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258 lines
5.9 KiB
258 lines
5.9 KiB
package base64Captcha |
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import ( |
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"bytes" |
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"encoding/base64" |
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"fmt" |
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"image" |
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"image/color" |
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"image/png" |
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"io" |
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"math" |
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"math/rand" |
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) |
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const ( |
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digitFontWidth = 11 |
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digitFontHeight = 18 |
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digitFontBlackChar = 1 |
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) |
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// ItemDigit digits captcha Struct |
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type ItemDigit struct { |
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width int |
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height int |
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*image.Paletted |
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dotSize int |
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dotCount int |
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maxSkew float64 |
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//rng siprng |
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} |
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//NewItemDigit create a instance of item-digit |
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func NewItemDigit(width int, height int, dotCount int, maxSkew float64) *ItemDigit { |
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itemDigit := &ItemDigit{width: width, height: height, dotCount: dotCount, maxSkew: maxSkew} |
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//init image.Paletted |
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itemDigit.Paletted = image.NewPaletted(image.Rect(0, 0, width, height), createRandPaletteColors(dotCount)) |
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return itemDigit |
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} |
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func createRandPaletteColors(dotCount int) color.Palette { |
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p := make([]color.Color, dotCount+1) |
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// Transparent color. |
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p[0] = color.RGBA{0xFF, 0xFF, 0xFF, 0x00} |
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// Primary color. |
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prim := color.RGBA{ |
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uint8(rand.Intn(129)), |
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uint8(rand.Intn(129)), |
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uint8(rand.Intn(129)), |
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0xFF, |
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} |
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if dotCount == 0 { |
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p[0] = prim |
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return p |
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} |
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p[1] = prim |
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// Circle colors. |
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for i := 2; i <= dotCount; i++ { |
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p[i] = randomBrightness(prim, 255) |
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} |
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return p |
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} |
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func (m *ItemDigit) calculateSizes(width, height, ncount int) { |
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// Goal: fit all digits inside the image. |
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var border int |
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if width > height { |
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border = height / 4 |
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} else { |
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border = width / 4 |
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} |
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// Convert everything to floats for calculations. |
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w := float64(width - border*2) |
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h := float64(height - border*2) |
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// fw takes into account 1-dot spacing between digits. |
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fw := float64(digitFontWidth + 1) |
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fh := float64(digitFontHeight) |
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nc := float64(ncount) |
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// Calculate the width of a single digit taking into account only the |
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// width of the image. |
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nw := w / nc |
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// Calculate the height of a digit from this width. |
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nh := nw * fh / fw |
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// Digit too high? |
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if nh > h { |
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// Fit digits based on height. |
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nh = h |
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nw = fw / fh * nh |
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} |
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// Calculate dot size. |
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m.dotSize = int(nh / fh) |
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if m.dotSize < 1 { |
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m.dotSize = 1 |
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} |
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// Save everything, making the actual width smaller by 1 dot to account |
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// for spacing between digits. |
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m.width = int(nw) - m.dotSize |
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m.height = int(nh) |
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} |
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func (m *ItemDigit) drawHorizLine(fromX, toX, y int, colorIdx uint8) { |
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for x := fromX; x <= toX; x++ { |
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m.SetColorIndex(x, y, colorIdx) |
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} |
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} |
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func (m *ItemDigit) drawCircle(x, y, radius int, colorIdx uint8) { |
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f := 1 - radius |
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dfx := 1 |
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dfy := -2 * radius |
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xo := 0 |
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yo := radius |
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m.SetColorIndex(x, y+radius, colorIdx) |
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m.SetColorIndex(x, y-radius, colorIdx) |
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m.drawHorizLine(x-radius, x+radius, y, colorIdx) |
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for xo < yo { |
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if f >= 0 { |
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yo-- |
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dfy += 2 |
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f += dfy |
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} |
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xo++ |
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dfx += 2 |
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f += dfx |
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m.drawHorizLine(x-xo, x+xo, y+yo, colorIdx) |
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m.drawHorizLine(x-xo, x+xo, y-yo, colorIdx) |
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m.drawHorizLine(x-yo, x+yo, y+xo, colorIdx) |
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m.drawHorizLine(x-yo, x+yo, y-xo, colorIdx) |
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} |
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} |
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func (m *ItemDigit) fillWithCircles(n, maxradius int) { |
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maxx := m.Bounds().Max.X |
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maxy := m.Bounds().Max.Y |
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for i := 0; i < n; i++ { |
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//colorIdx := uint8(m.rng.Int(1, m.dotCount-1)) |
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colorIdx := uint8(randIntRange(1, m.dotCount-1)) |
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//r := m.rng.Int(1, maxradius) |
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r := randIntRange(1, maxradius) |
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//m.drawCircle(m.rng.Int(r, maxx-r), m.rng.Int(r, maxy-r), r, colorIdx) |
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m.drawCircle(randIntRange(r, maxx-r), randIntRange(r, maxy-r), r, colorIdx) |
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} |
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} |
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func (m *ItemDigit) strikeThrough() { |
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maxx := m.Bounds().Max.X |
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maxy := m.Bounds().Max.Y |
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y := randIntRange(maxy/3, maxy-maxy/3) |
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amplitude := randFloat64Range(5, 20) |
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period := randFloat64Range(80, 180) |
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dx := 2.0 * math.Pi / period |
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for x := 0; x < maxx; x++ { |
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xo := amplitude * math.Cos(float64(y)*dx) |
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yo := amplitude * math.Sin(float64(x)*dx) |
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for yn := 0; yn < m.dotSize; yn++ { |
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//r := m.rng.Int(0, m.dotSize) |
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r := rand.Intn(m.dotSize) |
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m.drawCircle(x+int(xo), y+int(yo)+(yn*m.dotSize), r/2, 1) |
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} |
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} |
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} |
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//draw digit |
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func (m *ItemDigit) drawDigit(digit []byte, x, y int) { |
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skf := randFloat64Range(-m.maxSkew, m.maxSkew) |
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xs := float64(x) |
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r := m.dotSize / 2 |
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y += randIntRange(-r, r) |
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for yo := 0; yo < digitFontHeight; yo++ { |
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for xo := 0; xo < digitFontWidth; xo++ { |
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if digit[yo*digitFontWidth+xo] != digitFontBlackChar { |
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continue |
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} |
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m.drawCircle(x+xo*m.dotSize, y+yo*m.dotSize, r, 1) |
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} |
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xs += skf |
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x = int(xs) |
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} |
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} |
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func (m *ItemDigit) distort(amplude float64, period float64) { |
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w := m.Bounds().Max.X |
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h := m.Bounds().Max.Y |
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oldm := m.Paletted |
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newm := image.NewPaletted(image.Rect(0, 0, w, h), oldm.Palette) |
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dx := 2.0 * math.Pi / period |
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for x := 0; x < w; x++ { |
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for y := 0; y < h; y++ { |
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xo := amplude * math.Sin(float64(y)*dx) |
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yo := amplude * math.Cos(float64(x)*dx) |
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newm.SetColorIndex(x, y, oldm.ColorIndexAt(x+int(xo), y+int(yo))) |
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} |
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} |
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m.Paletted = newm |
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} |
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func randomBrightness(c color.RGBA, max uint8) color.RGBA { |
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minc := min3(c.R, c.G, c.B) |
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maxc := max3(c.R, c.G, c.B) |
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if maxc > max { |
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return c |
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} |
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n := rand.Intn(int(max-maxc)) - int(minc) |
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return color.RGBA{ |
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uint8(int(c.R) + n), |
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uint8(int(c.G) + n), |
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uint8(int(c.B) + n), |
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uint8(c.A), |
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} |
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} |
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func min3(x, y, z uint8) (m uint8) { |
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m = x |
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if y < m { |
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m = y |
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} |
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if z < m { |
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m = z |
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} |
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return |
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} |
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func max3(x, y, z uint8) (m uint8) { |
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m = x |
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if y > m { |
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m = y |
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} |
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if z > m { |
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m = z |
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} |
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return |
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} |
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// EncodeBinary encodes an image to PNG and returns a byte slice. |
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func (m *ItemDigit) EncodeBinary() []byte { |
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var buf bytes.Buffer |
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if err := png.Encode(&buf, m.Paletted); err != nil { |
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panic(err.Error()) |
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} |
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return buf.Bytes() |
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} |
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// WriteTo writes captcha character in png format into the given io.Writer, and |
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// returns the number of bytes written and an error if any. |
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func (m *ItemDigit) WriteTo(w io.Writer) (int64, error) { |
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n, err := w.Write(m.EncodeBinary()) |
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return int64(n), err |
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} |
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// EncodeB64string encodes an image to base64 string |
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func (m *ItemDigit) EncodeB64string() string { |
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return fmt.Sprintf("data:%s;base64,%s", MimeTypeImage, base64.StdEncoding.EncodeToString(m.EncodeBinary())) |
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}
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