upgrade to libremidi 5.1, raylib and raygui latest
This commit is contained in:
+141
-123
@@ -1,22 +1,22 @@
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/**********************************************************************************************
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*
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* raylib v5.5-dev - A simple and easy-to-use library to enjoy videogames programming (www.raylib.com)
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* raylib v5.6-dev - A simple and easy-to-use library to enjoy videogames programming (www.raylib.com)
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*
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* FEATURES:
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* - NO external dependencies, all required libraries included with raylib
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* - Multiplatform: Windows, Linux, FreeBSD, OpenBSD, NetBSD, DragonFly,
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* MacOS, Haiku, Android, Raspberry Pi, DRM native, HTML5.
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* - Written in plain C code (C99) in PascalCase/camelCase notation
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* - Hardware accelerated with OpenGL (1.1, 2.1, 3.3, 4.3 or ES2 - choose at compile)
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* - Hardware accelerated with OpenGL (1.1, 2.1, 3.3, 4.3, ES2, ES3 - choose at compile)
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* - Unique OpenGL abstraction layer (usable as standalone module): [rlgl]
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* - Multiple Fonts formats supported (TTF, XNA fonts, AngelCode fonts)
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* - Multiple Fonts formats supported (TTF, OTF, FNT, BDF, Sprite fonts)
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* - Outstanding texture formats support, including compressed formats (DXT, ETC, ASTC)
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* - Full 3d support for 3d Shapes, Models, Billboards, Heightmaps and more!
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* - Flexible Materials system, supporting classic maps and PBR maps
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* - Animated 3D models supported (skeletal bones animation) (IQM)
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* - Animated 3D models supported (skeletal bones animation) (IQM, M3D, GLTF)
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* - Shaders support, including Model shaders and Postprocessing shaders
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* - Powerful math module for Vector, Matrix and Quaternion operations: [raymath]
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* - Audio loading and playing with streaming support (WAV, OGG, MP3, FLAC, XM, MOD)
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* - Audio loading and playing with streaming support (WAV, OGG, MP3, FLAC, QOA, XM, MOD)
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* - VR stereo rendering with configurable HMD device parameters
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* - Bindings to multiple programming languages available!
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*
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@@ -27,29 +27,35 @@
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* - One default RenderBatch is loaded on rlglInit()->rlLoadRenderBatch() [rlgl] (OpenGL 3.3 or ES2)
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*
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* DEPENDENCIES (included):
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* [rcore] rglfw (Camilla Löwy - github.com/glfw/glfw) for window/context management and input (PLATFORM_DESKTOP)
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* [rlgl] glad (David Herberth - github.com/Dav1dde/glad) for OpenGL 3.3 extensions loading (PLATFORM_DESKTOP)
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* [rcore][GLFW] rglfw (Camilla Löwy - github.com/glfw/glfw) for window/context management and input
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* [rcore][RGFW] rgfw (ColleagueRiley - github.com/ColleagueRiley/RGFW) for window/context management and input
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* [rlgl] glad/glad_gles2 (David Herberth - github.com/Dav1dde/glad) for OpenGL 3.3 extensions loading
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* [raudio] miniaudio (David Reid - github.com/mackron/miniaudio) for audio device/context management
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*
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* OPTIONAL DEPENDENCIES (included):
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* [rcore] msf_gif (Miles Fogle) for GIF recording
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* [rcore] sinfl (Micha Mettke) for DEFLATE decompression algorithm
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* [rcore] sdefl (Micha Mettke) for DEFLATE compression algorithm
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* [rcore] rprand (Ramon Snatamaria) for pseudo-random numbers generation
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* [rtextures] qoi (Dominic Szablewski - https://phoboslab.org) for QOI image manage
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* [rtextures] stb_image (Sean Barret) for images loading (BMP, TGA, PNG, JPEG, HDR...)
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* [rtextures] stb_image_write (Sean Barret) for image writing (BMP, TGA, PNG, JPG)
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* [rtextures] stb_image_resize (Sean Barret) for image resizing algorithms
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* [rtextures] stb_image_resize2 (Sean Barret) for image resizing algorithms
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* [rtextures] stb_perlin (Sean Barret) for Perlin Noise image generation
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* [rtext] stb_truetype (Sean Barret) for ttf fonts loading
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* [rtext] stb_rect_pack (Sean Barret) for rectangles packing
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* [rmodels] par_shapes (Philip Rideout) for parametric 3d shapes generation
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* [rmodels] tinyobj_loader_c (Syoyo Fujita) for models loading (OBJ, MTL)
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* [rmodels] cgltf (Johannes Kuhlmann) for models loading (glTF)
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* [rmodels] Model3D (bzt) for models loading (M3D, https://bztsrc.gitlab.io/model3d)
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* [rmodels] m3d (bzt) for models loading (M3D, https://bztsrc.gitlab.io/model3d)
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* [rmodels] vox_loader (Johann Nadalutti) for models loading (VOX)
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* [raudio] dr_wav (David Reid) for WAV audio file loading
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* [raudio] dr_flac (David Reid) for FLAC audio file loading
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* [raudio] dr_mp3 (David Reid) for MP3 audio file loading
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* [raudio] stb_vorbis (Sean Barret) for OGG audio loading
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* [raudio] jar_xm (Joshua Reisenauer) for XM audio module loading
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* [raudio] jar_mod (Joshua Reisenauer) for MOD audio module loading
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* [raudio] qoa (Dominic Szablewski - https://phoboslab.org) for QOA audio manage
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*
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*
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* LICENSE: zlib/libpng
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@@ -57,7 +63,7 @@
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* raylib is licensed under an unmodified zlib/libpng license, which is an OSI-certified,
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* BSD-like license that allows static linking with closed source software:
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*
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* Copyright (c) 2013-2024 Ramon Santamaria (@raysan5)
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* Copyright (c) 2013-2025 Ramon Santamaria (@raysan5)
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*
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* This software is provided "as-is", without any express or implied warranty. In no event
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* will the authors be held liable for any damages arising from the use of this software.
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@@ -82,9 +88,9 @@
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#include <stdarg.h> // Required for: va_list - Only used by TraceLogCallback
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#define RAYLIB_VERSION_MAJOR 5
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#define RAYLIB_VERSION_MINOR 5
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#define RAYLIB_VERSION_MINOR 6
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#define RAYLIB_VERSION_PATCH 0
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#define RAYLIB_VERSION "5.5-dev"
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#define RAYLIB_VERSION "5.6-dev"
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// Function specifiers in case library is build/used as a shared library
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// NOTE: Microsoft specifiers to tell compiler that symbols are imported/exported from a .dll
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@@ -737,7 +743,7 @@ typedef enum {
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GAMEPAD_BUTTON_RIGHT_THUMB // Gamepad joystick pressed button right
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} GamepadButton;
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// Gamepad axis
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// Gamepad axes
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typedef enum {
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GAMEPAD_AXIS_LEFT_X = 0, // Gamepad left stick X axis
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GAMEPAD_AXIS_LEFT_Y = 1, // Gamepad left stick Y axis
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@@ -795,7 +801,8 @@ typedef enum {
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SHADER_LOC_MAP_BRDF, // Shader location: sampler2d texture: brdf
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SHADER_LOC_VERTEX_BONEIDS, // Shader location: vertex attribute: boneIds
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SHADER_LOC_VERTEX_BONEWEIGHTS, // Shader location: vertex attribute: boneWeights
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SHADER_LOC_BONE_MATRICES // Shader location: array of matrices uniform: boneMatrices
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SHADER_LOC_BONE_MATRICES, // Shader location: array of matrices uniform: boneMatrices
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SHADER_LOC_VERTEX_INSTANCE_TX // Shader location: vertex attribute: instanceTransform
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} ShaderLocationIndex;
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#define SHADER_LOC_MAP_DIFFUSE SHADER_LOC_MAP_ALBEDO
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@@ -811,6 +818,10 @@ typedef enum {
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SHADER_UNIFORM_IVEC2, // Shader uniform type: ivec2 (2 int)
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SHADER_UNIFORM_IVEC3, // Shader uniform type: ivec3 (3 int)
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SHADER_UNIFORM_IVEC4, // Shader uniform type: ivec4 (4 int)
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SHADER_UNIFORM_UINT, // Shader uniform type: unsigned int
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SHADER_UNIFORM_UIVEC2, // Shader uniform type: uivec2 (2 unsigned int)
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SHADER_UNIFORM_UIVEC3, // Shader uniform type: uivec3 (3 unsigned int)
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SHADER_UNIFORM_UIVEC4, // Shader uniform type: uivec4 (4 unsigned int)
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SHADER_UNIFORM_SAMPLER2D // Shader uniform type: sampler2d
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} ShaderUniformDataType;
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@@ -877,8 +888,7 @@ typedef enum {
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CUBEMAP_LAYOUT_LINE_VERTICAL, // Layout is defined by a vertical line with faces
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CUBEMAP_LAYOUT_LINE_HORIZONTAL, // Layout is defined by a horizontal line with faces
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CUBEMAP_LAYOUT_CROSS_THREE_BY_FOUR, // Layout is defined by a 3x4 cross with cubemap faces
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CUBEMAP_LAYOUT_CROSS_FOUR_BY_THREE, // Layout is defined by a 4x3 cross with cubemap faces
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CUBEMAP_LAYOUT_PANORAMA // Layout is defined by a panorama image (equirrectangular map)
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CUBEMAP_LAYOUT_CROSS_FOUR_BY_THREE // Layout is defined by a 4x3 cross with cubemap faces
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} CubemapLayout;
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// Font type, defines generation method
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@@ -944,7 +954,7 @@ typedef void (*TraceLogCallback)(int logLevel, const char *text, va_list args);
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typedef unsigned char *(*LoadFileDataCallback)(const char *fileName, int *dataSize); // FileIO: Load binary data
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typedef bool (*SaveFileDataCallback)(const char *fileName, void *data, int dataSize); // FileIO: Save binary data
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typedef char *(*LoadFileTextCallback)(const char *fileName); // FileIO: Load text data
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typedef bool (*SaveFileTextCallback)(const char *fileName, char *text); // FileIO: Save text data
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typedef bool (*SaveFileTextCallback)(const char *fileName, const char *text); // FileIO: Save text data
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//------------------------------------------------------------------------------------
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// Global Variables Definition
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@@ -965,36 +975,36 @@ RLAPI void CloseWindow(void); // Close windo
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RLAPI bool WindowShouldClose(void); // Check if application should close (KEY_ESCAPE pressed or windows close icon clicked)
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RLAPI bool IsWindowReady(void); // Check if window has been initialized successfully
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RLAPI bool IsWindowFullscreen(void); // Check if window is currently fullscreen
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RLAPI bool IsWindowHidden(void); // Check if window is currently hidden (only PLATFORM_DESKTOP)
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RLAPI bool IsWindowMinimized(void); // Check if window is currently minimized (only PLATFORM_DESKTOP)
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RLAPI bool IsWindowMaximized(void); // Check if window is currently maximized (only PLATFORM_DESKTOP)
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RLAPI bool IsWindowFocused(void); // Check if window is currently focused (only PLATFORM_DESKTOP)
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RLAPI bool IsWindowHidden(void); // Check if window is currently hidden
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RLAPI bool IsWindowMinimized(void); // Check if window is currently minimized
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RLAPI bool IsWindowMaximized(void); // Check if window is currently maximized
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RLAPI bool IsWindowFocused(void); // Check if window is currently focused
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RLAPI bool IsWindowResized(void); // Check if window has been resized last frame
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RLAPI bool IsWindowState(unsigned int flag); // Check if one specific window flag is enabled
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RLAPI void SetWindowState(unsigned int flags); // Set window configuration state using flags (only PLATFORM_DESKTOP)
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RLAPI void SetWindowState(unsigned int flags); // Set window configuration state using flags
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RLAPI void ClearWindowState(unsigned int flags); // Clear window configuration state flags
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RLAPI void ToggleFullscreen(void); // Toggle window state: fullscreen/windowed [resizes monitor to match window resolution] (only PLATFORM_DESKTOP)
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RLAPI void ToggleBorderlessWindowed(void); // Toggle window state: borderless windowed [resizes window to match monitor resolution] (only PLATFORM_DESKTOP)
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RLAPI void MaximizeWindow(void); // Set window state: maximized, if resizable (only PLATFORM_DESKTOP)
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RLAPI void MinimizeWindow(void); // Set window state: minimized, if resizable (only PLATFORM_DESKTOP)
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RLAPI void RestoreWindow(void); // Set window state: not minimized/maximized (only PLATFORM_DESKTOP)
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RLAPI void SetWindowIcon(Image image); // Set icon for window (single image, RGBA 32bit, only PLATFORM_DESKTOP)
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RLAPI void SetWindowIcons(Image *images, int count); // Set icon for window (multiple images, RGBA 32bit, only PLATFORM_DESKTOP)
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RLAPI void SetWindowTitle(const char *title); // Set title for window (only PLATFORM_DESKTOP and PLATFORM_WEB)
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RLAPI void SetWindowPosition(int x, int y); // Set window position on screen (only PLATFORM_DESKTOP)
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RLAPI void ToggleFullscreen(void); // Toggle window state: fullscreen/windowed, resizes monitor to match window resolution
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RLAPI void ToggleBorderlessWindowed(void); // Toggle window state: borderless windowed, resizes window to match monitor resolution
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RLAPI void MaximizeWindow(void); // Set window state: maximized, if resizable
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RLAPI void MinimizeWindow(void); // Set window state: minimized, if resizable
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RLAPI void RestoreWindow(void); // Restore window from being minimized/maximized
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RLAPI void SetWindowIcon(Image image); // Set icon for window (single image, RGBA 32bit)
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RLAPI void SetWindowIcons(Image *images, int count); // Set icon for window (multiple images, RGBA 32bit)
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RLAPI void SetWindowTitle(const char *title); // Set title for window
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RLAPI void SetWindowPosition(int x, int y); // Set window position on screen
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RLAPI void SetWindowMonitor(int monitor); // Set monitor for the current window
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RLAPI void SetWindowMinSize(int width, int height); // Set window minimum dimensions (for FLAG_WINDOW_RESIZABLE)
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RLAPI void SetWindowMaxSize(int width, int height); // Set window maximum dimensions (for FLAG_WINDOW_RESIZABLE)
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RLAPI void SetWindowSize(int width, int height); // Set window dimensions
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RLAPI void SetWindowOpacity(float opacity); // Set window opacity [0.0f..1.0f] (only PLATFORM_DESKTOP)
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RLAPI void SetWindowFocused(void); // Set window focused (only PLATFORM_DESKTOP)
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RLAPI void SetWindowOpacity(float opacity); // Set window opacity [0.0f..1.0f]
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RLAPI void SetWindowFocused(void); // Set window focused
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RLAPI void *GetWindowHandle(void); // Get native window handle
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RLAPI int GetScreenWidth(void); // Get current screen width
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RLAPI int GetScreenHeight(void); // Get current screen height
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RLAPI int GetRenderWidth(void); // Get current render width (it considers HiDPI)
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RLAPI int GetRenderHeight(void); // Get current render height (it considers HiDPI)
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RLAPI int GetMonitorCount(void); // Get number of connected monitors
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RLAPI int GetCurrentMonitor(void); // Get current connected monitor
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RLAPI int GetCurrentMonitor(void); // Get current monitor where window is placed
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RLAPI Vector2 GetMonitorPosition(int monitor); // Get specified monitor position
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RLAPI int GetMonitorWidth(int monitor); // Get specified monitor width (current video mode used by monitor)
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RLAPI int GetMonitorHeight(int monitor); // Get specified monitor height (current video mode used by monitor)
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@@ -1006,6 +1016,7 @@ RLAPI Vector2 GetWindowScaleDPI(void); // Get window
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RLAPI const char *GetMonitorName(int monitor); // Get the human-readable, UTF-8 encoded name of the specified monitor
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RLAPI void SetClipboardText(const char *text); // Set clipboard text content
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RLAPI const char *GetClipboardText(void); // Get clipboard text content
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RLAPI Image GetClipboardImage(void); // Get clipboard image content
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RLAPI void EnableEventWaiting(void); // Enable waiting for events on EndDrawing(), no automatic event polling
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RLAPI void DisableEventWaiting(void); // Disable waiting for events on EndDrawing(), automatic events polling
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@@ -1044,13 +1055,13 @@ RLAPI void UnloadVrStereoConfig(VrStereoConfig config); // Unload VR s
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// NOTE: Shader functionality is not available on OpenGL 1.1
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RLAPI Shader LoadShader(const char *vsFileName, const char *fsFileName); // Load shader from files and bind default locations
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RLAPI Shader LoadShaderFromMemory(const char *vsCode, const char *fsCode); // Load shader from code strings and bind default locations
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RLAPI bool IsShaderReady(Shader shader); // Check if a shader is ready
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RLAPI bool IsShaderValid(Shader shader); // Check if a shader is valid (loaded on GPU)
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RLAPI int GetShaderLocation(Shader shader, const char *uniformName); // Get shader uniform location
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RLAPI int GetShaderLocationAttrib(Shader shader, const char *attribName); // Get shader attribute location
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RLAPI void SetShaderValue(Shader shader, int locIndex, const void *value, int uniformType); // Set shader uniform value
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RLAPI void SetShaderValueV(Shader shader, int locIndex, const void *value, int uniformType, int count); // Set shader uniform value vector
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RLAPI void SetShaderValueMatrix(Shader shader, int locIndex, Matrix mat); // Set shader uniform value (matrix 4x4)
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RLAPI void SetShaderValueTexture(Shader shader, int locIndex, Texture2D texture); // Set shader uniform value for texture (sampler2d)
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RLAPI void SetShaderValueTexture(Shader shader, int locIndex, Texture2D texture); // Set shader uniform value and bind the texture (sampler2d)
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RLAPI void UnloadShader(Shader shader); // Unload shader from GPU memory (VRAM)
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// Screen-space-related functions
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@@ -1112,7 +1123,7 @@ RLAPI bool SaveFileData(const char *fileName, void *data, int dataSize); // Save
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RLAPI bool ExportDataAsCode(const unsigned char *data, int dataSize, const char *fileName); // Export data to code (.h), returns true on success
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RLAPI char *LoadFileText(const char *fileName); // Load text data from file (read), returns a '\0' terminated string
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RLAPI void UnloadFileText(char *text); // Unload file text data allocated by LoadFileText()
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RLAPI bool SaveFileText(const char *fileName, char *text); // Save text data to file (write), string must be '\0' terminated, returns true on success
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RLAPI bool SaveFileText(const char *fileName, const char *text); // Save text data to file (write), string must be '\0' terminated, returns true on success
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//------------------------------------------------------------------
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// File system functions
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@@ -1142,18 +1153,21 @@ RLAPI long GetFileModTime(const char *fileName); // Get file mo
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// Compression/Encoding functionality
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RLAPI unsigned char *CompressData(const unsigned char *data, int dataSize, int *compDataSize); // Compress data (DEFLATE algorithm), memory must be MemFree()
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RLAPI unsigned char *DecompressData(const unsigned char *compData, int compDataSize, int *dataSize); // Decompress data (DEFLATE algorithm), memory must be MemFree()
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RLAPI char *EncodeDataBase64(const unsigned char *data, int dataSize, int *outputSize); // Encode data to Base64 string, memory must be MemFree()
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RLAPI unsigned char *DecodeDataBase64(const unsigned char *data, int *outputSize); // Decode Base64 string data, memory must be MemFree()
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RLAPI char *EncodeDataBase64(const unsigned char *data, int dataSize, int *outputSize); // Encode data to Base64 string (includes NULL terminator), memory must be MemFree()
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RLAPI unsigned char *DecodeDataBase64(const char *text, int *outputSize); // Decode Base64 string (expected NULL terminated), memory must be MemFree()
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RLAPI unsigned int ComputeCRC32(unsigned char *data, int dataSize); // Compute CRC32 hash code
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RLAPI unsigned int *ComputeMD5(unsigned char *data, int dataSize); // Compute MD5 hash code, returns static int[4] (16 bytes)
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RLAPI unsigned int *ComputeSHA1(unsigned char *data, int dataSize); // Compute SHA1 hash code, returns static int[5] (20 bytes)
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// Automation events functionality
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RLAPI AutomationEventList LoadAutomationEventList(const char *fileName); // Load automation events list from file, NULL for empty list, capacity = MAX_AUTOMATION_EVENTS
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RLAPI void UnloadAutomationEventList(AutomationEventList list); // Unload automation events list from file
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RLAPI bool ExportAutomationEventList(AutomationEventList list, const char *fileName); // Export automation events list as text file
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RLAPI void SetAutomationEventList(AutomationEventList *list); // Set automation event list to record to
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RLAPI void SetAutomationEventBaseFrame(int frame); // Set automation event internal base frame to start recording
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RLAPI void StartAutomationEventRecording(void); // Start recording automation events (AutomationEventList must be set)
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RLAPI void StopAutomationEventRecording(void); // Stop recording automation events
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RLAPI void PlayAutomationEvent(AutomationEvent event); // Play a recorded automation event
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RLAPI AutomationEventList LoadAutomationEventList(const char *fileName); // Load automation events list from file, NULL for empty list, capacity = MAX_AUTOMATION_EVENTS
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RLAPI void UnloadAutomationEventList(AutomationEventList list); // Unload automation events list from file
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RLAPI bool ExportAutomationEventList(AutomationEventList list, const char *fileName); // Export automation events list as text file
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RLAPI void SetAutomationEventList(AutomationEventList *list); // Set automation event list to record to
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RLAPI void SetAutomationEventBaseFrame(int frame); // Set automation event internal base frame to start recording
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RLAPI void StartAutomationEventRecording(void); // Start recording automation events (AutomationEventList must be set)
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RLAPI void StopAutomationEventRecording(void); // Stop recording automation events
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RLAPI void PlayAutomationEvent(AutomationEvent event); // Play a recorded automation event
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//------------------------------------------------------------------------------------
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// Input Handling Functions (Module: core)
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@@ -1161,26 +1175,27 @@ RLAPI void PlayAutomationEvent(AutomationEvent event);
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// Input-related functions: keyboard
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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)
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RLAPI bool IsKeyPressedRepeat(int key); // Check if a key has been pressed again
|
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RLAPI bool IsKeyDown(int key); // Check if a key is being pressed
|
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RLAPI bool IsKeyReleased(int key); // Check if a key has been released once
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RLAPI bool IsKeyUp(int key); // Check if a key is NOT being pressed
|
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RLAPI int GetKeyPressed(void); // Get key pressed (keycode), call it multiple times for keys queued, returns 0 when the queue is empty
|
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RLAPI int GetCharPressed(void); // Get char pressed (unicode), call it multiple times for chars queued, returns 0 when the queue is empty
|
||||
RLAPI const char *GetKeyName(int key); // Get name of a QWERTY key on the current keyboard layout (eg returns string 'q' for KEY_A on an AZERTY keyboard)
|
||||
RLAPI void SetExitKey(int key); // Set a custom key to exit program (default is ESC)
|
||||
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// Input-related functions: gamepads
|
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RLAPI bool IsGamepadAvailable(int gamepad); // Check if a gamepad is available
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RLAPI const char *GetGamepadName(int gamepad); // Get gamepad internal name id
|
||||
RLAPI bool IsGamepadButtonPressed(int gamepad, int button); // Check if a gamepad button has been pressed once
|
||||
RLAPI bool IsGamepadButtonDown(int gamepad, int button); // Check if a gamepad button is being pressed
|
||||
RLAPI bool IsGamepadButtonReleased(int gamepad, int button); // Check if a gamepad button has been released once
|
||||
RLAPI bool IsGamepadButtonUp(int gamepad, int button); // Check if a gamepad button is NOT being pressed
|
||||
RLAPI int GetGamepadButtonPressed(void); // Get the last gamepad button pressed
|
||||
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 bool IsGamepadAvailable(int gamepad); // Check if a gamepad is available
|
||||
RLAPI const char *GetGamepadName(int gamepad); // Get gamepad internal name id
|
||||
RLAPI bool IsGamepadButtonPressed(int gamepad, int button); // Check if a gamepad button has been pressed once
|
||||
RLAPI bool IsGamepadButtonDown(int gamepad, int button); // Check if a gamepad button is being pressed
|
||||
RLAPI bool IsGamepadButtonReleased(int gamepad, int button); // Check if a gamepad button has been released once
|
||||
RLAPI bool IsGamepadButtonUp(int gamepad, int button); // Check if a gamepad button is NOT being pressed
|
||||
RLAPI int GetGamepadButtonPressed(void); // Get the last gamepad button pressed
|
||||
RLAPI int GetGamepadAxisCount(int gamepad); // Get axis count for a gamepad
|
||||
RLAPI float GetGamepadAxisMovement(int gamepad, int axis); // Get 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, 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
|
||||
@@ -1208,19 +1223,19 @@ RLAPI int GetTouchPointCount(void); // Get number of t
|
||||
//------------------------------------------------------------------------------------
|
||||
// Gestures and Touch Handling Functions (Module: rgestures)
|
||||
//------------------------------------------------------------------------------------
|
||||
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 Vector2 GetGestureDragVector(void); // Get gesture drag vector
|
||||
RLAPI float GetGestureDragAngle(void); // Get gesture drag angle
|
||||
RLAPI Vector2 GetGesturePinchVector(void); // Get gesture pinch delta
|
||||
RLAPI float GetGesturePinchAngle(void); // Get gesture pinch angle
|
||||
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 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
|
||||
RLAPI float GetGesturePinchAngle(void); // Get gesture pinch angle
|
||||
|
||||
//------------------------------------------------------------------------------------
|
||||
// Camera System Functions (Module: rcamera)
|
||||
//------------------------------------------------------------------------------------
|
||||
RLAPI void UpdateCamera(Camera *camera, int mode); // Update camera position for selected mode
|
||||
RLAPI void UpdateCamera(Camera *camera, int mode); // Update camera position for selected mode
|
||||
RLAPI void UpdateCameraPro(Camera *camera, Vector3 movement, Vector3 rotation, float zoom); // Update camera movement/rotation
|
||||
|
||||
//------------------------------------------------------------------------------------
|
||||
@@ -1229,9 +1244,9 @@ RLAPI void UpdateCameraPro(Camera *camera, Vector3 movement, Vector3 rotation, f
|
||||
// Set texture and rectangle to be used on shapes drawing
|
||||
// NOTE: It can be useful when using basic shapes and one single font,
|
||||
// defining a font char white rectangle would allow drawing everything in a single draw call
|
||||
RLAPI void SetShapesTexture(Texture2D texture, Rectangle source); // Set texture and rectangle to be used on shapes drawing
|
||||
RLAPI Texture2D GetShapesTexture(void); // Get texture that is used for shapes drawing
|
||||
RLAPI Rectangle GetShapesTextureRectangle(void); // Get texture source rectangle that is used for shapes drawing
|
||||
RLAPI void SetShapesTexture(Texture2D texture, Rectangle source); // Set texture and rectangle to be used on shapes drawing
|
||||
RLAPI Texture2D GetShapesTexture(void); // Get texture that is used for shapes drawing
|
||||
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 using geometry [Can be slow, use with care]
|
||||
@@ -1249,7 +1264,9 @@ RLAPI void DrawCircleV(Vector2 center, float radius, Color color);
|
||||
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)
|
||||
RLAPI void DrawEllipse(int centerX, int centerY, float radiusH, float radiusV, Color color); // Draw ellipse
|
||||
RLAPI void DrawEllipseV(Vector2 center, float radiusH, float radiusV, Color color); // Draw ellipse (Vector version)
|
||||
RLAPI void DrawEllipseLines(int centerX, int centerY, float radiusH, float radiusV, Color color); // Draw ellipse outline
|
||||
RLAPI void DrawEllipseLinesV(Vector2 center, float radiusH, float radiusV, Color color); // Draw ellipse outline (Vector version)
|
||||
RLAPI void DrawRing(Vector2 center, float innerRadius, float outerRadius, float startAngle, float endAngle, int segments, Color color); // Draw ring
|
||||
RLAPI void DrawRingLines(Vector2 center, float innerRadius, float outerRadius, float startAngle, float endAngle, int segments, Color color); // Draw ring outline
|
||||
RLAPI void DrawRectangle(int posX, int posY, int width, int height, Color color); // Draw a color-filled rectangle
|
||||
@@ -1258,7 +1275,7 @@ RLAPI void DrawRectangleRec(Rectangle rec, Color color);
|
||||
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 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 DrawRectangleGradientEx(Rectangle rec, Color topLeft, Color bottomLeft, Color bottomRight, Color topRight); // 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
|
||||
@@ -1273,11 +1290,11 @@ RLAPI void DrawPolyLines(Vector2 center, int sides, float radius, float rotation
|
||||
RLAPI void DrawPolyLinesEx(Vector2 center, int sides, float radius, float rotation, float lineThick, Color color); // Draw a polygon outline of n sides with extended parameters
|
||||
|
||||
// Splines drawing functions
|
||||
RLAPI void DrawSplineLinear(const Vector2 *points, int pointCount, float thick, Color color); // Draw spline: Linear, minimum 2 points
|
||||
RLAPI void DrawSplineBasis(const Vector2 *points, int pointCount, float thick, Color color); // Draw spline: B-Spline, minimum 4 points
|
||||
RLAPI void DrawSplineCatmullRom(const Vector2 *points, int pointCount, float thick, Color color); // Draw spline: Catmull-Rom, minimum 4 points
|
||||
RLAPI void DrawSplineBezierQuadratic(const Vector2 *points, int pointCount, float thick, Color color); // Draw spline: Quadratic Bezier, minimum 3 points (1 control point): [p1, c2, p3, c4...]
|
||||
RLAPI void DrawSplineBezierCubic(const Vector2 *points, int pointCount, float thick, Color color); // Draw spline: Cubic Bezier, minimum 4 points (2 control points): [p1, c2, c3, p4, c5, c6...]
|
||||
RLAPI void DrawSplineLinear(const Vector2 *points, int pointCount, float thick, Color color); // Draw spline: Linear, minimum 2 points
|
||||
RLAPI void DrawSplineBasis(const Vector2 *points, int pointCount, float thick, Color color); // Draw spline: B-Spline, minimum 4 points
|
||||
RLAPI void DrawSplineCatmullRom(const Vector2 *points, int pointCount, float thick, Color color); // Draw spline: Catmull-Rom, minimum 4 points
|
||||
RLAPI void DrawSplineBezierQuadratic(const Vector2 *points, int pointCount, float thick, Color color); // Draw spline: Quadratic Bezier, minimum 3 points (1 control point): [p1, c2, p3, c4...]
|
||||
RLAPI void DrawSplineBezierCubic(const Vector2 *points, int pointCount, float thick, Color color); // Draw spline: Cubic Bezier, minimum 4 points (2 control points): [p1, c2, c3, p4, c5, c6...]
|
||||
RLAPI void DrawSplineSegmentLinear(Vector2 p1, Vector2 p2, float thick, Color color); // Draw spline segment: Linear, 2 points
|
||||
RLAPI void DrawSplineSegmentBasis(Vector2 p1, Vector2 p2, Vector2 p3, Vector2 p4, float thick, Color color); // Draw spline segment: B-Spline, 4 points
|
||||
RLAPI void DrawSplineSegmentCatmullRom(Vector2 p1, Vector2 p2, Vector2 p3, Vector2 p4, float thick, Color color); // Draw spline segment: Catmull-Rom, 4 points
|
||||
@@ -1295,13 +1312,13 @@ 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
|
||||
|
||||
//------------------------------------------------------------------------------------
|
||||
@@ -1317,7 +1334,7 @@ RLAPI Image LoadImageAnimFromMemory(const char *fileType, const unsigned char *f
|
||||
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
|
||||
@@ -1350,7 +1367,7 @@ RLAPI void ImageAlphaPremultiply(Image *image);
|
||||
RLAPI void ImageBlurGaussian(Image *image, int blurSize); // Apply Gaussian blur using a box blur approximation
|
||||
RLAPI void ImageKernelConvolution(Image *image, const float *kernel, int kernelSize); // Apply custom square convolution kernel to image
|
||||
RLAPI void ImageResize(Image *image, int newWidth, int newHeight); // Resize image (Bicubic scaling algorithm)
|
||||
RLAPI void ImageResizeNN(Image *image, int newWidth,int newHeight); // Resize image (Nearest-Neighbor scaling algorithm)
|
||||
RLAPI void ImageResizeNN(Image *image, int newWidth, int newHeight); // Resize image (Nearest-Neighbor scaling algorithm)
|
||||
RLAPI void ImageResizeCanvas(Image *image, int newWidth, int newHeight, int offsetX, int offsetY, Color fill); // Resize canvas and fill with color
|
||||
RLAPI void ImageMipmaps(Image *image); // Compute all mipmap levels for a provided image
|
||||
RLAPI void ImageDither(Image *image, int rBpp, int gBpp, int bBpp, int aBpp); // Dither image data to 16bpp or lower (Floyd-Steinberg dithering)
|
||||
@@ -1391,8 +1408,8 @@ RLAPI void ImageDrawRectangleLines(Image *dst, Rectangle rec, int thick, Color c
|
||||
RLAPI void ImageDrawTriangle(Image *dst, Vector2 v1, Vector2 v2, Vector2 v3, Color color); // Draw triangle within an image
|
||||
RLAPI void ImageDrawTriangleEx(Image *dst, Vector2 v1, Vector2 v2, Vector2 v3, Color c1, Color c2, Color c3); // Draw triangle with interpolated colors within an image
|
||||
RLAPI void ImageDrawTriangleLines(Image *dst, Vector2 v1, Vector2 v2, Vector2 v3, Color color); // Draw triangle outline within an image
|
||||
RLAPI void ImageDrawTriangleFan(Image *dst, Vector2 *points, int pointCount, Color color); // Draw a triangle fan defined by points within an image (first vertex is the center)
|
||||
RLAPI void ImageDrawTriangleStrip(Image *dst, Vector2 *points, int pointCount, Color color); // Draw a triangle strip defined by points within an image
|
||||
RLAPI void ImageDrawTriangleFan(Image *dst, const Vector2 *points, int pointCount, Color color); // Draw a triangle fan defined by points within an image (first vertex is the center)
|
||||
RLAPI void ImageDrawTriangleStrip(Image *dst, const Vector2 *points, int pointCount, Color color); // Draw a triangle strip defined by points within an image
|
||||
RLAPI void ImageDraw(Image *dst, Image src, Rectangle srcRec, Rectangle dstRec, Color tint); // Draw a source image within a destination image (tint applied to source)
|
||||
RLAPI void ImageDrawText(Image *dst, const char *text, int posX, int posY, int fontSize, Color color); // Draw text (using default font) within an image (destination)
|
||||
RLAPI void ImageDrawTextEx(Image *dst, Font font, const char *text, Vector2 position, float fontSize, float spacing, Color tint); // Draw text (custom sprite font) within an image (destination)
|
||||
@@ -1403,9 +1420,9 @@ 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
|
||||
@@ -1452,7 +1469,7 @@ RLAPI Font LoadFont(const char *fileName);
|
||||
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)
|
||||
@@ -1476,18 +1493,19 @@ RLAPI GlyphInfo GetGlyphInfo(Font font, int codepoint);
|
||||
RLAPI Rectangle GetGlyphAtlasRec(Font font, int codepoint); // Get glyph rectangle in font atlas for a codepoint (unicode character), fallback to '?' if not found
|
||||
|
||||
// Text codepoints management functions (unicode characters)
|
||||
RLAPI char *LoadUTF8(const int *codepoints, int length); // Load UTF-8 text encoded from codepoints array
|
||||
RLAPI void UnloadUTF8(char *text); // Unload UTF-8 text encoded from codepoints array
|
||||
RLAPI int *LoadCodepoints(const char *text, int *count); // Load all codepoints from a UTF-8 text string, codepoints count returned by parameter
|
||||
RLAPI void UnloadCodepoints(int *codepoints); // Unload codepoints data from memory
|
||||
RLAPI int GetCodepointCount(const char *text); // Get total number of codepoints in a UTF-8 encoded string
|
||||
RLAPI int GetCodepoint(const char *text, int *codepointSize); // Get next codepoint in a UTF-8 encoded string, 0x3f('?') is returned on failure
|
||||
RLAPI int GetCodepointNext(const char *text, int *codepointSize); // Get next codepoint in a UTF-8 encoded string, 0x3f('?') is returned on failure
|
||||
RLAPI int GetCodepointPrevious(const char *text, int *codepointSize); // Get previous codepoint in a UTF-8 encoded string, 0x3f('?') is returned on failure
|
||||
RLAPI const char *CodepointToUTF8(int codepoint, int *utf8Size); // Encode one codepoint into UTF-8 byte array (array length returned as parameter)
|
||||
RLAPI char *LoadUTF8(const int *codepoints, int length); // Load UTF-8 text encoded from codepoints array
|
||||
RLAPI void UnloadUTF8(char *text); // Unload UTF-8 text encoded from codepoints array
|
||||
RLAPI int *LoadCodepoints(const char *text, int *count); // Load all codepoints from a UTF-8 text string, codepoints count returned by parameter
|
||||
RLAPI void UnloadCodepoints(int *codepoints); // Unload codepoints data from memory
|
||||
RLAPI int GetCodepointCount(const char *text); // Get total number of codepoints in a UTF-8 encoded string
|
||||
RLAPI int GetCodepoint(const char *text, int *codepointSize); // Get next codepoint in a UTF-8 encoded string, 0x3f('?') is returned on failure
|
||||
RLAPI int GetCodepointNext(const char *text, int *codepointSize); // Get next codepoint in a UTF-8 encoded string, 0x3f('?') is returned on failure
|
||||
RLAPI int GetCodepointPrevious(const char *text, int *codepointSize); // Get previous codepoint in a UTF-8 encoded string, 0x3f('?') is returned on failure
|
||||
RLAPI const char *CodepointToUTF8(int codepoint, int *utf8Size); // Encode one codepoint into UTF-8 byte array (array length returned as parameter)
|
||||
|
||||
// Text strings management functions (no UTF-8 strings, only byte chars)
|
||||
// NOTE: Some strings allocate memory internally for returned strings, just be careful!
|
||||
// WARNING 1: Most of these functions use internal static buffers, it's recommended to store returned data on user-side for re-use
|
||||
// WARNING 2: Some strings allocate memory internally for the returned strings, those strings must be free by user using MemFree()
|
||||
RLAPI int TextCopy(char *dst, const char *src); // Copy one string to another, returns bytes copied
|
||||
RLAPI bool TextIsEqual(const char *text1, const char *text2); // Check if two text string are equal
|
||||
RLAPI unsigned int TextLength(const char *text); // Get text length, checks for '\0' ending
|
||||
@@ -1495,18 +1513,18 @@ RLAPI const char *TextFormat(const char *text, ...);
|
||||
RLAPI const char *TextSubtext(const char *text, int position, int length); // Get a piece of a text string
|
||||
RLAPI char *TextReplace(const char *text, const char *replace, const char *by); // Replace text string (WARNING: memory must be freed!)
|
||||
RLAPI char *TextInsert(const char *text, const char *insert, int position); // Insert text in a position (WARNING: memory must be freed!)
|
||||
RLAPI const char *TextJoin(const char **textList, int count, const char *delimiter); // Join text strings with delimiter
|
||||
RLAPI const char **TextSplit(const char *text, char delimiter, int *count); // Split text into multiple strings
|
||||
RLAPI char *TextJoin(char **textList, int count, const char *delimiter); // Join text strings with delimiter
|
||||
RLAPI char **TextSplit(const char *text, char delimiter, int *count); // Split text into multiple strings
|
||||
RLAPI void TextAppend(char *text, const char *append, int *position); // Append text at specific position and move cursor!
|
||||
RLAPI int TextFindIndex(const char *text, const char *find); // Find first text occurrence within a string
|
||||
RLAPI const char *TextToUpper(const char *text); // Get upper case version of provided string
|
||||
RLAPI const char *TextToLower(const char *text); // Get lower case version of provided string
|
||||
RLAPI const char *TextToPascal(const char *text); // Get Pascal case notation version of provided string
|
||||
RLAPI const char *TextToSnake(const char *text); // Get Snake case notation version of provided string
|
||||
RLAPI const char *TextToCamel(const char *text); // Get Camel case notation version of provided string
|
||||
RLAPI char *TextToUpper(const char *text); // Get upper case version of provided string
|
||||
RLAPI char *TextToLower(const char *text); // Get lower case version of provided string
|
||||
RLAPI char *TextToPascal(const char *text); // Get Pascal case notation version of provided string
|
||||
RLAPI char *TextToSnake(const char *text); // Get Snake case notation version of provided string
|
||||
RLAPI char *TextToCamel(const char *text); // Get Camel case notation version of provided string
|
||||
|
||||
RLAPI int TextToInteger(const char *text); // Get integer value from text (negative values not supported)
|
||||
RLAPI float TextToFloat(const char *text); // Get float value from text (negative values not supported)
|
||||
RLAPI int TextToInteger(const char *text); // Get integer value from text
|
||||
RLAPI float TextToFloat(const char *text); // Get float value from text
|
||||
|
||||
//------------------------------------------------------------------------------------
|
||||
// Basic 3d Shapes Drawing Functions (Module: models)
|
||||
@@ -1542,7 +1560,7 @@ 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)
|
||||
|
||||
@@ -1585,28 +1603,28 @@ 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 UpdateModelAnimationBones(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
|
||||
RLAPI void UpdateModelAnimationBoneMatrices(Model model, ModelAnimation anim, int frame); // Update model animation mesh bone matrices (Note GPU skinning does not work on Mac)
|
||||
|
||||
// Collision detection functions
|
||||
RLAPI bool CheckCollisionSpheres(Vector3 center1, float radius1, Vector3 center2, float radius2); // Check collision between two spheres
|
||||
RLAPI bool CheckCollisionBoxes(BoundingBox box1, BoundingBox box2); // Check collision between two bounding boxes
|
||||
RLAPI bool CheckCollisionBoxSphere(BoundingBox box, Vector3 center, float radius); // Check collision between box and sphere
|
||||
RLAPI RayCollision GetRayCollisionSphere(Ray ray, Vector3 center, float radius); // Get collision info between ray and sphere
|
||||
RLAPI RayCollision GetRayCollisionBox(Ray ray, BoundingBox box); // Get collision info between ray and box
|
||||
RLAPI RayCollision GetRayCollisionMesh(Ray ray, Mesh mesh, Matrix transform); // Get collision info between ray and mesh
|
||||
RLAPI RayCollision GetRayCollisionTriangle(Ray ray, Vector3 p1, Vector3 p2, Vector3 p3); // Get collision info between ray and triangle
|
||||
RLAPI RayCollision GetRayCollisionQuad(Ray ray, Vector3 p1, Vector3 p2, Vector3 p3, Vector3 p4); // Get collision info between ray and quad
|
||||
RLAPI bool CheckCollisionSpheres(Vector3 center1, float radius1, Vector3 center2, float radius2); // Check collision between two spheres
|
||||
RLAPI bool CheckCollisionBoxes(BoundingBox box1, BoundingBox box2); // Check collision between two bounding boxes
|
||||
RLAPI bool CheckCollisionBoxSphere(BoundingBox box, Vector3 center, float radius); // Check collision between box and sphere
|
||||
RLAPI RayCollision GetRayCollisionSphere(Ray ray, Vector3 center, float radius); // Get collision info between ray and sphere
|
||||
RLAPI RayCollision GetRayCollisionBox(Ray ray, BoundingBox box); // Get collision info between ray and box
|
||||
RLAPI RayCollision GetRayCollisionMesh(Ray ray, Mesh mesh, Matrix transform); // Get collision info between ray and mesh
|
||||
RLAPI RayCollision GetRayCollisionTriangle(Ray ray, Vector3 p1, Vector3 p2, Vector3 p3); // Get collision info between ray and triangle
|
||||
RLAPI RayCollision GetRayCollisionQuad(Ray ray, Vector3 p1, Vector3 p2, Vector3 p3, Vector3 p4); // Get collision info between ray and quad
|
||||
|
||||
//------------------------------------------------------------------------------------
|
||||
// Audio Loading and Playing Functions (Module: audio)
|
||||
@@ -1623,11 +1641,11 @@ 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
|
||||
@@ -1653,7 +1671,7 @@ 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
|
||||
@@ -1670,7 +1688,7 @@ 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
|
||||
@@ -1685,10 +1703,10 @@ RLAPI void SetAudioStreamPan(AudioStream stream, float pan); // Set pan
|
||||
RLAPI void SetAudioStreamBufferSizeDefault(int size); // Default size for new audio streams
|
||||
RLAPI void SetAudioStreamCallback(AudioStream stream, AudioCallback callback); // Audio thread callback to request new data
|
||||
|
||||
RLAPI void AttachAudioStreamProcessor(AudioStream stream, AudioCallback processor); // Attach audio stream processor to stream, receives the samples as 'float'
|
||||
RLAPI void AttachAudioStreamProcessor(AudioStream stream, AudioCallback processor); // Attach audio stream processor to stream, receives frames x 2 samples as 'float' (stereo)
|
||||
RLAPI void DetachAudioStreamProcessor(AudioStream stream, AudioCallback processor); // Detach audio stream processor from stream
|
||||
|
||||
RLAPI void AttachAudioMixedProcessor(AudioCallback processor); // Attach audio stream processor to the entire audio pipeline, receives the samples as 'float'
|
||||
RLAPI void AttachAudioMixedProcessor(AudioCallback processor); // Attach audio stream processor to the entire audio pipeline, receives frames x 2 samples as 'float' (stereo)
|
||||
RLAPI void DetachAudioMixedProcessor(AudioCallback processor); // Detach audio stream processor from the entire audio pipeline
|
||||
|
||||
#if defined(__cplusplus)
|
||||
|
||||
Reference in New Issue
Block a user