mirror of
https://github.com/willnorris/imageproxy.git
synced 2025-01-06 22:40:34 -05:00
400 lines
8.7 KiB
Go
400 lines
8.7 KiB
Go
/*
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Package imaging provides basic image manipulation functions (resize, rotate, flip, crop, etc.).
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This package is based on the standard Go image package and works best along with it.
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Image manipulation functions provided by the package take any image type
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that implements `image.Image` interface as an input, and return a new image of
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`*image.NRGBA` type (32bit RGBA colors, not premultiplied by alpha).
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*/
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package imaging
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import (
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"errors"
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"image"
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"image/color"
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"image/gif"
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"image/jpeg"
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"image/png"
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"io"
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"os"
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"path/filepath"
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"strings"
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"golang.org/x/image/bmp"
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"golang.org/x/image/tiff"
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)
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type Format int
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const (
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JPEG Format = iota
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PNG
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GIF
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TIFF
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BMP
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)
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func (f Format) String() string {
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switch f {
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case JPEG:
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return "JPEG"
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case PNG:
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return "PNG"
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case GIF:
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return "GIF"
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case TIFF:
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return "TIFF"
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case BMP:
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return "BMP"
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default:
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return "Unsupported"
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}
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}
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var (
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ErrUnsupportedFormat = errors.New("imaging: unsupported image format")
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)
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// Decode reads an image from r.
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func Decode(r io.Reader) (image.Image, error) {
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img, _, err := image.Decode(r)
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if err != nil {
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return nil, err
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}
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return toNRGBA(img), nil
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}
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// Open loads an image from file
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func Open(filename string) (image.Image, error) {
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file, err := os.Open(filename)
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if err != nil {
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return nil, err
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}
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defer file.Close()
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img, err := Decode(file)
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return img, err
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}
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// Encode writes the image img to w in the specified format (JPEG, PNG, GIF, TIFF or BMP).
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func Encode(w io.Writer, img image.Image, format Format) error {
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var err error
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switch format {
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case JPEG:
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var rgba *image.RGBA
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if nrgba, ok := img.(*image.NRGBA); ok {
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if nrgba.Opaque() {
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rgba = &image.RGBA{
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Pix: nrgba.Pix,
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Stride: nrgba.Stride,
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Rect: nrgba.Rect,
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}
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}
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}
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if rgba != nil {
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err = jpeg.Encode(w, rgba, &jpeg.Options{Quality: 95})
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} else {
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err = jpeg.Encode(w, img, &jpeg.Options{Quality: 95})
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}
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case PNG:
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err = png.Encode(w, img)
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case GIF:
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err = gif.Encode(w, img, &gif.Options{NumColors: 256})
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case TIFF:
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err = tiff.Encode(w, img, &tiff.Options{Compression: tiff.Deflate, Predictor: true})
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case BMP:
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err = bmp.Encode(w, img)
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default:
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err = ErrUnsupportedFormat
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}
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return err
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}
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// Save saves the image to file with the specified filename.
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// The format is determined from the filename extension: "jpg" (or "jpeg"), "png", "gif", "tif" (or "tiff") and "bmp" are supported.
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func Save(img image.Image, filename string) (err error) {
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formats := map[string]Format{
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".jpg": JPEG,
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".jpeg": JPEG,
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".png": PNG,
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".tif": TIFF,
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".tiff": TIFF,
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".bmp": BMP,
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".gif": GIF,
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}
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ext := strings.ToLower(filepath.Ext(filename))
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f, ok := formats[ext]
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if !ok {
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return ErrUnsupportedFormat
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}
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file, err := os.Create(filename)
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if err != nil {
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return err
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}
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defer file.Close()
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return Encode(file, img, f)
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}
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// New creates a new image with the specified width and height, and fills it with the specified color.
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func New(width, height int, fillColor color.Color) *image.NRGBA {
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if width <= 0 || height <= 0 {
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return &image.NRGBA{}
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}
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dst := image.NewNRGBA(image.Rect(0, 0, width, height))
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c := color.NRGBAModel.Convert(fillColor).(color.NRGBA)
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if c.R == 0 && c.G == 0 && c.B == 0 && c.A == 0 {
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return dst
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}
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cs := []uint8{c.R, c.G, c.B, c.A}
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// fill the first row
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for x := 0; x < width; x++ {
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copy(dst.Pix[x*4:(x+1)*4], cs)
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}
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// copy the first row to other rows
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for y := 1; y < height; y++ {
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copy(dst.Pix[y*dst.Stride:y*dst.Stride+width*4], dst.Pix[0:width*4])
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}
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return dst
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}
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// Clone returns a copy of the given image.
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func Clone(img image.Image) *image.NRGBA {
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srcBounds := img.Bounds()
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srcMinX := srcBounds.Min.X
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srcMinY := srcBounds.Min.Y
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dstBounds := srcBounds.Sub(srcBounds.Min)
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dstW := dstBounds.Dx()
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dstH := dstBounds.Dy()
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dst := image.NewNRGBA(dstBounds)
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switch src := img.(type) {
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case *image.NRGBA:
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rowSize := srcBounds.Dx() * 4
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parallel(dstH, func(partStart, partEnd int) {
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for dstY := partStart; dstY < partEnd; dstY++ {
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di := dst.PixOffset(0, dstY)
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si := src.PixOffset(srcMinX, srcMinY+dstY)
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copy(dst.Pix[di:di+rowSize], src.Pix[si:si+rowSize])
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}
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})
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case *image.NRGBA64:
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parallel(dstH, func(partStart, partEnd int) {
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for dstY := partStart; dstY < partEnd; dstY++ {
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di := dst.PixOffset(0, dstY)
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si := src.PixOffset(srcMinX, srcMinY+dstY)
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for dstX := 0; dstX < dstW; dstX++ {
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dst.Pix[di+0] = src.Pix[si+0]
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dst.Pix[di+1] = src.Pix[si+2]
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dst.Pix[di+2] = src.Pix[si+4]
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dst.Pix[di+3] = src.Pix[si+6]
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di += 4
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si += 8
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}
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}
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})
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case *image.RGBA:
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parallel(dstH, func(partStart, partEnd int) {
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for dstY := partStart; dstY < partEnd; dstY++ {
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di := dst.PixOffset(0, dstY)
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si := src.PixOffset(srcMinX, srcMinY+dstY)
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for dstX := 0; dstX < dstW; dstX++ {
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a := src.Pix[si+3]
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dst.Pix[di+3] = a
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switch a {
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case 0:
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dst.Pix[di+0] = 0
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dst.Pix[di+1] = 0
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dst.Pix[di+2] = 0
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case 0xff:
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dst.Pix[di+0] = src.Pix[si+0]
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dst.Pix[di+1] = src.Pix[si+1]
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dst.Pix[di+2] = src.Pix[si+2]
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default:
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var tmp uint16
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tmp = uint16(src.Pix[si+0]) * 0xff / uint16(a)
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dst.Pix[di+0] = uint8(tmp)
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tmp = uint16(src.Pix[si+1]) * 0xff / uint16(a)
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dst.Pix[di+1] = uint8(tmp)
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tmp = uint16(src.Pix[si+2]) * 0xff / uint16(a)
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dst.Pix[di+2] = uint8(tmp)
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}
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di += 4
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si += 4
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}
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}
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})
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case *image.RGBA64:
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parallel(dstH, func(partStart, partEnd int) {
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for dstY := partStart; dstY < partEnd; dstY++ {
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di := dst.PixOffset(0, dstY)
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si := src.PixOffset(srcMinX, srcMinY+dstY)
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for dstX := 0; dstX < dstW; dstX++ {
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a := src.Pix[si+6]
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dst.Pix[di+3] = a
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switch a {
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case 0:
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dst.Pix[di+0] = 0
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dst.Pix[di+1] = 0
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dst.Pix[di+2] = 0
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case 0xff:
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dst.Pix[di+0] = src.Pix[si+0]
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dst.Pix[di+1] = src.Pix[si+2]
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dst.Pix[di+2] = src.Pix[si+4]
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default:
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var tmp uint16
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tmp = uint16(src.Pix[si+0]) * 0xff / uint16(a)
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dst.Pix[di+0] = uint8(tmp)
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tmp = uint16(src.Pix[si+2]) * 0xff / uint16(a)
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dst.Pix[di+1] = uint8(tmp)
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tmp = uint16(src.Pix[si+4]) * 0xff / uint16(a)
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dst.Pix[di+2] = uint8(tmp)
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}
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di += 4
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si += 8
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}
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}
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})
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case *image.Gray:
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parallel(dstH, func(partStart, partEnd int) {
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for dstY := partStart; dstY < partEnd; dstY++ {
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di := dst.PixOffset(0, dstY)
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si := src.PixOffset(srcMinX, srcMinY+dstY)
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for dstX := 0; dstX < dstW; dstX++ {
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c := src.Pix[si]
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dst.Pix[di+0] = c
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dst.Pix[di+1] = c
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dst.Pix[di+2] = c
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dst.Pix[di+3] = 0xff
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di += 4
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si += 1
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}
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}
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})
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case *image.Gray16:
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parallel(dstH, func(partStart, partEnd int) {
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for dstY := partStart; dstY < partEnd; dstY++ {
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di := dst.PixOffset(0, dstY)
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si := src.PixOffset(srcMinX, srcMinY+dstY)
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for dstX := 0; dstX < dstW; dstX++ {
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c := src.Pix[si]
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dst.Pix[di+0] = c
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dst.Pix[di+1] = c
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dst.Pix[di+2] = c
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dst.Pix[di+3] = 0xff
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di += 4
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si += 2
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}
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}
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})
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case *image.YCbCr:
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parallel(dstH, func(partStart, partEnd int) {
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for dstY := partStart; dstY < partEnd; dstY++ {
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di := dst.PixOffset(0, dstY)
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for dstX := 0; dstX < dstW; dstX++ {
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srcX := srcMinX + dstX
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srcY := srcMinY + dstY
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siy := src.YOffset(srcX, srcY)
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sic := src.COffset(srcX, srcY)
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r, g, b := color.YCbCrToRGB(src.Y[siy], src.Cb[sic], src.Cr[sic])
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dst.Pix[di+0] = r
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dst.Pix[di+1] = g
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dst.Pix[di+2] = b
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dst.Pix[di+3] = 0xff
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di += 4
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}
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}
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})
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case *image.Paletted:
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plen := len(src.Palette)
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pnew := make([]color.NRGBA, plen)
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for i := 0; i < plen; i++ {
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pnew[i] = color.NRGBAModel.Convert(src.Palette[i]).(color.NRGBA)
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}
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parallel(dstH, func(partStart, partEnd int) {
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for dstY := partStart; dstY < partEnd; dstY++ {
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di := dst.PixOffset(0, dstY)
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si := src.PixOffset(srcMinX, srcMinY+dstY)
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for dstX := 0; dstX < dstW; dstX++ {
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c := pnew[src.Pix[si]]
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dst.Pix[di+0] = c.R
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dst.Pix[di+1] = c.G
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dst.Pix[di+2] = c.B
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dst.Pix[di+3] = c.A
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di += 4
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si += 1
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}
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}
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})
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default:
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parallel(dstH, func(partStart, partEnd int) {
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for dstY := partStart; dstY < partEnd; dstY++ {
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di := dst.PixOffset(0, dstY)
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for dstX := 0; dstX < dstW; dstX++ {
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c := color.NRGBAModel.Convert(img.At(srcMinX+dstX, srcMinY+dstY)).(color.NRGBA)
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dst.Pix[di+0] = c.R
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dst.Pix[di+1] = c.G
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dst.Pix[di+2] = c.B
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dst.Pix[di+3] = c.A
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di += 4
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}
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}
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})
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}
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return dst
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}
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// This function used internally to convert any image type to NRGBA if needed.
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func toNRGBA(img image.Image) *image.NRGBA {
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srcBounds := img.Bounds()
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if srcBounds.Min.X == 0 && srcBounds.Min.Y == 0 {
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if src0, ok := img.(*image.NRGBA); ok {
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return src0
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}
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}
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return Clone(img)
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}
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