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graphics: NextPowerOf2Int -> NextPowerOf2Int32
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parent
5fe013ddbd
commit
495d7ca0d1
2
image.go
2
image.go
@ -127,7 +127,7 @@ func (i *Image) At(x, y int) color.Color {
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}
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}
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w, _ := i.Size()
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w = graphics.NextPowerOf2Int(w)
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w = int(graphics.NextPowerOf2Int32(int32(w)))
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idx := 4*x + 4*y*w
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r, g, b, a := i.pixels[idx], i.pixels[idx+1], i.pixels[idx+2], i.pixels[idx+3]
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return color.RGBA{r, g, b, a}
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@ -70,11 +70,11 @@ func (w *wholeImage) Src(i int) (x0, y0, x1, y1 int) {
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}
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func u(x int, width int) int {
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return math.MaxInt16 * x / graphics.NextPowerOf2Int(width)
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return math.MaxInt16 * x / int(graphics.NextPowerOf2Int32(int32(width)))
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}
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func v(y int, height int) int {
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return math.MaxInt16 * y / graphics.NextPowerOf2Int(height)
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return math.MaxInt16 * y / int(graphics.NextPowerOf2Int32(int32(height)))
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}
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type textureQuads struct {
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@ -82,8 +82,8 @@ func (f *Framebuffer) Dispose(c *opengl.Context) {
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}
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func (f *Framebuffer) setAsViewport(c *opengl.Context) error {
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width := NextPowerOf2Int(f.width)
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height := NextPowerOf2Int(f.height)
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width := int(NextPowerOf2Int32(int32(f.width)))
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height := int(NextPowerOf2Int32(int32(f.height)))
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return c.SetViewport(f.native, width, height)
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}
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@ -91,12 +91,12 @@ func (f *Framebuffer) projectionMatrix() *[4][4]float64 {
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if f.proMatrix != nil {
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return f.proMatrix
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}
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width := NextPowerOf2Int(f.width)
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height := NextPowerOf2Int(f.height)
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width := int(NextPowerOf2Int32(int32(f.width)))
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height := int(NextPowerOf2Int32(int32(f.height)))
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m := orthoProjectionMatrix(0, width, 0, height)
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if f.flipY {
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m[1][1] *= -1
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m[1][3] += float64(f.height) / float64(NextPowerOf2Int(f.height)) * 2
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m[1][3] += float64(f.height) / float64(NextPowerOf2Int32(int32(f.height))) * 2
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}
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f.proMatrix = m
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return f.proMatrix
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@ -125,6 +125,6 @@ func (f *Framebuffer) DrawTexture(c *opengl.Context, t *Texture, quads TextureQu
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func (f *Framebuffer) Pixels(c *opengl.Context) ([]uint8, error) {
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w, h := f.Size()
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w, h = NextPowerOf2Int(w), NextPowerOf2Int(h)
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w, h = int(NextPowerOf2Int32(int32(w))), int(NextPowerOf2Int32(int32(h)))
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return c.FramebufferPixels(f.native, w, h)
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}
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@ -14,7 +14,7 @@
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package graphics
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func NextPowerOf2Int(x int) int {
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func NextPowerOf2Int32(x int32) int32 {
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x -= 1
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x |= (x >> 1)
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x |= (x >> 2)
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@ -21,8 +21,8 @@ import (
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func TestNextPowerOf2(t *testing.T) {
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testCases := []struct {
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expected int
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arg int
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expected int32
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arg int32
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}{
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{256, 255},
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{256, 256},
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@ -30,7 +30,7 @@ func TestNextPowerOf2(t *testing.T) {
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}
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for _, testCase := range testCases {
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got := NextPowerOf2Int(testCase.arg)
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got := NextPowerOf2Int32(testCase.arg)
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wanted := testCase.expected
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if wanted != got {
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t.Errorf("Clp(%d) = %d, wanted %d", testCase.arg, got, wanted)
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@ -26,8 +26,8 @@ func adjustImageForTexture(img image.Image) *image.RGBA {
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adjustedImageBounds := image.Rectangle{
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image.ZP,
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image.Point{
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NextPowerOf2Int(width),
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NextPowerOf2Int(height),
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int(NextPowerOf2Int32(int32(width))),
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int(NextPowerOf2Int32(int32(height))),
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},
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}
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if adjustedImage, ok := img.(*image.RGBA); ok && img.Bounds() == adjustedImageBounds {
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@ -54,8 +54,8 @@ func (t *Texture) Size() (width, height int) {
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}
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func NewTexture(c *opengl.Context, width, height int, filter opengl.Filter) (*Texture, error) {
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w := NextPowerOf2Int(width)
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h := NextPowerOf2Int(height)
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w := int(NextPowerOf2Int32(int32(width)))
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h := int(NextPowerOf2Int32(int32(height)))
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if w < 4 {
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return nil, errors.New("width must be equal or more than 4.")
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}
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