[rcore] [android] fixed gesture system not reporting GESTURE_NONE

in android gesture system is not reporting GESTURE_NONE, specified in the issue https://github.com/raysan5/raylib/issues/5010 so, automatically GESTURE_SWIPE, TAP, DOUBLE_TAP, also will not be reported. in this commit it is fixed.
This commit is contained in:
Padmadev D 2025-12-29 09:34:37 +05:30 committed by GitHub
parent 8f8346048c
commit 219de139c5
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@ -84,6 +84,7 @@ 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
//----------------------------------------------------------------------------------
@ -267,8 +268,6 @@ static void AndroidCommandCallback(struct android_app *app, int32_t cmd);
static int32_t AndroidInputCallback(struct android_app *app, AInputEvent *event); // Process Android inputs
static GamepadButton AndroidTranslateGamepadButton(int button); // Map Android gamepad button to raylib gamepad button
static void SetupFramebuffer(int width, int height); // Setup main framebuffer (required by InitPlatform())
//----------------------------------------------------------------------------------
// Module Functions Declaration
//----------------------------------------------------------------------------------
@ -359,17 +358,13 @@ void RestoreWindow(void)
// Set window configuration state using flags
void SetWindowState(unsigned int flags)
{
if (!CORE.Window.ready) TRACELOG(LOG_WARNING, "WINDOW: SetWindowState does nothing before window initialization, Use \"SetConfigFlags\" instead");
// State change: FLAG_WINDOW_ALWAYS_RUN
if (FLAG_IS_SET(flags, FLAG_WINDOW_ALWAYS_RUN)) FLAG_SET(CORE.Window.flags, FLAG_WINDOW_ALWAYS_RUN);
TRACELOG(LOG_WARNING, "SetWindowState() not available on target platform");
}
// Clear window configuration state flags
void ClearWindowState(unsigned int flags)
{
// State change: FLAG_WINDOW_ALWAYS_RUN
if (FLAG_IS_SET(flags, FLAG_WINDOW_ALWAYS_RUN)) FLAG_CLEAR(CORE.Window.flags, FLAG_WINDOW_ALWAYS_RUN);
TRACELOG(LOG_WARNING, "ClearWindowState() not available on target platform");
}
// Set icon for window
@ -607,7 +602,7 @@ void DisableCursor(void)
// Swap back buffer with front buffer (screen drawing)
void SwapScreenBuffer(void)
{
if (platform.surface != EGL_NO_SURFACE) eglSwapBuffers(platform.device, platform.surface);
eglSwapBuffers(platform.device, platform.surface);
}
//----------------------------------------------------------------------------------
@ -628,9 +623,10 @@ double GetTime(void)
}
// Open URL with default system browser (if available)
// NOTE: This function is only safe to use if you control the URL given
// A user could craft a malicious string performing another action
// Only call this function yourself not with user input or make sure to check the string yourself
// NOTE: This function is only safe to use if you control the URL given.
// A user could craft a malicious string performing another action.
// Only call this function yourself not with user input or make sure to check the string yourself.
// Ref: https://github.com/raysan5/raylib/issues/686
void OpenURL(const char *url)
{
// Security check to (partially) avoid malicious code
@ -691,7 +687,7 @@ void SetMouseCursor(int cursor)
TRACELOG(LOG_WARNING, "SetMouseCursor() not implemented on target platform");
}
// Get physical key name
// Get physical key name.
const char *GetKeyName(int key)
{
TRACELOG(LOG_WARNING, "GetKeyName() not implemented on target platform");
@ -746,15 +742,15 @@ void PollInputEvents(void)
int pollEvents = 0;
// 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) and always run flag is not set (FLAG_WINDOW_ALWAYS_RUN)
while ((pollResult = ALooper_pollOnce((platform.appEnabled || FLAG_IS_SET(CORE.Window.flags, FLAG_WINDOW_ALWAYS_RUN))? 0 : -1, NULL, &pollEvents, ((void **)&platform.source)) > ALOOPER_POLL_TIMEOUT))
// NOTE: Activity is paused if not enabled (platform.appEnabled)
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: Allow closing the window in case a configuration change happened
// 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
// Android OS to relaunch the activity.
if (platform.app->destroyRequested != 0)
{
CORE.Window.shouldClose = true;
@ -800,10 +796,10 @@ int InitPlatform(void)
//AConfiguration_getScreenLong(platform.app->config);
// Set some default window flags
FLAG_CLEAR(CORE.Window.flags, FLAG_WINDOW_HIDDEN); // false
FLAG_CLEAR(CORE.Window.flags, FLAG_WINDOW_MINIMIZED); // false
FLAG_SET(CORE.Window.flags, FLAG_WINDOW_MAXIMIZED); // true
FLAG_CLEAR(CORE.Window.flags, FLAG_WINDOW_UNFOCUSED); // false
CORE.Window.flags &= ~FLAG_WINDOW_HIDDEN; // false
CORE.Window.flags &= ~FLAG_WINDOW_MINIMIZED; // false
CORE.Window.flags |= FLAG_WINDOW_MAXIMIZED; // true
CORE.Window.flags &= ~FLAG_WINDOW_UNFOCUSED; // false
//----------------------------------------------------------------------------
// Initialize App command system
@ -833,13 +829,13 @@ int InitPlatform(void)
// Wait for window to be initialized (display and context)
while (!CORE.Window.ready)
{
// Process events until we reach TIMEOUT, which indicates no more events queued
// 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: It's highly likely destroyRequested will never be non-zero at the start of the activity lifecycle
// 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;
}
}
@ -873,9 +869,8 @@ void ClosePlatform(void)
platform.device = EGL_NO_DISPLAY;
}
// NOTE: Reset global state in case the activity is being relaunched
if (platform.app->destroyRequested != 0)
{
// NOTE: Reset global state in case the activity is being relaunched.
if (platform.app->destroyRequested != 0) {
CORE = (CoreData){0};
platform = (PlatformData){0};
}
@ -887,11 +882,12 @@ void ClosePlatform(void)
// NOTE: returns false in case graphic device could not be created
static int InitGraphicsDevice(void)
{
FLAG_SET(CORE.Window.flags, FLAG_FULLSCREEN_MODE);
CORE.Window.fullscreen = true;
CORE.Window.flags |= FLAG_FULLSCREEN_MODE;
EGLint samples = 0;
EGLint sampleBuffer = 0;
if (FLAG_IS_SET(CORE.Window.flags, FLAG_MSAA_4X_HINT))
if (CORE.Window.flags & FLAG_MSAA_4X_HINT)
{
samples = 4;
sampleBuffer = 1;
@ -929,7 +925,7 @@ static int InitGraphicsDevice(void)
// Initialize the EGL device connection
if (eglInitialize(platform.device, NULL, NULL) == EGL_FALSE)
{
// If all of the calls to eglInitialize returned EGL_FALSE then an error has occurred
// If all of the calls to eglInitialize returned EGL_FALSE then an error has occurred.
TRACELOG(LOG_WARNING, "DISPLAY: Failed to initialize EGL device");
return -1;
}
@ -996,7 +992,7 @@ static int InitGraphicsDevice(void)
CORE.Window.ready = true;
if (FLAG_IS_SET(CORE.Window.flags, FLAG_WINDOW_MINIMIZED)) MinimizeWindow();
if ((CORE.Window.flags & FLAG_WINDOW_MINIMIZED) > 0) MinimizeWindow();
return 0;
}
@ -1046,6 +1042,7 @@ 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
@ -1062,7 +1059,7 @@ static void AndroidCommandCallback(struct android_app *app, int32_t cmd)
// 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 (FLAG_IS_SET(CORE.Window.flags, FLAG_MSAA_4X_HINT))
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 });
@ -1084,26 +1081,41 @@ static void AndroidCommandCallback(struct android_app *app, int32_t cmd)
// Initialize random seed
SetRandomSeed((unsigned int)time(NULL));
// TODO: GPU assets reload in case of lost focus (lost context)
// NOTE: This problem has been solved just unbinding and rebinding context from display
/*
if (assetsReloadRequired)
{
for (int i = 0; i < assetCount; i++)
{
// TODO: Unload old asset if required
// Load texture again to pointed texture
(*textureAsset + i) = LoadTexture(assetPath[i]);
}
}
*/
}
}
} break;
case APP_CMD_GAINED_FOCUS:
{
platform.appEnabled = true;
FLAG_CLEAR(CORE.Window.flags, FLAG_WINDOW_UNFOCUSED);
CORE.Window.flags &= ~FLAG_WINDOW_UNFOCUSED;
//ResumeMusicStream();
} break;
case APP_CMD_PAUSE: break;
case APP_CMD_LOST_FOCUS:
{
platform.appEnabled = false;
FLAG_SET(CORE.Window.flags, FLAG_WINDOW_UNFOCUSED);
CORE.Window.flags |= FLAG_WINDOW_UNFOCUSED;
//PauseMusicStream();
} break;
case APP_CMD_TERM_WINDOW:
{
// Detach OpenGL context and destroy display surface
// NOTE 1: This case is used when the user exits the app without closing it, context is detached to ensure everything is recoverable upon resuming
// NOTE 1: This case is used when the user exits the app without closing it. We detach the context to ensure everything is recoverable upon resuming.
// NOTE 2: Detaching context before destroying display surface avoids losing our resources (textures, shaders, VBOs...)
// NOTE 3: In some cases (too many context loaded), OS could unload context automatically... :(
if (platform.device != EGL_NO_DISPLAY)
@ -1167,16 +1179,16 @@ static GamepadButton AndroidTranslateGamepadButton(int button)
static int32_t AndroidInputCallback(struct android_app *app, AInputEvent *event)
{
// If additional inputs are required check:
// REF: https://developer.android.com/ndk/reference/group/input
// REF: https://developer.android.com/training/game-controllers/controller-input
// https://developer.android.com/ndk/reference/group/input
// https://developer.android.com/training/game-controllers/controller-input
int type = AInputEvent_getType(event);
int source = AInputEvent_getSource(event);
if (type == AINPUT_EVENT_TYPE_MOTION)
{
if (FLAG_IS_SET(source, AINPUT_SOURCE_JOYSTICK) ||
FLAG_IS_SET(source, AINPUT_SOURCE_GAMEPAD))
if (((source & AINPUT_SOURCE_JOYSTICK) == AINPUT_SOURCE_JOYSTICK) ||
((source & AINPUT_SOURCE_GAMEPAD) == AINPUT_SOURCE_GAMEPAD))
{
// For now we'll assume a single gamepad which we "detect" on its input event
CORE.Input.Gamepad.ready[0] = true;
@ -1239,11 +1251,8 @@ static int32_t AndroidInputCallback(struct android_app *app, AInputEvent *event)
//int32_t AKeyEvent_getMetaState(event);
// Handle gamepad button presses and releases
// NOTE: Skip gamepad handling if this is a keyboard event, as some devices
// report both AINPUT_SOURCE_KEYBOARD and AINPUT_SOURCE_GAMEPAD flags
if ((FLAG_IS_SET(source, AINPUT_SOURCE_JOYSTICK) ||
FLAG_IS_SET(source, AINPUT_SOURCE_GAMEPAD)) &&
!FLAG_IS_SET(source, AINPUT_SOURCE_KEYBOARD))
if (((source & AINPUT_SOURCE_JOYSTICK) == AINPUT_SOURCE_JOYSTICK) ||
((source & AINPUT_SOURCE_GAMEPAD) == AINPUT_SOURCE_GAMEPAD))
{
// For now we'll assume a single gamepad which we "detect" on its input event
CORE.Input.Gamepad.ready[0] = true;
@ -1281,7 +1290,7 @@ static int32_t AndroidInputCallback(struct android_app *app, AInputEvent *event)
{
// Let the OS handle input to avoid app stuck. Behaviour: CMD_PAUSE -> CMD_SAVE_STATE -> CMD_STOP -> CMD_CONFIG_CHANGED -> CMD_LOST_FOCUS
// Resuming Behaviour: CMD_START -> CMD_RESUME -> CMD_CONFIG_CHANGED -> CMD_CONFIG_CHANGED -> CMD_GAINED_FOCUS
// It seems like locking mobile, screen size (CMD_CONFIG_CHANGED) is affected
// It seems like locking mobile, screen size (CMD_CONFIG_CHANGED) is affected.
// NOTE: AndroidManifest.xml must have <activity android:configChanges="orientation|keyboardHidden|screenSize" >
// Before that change, activity was calling CMD_TERM_WINDOW and CMD_DESTROY when locking mobile, so that was not a normal behaviour
return 0;
@ -1336,30 +1345,17 @@ static int32_t AndroidInputCallback(struct android_app *app, AInputEvent *event)
}
}
if ((flags == AMOTION_EVENT_ACTION_POINTER_UP) || (flags == AMOTION_EVENT_ACTION_UP) || (flags == AMOTION_EVENT_ACTION_HOVER_EXIT))
{
// One of the touchpoints is released, remove it from touch point arrays
if (flags == AMOTION_EVENT_ACTION_HOVER_EXIT)
{
// If the touchPoint is hover, remove it from hoverPoints
for (int i = 0; i < MAX_TOUCH_POINTS; i++)
{
if (touchRaw.hoverPoints[i] == touchRaw.pointId[pointerIndex])
{
touchRaw.hoverPoints[i] = -1;
break;
}
}
}
for (int i = pointerIndex; (i < touchRaw.pointCount - 1) && (i < MAX_TOUCH_POINTS - 1); i++)
{
touchRaw.pointId[i] = touchRaw.pointId[i+1];
touchRaw.position[i] = touchRaw.position[i+1];
}
touchRaw.pointCount--;
}
#if defined(SUPPORT_GESTURES_SYSTEM)
GestureEvent gestureEvent = { 0 };
gestureEvent.pointCount = 0;
// Register touch actions
if (flags == AMOTION_EVENT_ACTION_DOWN) gestureEvent.touchAction = TOUCH_ACTION_DOWN;
else if (flags == AMOTION_EVENT_ACTION_UP) gestureEvent.touchAction = TOUCH_ACTION_UP;
else if (flags == AMOTION_EVENT_ACTION_MOVE) gestureEvent.touchAction = TOUCH_ACTION_MOVE;
else if (flags == AMOTION_EVENT_ACTION_CANCEL) gestureEvent.touchAction = TOUCH_ACTION_CANCEL;
int pointCount = 0;
for (int i = 0; (i < touchRaw.pointCount) && (i < MAX_TOUCH_POINTS); i++)
{
// If the touchPoint is hover, Ignore it
@ -1375,44 +1371,77 @@ static int32_t AndroidInputCallback(struct android_app *app, AInputEvent *event)
}
if (hover) continue;
CORE.Input.Touch.pointId[pointCount] = touchRaw.pointId[i];
CORE.Input.Touch.position[pointCount] = touchRaw.position[i];
pointCount++;
}
CORE.Input.Touch.pointCount = pointCount;
#if defined(SUPPORT_GESTURES_SYSTEM)
GestureEvent gestureEvent = { 0 };
gestureEvent.pointCount = CORE.Input.Touch.pointCount;
// Register touch actions
if (flags == AMOTION_EVENT_ACTION_DOWN) gestureEvent.touchAction = TOUCH_ACTION_DOWN;
else if (flags == AMOTION_EVENT_ACTION_UP) gestureEvent.touchAction = TOUCH_ACTION_UP;
else if (flags == AMOTION_EVENT_ACTION_MOVE) gestureEvent.touchAction = TOUCH_ACTION_MOVE;
else if (flags == AMOTION_EVENT_ACTION_CANCEL) gestureEvent.touchAction = TOUCH_ACTION_CANCEL;
for (int i = 0; (i < gestureEvent.pointCount) && (i < MAX_TOUCH_POINTS); i++)
{
gestureEvent.pointId[i] = CORE.Input.Touch.pointId[i];
gestureEvent.position[i] = CORE.Input.Touch.position[i];
gestureEvent.position[i].x /= (float)GetScreenWidth();
gestureEvent.position[i].y /= (float)GetScreenHeight();
gestureEvent.pointId[gestureEvent.pointCount] = touchRaw.pointId[i];
gestureEvent.position[gestureEvent.pointCount] = touchRaw.position[i];
gestureEvent.position[gestureEvent.pointCount].x /= (float)GetScreenWidth();
gestureEvent.position[gestureEvent.pointCount].y /= (float)GetScreenHeight();
gestureEvent.pointCount++;
}
// Gesture data is sent to gestures system for processing
ProcessGestureEvent(gestureEvent);
#endif
if (flags == AMOTION_EVENT_ACTION_HOVER_EXIT)
{
// Hover exited. So, remove it from hoverPoints
for (int i = 0; i < MAX_TOUCH_POINTS; i++)
{
if (touchRaw.hoverPoints[i] == touchRaw.pointId[pointerIndex])
{
touchRaw.hoverPoints[i] = -1;
break;
}
}
}
if ((flags == AMOTION_EVENT_ACTION_POINTER_UP) || (flags == AMOTION_EVENT_ACTION_UP))
{
// One of the touchpoints is released, remove it from touch point arrays
for (int i = pointerIndex; (i < touchRaw.pointCount - 1) && (i < MAX_TOUCH_POINTS - 1); i++)
{
touchRaw.pointId[i] = touchRaw.pointId[i+1];
touchRaw.position[i] = touchRaw.position[i+1];
}
touchRaw.pointCount--;
}
CORE.Input.Touch.pointCount = 0;
for (int i = 0; (i < touchRaw.pointCount) && (i < MAX_TOUCH_POINTS); i++)
{
// If the touchPoint is hover, Ignore it
bool hover = false;
for (int j = 0; j < MAX_TOUCH_POINTS; j++)
{
// Check if the touchPoint is in hoverPointers
if (touchRaw.hoverPoints[j] == touchRaw.pointId[i])
{
hover = true;
break;
}
}
if (hover) continue;
CORE.Input.Touch.pointId[CORE.Input.Touch.pointCount] = touchRaw.pointId[i];
CORE.Input.Touch.position[CORE.Input.Touch.pointCount] = touchRaw.position[i];
CORE.Input.Touch.pointCount++;
}
// When all touchpoints are tapped and released really quickly, this event is generated
if (flags == AMOTION_EVENT_ACTION_CANCEL) CORE.Input.Touch.pointCount = 0;
if (CORE.Input.Touch.pointCount > 0) CORE.Input.Touch.currentTouchState[MOUSE_BUTTON_LEFT] = 1;
else CORE.Input.Touch.currentTouchState[MOUSE_BUTTON_LEFT] = 0;
// Stores the previous position of touch[0] only while it's active to calculate the delta
if (flags == AMOTION_EVENT_ACTION_MOVE) CORE.Input.Mouse.previousPosition = CORE.Input.Mouse.currentPosition;
else CORE.Input.Mouse.previousPosition = CORE.Input.Touch.position[0];
// Stores the previous position of touch[0] only while it's active to calculate the delta.
if (flags == AMOTION_EVENT_ACTION_MOVE)
{
CORE.Input.Mouse.previousPosition = CORE.Input.Mouse.currentPosition;
}
else
{
CORE.Input.Mouse.previousPosition = CORE.Input.Touch.position[0];
}
// Map touch[0] as mouse input for convenience
CORE.Input.Mouse.currentPosition = CORE.Input.Touch.position[0];
@ -1421,82 +1450,4 @@ static int32_t AndroidInputCallback(struct android_app *app, AInputEvent *event)
return 0;
}
// Compute framebuffer size relative to screen size and display size
// NOTE: Global variables CORE.Window.render.width/CORE.Window.render.height and CORE.Window.renderOffset.x/CORE.Window.renderOffset.y can be modified
static void SetupFramebuffer(int width, int height)
{
// Calculate CORE.Window.render.width and CORE.Window.render.height, we have the display size (input params) and the desired screen size (global var)
if ((CORE.Window.screen.width > CORE.Window.display.width) || (CORE.Window.screen.height > CORE.Window.display.height))
{
TRACELOG(LOG_WARNING, "DISPLAY: Downscaling required: Screen size (%ix%i) is bigger than display size (%ix%i)", CORE.Window.screen.width, CORE.Window.screen.height, CORE.Window.display.width, CORE.Window.display.height);
// Downscaling to fit display with border-bars
float widthRatio = (float)CORE.Window.display.width/(float)CORE.Window.screen.width;
float heightRatio = (float)CORE.Window.display.height/(float)CORE.Window.screen.height;
if (widthRatio <= heightRatio)
{
CORE.Window.render.width = CORE.Window.display.width;
CORE.Window.render.height = (int)round((float)CORE.Window.screen.height*widthRatio);
CORE.Window.renderOffset.x = 0;
CORE.Window.renderOffset.y = (CORE.Window.display.height - CORE.Window.render.height);
}
else
{
CORE.Window.render.width = (int)round((float)CORE.Window.screen.width*heightRatio);
CORE.Window.render.height = CORE.Window.display.height;
CORE.Window.renderOffset.x = (CORE.Window.display.width - CORE.Window.render.width);
CORE.Window.renderOffset.y = 0;
}
// Screen scaling required
float scaleRatio = (float)CORE.Window.render.width/(float)CORE.Window.screen.width;
CORE.Window.screenScale = MatrixScale(scaleRatio, scaleRatio, 1.0f);
// NOTE: We render to full display resolution!
// We just need to calculate above parameters for downscale matrix and offsets
CORE.Window.render.width = CORE.Window.display.width;
CORE.Window.render.height = CORE.Window.display.height;
TRACELOG(LOG_WARNING, "DISPLAY: Downscale matrix generated, content will be rendered at (%ix%i)", CORE.Window.render.width, CORE.Window.render.height);
}
else if ((CORE.Window.screen.width < CORE.Window.display.width) || (CORE.Window.screen.height < CORE.Window.display.height))
{
// Required screen size is smaller than display size
TRACELOG(LOG_INFO, "DISPLAY: Upscaling required: Screen size (%ix%i) smaller than display size (%ix%i)", CORE.Window.screen.width, CORE.Window.screen.height, CORE.Window.display.width, CORE.Window.display.height);
if ((CORE.Window.screen.width == 0) || (CORE.Window.screen.height == 0))
{
CORE.Window.screen.width = CORE.Window.display.width;
CORE.Window.screen.height = CORE.Window.display.height;
}
// Upscaling to fit display with border-bars
float displayRatio = (float)CORE.Window.display.width/(float)CORE.Window.display.height;
float screenRatio = (float)CORE.Window.screen.width/(float)CORE.Window.screen.height;
if (displayRatio <= screenRatio)
{
CORE.Window.render.width = CORE.Window.screen.width;
CORE.Window.render.height = (int)round((float)CORE.Window.screen.width/displayRatio);
CORE.Window.renderOffset.x = 0;
CORE.Window.renderOffset.y = (CORE.Window.render.height - CORE.Window.screen.height);
}
else
{
CORE.Window.render.width = (int)round((float)CORE.Window.screen.height*displayRatio);
CORE.Window.render.height = CORE.Window.screen.height;
CORE.Window.renderOffset.x = (CORE.Window.render.width - CORE.Window.screen.width);
CORE.Window.renderOffset.y = 0;
}
}
else
{
CORE.Window.render.width = CORE.Window.screen.width;
CORE.Window.render.height = CORE.Window.screen.height;
CORE.Window.renderOffset.x = 0;
CORE.Window.renderOffset.y = 0;
}
}
// EOF