Update C sources, add new functions and rename package to
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391c25482d
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08aa518a46
156 changed files with 34542 additions and 19573 deletions
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@ -8,42 +8,42 @@ func main() {
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screenWidth := int32(800)
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screenHeight := int32(450)
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raylib.InitWindow(screenWidth, screenHeight, "raylib [textures] example - texture loading and drawing")
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rl.InitWindow(screenWidth, screenHeight, "raylib [textures] example - texture loading and drawing")
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// NOTE: Textures MUST be loaded after Window initialization (OpenGL context is required)
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cat := raylib.LoadImage("cat.png") // Load image in CPU memory (RAM)
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raylib.ImageCrop(cat, raylib.NewRectangle(100, 10, 280, 380)) // Crop an image piece
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raylib.ImageFlipHorizontal(cat) // Flip cropped image horizontally
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raylib.ImageResize(cat, 150, 200) // Resize flipped-cropped image
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cat := rl.LoadImage("cat.png") // Load image in CPU memory (RAM)
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rl.ImageCrop(cat, rl.NewRectangle(100, 10, 280, 380)) // Crop an image piece
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rl.ImageFlipHorizontal(cat) // Flip cropped image horizontally
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rl.ImageResize(cat, 150, 200) // Resize flipped-cropped image
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parrots := raylib.LoadImage("parrots.png") // Load image in CPU memory (RAM)
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parrots := rl.LoadImage("parrots.png") // Load image in CPU memory (RAM)
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// Draw one image over the other with a scaling of 1.5f
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raylib.ImageDraw(parrots, cat, raylib.NewRectangle(0, 0, float32(cat.Width), float32(cat.Height)), raylib.NewRectangle(30, 40, float32(cat.Width)*1.5, float32(cat.Height)*1.5))
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raylib.ImageCrop(parrots, raylib.NewRectangle(0, 50, float32(parrots.Width), float32(parrots.Height-100))) // Crop resulting image
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rl.ImageDraw(parrots, cat, rl.NewRectangle(0, 0, float32(cat.Width), float32(cat.Height)), rl.NewRectangle(30, 40, float32(cat.Width)*1.5, float32(cat.Height)*1.5))
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rl.ImageCrop(parrots, rl.NewRectangle(0, 50, float32(parrots.Width), float32(parrots.Height-100))) // Crop resulting image
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raylib.UnloadImage(cat) // Unload image from RAM
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rl.UnloadImage(cat) // Unload image from RAM
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texture := raylib.LoadTextureFromImage(parrots) // Image converted to texture, uploaded to GPU memory (VRAM)
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raylib.UnloadImage(parrots) // Once image has been converted to texture and uploaded to VRAM, it can be unloaded from RAM
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texture := rl.LoadTextureFromImage(parrots) // Image converted to texture, uploaded to GPU memory (VRAM)
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rl.UnloadImage(parrots) // Once image has been converted to texture and uploaded to VRAM, it can be unloaded from RAM
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raylib.SetTargetFPS(60)
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rl.SetTargetFPS(60)
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for !raylib.WindowShouldClose() {
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raylib.BeginDrawing()
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for !rl.WindowShouldClose() {
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rl.BeginDrawing()
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raylib.ClearBackground(raylib.RayWhite)
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rl.ClearBackground(rl.RayWhite)
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raylib.DrawTexture(texture, screenWidth/2-texture.Width/2, screenHeight/2-texture.Height/2-40, raylib.White)
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raylib.DrawRectangleLines(screenWidth/2-texture.Width/2, screenHeight/2-texture.Height/2-40, texture.Width, texture.Height, raylib.DarkGray)
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rl.DrawTexture(texture, screenWidth/2-texture.Width/2, screenHeight/2-texture.Height/2-40, rl.White)
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rl.DrawRectangleLines(screenWidth/2-texture.Width/2, screenHeight/2-texture.Height/2-40, texture.Width, texture.Height, rl.DarkGray)
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raylib.DrawText("We are drawing only one texture from various images composed!", 240, 350, 10, raylib.DarkGray)
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raylib.DrawText("Source images have been cropped, scaled, flipped and copied one over the other.", 190, 370, 10, raylib.DarkGray)
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rl.DrawText("We are drawing only one texture from various images composed!", 240, 350, 10, rl.DarkGray)
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rl.DrawText("Source images have been cropped, scaled, flipped and copied one over the other.", 190, 370, 10, rl.DarkGray)
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raylib.EndDrawing()
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rl.EndDrawing()
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}
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raylib.UnloadTexture(texture)
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rl.UnloadTexture(texture)
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raylib.CloseWindow()
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rl.CloseWindow()
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}
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