mirror of
https://github.com/hybridgroup/gocv
synced 2025-08-25 08:41:04 +08:00
217 lines
5.3 KiB
Go
217 lines
5.3 KiB
Go
package gocv
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import (
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"image"
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"image/color"
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"testing"
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)
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func TestCascadeClassifier(t *testing.T) {
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img := IMRead("images/face.jpg", IMReadColor)
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if img.Empty() {
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t.Error("Invalid Mat in CascadeClassifier test")
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}
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defer img.Close()
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// load classifier to recognize faces
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classifier := NewCascadeClassifier()
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defer classifier.Close()
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classifier.Load("data/haarcascade_frontalface_default.xml")
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rects := classifier.DetectMultiScale(img)
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if len(rects) != 1 {
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t.Error("Error in TestCascadeClassifier test")
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}
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}
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func TestCascadeClassifierWithParams(t *testing.T) {
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img := IMRead("images/face.jpg", IMReadColor)
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if img.Empty() {
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t.Error("Invalid Mat in CascadeClassifierWithParams test")
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}
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defer img.Close()
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// load classifier to recognize faces
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classifier := NewCascadeClassifier()
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defer classifier.Close()
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classifier.Load("data/haarcascade_frontalface_default.xml")
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rects := classifier.DetectMultiScaleWithParams(img, 1.1, 3, 0, image.Pt(0, 0), image.Pt(0, 0))
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if len(rects) != 1 {
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t.Errorf("Error in CascadeClassifierWithParams test: %v", len(rects))
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}
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}
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func TestHOGDescriptor(t *testing.T) {
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img := IMRead("images/face.jpg", IMReadColor)
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if img.Empty() {
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t.Error("Invalid Mat in HOGDescriptor test")
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}
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defer img.Close()
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// load HOGDescriptor to recognize people
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hog := NewHOGDescriptor()
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defer hog.Close()
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d := HOGDefaultPeopleDetector()
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defer d.Close()
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hog.SetSVMDetector(d)
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rects := hog.DetectMultiScale(img)
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if len(rects) != 1 {
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t.Errorf("Error in TestHOGDescriptor test: %d", len(rects))
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}
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}
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func TestHOGDescriptorWithParams(t *testing.T) {
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img := IMRead("images/face.jpg", IMReadColor)
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if img.Empty() {
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t.Error("Invalid Mat in HOGDescriptorWithParams test")
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}
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defer img.Close()
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// load HOGDescriptor to recognize people
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hog := NewHOGDescriptor()
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defer hog.Close()
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d := HOGDefaultPeopleDetector()
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defer d.Close()
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hog.SetSVMDetector(d)
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rects := hog.DetectMultiScaleWithParams(img, 0, image.Pt(0, 0), image.Pt(0, 0),
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1.05, 2.0, false)
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if len(rects) != 1 {
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t.Errorf("Error in TestHOGDescriptorWithParams test: %d", len(rects))
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}
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}
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func TestGroupRectangles(t *testing.T) {
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rects := []image.Rectangle{
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image.Rect(10, 10, 30, 30),
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image.Rect(10, 10, 30, 30),
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image.Rect(10, 10, 30, 30),
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image.Rect(10, 10, 30, 30),
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image.Rect(10, 10, 30, 30),
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image.Rect(10, 10, 30, 30),
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image.Rect(10, 10, 30, 30),
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image.Rect(10, 10, 30, 30),
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image.Rect(10, 10, 30, 30),
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image.Rect(10, 10, 30, 30),
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image.Rect(10, 10, 35, 35),
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image.Rect(10, 10, 35, 35),
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image.Rect(10, 10, 35, 35),
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image.Rect(10, 10, 35, 35),
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image.Rect(10, 10, 35, 35),
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image.Rect(10, 10, 35, 35),
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image.Rect(10, 10, 35, 35),
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image.Rect(10, 10, 35, 35),
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image.Rect(10, 10, 35, 35),
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image.Rect(10, 10, 35, 35),
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}
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results := GroupRectangles(rects, 1, 0.2)
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if len(results) != 2 {
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t.Errorf("Error in TestGroupRectangles test: %d", len(results))
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}
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}
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func TestQRCodeDetector(t *testing.T) {
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img := IMRead("images/qrcode.png", IMReadColor)
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if img.Empty() {
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t.Error("Invalid Mat in QRCodeDetector test")
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}
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defer img.Close()
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// load QRCodeDetector to QR codes
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detector := NewQRCodeDetector()
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defer detector.Close()
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bbox := NewMat()
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qr := NewMat()
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defer bbox.Close()
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defer qr.Close()
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res := detector.Detect(img, &bbox)
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if !res {
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t.Errorf("Error in TestQRCodeDetector test: res == false")
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}
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res2 := detector.Decode(img, bbox, &qr)
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res3 := detector.DetectAndDecode(img, &bbox, &qr)
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if res2 != res3 {
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t.Errorf("Error in TestQRCodeDetector res2: %s != res3: %s", res2, res3)
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}
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// multi
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img2 := IMRead("images/multi_qrcodes.png", IMReadColor)
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defer img2.Close()
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if img2.Empty() {
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t.Error("Invalid Mat in QRCodeDetector test")
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}
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multiBox := NewMat()
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defer multiBox.Close()
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res4 := detector.DetectMulti(img2, &multiBox)
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if !res4 {
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t.Errorf("Error in TestQRCodeDetector Multi test: res == false")
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}
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if multiBox.Rows() != 2 {
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t.Errorf("Error in TestQRCodeDetector Multi test: number of Rows = %d", multiBox.Rows())
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}
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multiBox2 := NewMat()
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defer multiBox2.Close()
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decoded := []string{}
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qrCodes := make([]Mat, 0)
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defer func() {
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for _, q := range qrCodes {
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q.Close()
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}
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}()
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success := detector.DetectAndDecodeMulti(img2, &decoded, &multiBox2, &qrCodes)
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if !success {
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t.Errorf("Error in TestQRCodeDetector Multi test: returned false")
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}
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tmpPoints := NewMat()
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defer tmpPoints.Close()
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tmpQr := NewMat()
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defer tmpQr.Close()
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var tmpDecoded string
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for i, s := range decoded {
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tmpInput := padQr(&(qrCodes[i]))
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defer tmpInput.Close()
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tmpDecoded = detector.Decode(tmpInput, tmpPoints, &tmpQr)
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if tmpDecoded != s {
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t.Errorf("Error in TestQRCodeDetector Multi test: decoded straight QR code=%s, decoded[%d] =%s", tmpDecoded, i, s)
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}
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}
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emptyMat := NewMatWithSize(100, 200, MatTypeCV8UC3)
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success = detector.DetectAndDecodeMulti(emptyMat, &decoded, &multiBox2, &qrCodes)
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if success {
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t.Errorf("Error in TestQRCodeDetector Multi test: empty Mat returned sucess=true")
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}
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emptyMat.Close()
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}
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func padQr(qr *Mat) Mat {
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l := 101
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d := 10
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L := l + 2*d
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out := NewMatWithSizeFromScalar(NewScalar(255, 255, 255, 255), L, L, MatTypeCV8UC3)
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qrCodes0 := NewMat()
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defer qrCodes0.Close()
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qr.ConvertTo(&qrCodes0, MatTypeCV8UC3)
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Resize(qrCodes0, &qrCodes0, image.Point{L, L}, 0, 0, InterpolationArea)
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CopyMakeBorder(qrCodes0, &out, d, d, d, d, BorderConstant, color.RGBA{255, 255, 255, 255})
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return out
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}
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