mirror of
https://github.com/YuzuZensai/TrollSSH.git
synced 2026-09-13 21:39:02 +00:00
251 lines
5.7 KiB
Go
251 lines
5.7 KiB
Go
package render
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import (
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"bytes"
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"image"
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"image/color"
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"image/jpeg"
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"strconv"
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"strings"
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"sync"
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"unicode/utf8"
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"golang.org/x/image/draw"
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)
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type ColorTier int
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const (
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ColorTierNone ColorTier = iota
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ColorTier256
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ColorTierTrueColor
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)
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func DetectColorTier(term string) ColorTier {
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t := strings.ToLower(strings.TrimSpace(term))
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switch t {
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case "", "dumb", "vt52", "vt100", "vt102", "vt220", "ansi", "linux", "cons25", "cygwin":
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return ColorTierNone
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}
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if strings.Contains(t, "direct") || strings.Contains(t, "truecolor") {
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return ColorTierTrueColor
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}
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if strings.Contains(t, "256color") {
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return ColorTier256
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}
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if strings.HasPrefix(t, "screen") || strings.HasPrefix(t, "tmux") {
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return ColorTier256
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}
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return ColorTierTrueColor
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}
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var charsetPresets = map[string]string{
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"detailed": " .'`^\",:;Il!i><~+_-?][}{1)(|/tfjrxnuvczXYUJCLQ0OZmwqpdbkhao*#MW&8%B@$",
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"standard": " .:-=+*#%@",
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"simple": " .:oO#@",
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"blocks": " ░▒▓█",
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}
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func resolveCharset(charset string) string {
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if charset == "" {
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return charsetPresets["detailed"]
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}
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if preset, ok := charsetPresets[strings.ToLower(charset)]; ok {
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return preset
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}
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return charset
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}
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const maxPooledBuffer = 4 << 20
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var pixPool sync.Pool
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func getPixBuf(n int) []byte {
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if v := pixPool.Get(); v != nil {
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if b := *v.(*[]byte); cap(b) >= n {
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return b[:n]
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}
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}
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return make([]byte, n)
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}
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func putPixBuf(b []byte) {
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if cap(b) <= maxPooledBuffer {
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pixPool.Put(&b)
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}
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}
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var outPool sync.Pool
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func getOutBuf(capacity int) []byte {
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if v := outPool.Get(); v != nil {
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if b := *v.(*[]byte); cap(b) >= capacity {
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return b[:0]
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}
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}
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return make([]byte, 0, capacity)
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}
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func putOutBuf(b []byte) {
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if cap(b) <= maxPooledBuffer {
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outPool.Put(&b)
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}
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}
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func resizeFrame(frame, pix []byte, width, height int, keepAspectRatio bool) (*image.RGBA, error) {
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src, err := jpeg.Decode(bytes.NewReader(frame))
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if err != nil {
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return nil, err
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}
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rect := image.Rect(0, 0, width, height)
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dst := &image.RGBA{Pix: pix[:4*width*height], Stride: 4 * width, Rect: rect}
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if keepAspectRatio {
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draw.Draw(dst, dst.Bounds(), image.NewUniform(color.Black), image.Point{}, draw.Src)
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sb := src.Bounds()
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sw, sh := sb.Dx(), sb.Dy()
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scale := min(float64(width)/float64(sw), float64(height)/float64(sh))
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tw := max(1, int(float64(sw)*scale))
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th := max(1, int(float64(sh)*scale))
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x0 := (width - tw) / 2
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y0 := (height - th) / 2
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draw.ApproxBiLinear.Scale(dst, image.Rect(x0, y0, x0+tw, y0+th), src, sb, draw.Src, nil)
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} else {
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draw.ApproxBiLinear.Scale(dst, dst.Bounds(), src, src.Bounds(), draw.Src, nil)
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}
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return dst, nil
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}
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type Options struct {
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BrightnessThreshold int
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Charset string
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Invert bool
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}
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func buildRampLUT(ramp []rune, options Options) *[101][]byte {
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var lut [101][]byte
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for b := range lut {
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index := rampIndex(b, options.BrightnessThreshold, len(ramp), options.Invert)
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lut[b] = utf8.AppendRune(nil, ramp[index])
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}
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return &lut
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}
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func rampIndex(brightness, threshold, total int, invert bool) int {
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var index int
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if brightness < threshold {
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index = 0
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} else {
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index = brightness * total / 100
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if index > total-1 {
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index = total - 1
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}
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}
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if invert {
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index = total - 1 - index
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}
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return index
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}
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func frameToAscii(img *image.RGBA, rampLUT *[101][]byte) []byte {
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pix := img.Pix
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maxCharBytes := 1
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for _, char := range rampLUT {
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maxCharBytes = max(maxCharBytes, len(char))
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}
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buf := getOutBuf(len(pix) / 4 * maxCharBytes)
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for o := 0; o < len(pix); o += 4 {
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brightness := (int(pix[o])*299 + int(pix[o+1])*587 + int(pix[o+2])*114) / 255 / 10
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buf = append(buf, rampLUT[brightness]...)
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}
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output := bytes.Clone(buf)
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putOutBuf(buf)
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return output
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}
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const ansiReset = "\x1b[0m"
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var ansi256Levels = [6]int{0, 95, 135, 175, 215, 255}
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var decimal = func() (t [256]string) {
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for i := range t {
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t[i] = strconv.Itoa(i)
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}
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return
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}()
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var ansi256Cube = func() (t [256]uint8) {
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for v := range t {
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best, bestDist := 0, 1<<30
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for i, l := range ansi256Levels {
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d := v - l
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if d < 0 {
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d = -d
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}
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if d < bestDist {
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bestDist, best = d, i
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}
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}
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t[v] = uint8(best)
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}
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return
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}()
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func quantize256(r, g, b uint8) int {
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return 16 + 36*int(ansi256Cube[r]) + 6*int(ansi256Cube[g]) + int(ansi256Cube[b])
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}
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func appendColor(buf []byte, r, g, b uint8, tier ColorTier) []byte {
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if tier == ColorTierTrueColor {
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buf = append(buf, "\x1b[38;2;"...)
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buf = append(buf, decimal[r]...)
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buf = append(buf, ';')
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buf = append(buf, decimal[g]...)
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buf = append(buf, ';')
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buf = append(buf, decimal[b]...)
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} else {
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buf = append(buf, "\x1b[38;5;"...)
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buf = append(buf, decimal[quantize256(r, g, b)]...)
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}
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return append(buf, 'm')
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}
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func frameToAnsi(img *image.RGBA, rampLUT *[101][]byte, tier ColorTier) []byte {
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bounds := img.Bounds()
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bytesPerCell := 11
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if tier == ColorTierTrueColor {
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bytesPerCell = 16
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}
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buf := getOutBuf(bounds.Dx() * bounds.Dy() * bytesPerCell)
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var lastR, lastG, lastB uint8
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last256 := -1
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first := true
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for y := bounds.Min.Y; y < bounds.Max.Y; y++ {
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o := img.PixOffset(bounds.Min.X, y)
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for x := bounds.Min.X; x < bounds.Max.X; x++ {
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r, g, bl := img.Pix[o], img.Pix[o+1], img.Pix[o+2]
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brightness := (int(r)*299 + int(g)*587 + int(bl)*114) / 255 / 10
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colorChanged := first || r != lastR || g != lastG || bl != lastB
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if tier == ColorTier256 {
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index := quantize256(r, g, bl)
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colorChanged = first || index != last256
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last256 = index
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}
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if colorChanged {
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buf = appendColor(buf, r, g, bl, tier)
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lastR, lastG, lastB = r, g, bl
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first = false
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}
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buf = append(buf, rampLUT[brightness]...)
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o += 4
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}
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if y < bounds.Max.Y-1 {
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buf = append(buf, "\r\n"...)
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}
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}
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buf = append(buf, ansiReset...)
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output := bytes.Clone(buf)
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putOutBuf(buf)
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return output
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}
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