info[i].decode_buffer; // avx in 3 channel mode needs one float at the start of the buffer - #endif + #endif STBIR__FREE_AND_CLEAR( info->split_info[i].decode_buffer ); STBIR__FREE_AND_CLEAR( info->split_info[i].ring_buffers ); STBIR__FREE_AND_CLEAR( info->split_info[i].vertical_buffer ); @@ -6522,7 +6717,7 @@ static void stbir__free_internal_mem( stbir__info *info ) STBIR__FREE_AND_CLEAR( info ); #endif } - + #undef STBIR__FREE_AND_CLEAR } @@ -6534,20 +6729,20 @@ static int stbir__get_max_split( int splits, int height ) for( i = 0 ; i < splits ; i++ ) { int each = height / ( splits - i ); - if ( each > max ) + if ( each > max ) max = each; height -= each; } return max; } -static stbir__horizontal_gather_channels_func ** stbir__horizontal_gather_n_coeffs_funcs[8] = -{ +static stbir__horizontal_gather_channels_func ** stbir__horizontal_gather_n_coeffs_funcs[8] = +{ 0, stbir__horizontal_gather_1_channels_with_n_coeffs_funcs, stbir__horizontal_gather_2_channels_with_n_coeffs_funcs, stbir__horizontal_gather_3_channels_with_n_coeffs_funcs, stbir__horizontal_gather_4_channels_with_n_coeffs_funcs, 0,0, stbir__horizontal_gather_7_channels_with_n_coeffs_funcs }; -static stbir__horizontal_gather_channels_func ** stbir__horizontal_gather_channels_funcs[8] = -{ +static stbir__horizontal_gather_channels_func ** stbir__horizontal_gather_channels_funcs[8] = +{ 0, stbir__horizontal_gather_1_channels_funcs, stbir__horizontal_gather_2_channels_funcs, stbir__horizontal_gather_3_channels_funcs, stbir__horizontal_gather_4_channels_funcs, 0,0, stbir__horizontal_gather_7_channels_funcs }; @@ -6622,28 +6817,28 @@ static STBIR__V_FIRST_INFO STBIR__V_FIRST_INFO_BUFFER = {0}; #endif // Figure out whether to scale along the horizontal or vertical first. -// This only *super* important when you are scaling by a massively -// different amount in the vertical vs the horizontal (for example, if -// you are scaling by 2x in the width, and 0.5x in the height, then you -// want to do the vertical scale first, because it's around 3x faster +// This only *super* important when you are scaling by a massively +// different amount in the vertical vs the horizontal (for example, if +// you are scaling by 2x in the width, and 0.5x in the height, then you +// want to do the vertical scale first, because it's around 3x faster // in that order. // -// In more normal circumstances, this makes a 20-40% differences, so +// In more normal circumstances, this makes a 20-40% differences, so // it's good to get right, but not critical. The normal way that you -// decide which direction goes first is just figuring out which -// direction does more multiplies. But with modern CPUs with their +// decide which direction goes first is just figuring out which +// direction does more multiplies. But with modern CPUs with their // fancy caches and SIMD and high IPC abilities, so there's just a lot -// more that goes into it. +// more that goes into it. // -// My handwavy sort of solution is to have an app that does a whole +// My handwavy sort of solution is to have an app that does a whole // bunch of timing for both vertical and horizontal first modes, // and then another app that can read lots of these timing files // and try to search for the best weights to use. Dotimings.c // is the app that does a bunch of timings, and vf_train.c is the -// app that solves for the best weights (and shows how well it +// app that solves for the best weights (and shows how well it // does currently). -static int stbir__should_do_vertical_first( float weights_table[STBIR_RESIZE_CLASSIFICATIONS][4], int horizontal_filter_pixel_width, float horizontal_scale, int horizontal_output_size, int vertical_filter_pixel_width, float vertical_scale, int vertical_output_size, int is_gather, STBIR__V_FIRST_INFO * info ) +static int stbir__should_do_vertical_first( float weights_table[STBIR_RESIZE_CLASSIFICATIONS][4], int horizontal_filter_pixel_width, float horizontal_scale, int horizontal_output_size, int vertical_filter_pixel_width, float vertical_scale, int vertical_output_size, int is_gather, STBIR__V_FIRST_INFO * info ) { double v_cost, h_cost; float * weights; @@ -6655,15 +6850,15 @@ static int stbir__should_do_vertical_first( float weights_table[STBIR_RESIZE_CLA v_classification = ( vertical_output_size < horizontal_output_size ) ? 6 : 7; else if ( vertical_scale <= 1.0f ) v_classification = ( is_gather ) ? 1 : 0; - else if ( vertical_scale <= 2.0f) + else if ( vertical_scale <= 2.0f) v_classification = 2; - else if ( vertical_scale <= 3.0f) + else if ( vertical_scale <= 3.0f) v_classification = 3; - else if ( vertical_scale <= 4.0f) + else if ( vertical_scale <= 4.0f) v_classification = 5; - else + else v_classification = 6; - + // use the right weights weights = weights_table[ v_classification ]; @@ -6684,10 +6879,10 @@ static int stbir__should_do_vertical_first( float weights_table[STBIR_RESIZE_CLA info->is_gather = is_gather; } - // and this allows us to override everything for testing (see dotiming.c) - if ( ( info ) && ( info->control_v_first ) ) + // and this allows us to override everything for testing (see dotiming.c) + if ( ( info ) && ( info->control_v_first ) ) vertical_first = ( info->control_v_first == 2 ) ? 1 : 0; - + return vertical_first; } @@ -6699,9 +6894,9 @@ static unsigned char stbir__pixel_channels[] = { }; // the internal pixel layout enums are in a different order, so we can easily do range comparisons of types -// the public pixel layout is ordered in a way that if you cast num_channels (1-4) to the enum, you get something sensible +// the public pixel layout is ordered in a way that if you cast num_channels (1-4) to the enum, you get something sensible static stbir_internal_pixel_layout stbir__pixel_layout_convert_public_to_internal[] = { - STBIRI_BGR, STBIRI_1CHANNEL, STBIRI_2CHANNEL, STBIRI_RGB, STBIRI_RGBA, + STBIRI_BGR, STBIRI_1CHANNEL, STBIRI_2CHANNEL, STBIRI_RGB, STBIRI_RGBA, STBIRI_4CHANNEL, STBIRI_BGRA, STBIRI_ARGB, STBIRI_ABGR, STBIRI_RA, STBIRI_AR, STBIRI_RGBA_PM, STBIRI_BGRA_PM, STBIRI_ARGB_PM, STBIRI_ABGR_PM, STBIRI_RA_PM, STBIRI_AR_PM, }; @@ -6712,17 +6907,17 @@ static stbir__info * stbir__alloc_internal_mem_and_build_samplers( stbir__sample stbir__info * info = 0; void * alloced = 0; - int alloced_total = 0; + size_t alloced_total = 0; int vertical_first; int decode_buffer_size, ring_buffer_length_bytes, ring_buffer_size, vertical_buffer_size, alloc_ring_buffer_num_entries; int alpha_weighting_type = 0; // 0=none, 1=simple, 2=fancy - int conservative_split_output_size = stbir__get_max_split( splits, vertical->scale_info.output_sub_size ); - stbir_internal_pixel_layout input_pixel_layout = stbir__pixel_layout_convert_public_to_internal[ input_pixel_layout_public ]; + int conservative_split_output_size = stbir__get_max_split( splits, vertical->scale_info.output_sub_size ); + stbir_internal_pixel_layout input_pixel_layout = stbir__pixel_layout_convert_public_to_internal[ input_pixel_layout_public ]; stbir_internal_pixel_layout output_pixel_layout = stbir__pixel_layout_convert_public_to_internal[ output_pixel_layout_public ]; - int channels = stbir__pixel_channels[ input_pixel_layout ]; + int channels = stbir__pixel_channels[ input_pixel_layout ]; int effective_channels = channels; - + // first figure out what type of alpha weighting to use (if any) if ( ( horizontal->filter_enum != STBIR_FILTER_POINT_SAMPLE ) || ( vertical->filter_enum != STBIR_FILTER_POINT_SAMPLE ) ) // no alpha weighting on point sampling { @@ -6760,11 +6955,11 @@ static stbir__info * stbir__alloc_internal_mem_and_build_samplers( stbir__sample // sometimes read one float off in some of the unrolled loops (with a weight of zero coeff, so it doesn't have an effect) decode_buffer_size = ( conservative->n1 - conservative->n0 + 1 ) * effective_channels * sizeof(float) + sizeof(float); // extra float for padding - + #if defined( STBIR__SEPARATE_ALLOCATIONS ) && defined(STBIR_SIMD8) if ( effective_channels == 3 ) decode_buffer_size += sizeof(float); // avx in 3 channel mode needs one float at the start of the buffer (only with separate allocations) -#endif +#endif ring_buffer_length_bytes = horizontal->scale_info.output_sub_size * effective_channels * sizeof(float) + sizeof(float); // extra float for padding @@ -6803,9 +6998,9 @@ static stbir__info * stbir__alloc_internal_mem_and_build_samplers( stbir__sample #define STBIR__NEXT_PTR( ptr, size, ntype ) advance_mem = (void*) ( ( ((size_t)advance_mem) + 15 ) & ~15 ); if ( alloced ) ptr = (ntype*)advance_mem; advance_mem = ((char*)advance_mem) + (size); #endif - STBIR__NEXT_PTR( info, sizeof( stbir__info ), stbir__info ); + STBIR__NEXT_PTR( info, sizeof( stbir__info ), stbir__info ); - STBIR__NEXT_PTR( info->split_info, sizeof( stbir__per_split_info ) * splits, stbir__per_split_info ); + STBIR__NEXT_PTR( info->split_info, sizeof( stbir__per_split_info ) * splits, stbir__per_split_info ); if ( info ) { @@ -6820,39 +7015,39 @@ static stbir__info * stbir__alloc_internal_mem_and_build_samplers( stbir__sample info->channels = channels; info->effective_channels = effective_channels; - + info->offset_x = new_x; info->offset_y = new_y; info->alloc_ring_buffer_num_entries = alloc_ring_buffer_num_entries; - info->ring_buffer_num_entries = 0; + info->ring_buffer_num_entries = 0; info->ring_buffer_length_bytes = ring_buffer_length_bytes; info->splits = splits; info->vertical_first = vertical_first; - info->input_pixel_layout_internal = input_pixel_layout; + info->input_pixel_layout_internal = input_pixel_layout; info->output_pixel_layout_internal = output_pixel_layout; // setup alpha weight functions info->alpha_weight = 0; info->alpha_unweight = 0; - + // handle alpha weighting functions and overrides if ( alpha_weighting_type == 2 ) { // high quality alpha multiplying on the way in, dividing on the way out - info->alpha_weight = fancy_alpha_weights[ input_pixel_layout - STBIRI_RGBA ]; + info->alpha_weight = fancy_alpha_weights[ input_pixel_layout - STBIRI_RGBA ]; info->alpha_unweight = fancy_alpha_unweights[ output_pixel_layout - STBIRI_RGBA ]; } else if ( alpha_weighting_type == 4 ) { // fast alpha multiplying on the way in, dividing on the way out - info->alpha_weight = simple_alpha_weights[ input_pixel_layout - STBIRI_RGBA ]; + info->alpha_weight = simple_alpha_weights[ input_pixel_layout - STBIRI_RGBA ]; info->alpha_unweight = simple_alpha_unweights[ output_pixel_layout - STBIRI_RGBA ]; } else if ( alpha_weighting_type == 1 ) { // fast alpha on the way in, leave in premultiplied form on way out - info->alpha_weight = simple_alpha_weights[ input_pixel_layout - STBIRI_RGBA ]; + info->alpha_weight = simple_alpha_weights[ input_pixel_layout - STBIRI_RGBA ]; } else if ( alpha_weighting_type == 3 ) { @@ -6871,7 +7066,7 @@ static stbir__info * stbir__alloc_internal_mem_and_build_samplers( stbir__sample info->alpha_weight = stbir__simple_flip_3ch; } - } + } // get all the per-split buffers for( i = 0 ; i < splits ; i++ ) @@ -6883,7 +7078,7 @@ static stbir__info * stbir__alloc_internal_mem_and_build_samplers( stbir__sample #ifdef STBIR_SIMD8 if ( ( info ) && ( effective_channels == 3 ) ) ++info->split_info[i].decode_buffer; // avx in 3 channel mode needs one float at the start of the buffer - #endif + #endif STBIR__NEXT_PTR( info->split_info[i].ring_buffers, alloc_ring_buffer_num_entries * sizeof(float*), float* ); { @@ -6894,7 +7089,7 @@ static stbir__info * stbir__alloc_internal_mem_and_build_samplers( stbir__sample #ifdef STBIR_SIMD8 if ( ( info ) && ( effective_channels == 3 ) ) ++info->split_info[i].ring_buffers[j]; // avx in 3 channel mode needs one float at the start of the buffer - #endif + #endif } } #else @@ -6922,10 +7117,10 @@ static stbir__info * stbir__alloc_internal_mem_and_build_samplers( stbir__sample #endif if ( temp_mem_amt >= both ) { - if ( info ) - { - vertical->gather_prescatter_contributors = (stbir__contributors*)info->split_info[0].decode_buffer; - vertical->gather_prescatter_coefficients = (float*) ( ( (char*)info->split_info[0].decode_buffer ) + vertical->gather_prescatter_contributors_size ); + if ( info ) + { + vertical->gather_prescatter_contributors = (stbir__contributors*)info->split_info[0].decode_buffer; + vertical->gather_prescatter_coefficients = (float*) ( ( (char*)info->split_info[0].decode_buffer ) + vertical->gather_prescatter_contributors_size ); } } else @@ -6948,7 +7143,7 @@ static stbir__info * stbir__alloc_internal_mem_and_build_samplers( stbir__sample if ( diff_shift < 0.0f ) diff_shift = -diff_shift; if ( ( diff_scale <= stbir__small_float ) && ( diff_shift <= stbir__small_float ) ) { - if ( horizontal->is_gather == vertical->is_gather ) + if ( horizontal->is_gather == vertical->is_gather ) { copy_horizontal = 1; goto no_vert_alloc; @@ -6975,16 +7170,16 @@ static stbir__info * stbir__alloc_internal_mem_and_build_samplers( stbir__sample // but if the number of coeffs <= 12, use another set of special cases. <=12 coeffs is any enlarging resize, or shrinking resize down to about 1/3 size if ( horizontal->extent_info.widest <= 12 ) info->horizontal_gather_channels = stbir__horizontal_gather_channels_funcs[ effective_channels ][ horizontal->extent_info.widest - 1 ]; - + info->scanline_extents.conservative.n0 = conservative->n0; info->scanline_extents.conservative.n1 = conservative->n1; - + // get exact extents stbir__get_extents( horizontal, &info->scanline_extents ); // pack the horizontal coeffs - horizontal->coefficient_width = stbir__pack_coefficients(horizontal->num_contributors, horizontal->contributors, horizontal->coefficients, horizontal->coefficient_width, horizontal->extent_info.widest, info->scanline_extents.conservative.n1 + 1 ); - + horizontal->coefficient_width = stbir__pack_coefficients(horizontal->num_contributors, horizontal->contributors, horizontal->coefficients, horizontal->coefficient_width, horizontal->extent_info.widest, info->scanline_extents.conservative.n0, info->scanline_extents.conservative.n1 ); + STBIR_MEMCPY( &info->horizontal, horizontal, sizeof( stbir__sampler ) ); STBIR_PROFILE_BUILD_END( horizontal ); @@ -7014,36 +7209,27 @@ static stbir__info * stbir__alloc_internal_mem_and_build_samplers( stbir__sample info->ring_buffer_num_entries = conservative_split_output_size; STBIR_ASSERT( info->ring_buffer_num_entries <= info->alloc_ring_buffer_num_entries ); - // a few of the horizontal gather functions read one dword past the end (but mask it out), so put in a normal value so no snans or denormals accidentally sneak in + // a few of the horizontal gather functions read past the end of the decode (but mask it out), + // so put in normal values so no snans or denormals accidentally sneak in (also, in the ring + // buffer for vertical first) for( i = 0 ; i < splits ; i++ ) { - int width, ofs; - - // find the right most span - if ( info->scanline_extents.spans[0].n1 > info->scanline_extents.spans[1].n1 ) - width = info->scanline_extents.spans[0].n1 - info->scanline_extents.spans[0].n0; - else - width = info->scanline_extents.spans[1].n1 - info->scanline_extents.spans[1].n0; - - // this calc finds the exact end of the decoded scanline for all filter modes. - // usually this is just the width * effective channels. But we have to account - // for the area to the left of the scanline for wrap filtering and alignment, this - // is stored as a negative value in info->scanline_extents.conservative.n0. Next, - // we need to skip the exact size of the right hand size filter area (again for - // wrap mode), this is in info->scanline_extents.edge_sizes[1]). - ofs = ( width + 1 - info->scanline_extents.conservative.n0 + info->scanline_extents.edge_sizes[1] ) * effective_channels; - - // place a known, but numerically valid value in the decode buffer - info->split_info[i].decode_buffer[ ofs ] = 9999.0f; + int t, ofs, start; + + ofs = decode_buffer_size / 4; + start = ofs - 4; + if ( start < 0 ) start = 0; + + for( t = start ; t < ofs; t++ ) + info->split_info[i].decode_buffer[ t ] = 9999.0f; - // if vertical filtering first, place a known, but numerically valid value in the all - // of the ring buffer accumulators if ( vertical_first ) { - int j; + int j; for( j = 0; j < info->ring_buffer_num_entries ; j++ ) { - stbir__get_ring_buffer_entry( info, info->split_info + i, j )[ ofs ] = 9999.0f; + for( t = start ; t < ofs; t++ ) + stbir__get_ring_buffer_entry( info, info->split_info + i, j )[ t ] = 9999.0f; } } } @@ -7055,7 +7241,7 @@ static stbir__info * stbir__alloc_internal_mem_and_build_samplers( stbir__sample // is this the first time through loop? if ( info == 0 ) { - alloced_total = (int) ( 15 + (size_t)advance_mem ); + alloced_total = ( 15 + (size_t)advance_mem ); alloced = STBIR_MALLOC( alloced_total, user_data ); if ( alloced == 0 ) return 0; @@ -7065,7 +7251,7 @@ static stbir__info * stbir__alloc_internal_mem_and_build_samplers( stbir__sample } } -static int stbir__perform_resize( stbir__info const * info, int split_start, int split_count ) +static int stbir__perform_resize( stbir__info const * info, int split_start, int split_count ) { stbir__per_split_info * split_info = info->split_info + split_start; @@ -7085,7 +7271,7 @@ static void stbir__update_info_from_resize( stbir__info * info, STBIR_RESIZE * r { static stbir__decode_pixels_func * decode_simple[STBIR_TYPE_HALF_FLOAT-STBIR_TYPE_UINT8_SRGB+1]= { - /* 1ch-4ch */ stbir__decode_uint8_srgb, stbir__decode_uint8_srgb, 0, stbir__decode_float_linear, stbir__decode_half_float_linear, + /* 1ch-4ch */ stbir__decode_uint8_srgb, stbir__decode_uint8_srgb, 0, stbir__decode_float_linear, stbir__decode_half_float_linear, }; static stbir__decode_pixels_func * decode_alphas[STBIRI_AR-STBIRI_RGBA+1][STBIR_TYPE_HALF_FLOAT-STBIR_TYPE_UINT8_SRGB+1]= @@ -7148,7 +7334,7 @@ static void stbir__update_info_from_resize( stbir__info * info, STBIR_RESIZE * r stbir_datatype input_type, output_type; input_type = resize->input_data_type; - output_type = resize->output_data_type; + output_type = resize->output_data_type; info->input_data = resize->input_pixels; info->input_stride_bytes = resize->input_stride_in_bytes; info->output_stride_bytes = resize->output_stride_in_bytes; @@ -7156,7 +7342,7 @@ static void stbir__update_info_from_resize( stbir__info * info, STBIR_RESIZE * r // if we're completely point sampling, then we can turn off SRGB if ( ( info->horizontal.filter_enum == STBIR_FILTER_POINT_SAMPLE ) && ( info->vertical.filter_enum == STBIR_FILTER_POINT_SAMPLE ) ) { - if ( ( ( input_type == STBIR_TYPE_UINT8_SRGB ) || ( input_type == STBIR_TYPE_UINT8_SRGB_ALPHA ) ) && + if ( ( ( input_type == STBIR_TYPE_UINT8_SRGB ) || ( input_type == STBIR_TYPE_UINT8_SRGB_ALPHA ) ) && ( ( output_type == STBIR_TYPE_UINT8_SRGB ) || ( output_type == STBIR_TYPE_UINT8_SRGB_ALPHA ) ) ) { input_type = STBIR_TYPE_UINT8; @@ -7164,7 +7350,7 @@ static void stbir__update_info_from_resize( stbir__info * info, STBIR_RESIZE * r } } - // recalc the output and input strides + // recalc the output and input strides if ( info->input_stride_bytes == 0 ) info->input_stride_bytes = info->channels * info->horizontal.scale_info.input_full_size * stbir__type_size[input_type]; @@ -7172,7 +7358,7 @@ static void stbir__update_info_from_resize( stbir__info * info, STBIR_RESIZE * r info->output_stride_bytes = info->channels * info->horizontal.scale_info.output_sub_size * stbir__type_size[output_type]; // calc offset - info->output_data = ( (char*) resize->output_pixels ) + ( (ptrdiff_t) info->offset_y * (ptrdiff_t) resize->output_stride_in_bytes ) + ( info->offset_x * info->channels * stbir__type_size[output_type] ); + info->output_data = ( (char*) resize->output_pixels ) + ( (size_t) info->offset_y * (size_t) resize->output_stride_in_bytes ) + ( info->offset_x * info->channels * stbir__type_size[output_type] ); info->in_pixels_cb = resize->input_cb; info->user_data = resize->user_data; @@ -7205,7 +7391,7 @@ static void stbir__update_info_from_resize( stbir__info * info, STBIR_RESIZE * r if ( ( output_type == STBIR_TYPE_UINT8 ) || ( output_type == STBIR_TYPE_UINT16 ) ) { int non_scaled = 0; - + // check if we can run unscaled - 0-255.0/0-65535.0 instead of 0-1.0 (which is a tiny bit faster when doing linear 8->8 or 16->16) if ( ( !info->alpha_weight ) && ( !info->alpha_unweight ) ) // don't short circuit when alpha weighting (get everything to 0-1.0 as usual) if ( ( ( input_type == STBIR_TYPE_UINT8 ) && ( output_type == STBIR_TYPE_UINT8 ) ) || ( ( input_type == STBIR_TYPE_UINT16 ) && ( output_type == STBIR_TYPE_UINT16 ) ) ) @@ -7225,16 +7411,16 @@ static void stbir__update_info_from_resize( stbir__info * info, STBIR_RESIZE * r } info->input_type = input_type; - info->output_type = output_type; + info->output_type = output_type; info->decode_pixels = decode_pixels; - info->encode_pixels = encode_pixels; + info->encode_pixels = encode_pixels; } static void stbir__clip( int * outx, int * outsubw, int outw, double * u0, double * u1 ) { double per, adj; int over; - + // do left/top edge if ( *outx < 0 ) { @@ -7253,7 +7439,7 @@ static void stbir__clip( int * outx, int * outsubw, int outw, double * u0, doubl *u1 += adj; // decrease u1 *outsubw = outw - *outx; } -} +} // converts a double to a rational that has less than one float bit of error (returns 0 if unable to do so) static int stbir__double_to_rational(double f, stbir_uint32 limit, stbir_uint32 *numer, stbir_uint32 *denom, int limit_denom ) // limit_denom (1) or limit numer (0) @@ -7270,7 +7456,7 @@ static int stbir__double_to_rational(double f, stbir_uint32 limit, stbir_uint32 bot = 1 << 25; // keep refining, but usually stops in a few loops - usually 5 for bad cases - for(;;) + for(;;) { stbir_uint64 est, temp; @@ -7303,13 +7489,13 @@ static int stbir__double_to_rational(double f, stbir_uint32 limit, stbir_uint32 bot = temp; // move remainders - temp = est * denom_estimate + denom_last; - denom_last = denom_estimate; + temp = est * denom_estimate + denom_last; + denom_last = denom_estimate; denom_estimate = temp; // move remainders - temp = est * numer_estimate + numer_last; - numer_last = numer_estimate; + temp = est * numer_estimate + numer_last; + numer_last = numer_estimate; numer_estimate = temp; } @@ -7353,11 +7539,11 @@ static int stbir__calculate_region_transform( stbir__scale_info * scale_info, in output_s = ( (double)output_sub_range) / output_range; - // figure out the scaling to use - ratio = output_s / input_s; + // figure out the scaling to use + ratio = output_s / input_s; // save scale before clipping - scale = ( output_range / input_range ) * ratio; + scale = ( output_range / input_range ) * ratio; scale_info->scale = (float)scale; scale_info->inv_scale = (float)( 1.0 / scale ); @@ -7368,11 +7554,11 @@ static int stbir__calculate_region_transform( stbir__scale_info * scale_info, in input_s = input_s1 - input_s0; // after clipping do we have zero input area? - if ( input_s <= stbir__small_float ) + if ( input_s <= stbir__small_float ) return 0; - // calculate and store the starting source offsets in output pixel space - scale_info->pixel_shift = (float) ( input_s0 * ratio * output_range ); + // calculate and store the starting source offsets in output pixel space + scale_info->pixel_shift = (float) ( input_s0 * ratio * output_range ); scale_info->scale_is_rational = stbir__double_to_rational( scale, ( scale <= 1.0 ) ? output_full_range : input_full_range, &scale_info->scale_numerator, &scale_info->scale_denominator, ( scale >= 1.0 ) ); @@ -7389,7 +7575,6 @@ static void stbir__init_and_set_layout( STBIR_RESIZE * resize, stbir_pixel_layou resize->output_cb = 0; resize->user_data = resize; resize->samplers = 0; - resize->needs_rebuild = 1; resize->called_alloc = 0; resize->horizontal_filter = STBIR_FILTER_DEFAULT; resize->horizontal_filter_kernel = 0; resize->horizontal_filter_support = 0; @@ -7403,9 +7588,10 @@ static void stbir__init_and_set_layout( STBIR_RESIZE * resize, stbir_pixel_layou resize->output_data_type = data_type; resize->input_pixel_layout_public = pixel_layout; resize->output_pixel_layout_public = pixel_layout; + resize->needs_rebuild = 1; } -STBIRDEF void stbir_resize_init( STBIR_RESIZE * resize, +STBIRDEF void stbir_resize_init( STBIR_RESIZE * resize, const void *input_pixels, int input_w, int input_h, int input_stride_in_bytes, // stride can be zero void *output_pixels, int output_w, int output_h, int output_stride_in_bytes, // stride can be zero stbir_pixel_layout pixel_layout, stbir_datatype data_type ) @@ -7428,17 +7614,27 @@ STBIRDEF void stbir_set_datatypes( STBIR_RESIZE * resize, stbir_datatype input_t { resize->input_data_type = input_type; resize->output_data_type = output_type; + if ( ( resize->samplers ) && ( !resize->needs_rebuild ) ) + stbir__update_info_from_resize( resize->samplers, resize ); } STBIRDEF void stbir_set_pixel_callbacks( STBIR_RESIZE * resize, stbir_input_callback * input_cb, stbir_output_callback * output_cb ) // no callbacks by default { resize->input_cb = input_cb; resize->output_cb = output_cb; + + if ( ( resize->samplers ) && ( !resize->needs_rebuild ) ) + { + resize->samplers->in_pixels_cb = input_cb; + resize->samplers->out_pixels_cb = output_cb; + } } STBIRDEF void stbir_set_user_data( STBIR_RESIZE * resize, void * user_data ) // pass back STBIR_RESIZE* by default { resize->user_data = user_data; + if ( ( resize->samplers ) && ( !resize->needs_rebuild ) ) + resize->samplers->user_data = user_data; } STBIRDEF void stbir_set_buffer_ptrs( STBIR_RESIZE * resize, const void * input_pixels, int input_stride_in_bytes, void * output_pixels, int output_stride_in_bytes ) @@ -7447,6 +7643,8 @@ STBIRDEF void stbir_set_buffer_ptrs( STBIR_RESIZE * resize, const void * input_p resize->input_stride_in_bytes = input_stride_in_bytes; resize->output_pixels = output_pixels; resize->output_stride_in_bytes = output_stride_in_bytes; + if ( ( resize->samplers ) && ( !resize->needs_rebuild ) ) + stbir__update_info_from_resize( resize->samplers, resize ); } @@ -7549,7 +7747,7 @@ STBIRDEF int stbir_set_pixel_subrect( STBIR_RESIZE * resize, int subx, int suby, return 1; } -static int stbir__perform_build( STBIR_RESIZE * resize, int splits ) +static int stbir__perform_build( STBIR_RESIZE * resize, int splits ) { stbir__contributors conservative = { 0, 0 }; stbir__sampler horizontal, vertical; @@ -7563,13 +7761,13 @@ static int stbir__perform_build( STBIR_RESIZE * resize, int splits ) // have we already built the samplers? if ( resize->samplers ) return 0; - + #define STBIR_RETURN_ERROR_AND_ASSERT( exp ) STBIR_ASSERT( !(exp) ); if (exp) return 0; STBIR_RETURN_ERROR_AND_ASSERT( (unsigned)resize->horizontal_filter >= STBIR_FILTER_OTHER) STBIR_RETURN_ERROR_AND_ASSERT( (unsigned)resize->vertical_filter >= STBIR_FILTER_OTHER) #undef STBIR_RETURN_ERROR_AND_ASSERT - if ( splits <= 0 ) + if ( splits <= 0 ) return 0; STBIR_PROFILE_BUILD_FIRST_START( build ); @@ -7593,9 +7791,9 @@ static int stbir__perform_build( STBIR_RESIZE * resize, int splits ) stbir__get_conservative_extents( &horizontal, &conservative, resize->user_data ); stbir__set_sampler(&vertical, resize->vertical_filter, resize->horizontal_filter_kernel, resize->vertical_filter_support, resize->vertical_edge, &vertical.scale_info, 0, resize->user_data ); - if ( ( vertical.scale_info.output_sub_size / splits ) < 4 ) // each split should be a minimum of 4 scanlines (handwavey choice) + if ( ( vertical.scale_info.output_sub_size / splits ) < STBIR_FORCE_MINIMUM_SCANLINES_FOR_SPLITS ) // each split should be a minimum of 4 scanlines (handwavey choice) { - splits = vertical.scale_info.output_sub_size / 4; + splits = vertical.scale_info.output_sub_size / STBIR_FORCE_MINIMUM_SCANLINES_FOR_SPLITS; if ( splits == 0 ) splits = 1; } @@ -7603,7 +7801,7 @@ static int stbir__perform_build( STBIR_RESIZE * resize, int splits ) out_info = stbir__alloc_internal_mem_and_build_samplers( &horizontal, &vertical, &conservative, resize->input_pixel_layout_public, resize->output_pixel_layout_public, splits, new_output_subx, new_output_suby, resize->fast_alpha, resize->user_data STBIR_ONLY_PROFILE_BUILD_SET_INFO ); STBIR_PROFILE_BUILD_END( alloc ); STBIR_PROFILE_BUILD_END( build ); - + if ( out_info ) { resize->splits = splits; @@ -7612,6 +7810,10 @@ static int stbir__perform_build( STBIR_RESIZE * resize, int splits ) #ifdef STBIR_PROFILE STBIR_MEMCPY( &out_info->profile, &profile_infod.profile, sizeof( out_info->profile ) ); #endif + + // update anything that can be changed without recalcing samplers + stbir__update_info_from_resize( out_info, resize ); + return splits; } @@ -7640,7 +7842,7 @@ STBIRDEF int stbir_build_samplers_with_splits( STBIR_RESIZE * resize, int splits } STBIR_PROFILE_BUILD_CLEAR( resize->samplers ); - + return 1; } @@ -7652,7 +7854,7 @@ STBIRDEF int stbir_build_samplers( STBIR_RESIZE * resize ) STBIRDEF int stbir_resize_extended( STBIR_RESIZE * resize ) { int result; - + if ( ( resize->samplers == 0 ) || ( resize->needs_rebuild ) ) { int alloc_state = resize->called_alloc; // remember allocated state @@ -7665,10 +7867,10 @@ STBIRDEF int stbir_resize_extended( STBIR_RESIZE * resize ) if ( !stbir_build_samplers( resize ) ) return 0; - + resize->called_alloc = alloc_state; - // if build_samplers succeeded (above), but there are no samplers set, then + // if build_samplers succeeded (above), but there are no samplers set, then // the area to stretch into was zero pixels, so don't do anything and return // success if ( resize->samplers == 0 ) @@ -7680,10 +7882,6 @@ STBIRDEF int stbir_resize_extended( STBIR_RESIZE * resize ) STBIR_PROFILE_BUILD_CLEAR( resize->samplers ); } - - // update anything that can be changed without recalcing samplers - stbir__update_info_from_resize( resize->samplers, resize ); - // do resize result = stbir__perform_resize( resize->samplers, 0, resize->splits ); @@ -7692,7 +7890,7 @@ STBIRDEF int stbir_resize_extended( STBIR_RESIZE * resize ) { stbir_free_samplers( resize ); resize->samplers = 0; - } + } return result; } @@ -7707,14 +7905,11 @@ STBIRDEF int stbir_resize_extended_split( STBIR_RESIZE * resize, int split_start // you **must** build samplers first when using split resize if ( ( resize->samplers == 0 ) || ( resize->needs_rebuild ) ) - return 0; - + return 0; + if ( ( split_start >= resize->splits ) || ( split_start < 0 ) || ( ( split_start + split_count ) > resize->splits ) || ( split_count <= 0 ) ) return 0; - - // update anything that can be changed without recalcing samplers - stbir__update_info_from_resize( resize->samplers, resize ); - + // do resize return stbir__perform_resize( resize->samplers, split_start, split_count ); } @@ -7735,7 +7930,7 @@ static int stbir__check_output_stuff( void ** ret_ptr, int * ret_pitch, void * o if ( output_stride_in_bytes < pitch ) return 0; - size = output_stride_in_bytes * output_h; + size = (size_t)output_stride_in_bytes * (size_t)output_h; if ( size == 0 ) return 0; @@ -7752,7 +7947,7 @@ static int stbir__check_output_stuff( void ** ret_ptr, int * ret_pitch, void * o *ret_pitch = pitch; } - return 1; + return 1; } @@ -7767,9 +7962,9 @@ STBIRDEF unsigned char * stbir_resize_uint8_linear( const unsigned char *input_p if ( !stbir__check_output_stuff( (void**)&optr, &opitch, output_pixels, sizeof( unsigned char ), output_w, output_h, output_stride_in_bytes, stbir__pixel_layout_convert_public_to_internal[ pixel_layout ] ) ) return 0; - stbir_resize_init( &resize, - input_pixels, input_w, input_h, input_stride_in_bytes, - (optr) ? optr : output_pixels, output_w, output_h, opitch, + stbir_resize_init( &resize, + input_pixels, input_w, input_h, input_stride_in_bytes, + (optr) ? optr : output_pixels, output_w, output_h, opitch, pixel_layout, STBIR_TYPE_UINT8 ); if ( !stbir_resize_extended( &resize ) ) @@ -7793,9 +7988,9 @@ STBIRDEF unsigned char * stbir_resize_uint8_srgb( const unsigned char *input_pix if ( !stbir__check_output_stuff( (void**)&optr, &opitch, output_pixels, sizeof( unsigned char ), output_w, output_h, output_stride_in_bytes, stbir__pixel_layout_convert_public_to_internal[ pixel_layout ] ) ) return 0; - stbir_resize_init( &resize, - input_pixels, input_w, input_h, input_stride_in_bytes, - (optr) ? optr : output_pixels, output_w, output_h, opitch, + stbir_resize_init( &resize, + input_pixels, input_w, input_h, input_stride_in_bytes, + (optr) ? optr : output_pixels, output_w, output_h, opitch, pixel_layout, STBIR_TYPE_UINT8_SRGB ); if ( !stbir_resize_extended( &resize ) ) @@ -7820,9 +8015,9 @@ STBIRDEF float * stbir_resize_float_linear( const float *input_pixels , int inpu if ( !stbir__check_output_stuff( (void**)&optr, &opitch, output_pixels, sizeof( float ), output_w, output_h, output_stride_in_bytes, stbir__pixel_layout_convert_public_to_internal[ pixel_layout ] ) ) return 0; - stbir_resize_init( &resize, - input_pixels, input_w, input_h, input_stride_in_bytes, - (optr) ? optr : output_pixels, output_w, output_h, opitch, + stbir_resize_init( &resize, + input_pixels, input_w, input_h, input_stride_in_bytes, + (optr) ? optr : output_pixels, output_w, output_h, opitch, pixel_layout, STBIR_TYPE_FLOAT ); if ( !stbir_resize_extended( &resize ) ) @@ -7838,7 +8033,7 @@ STBIRDEF float * stbir_resize_float_linear( const float *input_pixels , int inpu STBIRDEF void * stbir_resize( const void *input_pixels , int input_w , int input_h, int input_stride_in_bytes, void *output_pixels, int output_w, int output_h, int output_stride_in_bytes, - stbir_pixel_layout pixel_layout, stbir_datatype data_type, + stbir_pixel_layout pixel_layout, stbir_datatype data_type, stbir_edge edge, stbir_filter filter ) { STBIR_RESIZE resize; @@ -7848,9 +8043,9 @@ STBIRDEF void * stbir_resize( const void *input_pixels , int input_w , int input if ( !stbir__check_output_stuff( (void**)&optr, &opitch, output_pixels, stbir__type_size[data_type], output_w, output_h, output_stride_in_bytes, stbir__pixel_layout_convert_public_to_internal[ pixel_layout ] ) ) return 0; - stbir_resize_init( &resize, - input_pixels, input_w, input_h, input_stride_in_bytes, - (optr) ? optr : output_pixels, output_w, output_h, output_stride_in_bytes, + stbir_resize_init( &resize, + input_pixels, input_w, input_h, input_stride_in_bytes, + (optr) ? optr : output_pixels, output_w, output_h, output_stride_in_bytes, pixel_layout, data_type ); resize.horizontal_edge = edge; @@ -7958,7 +8153,7 @@ STBIRDEF void stbir_resize_extended_profile_info( STBIR_PROFILE_INFO * info, STB #else // STB_IMAGE_RESIZE_HORIZONTALS&STB_IMAGE_RESIZE_DO_VERTICALS // we reinclude the header file to define all the horizontal functions -// specializing each function for the number of coeffs is 20-40% faster *OVERALL* +// specializing each function for the number of coeffs is 20-40% faster *OVERALL* // by including the header file again this way, we can still debug the functions @@ -7991,16 +8186,16 @@ STBIRDEF void stbir_resize_extended_profile_info( STBIR_PROFILE_INFO * info, STB #define stbir__encode_order2 2 #define stbir__encode_order3 3 #define stbir__decode_simdf8_flip(reg) -#define stbir__decode_simdf4_flip(reg) +#define stbir__decode_simdf4_flip(reg) #define stbir__encode_simdf8_unflip(reg) -#define stbir__encode_simdf4_unflip(reg) +#define stbir__encode_simdf4_unflip(reg) #endif #ifdef STBIR_SIMD8 #define stbir__encode_simdfX_unflip stbir__encode_simdf8_unflip #else #define stbir__encode_simdfX_unflip stbir__encode_simdf4_unflip -#endif +#endif static void STBIR__CODER_NAME( stbir__decode_uint8_linear_scaled )( float * decodep, int width_times_channels, void const * inputp ) { @@ -8013,6 +8208,7 @@ static void STBIR__CODER_NAME( stbir__decode_uint8_linear_scaled )( float * deco if ( width_times_channels >= 16 ) { decode_end -= 16; + STBIR_NO_UNROLL_LOOP_START_INF_FOR for(;;) { #ifdef STBIR_SIMD8 @@ -8054,7 +8250,7 @@ static void STBIR__CODER_NAME( stbir__decode_uint8_linear_scaled )( float * deco #endif decode += 16; input += 16; - if ( decode <= decode_end ) + if ( decode <= decode_end ) continue; if ( decode == ( decode_end + 16 ) ) break; @@ -8068,6 +8264,7 @@ static void STBIR__CODER_NAME( stbir__decode_uint8_linear_scaled )( float * deco // try to do blocks of 4 when you can #if stbir__coder_min_num != 3 // doesn't divide cleanly by four decode += 4; + STBIR_SIMD_NO_UNROLL_LOOP_START while( decode <= decode_end ) { STBIR_SIMD_NO_UNROLL(decode); @@ -8083,6 +8280,7 @@ static void STBIR__CODER_NAME( stbir__decode_uint8_linear_scaled )( float * deco // do the remnants #if stbir__coder_min_num < 4 + STBIR_NO_UNROLL_LOOP_START while( decode < decode_end ) { STBIR_NO_UNROLL(decode); @@ -8109,6 +8307,7 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_linear_scaled )( void * outpu { float const * end_encode_m8 = encode + width_times_channels - stbir__simdfX_float_count*2; end_output -= stbir__simdfX_float_count*2; + STBIR_NO_UNROLL_LOOP_START_INF_FOR for(;;) { stbir__simdfX e0, e1; @@ -8119,15 +8318,15 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_linear_scaled )( void * outpu stbir__encode_simdfX_unflip( e0 ); stbir__encode_simdfX_unflip( e1 ); #ifdef STBIR_SIMD8 - stbir__simdf8_pack_to_16bytes( i, e0, e1 ); + stbir__simdf8_pack_to_16bytes( i, e0, e1 ); stbir__simdi_store( output, i ); #else - stbir__simdf_pack_to_8bytes( i, e0, e1 ); + stbir__simdf_pack_to_8bytes( i, e0, e1 ); stbir__simdi_store2( output, i ); #endif encode += stbir__simdfX_float_count*2; output += stbir__simdfX_float_count*2; - if ( output <= end_output ) + if ( output <= end_output ) continue; if ( output == ( end_output + stbir__simdfX_float_count*2 ) ) break; @@ -8140,6 +8339,7 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_linear_scaled )( void * outpu // try to do blocks of 4 when you can #if stbir__coder_min_num != 3 // doesn't divide cleanly by four output += 4; + STBIR_NO_UNROLL_LOOP_START while( output <= end_output ) { stbir__simdf e0; @@ -8158,9 +8358,10 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_linear_scaled )( void * outpu // do the remnants #if stbir__coder_min_num < 4 + STBIR_NO_UNROLL_LOOP_START while( output < end_output ) { - stbir__simdf e0; + stbir__simdf e0; STBIR_NO_UNROLL(encode); stbir__simdf_madd1_mem( e0, STBIR__CONSTF(STBIR_simd_point5), STBIR__CONSTF(STBIR_max_uint8_as_float), encode+stbir__encode_order0 ); output[0] = stbir__simdf_convert_float_to_uint8( e0 ); #if stbir__coder_min_num >= 2 @@ -8173,7 +8374,7 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_linear_scaled )( void * outpu encode += stbir__coder_min_num; } #endif - + #else // try to do blocks of 4 when you can @@ -8194,6 +8395,7 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_linear_scaled )( void * outpu // do the remnants #if stbir__coder_min_num < 4 + STBIR_NO_UNROLL_LOOP_START while( output < end_output ) { float f; @@ -8223,6 +8425,7 @@ static void STBIR__CODER_NAME(stbir__decode_uint8_linear)( float * decodep, int if ( width_times_channels >= 16 ) { decode_end -= 16; + STBIR_NO_UNROLL_LOOP_START_INF_FOR for(;;) { #ifdef STBIR_SIMD8 @@ -8258,7 +8461,7 @@ static void STBIR__CODER_NAME(stbir__decode_uint8_linear)( float * decodep, int #endif decode += 16; input += 16; - if ( decode <= decode_end ) + if ( decode <= decode_end ) continue; if ( decode == ( decode_end + 16 ) ) break; @@ -8272,6 +8475,7 @@ static void STBIR__CODER_NAME(stbir__decode_uint8_linear)( float * decodep, int // try to do blocks of 4 when you can #if stbir__coder_min_num != 3 // doesn't divide cleanly by four decode += 4; + STBIR_SIMD_NO_UNROLL_LOOP_START while( decode <= decode_end ) { STBIR_SIMD_NO_UNROLL(decode); @@ -8287,6 +8491,7 @@ static void STBIR__CODER_NAME(stbir__decode_uint8_linear)( float * decodep, int // do the remnants #if stbir__coder_min_num < 4 + STBIR_NO_UNROLL_LOOP_START while( decode < decode_end ) { STBIR_NO_UNROLL(decode); @@ -8313,6 +8518,7 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_linear )( void * outputp, int { float const * end_encode_m8 = encode + width_times_channels - stbir__simdfX_float_count*2; end_output -= stbir__simdfX_float_count*2; + STBIR_SIMD_NO_UNROLL_LOOP_START_INF_FOR for(;;) { stbir__simdfX e0, e1; @@ -8323,15 +8529,15 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_linear )( void * outputp, int stbir__encode_simdfX_unflip( e0 ); stbir__encode_simdfX_unflip( e1 ); #ifdef STBIR_SIMD8 - stbir__simdf8_pack_to_16bytes( i, e0, e1 ); + stbir__simdf8_pack_to_16bytes( i, e0, e1 ); stbir__simdi_store( output, i ); #else - stbir__simdf_pack_to_8bytes( i, e0, e1 ); + stbir__simdf_pack_to_8bytes( i, e0, e1 ); stbir__simdi_store2( output, i ); #endif encode += stbir__simdfX_float_count*2; output += stbir__simdfX_float_count*2; - if ( output <= end_output ) + if ( output <= end_output ) continue; if ( output == ( end_output + stbir__simdfX_float_count*2 ) ) break; @@ -8344,6 +8550,7 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_linear )( void * outputp, int // try to do blocks of 4 when you can #if stbir__coder_min_num != 3 // doesn't divide cleanly by four output += 4; + STBIR_NO_UNROLL_LOOP_START while( output <= end_output ) { stbir__simdf e0; @@ -8382,6 +8589,7 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_linear )( void * outputp, int // do the remnants #if stbir__coder_min_num < 4 + STBIR_NO_UNROLL_LOOP_START while( output < end_output ) { float f; @@ -8422,6 +8630,7 @@ static void STBIR__CODER_NAME(stbir__decode_uint8_srgb)( float * decodep, int wi // do the remnants #if stbir__coder_min_num < 4 + STBIR_NO_UNROLL_LOOP_START while( decode < decode_end ) { STBIR_NO_UNROLL(decode); @@ -8441,7 +8650,7 @@ static void STBIR__CODER_NAME(stbir__decode_uint8_srgb)( float * decodep, int wi #define stbir__min_max_shift20( i, f ) \ stbir__simdf_max( f, f, stbir_simdf_casti(STBIR__CONSTI( STBIR_almost_zero )) ); \ stbir__simdf_min( f, f, stbir_simdf_casti(STBIR__CONSTI( STBIR_almost_one )) ); \ - stbir__simdi_32shr( i, stbir_simdi_castf( f ), 20 ); + stbir__simdi_32shr( i, stbir_simdi_castf( f ), 20 ); #define stbir__scale_and_convert( i, f ) \ stbir__simdf_madd( f, STBIR__CONSTF( STBIR_simd_point5 ), STBIR__CONSTF( STBIR_max_uint8_as_float ), f ); \ @@ -8468,7 +8677,7 @@ static void STBIR__CODER_NAME(stbir__decode_uint8_srgb)( float * decodep, int wi temp1.m128i_u32[0] = table[temp1.m128i_i32[0]]; temp1.m128i_u32[1] = table[temp1.m128i_i32[1]]; temp1.m128i_u32[2] = table[temp1.m128i_i32[2]]; temp1.m128i_u32[3] = table[temp1.m128i_i32[3]]; \ v0 = temp0.m128i_i128; \ v1 = temp1.m128i_i128; \ -} +} #define stbir__simdi_table_lookup3( v0,v1,v2, table ) \ { \ @@ -8499,7 +8708,7 @@ static void STBIR__CODER_NAME(stbir__decode_uint8_srgb)( float * decodep, int wi v1 = temp1.m128i_i128; \ v2 = temp2.m128i_i128; \ v3 = temp3.m128i_i128; \ -} +} static void STBIR__CODER_NAME( stbir__encode_uint8_srgb )( void * outputp, int width_times_channels, float const * encode ) { @@ -8507,16 +8716,16 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_srgb )( void * outputp, int w unsigned char * end_output = ( (unsigned char*) output ) + width_times_channels; #ifdef STBIR_SIMD - stbir_uint32 const * to_srgb = fp32_to_srgb8_tab4 - (127-13)*8; if ( width_times_channels >= 16 ) { float const * end_encode_m16 = encode + width_times_channels - 16; end_output -= 16; + STBIR_SIMD_NO_UNROLL_LOOP_START_INF_FOR for(;;) { stbir__simdf f0, f1, f2, f3; - stbir__simdi i0, i1, i2, i3; + stbir__simdi i0, i1, i2, i3; STBIR_SIMD_NO_UNROLL(encode); stbir__simdf_load4_transposed( f0, f1, f2, f3, encode ); @@ -8525,9 +8734,9 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_srgb )( void * outputp, int w stbir__min_max_shift20( i1, f1 ); stbir__min_max_shift20( i2, f2 ); stbir__min_max_shift20( i3, f3 ); - - stbir__simdi_table_lookup4( i0, i1, i2, i3, to_srgb ); - + + stbir__simdi_table_lookup4( i0, i1, i2, i3, ( fp32_to_srgb8_tab4 - (127-13)*8 ) ); + stbir__linear_to_srgb_finish( i0, f0 ); stbir__linear_to_srgb_finish( i1, f1 ); stbir__linear_to_srgb_finish( i2, f2 ); @@ -8537,7 +8746,7 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_srgb )( void * outputp, int w encode += 16; output += 16; - if ( output <= end_output ) + if ( output <= end_output ) continue; if ( output == ( end_output + 16 ) ) break; @@ -8551,6 +8760,7 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_srgb )( void * outputp, int w // try to do blocks of 4 when you can #if stbir__coder_min_num != 3 // doesn't divide cleanly by four output += 4; + STBIR_SIMD_NO_UNROLL_LOOP_START while ( output <= end_output ) { STBIR_SIMD_NO_UNROLL(encode); @@ -8568,7 +8778,8 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_srgb )( void * outputp, int w // do the remnants #if stbir__coder_min_num < 4 - while( output < end_output ) + STBIR_NO_UNROLL_LOOP_START + while( output < end_output ) { STBIR_NO_UNROLL(encode); output[0] = stbir__linear_to_srgb_uchar( encode[stbir__encode_order0] ); @@ -8608,12 +8819,12 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_srgb4_linearalpha )( void * o unsigned char * end_output = ( (unsigned char*) output ) + width_times_channels; #ifdef STBIR_SIMD - stbir_uint32 const * to_srgb = fp32_to_srgb8_tab4 - (127-13)*8; if ( width_times_channels >= 16 ) { float const * end_encode_m16 = encode + width_times_channels - 16; end_output -= 16; + STBIR_SIMD_NO_UNROLL_LOOP_START_INF_FOR for(;;) { stbir__simdf f0, f1, f2, f3; @@ -8625,10 +8836,10 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_srgb4_linearalpha )( void * o stbir__min_max_shift20( i0, f0 ); stbir__min_max_shift20( i1, f1 ); stbir__min_max_shift20( i2, f2 ); - stbir__scale_and_convert( i3, f3 ); - - stbir__simdi_table_lookup3( i0, i1, i2, to_srgb ); - + stbir__scale_and_convert( i3, f3 ); + + stbir__simdi_table_lookup3( i0, i1, i2, ( fp32_to_srgb8_tab4 - (127-13)*8 ) ); + stbir__linear_to_srgb_finish( i0, f0 ); stbir__linear_to_srgb_finish( i1, f1 ); stbir__linear_to_srgb_finish( i2, f2 ); @@ -8638,7 +8849,7 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_srgb4_linearalpha )( void * o output += 16; encode += 16; - if ( output <= end_output ) + if ( output <= end_output ) continue; if ( output == ( end_output + 16 ) ) break; @@ -8649,9 +8860,10 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_srgb4_linearalpha )( void * o } #endif + STBIR_SIMD_NO_UNROLL_LOOP_START do { float f; - STBIR_SIMD_NO_UNROLL(encode); + STBIR_SIMD_NO_UNROLL(encode); output[stbir__decode_order0] = stbir__linear_to_srgb_uchar( encode[0] ); output[stbir__decode_order1] = stbir__linear_to_srgb_uchar( encode[1] ); @@ -8686,7 +8898,7 @@ static void STBIR__CODER_NAME(stbir__decode_uint8_srgb2_linearalpha)( float * de decode += 4; } decode -= 4; - if( decode < decode_end ) + if( decode < decode_end ) { decode[0] = stbir__srgb_uchar_to_linear_float[ stbir__decode_order0 ]; decode[1] = ( (float) input[stbir__decode_order1] ) * stbir__max_uint8_as_float_inverted; @@ -8699,16 +8911,16 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_srgb2_linearalpha )( void * o unsigned char * end_output = ( (unsigned char*) output ) + width_times_channels; #ifdef STBIR_SIMD - stbir_uint32 const * to_srgb = fp32_to_srgb8_tab4 - (127-13)*8; if ( width_times_channels >= 16 ) { float const * end_encode_m16 = encode + width_times_channels - 16; end_output -= 16; + STBIR_SIMD_NO_UNROLL_LOOP_START_INF_FOR for(;;) { stbir__simdf f0, f1, f2, f3; - stbir__simdi i0, i1, i2, i3; + stbir__simdi i0, i1, i2, i3; STBIR_SIMD_NO_UNROLL(encode); stbir__simdf_load4_transposed( f0, f1, f2, f3, encode ); @@ -8717,9 +8929,9 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_srgb2_linearalpha )( void * o stbir__scale_and_convert( i1, f1 ); stbir__min_max_shift20( i2, f2 ); stbir__scale_and_convert( i3, f3 ); - - stbir__simdi_table_lookup2( i0, i2, to_srgb ); - + + stbir__simdi_table_lookup2( i0, i2, ( fp32_to_srgb8_tab4 - (127-13)*8 ) ); + stbir__linear_to_srgb_finish( i0, f0 ); stbir__linear_to_srgb_finish( i2, f2 ); @@ -8727,7 +8939,7 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_srgb2_linearalpha )( void * o output += 16; encode += 16; - if ( output <= end_output ) + if ( output <= end_output ) continue; if ( output == ( end_output + 16 ) ) break; @@ -8738,6 +8950,7 @@ static void STBIR__CODER_NAME( stbir__encode_uint8_srgb2_linearalpha )( void * o } #endif + STBIR_SIMD_NO_UNROLL_LOOP_START do { float f; STBIR_SIMD_NO_UNROLL(encode); @@ -8766,6 +8979,7 @@ static void STBIR__CODER_NAME(stbir__decode_uint16_linear_scaled)( float * decod if ( width_times_channels >= 8 ) { decode_end -= 8; + STBIR_NO_UNROLL_LOOP_START_INF_FOR for(;;) { #ifdef STBIR_SIMD8 @@ -8793,9 +9007,9 @@ static void STBIR__CODER_NAME(stbir__decode_uint16_linear_scaled)( float * decod stbir__simdf_store( decode + 0, of0 ); stbir__simdf_store( decode + 4, of1 ); #endif - decode += 8; + decode += 8; input += 8; - if ( decode <= decode_end ) + if ( decode <= decode_end ) continue; if ( decode == ( decode_end + 8 ) ) break; @@ -8809,6 +9023,7 @@ static void STBIR__CODER_NAME(stbir__decode_uint16_linear_scaled)( float * decod // try to do blocks of 4 when you can #if stbir__coder_min_num != 3 // doesn't divide cleanly by four decode += 4; + STBIR_SIMD_NO_UNROLL_LOOP_START while( decode <= decode_end ) { STBIR_SIMD_NO_UNROLL(decode); @@ -8824,6 +9039,7 @@ static void STBIR__CODER_NAME(stbir__decode_uint16_linear_scaled)( float * decod // do the remnants #if stbir__coder_min_num < 4 + STBIR_NO_UNROLL_LOOP_START while( decode < decode_end ) { STBIR_NO_UNROLL(decode); @@ -8852,6 +9068,7 @@ static void STBIR__CODER_NAME(stbir__encode_uint16_linear_scaled)( void * output { float const * end_encode_m8 = encode + width_times_channels - stbir__simdfX_float_count*2; end_output -= stbir__simdfX_float_count*2; + STBIR_SIMD_NO_UNROLL_LOOP_START_INF_FOR for(;;) { stbir__simdfX e0, e1; @@ -8865,7 +9082,7 @@ static void STBIR__CODER_NAME(stbir__encode_uint16_linear_scaled)( void * output stbir__simdiX_store( output, i ); encode += stbir__simdfX_float_count*2; output += stbir__simdfX_float_count*2; - if ( output <= end_output ) + if ( output <= end_output ) continue; if ( output == ( end_output + stbir__simdfX_float_count*2 ) ) break; @@ -8879,6 +9096,7 @@ static void STBIR__CODER_NAME(stbir__encode_uint16_linear_scaled)( void * output // try to do blocks of 4 when you can #if stbir__coder_min_num != 3 // doesn't divide cleanly by four output += 4; + STBIR_NO_UNROLL_LOOP_START while( output <= end_output ) { stbir__simdf e; @@ -8897,6 +9115,7 @@ static void STBIR__CODER_NAME(stbir__encode_uint16_linear_scaled)( void * output // do the remnants #if stbir__coder_min_num < 4 + STBIR_NO_UNROLL_LOOP_START while( output < end_output ) { stbir__simdf e; @@ -8912,12 +9131,13 @@ static void STBIR__CODER_NAME(stbir__encode_uint16_linear_scaled)( void * output encode += stbir__coder_min_num; } #endif - + #else // try to do blocks of 4 when you can #if stbir__coder_min_num != 3 // doesn't divide cleanly by four output += 4; + STBIR_SIMD_NO_UNROLL_LOOP_START while( output <= end_output ) { float f; @@ -8934,6 +9154,7 @@ static void STBIR__CODER_NAME(stbir__encode_uint16_linear_scaled)( void * output // do the remnants #if stbir__coder_min_num < 4 + STBIR_NO_UNROLL_LOOP_START while( output < end_output ) { float f; @@ -8963,6 +9184,7 @@ static void STBIR__CODER_NAME(stbir__decode_uint16_linear)( float * decodep, int if ( width_times_channels >= 8 ) { decode_end -= 8; + STBIR_NO_UNROLL_LOOP_START_INF_FOR for(;;) { #ifdef STBIR_SIMD8 @@ -8989,7 +9211,7 @@ static void STBIR__CODER_NAME(stbir__decode_uint16_linear)( float * decodep, int #endif decode += 8; input += 8; - if ( decode <= decode_end ) + if ( decode <= decode_end ) continue; if ( decode == ( decode_end + 8 ) ) break; @@ -9003,6 +9225,7 @@ static void STBIR__CODER_NAME(stbir__decode_uint16_linear)( float * decodep, int // try to do blocks of 4 when you can #if stbir__coder_min_num != 3 // doesn't divide cleanly by four decode += 4; + STBIR_SIMD_NO_UNROLL_LOOP_START while( decode <= decode_end ) { STBIR_SIMD_NO_UNROLL(decode); @@ -9018,6 +9241,7 @@ static void STBIR__CODER_NAME(stbir__decode_uint16_linear)( float * decodep, int // do the remnants #if stbir__coder_min_num < 4 + STBIR_NO_UNROLL_LOOP_START while( decode < decode_end ) { STBIR_NO_UNROLL(decode); @@ -9045,6 +9269,7 @@ static void STBIR__CODER_NAME(stbir__encode_uint16_linear)( void * outputp, int { float const * end_encode_m8 = encode + width_times_channels - stbir__simdfX_float_count*2; end_output -= stbir__simdfX_float_count*2; + STBIR_SIMD_NO_UNROLL_LOOP_START_INF_FOR for(;;) { stbir__simdfX e0, e1; @@ -9058,7 +9283,7 @@ static void STBIR__CODER_NAME(stbir__encode_uint16_linear)( void * outputp, int stbir__simdiX_store( output, i ); encode += stbir__simdfX_float_count*2; output += stbir__simdfX_float_count*2; - if ( output <= end_output ) + if ( output <= end_output ) continue; if ( output == ( end_output + stbir__simdfX_float_count*2 ) ) break; @@ -9072,6 +9297,7 @@ static void STBIR__CODER_NAME(stbir__encode_uint16_linear)( void * outputp, int // try to do blocks of 4 when you can #if stbir__coder_min_num != 3 // doesn't divide cleanly by four output += 4; + STBIR_NO_UNROLL_LOOP_START while( output <= end_output ) { stbir__simdf e; @@ -9093,6 +9319,7 @@ static void STBIR__CODER_NAME(stbir__encode_uint16_linear)( void * outputp, int // try to do blocks of 4 when you can #if stbir__coder_min_num != 3 // doesn't divide cleanly by four output += 4; + STBIR_SIMD_NO_UNROLL_LOOP_START while( output <= end_output ) { float f; @@ -9111,6 +9338,7 @@ static void STBIR__CODER_NAME(stbir__encode_uint16_linear)( void * outputp, int // do the remnants #if stbir__coder_min_num < 4 + STBIR_NO_UNROLL_LOOP_START while( output < end_output ) { float f; @@ -9139,6 +9367,7 @@ static void STBIR__CODER_NAME(stbir__decode_half_float_linear)( float * decodep, { stbir__FP16 const * end_input_m8 = input + width_times_channels - 8; decode_end -= 8; + STBIR_NO_UNROLL_LOOP_START_INF_FOR for(;;) { STBIR_NO_UNROLL(decode); @@ -9166,7 +9395,7 @@ static void STBIR__CODER_NAME(stbir__decode_half_float_linear)( float * decodep, #endif decode += 8; input += 8; - if ( decode <= decode_end ) + if ( decode <= decode_end ) continue; if ( decode == ( decode_end + 8 ) ) break; @@ -9180,6 +9409,7 @@ static void STBIR__CODER_NAME(stbir__decode_half_float_linear)( float * decodep, // try to do blocks of 4 when you can #if stbir__coder_min_num != 3 // doesn't divide cleanly by four decode += 4; + STBIR_SIMD_NO_UNROLL_LOOP_START while( decode <= decode_end ) { STBIR_SIMD_NO_UNROLL(decode); @@ -9195,6 +9425,7 @@ static void STBIR__CODER_NAME(stbir__decode_half_float_linear)( float * decodep, // do the remnants #if stbir__coder_min_num < 4 + STBIR_NO_UNROLL_LOOP_START while( decode < decode_end ) { STBIR_NO_UNROLL(decode); @@ -9221,6 +9452,7 @@ static void STBIR__CODER_NAME( stbir__encode_half_float_linear )( void * outputp { float const * end_encode_m8 = encode + width_times_channels - 8; end_output -= 8; + STBIR_SIMD_NO_UNROLL_LOOP_START_INF_FOR for(;;) { STBIR_SIMD_NO_UNROLL(encode); @@ -9247,7 +9479,7 @@ static void STBIR__CODER_NAME( stbir__encode_half_float_linear )( void * outputp #endif encode += 8; output += 8; - if ( output <= end_output ) + if ( output <= end_output ) continue; if ( output == ( end_output + 8 ) ) break; @@ -9261,6 +9493,7 @@ static void STBIR__CODER_NAME( stbir__encode_half_float_linear )( void * outputp // try to do blocks of 4 when you can #if stbir__coder_min_num != 3 // doesn't divide cleanly by four output += 4; + STBIR_SIMD_NO_UNROLL_LOOP_START while( output <= end_output ) { STBIR_SIMD_NO_UNROLL(output); @@ -9276,6 +9509,7 @@ static void STBIR__CODER_NAME( stbir__encode_half_float_linear )( void * outputp // do the remnants #if stbir__coder_min_num < 4 + STBIR_NO_UNROLL_LOOP_START while( output < end_output ) { STBIR_NO_UNROLL(output); @@ -9304,6 +9538,7 @@ static void STBIR__CODER_NAME(stbir__decode_float_linear)( float * decodep, int { float const * end_input_m16 = input + width_times_channels - 16; decode_end -= 16; + STBIR_NO_UNROLL_LOOP_START_INF_FOR for(;;) { STBIR_NO_UNROLL(decode); @@ -9338,7 +9573,7 @@ static void STBIR__CODER_NAME(stbir__decode_float_linear)( float * decodep, int #endif decode += 16; input += 16; - if ( decode <= decode_end ) + if ( decode <= decode_end ) continue; if ( decode == ( decode_end + 16 ) ) break; @@ -9352,6 +9587,7 @@ static void STBIR__CODER_NAME(stbir__decode_float_linear)( float * decodep, int // try to do blocks of 4 when you can #if stbir__coder_min_num != 3 // doesn't divide cleanly by four decode += 4; + STBIR_SIMD_NO_UNROLL_LOOP_START while( decode <= decode_end ) { STBIR_SIMD_NO_UNROLL(decode); @@ -9367,6 +9603,7 @@ static void STBIR__CODER_NAME(stbir__decode_float_linear)( float * decodep, int // do the remnants #if stbir__coder_min_num < 4 + STBIR_NO_UNROLL_LOOP_START while( decode < decode_end ) { STBIR_NO_UNROLL(decode); @@ -9383,10 +9620,10 @@ static void STBIR__CODER_NAME(stbir__decode_float_linear)( float * decodep, int #endif #else - + if ( (void*)decodep != inputp ) STBIR_MEMCPY( decodep, inputp, width_times_channels * sizeof( float ) ); - + #endif } @@ -9426,6 +9663,7 @@ static void STBIR__CODER_NAME( stbir__encode_float_linear )( void * outputp, int { float const * end_encode_m8 = encode + width_times_channels - ( stbir__simdfX_float_count * 2 ); end_output -= ( stbir__simdfX_float_count * 2 ); + STBIR_SIMD_NO_UNROLL_LOOP_START_INF_FOR for(;;) { stbir__simdfX e0, e1; @@ -9435,18 +9673,18 @@ static void STBIR__CODER_NAME( stbir__encode_float_linear )( void * outputp, int #ifdef STBIR_FLOAT_HIGH_CLAMP stbir__simdfX_min( e0, e0, high_clamp ); stbir__simdfX_min( e1, e1, high_clamp ); -#endif +#endif #ifdef STBIR_FLOAT_LOW_CLAMP stbir__simdfX_max( e0, e0, low_clamp ); stbir__simdfX_max( e1, e1, low_clamp ); -#endif +#endif stbir__encode_simdfX_unflip( e0 ); stbir__encode_simdfX_unflip( e1 ); stbir__simdfX_store( output, e0 ); stbir__simdfX_store( output+stbir__simdfX_float_count, e1 ); encode += stbir__simdfX_float_count * 2; output += stbir__simdfX_float_count * 2; - if ( output < end_output ) + if ( output < end_output ) continue; if ( output == ( end_output + ( stbir__simdfX_float_count * 2 ) ) ) break; @@ -9459,6 +9697,7 @@ static void STBIR__CODER_NAME( stbir__encode_float_linear )( void * outputp, int // try to do blocks of 4 when you can #if stbir__coder_min_num != 3 // doesn't divide cleanly by four output += 4; + STBIR_NO_UNROLL_LOOP_START while( output <= end_output ) { stbir__simdf e0; @@ -9466,10 +9705,10 @@ static void STBIR__CODER_NAME( stbir__encode_float_linear )( void * outputp, int stbir__simdf_load( e0, encode ); #ifdef STBIR_FLOAT_HIGH_CLAMP stbir__simdf_min( e0, e0, high_clamp ); -#endif +#endif #ifdef STBIR_FLOAT_LOW_CLAMP stbir__simdf_max( e0, e0, low_clamp ); -#endif +#endif stbir__encode_simdf4_unflip( e0 ); stbir__simdf_store( output-4, e0 ); output += 4; @@ -9483,6 +9722,7 @@ static void STBIR__CODER_NAME( stbir__encode_float_linear )( void * outputp, int // try to do blocks of 4 when you can #if stbir__coder_min_num != 3 // doesn't divide cleanly by four output += 4; + STBIR_SIMD_NO_UNROLL_LOOP_START while( output <= end_output ) { float e; @@ -9502,6 +9742,7 @@ static void STBIR__CODER_NAME( stbir__encode_float_linear )( void * outputp, int // do the remnants #if stbir__coder_min_num < 4 + STBIR_NO_UNROLL_LOOP_START while( output < end_output ) { float e; @@ -9517,18 +9758,18 @@ static void STBIR__CODER_NAME( stbir__encode_float_linear )( void * outputp, int encode += stbir__coder_min_num; } #endif - + #endif } -#undef stbir__decode_suffix +#undef stbir__decode_suffix #undef stbir__decode_simdf8_flip #undef stbir__decode_simdf4_flip -#undef stbir__decode_order0 +#undef stbir__decode_order0 #undef stbir__decode_order1 #undef stbir__decode_order2 #undef stbir__decode_order3 -#undef stbir__encode_order0 +#undef stbir__encode_order0 #undef stbir__encode_order1 #undef stbir__encode_order2 #undef stbir__encode_order3 @@ -9612,7 +9853,8 @@ static void STBIR_chans( stbir__vertical_scatter_with_,_coeffs)( float ** output stbIF5(stbir__simdfX c5 = stbir__simdf_frepX( c5s ); ) stbIF6(stbir__simdfX c6 = stbir__simdf_frepX( c6s ); ) stbIF7(stbir__simdfX c7 = stbir__simdf_frepX( c7s ); ) - while ( ( (char*)input_end - (char*) input ) >= (16*stbir__simdfX_float_count) ) + STBIR_SIMD_NO_UNROLL_LOOP_START + while ( ( (char*)input_end - (char*) input ) >= (16*stbir__simdfX_float_count) ) { stbir__simdfX o0, o1, o2, o3, r0, r1, r2, r3; STBIR_SIMD_NO_UNROLL(output0); @@ -9621,52 +9863,53 @@ static void STBIR_chans( stbir__vertical_scatter_with_,_coeffs)( float ** output #ifdef STB_IMAGE_RESIZE_VERTICAL_CONTINUE stbIF0( stbir__simdfX_load( o0, output0 ); stbir__simdfX_load( o1, output0+stbir__simdfX_float_count ); stbir__simdfX_load( o2, output0+(2*stbir__simdfX_float_count) ); stbir__simdfX_load( o3, output0+(3*stbir__simdfX_float_count) ); - stbir__simdfX_madd( o0, o0, r0, c0 ); stbir__simdfX_madd( o1, o1, r1, c0 ); stbir__simdfX_madd( o2, o2, r2, c0 ); stbir__simdfX_madd( o3, o3, r3, c0 ); + stbir__simdfX_madd( o0, o0, r0, c0 ); stbir__simdfX_madd( o1, o1, r1, c0 ); stbir__simdfX_madd( o2, o2, r2, c0 ); stbir__simdfX_madd( o3, o3, r3, c0 ); stbir__simdfX_store( output0, o0 ); stbir__simdfX_store( output0+stbir__simdfX_float_count, o1 ); stbir__simdfX_store( output0+(2*stbir__simdfX_float_count), o2 ); stbir__simdfX_store( output0+(3*stbir__simdfX_float_count), o3 ); ) stbIF1( stbir__simdfX_load( o0, output1 ); stbir__simdfX_load( o1, output1+stbir__simdfX_float_count ); stbir__simdfX_load( o2, output1+(2*stbir__simdfX_float_count) ); stbir__simdfX_load( o3, output1+(3*stbir__simdfX_float_count) ); - stbir__simdfX_madd( o0, o0, r0, c1 ); stbir__simdfX_madd( o1, o1, r1, c1 ); stbir__simdfX_madd( o2, o2, r2, c1 ); stbir__simdfX_madd( o3, o3, r3, c1 ); + stbir__simdfX_madd( o0, o0, r0, c1 ); stbir__simdfX_madd( o1, o1, r1, c1 ); stbir__simdfX_madd( o2, o2, r2, c1 ); stbir__simdfX_madd( o3, o3, r3, c1 ); stbir__simdfX_store( output1, o0 ); stbir__simdfX_store( output1+stbir__simdfX_float_count, o1 ); stbir__simdfX_store( output1+(2*stbir__simdfX_float_count), o2 ); stbir__simdfX_store( output1+(3*stbir__simdfX_float_count), o3 ); ) stbIF2( stbir__simdfX_load( o0, output2 ); stbir__simdfX_load( o1, output2+stbir__simdfX_float_count ); stbir__simdfX_load( o2, output2+(2*stbir__simdfX_float_count) ); stbir__simdfX_load( o3, output2+(3*stbir__simdfX_float_count) ); - stbir__simdfX_madd( o0, o0, r0, c2 ); stbir__simdfX_madd( o1, o1, r1, c2 ); stbir__simdfX_madd( o2, o2, r2, c2 ); stbir__simdfX_madd( o3, o3, r3, c2 ); + stbir__simdfX_madd( o0, o0, r0, c2 ); stbir__simdfX_madd( o1, o1, r1, c2 ); stbir__simdfX_madd( o2, o2, r2, c2 ); stbir__simdfX_madd( o3, o3, r3, c2 ); stbir__simdfX_store( output2, o0 ); stbir__simdfX_store( output2+stbir__simdfX_float_count, o1 ); stbir__simdfX_store( output2+(2*stbir__simdfX_float_count), o2 ); stbir__simdfX_store( output2+(3*stbir__simdfX_float_count), o3 ); ) stbIF3( stbir__simdfX_load( o0, output3 ); stbir__simdfX_load( o1, output3+stbir__simdfX_float_count ); stbir__simdfX_load( o2, output3+(2*stbir__simdfX_float_count) ); stbir__simdfX_load( o3, output3+(3*stbir__simdfX_float_count) ); - stbir__simdfX_madd( o0, o0, r0, c3 ); stbir__simdfX_madd( o1, o1, r1, c3 ); stbir__simdfX_madd( o2, o2, r2, c3 ); stbir__simdfX_madd( o3, o3, r3, c3 ); + stbir__simdfX_madd( o0, o0, r0, c3 ); stbir__simdfX_madd( o1, o1, r1, c3 ); stbir__simdfX_madd( o2, o2, r2, c3 ); stbir__simdfX_madd( o3, o3, r3, c3 ); stbir__simdfX_store( output3, o0 ); stbir__simdfX_store( output3+stbir__simdfX_float_count, o1 ); stbir__simdfX_store( output3+(2*stbir__simdfX_float_count), o2 ); stbir__simdfX_store( output3+(3*stbir__simdfX_float_count), o3 ); ) stbIF4( stbir__simdfX_load( o0, output4 ); stbir__simdfX_load( o1, output4+stbir__simdfX_float_count ); stbir__simdfX_load( o2, output4+(2*stbir__simdfX_float_count) ); stbir__simdfX_load( o3, output4+(3*stbir__simdfX_float_count) ); - stbir__simdfX_madd( o0, o0, r0, c4 ); stbir__simdfX_madd( o1, o1, r1, c4 ); stbir__simdfX_madd( o2, o2, r2, c4 ); stbir__simdfX_madd( o3, o3, r3, c4 ); + stbir__simdfX_madd( o0, o0, r0, c4 ); stbir__simdfX_madd( o1, o1, r1, c4 ); stbir__simdfX_madd( o2, o2, r2, c4 ); stbir__simdfX_madd( o3, o3, r3, c4 ); stbir__simdfX_store( output4, o0 ); stbir__simdfX_store( output4+stbir__simdfX_float_count, o1 ); stbir__simdfX_store( output4+(2*stbir__simdfX_float_count), o2 ); stbir__simdfX_store( output4+(3*stbir__simdfX_float_count), o3 ); ) stbIF5( stbir__simdfX_load( o0, output5 ); stbir__simdfX_load( o1, output5+stbir__simdfX_float_count ); stbir__simdfX_load( o2, output5+(2*stbir__simdfX_float_count)); stbir__simdfX_load( o3, output5+(3*stbir__simdfX_float_count) ); - stbir__simdfX_madd( o0, o0, r0, c5 ); stbir__simdfX_madd( o1, o1, r1, c5 ); stbir__simdfX_madd( o2, o2, r2, c5 ); stbir__simdfX_madd( o3, o3, r3, c5 ); + stbir__simdfX_madd( o0, o0, r0, c5 ); stbir__simdfX_madd( o1, o1, r1, c5 ); stbir__simdfX_madd( o2, o2, r2, c5 ); stbir__simdfX_madd( o3, o3, r3, c5 ); stbir__simdfX_store( output5, o0 ); stbir__simdfX_store( output5+stbir__simdfX_float_count, o1 ); stbir__simdfX_store( output5+(2*stbir__simdfX_float_count), o2 ); stbir__simdfX_store( output5+(3*stbir__simdfX_float_count), o3 ); ) stbIF6( stbir__simdfX_load( o0, output6 ); stbir__simdfX_load( o1, output6+stbir__simdfX_float_count ); stbir__simdfX_load( o2, output6+(2*stbir__simdfX_float_count) ); stbir__simdfX_load( o3, output6+(3*stbir__simdfX_float_count) ); - stbir__simdfX_madd( o0, o0, r0, c6 ); stbir__simdfX_madd( o1, o1, r1, c6 ); stbir__simdfX_madd( o2, o2, r2, c6 ); stbir__simdfX_madd( o3, o3, r3, c6 ); + stbir__simdfX_madd( o0, o0, r0, c6 ); stbir__simdfX_madd( o1, o1, r1, c6 ); stbir__simdfX_madd( o2, o2, r2, c6 ); stbir__simdfX_madd( o3, o3, r3, c6 ); stbir__simdfX_store( output6, o0 ); stbir__simdfX_store( output6+stbir__simdfX_float_count, o1 ); stbir__simdfX_store( output6+(2*stbir__simdfX_float_count), o2 ); stbir__simdfX_store( output6+(3*stbir__simdfX_float_count), o3 ); ) stbIF7( stbir__simdfX_load( o0, output7 ); stbir__simdfX_load( o1, output7+stbir__simdfX_float_count ); stbir__simdfX_load( o2, output7+(2*stbir__simdfX_float_count) ); stbir__simdfX_load( o3, output7+(3*stbir__simdfX_float_count) ); - stbir__simdfX_madd( o0, o0, r0, c7 ); stbir__simdfX_madd( o1, o1, r1, c7 ); stbir__simdfX_madd( o2, o2, r2, c7 ); stbir__simdfX_madd( o3, o3, r3, c7 ); + stbir__simdfX_madd( o0, o0, r0, c7 ); stbir__simdfX_madd( o1, o1, r1, c7 ); stbir__simdfX_madd( o2, o2, r2, c7 ); stbir__simdfX_madd( o3, o3, r3, c7 ); stbir__simdfX_store( output7, o0 ); stbir__simdfX_store( output7+stbir__simdfX_float_count, o1 ); stbir__simdfX_store( output7+(2*stbir__simdfX_float_count), o2 ); stbir__simdfX_store( output7+(3*stbir__simdfX_float_count), o3 ); ) #else - stbIF0( stbir__simdfX_mult( o0, r0, c0 ); stbir__simdfX_mult( o1, r1, c0 ); stbir__simdfX_mult( o2, r2, c0 ); stbir__simdfX_mult( o3, r3, c0 ); + stbIF0( stbir__simdfX_mult( o0, r0, c0 ); stbir__simdfX_mult( o1, r1, c0 ); stbir__simdfX_mult( o2, r2, c0 ); stbir__simdfX_mult( o3, r3, c0 ); stbir__simdfX_store( output0, o0 ); stbir__simdfX_store( output0+stbir__simdfX_float_count, o1 ); stbir__simdfX_store( output0+(2*stbir__simdfX_float_count), o2 ); stbir__simdfX_store( output0+(3*stbir__simdfX_float_count), o3 ); ) - stbIF1( stbir__simdfX_mult( o0, r0, c1 ); stbir__simdfX_mult( o1, r1, c1 ); stbir__simdfX_mult( o2, r2, c1 ); stbir__simdfX_mult( o3, r3, c1 ); + stbIF1( stbir__simdfX_mult( o0, r0, c1 ); stbir__simdfX_mult( o1, r1, c1 ); stbir__simdfX_mult( o2, r2, c1 ); stbir__simdfX_mult( o3, r3, c1 ); stbir__simdfX_store( output1, o0 ); stbir__simdfX_store( output1+stbir__simdfX_float_count, o1 ); stbir__simdfX_store( output1+(2*stbir__simdfX_float_count), o2 ); stbir__simdfX_store( output1+(3*stbir__simdfX_float_count), o3 ); ) - stbIF2( stbir__simdfX_mult( o0, r0, c2 ); stbir__simdfX_mult( o1, r1, c2 ); stbir__simdfX_mult( o2, r2, c2 ); stbir__simdfX_mult( o3, r3, c2 ); + stbIF2( stbir__simdfX_mult( o0, r0, c2 ); stbir__simdfX_mult( o1, r1, c2 ); stbir__simdfX_mult( o2, r2, c2 ); stbir__simdfX_mult( o3, r3, c2 ); stbir__simdfX_store( output2, o0 ); stbir__simdfX_store( output2+stbir__simdfX_float_count, o1 ); stbir__simdfX_store( output2+(2*stbir__simdfX_float_count), o2 ); stbir__simdfX_store( output2+(3*stbir__simdfX_float_count), o3 ); ) - stbIF3( stbir__simdfX_mult( o0, r0, c3 ); stbir__simdfX_mult( o1, r1, c3 ); stbir__simdfX_mult( o2, r2, c3 ); stbir__simdfX_mult( o3, r3, c3 ); + stbIF3( stbir__simdfX_mult( o0, r0, c3 ); stbir__simdfX_mult( o1, r1, c3 ); stbir__simdfX_mult( o2, r2, c3 ); stbir__simdfX_mult( o3, r3, c3 ); stbir__simdfX_store( output3, o0 ); stbir__simdfX_store( output3+stbir__simdfX_float_count, o1 ); stbir__simdfX_store( output3+(2*stbir__simdfX_float_count), o2 ); stbir__simdfX_store( output3+(3*stbir__simdfX_float_count), o3 ); ) - stbIF4( stbir__simdfX_mult( o0, r0, c4 ); stbir__simdfX_mult( o1, r1, c4 ); stbir__simdfX_mult( o2, r2, c4 ); stbir__simdfX_mult( o3, r3, c4 ); + stbIF4( stbir__simdfX_mult( o0, r0, c4 ); stbir__simdfX_mult( o1, r1, c4 ); stbir__simdfX_mult( o2, r2, c4 ); stbir__simdfX_mult( o3, r3, c4 ); stbir__simdfX_store( output4, o0 ); stbir__simdfX_store( output4+stbir__simdfX_float_count, o1 ); stbir__simdfX_store( output4+(2*stbir__simdfX_float_count), o2 ); stbir__simdfX_store( output4+(3*stbir__simdfX_float_count), o3 ); ) - stbIF5( stbir__simdfX_mult( o0, r0, c5 ); stbir__simdfX_mult( o1, r1, c5 ); stbir__simdfX_mult( o2, r2, c5 ); stbir__simdfX_mult( o3, r3, c5 ); + stbIF5( stbir__simdfX_mult( o0, r0, c5 ); stbir__simdfX_mult( o1, r1, c5 ); stbir__simdfX_mult( o2, r2, c5 ); stbir__simdfX_mult( o3, r3, c5 ); stbir__simdfX_store( output5, o0 ); stbir__simdfX_store( output5+stbir__simdfX_float_count, o1 ); stbir__simdfX_store( output5+(2*stbir__simdfX_float_count), o2 ); stbir__simdfX_store( output5+(3*stbir__simdfX_float_count), o3 ); ) - stbIF6( stbir__simdfX_mult( o0, r0, c6 ); stbir__simdfX_mult( o1, r1, c6 ); stbir__simdfX_mult( o2, r2, c6 ); stbir__simdfX_mult( o3, r3, c6 ); + stbIF6( stbir__simdfX_mult( o0, r0, c6 ); stbir__simdfX_mult( o1, r1, c6 ); stbir__simdfX_mult( o2, r2, c6 ); stbir__simdfX_mult( o3, r3, c6 ); stbir__simdfX_store( output6, o0 ); stbir__simdfX_store( output6+stbir__simdfX_float_count, o1 ); stbir__simdfX_store( output6+(2*stbir__simdfX_float_count), o2 ); stbir__simdfX_store( output6+(3*stbir__simdfX_float_count), o3 ); ) - stbIF7( stbir__simdfX_mult( o0, r0, c7 ); stbir__simdfX_mult( o1, r1, c7 ); stbir__simdfX_mult( o2, r2, c7 ); stbir__simdfX_mult( o3, r3, c7 ); + stbIF7( stbir__simdfX_mult( o0, r0, c7 ); stbir__simdfX_mult( o1, r1, c7 ); stbir__simdfX_mult( o2, r2, c7 ); stbir__simdfX_mult( o3, r3, c7 ); stbir__simdfX_store( output7, o0 ); stbir__simdfX_store( output7+stbir__simdfX_float_count, o1 ); stbir__simdfX_store( output7+(2*stbir__simdfX_float_count), o2 ); stbir__simdfX_store( output7+(3*stbir__simdfX_float_count), o3 ); ) #endif input += (4*stbir__simdfX_float_count); stbIF0( output0 += (4*stbir__simdfX_float_count); ) stbIF1( output1 += (4*stbir__simdfX_float_count); ) stbIF2( output2 += (4*stbir__simdfX_float_count); ) stbIF3( output3 += (4*stbir__simdfX_float_count); ) stbIF4( output4 += (4*stbir__simdfX_float_count); ) stbIF5( output5 += (4*stbir__simdfX_float_count); ) stbIF6( output6 += (4*stbir__simdfX_float_count); ) stbIF7( output7 += (4*stbir__simdfX_float_count); ) } - while ( ( (char*)input_end - (char*) input ) >= 16 ) + STBIR_SIMD_NO_UNROLL_LOOP_START + while ( ( (char*)input_end - (char*) input ) >= 16 ) { stbir__simdf o0, r0; STBIR_SIMD_NO_UNROLL(output0); @@ -9692,13 +9935,14 @@ static void STBIR_chans( stbir__vertical_scatter_with_,_coeffs)( float ** output stbIF6( stbir__simdf_mult( o0, r0, stbir__if_simdf8_cast_to_simdf4( c6 ) ); stbir__simdf_store( output6, o0 ); ) stbIF7( stbir__simdf_mult( o0, r0, stbir__if_simdf8_cast_to_simdf4( c7 ) ); stbir__simdf_store( output7, o0 ); ) #endif - + input += 4; stbIF0( output0 += 4; ) stbIF1( output1 += 4; ) stbIF2( output2 += 4; ) stbIF3( output3 += 4; ) stbIF4( output4 += 4; ) stbIF5( output5 += 4; ) stbIF6( output6 += 4; ) stbIF7( output7 += 4; ) } } #else - while ( ( (char*)input_end - (char*) input ) >= 16 ) + STBIR_NO_UNROLL_LOOP_START + while ( ( (char*)input_end - (char*) input ) >= 16 ) { float r0, r1, r2, r3; STBIR_NO_UNROLL(input); @@ -9729,7 +9973,8 @@ static void STBIR_chans( stbir__vertical_scatter_with_,_coeffs)( float ** output stbIF0( output0 += 4; ) stbIF1( output1 += 4; ) stbIF2( output2 += 4; ) stbIF3( output3 += 4; ) stbIF4( output4 += 4; ) stbIF5( output5 += 4; ) stbIF6( output6 += 4; ) stbIF7( output7 += 4; ) } #endif - while ( input < input_end ) + STBIR_NO_UNROLL_LOOP_START + while ( input < input_end ) { float r = input[0]; STBIR_NO_UNROLL(output0); @@ -9779,7 +10024,7 @@ static void STBIR_chans( stbir__vertical_gather_with_,_coeffs)( float * outputp, STBIR_MEMCPY( output, input0, (char*)input0_end - (char*)input0 ); return; } -#endif +#endif #ifdef STBIR_SIMD { @@ -9791,14 +10036,15 @@ static void STBIR_chans( stbir__vertical_gather_with_,_coeffs)( float * outputp, stbIF5(stbir__simdfX c5 = stbir__simdf_frepX( c5s ); ) stbIF6(stbir__simdfX c6 = stbir__simdf_frepX( c6s ); ) stbIF7(stbir__simdfX c7 = stbir__simdf_frepX( c7s ); ) - - while ( ( (char*)input0_end - (char*) input0 ) >= (16*stbir__simdfX_float_count) ) + + STBIR_SIMD_NO_UNROLL_LOOP_START + while ( ( (char*)input0_end - (char*) input0 ) >= (16*stbir__simdfX_float_count) ) { stbir__simdfX o0, o1, o2, o3, r0, r1, r2, r3; STBIR_SIMD_NO_UNROLL(output); // prefetch four loop iterations ahead (doesn't affect much for small resizes, but helps with big ones) - stbIF0( stbir__prefetch( input0 + (16*stbir__simdfX_float_count) ); ) + stbIF0( stbir__prefetch( input0 + (16*stbir__simdfX_float_count) ); ) stbIF1( stbir__prefetch( input1 + (16*stbir__simdfX_float_count) ); ) stbIF2( stbir__prefetch( input2 + (16*stbir__simdfX_float_count) ); ) stbIF3( stbir__prefetch( input3 + (16*stbir__simdfX_float_count) ); ) @@ -9836,7 +10082,8 @@ static void STBIR_chans( stbir__vertical_gather_with_,_coeffs)( float * outputp, stbIF0( input0 += (4*stbir__simdfX_float_count); ) stbIF1( input1 += (4*stbir__simdfX_float_count); ) stbIF2( input2 += (4*stbir__simdfX_float_count); ) stbIF3( input3 += (4*stbir__simdfX_float_count); ) stbIF4( input4 += (4*stbir__simdfX_float_count); ) stbIF5( input5 += (4*stbir__simdfX_float_count); ) stbIF6( input6 += (4*stbir__simdfX_float_count); ) stbIF7( input7 += (4*stbir__simdfX_float_count); ) } - while ( ( (char*)input0_end - (char*) input0 ) >= 16 ) + STBIR_SIMD_NO_UNROLL_LOOP_START + while ( ( (char*)input0_end - (char*) input0 ) >= 16 ) { stbir__simdf o0, r0; STBIR_SIMD_NO_UNROLL(output); @@ -9860,7 +10107,8 @@ static void STBIR_chans( stbir__vertical_gather_with_,_coeffs)( float * outputp, } } #else - while ( ( (char*)input0_end - (char*) input0 ) >= 16 ) + STBIR_NO_UNROLL_LOOP_START + while ( ( (char*)input0_end - (char*) input0 ) >= 16 ) { float o0, o1, o2, o3; STBIR_NO_UNROLL(output); @@ -9881,7 +10129,8 @@ static void STBIR_chans( stbir__vertical_gather_with_,_coeffs)( float * outputp, stbIF0( input0 += 4; ) stbIF1( input1 += 4; ) stbIF2( input2 += 4; ) stbIF3( input3 += 4; ) stbIF4( input4 += 4; ) stbIF5( input5 += 4; ) stbIF6( input6 += 4; ) stbIF7( input7 += 4; ) } #endif - while ( input0 < input0_end ) + STBIR_NO_UNROLL_LOOP_START + while ( input0 < input0_end ) { float o0; STBIR_NO_UNROLL(output); @@ -9897,7 +10146,7 @@ static void STBIR_chans( stbir__vertical_gather_with_,_coeffs)( float * outputp, stbIF5( o0 += input5[0] * c5s; ) stbIF6( o0 += input6[0] * c6s; ) stbIF7( o0 += input7[0] * c7s; ) - output[0] = o0; + output[0] = o0; ++output; stbIF0( ++input0; ) stbIF1( ++input1; ) stbIF2( ++input2; ) stbIF3( ++input3; ) stbIF4( ++input4; ) stbIF5( ++input5; ) stbIF6( ++input6; ) stbIF7( ++input7; ) } @@ -9928,25 +10177,25 @@ static void STBIR_chans( stbir__vertical_gather_with_,_coeffs)( float * outputp, #ifndef stbir__2_coeff_only #define stbir__2_coeff_only() \ stbir__1_coeff_only(); \ - stbir__1_coeff_remnant(1); + stbir__1_coeff_remnant(1); #endif #ifndef stbir__2_coeff_remnant #define stbir__2_coeff_remnant( ofs ) \ stbir__1_coeff_remnant(ofs); \ - stbir__1_coeff_remnant((ofs)+1); + stbir__1_coeff_remnant((ofs)+1); #endif - + #ifndef stbir__3_coeff_only #define stbir__3_coeff_only() \ stbir__2_coeff_only(); \ - stbir__1_coeff_remnant(2); + stbir__1_coeff_remnant(2); #endif - + #ifndef stbir__3_coeff_remnant #define stbir__3_coeff_remnant( ofs ) \ stbir__2_coeff_remnant(ofs); \ - stbir__1_coeff_remnant((ofs)+2); + stbir__1_coeff_remnant((ofs)+2); #endif #ifndef stbir__3_coeff_setup @@ -9956,13 +10205,13 @@ static void STBIR_chans( stbir__vertical_gather_with_,_coeffs)( float * outputp, #ifndef stbir__4_coeff_start #define stbir__4_coeff_start() \ stbir__2_coeff_only(); \ - stbir__2_coeff_remnant(2); + stbir__2_coeff_remnant(2); #endif - + #ifndef stbir__4_coeff_continue_from_4 #define stbir__4_coeff_continue_from_4( ofs ) \ stbir__2_coeff_remnant(ofs); \ - stbir__2_coeff_remnant((ofs)+2); + stbir__2_coeff_remnant((ofs)+2); #endif #ifndef stbir__store_output_tiny @@ -9973,8 +10222,9 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_1_coeff)( floa { float const * output_end = output_buffer + output_sub_size * STBIR__horizontal_channels; float STBIR_SIMD_STREAMOUT_PTR( * ) output = output_buffer; + STBIR_SIMD_NO_UNROLL_LOOP_START do { - float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; + float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; float const * hc = horizontal_coefficients; stbir__1_coeff_only(); stbir__store_output_tiny(); @@ -9985,8 +10235,9 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_2_coeffs)( flo { float const * output_end = output_buffer + output_sub_size * STBIR__horizontal_channels; float STBIR_SIMD_STREAMOUT_PTR( * ) output = output_buffer; + STBIR_SIMD_NO_UNROLL_LOOP_START do { - float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; + float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; float const * hc = horizontal_coefficients; stbir__2_coeff_only(); stbir__store_output_tiny(); @@ -9997,8 +10248,9 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_3_coeffs)( flo { float const * output_end = output_buffer + output_sub_size * STBIR__horizontal_channels; float STBIR_SIMD_STREAMOUT_PTR( * ) output = output_buffer; + STBIR_SIMD_NO_UNROLL_LOOP_START do { - float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; + float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; float const * hc = horizontal_coefficients; stbir__3_coeff_only(); stbir__store_output_tiny(); @@ -10009,8 +10261,9 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_4_coeffs)( flo { float const * output_end = output_buffer + output_sub_size * STBIR__horizontal_channels; float STBIR_SIMD_STREAMOUT_PTR( * ) output = output_buffer; + STBIR_SIMD_NO_UNROLL_LOOP_START do { - float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; + float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; float const * hc = horizontal_coefficients; stbir__4_coeff_start(); stbir__store_output(); @@ -10021,8 +10274,9 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_5_coeffs)( flo { float const * output_end = output_buffer + output_sub_size * STBIR__horizontal_channels; float STBIR_SIMD_STREAMOUT_PTR( * ) output = output_buffer; + STBIR_SIMD_NO_UNROLL_LOOP_START do { - float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; + float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; float const * hc = horizontal_coefficients; stbir__4_coeff_start(); stbir__1_coeff_remnant(4); @@ -10034,8 +10288,9 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_6_coeffs)( flo { float const * output_end = output_buffer + output_sub_size * STBIR__horizontal_channels; float STBIR_SIMD_STREAMOUT_PTR( * ) output = output_buffer; + STBIR_SIMD_NO_UNROLL_LOOP_START do { - float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; + float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; float const * hc = horizontal_coefficients; stbir__4_coeff_start(); stbir__2_coeff_remnant(4); @@ -10048,10 +10303,11 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_7_coeffs)( flo float const * output_end = output_buffer + output_sub_size * STBIR__horizontal_channels; float STBIR_SIMD_STREAMOUT_PTR( * ) output = output_buffer; stbir__3_coeff_setup(); + STBIR_SIMD_NO_UNROLL_LOOP_START do { - float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; + float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; float const * hc = horizontal_coefficients; - + stbir__4_coeff_start(); stbir__3_coeff_remnant(4); stbir__store_output(); @@ -10062,8 +10318,9 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_8_coeffs)( flo { float const * output_end = output_buffer + output_sub_size * STBIR__horizontal_channels; float STBIR_SIMD_STREAMOUT_PTR( * ) output = output_buffer; + STBIR_SIMD_NO_UNROLL_LOOP_START do { - float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; + float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; float const * hc = horizontal_coefficients; stbir__4_coeff_start(); stbir__4_coeff_continue_from_4(4); @@ -10075,8 +10332,9 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_9_coeffs)( flo { float const * output_end = output_buffer + output_sub_size * STBIR__horizontal_channels; float STBIR_SIMD_STREAMOUT_PTR( * ) output = output_buffer; + STBIR_SIMD_NO_UNROLL_LOOP_START do { - float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; + float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; float const * hc = horizontal_coefficients; stbir__4_coeff_start(); stbir__4_coeff_continue_from_4(4); @@ -10089,8 +10347,9 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_10_coeffs)( fl { float const * output_end = output_buffer + output_sub_size * STBIR__horizontal_channels; float STBIR_SIMD_STREAMOUT_PTR( * ) output = output_buffer; + STBIR_SIMD_NO_UNROLL_LOOP_START do { - float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; + float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; float const * hc = horizontal_coefficients; stbir__4_coeff_start(); stbir__4_coeff_continue_from_4(4); @@ -10104,8 +10363,9 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_11_coeffs)( fl float const * output_end = output_buffer + output_sub_size * STBIR__horizontal_channels; float STBIR_SIMD_STREAMOUT_PTR( * ) output = output_buffer; stbir__3_coeff_setup(); + STBIR_SIMD_NO_UNROLL_LOOP_START do { - float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; + float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; float const * hc = horizontal_coefficients; stbir__4_coeff_start(); stbir__4_coeff_continue_from_4(4); @@ -10118,8 +10378,9 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_12_coeffs)( fl { float const * output_end = output_buffer + output_sub_size * STBIR__horizontal_channels; float STBIR_SIMD_STREAMOUT_PTR( * ) output = output_buffer; + STBIR_SIMD_NO_UNROLL_LOOP_START do { - float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; + float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; float const * hc = horizontal_coefficients; stbir__4_coeff_start(); stbir__4_coeff_continue_from_4(4); @@ -10132,12 +10393,14 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_n_coeffs_mod0 { float const * output_end = output_buffer + output_sub_size * STBIR__horizontal_channels; float STBIR_SIMD_STREAMOUT_PTR( * ) output = output_buffer; + STBIR_SIMD_NO_UNROLL_LOOP_START do { - float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; - int n = ( ( horizontal_contributors->n1 - horizontal_contributors->n0 + 1 ) - 4 + 3 ) >> 2; + float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; + int n = ( ( horizontal_contributors->n1 - horizontal_contributors->n0 + 1 ) - 4 + 3 ) >> 2; float const * hc = horizontal_coefficients; stbir__4_coeff_start(); + STBIR_SIMD_NO_UNROLL_LOOP_START do { hc += 4; decode += STBIR__horizontal_channels * 4; @@ -10152,19 +10415,21 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_n_coeffs_mod1 { float const * output_end = output_buffer + output_sub_size * STBIR__horizontal_channels; float STBIR_SIMD_STREAMOUT_PTR( * ) output = output_buffer; + STBIR_SIMD_NO_UNROLL_LOOP_START do { - float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; - int n = ( ( horizontal_contributors->n1 - horizontal_contributors->n0 + 1 ) - 5 + 3 ) >> 2; + float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; + int n = ( ( horizontal_contributors->n1 - horizontal_contributors->n0 + 1 ) - 5 + 3 ) >> 2; float const * hc = horizontal_coefficients; stbir__4_coeff_start(); + STBIR_SIMD_NO_UNROLL_LOOP_START do { hc += 4; decode += STBIR__horizontal_channels * 4; stbir__4_coeff_continue_from_4( 0 ); --n; } while ( n > 0 ); - stbir__1_coeff_remnant( 4 ); + stbir__1_coeff_remnant( 4 ); stbir__store_output(); } while ( output < output_end ); } @@ -10173,19 +10438,21 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_n_coeffs_mod2 { float const * output_end = output_buffer + output_sub_size * STBIR__horizontal_channels; float STBIR_SIMD_STREAMOUT_PTR( * ) output = output_buffer; + STBIR_SIMD_NO_UNROLL_LOOP_START do { - float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; - int n = ( ( horizontal_contributors->n1 - horizontal_contributors->n0 + 1 ) - 6 + 3 ) >> 2; + float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; + int n = ( ( horizontal_contributors->n1 - horizontal_contributors->n0 + 1 ) - 6 + 3 ) >> 2; float const * hc = horizontal_coefficients; stbir__4_coeff_start(); + STBIR_SIMD_NO_UNROLL_LOOP_START do { hc += 4; decode += STBIR__horizontal_channels * 4; stbir__4_coeff_continue_from_4( 0 ); --n; } while ( n > 0 ); - stbir__2_coeff_remnant( 4 ); + stbir__2_coeff_remnant( 4 ); stbir__store_output(); } while ( output < output_end ); @@ -10196,19 +10463,21 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_n_coeffs_mod3 float const * output_end = output_buffer + output_sub_size * STBIR__horizontal_channels; float STBIR_SIMD_STREAMOUT_PTR( * ) output = output_buffer; stbir__3_coeff_setup(); + STBIR_SIMD_NO_UNROLL_LOOP_START do { - float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; - int n = ( ( horizontal_contributors->n1 - horizontal_contributors->n0 + 1 ) - 7 + 3 ) >> 2; + float const * decode = decode_buffer + horizontal_contributors->n0 * STBIR__horizontal_channels; + int n = ( ( horizontal_contributors->n1 - horizontal_contributors->n0 + 1 ) - 7 + 3 ) >> 2; float const * hc = horizontal_coefficients; stbir__4_coeff_start(); + STBIR_SIMD_NO_UNROLL_LOOP_START do { hc += 4; decode += STBIR__horizontal_channels * 4; stbir__4_coeff_continue_from_4( 0 ); --n; } while ( n > 0 ); - stbir__3_coeff_remnant( 4 ); + stbir__3_coeff_remnant( 4 ); stbir__store_output(); } while ( output < output_end ); @@ -10216,26 +10485,26 @@ static void STBIR_chans( stbir__horizontal_gather_,_channels_with_n_coeffs_mod3 static stbir__horizontal_gather_channels_func * STBIR_chans(stbir__horizontal_gather_,_channels_with_n_coeffs_funcs)[4]= { - STBIR_chans(stbir__horizontal_gather_,_channels_with_n_coeffs_mod0), - STBIR_chans(stbir__horizontal_gather_,_channels_with_n_coeffs_mod1), - STBIR_chans(stbir__horizontal_gather_,_channels_with_n_coeffs_mod2), - STBIR_chans(stbir__horizontal_gather_,_channels_with_n_coeffs_mod3), + STBIR_chans(stbir__horizontal_gather_,_channels_with_n_coeffs_mod0), + STBIR_chans(stbir__horizontal_gather_,_channels_with_n_coeffs_mod1), + STBIR_chans(stbir__horizontal_gather_,_channels_with_n_coeffs_mod2), + STBIR_chans(stbir__horizontal_gather_,_channels_with_n_coeffs_mod3), }; static stbir__horizontal_gather_channels_func * STBIR_chans(stbir__horizontal_gather_,_channels_funcs)[12]= { - STBIR_chans(stbir__horizontal_gather_,_channels_with_1_coeff), - STBIR_chans(stbir__horizontal_gather_,_channels_with_2_coeffs), + STBIR_chans(stbir__horizontal_gather_,_channels_with_1_coeff), + STBIR_chans(stbir__horizontal_gather_,_channels_with_2_coeffs), STBIR_chans(stbir__horizontal_gather_,_channels_with_3_coeffs), - STBIR_chans(stbir__horizontal_gather_,_channels_with_4_coeffs), - STBIR_chans(stbir__horizontal_gather_,_channels_with_5_coeffs), - STBIR_chans(stbir__horizontal_gather_,_channels_with_6_coeffs), + STBIR_chans(stbir__horizontal_gather_,_channels_with_4_coeffs), + STBIR_chans(stbir__horizontal_gather_,_channels_with_5_coeffs), + STBIR_chans(stbir__horizontal_gather_,_channels_with_6_coeffs), STBIR_chans(stbir__horizontal_gather_,_channels_with_7_coeffs), - STBIR_chans(stbir__horizontal_gather_,_channels_with_8_coeffs), - STBIR_chans(stbir__horizontal_gather_,_channels_with_9_coeffs), - STBIR_chans(stbir__horizontal_gather_,_channels_with_10_coeffs), - STBIR_chans(stbir__horizontal_gather_,_channels_with_11_coeffs), - STBIR_chans(stbir__horizontal_gather_,_channels_with_12_coeffs), + STBIR_chans(stbir__horizontal_gather_,_channels_with_8_coeffs), + STBIR_chans(stbir__horizontal_gather_,_channels_with_9_coeffs), + STBIR_chans(stbir__horizontal_gather_,_channels_with_10_coeffs), + STBIR_chans(stbir__horizontal_gather_,_channels_with_11_coeffs), + STBIR_chans(stbir__horizontal_gather_,_channels_with_12_coeffs), }; #undef STBIR__horizontal_channels @@ -10266,38 +10535,38 @@ This software is available under 2 licenses -- choose whichever you prefer. ------------------------------------------------------------------------------ ALTERNATIVE A - MIT License Copyright (c) 2017 Sean Barrett -Permission is hereby granted, free of charge, to any person obtaining a copy of -this software and associated documentation files (the "Software"), to deal in -the Software without restriction, including without limitation the rights to -use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies -of the Software, and to permit persons to whom the Software is furnished to do +Permission is hereby granted, free of charge, to any person obtaining a copy of +this software and associated documentation files (the "Software"), to deal in +the Software without restriction, including without limitation the rights to +use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies +of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: -The above copyright notice and this permission notice shall be included in all +The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. -THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR -IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, -FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE -AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER -LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, -OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, +OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. ------------------------------------------------------------------------------ ALTERNATIVE B - Public Domain (www.unlicense.org) This is free and unencumbered software released into the public domain. -Anyone is free to copy, modify, publish, use, compile, sell, or distribute this -software, either in source code form or as a compiled binary, for any purpose, +Anyone is free to copy, modify, publish, use, compile, sell, or distribute this +software, either in source code form or as a compiled binary, for any purpose, commercial or non-commercial, and by any means. -In jurisdictions that recognize copyright laws, the author or authors of this -software dedicate any and all copyright interest in the software to the public -domain. We make this dedication for the benefit of the public at large and to -the detriment of our heirs and successors. We intend this dedication to be an -overt act of relinquishment in perpetuity of all present and future rights to +In jurisdictions that recognize copyright laws, the author or authors of this +software dedicate any and all copyright interest in the software to the public +domain. We make this dedication for the benefit of the public at large and to +the detriment of our heirs and successors. We intend this dedication to be an +overt act of relinquishment in perpetuity of all present and future rights to this software under copyright law. -THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR -IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, -FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE -AUTHORS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN -ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +AUTHORS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN +ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. ------------------------------------------------------------------------------ */ diff --git a/src/platforms/rcore_android.c b/src/platforms/rcore_android.c index 68ae979ee..85ce82a3a 100644 --- a/src/platforms/rcore_android.c +++ b/src/platforms/rcore_android.c @@ -74,7 +74,7 @@ typedef struct { // Global Variables Definition //---------------------------------------------------------------------------------- extern CoreData CORE; // Global CORE state context - +extern bool isGpuReady; // Flag to note GPU has been initialized successfully static PlatformData platform = { 0 }; // Platform specific data //---------------------------------------------------------------------------------- @@ -281,14 +281,15 @@ void android_main(struct android_app *app) // Request to end the native activity ANativeActivity_finish(app->activity); - // Android ALooper_pollAll() variables + // Android ALooper_pollOnce() variables int pollResult = 0; int pollEvents = 0; // Waiting for application events before complete finishing while (!app->destroyRequested) { - while ((pollResult = ALooper_pollAll(0, NULL, &pollEvents, (void **)&platform.source)) >= 0) + // Poll all events until we reach return value TIMEOUT, meaning no events left to process + while ((pollResult = ALooper_pollOnce(0, NULL, &pollEvents, (void **)&platform.source)) > ALOOPER_POLL_TIMEOUT) { if (platform.source != NULL) platform.source->process(app, platform.source); } @@ -614,7 +615,7 @@ int SetGamepadMappings(const char *mappings) } // Set gamepad vibration -void SetGamepadVibration(int gamepad, float leftMotor, float rightMotor) +void SetGamepadVibration(int gamepad, float leftMotor, float rightMotor, float duration) { TRACELOG(LOG_WARNING, "GamepadSetVibration() not implemented on target platform"); } @@ -682,27 +683,27 @@ void PollInputEvents(void) CORE.Input.Keyboard.keyRepeatInFrame[i] = 0; } - // Android ALooper_pollAll() variables + // Android ALooper_pollOnce() variables int pollResult = 0; int pollEvents = 0; - // Poll Events (registered events) + // Poll Events (registered events) until we reach TIMEOUT which indicates there are no events left to poll // NOTE: Activity is paused if not enabled (platform.appEnabled) - while ((pollResult = ALooper_pollAll(platform.appEnabled? 0 : -1, NULL, &pollEvents, (void**)&platform.source)) >= 0) + while ((pollResult = ALooper_pollOnce(platform.appEnabled? 0 : -1, NULL, &pollEvents, (void**)&platform.source)) > ALOOPER_POLL_TIMEOUT) { // Process this event if (platform.source != NULL) platform.source->process(platform.app, platform.source); - // NOTE: Never close window, native activity is controlled by the system! + // NOTE: Allow closing the window in case a configuration change happened. + // The android_main function should be allowed to return to its caller in order for the + // Android OS to relaunch the activity. if (platform.app->destroyRequested != 0) { - //CORE.Window.shouldClose = true; - //ANativeActivity_finish(platform.app->activity); + CORE.Window.shouldClose = true; } } } - //---------------------------------------------------------------------------------- // Module Internal Functions Definition //---------------------------------------------------------------------------------- @@ -767,20 +768,20 @@ int InitPlatform(void) TRACELOG(LOG_INFO, "PLATFORM: ANDROID: Initialized successfully"); - // Android ALooper_pollAll() variables + // Android ALooper_pollOnce() variables int pollResult = 0; int pollEvents = 0; // Wait for window to be initialized (display and context) while (!CORE.Window.ready) { - // Process events loop - while ((pollResult = ALooper_pollAll(0, NULL, &pollEvents, (void**)&platform.source)) >= 0) + // Process events until we reach TIMEOUT, which indicates no more events queued. + while ((pollResult = ALooper_pollOnce(0, NULL, &pollEvents, (void**)&platform.source)) > ALOOPER_POLL_TIMEOUT) { // Process this event if (platform.source != NULL) platform.source->process(platform.app, platform.source); - // NOTE: Never close window, native activity is controlled by the system! + // NOTE: It's highly likely destroyRequested will never be non-zero at the start of the activity lifecycle. //if (platform.app->destroyRequested != 0) CORE.Window.shouldClose = true; } } @@ -811,6 +812,12 @@ void ClosePlatform(void) eglTerminate(platform.device); platform.device = EGL_NO_DISPLAY; } + + // NOTE: Reset global state in case the activity is being relaunched. + if (platform.app->destroyRequested != 0) { + CORE = (CoreData){0}; + platform = (PlatformData){0}; + } } // Initialize display device and framebuffer @@ -981,6 +988,7 @@ static void AndroidCommandCallback(struct android_app *app, int32_t cmd) // Initialize OpenGL context (states and resources) // NOTE: CORE.Window.currentFbo.width and CORE.Window.currentFbo.height not used, just stored as globals in rlgl rlglInit(CORE.Window.currentFbo.width, CORE.Window.currentFbo.height); + isGpuReady = true; // Setup default viewport // NOTE: It updated CORE.Window.render.width and CORE.Window.render.height diff --git a/src/platforms/rcore_desktop_glfw.c b/src/platforms/rcore_desktop_glfw.c index d64bf60db..41f7fac39 100644 --- a/src/platforms/rcore_desktop_glfw.c +++ b/src/platforms/rcore_desktop_glfw.c @@ -109,6 +109,7 @@ static void ErrorCallback(int error, const char *description); // Window callbacks events static void WindowSizeCallback(GLFWwindow *window, int width, int height); // GLFW3 WindowSize Callback, runs when window is resized +static void WindowPosCallback(GLFWwindow* window, int x, int y); // GLFW3 WindowPos Callback, runs when window is moved static void WindowIconifyCallback(GLFWwindow *window, int iconified); // GLFW3 WindowIconify Callback, runs when window is minimized/restored static void WindowMaximizeCallback(GLFWwindow* window, int maximized); // GLFW3 Window Maximize Callback, runs when window is maximized static void WindowFocusCallback(GLFWwindow *window, int focused); // GLFW3 WindowFocus Callback, runs when window get/lose focus @@ -147,7 +148,7 @@ void ToggleFullscreen(void) if (!CORE.Window.fullscreen) { // Store previous window position (in case we exit fullscreen) - glfwGetWindowPos(platform.handle, &CORE.Window.position.x, &CORE.Window.position.y); + CORE.Window.previousPosition = CORE.Window.position; int monitorCount = 0; int monitorIndex = GetCurrentMonitor(); @@ -179,7 +180,11 @@ void ToggleFullscreen(void) CORE.Window.fullscreen = false; CORE.Window.flags &= ~FLAG_FULLSCREEN_MODE; - glfwSetWindowMonitor(platform.handle, NULL, CORE.Window.position.x, CORE.Window.position.y, CORE.Window.screen.width, CORE.Window.screen.height, GLFW_DONT_CARE); + glfwSetWindowMonitor(platform.handle, NULL, CORE.Window.previousPosition.x, CORE.Window.previousPosition.y, CORE.Window.screen.width, CORE.Window.screen.height, GLFW_DONT_CARE); + + // we update the window position right away + CORE.Window.position.x = CORE.Window.previousPosition.x; + CORE.Window.position.y = CORE.Window.previousPosition.y; } // Try to enable GPU V-Sync, so frames are limited to screen refresh rate (60Hz -> 60 FPS) @@ -190,11 +195,11 @@ void ToggleFullscreen(void) // Toggle borderless windowed mode void ToggleBorderlessWindowed(void) { - // Leave fullscreen before attempting to set borderless windowed mode and get screen position from it + // Leave fullscreen before attempting to set borderless windowed mode bool wasOnFullscreen = false; if (CORE.Window.fullscreen) { - CORE.Window.previousPosition = CORE.Window.position; + // fullscreen already saves the previous position so it does not need to be set here again ToggleFullscreen(); wasOnFullscreen = true; } @@ -213,7 +218,7 @@ void ToggleBorderlessWindowed(void) { // Store screen position and size // NOTE: If it was on fullscreen, screen position was already stored, so skip setting it here - if (!wasOnFullscreen) glfwGetWindowPos(platform.handle, &CORE.Window.previousPosition.x, &CORE.Window.previousPosition.y); + if (!wasOnFullscreen) CORE.Window.previousPosition = CORE.Window.position; CORE.Window.previousScreen = CORE.Window.screen; // Set undecorated and topmost modes and flags @@ -255,6 +260,9 @@ void ToggleBorderlessWindowed(void) glfwFocusWindow(platform.handle); CORE.Window.flags &= ~FLAG_BORDERLESS_WINDOWED_MODE; + + CORE.Window.position.x = CORE.Window.previousPosition.x; + CORE.Window.position.y = CORE.Window.previousPosition.y; } } else TRACELOG(LOG_WARNING, "GLFW: Failed to find video mode for selected monitor"); @@ -592,6 +600,9 @@ void SetWindowTitle(const char *title) // Set window position on screen (windowed mode) void SetWindowPosition(int x, int y) { + // Update CORE.Window.position as well + CORE.Window.position.x = x; + CORE.Window.position.y = y; glfwSetWindowPos(platform.handle, x, y); } @@ -614,8 +625,9 @@ void SetWindowMonitor(int monitor) { TRACELOG(LOG_INFO, "GLFW: Selected monitor: [%i] %s", monitor, glfwGetMonitorName(monitors[monitor])); - const int screenWidth = CORE.Window.screen.width; - const int screenHeight = CORE.Window.screen.height; + // Here the render width has to be used again in case high dpi flag is enabled + const int screenWidth = CORE.Window.render.width; + const int screenHeight = CORE.Window.render.height; int monitorWorkareaX = 0; int monitorWorkareaY = 0; int monitorWorkareaWidth = 0; @@ -1048,7 +1060,7 @@ int SetGamepadMappings(const char *mappings) } // Set gamepad vibration -void SetGamepadVibration(int gamepad, float leftMotor, float rightMotor) +void SetGamepadVibration(int gamepad, float leftMotor, float rightMotor, float duration) { TRACELOG(LOG_WARNING, "GamepadSetVibration() not available on target platform"); } @@ -1222,7 +1234,6 @@ void PollInputEvents(void) glfwSetWindowShouldClose(platform.handle, GLFW_FALSE); } - //---------------------------------------------------------------------------------- // Module Internal Functions Definition //---------------------------------------------------------------------------------- @@ -1278,7 +1289,7 @@ int InitPlatform(void) // Disable GlFW auto iconify behaviour // Auto Iconify automatically minimizes (iconifies) the window if the window loses focus // additionally auto iconify restores the hardware resolution of the monitor if the window that loses focus is a fullscreen window - glfwWindowHint(GLFW_AUTO_ICONIFY, 0); + glfwWindowHint(GLFW_AUTO_ICONIFY, 0); // Check window creation flags if ((CORE.Window.flags & FLAG_FULLSCREEN_MODE) > 0) CORE.Window.fullscreen = true; @@ -1435,7 +1446,7 @@ int InitPlatform(void) } } - TRACELOG(LOG_WARNING, "SYSTEM: Closest fullscreen videomode: %i x %i", CORE.Window.display.width, CORE.Window.display.height); + TRACELOG(LOG_INFO, "SYSTEM: Closest fullscreen videomode: %i x %i", CORE.Window.display.width, CORE.Window.display.height); // NOTE: ISSUE: Closest videomode could not match monitor aspect-ratio, for example, // for a desired screen size of 800x450 (16:9), closest supported videomode is 800x600 (4:3), @@ -1569,11 +1580,16 @@ int InitPlatform(void) int monitorHeight = 0; glfwGetMonitorWorkarea(monitor, &monitorX, &monitorY, &monitorWidth, &monitorHeight); - int posX = monitorX + (monitorWidth - (int)CORE.Window.screen.width)/2; - int posY = monitorY + (monitorHeight - (int)CORE.Window.screen.height)/2; + // Here CORE.Window.render.width/height should be used instead of CORE.Window.screen.width/height to center the window correctly when the high dpi flag is enabled. + int posX = monitorX + (monitorWidth - (int)CORE.Window.render.width)/2; + int posY = monitorY + (monitorHeight - (int)CORE.Window.render.height)/2; if (posX < monitorX) posX = monitorX; if (posY < monitorY) posY = monitorY; SetWindowPosition(posX, posY); + + // Update CORE.Window.position here so it is correct from the start + CORE.Window.position.x = posX; + CORE.Window.position.y = posY; } // Load OpenGL extensions @@ -1585,6 +1601,7 @@ int InitPlatform(void) //---------------------------------------------------------------------------- // Set window callback events glfwSetWindowSizeCallback(platform.handle, WindowSizeCallback); // NOTE: Resizing not allowed by default! + glfwSetWindowPosCallback(platform.handle, WindowPosCallback); glfwSetWindowMaximizeCallback(platform.handle, WindowMaximizeCallback); glfwSetWindowIconifyCallback(platform.handle, WindowIconifyCallback); glfwSetWindowFocusCallback(platform.handle, WindowFocusCallback); @@ -1681,7 +1698,12 @@ static void WindowSizeCallback(GLFWwindow *window, int width, int height) // NOTE: Postprocessing texture is not scaled to new size } - +static void WindowPosCallback(GLFWwindow* window, int x, int y) +{ + // Set current window position + CORE.Window.position.x = x; + CORE.Window.position.y = y; +} static void WindowContentScaleCallback(GLFWwindow *window, float scalex, float scaley) { CORE.Window.screenScale = MatrixScale(scalex, scaley, 1.0f); diff --git a/src/platforms/rcore_desktop_rgfw.c b/src/platforms/rcore_desktop_rgfw.c index d98c6391d..20bff2128 100644 --- a/src/platforms/rcore_desktop_rgfw.c +++ b/src/platforms/rcore_desktop_rgfw.c @@ -1,6 +1,6 @@ /********************************************************************************************** * -* rcore_desktop_rgfw template - Functions to manage window, graphics device and inputs +* rcore_desktop_rgfw - Functions to manage window, graphics device and inputs * * PLATFORM: RGFW * - Windows (Win32, Win64) @@ -69,6 +69,7 @@ void CloseWindow(void); #define CloseWindow CloseWindow_win32 #define ShowCursor __imp_ShowCursor #define _APISETSTRING_ + __declspec(dllimport) int __stdcall MultiByteToWideChar(unsigned int CodePage, unsigned long dwFlags, const char *lpMultiByteStr, int cbMultiByte, wchar_t *lpWideCharStr, int cchWideChar); #endif #if defined(__APPLE__) @@ -76,10 +77,6 @@ void CloseWindow(void); #define Size NSSIZE #endif -#if defined(_MSC_VER) -__declspec(dllimport) int __stdcall MultiByteToWideChar(unsigned int CodePage, unsigned long dwFlags, const char *lpMultiByteStr, int cbMultiByte, wchar_t *lpWideCharStr, int cchWideChar); -#endif - #include "../external/RGFW.h" #if defined(__WIN32) || defined(__WIN64) @@ -291,7 +288,6 @@ void SetWindowState(unsigned int flags) } if (flags & FLAG_WINDOW_RESIZABLE) { - printf("%i %i\n", platform.window->r.w, platform.window->r.h); RGFW_window_setMaxSize(platform.window, RGFW_AREA(platform.window->r.w, platform.window->r.h)); RGFW_window_setMinSize(platform.window, RGFW_AREA(platform.window->r.w, platform.window->r.h)); } @@ -538,10 +534,8 @@ void *GetWindowHandle(void) { #ifdef RGFW_WEBASM return (void*)platform.window->src.ctx; -#elif !defined(RGFW_WINDOWS) - return (void *)platform.window->src.window; #else - return platform.window->src.hwnd; + return (void*)platform.window->src.window; #endif } @@ -692,7 +686,7 @@ void DisableCursor(void) { RGFW_disableCursor = true; - RGFW_window_mouseHold(platform.window, RGFW_AREA(CORE.Window.screen.width / 2, CORE.Window.screen.height / 2)); + RGFW_window_mouseHold(platform.window, RGFW_AREA(0, 0)); HideCursor(); } @@ -876,9 +870,8 @@ void PollInputEvents(void) //----------------------------------------------------------------------------- CORE.Window.resizedLastFrame = false; - - #define RGFW_HOLD_MOUSE (1L<<2) - #if defined(RGFW_X11) //|| defined(RGFW_MACOS) + CORE.Input.Mouse.previousPosition = CORE.Input.Mouse.currentPosition; + #define RGFW_HOLD_MOUSE (1L<<2) if (platform.window->_winArgs & RGFW_HOLD_MOUSE) { CORE.Input.Mouse.previousPosition = (Vector2){ 0.0f, 0.0f }; @@ -888,11 +881,9 @@ void PollInputEvents(void) { CORE.Input.Mouse.previousPosition = CORE.Input.Mouse.currentPosition; } -#endif while (RGFW_window_checkEvent(platform.window)) { - if ((platform.window->event.type >= RGFW_jsButtonPressed) && (platform.window->event.type <= RGFW_jsAxisMove)) { if (!CORE.Input.Gamepad.ready[platform.window->event.joystick]) @@ -944,7 +935,7 @@ void PollInputEvents(void) SetupViewport(platform.window->r.w, platform.window->r.h); CORE.Window.screen.width = platform.window->r.w; CORE.Window.screen.height = platform.window->r.h; - CORE.Window.currentFbo.width = platform.window->r.w;; + CORE.Window.currentFbo.width = platform.window->r.w; CORE.Window.currentFbo.height = platform.window->r.h; CORE.Window.resizedLastFrame = true; } break; @@ -1034,15 +1025,8 @@ void PollInputEvents(void) { if (platform.window->_winArgs & RGFW_HOLD_MOUSE) { - CORE.Input.Mouse.previousPosition = (Vector2){ 0.0f, 0.0f }; - - if (event->point.x) - CORE.Input.Mouse.previousPosition.x = CORE.Input.Mouse.currentPosition.x; - if (event->point.y) - CORE.Input.Mouse.previousPosition.y = CORE.Input.Mouse.currentPosition.y; - - CORE.Input.Mouse.currentPosition.x = (float)event->point.x; - CORE.Input.Mouse.currentPosition.y = (float)event->point.y; + CORE.Input.Mouse.currentPosition.x += (float)event->point.x; + CORE.Input.Mouse.currentPosition.y += (float)event->point.y; } else { @@ -1209,7 +1193,6 @@ void PollInputEvents(void) //----------------------------------------------------------------------------- } - //---------------------------------------------------------------------------------- // Module Internal Functions Definition //---------------------------------------------------------------------------------- @@ -1239,15 +1222,15 @@ int InitPlatform(void) // Check selection OpenGL version if (rlGetVersion() == RL_OPENGL_21) { - RGFW_setGLVersion(2, 1); + RGFW_setGLVersion(RGFW_GL_CORE, 2, 1); } else if (rlGetVersion() == RL_OPENGL_33) { - RGFW_setGLVersion(3, 3); + RGFW_setGLVersion(RGFW_GL_CORE, 3, 3); } else if (rlGetVersion() == RL_OPENGL_43) { - RGFW_setGLVersion(4, 1); + RGFW_setGLVersion(RGFW_GL_CORE, 4, 1); } if (CORE.Window.flags & FLAG_MSAA_4X_HINT) @@ -1266,7 +1249,6 @@ int InitPlatform(void) */ SetupFramebuffer(CORE.Window.display.width, CORE.Window.display.height); - if (CORE.Window.flags & FLAG_VSYNC_HINT) RGFW_window_swapInterval(platform.window, 1); RGFW_window_makeCurrent(platform.window); diff --git a/src/platforms/rcore_desktop_sdl.c b/src/platforms/rcore_desktop_sdl.c index 794f9e6a0..7cbe0354e 100644 --- a/src/platforms/rcore_desktop_sdl.c +++ b/src/platforms/rcore_desktop_sdl.c @@ -57,6 +57,13 @@ #include "SDL_opengl.h" // SDL OpenGL functionality (if required, instead of internal renderer) #endif +//---------------------------------------------------------------------------------- +// Defines and Macros +//---------------------------------------------------------------------------------- +#ifndef MAX_CLIPBOARD_BUFFER_LENGTH + #define MAX_CLIPBOARD_BUFFER_LENGTH 1024 // Size of the clipboard buffer used on GetClipboardText() +#endif + //---------------------------------------------------------------------------------- // Types and Structures Definition //---------------------------------------------------------------------------------- @@ -852,10 +859,22 @@ void SetClipboardText(const char *text) } // Get clipboard text content -// NOTE: returned string must be freed with SDL_free() const char *GetClipboardText(void) { - return SDL_GetClipboardText(); + static char buffer[MAX_CLIPBOARD_BUFFER_LENGTH] = { 0 }; + + char *clipboard = SDL_GetClipboardText(); + + int clipboardSize = snprintf(buffer, sizeof(buffer), "%s", clipboard); + if (clipboardSize >= MAX_CLIPBOARD_BUFFER_LENGTH) + { + char *truncate = buffer + MAX_CLIPBOARD_BUFFER_LENGTH - 4; + sprintf(truncate, "..."); + } + + SDL_free(clipboard); + + return buffer; } // Show mouse cursor @@ -934,17 +953,17 @@ int SetGamepadMappings(const char *mappings) } // Set gamepad vibration -void SetGamepadVibration(int gamepad, float leftMotor, float rightMotor) +void SetGamepadVibration(int gamepad, float leftMotor, float rightMotor, float duration) { - // Limit input values to between 0.0f and 1.0f - leftMotor = (0.0f > leftMotor)? 0.0f : leftMotor; - rightMotor = (0.0f > rightMotor)? 0.0f : rightMotor; - leftMotor = (1.0f < leftMotor)? 1.0f : leftMotor; - rightMotor = (1.0f < rightMotor)? 1.0f : rightMotor; - - if (IsGamepadAvailable(gamepad)) + if ((gamepad < MAX_GAMEPADS) && CORE.Input.Gamepad.ready[gamepad] && (duration > 0.0f)) { - SDL_GameControllerRumble(platform.gamepad[gamepad], (Uint16)(leftMotor*65535.0f), (Uint16)(rightMotor*65535.0f), (Uint32)(MAX_GAMEPAD_VIBRATION_TIME*1000.0f)); + if (leftMotor < 0.0f) leftMotor = 0.0f; + if (leftMotor > 1.0f) leftMotor = 1.0f; + if (rightMotor < 0.0f) rightMotor = 0.0f; + if (rightMotor > 1.0f) rightMotor = 1.0f; + if (duration > MAX_GAMEPAD_VIBRATION_TIME) duration = MAX_GAMEPAD_VIBRATION_TIME; + + SDL_GameControllerRumble(platform.gamepad[gamepad], (Uint16)(leftMotor*65535.0f), (Uint16)(rightMotor*65535.0f), (Uint32)(duration*1000.0f)); } } @@ -1589,8 +1608,7 @@ int InitPlatform(void) // Initialize storage system //---------------------------------------------------------------------------- // Define base path for storage - CORE.Storage.basePath = SDL_GetBasePath(); // Alternative: GetWorkingDirectory(); - CHDIR(CORE.Storage.basePath); + CORE.Storage.basePath = SDL_GetBasePath(); // Alternative: GetWorkingDirectory(); //---------------------------------------------------------------------------- TRACELOG(LOG_INFO, "PLATFORM: DESKTOP (SDL): Initialized successfully"); diff --git a/src/platforms/rcore_drm.c b/src/platforms/rcore_drm.c index 291fd93c7..eb8ef0103 100644 --- a/src/platforms/rcore_drm.c +++ b/src/platforms/rcore_drm.c @@ -206,7 +206,7 @@ static const short linuxToRaylibMap[KEYMAP_SIZE] = { [BTN_TL] = GAMEPAD_BUTTON_LEFT_TRIGGER_1, [BTN_TL2] = GAMEPAD_BUTTON_LEFT_TRIGGER_2, [BTN_TR] = GAMEPAD_BUTTON_RIGHT_TRIGGER_1, - [BTN_TR2] GAMEPAD_BUTTON_RIGHT_TRIGGER_2, + [BTN_TR2] = GAMEPAD_BUTTON_RIGHT_TRIGGER_2, [BTN_SELECT] = GAMEPAD_BUTTON_MIDDLE_LEFT, [BTN_MODE] = GAMEPAD_BUTTON_MIDDLE, [BTN_START] = GAMEPAD_BUTTON_MIDDLE_RIGHT, @@ -610,7 +610,7 @@ int SetGamepadMappings(const char *mappings) } // Set gamepad vibration -void SetGamepadVibration(int gamepad, float leftMotor, float rightMotor) +void SetGamepadVibration(int gamepad, float leftMotor, float rightMotor, float duration) { TRACELOG(LOG_WARNING, "GamepadSetVibration() not implemented on target platform"); } @@ -764,7 +764,9 @@ int InitPlatform(void) drmModeConnector *con = drmModeGetConnector(platform.fd, res->connectors[i]); TRACELOG(LOG_TRACE, "DISPLAY: Connector modes detected: %i", con->count_modes); - if ((con->connection == DRM_MODE_CONNECTED) && (con->encoder_id)) + // In certain cases the status of the conneciton is reported as UKNOWN, but it is still connected. + // This might be a hardware or software limitation like on Raspberry Pi Zero with composite output. + if (((con->connection == DRM_MODE_CONNECTED) || (con->connection == DRM_MODE_UNKNOWNCONNECTION)) && (con->encoder_id)) { TRACELOG(LOG_TRACE, "DISPLAY: DRM mode connected"); platform.connector = con; @@ -1478,7 +1480,6 @@ static void ConfigureEvdevDevice(char *device) TEST_BIT(keyBits, BTN_MOUSE)) isMouse = true; } - if (TEST_BIT(evBits, EV_KEY)) { // The first 32 keys as defined in input-event-codes.h are pretty much diff --git a/src/platforms/rcore_template.c b/src/platforms/rcore_template.c index 938f4ed7d..6bc3432eb 100644 --- a/src/platforms/rcore_template.c +++ b/src/platforms/rcore_template.c @@ -430,7 +430,6 @@ void PollInputEvents(void) // TODO: Poll input events for current platform } - //---------------------------------------------------------------------------------- // Module Internal Functions Definition //---------------------------------------------------------------------------------- diff --git a/src/platforms/rcore_web.c b/src/platforms/rcore_web.c index 937e15acd..e15d3f5bf 100644 --- a/src/platforms/rcore_web.c +++ b/src/platforms/rcore_web.c @@ -74,6 +74,8 @@ typedef struct { GLFWwindow *handle; // GLFW window handle (graphic device) bool ourFullscreen; // Internal var to filter our handling of fullscreen vs the user handling of fullscreen + int unmaximizedWidth; // Internal var to store the unmaximized window (canvas) width + int unmaximizedHeight; // Internal var to store the unmaximized window (canvas) height } PlatformData; //---------------------------------------------------------------------------------- @@ -129,7 +131,7 @@ static void CursorEnterCallback(GLFWwindow *window, int enter); // Emscripten window callback events static EM_BOOL EmscriptenFullscreenChangeCallback(int eventType, const EmscriptenFullscreenChangeEvent *event, void *userData); -static EM_BOOL EmscriptenWindowResizedCallback(int eventType, const EmscriptenUiEvent *event, void *userData); +// static EM_BOOL EmscriptenWindowResizedCallback(int eventType, const EmscriptenUiEvent *event, void *userData); static EM_BOOL EmscriptenResizeCallback(int eventType, const EmscriptenUiEvent *event, void *userData); // Emscripten input callback events @@ -317,7 +319,18 @@ void ToggleBorderlessWindowed(void) // Set window state: maximized, if resizable void MaximizeWindow(void) { - TRACELOG(LOG_WARNING, "MaximizeWindow() not available on target platform"); + if (glfwGetWindowAttrib(platform.handle, GLFW_RESIZABLE) == GLFW_TRUE && !(CORE.Window.flags & FLAG_WINDOW_MAXIMIZED)) + { + platform.unmaximizedWidth = CORE.Window.screen.width; + platform.unmaximizedHeight = CORE.Window.screen.height; + + const int tabWidth = EM_ASM_INT( return window.innerWidth; ); + const int tabHeight = EM_ASM_INT( return window.innerHeight; ); + + if (tabWidth && tabHeight) glfwSetWindowSize(platform.handle, tabWidth, tabHeight); + + CORE.Window.flags |= FLAG_WINDOW_MAXIMIZED; + } } // Set window state: minimized @@ -329,7 +342,12 @@ void MinimizeWindow(void) // Set window state: not minimized/maximized void RestoreWindow(void) { - TRACELOG(LOG_WARNING, "RestoreWindow() not available on target platform"); + if (glfwGetWindowAttrib(platform.handle, GLFW_RESIZABLE) == GLFW_TRUE && (CORE.Window.flags & FLAG_WINDOW_MAXIMIZED)) + { + if (platform.unmaximizedWidth && platform.unmaximizedHeight) glfwSetWindowSize(platform.handle, platform.unmaximizedWidth, platform.unmaximizedHeight); + + CORE.Window.flags &= ~FLAG_WINDOW_MAXIMIZED; + } } // Set window configuration state using flags @@ -398,9 +416,20 @@ void SetWindowState(unsigned int flags) } // State change: FLAG_WINDOW_MAXIMIZED - if ((flags & FLAG_WINDOW_MAXIMIZED) > 0) + if (((CORE.Window.flags & FLAG_WINDOW_MAXIMIZED) != (flags & FLAG_WINDOW_MAXIMIZED)) && ((flags & FLAG_WINDOW_MAXIMIZED) > 0)) { - TRACELOG(LOG_WARNING, "SetWindowState(FLAG_WINDOW_MAXIMIZED) not available on target platform"); + if (glfwGetWindowAttrib(platform.handle, GLFW_RESIZABLE) == GLFW_TRUE) + { + platform.unmaximizedWidth = CORE.Window.screen.width; + platform.unmaximizedHeight = CORE.Window.screen.height; + + const int tabWidth = EM_ASM_INT( return window.innerWidth; ); + const int tabHeight = EM_ASM_INT( return window.innerHeight; ); + + if (tabWidth && tabHeight) glfwSetWindowSize(platform.handle, tabWidth, tabHeight); + + CORE.Window.flags |= FLAG_WINDOW_MAXIMIZED; + } } // State change: FLAG_WINDOW_UNFOCUSED @@ -516,9 +545,14 @@ void ClearWindowState(unsigned int flags) } // State change: FLAG_WINDOW_MAXIMIZED - if ((flags & FLAG_WINDOW_MAXIMIZED) > 0) + if (((CORE.Window.flags & FLAG_WINDOW_MAXIMIZED) > 0) && ((flags & FLAG_WINDOW_MAXIMIZED) > 0)) { - TRACELOG(LOG_WARNING, "ClearWindowState(FLAG_WINDOW_MAXIMIZED) not available on target platform"); + if (glfwGetWindowAttrib(platform.handle, GLFW_RESIZABLE) == GLFW_TRUE) + { + if (platform.unmaximizedWidth && platform.unmaximizedHeight) glfwSetWindowSize(platform.handle, platform.unmaximizedWidth, platform.unmaximizedHeight); + + CORE.Window.flags &= ~FLAG_WINDOW_MAXIMIZED; + } } // State change: FLAG_WINDOW_UNDECORATED @@ -639,7 +673,9 @@ void SetWindowSize(int width, int height) // Set window opacity, value opacity is between 0.0 and 1.0 void SetWindowOpacity(float opacity) { - TRACELOG(LOG_WARNING, "SetWindowOpacity() not available on target platform"); + if (opacity >= 1.0f) opacity = 1.0f; + else if (opacity <= 0.0f) opacity = 0.0f; + EM_ASM({ document.getElementById('canvas').style.opacity = $0; }, opacity); } // Set window focused @@ -856,9 +892,34 @@ int SetGamepadMappings(const char *mappings) } // Set gamepad vibration -void SetGamepadVibration(int gamepad, float leftMotor, float rightMotor) +void SetGamepadVibration(int gamepad, float leftMotor, float rightMotor, float duration) { - TRACELOG(LOG_WARNING, "GamepadSetVibration() not implemented on target platform"); + if ((gamepad < MAX_GAMEPADS) && CORE.Input.Gamepad.ready[gamepad] && (duration > 0.0f)) + { + if (leftMotor < 0.0f) leftMotor = 0.0f; + if (leftMotor > 1.0f) leftMotor = 1.0f; + if (rightMotor < 0.0f) rightMotor = 0.0f; + if (rightMotor > 1.0f) rightMotor = 1.0f; + if (duration > MAX_GAMEPAD_VIBRATION_TIME) duration = MAX_GAMEPAD_VIBRATION_TIME; + duration *= 1000.0f; // Convert duration to ms + + // Note: At the moment (2024.10.21) Chrome, Edge, Opera, Safari, Android Chrome, Android Webview only support the vibrationActuator API, + // and Firefox only supports the hapticActuators API + EM_ASM({ + try + { + navigator.getGamepads()[$0].vibrationActuator.playEffect('dual-rumble', { startDelay: 0, duration: $3, weakMagnitude: $1, strongMagnitude: $2 }); + } + catch (e) + { + try + { + navigator.getGamepads()[$0].hapticActuators[0].pulse($2, $3); + } + catch (e) { } + } + }, gamepad, leftMotor, rightMotor, duration); + } } // Set mouse position XY @@ -935,7 +996,6 @@ void PollInputEvents(void) // so, if mouse is not moved it returns a (0, 0) position... this behaviour should be reviewed! //for (int i = 0; i < MAX_TOUCH_POINTS; i++) CORE.Input.Touch.position[i] = (Vector2){ 0, 0 }; - // Gamepad support using emscripten API // NOTE: GLFW3 joystick functionality not available in web @@ -981,7 +1041,7 @@ void PollInputEvents(void) default: break; } - if (button != -1) // Check for valid button + if (button + 1 != 0) // Check for valid button { if (gamepadState.digitalButton[j] == 1) { @@ -1572,15 +1632,12 @@ static EM_BOOL EmscriptenFullscreenChangeCallback(int eventType, const Emscripte } // Register window resize event -static EM_BOOL EmscriptenWindowResizedCallback(int eventType, const EmscriptenUiEvent *event, void *userData) -{ - // TODO: Implement EmscriptenWindowResizedCallback()? +// static EM_BOOL EmscriptenWindowResizedCallback(int eventType, const EmscriptenUiEvent *event, void *userData) +// { +// // TODO: Implement EmscriptenWindowResizedCallback()? - return 1; // The event was consumed by the callback handler -} - -EM_JS(int, GetWindowInnerWidth, (), { return window.innerWidth; }); -EM_JS(int, GetWindowInnerHeight, (), { return window.innerHeight; }); +// return 1; // The event was consumed by the callback handler +// } // Register DOM element resize event static EM_BOOL EmscriptenResizeCallback(int eventType, const EmscriptenUiEvent *event, void *userData) @@ -1590,14 +1647,14 @@ static EM_BOOL EmscriptenResizeCallback(int eventType, const EmscriptenUiEvent * // This event is called whenever the window changes sizes, // so the size of the canvas object is explicitly retrieved below - int width = GetWindowInnerWidth(); - int height = GetWindowInnerHeight(); + int width = EM_ASM_INT( return window.innerWidth; ); + int height = EM_ASM_INT( return window.innerHeight; ); - if (width < CORE.Window.screenMin.width) width = CORE.Window.screenMin.width; - else if (width > CORE.Window.screenMax.width && CORE.Window.screenMax.width > 0) width = CORE.Window.screenMax.width; + if (width < (int)CORE.Window.screenMin.width) width = CORE.Window.screenMin.width; + else if (width > (int)CORE.Window.screenMax.width && CORE.Window.screenMax.width > 0) width = CORE.Window.screenMax.width; - if (height < CORE.Window.screenMin.height) height = CORE.Window.screenMin.height; - else if (height > CORE.Window.screenMax.height && CORE.Window.screenMax.height > 0) height = CORE.Window.screenMax.height; + if (height < (int)CORE.Window.screenMin.height) height = CORE.Window.screenMin.height; + else if (height > (int)CORE.Window.screenMax.height && CORE.Window.screenMax.height > 0) height = CORE.Window.screenMax.height; emscripten_set_canvas_element_size("#canvas", width, height); diff --git a/src/raudio.c b/src/raudio.c index 21d1adae3..15859a661 100644 --- a/src/raudio.c +++ b/src/raudio.c @@ -892,8 +892,8 @@ Wave LoadWaveFromMemory(const char *fileType, const unsigned char *fileData, int return wave; } -// Checks if wave data is ready -bool IsWaveReady(Wave wave) +// Checks if wave data is valid (data loaded and parameters) +bool IsWaveValid(Wave wave) { bool result = false; @@ -993,8 +993,8 @@ Sound LoadSoundAlias(Sound source) } -// Checks if a sound is ready -bool IsSoundReady(Sound sound) +// Checks if a sound is valid (data loaded and buffers initialized) +bool IsSoundValid(Sound sound) { bool result = false; @@ -1626,7 +1626,9 @@ Music LoadMusicStreamFromMemory(const char *fileType, const unsigned char *data, { music.ctxType = MUSIC_AUDIO_FLAC; music.ctxData = ctxFlac; - music.stream = LoadAudioStream(ctxFlac->sampleRate, ctxFlac->bitsPerSample, ctxFlac->channels); + int sampleSize = ctxFlac->bitsPerSample; + if (ctxFlac->bitsPerSample == 24) sampleSize = 16; // Forcing conversion to s16 on UpdateMusicStream() + music.stream = LoadAudioStream(ctxFlac->sampleRate, sampleSize, ctxFlac->channels); music.frameCount = (unsigned int)ctxFlac->totalPCMFrameCount; music.looping = true; // Looping enabled by default musicLoaded = true; @@ -1724,8 +1726,8 @@ Music LoadMusicStreamFromMemory(const char *fileType, const unsigned char *data, return music; } -// Checks if a music stream is ready -bool IsMusicReady(Music music) +// Checks if a music stream is valid (context and buffers initialized) +bool IsMusicValid(Music music) { return ((music.ctxData != NULL) && // Validate context loaded (music.frameCount > 0) && // Validate audio frame count @@ -2117,8 +2119,8 @@ AudioStream LoadAudioStream(unsigned int sampleRate, unsigned int sampleSize, un return stream; } -// Checks if an audio stream is ready -bool IsAudioStreamReady(AudioStream stream) +// Checks if an audio stream is valid (buffers initialized) +bool IsAudioStreamValid(AudioStream stream) { return ((stream.buffer != NULL) && // Validate stream buffer (stream.sampleRate > 0) && // Validate sample rate is supported diff --git a/src/raylib.h b/src/raylib.h index 1cf34f004..c9d9f6e54 100644 --- a/src/raylib.h +++ b/src/raylib.h @@ -1,22 +1,22 @@ /********************************************************************************************** * -* raylib v5.5-dev - A simple and easy-to-use library to enjoy videogames programming (www.raylib.com) +* raylib v5.5 - A simple and easy-to-use library to enjoy videogames programming (www.raylib.com) * * FEATURES: * - NO external dependencies, all required libraries included with raylib * - Multiplatform: Windows, Linux, FreeBSD, OpenBSD, NetBSD, DragonFly, * MacOS, Haiku, Android, Raspberry Pi, DRM native, HTML5. * - Written in plain C code (C99) in PascalCase/camelCase notation -* - Hardware accelerated with OpenGL (1.1, 2.1, 3.3, 4.3 or ES2 - choose at compile) +* - Hardware accelerated with OpenGL (1.1, 2.1, 3.3, 4.3, ES2, ES3 - choose at compile) * - Unique OpenGL abstraction layer (usable as standalone module): [rlgl] -* - Multiple Fonts formats supported (TTF, XNA fonts, AngelCode fonts) +* - Multiple Fonts formats supported (TTF, OTF, FNT, BDF, Sprite fonts) * - Outstanding texture formats support, including compressed formats (DXT, ETC, ASTC) * - Full 3d support for 3d Shapes, Models, Billboards, Heightmaps and more! * - Flexible Materials system, supporting classic maps and PBR maps -* - Animated 3D models supported (skeletal bones animation) (IQM) +* - Animated 3D models supported (skeletal bones animation) (IQM, M3D, GLTF) * - Shaders support, including Model shaders and Postprocessing shaders * - Powerful math module for Vector, Matrix and Quaternion operations: [raymath] -* - Audio loading and playing with streaming support (WAV, OGG, MP3, FLAC, XM, MOD) +* - Audio loading and playing with streaming support (WAV, OGG, MP3, FLAC, QOA, XM, MOD) * - VR stereo rendering with configurable HMD device parameters * - Bindings to multiple programming languages available! * @@ -27,29 +27,35 @@ * - One default RenderBatch is loaded on rlglInit()->rlLoadRenderBatch() [rlgl] (OpenGL 3.3 or ES2) * * DEPENDENCIES (included): -* [rcore] rglfw (Camilla Löwy - github.com/glfw/glfw) for window/context management and input (PLATFORM_DESKTOP) -* [rlgl] glad (David Herberth - github.com/Dav1dde/glad) for OpenGL 3.3 extensions loading (PLATFORM_DESKTOP) +* [rcore][GLFW] rglfw (Camilla Löwy - github.com/glfw/glfw) for window/context management and input +* [rcore][RGFW] rgfw (ColleagueRiley - github.com/ColleagueRiley/RGFW) for window/context management and input +* [rlgl] glad/glad_gles2 (David Herberth - github.com/Dav1dde/glad) for OpenGL 3.3 extensions loading * [raudio] miniaudio (David Reid - github.com/mackron/miniaudio) for audio device/context management * * OPTIONAL DEPENDENCIES (included): * [rcore] msf_gif (Miles Fogle) for GIF recording * [rcore] sinfl (Micha Mettke) for DEFLATE decompression algorithm * [rcore] sdefl (Micha Mettke) for DEFLATE compression algorithm +* [rcore] rprand (Ramon Snatamaria) for pseudo-random numbers generation +* [rtextures] qoi (Dominic Szablewski - https://phoboslab.org) for QOI image manage * [rtextures] stb_image (Sean Barret) for images loading (BMP, TGA, PNG, JPEG, HDR...) * [rtextures] stb_image_write (Sean Barret) for image writing (BMP, TGA, PNG, JPG) -* [rtextures] stb_image_resize (Sean Barret) for image resizing algorithms +* [rtextures] stb_image_resize2 (Sean Barret) for image resizing algorithms +* [rtextures] stb_perlin (Sean Barret) for Perlin Noise image generation * [rtext] stb_truetype (Sean Barret) for ttf fonts loading * [rtext] stb_rect_pack (Sean Barret) for rectangles packing * [rmodels] par_shapes (Philip Rideout) for parametric 3d shapes generation * [rmodels] tinyobj_loader_c (Syoyo Fujita) for models loading (OBJ, MTL) * [rmodels] cgltf (Johannes Kuhlmann) for models loading (glTF) -* [rmodels] Model3D (bzt) for models loading (M3D, https://bztsrc.gitlab.io/model3d) +* [rmodels] m3d (bzt) for models loading (M3D, https://bztsrc.gitlab.io/model3d) +* [rmodels] vox_loader (Johann Nadalutti) for models loading (VOX) * [raudio] dr_wav (David Reid) for WAV audio file loading * [raudio] dr_flac (David Reid) for FLAC audio file loading * [raudio] dr_mp3 (David Reid) for MP3 audio file loading * [raudio] stb_vorbis (Sean Barret) for OGG audio loading * [raudio] jar_xm (Joshua Reisenauer) for XM audio module loading * [raudio] jar_mod (Joshua Reisenauer) for MOD audio module loading +* [raudio] qoa (Dominic Szablewski - https://phoboslab.org) for QOA audio manage * * * LICENSE: zlib/libpng @@ -84,7 +90,7 @@ #define RAYLIB_VERSION_MAJOR 5 #define RAYLIB_VERSION_MINOR 5 #define RAYLIB_VERSION_PATCH 0 -#define RAYLIB_VERSION "5.5-dev" +#define RAYLIB_VERSION "5.5" // Function specifiers in case library is build/used as a shared library // NOTE: Microsoft specifiers to tell compiler that symbols are imported/exported from a .dll @@ -352,8 +358,10 @@ typedef struct Mesh { // Animation vertex data float *animVertices; // Animated vertex positions (after bones transformations) float *animNormals; // Animated normals (after bones transformations) - unsigned char *boneIds; // Vertex bone ids, max 255 bone ids, up to 4 bones influence by vertex (skinning) - float *boneWeights; // Vertex bone weight, up to 4 bones influence by vertex (skinning) + unsigned char *boneIds; // Vertex bone ids, max 255 bone ids, up to 4 bones influence by vertex (skinning) (shader-location = 6) + float *boneWeights; // Vertex bone weight, up to 4 bones influence by vertex (skinning) (shader-location = 7) + Matrix *boneMatrices; // Bones animated transformation matrices + int boneCount; // Number of bones // OpenGL identifiers unsigned int vaoId; // OpenGL Vertex Array Object id @@ -790,7 +798,10 @@ typedef enum { SHADER_LOC_MAP_CUBEMAP, // Shader location: samplerCube texture: cubemap SHADER_LOC_MAP_IRRADIANCE, // Shader location: samplerCube texture: irradiance SHADER_LOC_MAP_PREFILTER, // Shader location: samplerCube texture: prefilter - SHADER_LOC_MAP_BRDF // Shader location: sampler2d texture: brdf + SHADER_LOC_MAP_BRDF, // Shader location: sampler2d texture: brdf + SHADER_LOC_VERTEX_BONEIDS, // Shader location: vertex attribute: boneIds + SHADER_LOC_VERTEX_BONEWEIGHTS, // Shader location: vertex attribute: boneWeights + SHADER_LOC_BONE_MATRICES // Shader location: array of matrices uniform: boneMatrices } ShaderLocationIndex; #define SHADER_LOC_MAP_DIFFUSE SHADER_LOC_MAP_ALBEDO @@ -872,8 +883,7 @@ typedef enum { CUBEMAP_LAYOUT_LINE_VERTICAL, // Layout is defined by a vertical line with faces CUBEMAP_LAYOUT_LINE_HORIZONTAL, // Layout is defined by a horizontal line with faces CUBEMAP_LAYOUT_CROSS_THREE_BY_FOUR, // Layout is defined by a 3x4 cross with cubemap faces - CUBEMAP_LAYOUT_CROSS_FOUR_BY_THREE, // Layout is defined by a 4x3 cross with cubemap faces - CUBEMAP_LAYOUT_PANORAMA // Layout is defined by a panorama image (equirrectangular map) + CUBEMAP_LAYOUT_CROSS_FOUR_BY_THREE // Layout is defined by a 4x3 cross with cubemap faces } CubemapLayout; // Font type, defines generation method @@ -960,36 +970,36 @@ RLAPI void CloseWindow(void); // Close windo RLAPI bool WindowShouldClose(void); // Check if application should close (KEY_ESCAPE pressed or windows close icon clicked) RLAPI bool IsWindowReady(void); // Check if window has been initialized successfully RLAPI bool IsWindowFullscreen(void); // Check if window is currently fullscreen -RLAPI bool IsWindowHidden(void); // Check if window is currently hidden (only PLATFORM_DESKTOP) -RLAPI bool IsWindowMinimized(void); // Check if window is currently minimized (only PLATFORM_DESKTOP) -RLAPI bool IsWindowMaximized(void); // Check if window is currently maximized (only PLATFORM_DESKTOP) -RLAPI bool IsWindowFocused(void); // Check if window is currently focused (only PLATFORM_DESKTOP) +RLAPI bool IsWindowHidden(void); // Check if window is currently hidden +RLAPI bool IsWindowMinimized(void); // Check if window is currently minimized +RLAPI bool IsWindowMaximized(void); // Check if window is currently maximized +RLAPI bool IsWindowFocused(void); // Check if window is currently focused RLAPI bool IsWindowResized(void); // Check if window has been resized last frame RLAPI bool IsWindowState(unsigned int flag); // Check if one specific window flag is enabled -RLAPI void SetWindowState(unsigned int flags); // Set window configuration state using flags (only PLATFORM_DESKTOP) +RLAPI void SetWindowState(unsigned int flags); // Set window configuration state using flags RLAPI void ClearWindowState(unsigned int flags); // Clear window configuration state flags -RLAPI void ToggleFullscreen(void); // Toggle window state: fullscreen/windowed (only PLATFORM_DESKTOP) -RLAPI void ToggleBorderlessWindowed(void); // Toggle window state: borderless windowed (only PLATFORM_DESKTOP) -RLAPI void MaximizeWindow(void); // Set window state: maximized, if resizable (only PLATFORM_DESKTOP) -RLAPI void MinimizeWindow(void); // Set window state: minimized, if resizable (only PLATFORM_DESKTOP) -RLAPI void RestoreWindow(void); // Set window state: not minimized/maximized (only PLATFORM_DESKTOP) -RLAPI void SetWindowIcon(Image image); // Set icon for window (single image, RGBA 32bit, only PLATFORM_DESKTOP) -RLAPI void SetWindowIcons(Image *images, int count); // Set icon for window (multiple images, RGBA 32bit, only PLATFORM_DESKTOP) -RLAPI void SetWindowTitle(const char *title); // Set title for window (only PLATFORM_DESKTOP and PLATFORM_WEB) -RLAPI void SetWindowPosition(int x, int y); // Set window position on screen (only PLATFORM_DESKTOP) +RLAPI void ToggleFullscreen(void); // Toggle window state: fullscreen/windowed, resizes monitor to match window resolution +RLAPI void ToggleBorderlessWindowed(void); // Toggle window state: borderless windowed, resizes window to match monitor resolution +RLAPI void MaximizeWindow(void); // Set window state: maximized, if resizable +RLAPI void MinimizeWindow(void); // Set window state: minimized, if resizable +RLAPI void RestoreWindow(void); // Set window state: not minimized/maximized +RLAPI void SetWindowIcon(Image image); // Set icon for window (single image, RGBA 32bit) +RLAPI void SetWindowIcons(Image *images, int count); // Set icon for window (multiple images, RGBA 32bit) +RLAPI void SetWindowTitle(const char *title); // Set title for window +RLAPI void SetWindowPosition(int x, int y); // Set window position on screen RLAPI void SetWindowMonitor(int monitor); // Set monitor for the current window RLAPI void SetWindowMinSize(int width, int height); // Set window minimum dimensions (for FLAG_WINDOW_RESIZABLE) RLAPI void SetWindowMaxSize(int width, int height); // Set window maximum dimensions (for FLAG_WINDOW_RESIZABLE) RLAPI void SetWindowSize(int width, int height); // Set window dimensions -RLAPI void SetWindowOpacity(float opacity); // Set window opacity [0.0f..1.0f] (only PLATFORM_DESKTOP) -RLAPI void SetWindowFocused(void); // Set window focused (only PLATFORM_DESKTOP) +RLAPI void SetWindowOpacity(float opacity); // Set window opacity [0.0f..1.0f] +RLAPI void SetWindowFocused(void); // Set window focused RLAPI void *GetWindowHandle(void); // Get native window handle RLAPI int GetScreenWidth(void); // Get current screen width RLAPI int GetScreenHeight(void); // Get current screen height RLAPI int GetRenderWidth(void); // Get current render width (it considers HiDPI) RLAPI int GetRenderHeight(void); // Get current render height (it considers HiDPI) RLAPI int GetMonitorCount(void); // Get number of connected monitors -RLAPI int GetCurrentMonitor(void); // Get current connected monitor +RLAPI int GetCurrentMonitor(void); // Get current monitor where window is placed RLAPI Vector2 GetMonitorPosition(int monitor); // Get specified monitor position RLAPI int GetMonitorWidth(int monitor); // Get specified monitor width (current video mode used by monitor) RLAPI int GetMonitorHeight(int monitor); // Get specified monitor height (current video mode used by monitor) @@ -1039,7 +1049,7 @@ RLAPI void UnloadVrStereoConfig(VrStereoConfig config); // Unload VR s // NOTE: Shader functionality is not available on OpenGL 1.1 RLAPI Shader LoadShader(const char *vsFileName, const char *fsFileName); // Load shader from files and bind default locations RLAPI Shader LoadShaderFromMemory(const char *vsCode, const char *fsCode); // Load shader from code strings and bind default locations -RLAPI bool IsShaderReady(Shader shader); // Check if a shader is ready +RLAPI bool IsShaderValid(Shader shader); // Check if a shader is valid (loaded on GPU) RLAPI int GetShaderLocation(Shader shader, const char *uniformName); // Get shader uniform location RLAPI int GetShaderLocationAttrib(Shader shader, const char *attribName); // Get shader attribute location RLAPI void SetShaderValue(Shader shader, int locIndex, const void *value, int uniformType); // Set shader uniform value @@ -1122,11 +1132,12 @@ RLAPI const char *GetDirectoryPath(const char *filePath); // Get full pa RLAPI const char *GetPrevDirectoryPath(const char *dirPath); // Get previous directory path for a given path (uses static string) RLAPI const char *GetWorkingDirectory(void); // Get current working directory (uses static string) RLAPI const char *GetApplicationDirectory(void); // Get the directory of the running application (uses static string) +RLAPI int MakeDirectory(const char *dirPath); // Create directories (including full path requested), returns 0 on success RLAPI bool ChangeDirectory(const char *dir); // Change working directory, return true on success RLAPI bool IsPathFile(const char *path); // Check if a given path is a file or a directory RLAPI bool IsFileNameValid(const char *fileName); // Check if fileName is valid for the platform/OS RLAPI FilePathList LoadDirectoryFiles(const char *dirPath); // Load directory filepaths -RLAPI FilePathList LoadDirectoryFilesEx(const char *basePath, const char *filter, bool scanSubdirs); // Load directory filepaths with extension filtering and recursive directory scan +RLAPI FilePathList LoadDirectoryFilesEx(const char *basePath, const char *filter, bool scanSubdirs); // Load directory filepaths with extension filtering and recursive directory scan. Use 'DIR' in the filter string to include directories in the result RLAPI void UnloadDirectoryFiles(FilePathList files); // Unload filepaths RLAPI bool IsFileDropped(void); // Check if a file has been dropped into window RLAPI FilePathList LoadDroppedFiles(void); // Load dropped filepaths @@ -1138,6 +1149,10 @@ RLAPI unsigned char *CompressData(const unsigned char *data, int dataSize, int * RLAPI unsigned char *DecompressData(const unsigned char *compData, int compDataSize, int *dataSize); // Decompress data (DEFLATE algorithm), memory must be MemFree() RLAPI char *EncodeDataBase64(const unsigned char *data, int dataSize, int *outputSize); // Encode data to Base64 string, memory must be MemFree() RLAPI unsigned char *DecodeDataBase64(const unsigned char *data, int *outputSize); // Decode Base64 string data, memory must be MemFree() +RLAPI unsigned int ComputeCRC32(unsigned char *data, int dataSize); // Compute CRC32 hash code +RLAPI unsigned int *ComputeMD5(unsigned char *data, int dataSize); // Compute MD5 hash code, returns static int[4] (16 bytes) +RLAPI unsigned int *ComputeSHA1(unsigned char *data, int dataSize); // Compute SHA1 hash code, returns static int[5] (20 bytes) + // Automation events functionality RLAPI AutomationEventList LoadAutomationEventList(const char *fileName); // Load automation events list from file, NULL for empty list, capacity = MAX_AUTOMATION_EVENTS @@ -1155,7 +1170,7 @@ RLAPI void PlayAutomationEvent(AutomationEvent event); // Input-related functions: keyboard RLAPI bool IsKeyPressed(int key); // Check if a key has been pressed once -RLAPI bool IsKeyPressedRepeat(int key); // Check if a key has been pressed again (Only PLATFORM_DESKTOP) +RLAPI bool IsKeyPressedRepeat(int key); // Check if a key has been pressed again RLAPI bool IsKeyDown(int key); // Check if a key is being pressed RLAPI bool IsKeyReleased(int key); // Check if a key has been released once RLAPI bool IsKeyUp(int key); // Check if a key is NOT being pressed @@ -1174,7 +1189,7 @@ RLAPI int GetGamepadButtonPressed(void); RLAPI int GetGamepadAxisCount(int gamepad); // Get gamepad axis count for a gamepad RLAPI float GetGamepadAxisMovement(int gamepad, int axis); // Get axis movement value for a gamepad axis RLAPI int SetGamepadMappings(const char *mappings); // Set internal gamepad mappings (SDL_GameControllerDB) -RLAPI void SetGamepadVibration(int gamepad, float leftMotor, float rightMotor); // Set gamepad vibration for both motors +RLAPI void SetGamepadVibration(int gamepad, float leftMotor, float rightMotor, float duration); // Set gamepad vibration for both motors (duration in seconds) // Input-related functions: mouse RLAPI bool IsMouseButtonPressed(int button); // Check if a mouse button has been pressed once @@ -1205,7 +1220,7 @@ RLAPI int GetTouchPointCount(void); // Get number of t RLAPI void SetGesturesEnabled(unsigned int flags); // Enable a set of gestures using flags RLAPI bool IsGestureDetected(unsigned int gesture); // Check if a gesture have been detected RLAPI int GetGestureDetected(void); // Get latest detected gesture -RLAPI float GetGestureHoldDuration(void); // Get gesture hold time in milliseconds +RLAPI float GetGestureHoldDuration(void); // Get gesture hold time in seconds RLAPI Vector2 GetGestureDragVector(void); // Get gesture drag vector RLAPI float GetGestureDragAngle(void); // Get gesture drag angle RLAPI Vector2 GetGesturePinchVector(void); // Get gesture pinch delta @@ -1228,8 +1243,8 @@ RLAPI Texture2D GetShapesTexture(void); // Get t RLAPI Rectangle GetShapesTextureRectangle(void); // Get texture source rectangle that is used for shapes drawing // Basic shapes drawing functions -RLAPI void DrawPixel(int posX, int posY, Color color); // Draw a pixel -RLAPI void DrawPixelV(Vector2 position, Color color); // Draw a pixel (Vector version) +RLAPI void DrawPixel(int posX, int posY, Color color); // Draw a pixel using geometry [Can be slow, use with care] +RLAPI void DrawPixelV(Vector2 position, Color color); // Draw a pixel using geometry (Vector version) [Can be slow, use with care] RLAPI void DrawLine(int startPosX, int startPosY, int endPosX, int endPosY, Color color); // Draw a line RLAPI void DrawLineV(Vector2 startPos, Vector2 endPos, Color color); // Draw a line (using gl lines) RLAPI void DrawLineEx(Vector2 startPos, Vector2 endPos, float thick, Color color); // Draw a line (using triangles/quads) @@ -1238,7 +1253,7 @@ RLAPI void DrawLineBezier(Vector2 startPos, Vector2 endPos, float thick, Color c RLAPI void DrawCircle(int centerX, int centerY, float radius, Color color); // Draw a color-filled circle RLAPI void DrawCircleSector(Vector2 center, float radius, float startAngle, float endAngle, int segments, Color color); // Draw a piece of a circle RLAPI void DrawCircleSectorLines(Vector2 center, float radius, float startAngle, float endAngle, int segments, Color color); // Draw circle sector outline -RLAPI void DrawCircleGradient(int centerX, int centerY, float radius, Color color1, Color color2); // Draw a gradient-filled circle +RLAPI void DrawCircleGradient(int centerX, int centerY, float radius, Color inner, Color outer); // Draw a gradient-filled circle RLAPI void DrawCircleV(Vector2 center, float radius, Color color); // Draw a color-filled circle (Vector version) RLAPI void DrawCircleLines(int centerX, int centerY, float radius, Color color); // Draw circle outline RLAPI void DrawCircleLinesV(Vector2 center, float radius, Color color); // Draw circle outline (Vector version) @@ -1250,9 +1265,9 @@ RLAPI void DrawRectangle(int posX, int posY, int width, int height, Color color) RLAPI void DrawRectangleV(Vector2 position, Vector2 size, Color color); // Draw a color-filled rectangle (Vector version) RLAPI void DrawRectangleRec(Rectangle rec, Color color); // Draw a color-filled rectangle RLAPI void DrawRectanglePro(Rectangle rec, Vector2 origin, float rotation, Color color); // Draw a color-filled rectangle with pro parameters -RLAPI void DrawRectangleGradientV(int posX, int posY, int width, int height, Color color1, Color color2);// Draw a vertical-gradient-filled rectangle -RLAPI void DrawRectangleGradientH(int posX, int posY, int width, int height, Color color1, Color color2);// Draw a horizontal-gradient-filled rectangle -RLAPI void DrawRectangleGradientEx(Rectangle rec, Color col1, Color col2, Color col3, Color col4); // Draw a gradient-filled rectangle with custom vertex colors +RLAPI void DrawRectangleGradientV(int posX, int posY, int width, int height, Color top, Color bottom); // Draw a vertical-gradient-filled rectangle +RLAPI void DrawRectangleGradientH(int posX, int posY, int width, int height, Color left, Color right); // Draw a horizontal-gradient-filled rectangle +RLAPI void DrawRectangleGradientEx(Rectangle rec, Color topLeft, Color bottomLeft, Color topRight, Color bottomRight); // Draw a gradient-filled rectangle with custom vertex colors RLAPI void DrawRectangleLines(int posX, int posY, int width, int height, Color color); // Draw rectangle outline RLAPI void DrawRectangleLinesEx(Rectangle rec, float lineThick, Color color); // Draw rectangle outline with extended parameters RLAPI void DrawRectangleRounded(Rectangle rec, float roundness, int segments, Color color); // Draw rectangle with rounded edges @@ -1289,13 +1304,13 @@ RLAPI Vector2 GetSplinePointBezierCubic(Vector2 p1, Vector2 c2, Vector2 c3, Vect RLAPI bool CheckCollisionRecs(Rectangle rec1, Rectangle rec2); // Check collision between two rectangles RLAPI bool CheckCollisionCircles(Vector2 center1, float radius1, Vector2 center2, float radius2); // Check collision between two circles RLAPI bool CheckCollisionCircleRec(Vector2 center, float radius, Rectangle rec); // Check collision between circle and rectangle +RLAPI bool CheckCollisionCircleLine(Vector2 center, float radius, Vector2 p1, Vector2 p2); // Check if circle collides with a line created betweeen two points [p1] and [p2] RLAPI bool CheckCollisionPointRec(Vector2 point, Rectangle rec); // Check if point is inside rectangle RLAPI bool CheckCollisionPointCircle(Vector2 point, Vector2 center, float radius); // Check if point is inside circle RLAPI bool CheckCollisionPointTriangle(Vector2 point, Vector2 p1, Vector2 p2, Vector2 p3); // Check if point is inside a triangle +RLAPI bool CheckCollisionPointLine(Vector2 point, Vector2 p1, Vector2 p2, int threshold); // Check if point belongs to line created between two points [p1] and [p2] with defined margin in pixels [threshold] RLAPI bool CheckCollisionPointPoly(Vector2 point, const Vector2 *points, int pointCount); // Check if point is within a polygon described by array of vertices RLAPI bool CheckCollisionLines(Vector2 startPos1, Vector2 endPos1, Vector2 startPos2, Vector2 endPos2, Vector2 *collisionPoint); // Check the collision between two lines defined by two points each, returns collision point by reference -RLAPI bool CheckCollisionPointLine(Vector2 point, Vector2 p1, Vector2 p2, int threshold); // Check if point belongs to line created between two points [p1] and [p2] with defined margin in pixels [threshold] -RLAPI bool CheckCollisionCircleLine(Vector2 center, float radius, Vector2 p1, Vector2 p2); // Check if circle collides with a line created betweeen two points [p1] and [p2] RLAPI Rectangle GetCollisionRec(Rectangle rec1, Rectangle rec2); // Get collision rectangle for two rectangles collision //------------------------------------------------------------------------------------ @@ -1306,13 +1321,12 @@ RLAPI Rectangle GetCollisionRec(Rectangle rec1, Rectangle rec2); // NOTE: These functions do not require GPU access RLAPI Image LoadImage(const char *fileName); // Load image from file into CPU memory (RAM) RLAPI Image LoadImageRaw(const char *fileName, int width, int height, int format, int headerSize); // Load image from RAW file data -RLAPI Image LoadImageSvg(const char *fileNameOrString, int width, int height); // Load image from SVG file data or string with specified size RLAPI Image LoadImageAnim(const char *fileName, int *frames); // Load image sequence from file (frames appended to image.data) RLAPI Image LoadImageAnimFromMemory(const char *fileType, const unsigned char *fileData, int dataSize, int *frames); // Load image sequence from memory buffer RLAPI Image LoadImageFromMemory(const char *fileType, const unsigned char *fileData, int dataSize); // Load image from memory buffer, fileType refers to extension: i.e. '.png' RLAPI Image LoadImageFromTexture(Texture2D texture); // Load image from GPU texture data RLAPI Image LoadImageFromScreen(void); // Load image from screen buffer and (screenshot) -RLAPI bool IsImageReady(Image image); // Check if an image is ready +RLAPI bool IsImageValid(Image image); // Check if an image is valid (data and parameters) RLAPI void UnloadImage(Image image); // Unload image from CPU memory (RAM) RLAPI bool ExportImage(Image image, const char *fileName); // Export image data to file, returns true on success RLAPI unsigned char *ExportImageToMemory(Image image, const char *fileType, int *fileSize); // Export image to memory buffer @@ -1398,9 +1412,9 @@ RLAPI Texture2D LoadTexture(const char *fileName); RLAPI Texture2D LoadTextureFromImage(Image image); // Load texture from image data RLAPI TextureCubemap LoadTextureCubemap(Image image, int layout); // Load cubemap from image, multiple image cubemap layouts supported RLAPI RenderTexture2D LoadRenderTexture(int width, int height); // Load texture for rendering (framebuffer) -RLAPI bool IsTextureReady(Texture2D texture); // Check if a texture is ready +RLAPI bool IsTextureValid(Texture2D texture); // Check if a texture is valid (loaded in GPU) RLAPI void UnloadTexture(Texture2D texture); // Unload texture from GPU memory (VRAM) -RLAPI bool IsRenderTextureReady(RenderTexture2D target); // Check if a render texture is ready +RLAPI bool IsRenderTextureValid(RenderTexture2D target); // Check if a render texture is valid (loaded in GPU) RLAPI void UnloadRenderTexture(RenderTexture2D target); // Unload render texture from GPU memory (VRAM) RLAPI void UpdateTexture(Texture2D texture, const void *pixels); // Update GPU texture with new data RLAPI void UpdateTextureRec(Texture2D texture, Rectangle rec, const void *pixels); // Update GPU texture rectangle with new data @@ -1431,6 +1445,7 @@ RLAPI Color ColorBrightness(Color color, float factor); // G RLAPI Color ColorContrast(Color color, float contrast); // Get color with contrast correction, contrast values between -1.0f and 1.0f RLAPI Color ColorAlpha(Color color, float alpha); // Get color with alpha applied, alpha goes from 0.0f to 1.0f RLAPI Color ColorAlphaBlend(Color dst, Color src, Color tint); // Get src alpha-blended into dst color with tint +RLAPI Color ColorLerp(Color color1, Color color2, float factor); // Get color lerp interpolation between two colors, factor [0.0f..1.0f] RLAPI Color GetColor(unsigned int hexValue); // Get Color structure from hexadecimal value RLAPI Color GetPixelColor(void *srcPtr, int format); // Get Color from a source pixel pointer of certain format RLAPI void SetPixelColor(void *dstPtr, Color color, int format); // Set color formatted into destination pixel pointer @@ -1443,10 +1458,10 @@ RLAPI int GetPixelDataSize(int width, int height, int format); // G // Font loading/unloading functions RLAPI Font GetFontDefault(void); // Get the default Font RLAPI Font LoadFont(const char *fileName); // Load font from file into GPU memory (VRAM) -RLAPI Font LoadFontEx(const char *fileName, int fontSize, int *codepoints, int codepointCount); // Load font from file with extended parameters, use NULL for codepoints and 0 for codepointCount to load the default character set +RLAPI Font LoadFontEx(const char *fileName, int fontSize, int *codepoints, int codepointCount); // Load font from file with extended parameters, use NULL for codepoints and 0 for codepointCount to load the default character set, font size is provided in pixels height RLAPI Font LoadFontFromImage(Image image, Color key, int firstChar); // Load font from Image (XNA style) RLAPI Font LoadFontFromMemory(const char *fileType, const unsigned char *fileData, int dataSize, int fontSize, int *codepoints, int codepointCount); // Load font from memory buffer, fileType refers to extension: i.e. '.ttf' -RLAPI bool IsFontReady(Font font); // Check if a font is ready +RLAPI bool IsFontValid(Font font); // Check if a font is valid (font data loaded, WARNING: GPU texture not checked) RLAPI GlyphInfo *LoadFontData(const unsigned char *fileData, int dataSize, int fontSize, int *codepoints, int codepointCount, int type); // Load font data for further use RLAPI Image GenImageFontAtlas(const GlyphInfo *glyphs, Rectangle **glyphRecs, int glyphCount, int fontSize, int padding, int packMethod); // Generate image font atlas using chars info RLAPI void UnloadFontData(GlyphInfo *glyphs, int glyphCount); // Unload font chars info data (RAM) @@ -1536,7 +1551,7 @@ RLAPI void DrawGrid(int slices, float spacing); // Model management functions RLAPI Model LoadModel(const char *fileName); // Load model from files (meshes and materials) RLAPI Model LoadModelFromMesh(Mesh mesh); // Load model from generated mesh (default material) -RLAPI bool IsModelReady(Model model); // Check if a model is ready +RLAPI bool IsModelValid(Model model); // Check if a model is valid (loaded in GPU, VAO/VBOs) RLAPI void UnloadModel(Model model); // Unload model (including meshes) from memory (RAM and/or VRAM) RLAPI BoundingBox GetModelBoundingBox(Model model); // Compute model bounding box limits (considers all meshes) @@ -1545,6 +1560,8 @@ RLAPI void DrawModel(Model model, Vector3 position, float scale, Color tint); RLAPI void DrawModelEx(Model model, Vector3 position, Vector3 rotationAxis, float rotationAngle, Vector3 scale, Color tint); // Draw a model with extended parameters RLAPI void DrawModelWires(Model model, Vector3 position, float scale, Color tint); // Draw a model wires (with texture if set) RLAPI void DrawModelWiresEx(Model model, Vector3 position, Vector3 rotationAxis, float rotationAngle, Vector3 scale, Color tint); // Draw a model wires (with texture if set) with extended parameters +RLAPI void DrawModelPoints(Model model, Vector3 position, float scale, Color tint); // Draw a model as points +RLAPI void DrawModelPointsEx(Model model, Vector3 position, Vector3 rotationAxis, float rotationAngle, Vector3 scale, Color tint); // Draw a model as points with extended parameters RLAPI void DrawBoundingBox(BoundingBox box, Color color); // Draw bounding box (wires) RLAPI void DrawBillboard(Camera camera, Texture2D texture, Vector3 position, float scale, Color tint); // Draw a billboard texture RLAPI void DrawBillboardRec(Camera camera, Texture2D texture, Rectangle source, Vector3 position, Vector2 size, Color tint); // Draw a billboard texture defined by source @@ -1577,14 +1594,15 @@ RLAPI Mesh GenMeshCubicmap(Image cubicmap, Vector3 cubeSize); // Material loading/unloading functions RLAPI Material *LoadMaterials(const char *fileName, int *materialCount); // Load materials from model file RLAPI Material LoadMaterialDefault(void); // Load default material (Supports: DIFFUSE, SPECULAR, NORMAL maps) -RLAPI bool IsMaterialReady(Material material); // Check if a material is ready +RLAPI bool IsMaterialValid(Material material); // Check if a material is valid (shader assigned, map textures loaded in GPU) RLAPI void UnloadMaterial(Material material); // Unload material from GPU memory (VRAM) RLAPI void SetMaterialTexture(Material *material, int mapType, Texture2D texture); // Set texture for a material map type (MATERIAL_MAP_DIFFUSE, MATERIAL_MAP_SPECULAR...) RLAPI void SetModelMeshMaterial(Model *model, int meshId, int materialId); // Set material for a mesh // Model animations loading/unloading functions RLAPI ModelAnimation *LoadModelAnimations(const char *fileName, int *animCount); // Load model animations from file -RLAPI void UpdateModelAnimation(Model model, ModelAnimation anim, int frame); // Update model animation pose +RLAPI void UpdateModelAnimation(Model model, ModelAnimation anim, int frame); // Update model animation pose (CPU) +RLAPI void UpdateModelAnimationBoneMatrices(Model model, ModelAnimation anim, int frame); // Update model animation mesh bone matrices (GPU skinning) RLAPI void UnloadModelAnimation(ModelAnimation anim); // Unload animation data RLAPI void UnloadModelAnimations(ModelAnimation *animations, int animCount); // Unload animation array data RLAPI bool IsModelAnimationValid(Model model, ModelAnimation anim); // Check model animation skeleton match @@ -1614,11 +1632,11 @@ RLAPI float GetMasterVolume(void); // Get mas // Wave/Sound loading/unloading functions RLAPI Wave LoadWave(const char *fileName); // Load wave data from file RLAPI Wave LoadWaveFromMemory(const char *fileType, const unsigned char *fileData, int dataSize); // Load wave from memory buffer, fileType refers to extension: i.e. '.wav' -RLAPI bool IsWaveReady(Wave wave); // Checks if wave data is ready +RLAPI bool IsWaveValid(Wave wave); // Checks if wave data is valid (data loaded and parameters) RLAPI Sound LoadSound(const char *fileName); // Load sound from file RLAPI Sound LoadSoundFromWave(Wave wave); // Load sound from wave data RLAPI Sound LoadSoundAlias(Sound source); // Create a new sound that shares the same sample data as the source sound, does not own the sound data -RLAPI bool IsSoundReady(Sound sound); // Checks if a sound is ready +RLAPI bool IsSoundValid(Sound sound); // Checks if a sound is valid (data loaded and buffers initialized) RLAPI void UpdateSound(Sound sound, const void *data, int sampleCount); // Update sound buffer with new data RLAPI void UnloadWave(Wave wave); // Unload wave data RLAPI void UnloadSound(Sound sound); // Unload sound @@ -1644,7 +1662,7 @@ RLAPI void UnloadWaveSamples(float *samples); // Unload // Music management functions RLAPI Music LoadMusicStream(const char *fileName); // Load music stream from file RLAPI Music LoadMusicStreamFromMemory(const char *fileType, const unsigned char *data, int dataSize); // Load music stream from data -RLAPI bool IsMusicReady(Music music); // Checks if a music stream is ready +RLAPI bool IsMusicValid(Music music); // Checks if a music stream is valid (context and buffers initialized) RLAPI void UnloadMusicStream(Music music); // Unload music stream RLAPI void PlayMusicStream(Music music); // Start music playing RLAPI bool IsMusicStreamPlaying(Music music); // Check if music is playing @@ -1661,7 +1679,7 @@ RLAPI float GetMusicTimePlayed(Music music); // Get cur // AudioStream management functions RLAPI AudioStream LoadAudioStream(unsigned int sampleRate, unsigned int sampleSize, unsigned int channels); // Load audio stream (to stream raw audio pcm data) -RLAPI bool IsAudioStreamReady(AudioStream stream); // Checks if an audio stream is ready +RLAPI bool IsAudioStreamValid(AudioStream stream); // Checks if an audio stream is valid (buffers initialized) RLAPI void UnloadAudioStream(AudioStream stream); // Unload audio stream and free memory RLAPI void UpdateAudioStream(AudioStream stream, const void *data, int frameCount); // Update audio stream buffers with data RLAPI bool IsAudioStreamProcessed(AudioStream stream); // Check if any audio stream buffers requires refill diff --git a/src/raymath.h b/src/raymath.h index 62d52f8fd..d1b5ab01e 100644 --- a/src/raymath.h +++ b/src/raymath.h @@ -1,6 +1,6 @@ /********************************************************************************************** * -* raymath v1.5 - Math functions to work with Vector2, Vector3, Matrix and Quaternions +* raymath v2.0 - Math functions to work with Vector2, Vector3, Matrix and Quaternions * * CONVENTIONS: * - Matrix structure is defined as row-major (memory layout) but parameters naming AND all @@ -12,7 +12,7 @@ * - Functions are always self-contained, no function use another raymath function inside, * required code is directly re-implemented inside * - Functions input parameters are always received by value (2 unavoidable exceptions) -* - Functions use always a "result" variable for return +* - Functions use always a "result" variable for return (except C++ operators) * - Functions are always defined inline * - Angles are always in radians (DEG2RAD/RAD2DEG macros provided for convenience) * - No compound literals used to make sure libray is compatible with C++ @@ -27,6 +27,8 @@ * Define static inline functions code, so #include header suffices for use. * This may use up lots of memory. * +* #define RAYMATH_DISABLE_CPP_OPERATORS +* Disables C++ operator overloads for raymath types. * * LICENSE: zlib/libpng * @@ -2580,4 +2582,354 @@ RMAPI void MatrixDecompose(Matrix mat, Vector3 *translation, Quaternion *rotatio } } +#if defined(__cplusplus) && !defined(RAYMATH_DISABLE_CPP_OPERATORS) + +// Optional C++ math operators +//------------------------------------------------------------------------------- + +// Vector2 operators +static constexpr Vector2 Vector2Zeros = { 0, 0 }; +static constexpr Vector2 Vector2Ones = { 1, 1 }; +static constexpr Vector2 Vector2UnitX = { 1, 0 }; +static constexpr Vector2 Vector2UnitY = { 0, 1 }; + +inline Vector2 operator + (const Vector2& lhs, const Vector2& rhs) +{ + return Vector2Add(lhs, rhs); +} + +inline const Vector2& operator += (Vector2& lhs, const Vector2& rhs) +{ + lhs = Vector2Add(lhs, rhs); + return lhs; +} + +inline Vector2 operator - (const Vector2& lhs, const Vector2& rhs) +{ + return Vector2Subtract(lhs, rhs); +} + +inline const Vector2& operator -= (Vector2& lhs, const Vector2& rhs) +{ + lhs = Vector2Subtract(lhs, rhs); + return lhs; +} + +inline Vector2 operator * (const Vector2& lhs, const float& rhs) +{ + return Vector2Scale(lhs, rhs); +} + +inline const Vector2& operator *= (Vector2& lhs, const float& rhs) +{ + lhs = Vector2Scale(lhs, rhs); + return lhs; +} + +inline Vector2 operator * (const Vector2& lhs, const Vector2& rhs) +{ + return Vector2Multiply(lhs, rhs); +} + +inline const Vector2& operator *= (Vector2& lhs, const Vector2& rhs) +{ + lhs = Vector2Multiply(lhs, rhs); + return lhs; +} + +inline Vector2 operator * (const Vector2& lhs, const Matrix& rhs) +{ + return Vector2Transform(lhs, rhs); +} + +inline const Vector2& operator -= (Vector2& lhs, const Matrix& rhs) +{ + lhs = Vector2Transform(lhs, rhs); + return lhs; +} + +inline Vector2 operator / (const Vector2& lhs, const float& rhs) +{ + return Vector2Scale(lhs, 1.0f / rhs); +} + +inline const Vector2& operator /= (Vector2& lhs, const float& rhs) +{ + lhs = Vector2Scale(lhs, rhs); + return lhs; +} + +inline Vector2 operator / (const Vector2& lhs, const Vector2& rhs) +{ + return Vector2Divide(lhs, rhs); +} + +inline const Vector2& operator /= (Vector2& lhs, const Vector2& rhs) +{ + lhs = Vector2Divide(lhs, rhs); + return lhs; +} + +inline bool operator == (const Vector2& lhs, const Vector2& rhs) +{ + return FloatEquals(lhs.x, rhs.x) && FloatEquals(lhs.y, rhs.y); +} + +inline bool operator != (const Vector2& lhs, const Vector2& rhs) +{ + return !FloatEquals(lhs.x, rhs.x) || !FloatEquals(lhs.y, rhs.y); +} + +// Vector3 operators +static constexpr Vector3 Vector3Zeros = { 0, 0, 0 }; +static constexpr Vector3 Vector3Ones = { 1, 1, 1 }; +static constexpr Vector3 Vector3UnitX = { 1, 0, 0 }; +static constexpr Vector3 Vector3UnitY = { 0, 1, 0 }; +static constexpr Vector3 Vector3UnitZ = { 0, 0, 1 }; + +inline Vector3 operator + (const Vector3& lhs, const Vector3& rhs) +{ + return Vector3Add(lhs, rhs); +} + +inline const Vector3& operator += (Vector3& lhs, const Vector3& rhs) +{ + lhs = Vector3Add(lhs, rhs); + return lhs; +} + +inline Vector3 operator - (const Vector3& lhs, const Vector3& rhs) +{ + return Vector3Subtract(lhs, rhs); +} + +inline const Vector3& operator -= (Vector3& lhs, const Vector3& rhs) +{ + lhs = Vector3Subtract(lhs, rhs); + return lhs; +} + +inline Vector3 operator * (const Vector3& lhs, const float& rhs) +{ + return Vector3Scale(lhs, rhs); +} + +inline const Vector3& operator *= (Vector3& lhs, const float& rhs) +{ + lhs = Vector3Scale(lhs, rhs); + return lhs; +} + +inline Vector3 operator * (const Vector3& lhs, const Vector3& rhs) +{ + return Vector3Multiply(lhs, rhs); +} + +inline const Vector3& operator *= (Vector3& lhs, const Vector3& rhs) +{ + lhs = Vector3Multiply(lhs, rhs); + return lhs; +} + +inline Vector3 operator * (const Vector3& lhs, const Matrix& rhs) +{ + return Vector3Transform(lhs, rhs); +} + +inline const Vector3& operator -= (Vector3& lhs, const Matrix& rhs) +{ + lhs = Vector3Transform(lhs, rhs); + return lhs; +} + +inline Vector3 operator / (const Vector3& lhs, const float& rhs) +{ + return Vector3Scale(lhs, 1.0f / rhs); +} + +inline const Vector3& operator /= (Vector3& lhs, const float& rhs) +{ + lhs = Vector3Scale(lhs, rhs); + return lhs; +} + +inline Vector3 operator / (const Vector3& lhs, const Vector3& rhs) +{ + return Vector3Divide(lhs, rhs); +} + +inline const Vector3& operator /= (Vector3& lhs, const Vector3& rhs) +{ + lhs = Vector3Divide(lhs, rhs); + return lhs; +} + +inline bool operator == (const Vector3& lhs, const Vector3& rhs) +{ + return FloatEquals(lhs.x, rhs.x) && FloatEquals(lhs.y, rhs.y) && FloatEquals(lhs.z, rhs.z); +} + +inline bool operator != (const Vector3& lhs, const Vector3& rhs) +{ + return !FloatEquals(lhs.x, rhs.x) || !FloatEquals(lhs.y, rhs.y) || !FloatEquals(lhs.z, rhs.z); +} + +// Vector4 operators +static constexpr Vector4 Vector4Zeros = { 0, 0, 0, 0 }; +static constexpr Vector4 Vector4Ones = { 1, 1, 1, 1 }; +static constexpr Vector4 Vector4UnitX = { 1, 0, 0, 0 }; +static constexpr Vector4 Vector4UnitY = { 0, 1, 0, 0 }; +static constexpr Vector4 Vector4UnitZ = { 0, 0, 1, 0 }; +static constexpr Vector4 Vector4UnitW = { 0, 0, 0, 1 }; + +inline Vector4 operator + (const Vector4& lhs, const Vector4& rhs) +{ + return Vector4Add(lhs, rhs); +} + +inline const Vector4& operator += (Vector4& lhs, const Vector4& rhs) +{ + lhs = Vector4Add(lhs, rhs); + return lhs; +} + +inline Vector4 operator - (const Vector4& lhs, const Vector4& rhs) +{ + return Vector4Subtract(lhs, rhs); +} + +inline const Vector4& operator -= (Vector4& lhs, const Vector4& rhs) +{ + lhs = Vector4Subtract(lhs, rhs); + return lhs; +} + +inline Vector4 operator * (const Vector4& lhs, const float& rhs) +{ + return Vector4Scale(lhs, rhs); +} + +inline const Vector4& operator *= (Vector4& lhs, const float& rhs) +{ + lhs = Vector4Scale(lhs, rhs); + return lhs; +} + +inline Vector4 operator * (const Vector4& lhs, const Vector4& rhs) +{ + return Vector4Multiply(lhs, rhs); +} + +inline const Vector4& operator *= (Vector4& lhs, const Vector4& rhs) +{ + lhs = Vector4Multiply(lhs, rhs); + return lhs; +} + +inline Vector4 operator / (const Vector4& lhs, const float& rhs) +{ + return Vector4Scale(lhs, 1.0f / rhs); +} + +inline const Vector4& operator /= (Vector4& lhs, const float& rhs) +{ + lhs = Vector4Scale(lhs, rhs); + return lhs; +} + +inline Vector4 operator / (const Vector4& lhs, const Vector4& rhs) +{ + return Vector4Divide(lhs, rhs); +} + +inline const Vector4& operator /= (Vector4& lhs, const Vector4& rhs) +{ + lhs = Vector4Divide(lhs, rhs); + return lhs; +} + +inline bool operator == (const Vector4& lhs, const Vector4& rhs) +{ + return FloatEquals(lhs.x, rhs.x) && FloatEquals(lhs.y, rhs.y) && FloatEquals(lhs.z, rhs.z) && FloatEquals(lhs.w, rhs.w); +} + +inline bool operator != (const Vector4& lhs, const Vector4& rhs) +{ + return !FloatEquals(lhs.x, rhs.x) || !FloatEquals(lhs.y, rhs.y) || !FloatEquals(lhs.z, rhs.z) || !FloatEquals(lhs.w, rhs.w); +} + +// Quaternion operators +static constexpr Quaternion QuaternionZeros = { 0, 0, 0, 0 }; +static constexpr Quaternion QuaternionOnes = { 1, 1, 1, 1 }; +static constexpr Quaternion QuaternionUnitX = { 0, 0, 0, 1 }; + +inline Quaternion operator + (const Quaternion& lhs, const float& rhs) +{ + return QuaternionAddValue(lhs, rhs); +} + +inline const Quaternion& operator += (Quaternion& lhs, const float& rhs) +{ + lhs = QuaternionAddValue(lhs, rhs); + return lhs; +} + +inline Quaternion operator - (const Quaternion& lhs, const float& rhs) +{ + return QuaternionSubtractValue(lhs, rhs); +} + +inline const Quaternion& operator -= (Quaternion& lhs, const float& rhs) +{ + lhs = QuaternionSubtractValue(lhs, rhs); + return lhs; +} + +inline Quaternion operator * (const Quaternion& lhs, const Matrix& rhs) +{ + return QuaternionTransform(lhs, rhs); +} + +inline const Quaternion& operator *= (Quaternion& lhs, const Matrix& rhs) +{ + lhs = QuaternionTransform(lhs, rhs); + return lhs; +} + +// Matrix operators +inline Matrix operator + (const Matrix& lhs, const Matrix& rhs) +{ + return MatrixAdd(lhs, rhs); +} + +inline const Matrix& operator += (Matrix& lhs, const Matrix& rhs) +{ + lhs = MatrixAdd(lhs, rhs); + return lhs; +} + +inline Matrix operator - (const Matrix& lhs, const Matrix& rhs) +{ + return MatrixSubtract(lhs, rhs); +} + +inline const Matrix& operator -= (Matrix& lhs, const Matrix& rhs) +{ + lhs = MatrixSubtract(lhs, rhs); + return lhs; +} + +inline Matrix operator * (const Matrix& lhs, const Matrix& rhs) +{ + return MatrixMultiply(lhs, rhs); +} + +inline const Matrix& operator *= (Matrix& lhs, const Matrix& rhs) +{ + lhs = MatrixMultiply(lhs, rhs); + return lhs; +} +//------------------------------------------------------------------------------- +#endif // C++ operators + #endif // RAYMATH_H diff --git a/src/rcamera.h b/src/rcamera.h index d3042d306..bd2b36e03 100644 --- a/src/rcamera.h +++ b/src/rcamera.h @@ -162,7 +162,6 @@ RLAPI Matrix GetCameraProjectionMatrix(Camera* camera, float aspect); #endif // RCAMERA_H - /*********************************************************************************** * * CAMERA IMPLEMENTATION @@ -196,12 +195,12 @@ RLAPI Matrix GetCameraProjectionMatrix(Camera* camera, float aspect); //---------------------------------------------------------------------------------- // Defines and Macros //---------------------------------------------------------------------------------- -#define CAMERA_MOVE_SPEED 0.09f +#define CAMERA_MOVE_SPEED 5.4f // Units per second #define CAMERA_ROTATION_SPEED 0.03f #define CAMERA_PAN_SPEED 0.2f // Camera mouse movement sensitivity -#define CAMERA_MOUSE_MOVE_SENSITIVITY 0.003f // TODO: it should be independant of framerate +#define CAMERA_MOUSE_MOVE_SENSITIVITY 0.003f // Camera orbital speed in CAMERA_ORBITAL mode #define CAMERA_ORBITAL_SPEED 0.5f // Radians per second @@ -444,11 +443,17 @@ void UpdateCamera(Camera *camera, int mode) bool lockView = ((mode == CAMERA_FREE) || (mode == CAMERA_FIRST_PERSON) || (mode == CAMERA_THIRD_PERSON) || (mode == CAMERA_ORBITAL)); bool rotateUp = false; + // Camera speeds based on frame time + float cameraMoveSpeed = CAMERA_MOVE_SPEED*GetFrameTime(); + float cameraRotationSpeed = CAMERA_ROTATION_SPEED*GetFrameTime(); + float cameraPanSpeed = CAMERA_PAN_SPEED*GetFrameTime(); + float cameraOrbitalSpeed = CAMERA_ORBITAL_SPEED*GetFrameTime(); + if (mode == CAMERA_CUSTOM) {} else if (mode == CAMERA_ORBITAL) { // Orbital can just orbit - Matrix rotation = MatrixRotate(GetCameraUp(camera), CAMERA_ORBITAL_SPEED*GetFrameTime()); + Matrix rotation = MatrixRotate(GetCameraUp(camera), cameraOrbitalSpeed); Vector3 view = Vector3Subtract(camera->position, camera->target); view = Vector3Transform(view, rotation); camera->position = Vector3Add(camera->target, view); @@ -456,22 +461,22 @@ void UpdateCamera(Camera *camera, int mode) else { // Camera rotation - if (IsKeyDown(KEY_DOWN)) CameraPitch(camera, -CAMERA_ROTATION_SPEED, lockView, rotateAroundTarget, rotateUp); - if (IsKeyDown(KEY_UP)) CameraPitch(camera, CAMERA_ROTATION_SPEED, lockView, rotateAroundTarget, rotateUp); - if (IsKeyDown(KEY_RIGHT)) CameraYaw(camera, -CAMERA_ROTATION_SPEED, rotateAroundTarget); - if (IsKeyDown(KEY_LEFT)) CameraYaw(camera, CAMERA_ROTATION_SPEED, rotateAroundTarget); - if (IsKeyDown(KEY_Q)) CameraRoll(camera, -CAMERA_ROTATION_SPEED); - if (IsKeyDown(KEY_E)) CameraRoll(camera, CAMERA_ROTATION_SPEED); + if (IsKeyDown(KEY_DOWN)) CameraPitch(camera, -cameraRotationSpeed, lockView, rotateAroundTarget, rotateUp); + if (IsKeyDown(KEY_UP)) CameraPitch(camera, cameraRotationSpeed, lockView, rotateAroundTarget, rotateUp); + if (IsKeyDown(KEY_RIGHT)) CameraYaw(camera, -cameraRotationSpeed, rotateAroundTarget); + if (IsKeyDown(KEY_LEFT)) CameraYaw(camera, cameraRotationSpeed, rotateAroundTarget); + if (IsKeyDown(KEY_Q)) CameraRoll(camera, -cameraRotationSpeed); + if (IsKeyDown(KEY_E)) CameraRoll(camera, cameraRotationSpeed); // Camera movement // Camera pan (for CAMERA_FREE) if ((mode == CAMERA_FREE) && (IsMouseButtonDown(MOUSE_BUTTON_MIDDLE))) { const Vector2 mouseDelta = GetMouseDelta(); - if (mouseDelta.x > 0.0f) CameraMoveRight(camera, CAMERA_PAN_SPEED, moveInWorldPlane); - if (mouseDelta.x < 0.0f) CameraMoveRight(camera, -CAMERA_PAN_SPEED, moveInWorldPlane); - if (mouseDelta.y > 0.0f) CameraMoveUp(camera, -CAMERA_PAN_SPEED); - if (mouseDelta.y < 0.0f) CameraMoveUp(camera, CAMERA_PAN_SPEED); + if (mouseDelta.x > 0.0f) CameraMoveRight(camera, cameraPanSpeed, moveInWorldPlane); + if (mouseDelta.x < 0.0f) CameraMoveRight(camera, -cameraPanSpeed, moveInWorldPlane); + if (mouseDelta.y > 0.0f) CameraMoveUp(camera, -cameraPanSpeed); + if (mouseDelta.y < 0.0f) CameraMoveUp(camera, cameraPanSpeed); } else { @@ -481,10 +486,10 @@ void UpdateCamera(Camera *camera, int mode) } // Keyboard support - if (IsKeyDown(KEY_W)) CameraMoveForward(camera, CAMERA_MOVE_SPEED, moveInWorldPlane); - if (IsKeyDown(KEY_A)) CameraMoveRight(camera, -CAMERA_MOVE_SPEED, moveInWorldPlane); - if (IsKeyDown(KEY_S)) CameraMoveForward(camera, -CAMERA_MOVE_SPEED, moveInWorldPlane); - if (IsKeyDown(KEY_D)) CameraMoveRight(camera, CAMERA_MOVE_SPEED, moveInWorldPlane); + if (IsKeyDown(KEY_W)) CameraMoveForward(camera, cameraMoveSpeed, moveInWorldPlane); + if (IsKeyDown(KEY_A)) CameraMoveRight(camera, -cameraMoveSpeed, moveInWorldPlane); + if (IsKeyDown(KEY_S)) CameraMoveForward(camera, -cameraMoveSpeed, moveInWorldPlane); + if (IsKeyDown(KEY_D)) CameraMoveRight(camera, cameraMoveSpeed, moveInWorldPlane); // Gamepad movement if (IsGamepadAvailable(0)) @@ -493,16 +498,16 @@ void UpdateCamera(Camera *camera, int mode) CameraYaw(camera, -(GetGamepadAxisMovement(0, GAMEPAD_AXIS_RIGHT_X)*2)*CAMERA_MOUSE_MOVE_SENSITIVITY, rotateAroundTarget); CameraPitch(camera, -(GetGamepadAxisMovement(0, GAMEPAD_AXIS_RIGHT_Y)*2)*CAMERA_MOUSE_MOVE_SENSITIVITY, lockView, rotateAroundTarget, rotateUp); - if (GetGamepadAxisMovement(0, GAMEPAD_AXIS_LEFT_Y) <= -0.25f) CameraMoveForward(camera, CAMERA_MOVE_SPEED, moveInWorldPlane); - if (GetGamepadAxisMovement(0, GAMEPAD_AXIS_LEFT_X) <= -0.25f) CameraMoveRight(camera, -CAMERA_MOVE_SPEED, moveInWorldPlane); - if (GetGamepadAxisMovement(0, GAMEPAD_AXIS_LEFT_Y) >= 0.25f) CameraMoveForward(camera, -CAMERA_MOVE_SPEED, moveInWorldPlane); - if (GetGamepadAxisMovement(0, GAMEPAD_AXIS_LEFT_X) >= 0.25f) CameraMoveRight(camera, CAMERA_MOVE_SPEED, moveInWorldPlane); + if (GetGamepadAxisMovement(0, GAMEPAD_AXIS_LEFT_Y) <= -0.25f) CameraMoveForward(camera, cameraMoveSpeed, moveInWorldPlane); + if (GetGamepadAxisMovement(0, GAMEPAD_AXIS_LEFT_X) <= -0.25f) CameraMoveRight(camera, -cameraMoveSpeed, moveInWorldPlane); + if (GetGamepadAxisMovement(0, GAMEPAD_AXIS_LEFT_Y) >= 0.25f) CameraMoveForward(camera, -cameraMoveSpeed, moveInWorldPlane); + if (GetGamepadAxisMovement(0, GAMEPAD_AXIS_LEFT_X) >= 0.25f) CameraMoveRight(camera, cameraMoveSpeed, moveInWorldPlane); } if (mode == CAMERA_FREE) { - if (IsKeyDown(KEY_SPACE)) CameraMoveUp(camera, CAMERA_MOVE_SPEED); - if (IsKeyDown(KEY_LEFT_CONTROL)) CameraMoveUp(camera, -CAMERA_MOVE_SPEED); + if (IsKeyDown(KEY_SPACE)) CameraMoveUp(camera, cameraMoveSpeed); + if (IsKeyDown(KEY_LEFT_CONTROL)) CameraMoveUp(camera, -cameraMoveSpeed); } } diff --git a/src/rcore.c b/src/rcore.c index b4bc19f34..9734972cf 100644 --- a/src/rcore.c +++ b/src/rcore.c @@ -165,6 +165,10 @@ unsigned int __stdcall timeBeginPeriod(unsigned int uPeriod); unsigned int __stdcall timeEndPeriod(unsigned int uPeriod); #elif defined(__linux__) #include +#elif defined(__FreeBSD__) + #include + #include + #include #elif defined(__APPLE__) #include #include @@ -187,14 +191,16 @@ unsigned int __stdcall timeEndPeriod(unsigned int uPeriod); #endif #if defined(_WIN32) - #include // Required for: _getch(), _chdir() + #include // Required for: _access() [Used in FileExists()] + #include // Required for: _getch(), _chdir(), _mkdir() #define GETCWD _getcwd // NOTE: MSDN recommends not to use getcwd(), chdir() #define CHDIR _chdir - #include // Required for: _access() [Used in FileExists()] + #define MKDIR(dir) _mkdir(dir) #else - #include // Required for: getch(), chdir() (POSIX), access() + #include // Required for: getch(), chdir(), mkdir(), access() #define GETCWD getcwd #define CHDIR chdir + #define MKDIR(dir) mkdir(dir, 0777) #endif //---------------------------------------------------------------------------------- @@ -247,6 +253,10 @@ unsigned int __stdcall timeEndPeriod(unsigned int uPeriod); #define MAX_AUTOMATION_EVENTS 16384 // Maximum number of automation events to record #endif +#ifndef DIRECTORY_FILTER_TAG + #define DIRECTORY_FILTER_TAG "DIR" // Name tag used to request directory inclusion on directory scan +#endif // NOTE: Used in ScanDirectoryFiles(), ScanDirectoryFilesRecursively() and LoadDirectoryFilesEx() + // Flags operation macros #define FLAG_SET(n, f) ((n) |= (f)) #define FLAG_CLEAR(n, f) ((n) &= ~(f)) @@ -360,16 +370,21 @@ typedef struct CoreData { //---------------------------------------------------------------------------------- RLAPI const char *raylib_version = RAYLIB_VERSION; // raylib version exported symbol, required for some bindings -CoreData CORE = { 0 }; // Global CORE state context +CoreData CORE = { 0 }; // Global CORE state context + +// Flag to note GPU acceleration is available, +// referenced from other modules to support GPU data loading +// NOTE: Useful to allow Texture, RenderTexture, Font.texture, Mesh.vaoId/vboId, Shader loading +bool isGpuReady = false; #if defined(SUPPORT_SCREEN_CAPTURE) -static int screenshotCounter = 0; // Screenshots counter +static int screenshotCounter = 0; // Screenshots counter #endif #if defined(SUPPORT_GIF_RECORDING) -unsigned int gifFrameCounter = 0; // GIF frames counter -bool gifRecording = false; // GIF recording state -MsfGifState gifState = { 0 }; // MSGIF context state +static unsigned int gifFrameCounter = 0; // GIF frames counter +static bool gifRecording = false; // GIF recording state +static MsfGifState gifState = { 0 }; // MSGIF context state #endif #if defined(SUPPORT_AUTOMATION_EVENTS) @@ -563,7 +578,6 @@ const char *TextFormat(const char *text, ...); // Formatting of tex //void DisableCursor(void) // Initialize window and OpenGL context -// NOTE: data parameter could be used to pass any kind of required data to the initialization void InitWindow(int width, int height, const char *title) { TRACELOG(LOG_INFO, "Initializing raylib %s", RAYLIB_VERSION); @@ -637,28 +651,31 @@ void InitWindow(int width, int height, const char *title) // Initialize rlgl default data (buffers and shaders) // NOTE: CORE.Window.currentFbo.width and CORE.Window.currentFbo.height not used, just stored as globals in rlgl rlglInit(CORE.Window.currentFbo.width, CORE.Window.currentFbo.height); + isGpuReady = true; // Flag to note GPU has been initialized successfully // Setup default viewport SetupViewport(CORE.Window.currentFbo.width, CORE.Window.currentFbo.height); -#if defined(SUPPORT_MODULE_RTEXT) && defined(SUPPORT_DEFAULT_FONT) - // Load default font - // WARNING: External function: Module required: rtext - LoadFontDefault(); - #if defined(SUPPORT_MODULE_RSHAPES) - // Set font white rectangle for shapes drawing, so shapes and text can be batched together - // WARNING: rshapes module is required, if not available, default internal white rectangle is used - Rectangle rec = GetFontDefault().recs[95]; - if (CORE.Window.flags & FLAG_MSAA_4X_HINT) - { - // NOTE: We try to maxime rec padding to avoid pixel bleeding on MSAA filtering - SetShapesTexture(GetFontDefault().texture, (Rectangle){ rec.x + 2, rec.y + 2, 1, 1 }); - } - else - { - // NOTE: We set up a 1px padding on char rectangle to avoid pixel bleeding - SetShapesTexture(GetFontDefault().texture, (Rectangle){ rec.x + 1, rec.y + 1, rec.width - 2, rec.height - 2 }); - } +#if defined(SUPPORT_MODULE_RTEXT) + #if defined(SUPPORT_DEFAULT_FONT) + // Load default font + // WARNING: External function: Module required: rtext + LoadFontDefault(); + #if defined(SUPPORT_MODULE_RSHAPES) + // Set font white rectangle for shapes drawing, so shapes and text can be batched together + // WARNING: rshapes module is required, if not available, default internal white rectangle is used + Rectangle rec = GetFontDefault().recs[95]; + if (CORE.Window.flags & FLAG_MSAA_4X_HINT) + { + // NOTE: We try to maxime rec padding to avoid pixel bleeding on MSAA filtering + SetShapesTexture(GetFontDefault().texture, (Rectangle){ rec.x + 2, rec.y + 2, 1, 1 }); + } + else + { + // NOTE: We set up a 1px padding on char rectangle to avoid pixel bleeding + SetShapesTexture(GetFontDefault().texture, (Rectangle){ rec.x + 1, rec.y + 1, rec.width - 2, rec.height - 2 }); + } + #endif #endif #else #if defined(SUPPORT_MODULE_RSHAPES) @@ -669,13 +686,12 @@ void InitWindow(int width, int height, const char *title) #endif #endif - CORE.Time.frameCounter = 0; CORE.Window.shouldClose = false; // Initialize random seed SetRandomSeed((unsigned int)time(NULL)); - + TRACELOG(LOG_INFO, "SYSTEM: Working Directory: %s", GetWorkingDirectory()); } @@ -1288,6 +1304,8 @@ Shader LoadShaderFromMemory(const char *vsCode, const char *fsCode) // vertex color location = 3 // vertex tangent location = 4 // vertex texcoord2 location = 5 + // vertex boneIds location = 6 + // vertex boneWeights location = 7 // NOTE: If any location is not found, loc point becomes -1 @@ -1303,6 +1321,8 @@ Shader LoadShaderFromMemory(const char *vsCode, const char *fsCode) shader.locs[SHADER_LOC_VERTEX_NORMAL] = rlGetLocationAttrib(shader.id, RL_DEFAULT_SHADER_ATTRIB_NAME_NORMAL); shader.locs[SHADER_LOC_VERTEX_TANGENT] = rlGetLocationAttrib(shader.id, RL_DEFAULT_SHADER_ATTRIB_NAME_TANGENT); shader.locs[SHADER_LOC_VERTEX_COLOR] = rlGetLocationAttrib(shader.id, RL_DEFAULT_SHADER_ATTRIB_NAME_COLOR); + shader.locs[SHADER_LOC_VERTEX_BONEIDS] = rlGetLocationAttrib(shader.id, RL_DEFAULT_SHADER_ATTRIB_NAME_BONEIDS); + shader.locs[SHADER_LOC_VERTEX_BONEWEIGHTS] = rlGetLocationAttrib(shader.id, RL_DEFAULT_SHADER_ATTRIB_NAME_BONEWEIGHTS); // Get handles to GLSL uniform locations (vertex shader) shader.locs[SHADER_LOC_MATRIX_MVP] = rlGetLocationUniform(shader.id, RL_DEFAULT_SHADER_UNIFORM_NAME_MVP); @@ -1310,6 +1330,7 @@ Shader LoadShaderFromMemory(const char *vsCode, const char *fsCode) shader.locs[SHADER_LOC_MATRIX_PROJECTION] = rlGetLocationUniform(shader.id, RL_DEFAULT_SHADER_UNIFORM_NAME_PROJECTION); shader.locs[SHADER_LOC_MATRIX_MODEL] = rlGetLocationUniform(shader.id, RL_DEFAULT_SHADER_UNIFORM_NAME_MODEL); shader.locs[SHADER_LOC_MATRIX_NORMAL] = rlGetLocationUniform(shader.id, RL_DEFAULT_SHADER_UNIFORM_NAME_NORMAL); + shader.locs[SHADER_LOC_BONE_MATRICES] = rlGetLocationUniform(shader.id, RL_DEFAULT_SHADER_UNIFORM_NAME_BONE_MATRICES); // Get handles to GLSL uniform locations (fragment shader) shader.locs[SHADER_LOC_COLOR_DIFFUSE] = rlGetLocationUniform(shader.id, RL_DEFAULT_SHADER_UNIFORM_NAME_COLOR); @@ -1321,10 +1342,10 @@ Shader LoadShaderFromMemory(const char *vsCode, const char *fsCode) return shader; } -// Check if a shader is ready -bool IsShaderReady(Shader shader) +// Check if a shader is valid (loaded on GPU) +bool IsShaderValid(Shader shader) { - return ((shader.id > 0) && // Validate shader id (loaded successfully) + return ((shader.id > 0) && // Validate shader id (GPU loaded successfully) (shader.locs != NULL)); // Validate memory has been allocated for default shader locations // The following locations are tried to be set automatically (locs[i] >= 0), @@ -2154,6 +2175,28 @@ const char *GetApplicationDirectory(void) appDir[0] = '.'; appDir[1] = '/'; } +#elif defined(__FreeBSD__) + size_t size = sizeof(appDir); + int mib[4] = {CTL_KERN, KERN_PROC, KERN_PROC_PATHNAME, -1}; + + if (sysctl(mib, 4, appDir, &size, NULL, 0) == 0) + { + int len = strlen(appDir); + for (int i = len; i >= 0; --i) + { + if (appDir[i] == '/') + { + appDir[i + 1] = '\0'; + break; + } + } + } + else + { + appDir[0] = '.'; + appDir[1] = '/'; + } + #endif return appDir; @@ -2225,6 +2268,40 @@ void UnloadDirectoryFiles(FilePathList files) RL_FREE(files.paths); } +// Create directories (including full path requested), returns 0 on success +int MakeDirectory(const char *dirPath) +{ + if ((dirPath == NULL) || (dirPath[0] == '\0')) return 1; // Path is not valid + if (DirectoryExists(dirPath)) return 0; // Path already exists (is valid) + + // Copy path string to avoid modifying original + int len = (int)strlen(dirPath) + 1; + char *pathcpy = (char *)RL_CALLOC(len, 1); + memcpy(pathcpy, dirPath, len); + + // Iterate over pathcpy, create each subdirectory as needed + for (int i = 0; (i < len) && (pathcpy[i] != '\0'); i++) + { + if (pathcpy[i] == ':') i++; + else + { + if ((pathcpy[i] == '\\') || (pathcpy[i] == '/')) + { + pathcpy[i] = '\0'; + if (!DirectoryExists(pathcpy)) MKDIR(pathcpy); + pathcpy[i] = '/'; + } + } + } + + // Create final directory + if (!DirectoryExists(pathcpy)) MKDIR(pathcpy); + + RL_FREE(pathcpy); + + return 0; +} + // Change working directory, returns true on success bool ChangeDirectory(const char *dir) { @@ -2500,6 +2577,265 @@ unsigned char *DecodeDataBase64(const unsigned char *data, int *outputSize) return decodedData; } +// Compute CRC32 hash code +unsigned int ComputeCRC32(unsigned char *data, int dataSize) +{ + static unsigned int crcTable[256] = { + 0x00000000, 0x77073096, 0xEE0E612C, 0x990951BA, 0x076DC419, 0x706AF48F, 0xE963A535, 0x9E6495A3, + 0x0eDB8832, 0x79DCB8A4, 0xE0D5E91E, 0x97D2D988, 0x09B64C2B, 0x7EB17CBD, 0xE7B82D07, 0x90BF1D91, + 0x1DB71064, 0x6AB020F2, 0xF3B97148, 0x84BE41DE, 0x1ADAD47D, 0x6DDDE4EB, 0xF4D4B551, 0x83D385C7, + 0x136C9856, 0x646BA8C0, 0xFD62F97A, 0x8A65C9EC, 0x14015C4F, 0x63066CD9, 0xFA0F3D63, 0x8D080DF5, + 0x3B6E20C8, 0x4C69105E, 0xD56041E4, 0xA2677172, 0x3C03E4D1, 0x4B04D447, 0xD20D85FD, 0xA50AB56B, + 0x35B5A8FA, 0x42B2986C, 0xDBBBC9D6, 0xACBCF940, 0x32D86CE3, 0x45DF5C75, 0xDCD60DCF, 0xABD13D59, + 0x26D930AC, 0x51DE003A, 0xC8D75180, 0xBFD06116, 0x21B4F4B5, 0x56B3C423, 0xCFBA9599, 0xB8BDA50F, + 0x2802B89E, 0x5F058808, 0xC60CD9B2, 0xB10BE924, 0x2F6F7C87, 0x58684C11, 0xC1611DAB, 0xB6662D3D, + 0x76DC4190, 0x01DB7106, 0x98D220BC, 0xEFD5102A, 0x71B18589, 0x06B6B51F, 0x9FBFE4A5, 0xE8B8D433, + 0x7807C9A2, 0x0F00F934, 0x9609A88E, 0xE10E9818, 0x7F6A0DBB, 0x086D3D2D, 0x91646C97, 0xE6635C01, + 0x6B6B51F4, 0x1C6C6162, 0x856530D8, 0xF262004E, 0x6C0695ED, 0x1B01A57B, 0x8208F4C1, 0xF50FC457, + 0x65B0D9C6, 0x12B7E950, 0x8BBEB8EA, 0xFCB9887C, 0x62DD1DDF, 0x15DA2D49, 0x8CD37CF3, 0xFBD44C65, + 0x4DB26158, 0x3AB551CE, 0xA3BC0074, 0xD4BB30E2, 0x4ADFA541, 0x3DD895D7, 0xA4D1C46D, 0xD3D6F4FB, + 0x4369E96A, 0x346ED9FC, 0xAD678846, 0xDA60B8D0, 0x44042D73, 0x33031DE5, 0xAA0A4C5F, 0xDD0D7CC9, + 0x5005713C, 0x270241AA, 0xBE0B1010, 0xC90C2086, 0x5768B525, 0x206F85B3, 0xB966D409, 0xCE61E49F, + 0x5EDEF90E, 0x29D9C998, 0xB0D09822, 0xC7D7A8B4, 0x59B33D17, 0x2EB40D81, 0xB7BD5C3B, 0xC0BA6CAD, + 0xEDB88320, 0x9ABFB3B6, 0x03B6E20C, 0x74B1D29A, 0xEAD54739, 0x9DD277AF, 0x04DB2615, 0x73DC1683, + 0xE3630B12, 0x94643B84, 0x0D6D6A3E, 0x7A6A5AA8, 0xE40ECF0B, 0x9309FF9D, 0x0A00AE27, 0x7D079EB1, + 0xF00F9344, 0x8708A3D2, 0x1E01F268, 0x6906C2FE, 0xF762575D, 0x806567CB, 0x196C3671, 0x6E6B06E7, + 0xFED41B76, 0x89D32BE0, 0x10DA7A5A, 0x67DD4ACC, 0xF9B9DF6F, 0x8EBEEFF9, 0x17B7BE43, 0x60B08ED5, + 0xD6D6A3E8, 0xA1D1937E, 0x38D8C2C4, 0x4FDFF252, 0xD1BB67F1, 0xA6BC5767, 0x3FB506DD, 0x48B2364B, + 0xD80D2BDA, 0xAF0A1B4C, 0x36034AF6, 0x41047A60, 0xDF60EFC3, 0xA867DF55, 0x316E8EEF, 0x4669BE79, + 0xCB61B38C, 0xBC66831A, 0x256FD2A0, 0x5268E236, 0xCC0C7795, 0xBB0B4703, 0x220216B9, 0x5505262F, + 0xC5BA3BBE, 0xB2BD0B28, 0x2BB45A92, 0x5CB36A04, 0xC2D7FFA7, 0xB5D0CF31, 0x2CD99E8B, 0x5BDEAE1D, + 0x9B64C2B0, 0xEC63F226, 0x756AA39C, 0x026D930A, 0x9C0906A9, 0xEB0E363F, 0x72076785, 0x05005713, + 0x95BF4A82, 0xE2B87A14, 0x7BB12BAE, 0x0CB61B38, 0x92D28E9B, 0xE5D5BE0D, 0x7CDCEFB7, 0x0BDBDF21, + 0x86D3D2D4, 0xF1D4E242, 0x68DDB3F8, 0x1FDA836E, 0x81BE16CD, 0xF6B9265B, 0x6FB077E1, 0x18B74777, + 0x88085AE6, 0xFF0F6A70, 0x66063BCA, 0x11010B5C, 0x8F659EFF, 0xF862AE69, 0x616BFFD3, 0x166CCF45, + 0xA00AE278, 0xD70DD2EE, 0x4E048354, 0x3903B3C2, 0xA7672661, 0xD06016F7, 0x4969474D, 0x3E6E77DB, + 0xAED16A4A, 0xD9D65ADC, 0x40DF0B66, 0x37D83BF0, 0xA9BCAE53, 0xDEBB9EC5, 0x47B2CF7F, 0x30B5FFE9, + 0xBDBDF21C, 0xCABAC28A, 0x53B39330, 0x24B4A3A6, 0xBAD03605, 0xCDD70693, 0x54DE5729, 0x23D967BF, + 0xB3667A2E, 0xC4614AB8, 0x5D681B02, 0x2A6F2B94, 0xB40BBE37, 0xC30C8EA1, 0x5A05DF1B, 0x2D02EF8D + }; + + unsigned int crc = ~0u; + + for (int i = 0; i < dataSize; i++) crc = (crc >> 8) ^ crcTable[data[i] ^ (crc & 0xff)]; + + return ~crc; +} + +// Compute MD5 hash code +// NOTE: Returns a static int[4] array (16 bytes) +unsigned int *ComputeMD5(unsigned char *data, int dataSize) +{ + #define ROTATE_LEFT(x, c) (((x) << (c)) | ((x) >> (32 - (c)))) + + static unsigned int hash[4] = { 0 }; // Hash to be returned + + // WARNING: All variables are unsigned 32 bit and wrap modulo 2^32 when calculating + + // NOTE: r specifies the per-round shift amounts + unsigned int r[] = { + 7, 12, 17, 22, 7, 12, 17, 22, 7, 12, 17, 22, 7, 12, 17, 22, + 5, 9, 14, 20, 5, 9, 14, 20, 5, 9, 14, 20, 5, 9, 14, 20, + 4, 11, 16, 23, 4, 11, 16, 23, 4, 11, 16, 23, 4, 11, 16, 23, + 6, 10, 15, 21, 6, 10, 15, 21, 6, 10, 15, 21, 6, 10, 15, 21 + }; + + // Using binary integer part of the sines of integers (in radians) as constants + unsigned int k[] = { + 0xd76aa478, 0xe8c7b756, 0x242070db, 0xc1bdceee, + 0xf57c0faf, 0x4787c62a, 0xa8304613, 0xfd469501, + 0x698098d8, 0x8b44f7af, 0xffff5bb1, 0x895cd7be, + 0x6b901122, 0xfd987193, 0xa679438e, 0x49b40821, + 0xf61e2562, 0xc040b340, 0x265e5a51, 0xe9b6c7aa, + 0xd62f105d, 0x02441453, 0xd8a1e681, 0xe7d3fbc8, + 0x21e1cde6, 0xc33707d6, 0xf4d50d87, 0x455a14ed, + 0xa9e3e905, 0xfcefa3f8, 0x676f02d9, 0x8d2a4c8a, + 0xfffa3942, 0x8771f681, 0x6d9d6122, 0xfde5380c, + 0xa4beea44, 0x4bdecfa9, 0xf6bb4b60, 0xbebfbc70, + 0x289b7ec6, 0xeaa127fa, 0xd4ef3085, 0x04881d05, + 0xd9d4d039, 0xe6db99e5, 0x1fa27cf8, 0xc4ac5665, + 0xf4292244, 0x432aff97, 0xab9423a7, 0xfc93a039, + 0x655b59c3, 0x8f0ccc92, 0xffeff47d, 0x85845dd1, + 0x6fa87e4f, 0xfe2ce6e0, 0xa3014314, 0x4e0811a1, + 0xf7537e82, 0xbd3af235, 0x2ad7d2bb, 0xeb86d391 + }; + + hash[0] = 0x67452301; + hash[1] = 0xefcdab89; + hash[2] = 0x98badcfe; + hash[3] = 0x10325476; + + // Pre-processing: adding a single 1 bit + // Append '1' bit to message + // NOTE: The input bytes are considered as bits strings, + // where the first bit is the most significant bit of the byte + + // Pre-processing: padding with zeros + // Append '0' bit until message length in bit 448 (mod 512) + // Append length mod (2 pow 64) to message + + int newDataSize = ((((dataSize + 8)/64) + 1)*64) - 8; + + unsigned char *msg = RL_CALLOC(newDataSize + 64, 1); // Initialize with '0' bits, allocating 64 extra bytes + memcpy(msg, data, dataSize); + msg[dataSize] = 128; // Write the '1' bit + + unsigned int bitsLen = 8*dataSize; + memcpy(msg + newDataSize, &bitsLen, 4); // Append the len in bits at the end of the buffer + + // Process the message in successive 512-bit chunks for each 512-bit chunk of message + for (int offset = 0; offset < newDataSize; offset += (512/8)) + { + // Break chunk into sixteen 32-bit words w[j], 0 <= j <= 15 + unsigned int *w = (unsigned int *)(msg + offset); + + // Initialize hash value for this chunk + unsigned int a = hash[0]; + unsigned int b = hash[1]; + unsigned int c = hash[2]; + unsigned int d = hash[3]; + + for (int i = 0; i < 64; i++) + { + unsigned int f = 0; + unsigned int g = 0; + + if (i < 16) + { + f = (b & c) | ((~b) & d); + g = i; + } + else if (i < 32) + { + f = (d & b) | ((~d) & c); + g = (5*i + 1)%16; + } + else if (i < 48) + { + f = b ^ c ^ d; + g = (3*i + 5)%16; + } + else + { + f = c ^ (b | (~d)); + g = (7*i)%16; + } + + unsigned int temp = d; + d = c; + c = b; + b = b + ROTATE_LEFT((a + f + k[i] + w[g]), r[i]); + a = temp; + } + + // Add chunk's hash to result so far + hash[0] += a; + hash[1] += b; + hash[2] += c; + hash[3] += d; + } + + RL_FREE(msg); + + return hash; +} + +// Compute SHA-1 hash code +// NOTE: Returns a static int[5] array (20 bytes) +unsigned int *ComputeSHA1(unsigned char *data, int dataSize) { + #define ROTATE_LEFT(x, c) (((x) << (c)) | ((x) >> (32 - (c)))) + + static unsigned int hash[5] = { 0 }; // Hash to be returned + + // Initialize hash values + hash[0] = 0x67452301; + hash[1] = 0xEFCDAB89; + hash[2] = 0x98BADCFE; + hash[3] = 0x10325476; + hash[4] = 0xC3D2E1F0; + + // Pre-processing: adding a single 1 bit + // Append '1' bit to message + // NOTE: The input bytes are considered as bits strings, + // where the first bit is the most significant bit of the byte + + // Pre-processing: padding with zeros + // Append '0' bit until message length in bit 448 (mod 512) + // Append length mod (2 pow 64) to message + + int newDataSize = ((((dataSize + 8)/64) + 1)*64); + + unsigned char *msg = RL_CALLOC(newDataSize, 1); // Initialize with '0' bits + memcpy(msg, data, dataSize); + msg[dataSize] = 128; // Write the '1' bit + + unsigned int bitsLen = 8*dataSize; + msg[newDataSize-1] = bitsLen; + + // Process the message in successive 512-bit chunks + for (int offset = 0; offset < newDataSize; offset += (512/8)) + { + // Break chunk into sixteen 32-bit words w[j], 0 <= j <= 15 + unsigned int w[80] = {0}; + for (int i = 0; i < 16; i++) { + w[i] = (msg[offset + (i * 4) + 0] << 24) | + (msg[offset + (i * 4) + 1] << 16) | + (msg[offset + (i * 4) + 2] << 8) | + (msg[offset + (i * 4) + 3]); + } + + // Message schedule: extend the sixteen 32-bit words into eighty 32-bit words: + for (int i = 16; i < 80; ++i) { + w[i] = ROTATE_LEFT(w[i-3] ^ w[i-8] ^ w[i-14] ^ w[i-16], 1); + } + + // Initialize hash value for this chunk + unsigned int a = hash[0]; + unsigned int b = hash[1]; + unsigned int c = hash[2]; + unsigned int d = hash[3]; + unsigned int e = hash[4]; + + for (int i = 0; i < 80; i++) + { + unsigned int f = 0; + unsigned int k = 0; + + if (i < 20) { + f = (b & c) | ((~b) & d); + k = 0x5A827999; + } else if (i < 40) { + f = b ^ c ^ d; + k = 0x6ED9EBA1; + } else if (i < 60) { + f = (b & c) | (b & d) | (c & d); + k = 0x8F1BBCDC; + } else { + f = b ^ c ^ d; + k = 0xCA62C1D6; + } + + unsigned int temp = ROTATE_LEFT(a, 5) + f + e + k + w[i]; + e = d; + d = c; + c = ROTATE_LEFT(b, 30); + b = a; + a = temp; + } + + // Add this chunk's hash to result so far + hash[0] += a; + hash[1] += b; + hash[2] += c; + hash[3] += d; + hash[4] += e; + } + + free(msg); + + return hash; +} + //---------------------------------------------------------------------------------- // Module Functions Definition: Automation Events Recording and Playing //---------------------------------------------------------------------------------- @@ -2707,8 +3043,8 @@ void PlayAutomationEvent(AutomationEvent event) } break; case INPUT_MOUSE_WHEEL_MOTION: // param[0]: x delta, param[1]: y delta { - CORE.Input.Mouse.currentWheelMove.x = (float)event.params[0]; break; - CORE.Input.Mouse.currentWheelMove.y = (float)event.params[1]; break; + CORE.Input.Mouse.currentWheelMove.x = (float)event.params[0]; + CORE.Input.Mouse.currentWheelMove.y = (float)event.params[1]; } break; case INPUT_TOUCH_UP: CORE.Input.Touch.currentTouchState[event.params[0]] = false; break; // param[0]: id case INPUT_TOUCH_DOWN: CORE.Input.Touch.currentTouchState[event.params[0]] = true; break; // param[0]: id @@ -2745,6 +3081,8 @@ void PlayAutomationEvent(AutomationEvent event) case ACTION_SETTARGETFPS: SetTargetFPS(event.params[0]); break; default: break; } + + TRACELOG(LOG_INFO, "AUTOMATION PLAY: Frame: %i | Event type: %i | Event parameters: %i, %i, %i", event.frame, event.type, event.params[0], event.params[1], event.params[2]); } #endif } @@ -2955,10 +3293,9 @@ float GetGamepadAxisMovement(int gamepad, int axis) float value = (axis == GAMEPAD_AXIS_LEFT_TRIGGER || axis == GAMEPAD_AXIS_RIGHT_TRIGGER)? -1.0f : 0.0f; if ((gamepad < MAX_GAMEPADS) && CORE.Input.Gamepad.ready[gamepad] && (axis < MAX_GAMEPAD_AXIS)) { - float movement = value < 0.0f ? CORE.Input.Gamepad.axisState[gamepad][axis] : fabs(CORE.Input.Gamepad.axisState[gamepad][axis]); + float movement = value < 0.0f ? CORE.Input.Gamepad.axisState[gamepad][axis] : fabsf(CORE.Input.Gamepad.axisState[gamepad][axis]); - // 0.1f = GAMEPAD_AXIS_MINIMUM_DRIFT/DELTA - if (movement > value + 0.1f) value = CORE.Input.Gamepad.axisState[gamepad][axis]; + if (movement > value) value = CORE.Input.Gamepad.axisState[gamepad][axis]; } return value; @@ -3304,10 +3641,21 @@ static void ScanDirectoryFiles(const char *basePath, FilePathList *files, const if (filter != NULL) { - if (IsFileExtension(path, filter)) + if (IsPathFile(path)) { - strcpy(files->paths[files->count], path); - files->count++; + if (IsFileExtension(path, filter)) + { + strcpy(files->paths[files->count], path); + files->count++; + } + } + else + { + if (TextFindIndex(filter, DIRECTORY_FILTER_TAG) >= 0) + { + strcpy(files->paths[files->count], path); + files->count++; + } } } else @@ -3367,7 +3715,22 @@ static void ScanDirectoryFilesRecursively(const char *basePath, FilePathList *fi break; } } - else ScanDirectoryFilesRecursively(path, files, filter); + else + { + if ((filter != NULL) && (TextFindIndex(filter, DIRECTORY_FILTER_TAG) >= 0)) + { + strcpy(files->paths[files->count], path); + files->count++; + } + + if (files->count >= files->capacity) + { + TRACELOG(LOG_WARNING, "FILEIO: Maximum filepath scan capacity reached (%i files)", files->capacity); + break; + } + + ScanDirectoryFilesRecursively(path, files, filter); + } } } diff --git a/src/rgestures.h b/src/rgestures.h index 664a6e1cc..b5624be56 100644 --- a/src/rgestures.h +++ b/src/rgestures.h @@ -434,7 +434,7 @@ int GetGestureDetected(void) return (GESTURES.enabledFlags & GESTURES.current); } -// Hold time measured in ms +// Hold time measured in seconds float GetGestureHoldDuration(void) { // NOTE: time is calculated on current gesture HOLD @@ -517,7 +517,7 @@ static double rgGetCurrentTime(void) #if defined(_WIN32) unsigned long long int clockFrequency, currentTime; - QueryPerformanceFrequency(&clockFrequency); // BE CAREFUL: Costly operation! + QueryPerformanceFrequency(&clockFrequency); // BE CAREFUL: Costly operation! QueryPerformanceCounter(¤tTime); time = (double)currentTime/clockFrequency; // Time in seconds diff --git a/src/rlgl.h b/src/rlgl.h index 3ff6d7e2a..34cae97e8 100644 --- a/src/rlgl.h +++ b/src/rlgl.h @@ -8,17 +8,17 @@ * * ADDITIONAL NOTES: * When choosing an OpenGL backend different than OpenGL 1.1, some internal buffer are -* initialized on rlglInit() to accumulate vertex data. +* initialized on rlglInit() to accumulate vertex data * * When an internal state change is required all the stored vertex data is renderer in batch, -* additionally, rlDrawRenderBatchActive() could be called to force flushing of the batch. +* additionally, rlDrawRenderBatchActive() could be called to force flushing of the batch * * Some resources are also loaded for convenience, here the complete list: * - Default batch (RLGL.defaultBatch): RenderBatch system to accumulate vertex data * - Default texture (RLGL.defaultTextureId): 1x1 white pixel R8G8B8A8 * - Default shader (RLGL.State.defaultShaderId, RLGL.State.defaultShaderLocs) * -* Internal buffer (and resources) must be manually unloaded calling rlglClose(). +* Internal buffer (and resources) must be manually unloaded calling rlglClose() * * CONFIGURATION: * #define GRAPHICS_API_OPENGL_11 @@ -32,9 +32,9 @@ * required by any other module, use rlGetVersion() to check it * * #define RLGL_IMPLEMENTATION -* Generates the implementation of the library into the included file. +* Generates the implementation of the library into the included file * If not defined, the library is in header only mode and can be included in other headers -* or source files without problems. But only ONE file should hold the implementation. +* or source files without problems. But only ONE file should hold the implementation * * #define RLGL_RENDER_TEXTURES_HINT * Enable framebuffer objects (fbo) support (enabled by default) @@ -68,12 +68,15 @@ * #define RL_DEFAULT_SHADER_ATTRIB_NAME_COLOR "vertexColor" // Bound by default to shader location: RL_DEFAULT_SHADER_ATTRIB_LOCATION_COLOR * #define RL_DEFAULT_SHADER_ATTRIB_NAME_TANGENT "vertexTangent" // Bound by default to shader location: RL_DEFAULT_SHADER_ATTRIB_LOCATION_TANGENT * #define RL_DEFAULT_SHADER_ATTRIB_NAME_TEXCOORD2 "vertexTexCoord2" // Bound by default to shader location: RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD2 +* #define RL_DEFAULT_SHADER_ATTRIB_NAME_BONEIDS "vertexBoneIds" // Bound by default to shader location: RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEIDS +* #define RL_DEFAULT_SHADER_ATTRIB_NAME_BONEWEIGHTS "vertexBoneWeights" // Bound by default to shader location: RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEWEIGHTS * #define RL_DEFAULT_SHADER_UNIFORM_NAME_MVP "mvp" // model-view-projection matrix * #define RL_DEFAULT_SHADER_UNIFORM_NAME_VIEW "matView" // view matrix * #define RL_DEFAULT_SHADER_UNIFORM_NAME_PROJECTION "matProjection" // projection matrix * #define RL_DEFAULT_SHADER_UNIFORM_NAME_MODEL "matModel" // model matrix * #define RL_DEFAULT_SHADER_UNIFORM_NAME_NORMAL "matNormal" // normal matrix (transpose(inverse(matModelView))) * #define RL_DEFAULT_SHADER_UNIFORM_NAME_COLOR "colDiffuse" // color diffuse (base tint color, multiplied by texture color) +* #define RL_DEFAULT_SHADER_UNIFORM_NAME_BONE_MATRICES "boneMatrices" // bone matrices * #define RL_DEFAULT_SHADER_SAMPLER2D_NAME_TEXTURE0 "texture0" // texture0 (texture slot active 0) * #define RL_DEFAULT_SHADER_SAMPLER2D_NAME_TEXTURE1 "texture1" // texture1 (texture slot active 1) * #define RL_DEFAULT_SHADER_SAMPLER2D_NAME_TEXTURE2 "texture2" // texture2 (texture slot active 2) @@ -324,22 +327,33 @@ // Default shader vertex attribute locations #ifndef RL_DEFAULT_SHADER_ATTRIB_LOCATION_POSITION - #define RL_DEFAULT_SHADER_ATTRIB_LOCATION_POSITION 0 + #define RL_DEFAULT_SHADER_ATTRIB_LOCATION_POSITION 0 #endif #ifndef RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD - #define RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD 1 + #define RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD 1 #endif #ifndef RL_DEFAULT_SHADER_ATTRIB_LOCATION_NORMAL - #define RL_DEFAULT_SHADER_ATTRIB_LOCATION_NORMAL 2 + #define RL_DEFAULT_SHADER_ATTRIB_LOCATION_NORMAL 2 #endif #ifndef RL_DEFAULT_SHADER_ATTRIB_LOCATION_COLOR - #define RL_DEFAULT_SHADER_ATTRIB_LOCATION_COLOR 3 + #define RL_DEFAULT_SHADER_ATTRIB_LOCATION_COLOR 3 #endif #ifndef RL_DEFAULT_SHADER_ATTRIB_LOCATION_TANGENT -#define RL_DEFAULT_SHADER_ATTRIB_LOCATION_TANGENT 4 +#define RL_DEFAULT_SHADER_ATTRIB_LOCATION_TANGENT 4 #endif #ifndef RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD2 - #define RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD2 5 + #define RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD2 5 +#endif +#ifndef RL_DEFAULT_SHADER_ATTRIB_LOCATION_INDICES + #define RL_DEFAULT_SHADER_ATTRIB_LOCATION_INDICES 6 +#endif +#ifdef RL_SUPPORT_MESH_GPU_SKINNING +#ifndef RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEIDS + #define RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEIDS 7 +#endif +#ifndef RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEWEIGHTS + #define RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEWEIGHTS 8 +#endif #endif //---------------------------------------------------------------------------------- @@ -527,6 +541,10 @@ typedef enum { RL_SHADER_UNIFORM_IVEC2, // Shader uniform type: ivec2 (2 int) RL_SHADER_UNIFORM_IVEC3, // Shader uniform type: ivec3 (3 int) RL_SHADER_UNIFORM_IVEC4, // Shader uniform type: ivec4 (4 int) + RL_SHADER_UNIFORM_UINT, // Shader uniform type: unsigned int + RL_SHADER_UNIFORM_UIVEC2, // Shader uniform type: uivec2 (2 unsigned int) + RL_SHADER_UNIFORM_UIVEC3, // Shader uniform type: uivec3 (3 unsigned int) + RL_SHADER_UNIFORM_UIVEC4, // Shader uniform type: uivec4 (4 unsigned int) RL_SHADER_UNIFORM_SAMPLER2D // Shader uniform type: sampler2d } rlShaderUniformDataType; @@ -665,7 +683,7 @@ RLAPI void rlDisableScissorTest(void); // Disable scissor test RLAPI void rlScissor(int x, int y, int width, int height); // Scissor test RLAPI void rlEnableWireMode(void); // Enable wire mode RLAPI void rlEnablePointMode(void); // Enable point mode -RLAPI void rlDisableWireMode(void); // Disable wire mode ( and point ) maybe rename +RLAPI void rlDisableWireMode(void); // Disable wire (and point) mode RLAPI void rlSetLineWidth(float width); // Set the line drawing width RLAPI float rlGetLineWidth(void); // Get the line drawing width RLAPI void rlEnableSmoothLines(void); // Enable line aliasing @@ -731,7 +749,7 @@ RLAPI void rlDrawVertexArrayElementsInstanced(int offset, int count, const void // Textures management RLAPI unsigned int rlLoadTexture(const void *data, int width, int height, int format, int mipmapCount); // Load texture data RLAPI unsigned int rlLoadTextureDepth(int width, int height, bool useRenderBuffer); // Load depth texture/renderbuffer (to be attached to fbo) -RLAPI unsigned int rlLoadTextureCubemap(const void *data, int size, int format); // Load texture cubemap data +RLAPI unsigned int rlLoadTextureCubemap(const void *data, int size, int format, int mipmapCount); // Load texture cubemap data RLAPI void rlUpdateTexture(unsigned int id, int offsetX, int offsetY, int width, int height, int format, const void *data); // Update texture with new data on GPU RLAPI void rlGetGlTextureFormats(int format, unsigned int *glInternalFormat, unsigned int *glFormat, unsigned int *glType); // Get OpenGL internal formats RLAPI const char *rlGetPixelFormatName(unsigned int format); // Get name string for pixel format @@ -755,6 +773,7 @@ RLAPI int rlGetLocationUniform(unsigned int shaderId, const char *uniformName); RLAPI int rlGetLocationAttrib(unsigned int shaderId, const char *attribName); // Get shader location attribute RLAPI void rlSetUniform(int locIndex, const void *value, int uniformType, int count); // Set shader value uniform RLAPI void rlSetUniformMatrix(int locIndex, Matrix mat); // Set shader value matrix +RLAPI void rlSetUniformMatrices(int locIndex, const Matrix *mat, int count); // Set shader value matrices RLAPI void rlSetUniformSampler(int locIndex, unsigned int textureId); // Set shader value sampler RLAPI void rlSetShader(unsigned int id, int *locs); // Set shader currently active (id and locations) @@ -973,6 +992,12 @@ RLAPI void rlLoadDrawQuad(void); // Load and draw a quad #ifndef RL_DEFAULT_SHADER_ATTRIB_NAME_TEXCOORD2 #define RL_DEFAULT_SHADER_ATTRIB_NAME_TEXCOORD2 "vertexTexCoord2" // Bound by default to shader location: RL_DEFAULT_SHADER_ATTRIB_NAME_TEXCOORD2 #endif +#ifndef RL_DEFAULT_SHADER_ATTRIB_NAME_BONEIDS + #define RL_DEFAULT_SHADER_ATTRIB_NAME_BONEIDS "vertexBoneIds" // Bound by default to shader location: RL_DEFAULT_SHADER_ATTRIB_NAME_BONEIDS +#endif +#ifndef RL_DEFAULT_SHADER_ATTRIB_NAME_BONEWEIGHTS + #define RL_DEFAULT_SHADER_ATTRIB_NAME_BONEWEIGHTS "vertexBoneWeights" // Bound by default to shader location: RL_DEFAULT_SHADER_ATTRIB_NAME_BONEWEIGHTS +#endif #ifndef RL_DEFAULT_SHADER_UNIFORM_NAME_MVP #define RL_DEFAULT_SHADER_UNIFORM_NAME_MVP "mvp" // model-view-projection matrix @@ -992,6 +1017,9 @@ RLAPI void rlLoadDrawQuad(void); // Load and draw a quad #ifndef RL_DEFAULT_SHADER_UNIFORM_NAME_COLOR #define RL_DEFAULT_SHADER_UNIFORM_NAME_COLOR "colDiffuse" // color diffuse (base tint color, multiplied by texture color) #endif +#ifndef RL_DEFAULT_SHADER_UNIFORM_NAME_BONE_MATRICES + #define RL_DEFAULT_SHADER_UNIFORM_NAME_BONE_MATRICES "boneMatrices" // bone matrices +#endif #ifndef RL_DEFAULT_SHADER_SAMPLER2D_NAME_TEXTURE0 #define RL_DEFAULT_SHADER_SAMPLER2D_NAME_TEXTURE0 "texture0" // texture0 (texture slot active 0) #endif @@ -1475,8 +1503,8 @@ void rlVertex3f(float x, float y, float z) tz = RLGL.State.transform.m2*x + RLGL.State.transform.m6*y + RLGL.State.transform.m10*z + RLGL.State.transform.m14; } - // WARNING: We can't break primitives when launching a new batch. - // RL_LINES comes in pairs, RL_TRIANGLES come in groups of 3 vertices and RL_QUADS come in groups of 4 vertices. + // WARNING: We can't break primitives when launching a new batch + // RL_LINES comes in pairs, RL_TRIANGLES come in groups of 3 vertices and RL_QUADS come in groups of 4 vertices // We must check current draw.mode when a new vertex is required and finish the batch only if the draw.mode draw.vertexCount is %2, %3 or %4 if (RLGL.State.vertexCounter > (RLGL.currentBatch->vertexBuffer[RLGL.currentBatch->currentBuffer].elementCount*4 - 4)) { @@ -1948,6 +1976,7 @@ void rlEnableWireMode(void) #endif } +// Enable point mode void rlEnablePointMode(void) { #if defined(GRAPHICS_API_OPENGL_11) || defined(GRAPHICS_API_OPENGL_33) @@ -1956,6 +1985,7 @@ void rlEnablePointMode(void) glEnable(GL_PROGRAM_POINT_SIZE); #endif } + // Disable wire mode void rlDisableWireMode(void) { @@ -2442,25 +2472,47 @@ void rlLoadExtensions(void *loader) } // Check instanced rendering support - if (strcmp(extList[i], (const char *)"GL_ANGLE_instanced_arrays") == 0) // Web ANGLE + if (strstr(extList[i], (const char*)"instanced_arrays") != NULL) // Broad check for instanced_arrays { - glDrawArraysInstanced = (PFNGLDRAWARRAYSINSTANCEDEXTPROC)((rlglLoadProc)loader)("glDrawArraysInstancedANGLE"); - glDrawElementsInstanced = (PFNGLDRAWELEMENTSINSTANCEDEXTPROC)((rlglLoadProc)loader)("glDrawElementsInstancedANGLE"); - glVertexAttribDivisor = (PFNGLVERTEXATTRIBDIVISOREXTPROC)((rlglLoadProc)loader)("glVertexAttribDivisorANGLE"); - - if ((glDrawArraysInstanced != NULL) && (glDrawElementsInstanced != NULL) && (glVertexAttribDivisor != NULL)) RLGL.ExtSupported.instancing = true; - } - else - { - if ((strcmp(extList[i], (const char *)"GL_EXT_draw_instanced") == 0) && // Standard EXT - (strcmp(extList[i], (const char *)"GL_EXT_instanced_arrays") == 0)) + // Specific check + if (strcmp(extList[i], (const char *)"GL_ANGLE_instanced_arrays") == 0) // ANGLE + { + glDrawArraysInstanced = (PFNGLDRAWARRAYSINSTANCEDEXTPROC)((rlglLoadProc)loader)("glDrawArraysInstancedANGLE"); + glDrawElementsInstanced = (PFNGLDRAWELEMENTSINSTANCEDEXTPROC)((rlglLoadProc)loader)("glDrawElementsInstancedANGLE"); + glVertexAttribDivisor = (PFNGLVERTEXATTRIBDIVISOREXTPROC)((rlglLoadProc)loader)("glVertexAttribDivisorANGLE"); + } + else if (strcmp(extList[i], (const char *)"GL_EXT_instanced_arrays") == 0) // EXT { glDrawArraysInstanced = (PFNGLDRAWARRAYSINSTANCEDEXTPROC)((rlglLoadProc)loader)("glDrawArraysInstancedEXT"); glDrawElementsInstanced = (PFNGLDRAWELEMENTSINSTANCEDEXTPROC)((rlglLoadProc)loader)("glDrawElementsInstancedEXT"); glVertexAttribDivisor = (PFNGLVERTEXATTRIBDIVISOREXTPROC)((rlglLoadProc)loader)("glVertexAttribDivisorEXT"); - - if ((glDrawArraysInstanced != NULL) && (glDrawElementsInstanced != NULL) && (glVertexAttribDivisor != NULL)) RLGL.ExtSupported.instancing = true; } + else if (strcmp(extList[i], (const char *)"GL_NV_instanced_arrays") == 0) // NVIDIA GLES + { + glDrawArraysInstanced = (PFNGLDRAWARRAYSINSTANCEDEXTPROC)((rlglLoadProc)loader)("glDrawArraysInstancedNV"); + glDrawElementsInstanced = (PFNGLDRAWELEMENTSINSTANCEDEXTPROC)((rlglLoadProc)loader)("glDrawElementsInstancedNV"); + glVertexAttribDivisor = (PFNGLVERTEXATTRIBDIVISOREXTPROC)((rlglLoadProc)loader)("glVertexAttribDivisorNV"); + } + + // The feature will only be marked as supported if the elements from GL_XXX_instanced_arrays are present + if ((glDrawArraysInstanced != NULL) && (glDrawElementsInstanced != NULL) && (glVertexAttribDivisor != NULL)) RLGL.ExtSupported.instancing = true; + } + else if (strstr(extList[i], (const char *)"draw_instanced") != NULL) + { + // GL_ANGLE_draw_instanced doesn't exist + if (strcmp(extList[i], (const char *)"GL_EXT_draw_instanced") == 0) + { + glDrawArraysInstanced = (PFNGLDRAWARRAYSINSTANCEDEXTPROC)((rlglLoadProc)loader)("glDrawArraysInstancedEXT"); + glDrawElementsInstanced = (PFNGLDRAWELEMENTSINSTANCEDEXTPROC)((rlglLoadProc)loader)("glDrawElementsInstancedEXT"); + } + else if (strcmp(extList[i], (const char*)"GL_NV_draw_instanced") == 0) + { + glDrawArraysInstanced = (PFNGLDRAWARRAYSINSTANCEDEXTPROC)((rlglLoadProc)loader)("glDrawArraysInstancedNV"); + glDrawElementsInstanced = (PFNGLDRAWELEMENTSINSTANCEDEXTPROC)((rlglLoadProc)loader)("glDrawElementsInstancedNV"); + } + + // But the functions will at least be loaded if only GL_XX_EXT_draw_instanced exist + if ((glDrawArraysInstanced != NULL) && (glDrawElementsInstanced != NULL) && (glVertexAttribDivisor != NULL)) RLGL.ExtSupported.instancing = true; } // Check NPOT textures support @@ -2881,11 +2933,11 @@ void rlDrawRenderBatch(rlRenderBatch *batch) glBufferSubData(GL_ARRAY_BUFFER, 0, RLGL.State.vertexCounter*4*sizeof(unsigned char), batch->vertexBuffer[batch->currentBuffer].colors); //glBufferData(GL_ARRAY_BUFFER, sizeof(float)*4*4*batch->vertexBuffer[batch->currentBuffer].elementCount, batch->vertexBuffer[batch->currentBuffer].colors, GL_DYNAMIC_DRAW); // Update all buffer - // NOTE: glMapBuffer() causes sync issue. - // If GPU is working with this buffer, glMapBuffer() will wait(stall) until GPU to finish its job. - // To avoid waiting (idle), you can call first glBufferData() with NULL pointer before glMapBuffer(). + // NOTE: glMapBuffer() causes sync issue + // If GPU is working with this buffer, glMapBuffer() will wait(stall) until GPU to finish its job + // To avoid waiting (idle), you can call first glBufferData() with NULL pointer before glMapBuffer() // If you do that, the previous data in PBO will be discarded and glMapBuffer() returns a new - // allocated pointer immediately even if GPU is still working with the previous data. + // allocated pointer immediately even if GPU is still working with the previous data // Another option: map the buffer object into client's memory // Probably this code could be moved somewhere else... @@ -2938,7 +2990,7 @@ void rlDrawRenderBatch(rlRenderBatch *batch) } // WARNING: For the following setup of the view, model, and normal matrices, it is expected that - // transformations and rendering occur between rlPushMatrix and rlPopMatrix. + // transformations and rendering occur between rlPushMatrix() and rlPopMatrix() if (RLGL.State.currentShaderLocs[RL_SHADER_LOC_MATRIX_VIEW] != -1) { @@ -3008,15 +3060,15 @@ void rlDrawRenderBatch(rlRenderBatch *batch) if ((batch->draws[i].mode == RL_LINES) || (batch->draws[i].mode == RL_TRIANGLES)) glDrawArrays(batch->draws[i].mode, vertexOffset, batch->draws[i].vertexCount); else { -#if defined(GRAPHICS_API_OPENGL_33) + #if defined(GRAPHICS_API_OPENGL_33) // We need to define the number of indices to be processed: elementCount*6 // NOTE: The final parameter tells the GPU the offset in bytes from the // start of the index buffer to the location of the first index to process glDrawElements(GL_TRIANGLES, batch->draws[i].vertexCount/4*6, GL_UNSIGNED_INT, (GLvoid *)(vertexOffset/4*6*sizeof(GLuint))); -#endif -#if defined(GRAPHICS_API_OPENGL_ES2) + #endif + #if defined(GRAPHICS_API_OPENGL_ES2) glDrawElements(GL_TRIANGLES, batch->draws[i].vertexCount/4*6, GL_UNSIGNED_SHORT, (GLvoid *)(vertexOffset/4*6*sizeof(GLushort))); -#endif + #endif } vertexOffset += (batch->draws[i].vertexCount + batch->draws[i].vertexAlignment); @@ -3334,11 +3386,17 @@ unsigned int rlLoadTextureDepth(int width, int height, bool useRenderBuffer) // Load texture cubemap // NOTE: Cubemap data is expected to be 6 images in a single data array (one after the other), // expected the following convention: +X, -X, +Y, -Y, +Z, -Z -unsigned int rlLoadTextureCubemap(const void *data, int size, int format) +unsigned int rlLoadTextureCubemap(const void *data, int size, int format, int mipmapCount) { unsigned int id = 0; #if defined(GRAPHICS_API_OPENGL_33) || defined(GRAPHICS_API_OPENGL_ES2) + int mipSize = size; + + // NOTE: Added pointer math separately from function to avoid UBSAN complaining + unsigned char *dataPtr = NULL; + if (data != NULL) dataPtr = (unsigned char *)data; + unsigned int dataSize = rlGetPixelDataSize(size, size, format); glGenTextures(1, &id); @@ -3349,24 +3407,28 @@ unsigned int rlLoadTextureCubemap(const void *data, int size, int format) if (glInternalFormat != 0) { - // Load cubemap faces - for (unsigned int i = 0; i < 6; i++) + // Load cubemap faces/mipmaps + for (unsigned int i = 0; i < 6*mipmapCount; i++) { + int mipmapLevel = i/6; + int face = i%6; + if (data == NULL) { if (format < RL_PIXELFORMAT_COMPRESSED_DXT1_RGB) { - if ((format == RL_PIXELFORMAT_UNCOMPRESSED_R32) || (format == RL_PIXELFORMAT_UNCOMPRESSED_R32G32B32A32) - || (format == RL_PIXELFORMAT_UNCOMPRESSED_R16) || (format == RL_PIXELFORMAT_UNCOMPRESSED_R16G16B16A16)) - TRACELOG(RL_LOG_WARNING, "TEXTURES: Cubemap requested format not supported"); - else glTexImage2D(GL_TEXTURE_CUBE_MAP_POSITIVE_X + i, 0, glInternalFormat, size, size, 0, glFormat, glType, NULL); + if ((format == RL_PIXELFORMAT_UNCOMPRESSED_R32) || + (format == RL_PIXELFORMAT_UNCOMPRESSED_R32G32B32A32) || + (format == RL_PIXELFORMAT_UNCOMPRESSED_R16) || + (format == RL_PIXELFORMAT_UNCOMPRESSED_R16G16B16A16)) TRACELOG(RL_LOG_WARNING, "TEXTURES: Cubemap requested format not supported"); + else glTexImage2D(GL_TEXTURE_CUBE_MAP_POSITIVE_X + face, mipmapLevel, glInternalFormat, mipSize, mipSize, 0, glFormat, glType, NULL); } else TRACELOG(RL_LOG_WARNING, "TEXTURES: Empty cubemap creation does not support compressed format"); } else { - if (format < RL_PIXELFORMAT_COMPRESSED_DXT1_RGB) glTexImage2D(GL_TEXTURE_CUBE_MAP_POSITIVE_X + i, 0, glInternalFormat, size, size, 0, glFormat, glType, (unsigned char *)data + i*dataSize); - else glCompressedTexImage2D(GL_TEXTURE_CUBE_MAP_POSITIVE_X + i, 0, glInternalFormat, size, size, 0, dataSize, (unsigned char *)data + i*dataSize); + if (format < RL_PIXELFORMAT_COMPRESSED_DXT1_RGB) glTexImage2D(GL_TEXTURE_CUBE_MAP_POSITIVE_X + face, mipmapLevel, glInternalFormat, mipSize, mipSize, 0, glFormat, glType, (unsigned char *)dataPtr + face*dataSize); + else glCompressedTexImage2D(GL_TEXTURE_CUBE_MAP_POSITIVE_X + face, mipmapLevel, glInternalFormat, mipSize, mipSize, 0, dataSize, (unsigned char *)dataPtr + face*dataSize); } #if defined(GRAPHICS_API_OPENGL_33) @@ -3385,11 +3447,23 @@ unsigned int rlLoadTextureCubemap(const void *data, int size, int format) glTexParameteriv(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_SWIZZLE_RGBA, swizzleMask); } #endif + if (face == 5) + { + mipSize /= 2; + if (data != NULL) dataPtr += dataSize*6; // Increment data pointer to next mipmap + + // Security check for NPOT textures + if (mipSize < 1) mipSize = 1; + + dataSize = rlGetPixelDataSize(mipSize, mipSize, format); + } } } // Set cubemap texture sampling parameters - glTexParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_MIN_FILTER, GL_LINEAR); + if (mipmapCount > 1) glTexParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_MIN_FILTER, GL_LINEAR_MIPMAP_LINEAR); + else glTexParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_MIN_FILTER, GL_LINEAR); + glTexParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_MAG_FILTER, GL_LINEAR); glTexParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_WRAP_S, GL_CLAMP_TO_EDGE); glTexParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_WRAP_T, GL_CLAMP_TO_EDGE); @@ -3548,8 +3622,8 @@ void *rlReadTexturePixels(unsigned int id, int width, int height, int format) //glGetTexLevelParameteriv(GL_TEXTURE_2D, 0, GL_TEXTURE_HEIGHT, &height); //glGetTexLevelParameteriv(GL_TEXTURE_2D, 0, GL_TEXTURE_INTERNAL_FORMAT, &format); - // NOTE: Each row written to or read from by OpenGL pixel operations like glGetTexImage are aligned to a 4 byte boundary by default, which may add some padding. - // Use glPixelStorei to modify padding with the GL_[UN]PACK_ALIGNMENT setting. + // NOTE: Each row written to or read from by OpenGL pixel operations like glGetTexImage are aligned to a 4 byte boundary by default, which may add some padding + // Use glPixelStorei to modify padding with the GL_[UN]PACK_ALIGNMENT setting // GL_PACK_ALIGNMENT affects operations that read from OpenGL memory (glReadPixels, glGetTexImage, etc.) // GL_UNPACK_ALIGNMENT affects operations that write to OpenGL memory (glTexImage, etc.) glPixelStorei(GL_PACK_ALIGNMENT, 1); @@ -3570,7 +3644,7 @@ void *rlReadTexturePixels(unsigned int id, int width, int height, int format) #if defined(GRAPHICS_API_OPENGL_ES2) // glGetTexImage() is not available on OpenGL ES 2.0 - // Texture width and height are required on OpenGL ES 2.0. There is no way to get it from texture id. + // Texture width and height are required on OpenGL ES 2.0, there is no way to get it from texture id // Two possible Options: // 1 - Bind texture to color fbo attachment and glReadPixels() // 2 - Create an fbo, activate it, render quad with texture, glReadPixels() @@ -3736,7 +3810,7 @@ void rlUnloadFramebuffer(unsigned int id) else if (depthType == GL_TEXTURE) glDeleteTextures(1, &depthIdU); // NOTE: If a texture object is deleted while its image is attached to the *currently bound* framebuffer, - // the texture image is automatically detached from the currently bound framebuffer. + // the texture image is automatically detached from the currently bound framebuffer glBindFramebuffer(GL_FRAMEBUFFER, 0); glDeleteFramebuffers(1, &id); @@ -3994,18 +4068,18 @@ unsigned int rlLoadShaderCode(const char *vsCode, const char *fsCode) unsigned int fragmentShaderId = 0; // Compile vertex shader (if provided) + // NOTE: If not vertex shader is provided, use default one if (vsCode != NULL) vertexShaderId = rlCompileShader(vsCode, GL_VERTEX_SHADER); - // In case no vertex shader was provided or compilation failed, we use default vertex shader - if (vertexShaderId == 0) vertexShaderId = RLGL.State.defaultVShaderId; + else vertexShaderId = RLGL.State.defaultVShaderId; // Compile fragment shader (if provided) + // NOTE: If not vertex shader is provided, use default one if (fsCode != NULL) fragmentShaderId = rlCompileShader(fsCode, GL_FRAGMENT_SHADER); - // In case no fragment shader was provided or compilation failed, we use default fragment shader - if (fragmentShaderId == 0) fragmentShaderId = RLGL.State.defaultFShaderId; + else fragmentShaderId = RLGL.State.defaultFShaderId; // In case vertex and fragment shader are the default ones, no need to recompile, we can just assign the default shader program id if ((vertexShaderId == RLGL.State.defaultVShaderId) && (fragmentShaderId == RLGL.State.defaultFShaderId)) id = RLGL.State.defaultShaderId; - else + else if ((vertexShaderId > 0) && (fragmentShaderId > 0)) { // One of or both shader are new, we need to compile a new shader program id = rlLoadShaderProgram(vertexShaderId, fragmentShaderId); @@ -4083,6 +4157,8 @@ unsigned int rlCompileShader(const char *shaderCode, int type) //case GL_GEOMETRY_SHADER: #if defined(GRAPHICS_API_OPENGL_43) case GL_COMPUTE_SHADER: TRACELOG(RL_LOG_WARNING, "SHADER: [ID %i] Failed to compile compute shader code", shader); break; + #elif defined(GRAPHICS_API_OPENGL_33) + case GL_COMPUTE_SHADER: TRACELOG(RL_LOG_WARNING, "SHADER: Compute shaders not enabled. Define GRAPHICS_API_OPENGL_43", shader); break; #endif default: break; } @@ -4098,6 +4174,8 @@ unsigned int rlCompileShader(const char *shaderCode, int type) TRACELOG(RL_LOG_WARNING, "SHADER: [ID %i] Compile error: %s", shader, log); RL_FREE(log); } + + shader = 0; } else { @@ -4108,6 +4186,8 @@ unsigned int rlCompileShader(const char *shaderCode, int type) //case GL_GEOMETRY_SHADER: #if defined(GRAPHICS_API_OPENGL_43) case GL_COMPUTE_SHADER: TRACELOG(RL_LOG_INFO, "SHADER: [ID %i] Compute shader compiled successfully", shader); break; + #elif defined(GRAPHICS_API_OPENGL_33) + case GL_COMPUTE_SHADER: TRACELOG(RL_LOG_WARNING, "SHADER: Compute shaders not enabled. Define GRAPHICS_API_OPENGL_43", shader); break; #endif default: break; } @@ -4137,6 +4217,11 @@ unsigned int rlLoadShaderProgram(unsigned int vShaderId, unsigned int fShaderId) glBindAttribLocation(program, RL_DEFAULT_SHADER_ATTRIB_LOCATION_TANGENT, RL_DEFAULT_SHADER_ATTRIB_NAME_TANGENT); glBindAttribLocation(program, RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD2, RL_DEFAULT_SHADER_ATTRIB_NAME_TEXCOORD2); +#ifdef RL_SUPPORT_MESH_GPU_SKINNING + glBindAttribLocation(program, RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEIDS, RL_DEFAULT_SHADER_ATTRIB_NAME_BONEIDS); + glBindAttribLocation(program, RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEWEIGHTS, RL_DEFAULT_SHADER_ATTRIB_NAME_BONEWEIGHTS); +#endif + // NOTE: If some attrib name is no found on the shader, it locations becomes -1 glLinkProgram(program); @@ -4168,7 +4253,7 @@ unsigned int rlLoadShaderProgram(unsigned int vShaderId, unsigned int fShaderId) else { // Get the size of compiled shader program (not available on OpenGL ES 2.0) - // NOTE: If GL_LINK_STATUS is GL_FALSE, program binary length is zero. + // NOTE: If GL_LINK_STATUS is GL_FALSE, program binary length is zero //GLint binarySize = 0; //glGetProgramiv(id, GL_PROGRAM_BINARY_LENGTH, &binarySize); @@ -4228,8 +4313,16 @@ void rlSetUniform(int locIndex, const void *value, int uniformType, int count) case RL_SHADER_UNIFORM_IVEC2: glUniform2iv(locIndex, count, (int *)value); break; case RL_SHADER_UNIFORM_IVEC3: glUniform3iv(locIndex, count, (int *)value); break; case RL_SHADER_UNIFORM_IVEC4: glUniform4iv(locIndex, count, (int *)value); break; + #if !defined(GRAPHICS_API_OPENGL_ES2) + case RL_SHADER_UNIFORM_UINT: glUniform1uiv(locIndex, count, (unsigned int *)value); break; + case RL_SHADER_UNIFORM_UIVEC2: glUniform2uiv(locIndex, count, (unsigned int *)value); break; + case RL_SHADER_UNIFORM_UIVEC3: glUniform3uiv(locIndex, count, (unsigned int *)value); break; + case RL_SHADER_UNIFORM_UIVEC4: glUniform4uiv(locIndex, count, (unsigned int *)value); break; + #endif case RL_SHADER_UNIFORM_SAMPLER2D: glUniform1iv(locIndex, count, (int *)value); break; default: TRACELOG(RL_LOG_WARNING, "SHADER: Failed to set uniform value, data type not recognized"); + + // TODO: Support glUniform1uiv(), glUniform2uiv(), glUniform3uiv(), glUniform4uiv() } #endif } @@ -4263,6 +4356,18 @@ void rlSetUniformMatrix(int locIndex, Matrix mat) #endif } +// Set shader value uniform matrix +void rlSetUniformMatrices(int locIndex, const Matrix *matrices, int count) +{ +#if defined(GRAPHICS_API_OPENGL_33) + glUniformMatrix4fv(locIndex, count, true, (const float *)matrices); +#elif defined(GRAPHICS_API_OPENGL_ES2) + // WARNING: WebGL does not support Matrix transpose ("true" parameter) + // REF: https://developer.mozilla.org/en-US/docs/Web/API/WebGLRenderingContext/uniformMatrix + glUniformMatrix4fv(locIndex, count, false, (const float *)matrices); +#endif +} + // Set shader value uniform sampler void rlSetUniformSampler(int locIndex, unsigned int textureId) { @@ -4342,12 +4447,14 @@ unsigned int rlLoadComputeShaderProgram(unsigned int shaderId) else { // Get the size of compiled shader program (not available on OpenGL ES 2.0) - // NOTE: If GL_LINK_STATUS is GL_FALSE, program binary length is zero. + // NOTE: If GL_LINK_STATUS is GL_FALSE, program binary length is zero //GLint binarySize = 0; //glGetProgramiv(id, GL_PROGRAM_BINARY_LENGTH, &binarySize); TRACELOG(RL_LOG_INFO, "SHADER: [ID %i] Compute shader program loaded successfully", program); } +#else + TRACELOG(RL_LOG_WARNING, "SHADER: Compute shaders not enabled. Define GRAPHICS_API_OPENGL_43"); #endif return program; @@ -4372,6 +4479,8 @@ unsigned int rlLoadShaderBuffer(unsigned int size, const void *data, int usageHi glBufferData(GL_SHADER_STORAGE_BUFFER, size, data, usageHint? usageHint : RL_STREAM_COPY); if (data == NULL) glClearBufferData(GL_SHADER_STORAGE_BUFFER, GL_R8UI, GL_RED_INTEGER, GL_UNSIGNED_BYTE, NULL); // Clear buffer data to 0 glBindBuffer(GL_SHADER_STORAGE_BUFFER, 0); +#else + TRACELOG(RL_LOG_WARNING, "SSBO: SSBO not enabled. Define GRAPHICS_API_OPENGL_43"); #endif return ssbo; @@ -4382,7 +4491,10 @@ void rlUnloadShaderBuffer(unsigned int ssboId) { #if defined(GRAPHICS_API_OPENGL_43) glDeleteBuffers(1, &ssboId); +#else + TRACELOG(RL_LOG_WARNING, "SSBO: SSBO not enabled. Define GRAPHICS_API_OPENGL_43"); #endif + } // Update SSBO buffer data @@ -4397,14 +4509,14 @@ void rlUpdateShaderBuffer(unsigned int id, const void *data, unsigned int dataSi // Get SSBO buffer size unsigned int rlGetShaderBufferSize(unsigned int id) { - GLint64 size = 0; - #if defined(GRAPHICS_API_OPENGL_43) + GLint64 size = 0; glBindBuffer(GL_SHADER_STORAGE_BUFFER, id); glGetBufferParameteri64v(GL_SHADER_STORAGE_BUFFER, GL_BUFFER_SIZE, &size); -#endif - return (size > 0)? (unsigned int)size : 0; +#else + return 0; +#endif } // Read SSBO buffer data (GPU->CPU) @@ -4442,6 +4554,8 @@ void rlBindImageTexture(unsigned int id, unsigned int index, int format, bool re rlGetGlTextureFormats(format, &glInternalFormat, &glFormat, &glType); glBindImageTexture(index, id, 0, 0, 0, readonly? GL_READ_ONLY : GL_READ_WRITE, glInternalFormat); +#else + TRACELOG(RL_LOG_WARNING, "TEXTURE: Image texture binding not enabled. Define GRAPHICS_API_OPENGL_43"); #endif } @@ -4854,7 +4968,7 @@ static void rlLoadShaderDefault(void) RLGL.State.defaultShaderLocs[RL_SHADER_LOC_VERTEX_COLOR] = glGetAttribLocation(RLGL.State.defaultShaderId, RL_DEFAULT_SHADER_ATTRIB_NAME_COLOR); // Set default shader locations: uniform locations - RLGL.State.defaultShaderLocs[RL_SHADER_LOC_MATRIX_MVP] = glGetUniformLocation(RLGL.State.defaultShaderId, RL_DEFAULT_SHADER_UNIFORM_NAME_MVP); + RLGL.State.defaultShaderLocs[RL_SHADER_LOC_MATRIX_MVP] = glGetUniformLocation(RLGL.State.defaultShaderId, RL_DEFAULT_SHADER_UNIFORM_NAME_MVP); RLGL.State.defaultShaderLocs[RL_SHADER_LOC_COLOR_DIFFUSE] = glGetUniformLocation(RLGL.State.defaultShaderId, RL_DEFAULT_SHADER_UNIFORM_NAME_COLOR); RLGL.State.defaultShaderLocs[RL_SHADER_LOC_MAP_DIFFUSE] = glGetUniformLocation(RLGL.State.defaultShaderId, RL_DEFAULT_SHADER_SAMPLER2D_NAME_TEXTURE0); } @@ -4993,7 +5107,7 @@ static int rlGetPixelDataSize(int width, int height, int format) default: break; } - float bytesPerPixel = (float)bpp/8.0f; + double bytesPerPixel = (double)bpp/8.0; dataSize = (int)(bytesPerPixel*width*height); // Total data size in bytes // Most compressed formats works on 4x4 blocks, diff --git a/src/rmodels.c b/src/rmodels.c index c1d56765e..ed15d9658 100644 --- a/src/rmodels.c +++ b/src/rmodels.c @@ -130,7 +130,7 @@ #define MAX_MATERIAL_MAPS 12 // Maximum number of maps supported #endif #ifndef MAX_MESH_VERTEX_BUFFERS - #define MAX_MESH_VERTEX_BUFFERS 7 // Maximum vertex buffers (VBO) per mesh + #define MAX_MESH_VERTEX_BUFFERS 9 // Maximum vertex buffers (VBO) per mesh #endif //---------------------------------------------------------------------------------- @@ -426,14 +426,14 @@ void DrawSphereEx(Vector3 centerPos, float radius, int rings, int slices, Color { #if 0 // Basic implementation, do not use it! - // For a sphere with 16 rings and 16 slices it requires 8640 cos()/sin() function calls! + // For a sphere with 16 rings and 16 slices it requires 8640 cos()/sin() function calls! // New optimized version below only requires 4 cos()/sin() calls - + rlPushMatrix(); // NOTE: Transformation is applied in inverse order (scale -> translate) rlTranslatef(centerPos.x, centerPos.y, centerPos.z); rlScalef(radius, radius, radius); - + rlBegin(RL_TRIANGLES); rlColor4ub(color.r, color.g, color.b, color.a); @@ -488,7 +488,7 @@ void DrawSphereEx(Vector3 centerPos, float radius, int rings, int slices, Color for (int i = 0; i < rings + 1; i++) { - for (int j = 0; j < slices; j++) + for (int j = 0; j < slices; j++) { vertices[0] = vertices[2]; // Rotate around y axis to set up vertices for next face vertices[1] = vertices[3]; @@ -702,7 +702,6 @@ void DrawCylinderWires(Vector3 position, float radiusTop, float radiusBottom, fl rlPopMatrix(); } - // Draw a wired cylinder with base at startPos and top at endPos // NOTE: It could be also used for pyramid and cone void DrawCylinderWiresEx(Vector3 startPos, Vector3 endPos, float startRadius, float endRadius, int sides, Color color) @@ -1156,8 +1155,8 @@ Model LoadModelFromMesh(Mesh mesh) return model; } -// Check if a model is ready -bool IsModelReady(Model model) +// Check if a model is valid (loaded in GPU, VAO/VBOs) +bool IsModelValid(Model model) { bool result = false; @@ -1167,7 +1166,23 @@ bool IsModelReady(Model model) (model.meshCount > 0) && // Validate mesh count (model.materialCount > 0)) result = true; // Validate material count - // NOTE: This is a very general model validation, many elements could be validated from a model... + // NOTE: Many elements could be validated from a model, including every model mesh VAO/VBOs + // but some VBOs could not be used, it depends on Mesh vertex data + for (int i = 0; i < model.meshCount; i++) + { + if ((model.meshes[i].vertices != NULL) && (model.meshes[i].vboId[0] == 0)) { result = false; break; } // Vertex position buffer not uploaded to GPU + if ((model.meshes[i].texcoords != NULL) && (model.meshes[i].vboId[1] == 0)) { result = false; break; } // Vertex textcoords buffer not uploaded to GPU + if ((model.meshes[i].normals != NULL) && (model.meshes[i].vboId[2] == 0)) { result = false; break; } // Vertex normals buffer not uploaded to GPU + if ((model.meshes[i].colors != NULL) && (model.meshes[i].vboId[3] == 0)) { result = false; break; } // Vertex colors buffer not uploaded to GPU + if ((model.meshes[i].tangents != NULL) && (model.meshes[i].vboId[4] == 0)) { result = false; break; } // Vertex tangents buffer not uploaded to GPU + if ((model.meshes[i].texcoords2 != NULL) && (model.meshes[i].vboId[5] == 0)) { result = false; break; } // Vertex texcoords2 buffer not uploaded to GPU + if ((model.meshes[i].indices != NULL) && (model.meshes[i].vboId[6] == 0)) { result = false; break; } // Vertex indices buffer not uploaded to GPU + if ((model.meshes[i].boneIds != NULL) && (model.meshes[i].vboId[7] == 0)) { result = false; break; } // Vertex boneIds buffer not uploaded to GPU + if ((model.meshes[i].boneWeights != NULL) && (model.meshes[i].vboId[8] == 0)) { result = false; break; } // Vertex boneWeights buffer not uploaded to GPU + + // NOTE: Some OpenGL versions do not support VAO, so we don't check it + //if (model.meshes[i].vaoId == 0) { result = false; break } + } return result; } @@ -1246,13 +1261,18 @@ void UploadMesh(Mesh *mesh, bool dynamic) mesh->vboId = (unsigned int *)RL_CALLOC(MAX_MESH_VERTEX_BUFFERS, sizeof(unsigned int)); mesh->vaoId = 0; // Vertex Array Object - mesh->vboId[0] = 0; // Vertex buffer: positions - mesh->vboId[1] = 0; // Vertex buffer: texcoords - mesh->vboId[2] = 0; // Vertex buffer: normals - mesh->vboId[3] = 0; // Vertex buffer: colors - mesh->vboId[4] = 0; // Vertex buffer: tangents - mesh->vboId[5] = 0; // Vertex buffer: texcoords2 - mesh->vboId[6] = 0; // Vertex buffer: indices + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_POSITION] = 0; // Vertex buffer: positions + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD] = 0; // Vertex buffer: texcoords + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_NORMAL] = 0; // Vertex buffer: normals + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_COLOR] = 0; // Vertex buffer: colors + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_TANGENT] = 0; // Vertex buffer: tangents + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD2] = 0; // Vertex buffer: texcoords2 + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_INDICES] = 0; // Vertex buffer: indices + +#ifdef RL_SUPPORT_MESH_GPU_SKINNING + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEIDS] = 0; // Vertex buffer: boneIds + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEWEIGHTS] = 0; // Vertex buffer: boneWeights +#endif #if defined(GRAPHICS_API_OPENGL_33) || defined(GRAPHICS_API_OPENGL_ES2) mesh->vaoId = rlLoadVertexArray(); @@ -1262,12 +1282,12 @@ void UploadMesh(Mesh *mesh, bool dynamic) // Enable vertex attributes: position (shader-location = 0) void *vertices = (mesh->animVertices != NULL)? mesh->animVertices : mesh->vertices; - mesh->vboId[0] = rlLoadVertexBuffer(vertices, mesh->vertexCount*3*sizeof(float), dynamic); + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_POSITION] = rlLoadVertexBuffer(vertices, mesh->vertexCount*3*sizeof(float), dynamic); rlSetVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_POSITION, 3, RL_FLOAT, 0, 0, 0); rlEnableVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_POSITION); // Enable vertex attributes: texcoords (shader-location = 1) - mesh->vboId[1] = rlLoadVertexBuffer(mesh->texcoords, mesh->vertexCount*2*sizeof(float), dynamic); + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD] = rlLoadVertexBuffer(mesh->texcoords, mesh->vertexCount*2*sizeof(float), dynamic); rlSetVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD, 2, RL_FLOAT, 0, 0, 0); rlEnableVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD); @@ -1278,7 +1298,7 @@ void UploadMesh(Mesh *mesh, bool dynamic) { // Enable vertex attributes: normals (shader-location = 2) void *normals = (mesh->animNormals != NULL)? mesh->animNormals : mesh->normals; - mesh->vboId[2] = rlLoadVertexBuffer(normals, mesh->vertexCount*3*sizeof(float), dynamic); + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_NORMAL] = rlLoadVertexBuffer(normals, mesh->vertexCount*3*sizeof(float), dynamic); rlSetVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_NORMAL, 3, RL_FLOAT, 0, 0, 0); rlEnableVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_NORMAL); } @@ -1294,7 +1314,7 @@ void UploadMesh(Mesh *mesh, bool dynamic) if (mesh->colors != NULL) { // Enable vertex attribute: color (shader-location = 3) - mesh->vboId[3] = rlLoadVertexBuffer(mesh->colors, mesh->vertexCount*4*sizeof(unsigned char), dynamic); + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_COLOR] = rlLoadVertexBuffer(mesh->colors, mesh->vertexCount*4*sizeof(unsigned char), dynamic); rlSetVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_COLOR, 4, RL_UNSIGNED_BYTE, 1, 0, 0); rlEnableVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_COLOR); } @@ -1310,7 +1330,7 @@ void UploadMesh(Mesh *mesh, bool dynamic) if (mesh->tangents != NULL) { // Enable vertex attribute: tangent (shader-location = 4) - mesh->vboId[4] = rlLoadVertexBuffer(mesh->tangents, mesh->vertexCount*4*sizeof(float), dynamic); + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_TANGENT] = rlLoadVertexBuffer(mesh->tangents, mesh->vertexCount*4*sizeof(float), dynamic); rlSetVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_TANGENT, 4, RL_FLOAT, 0, 0, 0); rlEnableVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_TANGENT); } @@ -1326,7 +1346,7 @@ void UploadMesh(Mesh *mesh, bool dynamic) if (mesh->texcoords2 != NULL) { // Enable vertex attribute: texcoord2 (shader-location = 5) - mesh->vboId[5] = rlLoadVertexBuffer(mesh->texcoords2, mesh->vertexCount*2*sizeof(float), dynamic); + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD2] = rlLoadVertexBuffer(mesh->texcoords2, mesh->vertexCount*2*sizeof(float), dynamic); rlSetVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD2, 2, RL_FLOAT, 0, 0, 0); rlEnableVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD2); } @@ -1339,9 +1359,43 @@ void UploadMesh(Mesh *mesh, bool dynamic) rlDisableVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD2); } +#ifdef RL_SUPPORT_MESH_GPU_SKINNING + if (mesh->boneIds != NULL) + { + // Enable vertex attribute: boneIds (shader-location = 7) + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEIDS] = rlLoadVertexBuffer(mesh->boneIds, mesh->vertexCount*4*sizeof(unsigned char), dynamic); + rlSetVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEIDS, 4, RL_UNSIGNED_BYTE, 0, 0, 0); + rlEnableVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEIDS); + } + else + { + // Default vertex attribute: boneIds + // WARNING: Default value provided to shader if location available + float value[4] = { 0.0f, 0.0f, 0.0f, 0.0f }; + rlSetVertexAttributeDefault(RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEIDS, value, SHADER_ATTRIB_VEC4, 4); + rlDisableVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEIDS); + } + + if (mesh->boneWeights != NULL) + { + // Enable vertex attribute: boneWeights (shader-location = 8) + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEWEIGHTS] = rlLoadVertexBuffer(mesh->boneWeights, mesh->vertexCount*4*sizeof(float), dynamic); + rlSetVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEWEIGHTS, 4, RL_FLOAT, 0, 0, 0); + rlEnableVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEWEIGHTS); + } + else + { + // Default vertex attribute: boneWeights + // WARNING: Default value provided to shader if location available + float value[4] = { 0.0f, 0.0f, 0.0f, 0.0f }; + rlSetVertexAttributeDefault(RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEWEIGHTS, value, SHADER_ATTRIB_VEC4, 2); + rlDisableVertexAttribute(RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEWEIGHTS); + } +#endif + if (mesh->indices != NULL) { - mesh->vboId[6] = rlLoadVertexBufferElement(mesh->indices, mesh->triangleCount*3*sizeof(unsigned short), dynamic); + mesh->vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_INDICES] = rlLoadVertexBufferElement(mesh->indices, mesh->triangleCount*3*sizeof(unsigned short), dynamic); } if (mesh->vaoId > 0) TRACELOG(LOG_INFO, "VAO: [ID %i] Mesh uploaded successfully to VRAM (GPU)", mesh->vaoId); @@ -1451,6 +1505,14 @@ void DrawMesh(Mesh mesh, Material material, Matrix transform) // Upload model normal matrix (if locations available) if (material.shader.locs[SHADER_LOC_MATRIX_NORMAL] != -1) rlSetUniformMatrix(material.shader.locs[SHADER_LOC_MATRIX_NORMAL], MatrixTranspose(MatrixInvert(matModel))); + +#ifdef RL_SUPPORT_MESH_GPU_SKINNING + // Upload Bone Transforms + if (material.shader.locs[SHADER_LOC_BONE_MATRICES] != -1 && mesh.boneMatrices) + { + rlSetUniformMatrices(material.shader.locs[SHADER_LOC_BONE_MATRICES], mesh.boneMatrices, mesh.boneCount); + } +#endif //----------------------------------------------------- // Bind active texture maps (if available) @@ -1478,19 +1540,19 @@ void DrawMesh(Mesh mesh, Material material, Matrix transform) if (!rlEnableVertexArray(mesh.vaoId)) { // Bind mesh VBO data: vertex position (shader-location = 0) - rlEnableVertexBuffer(mesh.vboId[0]); + rlEnableVertexBuffer(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_POSITION]); rlSetVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_POSITION], 3, RL_FLOAT, 0, 0, 0); rlEnableVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_POSITION]); // Bind mesh VBO data: vertex texcoords (shader-location = 1) - rlEnableVertexBuffer(mesh.vboId[1]); + rlEnableVertexBuffer(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD]); rlSetVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_TEXCOORD01], 2, RL_FLOAT, 0, 0, 0); rlEnableVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_TEXCOORD01]); if (material.shader.locs[SHADER_LOC_VERTEX_NORMAL] != -1) { // Bind mesh VBO data: vertex normals (shader-location = 2) - rlEnableVertexBuffer(mesh.vboId[2]); + rlEnableVertexBuffer(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_NORMAL]); rlSetVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_NORMAL], 3, RL_FLOAT, 0, 0, 0); rlEnableVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_NORMAL]); } @@ -1498,9 +1560,9 @@ void DrawMesh(Mesh mesh, Material material, Matrix transform) // Bind mesh VBO data: vertex colors (shader-location = 3, if available) if (material.shader.locs[SHADER_LOC_VERTEX_COLOR] != -1) { - if (mesh.vboId[3] != 0) + if (mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_COLOR] != 0) { - rlEnableVertexBuffer(mesh.vboId[3]); + rlEnableVertexBuffer(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_COLOR]); rlSetVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_COLOR], 4, RL_UNSIGNED_BYTE, 1, 0, 0); rlEnableVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_COLOR]); } @@ -1517,7 +1579,7 @@ void DrawMesh(Mesh mesh, Material material, Matrix transform) // Bind mesh VBO data: vertex tangents (shader-location = 4, if available) if (material.shader.locs[SHADER_LOC_VERTEX_TANGENT] != -1) { - rlEnableVertexBuffer(mesh.vboId[4]); + rlEnableVertexBuffer(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_TANGENT]); rlSetVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_TANGENT], 4, RL_FLOAT, 0, 0, 0); rlEnableVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_TANGENT]); } @@ -1525,12 +1587,30 @@ void DrawMesh(Mesh mesh, Material material, Matrix transform) // Bind mesh VBO data: vertex texcoords2 (shader-location = 5, if available) if (material.shader.locs[SHADER_LOC_VERTEX_TEXCOORD02] != -1) { - rlEnableVertexBuffer(mesh.vboId[5]); + rlEnableVertexBuffer(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD2]); rlSetVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_TEXCOORD02], 2, RL_FLOAT, 0, 0, 0); rlEnableVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_TEXCOORD02]); } - if (mesh.indices != NULL) rlEnableVertexBufferElement(mesh.vboId[6]); +#ifdef RL_SUPPORT_MESH_GPU_SKINNING + // Bind mesh VBO data: vertex bone ids (shader-location = 6, if available) + if (material.shader.locs[SHADER_LOC_VERTEX_BONEIDS] != -1) + { + rlEnableVertexBuffer(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEIDS]); + rlSetVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_BONEIDS], 4, RL_UNSIGNED_BYTE, 0, 0, 0); + rlEnableVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_BONEIDS]); + } + + // Bind mesh VBO data: vertex bone weights (shader-location = 7, if available) + if (material.shader.locs[SHADER_LOC_VERTEX_BONEWEIGHTS] != -1) + { + rlEnableVertexBuffer(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEWEIGHTS]); + rlSetVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_BONEWEIGHTS], 4, RL_FLOAT, 0, 0, 0); + rlEnableVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_BONEWEIGHTS]); + } +#endif + + if (mesh.indices != NULL) rlEnableVertexBufferElement(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_INDICES]); } int eyeCount = 1; @@ -1671,6 +1751,15 @@ void DrawMeshInstanced(Mesh mesh, Material material, const Matrix *transforms, i // Upload model normal matrix (if locations available) if (material.shader.locs[SHADER_LOC_MATRIX_NORMAL] != -1) rlSetUniformMatrix(material.shader.locs[SHADER_LOC_MATRIX_NORMAL], MatrixTranspose(MatrixInvert(matModel))); + +#ifdef RL_SUPPORT_MESH_GPU_SKINNING + // Upload Bone Transforms + if (material.shader.locs[SHADER_LOC_BONE_MATRICES] != -1 && mesh.boneMatrices) + { + rlSetUniformMatrices(material.shader.locs[SHADER_LOC_BONE_MATRICES], mesh.boneMatrices, mesh.boneCount); + } +#endif + //----------------------------------------------------- // Bind active texture maps (if available) @@ -1696,19 +1785,19 @@ void DrawMeshInstanced(Mesh mesh, Material material, const Matrix *transforms, i if (!rlEnableVertexArray(mesh.vaoId)) { // Bind mesh VBO data: vertex position (shader-location = 0) - rlEnableVertexBuffer(mesh.vboId[0]); + rlEnableVertexBuffer(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_POSITION]); rlSetVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_POSITION], 3, RL_FLOAT, 0, 0, 0); rlEnableVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_POSITION]); // Bind mesh VBO data: vertex texcoords (shader-location = 1) - rlEnableVertexBuffer(mesh.vboId[1]); + rlEnableVertexBuffer(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD]); rlSetVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_TEXCOORD01], 2, RL_FLOAT, 0, 0, 0); rlEnableVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_TEXCOORD01]); if (material.shader.locs[SHADER_LOC_VERTEX_NORMAL] != -1) { // Bind mesh VBO data: vertex normals (shader-location = 2) - rlEnableVertexBuffer(mesh.vboId[2]); + rlEnableVertexBuffer(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_NORMAL]); rlSetVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_NORMAL], 3, RL_FLOAT, 0, 0, 0); rlEnableVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_NORMAL]); } @@ -1716,9 +1805,9 @@ void DrawMeshInstanced(Mesh mesh, Material material, const Matrix *transforms, i // Bind mesh VBO data: vertex colors (shader-location = 3, if available) if (material.shader.locs[SHADER_LOC_VERTEX_COLOR] != -1) { - if (mesh.vboId[3] != 0) + if (mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_COLOR] != 0) { - rlEnableVertexBuffer(mesh.vboId[3]); + rlEnableVertexBuffer(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_COLOR]); rlSetVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_COLOR], 4, RL_UNSIGNED_BYTE, 1, 0, 0); rlEnableVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_COLOR]); } @@ -1735,7 +1824,7 @@ void DrawMeshInstanced(Mesh mesh, Material material, const Matrix *transforms, i // Bind mesh VBO data: vertex tangents (shader-location = 4, if available) if (material.shader.locs[SHADER_LOC_VERTEX_TANGENT] != -1) { - rlEnableVertexBuffer(mesh.vboId[4]); + rlEnableVertexBuffer(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_TANGENT]); rlSetVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_TANGENT], 4, RL_FLOAT, 0, 0, 0); rlEnableVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_TANGENT]); } @@ -1743,12 +1832,30 @@ void DrawMeshInstanced(Mesh mesh, Material material, const Matrix *transforms, i // Bind mesh VBO data: vertex texcoords2 (shader-location = 5, if available) if (material.shader.locs[SHADER_LOC_VERTEX_TEXCOORD02] != -1) { - rlEnableVertexBuffer(mesh.vboId[5]); + rlEnableVertexBuffer(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_TEXCOORD2]); rlSetVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_TEXCOORD02], 2, RL_FLOAT, 0, 0, 0); rlEnableVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_TEXCOORD02]); } - if (mesh.indices != NULL) rlEnableVertexBufferElement(mesh.vboId[6]); +#ifdef RL_SUPPORT_MESH_GPU_SKINNING + // Bind mesh VBO data: vertex bone ids (shader-location = 6, if available) + if (material.shader.locs[SHADER_LOC_VERTEX_BONEIDS] != -1) + { + rlEnableVertexBuffer(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEIDS]); + rlSetVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_BONEIDS], 4, RL_UNSIGNED_BYTE, 0, 0, 0); + rlEnableVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_BONEIDS]); + } + + // Bind mesh VBO data: vertex bone weights (shader-location = 7, if available) + if (material.shader.locs[SHADER_LOC_VERTEX_BONEWEIGHTS] != -1) + { + rlEnableVertexBuffer(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_BONEWEIGHTS]); + rlSetVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_BONEWEIGHTS], 4, RL_FLOAT, 0, 0, 0); + rlEnableVertexAttribute(material.shader.locs[SHADER_LOC_VERTEX_BONEWEIGHTS]); + } +#endif + + if (mesh.indices != NULL) rlEnableVertexBufferElement(mesh.vboId[RL_DEFAULT_SHADER_ATTRIB_LOCATION_INDICES]); } int eyeCount = 1; @@ -1825,6 +1932,7 @@ void UnloadMesh(Mesh mesh) RL_FREE(mesh.animNormals); RL_FREE(mesh.boneWeights); RL_FREE(mesh.boneIds); + RL_FREE(mesh.boneMatrices); } // Export mesh data to file @@ -2004,7 +2112,6 @@ bool ExportMeshAsCode(Mesh mesh, const char *fileName) return success; } - #if defined(SUPPORT_FILEFORMAT_OBJ) || defined(SUPPORT_FILEFORMAT_MTL) // Process obj materials static void ProcessMaterialsOBJ(Material *materials, tinyobj_material_t *mats, int materialCount) @@ -2016,6 +2123,8 @@ static void ProcessMaterialsOBJ(Material *materials, tinyobj_material_t *mats, i // NOTE: Uses default shader, which only supports MATERIAL_MAP_DIFFUSE materials[m] = LoadMaterialDefault(); + if (mats == NULL) continue; + // Get default texture, in case no texture is defined // NOTE: rlgl default texture is a 1x1 pixel UNCOMPRESSED_R8G8B8A8 materials[m].maps[MATERIAL_MAP_DIFFUSE].texture = (Texture2D){ rlGetTextureIdDefault(), 1, 1, 1, PIXELFORMAT_UNCOMPRESSED_R8G8B8A8 }; @@ -2089,14 +2198,16 @@ Material LoadMaterialDefault(void) return material; } -// Check if a material is ready -bool IsMaterialReady(Material material) +// Check if a material is valid (map textures loaded in GPU) +bool IsMaterialValid(Material material) { bool result = false; if ((material.maps != NULL) && // Validate material contain some map (material.shader.id > 0)) result = true; // Validate material shader is valid + // TODO: Check if available maps contain loaded textures + return result; } @@ -2253,6 +2364,53 @@ void UpdateModelAnimation(Model model, ModelAnimation anim, int frame) } } +// Update model animated bones transform matrices for a given frame +// NOTE: Updated data is not uploaded to GPU but kept at model.meshes[i].boneMatrices[boneId], +// to be uploaded to shader at drawing, in case GPU skinning is enabled +void UpdateModelAnimationBoneMatrices(Model model, ModelAnimation anim, int frame) +{ + if ((anim.frameCount > 0) && (anim.bones != NULL) && (anim.framePoses != NULL)) + { + if (frame >= anim.frameCount) frame = frame%anim.frameCount; + + for (int i = 0; i < model.meshCount; i++) + { + if (model.meshes[i].boneMatrices) + { + assert(model.meshes[i].boneCount == anim.boneCount); + + for (int boneId = 0; boneId < model.meshes[i].boneCount; boneId++) + { + Vector3 inTranslation = model.bindPose[boneId].translation; + Quaternion inRotation = model.bindPose[boneId].rotation; + Vector3 inScale = model.bindPose[boneId].scale; + + Vector3 outTranslation = anim.framePoses[frame][boneId].translation; + Quaternion outRotation = anim.framePoses[frame][boneId].rotation; + Vector3 outScale = anim.framePoses[frame][boneId].scale; + + Vector3 invTranslation = Vector3RotateByQuaternion(Vector3Negate(inTranslation), QuaternionInvert(inRotation)); + Quaternion invRotation = QuaternionInvert(inRotation); + Vector3 invScale = Vector3Divide((Vector3){ 1.0f, 1.0f, 1.0f }, inScale); + + Vector3 boneTranslation = Vector3Add( + Vector3RotateByQuaternion(Vector3Multiply(outScale, invTranslation), + outRotation), outTranslation); + Quaternion boneRotation = QuaternionMultiply(outRotation, invRotation); + Vector3 boneScale = Vector3Multiply(outScale, invScale); + + Matrix boneMatrix = MatrixMultiply(MatrixMultiply( + QuaternionToMatrix(boneRotation), + MatrixTranslate(boneTranslation.x, boneTranslation.y, boneTranslation.z)), + MatrixScale(boneScale.x, boneScale.y, boneScale.z)); + + model.meshes[i].boneMatrices[boneId] = boneMatrix; + } + } + } + } +} + // Unload animation array data void UnloadModelAnimations(ModelAnimation *animations, int animCount) { @@ -3631,6 +3789,30 @@ void DrawModelWiresEx(Model model, Vector3 position, Vector3 rotationAxis, float rlDisableWireMode(); } +// Draw a model points +void DrawModelPoints(Model model, Vector3 position, float scale, Color tint) +{ + rlEnablePointMode(); + rlDisableBackfaceCulling(); + + DrawModel(model, position, scale, tint); + + rlEnableBackfaceCulling(); + rlDisableWireMode(); +} + +// Draw a model points +void DrawModelPointsEx(Model model, Vector3 position, Vector3 rotationAxis, float rotationAngle, Vector3 scale, Color tint) +{ + rlEnablePointMode(); + rlDisableBackfaceCulling(); + + DrawModelEx(model, position, rotationAxis, rotationAngle, scale, tint); + + rlEnableBackfaceCulling(); + rlDisableWireMode(); +} + // Draw a billboard void DrawBillboard(Camera camera, Texture2D texture, Vector3 position, float scale, Color tint) { @@ -4049,124 +4231,236 @@ static void BuildPoseFromParentJoints(BoneInfo *bones, int boneCount, Transform // - the mesh is automatically triangulated by tinyobj static Model LoadOBJ(const char *fileName) { + tinyobj_attrib_t objAttributes = { 0 }; + tinyobj_shape_t* objShapes = NULL; + unsigned int objShapeCount = 0; + + tinyobj_material_t* objMaterials = NULL; + unsigned int objMaterialCount = 0; + Model model = { 0 }; + model.transform = MatrixIdentity(); - tinyobj_attrib_t attrib = { 0 }; - tinyobj_shape_t *meshes = NULL; - unsigned int meshCount = 0; + char* fileText = LoadFileText(fileName); - tinyobj_material_t *materials = NULL; - unsigned int materialCount = 0; - - char *fileText = LoadFileText(fileName); - - if (fileText != NULL) + if (fileText == NULL) { - unsigned int dataSize = (unsigned int)strlen(fileText); + TRACELOG(LOG_ERROR, "MODEL Unable to read obj file %s", fileName); + return model; + } - char currentDir[1024] = { 0 }; - strcpy(currentDir, GetWorkingDirectory()); // Save current working directory - const char *workingDir = GetDirectoryPath(fileName); // Switch to OBJ directory for material path correctness - if (CHDIR(workingDir) != 0) + char currentDir[1024] = { 0 }; + strcpy(currentDir, GetWorkingDirectory()); // Save current working directory + const char* workingDir = GetDirectoryPath(fileName); // Switch to OBJ directory for material path correctness + if (CHDIR(workingDir) != 0) + { + TRACELOG(LOG_WARNING, "MODEL: [%s] Failed to change working directory", workingDir); + } + + unsigned int dataSize = (unsigned int)strlen(fileText); + + unsigned int flags = TINYOBJ_FLAG_TRIANGULATE; + int ret = tinyobj_parse_obj(&objAttributes, &objShapes, &objShapeCount, &objMaterials, &objMaterialCount, fileText, dataSize, flags); + + if (ret != TINYOBJ_SUCCESS) + { + TRACELOG(LOG_ERROR, "MODEL Unable to read obj data %s", fileName); + return model; + } + + UnloadFileText(fileText); + + unsigned int faceVertIndex = 0; + unsigned int nextShape = 1; + int lastMaterial = -1; + unsigned int meshIndex = 0; + + // count meshes + unsigned int nextShapeEnd = objAttributes.num_face_num_verts; + + // see how many verts till the next shape + + if (objShapeCount > 1) nextShapeEnd = objShapes[nextShape].face_offset; + + // walk all the faces + for (unsigned int faceId = 0; faceId < objAttributes.num_faces; faceId++) + { + if (faceVertIndex >= nextShapeEnd) { - TRACELOG(LOG_WARNING, "MODEL: [%s] Failed to change working directory", workingDir); + // try to find the last vert in the next shape + nextShape++; + if (nextShape < objShapeCount) nextShapeEnd = objShapes[nextShape].face_offset; + else nextShapeEnd = objAttributes.num_face_num_verts; // this is actually the total number of face verts in the file, not faces + meshIndex++; + } + else if (lastMaterial != -1 && objAttributes.material_ids[faceId] != lastMaterial) + { + meshIndex++;// if this is a new material, we need to allocate a new mesh } - unsigned int flags = TINYOBJ_FLAG_TRIANGULATE; - int ret = tinyobj_parse_obj(&attrib, &meshes, &meshCount, &materials, &materialCount, fileText, dataSize, flags); + lastMaterial = objAttributes.material_ids[faceId]; + faceVertIndex += objAttributes.face_num_verts[faceId]; + } - if (ret != TINYOBJ_SUCCESS) TRACELOG(LOG_WARNING, "MODEL: [%s] Failed to load OBJ data", fileName); - else TRACELOG(LOG_INFO, "MODEL: [%s] OBJ data loaded successfully: %i meshes/%i materials", fileName, meshCount, materialCount); + // allocate the base meshes and materials + model.meshCount = meshIndex + 1; + model.meshes = (Mesh*)MemAlloc(sizeof(Mesh) * model.meshCount); - // WARNING: We are not splitting meshes by materials (previous implementation) - // Depending on the provided OBJ that was not the best option and it just crashed - // so, implementation was simplified to prioritize parsed meshes - model.meshCount = meshCount; + if (objMaterialCount > 0) + { + model.materialCount = objMaterialCount; + model.materials = (Material*)MemAlloc(sizeof(Material) * objMaterialCount); + } + else // we must allocate at least one material + { + model.materialCount = 1; + model.materials = (Material*)MemAlloc(sizeof(Material) * 1); + } - // Set number of materials available - // NOTE: There could be more materials available than meshes but it will be resolved at - // model.meshMaterial, just assigning the right material to corresponding mesh - model.materialCount = materialCount; - if (model.materialCount == 0) + model.meshMaterial = (int*)MemAlloc(sizeof(int) * model.meshCount); + + // see how many verts are in each mesh + unsigned int* localMeshVertexCounts = (unsigned int*)MemAlloc(sizeof(unsigned int) * model.meshCount); + + faceVertIndex = 0; + nextShapeEnd = objAttributes.num_face_num_verts; + lastMaterial = -1; + meshIndex = 0; + unsigned int localMeshVertexCount = 0; + + nextShape = 1; + if (objShapeCount > 1) + nextShapeEnd = objShapes[nextShape].face_offset; + + // walk all the faces + for (unsigned int faceId = 0; faceId < objAttributes.num_faces; faceId++) + { + bool newMesh = false; // do we need a new mesh? + if (faceVertIndex >= nextShapeEnd) { - model.materialCount = 1; - TRACELOG(LOG_INFO, "MODEL: No materials provided, setting one default material for all meshes"); + // try to find the last vert in the next shape + nextShape++; + if (nextShape < objShapeCount) nextShapeEnd = objShapes[nextShape].face_offset; + else nextShapeEnd = objAttributes.num_face_num_verts; // this is actually the total number of face verts in the file, not faces + + newMesh = true; + } + else if (lastMaterial != -1 && objAttributes.material_ids[faceId] != lastMaterial) + { + newMesh = true; } - // Init model meshes and materials - model.meshes = (Mesh *)RL_CALLOC(model.meshCount, sizeof(Mesh)); - model.meshMaterial = (int *)RL_CALLOC(model.meshCount, sizeof(int)); // Material index assigned to each mesh - model.materials = (Material *)RL_CALLOC(model.materialCount, sizeof(Material)); + lastMaterial = objAttributes.material_ids[faceId]; - // Process each provided mesh - for (int i = 0; i < model.meshCount; i++) + if (newMesh) { - // WARNING: We need to calculate the mesh triangles manually using meshes[i].face_offset - // because in case of triangulated quads, meshes[i].length actually report quads, - // despite the triangulation that is efectively considered on attrib.num_faces - unsigned int tris = 0; - if (i == model.meshCount - 1) tris = attrib.num_faces - meshes[i].face_offset; - else tris = meshes[i + 1].face_offset; + localMeshVertexCounts[meshIndex] = localMeshVertexCount; - model.meshes[i].vertexCount = tris*3; - model.meshes[i].triangleCount = tris; // Face count (triangulated) - model.meshes[i].vertices = (float *)RL_CALLOC(model.meshes[i].vertexCount*3, sizeof(float)); - model.meshes[i].texcoords = (float *)RL_CALLOC(model.meshes[i].vertexCount*2, sizeof(float)); - model.meshes[i].normals = (float *)RL_CALLOC(model.meshes[i].vertexCount*3, sizeof(float)); - model.meshMaterial[i] = 0; // By default, assign material 0 to each mesh - - // Process all mesh faces - for (unsigned int face = 0, f = meshes[i].face_offset, v = 0, vt = 0, vn = 0; face < tris; face++, f++, v += 3, vt += 3, vn += 3) - { - // Get indices for the face - tinyobj_vertex_index_t idx0 = attrib.faces[f*3 + 0]; - tinyobj_vertex_index_t idx1 = attrib.faces[f*3 + 1]; - tinyobj_vertex_index_t idx2 = attrib.faces[f*3 + 2]; - - // Fill vertices buffer (float) using vertex index of the face - for (int n = 0; n < 3; n++) { model.meshes[i].vertices[v*3 + n] = attrib.vertices[idx0.v_idx*3 + n]; } - for (int n = 0; n < 3; n++) { model.meshes[i].vertices[(v + 1)*3 + n] = attrib.vertices[idx1.v_idx*3 + n]; } - for (int n = 0; n < 3; n++) { model.meshes[i].vertices[(v + 2)*3 + n] = attrib.vertices[idx2.v_idx*3 + n]; } - - if (attrib.num_texcoords > 0) - { - // Fill texcoords buffer (float) using vertex index of the face - // NOTE: Y-coordinate must be flipped upside-down - model.meshes[i].texcoords[vt*2 + 0] = attrib.texcoords[idx0.vt_idx*2 + 0]; - model.meshes[i].texcoords[vt*2 + 1] = 1.0f - attrib.texcoords[idx0.vt_idx*2 + 1]; - - model.meshes[i].texcoords[(vt + 1)*2 + 0] = attrib.texcoords[idx1.vt_idx*2 + 0]; - model.meshes[i].texcoords[(vt + 1)*2 + 1] = 1.0f - attrib.texcoords[idx1.vt_idx*2 + 1]; - - model.meshes[i].texcoords[(vt + 2)*2 + 0] = attrib.texcoords[idx2.vt_idx*2 + 0]; - model.meshes[i].texcoords[(vt + 2)*2 + 1] = 1.0f - attrib.texcoords[idx2.vt_idx*2 + 1]; - } - - if (attrib.num_normals > 0) - { - // Fill normals buffer (float) using vertex index of the face - for (int n = 0; n < 3; n++) { model.meshes[i].normals[vn*3 + n] = attrib.normals[idx0.vn_idx*3 + n]; } - for (int n = 0; n < 3; n++) { model.meshes[i].normals[(vn + 1)*3 + n] = attrib.normals[idx1.vn_idx*3 + n]; } - for (int n = 0; n < 3; n++) { model.meshes[i].normals[(vn + 2)*3 + n] = attrib.normals[idx2.vn_idx*3 + n]; } - } - } + localMeshVertexCount = 0; + meshIndex++; } - // Init model materials - if (materialCount > 0) ProcessMaterialsOBJ(model.materials, materials, materialCount); - else model.materials[0] = LoadMaterialDefault(); // Set default material for the mesh + faceVertIndex += objAttributes.face_num_verts[faceId]; + localMeshVertexCount += objAttributes.face_num_verts[faceId]; + } + localMeshVertexCounts[meshIndex] = localMeshVertexCount; - tinyobj_attrib_free(&attrib); - tinyobj_shapes_free(meshes, model.meshCount); - tinyobj_materials_free(materials, materialCount); + for (int i = 0; i < model.meshCount; i++) + { + // allocate the buffers for each mesh + unsigned int vertexCount = localMeshVertexCounts[i]; - UnloadFileText(fileText); + model.meshes[i].vertexCount = vertexCount; + model.meshes[i].triangleCount = vertexCount / 3; - // Restore current working directory - if (CHDIR(currentDir) != 0) + model.meshes[i].vertices = (float*)MemAlloc(sizeof(float) * vertexCount * 3); + model.meshes[i].normals = (float*)MemAlloc(sizeof(float) * vertexCount * 3); + model.meshes[i].texcoords = (float*)MemAlloc(sizeof(float) * vertexCount * 2); + model.meshes[i].colors = (unsigned char*)MemAlloc(sizeof(unsigned char) * vertexCount * 4); + } + + MemFree(localMeshVertexCounts); + localMeshVertexCounts = NULL; + + // fill meshes + faceVertIndex = 0; + + nextShapeEnd = objAttributes.num_face_num_verts; + + // see how many verts till the next shape + nextShape = 1; + if (objShapeCount > 1) nextShapeEnd = objShapes[nextShape].face_offset; + lastMaterial = -1; + meshIndex = 0; + localMeshVertexCount = 0; + + // walk all the faces + for (unsigned int faceId = 0; faceId < objAttributes.num_faces; faceId++) + { + bool newMesh = false; // do we need a new mesh? + if (faceVertIndex >= nextShapeEnd) { - TRACELOG(LOG_WARNING, "MODEL: [%s] Failed to change working directory", currentDir); + // try to find the last vert in the next shape + nextShape++; + if (nextShape < objShapeCount) nextShapeEnd = objShapes[nextShape].face_offset; + else nextShapeEnd = objAttributes.num_face_num_verts; // this is actually the total number of face verts in the file, not faces + newMesh = true; } + // if this is a new material, we need to allocate a new mesh + if (lastMaterial != -1 && objAttributes.material_ids[faceId] != lastMaterial) newMesh = true; + lastMaterial = objAttributes.material_ids[faceId]; + + if (newMesh) + { + localMeshVertexCount = 0; + meshIndex++; + } + + int matId = 0; + if (lastMaterial >= 0 && lastMaterial < (int)objMaterialCount) + matId = lastMaterial; + + model.meshMaterial[meshIndex] = matId; + + for (int f = 0; f < objAttributes.face_num_verts[faceId]; f++) + { + int vertIndex = objAttributes.faces[faceVertIndex].v_idx; + int normalIndex = objAttributes.faces[faceVertIndex].vn_idx; + int texcordIndex = objAttributes.faces[faceVertIndex].vt_idx; + + for (int i = 0; i < 3; i++) + model.meshes[meshIndex].vertices[localMeshVertexCount * 3 + i] = objAttributes.vertices[vertIndex * 3 + i]; + + for (int i = 0; i < 3; i++) + model.meshes[meshIndex].normals[localMeshVertexCount * 3 + i] = objAttributes.normals[normalIndex * 3 + i]; + + for (int i = 0; i < 2; i++) + model.meshes[meshIndex].texcoords[localMeshVertexCount * 2 + i] = objAttributes.texcoords[texcordIndex * 2 + i]; + + model.meshes[meshIndex].texcoords[localMeshVertexCount * 2 + 1] = 1.0f - model.meshes[meshIndex].texcoords[localMeshVertexCount * 2 + 1]; + + for (int i = 0; i < 4; i++) + model.meshes[meshIndex].colors[localMeshVertexCount * 4 + i] = 255; + + faceVertIndex++; + localMeshVertexCount++; + } + } + + if (objMaterialCount > 0) ProcessMaterialsOBJ(model.materials, objMaterials, objMaterialCount); + else model.materials[0] = LoadMaterialDefault(); // Set default material for the mesh + + tinyobj_attrib_free(&objAttributes); + tinyobj_shapes_free(objShapes, objShapeCount); + tinyobj_materials_free(objMaterials, objMaterialCount); + + for (int i = 0; i < model.meshCount; i++) + UploadMesh(model.meshes + i, true); + + // Restore current working directory + if (CHDIR(currentDir) != 0) + { + TRACELOG(LOG_WARNING, "MODEL: [%s] Failed to change working directory", currentDir); } return model; @@ -4534,6 +4828,17 @@ static Model LoadIQM(const char *fileName) BuildPoseFromParentJoints(model.bones, model.boneCount, model.bindPose); + for (int i = 0; i < model.meshCount; i++) + { + model.meshes[i].boneCount = model.boneCount; + model.meshes[i].boneMatrices = RL_CALLOC(model.meshes[i].boneCount, sizeof(Matrix)); + + for (int j = 0; j < model.meshes[i].boneCount; j++) + { + model.meshes[i].boneMatrices[j] = MatrixIdentity(); + } + } + UnloadFileData(fileData); RL_FREE(imesh); @@ -4942,17 +5247,19 @@ static Model LoadGLTF(const char *fileName) ***********************************************************************************************/ // Macro to simplify attributes loading code - #define LOAD_ATTRIBUTE(accesor, numComp, dataType, dstPtr) \ + #define LOAD_ATTRIBUTE(accesor, numComp, srcType, dstPtr) LOAD_ATTRIBUTE_CAST(accesor, numComp, srcType, dstPtr, srcType) + + #define LOAD_ATTRIBUTE_CAST(accesor, numComp, srcType, dstPtr, dstType) \ { \ int n = 0; \ - dataType *buffer = (dataType *)accesor->buffer_view->buffer->data + accesor->buffer_view->offset/sizeof(dataType) + accesor->offset/sizeof(dataType); \ + srcType *buffer = (srcType *)accesor->buffer_view->buffer->data + accesor->buffer_view->offset/sizeof(srcType) + accesor->offset/sizeof(srcType); \ for (unsigned int k = 0; k < accesor->count; k++) \ {\ for (int l = 0; l < numComp; l++) \ {\ - dstPtr[numComp*k + l] = buffer[n + l];\ + dstPtr[numComp*k + l] = (dstType)buffer[n + l];\ }\ - n += (int)(accesor->stride/sizeof(dataType));\ + n += (int)(accesor->stride/sizeof(srcType));\ }\ } @@ -5393,8 +5700,6 @@ static Model LoadGLTF(const char *fileName) else TRACELOG(LOG_WARNING, "MODEL: [%s] Color attribute data format not supported", fileName); } else TRACELOG(LOG_WARNING, "MODEL: [%s] Color attribute data format not supported", fileName); - - } // NOTE: Attributes related to animations are processed separately @@ -5415,23 +5720,25 @@ static Model LoadGLTF(const char *fileName) // Load unsigned short data type into mesh.indices LOAD_ATTRIBUTE(attribute, 1, unsigned short, model.meshes[meshIndex].indices) } + else if (attribute->component_type == cgltf_component_type_r_8u) + { + // Init raylib mesh indices to copy glTF attribute data + model.meshes[meshIndex].indices = RL_MALLOC(attribute->count * sizeof(unsigned short)); + LOAD_ATTRIBUTE_CAST(attribute, 1, unsigned char, model.meshes[meshIndex].indices, unsigned short) + + } else if (attribute->component_type == cgltf_component_type_r_32u) { // Init raylib mesh indices to copy glTF attribute data model.meshes[meshIndex].indices = RL_MALLOC(attribute->count*sizeof(unsigned short)); - - // Load data into a temp buffer to be converted to raylib data type - unsigned int *temp = RL_MALLOC(attribute->count*sizeof(unsigned int)); - LOAD_ATTRIBUTE(attribute, 1, unsigned int, temp); - - // Convert data to raylib indices data type (unsigned short) - for (unsigned int d = 0; d < attribute->count; d++) model.meshes[meshIndex].indices[d] = (unsigned short)temp[d]; + LOAD_ATTRIBUTE_CAST(attribute, 1, unsigned int, model.meshes[meshIndex].indices, unsigned short); TRACELOG(LOG_WARNING, "MODEL: [%s] Indices data converted from u32 to u16, possible loss of data", fileName); - - RL_FREE(temp); } - else TRACELOG(LOG_WARNING, "MODEL: [%s] Indices data format not supported, use u16", fileName); + else + { + TRACELOG(LOG_WARNING, "MODEL: [%s] Indices data format not supported, use u16", fileName); + } } else model.meshes[meshIndex].triangleCount = model.meshes[meshIndex].vertexCount/3; // Unindexed mesh @@ -5463,7 +5770,7 @@ static Model LoadGLTF(const char *fileName) // - Only supports linear interpolation (default method in Blender when checked "Always Sample Animations" when exporting a GLTF file) // - Only supports translation/rotation/scale animation channel.path, weights not considered (i.e. morph targets) //---------------------------------------------------------------------------------------------------- - if (data->skins_count == 1) + if (data->skins_count > 0) { cgltf_skin skin = data->skins[0]; model.bones = LoadBoneInfoGLTF(skin, &model.boneCount); @@ -5483,9 +5790,9 @@ static Model LoadGLTF(const char *fileName) MatrixDecompose(worldMatrix, &(model.bindPose[i].translation), &(model.bindPose[i].rotation), &(model.bindPose[i].scale)); } } - else if (data->skins_count > 1) + if (data->skins_count > 1) { - TRACELOG(LOG_ERROR, "MODEL: [%s] can only load one skin (armature) per model, but gltf skins_count == %i", fileName, data->skins_count); + TRACELOG(LOG_WARNING, "MODEL: [%s] can only load one skin (armature) per model, but gltf skins_count == %i", fileName, data->skins_count); } meshIndex = 0; @@ -5617,6 +5924,15 @@ static Model LoadGLTF(const char *fileName) memcpy(model.meshes[meshIndex].animNormals, model.meshes[meshIndex].normals, model.meshes[meshIndex].vertexCount*3*sizeof(float)); } + // Bone Transform Matrices + model.meshes[meshIndex].boneCount = model.boneCount; + model.meshes[meshIndex].boneMatrices = RL_CALLOC(model.meshes[meshIndex].boneCount, sizeof(Matrix)); + + for (int j = 0; j < model.meshes[meshIndex].boneCount; j++) + { + model.meshes[meshIndex].boneMatrices[j] = MatrixIdentity(); + } + meshIndex++; // Move to next mesh } @@ -5741,11 +6057,11 @@ static bool GetPoseAtTimeGLTF(cgltf_interpolation_type interpolationType, cgltf_ cgltf_accessor_read_float(output, 3*keyframe+1, tmp, 4); Vector4 v1 = {tmp[0], tmp[1], tmp[2], tmp[3]}; cgltf_accessor_read_float(output, 3*keyframe+2, tmp, 4); - Vector4 outTangent1 = {tmp[0], tmp[1], tmp[2]}; + Vector4 outTangent1 = {tmp[0], tmp[1], tmp[2], 0.0f}; cgltf_accessor_read_float(output, 3*(keyframe+1)+1, tmp, 4); Vector4 v2 = {tmp[0], tmp[1], tmp[2], tmp[3]}; cgltf_accessor_read_float(output, 3*(keyframe+1), tmp, 4); - Vector4 inTangent2 = {tmp[0], tmp[1], tmp[2]}; + Vector4 inTangent2 = {tmp[0], tmp[1], tmp[2], 0.0f}; Vector4 *r = data; v1 = QuaternionNormalize(v1); @@ -5797,7 +6113,7 @@ static ModelAnimation *LoadModelAnimationsGLTF(const char *fileName, int *animCo if (result == cgltf_result_success) { - if (data->skins_count == 1) + if (data->skins_count > 0) { cgltf_skin skin = data->skins[0]; *animCount = (int)data->animations_count; @@ -5932,7 +6248,11 @@ static ModelAnimation *LoadModelAnimationsGLTF(const char *fileName, int *animCo RL_FREE(boneChannels); } } - else TRACELOG(LOG_ERROR, "MODEL: [%s] expected exactly one skin to load animation data from, but found %i", fileName, data->skins_count); + + if (data->skins_count > 1) + { + TRACELOG(LOG_WARNING, "MODEL: [%s] expected exactly one skin to load animation data from, but found %i", fileName, data->skins_count); + } cgltf_free(data); } @@ -6384,6 +6704,13 @@ static Model LoadM3D(const char *fileName) { memcpy(model.meshes[i].animVertices, model.meshes[i].vertices, model.meshes[i].vertexCount*3*sizeof(float)); memcpy(model.meshes[i].animNormals, model.meshes[i].normals, model.meshes[i].vertexCount*3*sizeof(float)); + + model.meshes[i].boneCount = model.boneCount; + model.meshes[i].boneMatrices = RL_CALLOC(model.meshes[i].boneCount, sizeof(Matrix)); + for (j = 0; j < model.meshes[i].boneCount; j++) + { + model.meshes[i].boneMatrices[j] = MatrixIdentity(); + } } } diff --git a/src/rshapes.c b/src/rshapes.c index 89339708a..ece5513b3 100644 --- a/src/rshapes.c +++ b/src/rshapes.c @@ -79,8 +79,8 @@ //---------------------------------------------------------------------------------- // Global Variables Definition //---------------------------------------------------------------------------------- -Texture2D texShapes = { 1, 1, 1, 1, 7 }; // Texture used on shapes drawing (white pixel loaded by rlgl) -Rectangle texShapesRec = { 0.0f, 0.0f, 1.0f, 1.0f }; // Texture source rectangle used on shapes drawing +static Texture2D texShapes = { 1, 1, 1, 1, 7 }; // Texture used on shapes drawing (white pixel loaded by rlgl) +static Rectangle texShapesRec = { 0.0f, 0.0f, 1.0f, 1.0f }; // Texture source rectangle used on shapes drawing //---------------------------------------------------------------------------------- // Module specific Functions Declaration @@ -430,17 +430,16 @@ void DrawCircleSectorLines(Vector2 center, float radius, float startAngle, float } // Draw a gradient-filled circle -// NOTE: Gradient goes from center (color1) to border (color2) -void DrawCircleGradient(int centerX, int centerY, float radius, Color color1, Color color2) +void DrawCircleGradient(int centerX, int centerY, float radius, Color inner, Color outer) { rlBegin(RL_TRIANGLES); for (int i = 0; i < 360; i += 10) { - rlColor4ub(color1.r, color1.g, color1.b, color1.a); + rlColor4ub(inner.r, inner.g, inner.b, inner.a); rlVertex2f((float)centerX, (float)centerY); - rlColor4ub(color2.r, color2.g, color2.b, color2.a); + rlColor4ub(outer.r, outer.g, outer.b, outer.a); rlVertex2f((float)centerX + cosf(DEG2RAD*(i + 10))*radius, (float)centerY + sinf(DEG2RAD*(i + 10))*radius); - rlColor4ub(color2.r, color2.g, color2.b, color2.a); + rlColor4ub(outer.r, outer.g, outer.b, outer.a); rlVertex2f((float)centerX + cosf(DEG2RAD*i)*radius, (float)centerY + sinf(DEG2RAD*i)*radius); } rlEnd(); @@ -761,22 +760,19 @@ void DrawRectanglePro(Rectangle rec, Vector2 origin, float rotation, Color color } // Draw a vertical-gradient-filled rectangle -// NOTE: Gradient goes from bottom (color1) to top (color2) -void DrawRectangleGradientV(int posX, int posY, int width, int height, Color color1, Color color2) +void DrawRectangleGradientV(int posX, int posY, int width, int height, Color top, Color bottom) { - DrawRectangleGradientEx((Rectangle){ (float)posX, (float)posY, (float)width, (float)height }, color1, color2, color2, color1); + DrawRectangleGradientEx((Rectangle){ (float)posX, (float)posY, (float)width, (float)height }, top, bottom, bottom, top); } // Draw a horizontal-gradient-filled rectangle -// NOTE: Gradient goes from bottom (color1) to top (color2) -void DrawRectangleGradientH(int posX, int posY, int width, int height, Color color1, Color color2) +void DrawRectangleGradientH(int posX, int posY, int width, int height, Color left, Color right) { - DrawRectangleGradientEx((Rectangle){ (float)posX, (float)posY, (float)width, (float)height }, color1, color1, color2, color2); + DrawRectangleGradientEx((Rectangle){ (float)posX, (float)posY, (float)width, (float)height }, left, left, right, right); } // Draw a gradient-filled rectangle -// NOTE: Colors refer to corners, starting at top-lef corner and counter-clockwise -void DrawRectangleGradientEx(Rectangle rec, Color col1, Color col2, Color col3, Color col4) +void DrawRectangleGradientEx(Rectangle rec, Color topLeft, Color bottomLeft, Color topRight, Color bottomRight) { rlSetTexture(GetShapesTexture().id); Rectangle shapeRect = GetShapesTextureRectangle(); @@ -785,19 +781,19 @@ void DrawRectangleGradientEx(Rectangle rec, Color col1, Color col2, Color col3, rlNormal3f(0.0f, 0.0f, 1.0f); // NOTE: Default raylib font character 95 is a white square - rlColor4ub(col1.r, col1.g, col1.b, col1.a); + rlColor4ub(topLeft.r, topLeft.g, topLeft.b, topLeft.a); rlTexCoord2f(shapeRect.x/texShapes.width, shapeRect.y/texShapes.height); rlVertex2f(rec.x, rec.y); - rlColor4ub(col2.r, col2.g, col2.b, col2.a); + rlColor4ub(bottomLeft.r, bottomLeft.g, bottomLeft.b, bottomLeft.a); rlTexCoord2f(shapeRect.x/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); rlVertex2f(rec.x, rec.y + rec.height); - rlColor4ub(col3.r, col3.g, col3.b, col3.a); + rlColor4ub(topRight.r, topRight.g, topRight.b, topRight.a); rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); rlVertex2f(rec.x + rec.width, rec.y + rec.height); - rlColor4ub(col4.r, col4.g, col4.b, col4.a); + rlColor4ub(bottomRight.r, bottomRight.g, bottomRight.b, bottomRight.a); rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, shapeRect.y/texShapes.height); rlVertex2f(rec.x + rec.width, rec.y); rlEnd(); @@ -811,6 +807,30 @@ void DrawRectangleGradientEx(Rectangle rec, Color col1, Color col2, Color col3, // but it solves another issue: https://github.com/raysan5/raylib/issues/3884 void DrawRectangleLines(int posX, int posY, int width, int height, Color color) { + Matrix mat = rlGetMatrixModelview(); + float zoomFactor = 0.5f/mat.m0; + rlBegin(RL_LINES); + rlColor4ub(color.r, color.g, color.b, color.a); + rlVertex2f((float)posX - zoomFactor, (float)posY); + rlVertex2f((float)posX + (float)width + zoomFactor, (float)posY); + + rlVertex2f((float)posX + (float)width, (float)posY - zoomFactor); + rlVertex2f((float)posX + (float)width, (float)posY + (float)height + zoomFactor); + + rlVertex2f((float)posX + (float)width + zoomFactor, (float)posY + (float)height); + rlVertex2f((float)posX - zoomFactor, (float)posY + (float)height); + + rlVertex2f((float)posX, (float)posY + (float)height + zoomFactor); + rlVertex2f((float)posX, (float)posY - zoomFactor); + rlEnd(); +/* +// Previous implementation, it has issues... but it does not require view matrix... +#if defined(SUPPORT_QUADS_DRAW_MODE) + DrawRectangle(posX, posY, width, 1, color); + DrawRectangle(posX + width - 1, posY + 1, 1, height - 2, color); + DrawRectangle(posX, posY + height - 1, width, 1, color); + DrawRectangle(posX, posY + 1, 1, height - 2, color); +#else rlBegin(RL_LINES); rlColor4ub(color.r, color.g, color.b, color.a); rlVertex2f((float)posX, (float)posY); @@ -825,6 +845,8 @@ void DrawRectangleLines(int posX, int posY, int width, int height, Color color) rlVertex2f((float)posX + 1, (float)posY + (float)height); rlVertex2f((float)posX + 1, (float)posY + 1); rlEnd(); +//#endif +*/ } // Draw rectangle outline with extended parameters @@ -832,8 +854,8 @@ void DrawRectangleLinesEx(Rectangle rec, float lineThick, Color color) { if ((lineThick > rec.width) || (lineThick > rec.height)) { - if (rec.width > rec.height) lineThick = rec.height/2; - else if (rec.width < rec.height) lineThick = rec.width/2; + if (rec.width >= rec.height) lineThick = rec.height/2; + else if (rec.width <= rec.height) lineThick = rec.width/2; } // When rec = { x, y, 8.0f, 6.0f } and lineThick = 2, the following @@ -1654,7 +1676,7 @@ void DrawSplineLinear(const Vector2 *points, int pointCount, float thick, Color prevNormal = normal; } -#else // !SUPPORT_SPLINE_MITTERS +#else // !SUPPORT_SPLINE_MITERS Vector2 delta = { 0 }; float length = 0.0f; diff --git a/src/rtext.c b/src/rtext.c index 755b15efd..3510671be 100644 --- a/src/rtext.c +++ b/src/rtext.c @@ -124,6 +124,7 @@ //---------------------------------------------------------------------------------- // Global variables //---------------------------------------------------------------------------------- +extern bool isGpuReady; #if defined(SUPPORT_DEFAULT_FONT) // Default font provided by raylib // NOTE: Default font is loaded on InitWindow() and disposed on CloseWindow() [module: core] @@ -252,15 +253,15 @@ extern void LoadFontDefault(void) counter++; } - defaultFont.texture = LoadTextureFromImage(imFont); + if (isGpuReady) defaultFont.texture = LoadTextureFromImage(imFont); // Reconstruct charSet using charsWidth[], charsHeight, charsDivisor, glyphCount //------------------------------------------------------------------------------ // Allocate space for our characters info data // NOTE: This memory must be freed at end! --> Done by CloseWindow() - defaultFont.glyphs = (GlyphInfo *)RL_MALLOC(defaultFont.glyphCount*sizeof(GlyphInfo)); - defaultFont.recs = (Rectangle *)RL_MALLOC(defaultFont.glyphCount*sizeof(Rectangle)); + defaultFont.glyphs = (GlyphInfo *)RL_CALLOC(defaultFont.glyphCount, sizeof(GlyphInfo)); + defaultFont.recs = (Rectangle *)RL_CALLOC(defaultFont.glyphCount, sizeof(Rectangle)); int currentLine = 0; int currentPosX = charsDivisor; @@ -308,7 +309,7 @@ extern void LoadFontDefault(void) extern void UnloadFontDefault(void) { for (int i = 0; i < defaultFont.glyphCount; i++) UnloadImage(defaultFont.glyphs[i].image); - UnloadTexture(defaultFont.texture); + if (isGpuReady) UnloadTexture(defaultFont.texture); RL_FREE(defaultFont.glyphs); RL_FREE(defaultFont.recs); } @@ -362,11 +363,14 @@ Font LoadFont(const char *fileName) UnloadImage(image); } - if (font.texture.id == 0) TRACELOG(LOG_WARNING, "FONT: [%s] Failed to load font texture -> Using default font", fileName); - else + if (isGpuReady) { - SetTextureFilter(font.texture, TEXTURE_FILTER_POINT); // By default, we set point filter (the best performance) - TRACELOG(LOG_INFO, "FONT: Data loaded successfully (%i pixel size | %i glyphs)", FONT_TTF_DEFAULT_SIZE, FONT_TTF_DEFAULT_NUMCHARS); + if (font.texture.id == 0) TRACELOG(LOG_WARNING, "FONT: [%s] Failed to load font texture -> Using default font", fileName); + else + { + SetTextureFilter(font.texture, TEXTURE_FILTER_POINT); // By default, we set point filter (the best performance) + TRACELOG(LOG_INFO, "FONT: Data loaded successfully (%i pixel size | %i glyphs)", FONT_TTF_DEFAULT_SIZE, FONT_TTF_DEFAULT_NUMCHARS); + } } return font; @@ -487,7 +491,7 @@ Font LoadFontFromImage(Image image, Color key, int firstChar) }; // Set font with all data parsed from image - font.texture = LoadTextureFromImage(fontClear); // Convert processed image to OpenGL texture + if (isGpuReady) font.texture = LoadTextureFromImage(fontClear); // Convert processed image to OpenGL texture font.glyphCount = index; font.glyphPadding = 0; @@ -556,7 +560,7 @@ Font LoadFontFromMemory(const char *fileType, const unsigned char *fileData, int font.glyphPadding = FONT_TTF_DEFAULT_CHARS_PADDING; Image atlas = GenImageFontAtlas(font.glyphs, &font.recs, font.glyphCount, font.baseSize, font.glyphPadding, 0); - font.texture = LoadTextureFromImage(atlas); + if (isGpuReady) font.texture = LoadTextureFromImage(atlas); // Update glyphs[i].image to use alpha, required to be used on ImageDrawText() for (int i = 0; i < font.glyphCount; i++) @@ -577,17 +581,16 @@ Font LoadFontFromMemory(const char *fileType, const unsigned char *fileData, int return font; } -// Check if a font is ready -bool IsFontReady(Font font) +// Check if a font is valid (font data loaded) +// WARNING: GPU texture not checked +bool IsFontValid(Font font) { - return ((font.texture.id > 0) && // Validate OpenGL id fot font texture atlas - (font.baseSize > 0) && // Validate font size + return ((font.baseSize > 0) && // Validate font size (font.glyphCount > 0) && // Validate font contains some glyph (font.recs != NULL) && // Validate font recs defining glyphs on texture atlas (font.glyphs != NULL)); // Validate glyph data is loaded - // NOTE: Further validations could be done to verify if recs count and glyphs count - // match glyphCount and to verify that data contained is valid (glyphs values, metrics...) + // NOTE: Further validations could be done to verify if recs and glyphs contain valid data (glyphs values, metrics...) } // Load font data for further use @@ -674,6 +677,8 @@ GlyphInfo *LoadFontData(const unsigned char *fileData, int dataSize, int fontSiz stbtt_GetCodepointHMetrics(&fontInfo, ch, &chars[i].advanceX, NULL); chars[i].advanceX = (int)((float)chars[i].advanceX*scaleFactor); + if (chh > fontSize) TRACELOG(LOG_WARNING, "FONT: Character [0x%08x] size is bigger than expected font size", ch); + // Load characters images chars[i].image.width = chw; chars[i].image.height = chh; @@ -946,7 +951,7 @@ void UnloadFont(Font font) if (font.texture.id != GetFontDefault().texture.id) { UnloadFontData(font.glyphs, font.glyphCount); - UnloadTexture(font.texture); + if (isGpuReady) UnloadTexture(font.texture); RL_FREE(font.recs); TRACELOGD("FONT: Unloaded font data from RAM and VRAM"); @@ -1066,7 +1071,7 @@ bool ExportFontAsCode(Font font, const char *fileName) byteCount += sprintf(txtData + byteCount, " Image imFont = { fontImageData_%s, %i, %i, 1, %i };\n\n", styleName, image.width, image.height, image.format); #endif byteCount += sprintf(txtData + byteCount, " // Load texture from image\n"); - byteCount += sprintf(txtData + byteCount, " font.texture = LoadTextureFromImage(imFont);\n"); + byteCount += sprintf(txtData + byteCount, " if (isGpuReady) font.texture = LoadTextureFromImage(imFont);\n"); #if defined(SUPPORT_COMPRESSED_FONT_ATLAS) byteCount += sprintf(txtData + byteCount, " UnloadImage(imFont); // Uncompressed data can be unloaded from memory\n\n"); #endif @@ -1277,7 +1282,7 @@ Vector2 MeasureTextEx(Font font, const char *text, float fontSize, float spacing { Vector2 textSize = { 0 }; - if ((font.texture.id == 0) || (text == NULL)) return textSize; // Security check + if ((isGpuReady && (font.texture.id == 0)) || (text == NULL)) return textSize; // Security check int size = TextLength(text); // Get size in bytes of text int tempByteCounter = 0; // Used to count longer text line num chars @@ -1296,15 +1301,15 @@ Vector2 MeasureTextEx(Font font, const char *text, float fontSize, float spacing { byteCounter++; - int next = 0; - letter = GetCodepointNext(&text[i], &next); + int codepointByteCount = 0; + letter = GetCodepointNext(&text[i], &codepointByteCount); index = GetGlyphIndex(font, letter); - i += next; + i += codepointByteCount; if (letter != '\n') { - if (font.glyphs[index].advanceX != 0) textWidth += font.glyphs[index].advanceX; + if (font.glyphs[index].advanceX > 0) textWidth += font.glyphs[index].advanceX; else textWidth += (font.recs[index].width + font.glyphs[index].offsetX); } else @@ -1467,8 +1472,7 @@ float TextToFloat(const char *text) int i = 0; for (; ((text[i] >= '0') && (text[i] <= '9')); i++) value = value*10.0f + (float)(text[i] - '0'); - if (text[i++] != '.') value *= sign; - else + if (text[i++] == '.') { float divisor = 10.0f; for (; ((text[i] >= '0') && (text[i] <= '9')); i++) @@ -1478,7 +1482,7 @@ float TextToFloat(const char *text) } } - return value; + return value*sign; } #if defined(SUPPORT_TEXT_MANIPULATION) @@ -1925,7 +1929,8 @@ int GetCodepointCount(const char *text) const char *CodepointToUTF8(int codepoint, int *utf8Size) { static char utf8[6] = { 0 }; - int size = 0; // Byte size of codepoint + memset(utf8, 0, 6); // Clear static array + int size = 0; // Byte size of codepoint if (codepoint <= 0x7f) { @@ -2258,7 +2263,7 @@ static Font LoadBMFont(const char *fileName) RL_FREE(imFonts); - font.texture = LoadTextureFromImage(fullFont); + if (isGpuReady) font.texture = LoadTextureFromImage(fullFont); // Fill font characters info data font.baseSize = fontSize; @@ -2300,7 +2305,7 @@ static Font LoadBMFont(const char *fileName) UnloadImage(fullFont); UnloadFileText(fileText); - if (font.texture.id == 0) + if (isGpuReady && (font.texture.id == 0)) { UnloadFont(font); font = GetFontDefault(); diff --git a/src/rtextures.c b/src/rtextures.c index 9359f9219..076452311 100644 --- a/src/rtextures.c +++ b/src/rtextures.c @@ -225,14 +225,6 @@ #pragma GCC diagnostic pop #endif -#if defined(SUPPORT_FILEFORMAT_SVG) - #define NANOSVG_IMPLEMENTATION // Expands implementation - #include "external/nanosvg.h" - - #define NANOSVGRAST_IMPLEMENTATION - #include "external/nanosvgrast.h" -#endif - //---------------------------------------------------------------------------------- // Defines and Macros //---------------------------------------------------------------------------------- @@ -335,84 +327,6 @@ Image LoadImageRaw(const char *fileName, int width, int height, int format, int return image; } -// Load an image from a SVG file or string with custom size -Image LoadImageSvg(const char *fileNameOrString, int width, int height) -{ - Image image = { 0 }; - -#if defined(SUPPORT_FILEFORMAT_SVG) - bool isSvgStringValid = false; - - // Validate fileName or string - if (fileNameOrString != NULL) - { - int dataSize = 0; - unsigned char *fileData = NULL; - - if (FileExists(fileNameOrString)) - { - fileData = LoadFileData(fileNameOrString, &dataSize); - isSvgStringValid = true; - } - else - { - // Validate fileData as valid SVG string data - // - if ((fileNameOrString != NULL) && - (fileNameOrString[0] == '<') && - (fileNameOrString[1] == 's') && - (fileNameOrString[2] == 'v') && - (fileNameOrString[3] == 'g')) - { - fileData = (unsigned char *)fileNameOrString; - isSvgStringValid = true; - } - } - - if (isSvgStringValid) - { - struct NSVGimage *svgImage = nsvgParse(fileData, "px", 96.0f); - - unsigned char *img = RL_MALLOC(width*height*4); - - // Calculate scales for both the width and the height - const float scaleWidth = width/svgImage->width; - const float scaleHeight = height/svgImage->height; - - // Set the largest of the 2 scales to be the scale to use - const float scale = (scaleHeight > scaleWidth)? scaleWidth : scaleHeight; - - int offsetX = 0; - int offsetY = 0; - - if (scaleHeight > scaleWidth) offsetY = (height - svgImage->height*scale)/2; - else offsetX = (width - svgImage->width*scale)/2; - - // Rasterize - struct NSVGrasterizer *rast = nsvgCreateRasterizer(); - nsvgRasterize(rast, svgImage, (int)offsetX, (int)offsetY, scale, img, width, height, width*4); - - // Populate image struct with all data - image.data = img; - image.width = width; - image.height = height; - image.mipmaps = 1; - image.format = PIXELFORMAT_UNCOMPRESSED_R8G8B8A8; - - // Free used memory - nsvgDelete(svgImage); - nsvgDeleteRasterizer(rast); - } - - if (isSvgStringValid && (fileData != fileNameOrString)) UnloadFileData(fileData); - } -#else - TRACELOG(LOG_WARNING, "SVG image support not enabled, image can not be loaded"); -#endif - - return image; -} - // Load animated image data // - Image.data buffer includes all frames: [image#0][image#1][image#2][...] // - Number of frames is returned through 'frames' parameter @@ -592,44 +506,14 @@ Image LoadImageFromMemory(const char *fileType, const unsigned char *fileData, i if (fileData != NULL) { qoi_desc desc = { 0 }; - image.data = qoi_decode(fileData, dataSize, &desc, 4); + image.data = qoi_decode(fileData, dataSize, &desc, (int) fileData[12]); image.width = desc.width; image.height = desc.height; - image.format = PIXELFORMAT_UNCOMPRESSED_R8G8B8A8; + image.format = desc.channels == 4 ? PIXELFORMAT_UNCOMPRESSED_R8G8B8A8 : PIXELFORMAT_UNCOMPRESSED_R8G8B8; image.mipmaps = 1; } } #endif -#if defined(SUPPORT_FILEFORMAT_SVG) - else if ((strcmp(fileType, ".svg") == 0) || (strcmp(fileType, ".SVG") == 0)) - { - // Validate fileData as valid SVG string data - // - if ((fileData != NULL) && - (fileData[0] == '<') && - (fileData[1] == 's') && - (fileData[2] == 'v') && - (fileData[3] == 'g')) - { - struct NSVGimage *svgImage = nsvgParse(fileData, "px", 96.0f); - unsigned char *img = RL_MALLOC(svgImage->width*svgImage->height*4); - - // Rasterize - struct NSVGrasterizer *rast = nsvgCreateRasterizer(); - nsvgRasterize(rast, svgImage, 0, 0, 1.0f, img, svgImage->width, svgImage->height, svgImage->width*4); - - // Populate image struct with all data - image.data = img; - image.width = svgImage->width; - image.height = svgImage->height; - image.mipmaps = 1; - image.format = PIXELFORMAT_UNCOMPRESSED_R8G8B8A8; - - nsvgDelete(svgImage); - nsvgDeleteRasterizer(rast); - } - } -#endif #if defined(SUPPORT_FILEFORMAT_DDS) else if ((strcmp(fileType, ".dds") == 0) || (strcmp(fileType, ".DDS") == 0)) { @@ -716,15 +600,15 @@ Image LoadImageFromScreen(void) } // Check if an image is ready -bool IsImageReady(Image image) +bool IsImageValid(Image image) { bool result = false; if ((image.data != NULL) && // Validate pixel data available - (image.width > 0) && - (image.height > 0) && // Validate image size + (image.width > 0) && // Validate image width + (image.height > 0) && // Validate image height (image.format > 0) && // Validate image format - (image.mipmaps > 0)) result = true; // Validate image mipmaps (at least 1 for basic mipmap level) + (image.mipmaps > 0)) result = true; // Validate image mipmaps (at least 1 for basic mipmap level) return result; } @@ -1112,6 +996,7 @@ Image GenImagePerlinNoise(int width, int height, int offsetX, int offsetY, float { Color *pixels = (Color *)RL_MALLOC(width*height*sizeof(Color)); + float aspectRatio = (float)width / (float)height; for (int y = 0; y < height; y++) { for (int x = 0; x < width; x++) @@ -1119,6 +1004,10 @@ Image GenImagePerlinNoise(int width, int height, int offsetX, int offsetY, float float nx = (float)(x + offsetX)*(scale/(float)width); float ny = (float)(y + offsetY)*(scale/(float)height); + // Apply aspect ratio compensation to wider side + if (width > height) nx *= aspectRatio; + else ny /= aspectRatio; + // Basic perlin noise implementation (not used) //float p = (stb_perlin_noise3(nx, ny, 0.0f, 0, 0, 0); @@ -1222,8 +1111,7 @@ Image GenImageText(int width, int height, const char *text) { Image image = { 0 }; -#if defined(SUPPORT_MODULE_RTEXT) - int textLength = TextLength(text); + int textLength = (int)strlen(text); int imageViewSize = width*height; image.width = width; @@ -1233,10 +1121,6 @@ Image GenImageText(int width, int height, const char *text) image.mipmaps = 1; memcpy(image.data, text, (textLength > imageViewSize)? imageViewSize : textLength); -#else - TRACELOG(LOG_WARNING, "IMAGE: GenImageText() requires module: rtext"); - image = GenImageColor(width, height, BLACK); // Generating placeholder black image rectangle -#endif return image; } @@ -2506,22 +2390,16 @@ void ImageMipmaps(Image *image) else TRACELOG(LOG_WARNING, "IMAGE: Mipmaps required memory could not be allocated"); // Pointer to allocated memory point where store next mipmap level data - unsigned char *nextmip = (unsigned char *)image->data + GetPixelDataSize(image->width, image->height, image->format); + unsigned char *nextmip = image->data; - mipWidth = image->width/2; - mipHeight = image->height/2; + mipWidth = image->width; + mipHeight = image->height; mipSize = GetPixelDataSize(mipWidth, mipHeight, image->format); Image imCopy = ImageCopy(*image); for (int i = 1; i < mipCount; i++) { - TRACELOGD("IMAGE: Generating mipmap level: %i (%i x %i) - size: %i - offset: 0x%x", i, mipWidth, mipHeight, mipSize, nextmip); - - ImageResize(&imCopy, mipWidth, mipHeight); // Uses internally Mitchell cubic downscale filter - - memcpy(nextmip, imCopy.data, mipSize); nextmip += mipSize; - image->mipmaps++; mipWidth /= 2; mipHeight /= 2; @@ -2531,9 +2409,19 @@ void ImageMipmaps(Image *image) if (mipHeight < 1) mipHeight = 1; mipSize = GetPixelDataSize(mipWidth, mipHeight, image->format); + + if (i < image->mipmaps) continue; + + TRACELOGD("IMAGE: Generating mipmap level: %i (%i x %i) - size: %i - offset: 0x%x", i, mipWidth, mipHeight, mipSize, nextmip); + + ImageResize(&imCopy, mipWidth, mipHeight); // Uses internally Mitchell cubic downscale filter + + memcpy(nextmip, imCopy.data, mipSize); } UnloadImage(imCopy); + + image->mipmaps = mipCount; } else TRACELOG(LOG_WARNING, "IMAGE: Mipmaps already available"); } @@ -4022,7 +3910,6 @@ void ImageDraw(Image *dst, Image src, Rectangle srcRec, Rectangle dstRec, Color if ((dst->data == NULL) || (dst->width == 0) || (dst->height == 0) || (src.data == NULL) || (src.width == 0) || (src.height == 0)) return; - if (dst->mipmaps > 1) TRACELOG(LOG_WARNING, "Image drawing only applied to base mipmap level"); if (dst->format >= PIXELFORMAT_COMPRESSED_DXT1_RGB) TRACELOG(LOG_WARNING, "Image drawing not supported for compressed formats"); else { @@ -4080,13 +3967,21 @@ void ImageDraw(Image *dst, Image src, Rectangle srcRec, Rectangle dstRec, Color // [-] GetPixelColor(): Get Vector4 instead of Color, easier for ColorAlphaBlend() // [ ] Support f32bit channels drawing - // TODO: Support PIXELFORMAT_UNCOMPRESSED_R32, PIXELFORMAT_UNCOMPRESSED_R32G32B32, PIXELFORMAT_UNCOMPRESSED_R32G32B32A32 and 16-bit equivalents + // TODO: Support PIXELFORMAT_UNCOMPRESSED_R32G32B32A32 and PIXELFORMAT_UNCOMPRESSED_R1616B16A16 Color colSrc, colDst, blend; bool blendRequired = true; // Fast path: Avoid blend if source has no alpha to blend - if ((tint.a == 255) && ((srcPtr->format == PIXELFORMAT_UNCOMPRESSED_GRAYSCALE) || (srcPtr->format == PIXELFORMAT_UNCOMPRESSED_R8G8B8) || (srcPtr->format == PIXELFORMAT_UNCOMPRESSED_R5G6B5))) blendRequired = false; + if ((tint.a == 255) && + ((srcPtr->format == PIXELFORMAT_UNCOMPRESSED_GRAYSCALE) || + (srcPtr->format == PIXELFORMAT_UNCOMPRESSED_R5G6B5) || + (srcPtr->format == PIXELFORMAT_UNCOMPRESSED_R8G8B8) || + (srcPtr->format == PIXELFORMAT_UNCOMPRESSED_R32) || + (srcPtr->format == PIXELFORMAT_UNCOMPRESSED_R32G32B32) || + (srcPtr->format == PIXELFORMAT_UNCOMPRESSED_R16) || + (srcPtr->format == PIXELFORMAT_UNCOMPRESSED_R16G16B16))) + blendRequired = false; int strideDst = GetPixelDataSize(dst->width, 1, dst->format); int bytesPerPixelDst = strideDst/(dst->width); @@ -4127,6 +4022,35 @@ void ImageDraw(Image *dst, Image src, Rectangle srcRec, Rectangle dstRec, Color } if (useSrcMod) UnloadImage(srcMod); // Unload source modified image + + if ((dst->mipmaps > 1) && (src.mipmaps > 1)) + { + Image mipmapDst = *dst; + mipmapDst.data = (char *)mipmapDst.data + GetPixelDataSize(mipmapDst.width, mipmapDst.height, mipmapDst.format); + mipmapDst.width /= 2; + mipmapDst.height /= 2; + mipmapDst.mipmaps--; + + Image mipmapSrc = src; + mipmapSrc.data = (char *)mipmapSrc.data + GetPixelDataSize(mipmapSrc.width, mipmapSrc.height, mipmapSrc.format); + mipmapSrc.width /= 2; + mipmapSrc.height /= 2; + mipmapSrc.mipmaps--; + + Rectangle mipmapSrcRec = srcRec; + mipmapSrcRec.width /= 2; + mipmapSrcRec.height /= 2; + mipmapSrcRec.x /= 2; + mipmapSrcRec.y /= 2; + + Rectangle mipmapDstRec = dstRec; + mipmapDstRec.width /= 2; + mipmapDstRec.height /= 2; + mipmapDstRec.x /= 2; + mipmapDstRec.y /= 2; + + ImageDraw(&mipmapDst, mipmapSrc, mipmapSrcRec, mipmapDstRec, tint); + } } } @@ -4208,7 +4132,6 @@ TextureCubemap LoadTextureCubemap(Image image, int layout) { if ((image.width/6) == image.height) { layout = CUBEMAP_LAYOUT_LINE_HORIZONTAL; cubemap.width = image.width/6; } else if ((image.width/4) == (image.height/3)) { layout = CUBEMAP_LAYOUT_CROSS_FOUR_BY_THREE; cubemap.width = image.width/4; } - else if (image.width >= (int)((float)image.height*1.85f)) { layout = CUBEMAP_LAYOUT_PANORAMA; cubemap.width = image.width/4; } } else if (image.height > image.width) { @@ -4222,7 +4145,6 @@ TextureCubemap LoadTextureCubemap(Image image, int layout) if (layout == CUBEMAP_LAYOUT_LINE_HORIZONTAL) cubemap.width = image.width/6; if (layout == CUBEMAP_LAYOUT_CROSS_THREE_BY_FOUR) cubemap.width = image.width/3; if (layout == CUBEMAP_LAYOUT_CROSS_FOUR_BY_THREE) cubemap.width = image.width/4; - if (layout == CUBEMAP_LAYOUT_PANORAMA) cubemap.width = image.width/4; } cubemap.height = cubemap.width; @@ -4241,11 +4163,11 @@ TextureCubemap LoadTextureCubemap(Image image, int layout) { faces = ImageCopy(image); // Image data already follows expected convention } - else if (layout == CUBEMAP_LAYOUT_PANORAMA) + /*else if (layout == CUBEMAP_LAYOUT_PANORAMA) { - // TODO: Convert panorama image to square faces... + // TODO: implement panorama by converting image to square faces... // Ref: https://github.com/denivip/panorama/blob/master/panorama.cpp - } + } */ else { if (layout == CUBEMAP_LAYOUT_LINE_HORIZONTAL) for (int i = 0; i < 6; i++) faceRecs[i].x = (float)size*i; @@ -4272,6 +4194,9 @@ TextureCubemap LoadTextureCubemap(Image image, int layout) faces = GenImageColor(size, size*6, MAGENTA); ImageFormat(&faces, image.format); + ImageMipmaps(&image); + ImageMipmaps(&faces); + // NOTE: Image formatting does not work with compressed textures for (int i = 0; i < 6; i++) ImageDraw(&faces, image, faceRecs[i], (Rectangle){ 0, (float)size*i, (float)size, (float)size }, WHITE); @@ -4279,7 +4204,7 @@ TextureCubemap LoadTextureCubemap(Image image, int layout) // NOTE: Cubemap data is expected to be provided as 6 images in a single data array, // one after the other (that's a vertical image), following convention: +X, -X, +Y, -Y, +Z, -Z - cubemap.id = rlLoadTextureCubemap(faces.data, size, faces.format); + cubemap.id = rlLoadTextureCubemap(faces.data, size, faces.format, faces.mipmaps); if (cubemap.id != 0) { @@ -4335,16 +4260,16 @@ RenderTexture2D LoadRenderTexture(int width, int height) return target; } -// Check if a texture is ready -bool IsTextureReady(Texture2D texture) +// Check if a texture is valid (loaded in GPU) +bool IsTextureValid(Texture2D texture) { bool result = false; - // TODO: Validate maximum texture size supported by GPU? + // TODO: Validate maximum texture size supported by GPU - if ((texture.id > 0) && // Validate OpenGL id - (texture.width > 0) && - (texture.height > 0) && // Validate texture size + if ((texture.id > 0) && // Validate OpenGL id (texture uplaoded to GPU) + (texture.width > 0) && // Validate texture width + (texture.height > 0) && // Validate texture height (texture.format > 0) && // Validate texture pixel format (texture.mipmaps > 0)) result = true; // Validate texture mipmaps (at least 1 for basic mipmap level) @@ -4362,14 +4287,14 @@ void UnloadTexture(Texture2D texture) } } -// Check if a render texture is ready -bool IsRenderTextureReady(RenderTexture2D target) +// Check if a render texture is valid (loaded in GPU) +bool IsRenderTextureValid(RenderTexture2D target) { bool result = false; - if ((target.id > 0) && // Validate OpenGL id - IsTextureReady(target.depth) && // Validate FBO depth texture/renderbuffer - IsTextureReady(target.texture)) result = true; // Validate FBO texture + if ((target.id > 0) && // Validate OpenGL id (loaded on GPU) + IsTextureValid(target.depth) && // Validate FBO depth texture/renderbuffer attachment + IsTextureValid(target.texture)) result = true; // Validate FBO texture attachment return result; } @@ -4561,6 +4486,9 @@ void DrawTexturePro(Texture2D texture, Rectangle source, Rectangle dest, Vector2 if (source.width < 0) { flipX = true; source.width *= -1; } if (source.height < 0) source.y -= source.height; + if (dest.width < 0) dest.width *= -1; + if (dest.height < 0) dest.height *= -1; + Vector2 topLeft = { 0 }; Vector2 topRight = { 0 }; Vector2 bottomLeft = { 0 }; @@ -5178,6 +5106,22 @@ Color ColorAlphaBlend(Color dst, Color src, Color tint) return out; } +// Get color lerp interpolation between two colors, factor [0.0f..1.0f] +Color ColorLerp(Color color1, Color color2, float factor) +{ + Color color = { 0 }; + + if (factor < 0.0f) factor = 0.0f; + else if (factor > 1.0f) factor = 1.0f; + + color.r = (unsigned char)((1.0f - factor)*color1.r + factor*color2.r); + color.g = (unsigned char)((1.0f - factor)*color1.g + factor*color2.g); + color.b = (unsigned char)((1.0f - factor)*color1.b + factor*color2.b); + color.a = (unsigned char)((1.0f - factor)*color1.a + factor*color2.a); + + return color; +} + // Get a Color struct from hexadecimal value Color GetColor(unsigned int hexValue) { @@ -5403,7 +5347,7 @@ int GetPixelDataSize(int width, int height, int format) default: break; } - float bytesPerPixel = (float)bpp/8.0f; + double bytesPerPixel = (double)bpp/8.0; dataSize = (int)(bytesPerPixel*width*height); // Total data size in bytes // Most compressed formats works on 4x4 blocks, diff --git a/src/utils.c b/src/utils.c index fcbdba005..c5d9748d4 100644 --- a/src/utils.c +++ b/src/utils.c @@ -76,7 +76,6 @@ void SetSaveFileDataCallback(SaveFileDataCallback callback) { saveFileData = cal void SetLoadFileTextCallback(LoadFileTextCallback callback) { loadFileText = callback; } // Set custom file text loader void SetSaveFileTextCallback(SaveFileTextCallback callback) { saveFileText = callback; } // Set custom file text saver - #if defined(PLATFORM_ANDROID) static AAssetManager *assetManager = NULL; // Android assets manager pointer static const char *internalDataPath = NULL; // Android internal data path