package producer import ( "fmt" "image" "math" "github.com/airbusgeo/godal" log "github.com/sirupsen/logrus" "gocv.io/x/gocv" "starwiz.cn/sjy01/image-proc/pkg/config" ) func GTiffToJPG(ftiff, fjpg string, reversed bool) error { // 打开 TIFF 文件 ds, err := godal.Open(ftiff) if err != nil { log.Printf("Error opening TIFF file %s: %v", ftiff, err) return err } defer ds.Close() bands := ds.Bands() log.Infof("creating JPG for TIFF file %s.", ftiff) // 获取图像大小 width := bands[0].Structure().SizeX height := bands[0].Structure().SizeY bandsCnt := len(bands) // 创建 16 位图像矩阵 var img gocv.Mat defer img.Close() if bandsCnt == 1 { img = gocv.NewMatWithSize(height, width, gocv.MatTypeCV16UC1) } else { bandsCnt = 3 // 只取前三个波段 img = gocv.NewMatWithSize(height, width, gocv.MatTypeCV16UC3) } // 读取每个波段并存储到图像矩阵中 for i := 0; i < bandsCnt; i++ { band := bands[i] data := make([]uint16, width*height) err = band.Read(0, 0, data, width, height) if err != nil { fmt.Printf("Error reading band %d: %v\n", i, err) return err } // 将 16 位数据存储到图像的相应通道 for y := 0; y < height; y++ { for x := 0; x < width; x++ { value := data[y*width+x] img.SetShortAt(y, x*bandsCnt+i, int16(value)) } } } channels := gocv.Split(img) for i, ch := range channels { switch config.GCONFIG.BrowserImg.Enhancement { case NoEnhancement: case StretchToMinimumMaximum: minVal, maxVal, _, _ := gocv.MinMaxLoc(ch) ce := NewContrastEnhancement(int(minVal), int(maxVal)) for y := 0; y < height; y++ { for x := 0; x < width; x++ { value := int(uint16(ch.GetShortAt(y, x))) value = ce.enhance(value) ch.SetShortAt(y, x, int16(value)) } } case StretchToCumulativeCutMinMax: channels[i] = cumulativeCountCutEnhancement(ch, config.GCONFIG.BrowserImg.CumulativeCutLower, config.GCONFIG.BrowserImg.CumulativeCutUpper) ch.Close() } } img8bit := gocv.NewMat() defer img8bit.Close() if reversed { gocv.Merge([]gocv.Mat{channels[2], channels[1], channels[0]}, &img8bit) } else { gocv.Merge(channels, &img8bit) } for i := range channels { channels[i].Close() } gocv.Resize(img8bit, &img8bit, image.Point{X: img8bit.Cols() / 2, Y: img8bit.Rows() / 2}, 0, 0, gocv.InterpolationCubic) gocv.IMWrite(fjpg, img8bit) // 7. 应用伽玛校正提升亮度 // gammaCorrected := applyGammaCorrection(img8bit, 1.6) // 伽玛值 // defer gammaCorrected.Close() // ok := gocv.IMWriteWithParams(fjpg, gammaCorrected, []int{gocv.IMWriteJpegOptimize, 1}) // if !ok { // err = fmt.Errorf("error saving %s", fjpg) // return err // } return nil } // applyGammaCorrection applies gamma correction to the image func applyGammaCorrection(src gocv.Mat, gamma float64) gocv.Mat { lookupTable := make([]uint8, 256) invGamma := 1.0 / gamma for i := 0; i < 256; i++ { lookupTable[i] = uint8(math.Pow(float64(i)/255.0, invGamma) * 255.0) } dst := gocv.NewMat() gammaMat, err := gocv.NewMatFromBytes(1, 256, gocv.MatTypeCV8UC1, lookupTable) if err != nil { log.Printf("Error creating gamma correction matrix: %v", err) return src } defer gammaMat.Close() gocv.LUT(src, gammaMat, &dst) return dst }