c#文档图片自动纠偏
复制代码 代码如下:
public class Deske
{
// Representation of a line in the image.
private class HougLine
{
// Count of points in the line.
public int Count;
// Index in Matrix.
public int Index;
// The line is represented as all x,y that solve ycos(alpha)-xsin(alpha)=d
public double Alpha;
}
// The Bitmap
public Bitmap _internalBmp;
// The range of angles to search for lines
const double ALPHA_START = -20;
const double ALPHA_STEP = 0.2;
const int STEPS = 40 5;
const double STEP = 1;
// Precalculation of sin and cos.
double[] _sinA;
double[] _cosA;
// Range of d
double _min;
int _count;
// Count of points that fit in a line.
int[] _hMatrix;
// Calculate the ske angle of the image cBmp.
public double GetSkeAngle()
{
// Hough Transformation
Calc();
// Top 20 of the detected lines in the image.
HougLine[] hl = GetTop(20);
// Average angle of the lines
double sum = 0;
int count = 0;
for (int i = 0; i <= 19; i++)
{
sum += hl[i].Alpha;
count += 1;
}
return sum / count;
}
// Calculate the Count lines in the image ith most points.
private HougLine[] GetTop(int count)
{
HougLine[] hl = ne HougLine[count];
for (int i = 0; i <= count - 1; i++)
{
hl[i] = ne HougLine();
}
for (int i = 0; i <= _hMatrix.Length - 1; i++)
{
if (_hMatrix[i] > hl[count - 1].Count)
{
hl[count - 1].Count = _hMatrix[i];
hl[count - 1].Index = i;
int j = count - 1;
hile (j > 0 && hl[j].Count > hl[j - 1].Count)
{
HougLine tmp = hl[j];
hl[j] = hl[j - 1];
hl[j - 1] = tmp;
j -= 1;
}
}
}
for (int i = 0; i <= count - 1; i++)
{
int dIndex = hl[i].Index / STEPS;
int alphaIndex = hl[i].Index - dIndex STEPS;
hl[i].Alpha = GetAlpha(alphaIndex);
//hl[i].D = dIndex + _min;
}
return hl;
}
// Hough Transforamtion:
private void Calc()
{
int hMin = _internalBmp.Height / 4;
int hMax = _internalBmp.Height 3 / 4;
Init();
for (int y = hMin; y <= hMax; y++)
{
for (int x = 1; x <= _internalBmp.Width - 2; x++)
{
// only loer edges are considered.
if (IsBlack(x, y))
{
if (!IsBlack(x, y + 1))
{
Calc(x, y);
}
}
}
}
}
// Calculate all lines through the point (x,y).
private void Calc(int x, int y)
{
int alpha;
for (alpha = 0; alpha <= STEPS - 1; alpha++)
{
double d = y _cosA[alpha] - x _sinA[alpha];
int calculatedIndex = (int)CalcDIndex(d);
int index = calculatedIndex STEPS + alpha;
try
{
_hMatrix[index] += 1;
}
catch (Exception ex)
{
System.Diagnostics.Debug.WriteLine(ex.ToString());
}
}
}
private double CalcDIndex(double d)
{
return Convert.ToInt32(d - _min);
}
private bool IsBlack(int x, int y)
{
Color c = _internalBmp.GetPixel(x, y);
double luminance = (c.R 0.299) + (c.G 0.587) + (c.B 0.114);
return luminance < 140;
}
private void Init()
{
// Precalculation of sin and cos.
_cosA = ne double[STEPS];
_sinA = ne double[STEPS];
for (int i = 0; i < STEPS; i++)
{
double angle = GetAlpha(i) Math.PI / 180.0;
_sinA[i] = Math.Sin(angle);
_cosA[i] = Math.Cos(angle);
}
// Range of d:
_min = -_internalBmp.Width;
_count = (int)(2 (_internalBmp.Width + _internalBmp.Height) / STEP);
_hMatrix = ne int[_count STEPS];
}
private static double GetAlpha(int index)
{
return ALPHA_START + index ALPHA_STEP;
}
}
自己写的调用方法
复制代码 代码如下:
public static void DeskeImage(string fileName, byte binarizeThreshold)
{
//打开图像
Bitmap bmp = OpenImage(fileName);
Deske deske = ne Deske();
Bitmap tempBmp = CropImage(bmp, bmp.Width / 4, bmp.Height / 4, bmp.Width / 2, bmp.Height / 2);
deske._internalBmp = BinarizeImage(tempBmp, binarizeThreshold);
double angle = deske.GetSkeAngle();
bmp = RotateImage(bmp, (float)(-angle));
//保存图像(需要再还原图片原本的位深度)
SaveImage(bmp, fileName);
}
///
/// 图像剪切
///
///
///
///
///
///
///
private static Bitmap CropImage(Bitmap bmp, int StartX, int StartY, int , int h)
{
try
{
Bitmap bmpOut = ne Bitmap(, h, PixelFormat.Format32bppArgb);
Graphics g = Graphics.FromImage(bmpOut);
g.DraImage(bmp, ne Rectangle(0, 0, , h), ne Rectangle(StartX, StartY, , h), GraphicsUnit.Pixel);
g.Dispose();
return bmpOut;
}
catch
{
return null;
}
}
///
/// 图像二值化
///
///
/// 阈值
private static Bitmap BinarizeImage(Bitmap b, byte threshold)
{
int idth = b.Width;
int height = b.Height;
BitmapData data = b.LockBits(ne Rectangle(0, 0, idth, height), ImageLockMode.ReadWrite, PixelFormat.Format32bppRgb);
unsafe
{
byte p = (byte)data.Scan0;
int offset = data.Stride - idth 4;
byte R, G, B, gray;
for (int y = 0; y < height; y++)
{
for (int x = 0; x < idth; x++)
{
R = p[2];
G = p[1];
B = p[0];
gray = (byte)((R 19595 + G 38469 + B 7472) >> 16);
if (gray >= threshold)
{
p[0] = p[1] = p[2] = 255;
}
else
{
p[0] = p[1] = p[2] = 0;
}
p += 4;
}
p += offset;
}
b.UnlockBits(data);
return b;
}
}
///
/// 图像旋转
///
///
/// 角度
///
private static Bitmap RotateImage(Bitmap bmp, float angle)
{
PixelFormat pixelFormat = bmp.PixelFormat;
PixelFormat pixelFormatOld = pixelFormat;
if (bmp.Palette.Entries.Count() > 0)
{
pixelFormat = PixelFormat.Format24bppRgb;
}
Bitmap tmpBitmap = ne Bitmap(bmp.Width, bmp.Height, pixelFormat);
tmpBitmap.SetResolution(bmp.HorizontalResolution, bmp.VerticalResolution);
Graphics g = Graphics.FromImage(tmpBitmap);
try
{
g.FillRectangle(Brushes.White, 0, 0, bmp.Width, bmp.Height);
g.RotateTransform(angle);
g.DraImage(bmp, 0, 0);
}
catch
{
}
finally
{
g.Dispose();
}
if (pixelFormatOld == PixelFormat.Format8bppIndexed) tmpBitmap = CopyTo8bpp(tmpBitmap);
else if (pixelFormatOld == PixelFormat.Format1bppIndexed) tmpBitmap = CopyTo1bpp(tmpBitmap);
return tmpBitmap;
}
在进行图片选择时,位深度为1、4、8的索引图片是没方法直接用Graphics进行旋转操作的,需要图像的PixelFormat再做旋转。
现在只实现位深度为1和8的索引图片还原。
复制代码 代码如下:
private static Bitmap CopyTo1bpp(Bitmap b)
{
int = b.Width, h = b.Height; Rectangle r = ne Rectangle(0, 0, , h);
if (b.PixelFormat != PixelFormat.Format32bppPArgb)
{
Bitmap temp = ne Bitmap(, h, PixelFormat.Format32bppPArgb);
temp.SetResolution(b.HorizontalResolution, b.VerticalResolution);
Graphics g = Graphics.FromImage(temp);
g.DraImage(b, r, 0, 0, , h, GraphicsUnit.Pixel);
g.Dispose();
b = temp;
}
BitmapData bdat = b.LockBits(r, ImageLockMode.ReadOnly, b.PixelFormat);
Bitmap b0 = ne Bitmap(, h, PixelFormat.Format1bppIndexed);
b0.SetResolution(b.HorizontalResolution, b.VerticalResolution);
BitmapData b0dat = b0.LockBits(r, ImageLockMode.ReadWrite, PixelFormat.Format1bppIndexed);
for (int y = 0; y < h; y++)
{
for (int x = 0; x < ; x++)
{
int index = y bdat.Stride + (x 4);
if (Color.FromArgb(Marshal.ReadByte(bdat.Scan0, index + 2), Marshal.ReadByte(bdat.Scan0, index + 1), Marshal.ReadByte(bdat.Scan0, index)).GetBrightness() > 0.5f)
{
int index0 = y b0dat.Stride + (x >> 3);
byte p = Marshal.ReadByte(b0dat.Scan0, index0);
byte mask = (byte)(0x80 >> (x & 0x7));
Marshal.WriteByte(b0dat.Scan0, index0, (byte)(p | mask));
}
}
}
b0.UnlockBits(b0dat);
b.UnlockBits(bdat);
return b0;
}
private static Bitmap CopyTo8bpp(Bitmap bmp)
{
if (bmp == null) return null;
Rectangle rect = ne Rectangle(0, 0, bmp.Width, bmp.Height);
BitmapData bmpData = bmp.LockBits(rect, ImageLockMode.ReadOnly, bmp.PixelFormat);
int idth = bmpData.Width;
int height = bmpData.Height;
int stride = bmpData.Stride;
int offset = stride - idth 3;
IntPtr ptr = bmpData.Scan0;
int scanBytes = stride height;
int posScan = 0, posDst = 0;
byte[] rgbValues = ne byte[scanBytes];
Marshal.Copy(ptr, rgbValues, 0, scanBytes);
byte[] grayValues = ne byte[idth height];
for (int i = 0; i < height; i++)
{
for (int j = 0; j < idth; j++)
{
double temp = rgbValues[posScan++] 0.11 +
rgbValues[posScan++] 0.59 +
rgbValues[posScan++] 0.3;
grayValues[posDst++] = (byte)temp;
}
posScan += offset;
}
Marshal.Copy(rgbValues, 0, ptr, scanBytes);
bmp.UnlockBits(bmpData);
Bitmap bitmap = ne Bitmap(idth, height, PixelFormat.Format8bppIndexed);
bitmap.SetResolution(bmp.HorizontalResolution, bmp.VerticalResolution);
BitmapData bitmapData = bitmap.LockBits(ne Rectangle(0, 0, idth, height), ImageLockMode.WriteOnly, PixelFormat.Format8bppIndexed);
int offset0 = bitmapData.Stride - bitmapData.Width;
int scanBytes0 = bitmapData.Stride bitmapData.Height;
byte[] raValues = ne byte[scanBytes0];
int posSrc = 0;
posScan = 0;
for (int i = 0; i < height; i++)
{
for (int j = 0; j < idth; j++)
{
raValues[posScan++] = grayValues[posSrc++];
}
posScan += offset0;
}
Marshal.Copy(raValues, 0, bitmapData.Scan0, scanBytes0);
bitmap.UnlockBits(bitmapData);
ColorPalette palette;
using (Bitmap bmp0 = ne Bitmap(1, 1, PixelFormat.Format8bppIndexed))
{
palette = bmp0.Palette;
}
for (int i = 0; i < 256; i++)
{
palette.Entries[i] = Color.FromArgb(i, i, i);
}
bitmap.Palette = palette;
return bitmap;
}
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