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pixel: add Grayscale2bit color (#817)
* pixel: add GrayScale2bit color * pixel: fix spelling of 'GrayScale' to 'Grayscale'
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@@ -149,6 +149,20 @@ func (img Image[T]) setPixel(index int, c T) {
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}
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return
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case zeroColor.BitsPerPixel() == 2:
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// Grayscale2bit.
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offset := index / 4 // 4 pixels per byte
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shift := 6 - (index%4)*2 // bits: 6, 4, 2, 0
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ptr := (*byte)(unsafe.Add(img.data, offset))
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raw := *(*uint8)(unsafe.Pointer(&c))
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gray := raw & 0b11
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mask := byte(0b11 << shift)
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*ptr = (*ptr &^ mask) | (gray << shift)
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return
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case zeroColor.BitsPerPixel()%8 == 0:
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// Each color starts at a whole byte offset.
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// This is the easy case.
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@@ -206,6 +220,13 @@ func (img Image[T]) Get(x, y int) T {
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ptr := (*byte)(unsafe.Add(img.data, offset))
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c = ((*ptr >> (7 - uint8(bits))) & 0x1) > 0
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return any(c).(T)
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case zeroColor.BitsPerPixel() == 2:
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// Grayscale2bit.
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offset := index / 4 // 4 pixels per byte
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shift := 6 - (index%4)*2 // bits: 6, 4, 2, 0
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ptr := (*byte)(unsafe.Add(img.data, offset))
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value := ((*ptr) >> shift) & 0b11
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return any(Grayscale2bit(value)).(T)
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case zeroColor.BitsPerPixel()%8 == 0:
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// Colors like RGB565, RGB888, etc.
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offset := index * int(unsafe.Sizeof(zeroColor))
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@@ -107,6 +107,66 @@ func TestImageRGB444BE(t *testing.T) {
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}
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}
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func TestImageGrayscale2bit(t *testing.T) {
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image := pixel.NewImage[pixel.Grayscale2bit](128, 64)
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if width, height := image.Size(); width != 128 || height != 64 {
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t.Errorf("image.Size(): expected 128, 64 but got %d, %d", width, height)
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}
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// Define test colors representing 4 Grayscale levels.
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testColors := []color.RGBA{
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{R: 0x00, G: 0x00, B: 0x00, A: 0xff}, // black
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{R: 0x55, G: 0x55, B: 0x55, A: 0xff}, // dark gray
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{R: 0xaa, G: 0xaa, B: 0xaa, A: 0xff}, // light gray
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{R: 0xff, G: 0xff, B: 0xff, A: 0xff}, // white
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}
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// Single pixel roundtrip test at a fixed coordinate.
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for _, c := range testColors {
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encoded := pixel.NewColor[pixel.Grayscale2bit](c.R, c.G, c.B)
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image.Set(5, 3, encoded)
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actual := image.Get(5, 3).RGBA()
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if actual != c {
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t.Errorf("failed to roundtrip color: expected %v but got %v", c, actual)
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}
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}
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// Multi-coordinate test across the image.
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for x := 0; x < 8; x++ {
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for y, c := range testColors {
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encoded := pixel.NewColor[pixel.Grayscale2bit](c.R, c.G, c.B)
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image.Set(x, y, encoded)
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actual := image.Get(x, y).RGBA()
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if actual != c {
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t.Errorf("Set/Get mismatch at (%d,%d): expected %v but got %v", x, y, c, actual)
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}
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}
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}
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}
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func TestNewGrayscale2bitMapping(t *testing.T) {
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testCases := []struct {
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input color.RGBA
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expect pixel.Grayscale2bit
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}{
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{color.RGBA{R: 0x00, G: 0x00, B: 0x00}, 0}, // 0
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{color.RGBA{R: 0x3F, G: 0x3F, B: 0x3F}, 0}, // 63
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{color.RGBA{R: 0x40, G: 0x40, B: 0x40}, 1}, // 64
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{color.RGBA{R: 0x7F, G: 0x7F, B: 0x7F}, 1}, // 127
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{color.RGBA{R: 0x80, G: 0x80, B: 0x80}, 2}, // 128
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{color.RGBA{R: 0xBF, G: 0xBF, B: 0xBF}, 2}, // 191
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{color.RGBA{R: 0xC0, G: 0xC0, B: 0xC0}, 3}, // 192
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{color.RGBA{R: 0xFF, G: 0xFF, B: 0xFF}, 3}, // 255
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}
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for _, tc := range testCases {
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actual := pixel.NewColor[pixel.Grayscale2bit](tc.input.R, tc.input.G, tc.input.B)
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if actual != tc.expect {
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t.Errorf("NewGrayscale2bit(%#v) = %d, want %d", tc.input, actual, tc.expect)
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}
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}
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}
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func TestImageMonochrome(t *testing.T) {
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image := pixel.NewImage[pixel.Monochrome](128, 64)
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if width, height := image.Size(); width != 128 || height != 64 {
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@@ -236,6 +296,9 @@ func TestImageNoise(t *testing.T) {
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t.Run("RGB444BE", func(t *testing.T) {
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testImageNoiseN[pixel.RGB444BE](t)
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})
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t.Run("Grayscale2bit", func(t *testing.T) {
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testImageNoiseN[pixel.Grayscale2bit](t)
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})
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t.Run("Monochrome", func(t *testing.T) {
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testImageNoiseN[pixel.Monochrome](t)
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})
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+31
-1
@@ -16,7 +16,7 @@ import (
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// particular display. Each pixel is at least 1 byte in size.
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// The color format is sRGB (or close to it) in all cases except for 1-bit.
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type Color interface {
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RGB888 | RGB565BE | RGB555 | RGB444BE | Monochrome
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RGB888 | RGB565BE | RGB555 | RGB444BE | Grayscale2bit | Monochrome
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BaseColor
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}
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@@ -50,6 +50,8 @@ func NewColor[T Color](r, g, b uint8) T {
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return any(NewRGB555(r, g, b)).(T)
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case RGB444BE:
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return any(NewRGB444BE(r, g, b)).(T)
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case Grayscale2bit:
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return any(NewGrayscale2bit(r, g, b)).(T)
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case Monochrome:
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return any(NewMonochrome(r, g, b)).(T)
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default:
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@@ -204,6 +206,34 @@ func (c RGB444BE) RGBA() color.RGBA {
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return color
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}
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// Grayscale2bit represents a 2-bit Grayscale value (4 levels: black, dark gray, light gray, white).
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type Grayscale2bit uint8
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func NewGrayscale2bit(r, g, b uint8) Grayscale2bit {
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// Convert RGB to luminance using standard weights (approximation of human perception)
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// Use shift-based operations to reduce processing time.
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// luminance := (299*uint32(r) + 587*uint32(g) + 114*uint32(b)) / 1000
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luminance := (77*uint32(r) + 150*uint32(g) + 29*uint32(b)) >> 8
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// Map to 2-bit value: 0–63 => 0, 64–127 => 1, 128–191 => 2, 192–255 => 3
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return Grayscale2bit((luminance >> 6) & 0b11)
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}
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func (c Grayscale2bit) BitsPerPixel() int {
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return 2
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}
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func (c Grayscale2bit) RGBA() color.RGBA {
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// Expand 2-bit Grayscale back to 8-bit (0–255) using multiplication
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// 0 → 0x00, 1 → 0x55, 2 → 0xAA, 3 → 0xFF (i.e., multiply by 85)
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gray := uint8(c&0b11) * 85
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return color.RGBA{
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R: gray,
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G: gray,
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B: gray,
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A: 255,
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}
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}
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type Monochrome bool
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func NewMonochrome(r, g, b uint8) Monochrome {
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