** This is part of the CTSim program
** Copyright (C) 1983-2000 Kevin Rosenberg
**
-** $Id: imagefile.cpp,v 1.7 2000/07/11 10:32:44 kevin Exp $
+** $Id: imagefile.cpp,v 1.28 2001/01/01 10:14:34 kevin Exp $
**
** This program is free software; you can redistribute it and/or modify
** it under the terms of the GNU General Public License (version 2) as
#include "ct.h"
+F32Image::F32Image (int nx, int ny, int dataType)\r
+: Array2dFile (nx, ny, sizeof(kfloat32), Array2dFile::PIXEL_FLOAT32, dataType)\r
+{\r
+}\r
+\r
+F32Image::F32Image (void)\r
+: Array2dFile()\r
+{\r
+ setPixelFormat (Array2dFile::PIXEL_FLOAT32);\r
+ setPixelSize (sizeof(kfloat32));\r
+ setDataType (Array2dFile::DATA_TYPE_REAL);\r
+}\r
+\r
+F64Image::F64Image (int nx, int ny, int dataType)\r
+: Array2dFile (nx, ny, sizeof(kfloat64), Array2dFile::PIXEL_FLOAT64, dataType)\r
+{\r
+}\r
+\r
+F64Image::F64Image (void)\r
+: Array2dFile ()\r
+{\r
+ setPixelFormat (PIXEL_FLOAT64);\r
+ setPixelSize (sizeof(kfloat64));\r
+ setDataType (Array2dFile::DATA_TYPE_REAL);\r
+}\r
void
ImageFile::filterResponse (const char* const domainName, double bw, const char* const filterName, double filt_param)
-{
+{\r
+ ImageFileArray v = getArray();\r
+ SignalFilter filter (filterName, domainName, bw, filt_param);\r
+\r
+#if 1\r
+ int iXCenter, iYCenter;\r
+ if (isEven (m_nx))\r
+ iXCenter = m_nx / 2;\r
+ else\r
+ iXCenter = (m_nx - 1) / 2;\r
+ if (isEven (m_ny))\r
+ iYCenter = m_ny / 2;\r
+ else\r
+ iYCenter = (m_ny - 1) / 2;\r
+\r
+ for (int ix = 0; ix < m_nx; ix++)\r
+ for (int iy = 0; iy < m_ny; iy++) {\r
+ long lD2 = (ix - iXCenter) * (ix - iXCenter) + (iy - iYCenter) * (iy - iYCenter);\r
+ double r = ::sqrt (static_cast<double>(lD2));\r
+ v[ix][iy] = filter.response (r);\r
+ }\r
+#else
int hx = (m_nx - 1) / 2;
int hy = (m_ny - 1) / 2;
- ImageFileArray v = getArray();
- SignalFilter filter (filterName, domainName, bw, filt_param);
-
+
for (int i = -hx; i <= hx; i++) {
for (int j = -hy; j <= hy; j++) {
- double r = sqrt (i * i + j * j);
+ double r = ::sqrt (i * i + j * j);
v[i+hx][j+hy] = filter.response (r);
}
- }
+ }\r
+#endif
}
int
-ImageFile::display (void)
+ImageFile::display (void) const
{
- double pmin, pmax;
-
- // getPixelValueRange (pmin, pmax);
-
- return (displayScaling (1, pmin, pmax));
+ double pmin, pmax;
+
+ getMinMax (pmin, pmax);
+
+ return (displayScaling (1, pmin, pmax));
}
int
-ImageFile::displayScaling (const int scale, const ImageFileValue pmin, const ImageFileValue pmax)
+ImageFile::displayScaling (const int scale, const ImageFileValue pmin, const ImageFileValue pmax) const
{
- int grayscale[256];
- int nx = m_nx;
- int ny = m_ny;
- ImageFileArray v = getArray();
-
+ int nx = m_nx;
+ int ny = m_ny;
+ ImageFileArrayConst v = getArray();
+ if (v == NULL || nx == 0 || ny == 0)
+ return 0;
+
#if HAVE_G2_H
- int pens [nx * ny * scale * scale ];
-
- double view_scale = 255 / (pmax - pmin);
- int id_X11 = g2_open_X11 (nx * scale, ny * scale);
-
- for (int i = 0; i < 256; i++) {
- double cval = i / 255.;
- grayscale[i] = g2_ink (id_X11, cval, cval, cval);
- }
-
- for (int i= 0, iy = ny - 1; iy >= 0; iy--) {
- for (int ix = 0; ix < nx; ix++) {
- int cval = static_cast<int>((v[ix][iy] - pmin) * view_scale);
- if (cval < 0)
- cval = 0;
- else if (cval > 255)
- cval = 255;
- pens[i++] = grayscale[cval];
- }
+ int* pPens = new int [nx * ny * scale * scale ];
+
+ double view_scale = 255 / (pmax - pmin);
+ int id_X11 = g2_open_X11 (nx * scale, ny * scale);
+ int grayscale[256];
+ for (int i = 0; i < 256; i++) {
+ double cval = i / 255.;
+ grayscale[i] = g2_ink (id_X11, cval, cval, cval);
+ }
+
+ for (int iy = ny - 1; iy >= 0; iy--) {
+ int iRowPos = ((ny - 1 - iy) * scale) * (nx * scale);
+ for (int ix = 0; ix < nx; ix++) {
+ int cval = static_cast<int>((v[ix][iy] - pmin) * view_scale);
+ if (cval < 0)
+ cval = 0;
+ else if (cval > 255)
+ cval = 255;
+ for (int sy = 0; sy < scale; sy++)
+ for (int sx = 0; sx < scale; sx++)
+ pPens[iRowPos+(sy * nx * scale)+(sx + (ix * scale))] = grayscale[cval];
}
-
- g2_image (id_X11, 0., 0., nx, ny, pens);
-
- return (id_X11);
-
+ }
+
+ g2_image (id_X11, 0., 0., nx * scale, ny * scale, pPens);
+
+ delete pPens;
+ return (id_X11);
+#else
+ return 0;
#endif
}
bool
ImageFile::comparativeStatistics (const ImageFile& imComp, double& d, double& r, double& e) const
{
- if (imComp.nx() != m_nx && imComp.ny() != m_ny) {
- sys_error (ERR_WARNING, "Image sizes differ [ImageFile::comparativeStatistics]");
- return false;
- }
- ImageFileArrayConst v = getArray();
- ImageFileArrayConst vComp = imComp.getArray();
-
- double myMean = 0.;
- for (int ix = 0; ix < m_nx; ix++) {
- for (int iy = 0; iy < m_ny; iy++) {
- myMean += v[ix][iy];
- }
+ if (imComp.nx() != m_nx && imComp.ny() != m_ny) {
+ sys_error (ERR_WARNING, "Image sizes differ [ImageFile::comparativeStatistics]");
+ return false;
+ }
+ ImageFileArrayConst v = getArray();
+ if (v == NULL || m_nx == 0 || m_ny == 0)
+ return false;
+
+ ImageFileArrayConst vComp = imComp.getArray();
+
+ double myMean = 0.;
+ for (unsigned int ix = 0; ix < m_nx; ix++) {
+ for (unsigned int iy = 0; iy < m_ny; iy++) {
+ myMean += v[ix][iy];
}
- myMean /= (m_nx * m_ny);
-
- double sqErrorSum = 0.;
- double absErrorSum = 0.;
- double sqDiffFromMeanSum = 0.;
- double absValueSum = 0.;
- for (int ix = 0; ix < m_nx; ix++) {
- for (int iy = 0; iy < m_ny; iy++) {
- double diff = v[ix][iy] - vComp[ix][iy];
- sqErrorSum += diff * diff;
- absErrorSum += fabs(diff);
- double diffFromMean = v[ix][iy] - myMean;
- sqDiffFromMeanSum += diffFromMean * diffFromMean;
- absValueSum += fabs(v[ix][iy]);
- }
+ }
+ myMean /= (m_nx * m_ny);
+
+ double sqErrorSum = 0.;
+ double absErrorSum = 0.;
+ double sqDiffFromMeanSum = 0.;
+ double absValueSum = 0.;
+ for (unsigned int ix2 = 0; ix2 < m_nx; ix2++) {
+ for (unsigned int iy = 0; iy < m_ny; iy++) {
+ double diff = v[ix2][iy] - vComp[ix2][iy];
+ sqErrorSum += diff * diff;
+ absErrorSum += fabs(diff);
+ double diffFromMean = v[ix2][iy] - myMean;
+ sqDiffFromMeanSum += diffFromMean * diffFromMean;
+ absValueSum += fabs(v[ix2][iy]);
}
-
- d = sqrt (sqErrorSum / sqDiffFromMeanSum);
- r = absErrorSum / absValueSum;
-
- int hx = m_nx / 2;
- int hy = m_ny / 2;
- double eMax = -1;
- for (int ix = 0; ix < hx; ix++) {
- for (int iy = 0; iy < hy; iy++) {
- double avgPixel = 0.25 * (v[2*ix][2*iy] + v[2*ix+1][2*iy] + v[2*ix][2*iy+1] + v[2*ix+1][2*iy+1]);
- double avgPixelComp = 0.25 * (vComp[2*ix][2*iy] + vComp[2*ix+1][2*iy] + vComp[2*ix][2*iy+1] + vComp[2*ix+1][2*iy+1]);
- double error = fabs (avgPixel - avgPixelComp);
- if (error > eMax)
- eMax = error;
- }
+ }
+
+ d = ::sqrt (sqErrorSum / sqDiffFromMeanSum);
+ r = absErrorSum / absValueSum;
+
+ int hx = m_nx / 2;
+ int hy = m_ny / 2;
+ double eMax = -1;
+ for (int ix3 = 0; ix3 < hx; ix3++) {
+ for (int iy = 0; iy < hy; iy++) {
+ double avgPixel = 0.25 * (v[2*ix3][2*iy] + v[2*ix3+1][2*iy] + v[2*ix3][2*iy+1] + v[2*ix3+1][2*iy+1]);
+ double avgPixelComp = 0.25 * (vComp[2*ix3][2*iy] + vComp[2*ix3+1][2*iy] + vComp[2*ix3][2*iy+1] + vComp[2*ix3+1][2*iy+1]);
+ double error = fabs (avgPixel - avgPixelComp);
+ if (error > eMax)
+ eMax = error;
}
-
- e = eMax;
-
- return true;
+ }
+
+ e = eMax;
+
+ return true;
}
bool
-ImageFile::printComparativeStatistics (const ImageFile& imComp, ostream& os) const
+ImageFile::printComparativeStatistics (const ImageFile& imComp, std::ostream& os) const
{
double d, r, e;
-
+
if (comparativeStatistics (imComp, d, r, e)) {
- os << " Normalized root mean squared distance (d): " << d << endl;
- os << " Normalized mean absolute distance (r): " << r << endl;
- os << "Worst case distance (2x2 pixel average) (e): " << e << endl;
+ os << " Normalized root mean squared distance (d): " << d << std::endl;
+ os << " Normalized mean absolute distance (r): " << r << std::endl;
+ os << "Worst case distance (2x2 pixel average) (e): " << e << std::endl;
+ return true;
}
+ return false;
}
void
-ImageFile::printStatistics (ostream& os) const
+ImageFile::printStatistics (std::ostream& os) const
{
- double min, max, mean, mode, median, stddev;
-
- statistics (min, max, mean, mode, median, stddev);
-
- os << " min: " << min << endl;
- os << " max: " << max << endl;
- os << " mean: " << mean << endl;
- os << " mode: " << mode << endl;
- os << "median: " << median << endl;
- os << "stddev: " << stddev << endl;
+ double min, max, mean, mode, median, stddev;
+
+ statistics (min, max, mean, mode, median, stddev);\r
+ if (isComplex())\r
+ os << "Real Component Statistics" << std::endl;\r
+
+ os << " min: " << min << std::endl;
+ os << " max: " << max << std::endl;
+ os << " mean: " << mean << std::endl;
+ os << " mode: " << mode << std::endl;
+ os << "median: " << median << std::endl;
+ os << "stddev: " << stddev << std::endl;\r
+ \r
+ if (isComplex()) {\r
+ statistics (getImaginaryArray(), min, max, mean, mode, median, stddev);\r
+ os << std::endl << "Imaginary Component Statistics" << std::endl;
+ os << " min: " << min << std::endl;\r
+ os << " max: " << max << std::endl;\r
+ os << " mean: " << mean << std::endl;\r
+ os << " mode: " << mode << std::endl;\r
+ os << "median: " << median << std::endl;\r
+ os << "stddev: " << stddev << std::endl;\r
+ }\r
}
void
ImageFile::statistics (double& min, double& max, double& mean, double& mode, double& median, double& stddev) const
-{
- int nx = m_nx;
- int ny = m_ny;
- ImageFileArrayConst v = getArray();
-
- mean = 0;
- min = v[0][0];
- max = v[0][0];
- for (int ix = 0; ix < nx; ix++) {
- for (int iy = 0; iy < ny; iy++) {
- if (v[ix][iy] > max)
- max = v[ix][iy];
- if (v[ix][iy] < min)
- min = v[ix][iy];
- mean += v[ix][iy];
- }
- }
- mean /= (nx * ny);
+{\r
+ ImageFileArrayConst v = getArray();\r
+ statistics (v, min, max, mean, mode, median, stddev);\r
+}
- static const int nbin = 256;
- int hist[ nbin ] = {0};
- double spread = max - min;
- mode = 0;
- stddev = 0;
- for (int ix = 0; ix < nx; ix++) {
- for (int iy = 0; iy < ny; iy++) {
- int b = static_cast<int>((((v[ix][iy] - min) / spread) * (nbin - 1)) + 0.5);
- hist[b]++;
- double diff = (v[ix][iy] - mean);
- stddev += diff * diff;
- }
- }
- stddev = sqrt(stddev / (nx * ny));
- int max_binindex = 0;
- int max_bin = -1;
- for (int ibin = 0; ibin < nbin; ibin++) {
- if (hist[ibin] > max_bin) {
- max_bin = hist[ibin];
- max_binindex = ibin;
- }
+void\r
+ImageFile::statistics (ImageFileArrayConst v, double& min, double& max, double& mean, double& mode, double& median, double& stddev) const\r
+{\r
+ int nx = m_nx;\r
+ int ny = m_ny;\r
+ \r
+ if (v == NULL || nx == 0 || ny == 0)\r
+ return;\r
+ \r
+ std::vector<double> vecImage;\r
+ int iVec = 0;\r
+ vecImage.resize (nx * ny);\r
+ for (int ix = 0; ix < nx; ix++) {\r
+ for (int iy = 0; iy < ny; iy++)\r
+ vecImage[iVec++] = v[ix][iy];\r
+ }\r
+ \r
+ vectorNumericStatistics (vecImage, nx * ny, min, max, mean, mode, median, stddev);\r
+}\r
+\r
+void
+ImageFile::getMinMax (double& min, double& max) const
+{
+ int nx = m_nx;
+ int ny = m_ny;
+ ImageFileArrayConst v = getArray();
+
+ if (v == NULL || nx == 0 || ny == 0)
+ return;
+
+ min = v[0][0];
+ max = v[0][0];
+ for (int ix = 0; ix < nx; ix++) {
+ for (int iy = 0; iy < ny; iy++) {
+ if (v[ix][iy] > max)
+ max = v[ix][iy];
+ if (v[ix][iy] < min)
+ min = v[ix][iy];
}
-
- mode = (max_binindex * spread / (nbin - 1)) + min;
-
- median = 0.;
+ }
}
-
-
+\r
+bool\r
+ImageFile::convertRealToComplex ()\r
+{\r
+ if (dataType() != Array2dFile::DATA_TYPE_REAL)\r
+ return false;\r
+ \r
+ if (! reallocRealToComplex())\r
+ return false;\r
+ \r
+ ImageFileArray vImag = getImaginaryArray();\r
+ for (unsigned int ix = 0; ix < m_nx; ix++) {\r
+ ImageFileColumn vCol = vImag[ix];\r
+ for (unsigned int iy = 0; iy < m_ny; iy++)\r
+ *vCol++ = 0;\r
+ }\r
+ \r
+ return true;\r
+}\r
+\r
+bool\r
+ImageFile::convertComplexToReal ()\r
+{\r
+ if (dataType() != Array2dFile::DATA_TYPE_COMPLEX)\r
+ return false;\r
+ \r
+ ImageFileArray vReal = getArray();\r
+ ImageFileArray vImag = getImaginaryArray();\r
+ for (unsigned int ix = 0; ix < m_nx; ix++) {\r
+ ImageFileColumn vRealCol = vReal[ix];\r
+ ImageFileColumn vImagCol = vImag[ix];\r
+ for (unsigned int iy = 0; iy < m_ny; iy++) {\r
+ CTSimComplex c (*vRealCol, *vImagCol);\r
+ *vRealCol++ = std::abs (c);\r
+ vImagCol++;\r
+ }\r
+ }\r
+ \r
+ return reallocComplexToReal();\r
+}\r
+\r
+bool\r
+ImageFile::subtractImages (const ImageFile& rRHS, ImageFile& result) const\r
+{\r
+ if (m_nx != rRHS.nx() || m_ny != rRHS.ny() || m_nx != result.nx() || m_ny != result.ny()) {\r
+ sys_error (ERR_WARNING, "Difference sizes of images [ImageFile::subtractImage]");\r
+ return false;\r
+ }\r
+ \r
+ ImageFileArrayConst vLHS = getArray();\r
+ ImageFileArrayConst vRHS = rRHS.getArray();\r
+ ImageFileArray vResult = result.getArray();\r
+ \r
+ for (unsigned int ix = 0; ix < m_nx; ix++) {\r
+ ImageFileColumnConst in1 = vLHS[ix];\r
+ ImageFileColumnConst in2 = vRHS[ix];\r
+ ImageFileColumn out = vResult[ix];\r
+ for (unsigned int iy = 0; iy < m_ny; iy++)\r
+ *out++ = *in1++ - *in2++;\r
+ }\r
+ \r
+ return true;\r
+}\r
+
+bool\r
+ImageFile::addImages (const ImageFile& rRHS, ImageFile& result) const\r
+{\r
+ if (m_nx != rRHS.nx() || m_ny != rRHS.ny() || m_nx != result.nx() || m_ny != result.ny()) {\r
+ sys_error (ERR_WARNING, "Difference sizes of images [ImageFile::subtractImage]");\r
+ return false;\r
+ }\r
+ \r
+ ImageFileArrayConst vLHS = getArray();\r
+ ImageFileArrayConst vRHS = rRHS.getArray();\r
+ ImageFileArray vResult = result.getArray();\r
+ \r
+ for (unsigned int ix = 0; ix < m_nx; ix++) {\r
+ ImageFileColumnConst in1 = vLHS[ix];\r
+ ImageFileColumnConst in2 = vRHS[ix];\r
+ ImageFileColumn out = vResult[ix];\r
+ for (unsigned int iy = 0; iy < m_ny; iy++)\r
+ *out++ = *in1++ + *in2++;\r
+ }\r
+ \r
+ return true;\r
+}\r
+\r
+bool\r
+ImageFile::multiplyImages (const ImageFile& rRHS, ImageFile& result) const\r
+{\r
+ if (m_nx != rRHS.nx() || m_ny != rRHS.ny() || m_nx != result.nx() || m_ny != result.ny()) {\r
+ sys_error (ERR_WARNING, "Difference sizes of images [ImageFile::subtractImage]");\r
+ return false;\r
+ }\r
+ \r
+ ImageFileArrayConst vLHS = getArray();\r
+ ImageFileArrayConst vRHS = rRHS.getArray();\r
+ ImageFileArray vResult = result.getArray();\r
+ \r
+ for (unsigned int ix = 0; ix < m_nx; ix++) {\r
+ ImageFileColumnConst in1 = vLHS[ix];\r
+ ImageFileColumnConst in2 = vRHS[ix];\r
+ ImageFileColumn out = vResult[ix];\r
+ for (unsigned int iy = 0; iy < m_ny; iy++)\r
+ *out++ = *in1++ * *in2++;\r
+ }\r
+ \r
+ return true;\r
+}\r
+\r
+bool\r
+ImageFile::divideImages (const ImageFile& rRHS, ImageFile& result) const\r
+{\r
+ if (m_nx != rRHS.nx() || m_ny != rRHS.ny() || m_nx != result.nx() || m_ny != result.ny()) {\r
+ sys_error (ERR_WARNING, "Difference sizes of images [ImageFile::subtractImage]");\r
+ return false;\r
+ }\r
+ \r
+ ImageFileArrayConst vLHS = getArray();\r
+ ImageFileArrayConst vRHS = rRHS.getArray();\r
+ ImageFileArray vResult = result.getArray();\r
+ \r
+ for (unsigned int ix = 0; ix < m_nx; ix++) {\r
+ ImageFileColumnConst in1 = vLHS[ix];\r
+ ImageFileColumnConst in2 = vRHS[ix];\r
+ ImageFileColumn out = vResult[ix];\r
+ for (unsigned int iy = 0; iy < m_ny; iy++) {\r
+ if (*in2 != 0.)\r
+ *out++ = *in1++ / *in2++;\r
+ else\r
+ *out++ = 0;\r
+ }\r
+ }\r
+ \r
+ return true;\r
+}\r
+\r
+\r
+bool\r
+ImageFile::invertPixelValues (ImageFile& result) const\r
+{\r
+ if (m_nx != result.nx() || m_ny != result.ny()) {\r
+ sys_error (ERR_WARNING, "Difference sizes of images [ImageFile::invertPixelValues]");\r
+ return false;\r
+ }\r
+ \r
+ ImageFileArrayConst vLHS = getArray();\r
+ ImageFileArray vResult = result.getArray();\r
+ \r
+ for (unsigned int ix = 0; ix < m_nx; ix++) {\r
+ ImageFileColumnConst in = vLHS[ix];\r
+ ImageFileColumn out = vResult[ix];\r
+ for (unsigned int iy = 0; iy < m_ny; iy++)\r
+ *out++ = - *in++;\r
+ }\r
+ \r
+ return true;\r
+}\r
+\r
+bool\r
+ImageFile::sqrt (ImageFile& result) const\r
+{\r
+ if (m_nx != result.nx() || m_ny != result.ny()) {\r
+ sys_error (ERR_WARNING, "Difference sizes of images [ImageFile::invertPixelValues]");\r
+ return false;\r
+ }\r
+ \r
+ ImageFileArrayConst vLHS = getArray();\r
+ ImageFileArray vResult = result.getArray();\r
+ \r
+ for (unsigned int ix = 0; ix < m_nx; ix++) {\r
+ ImageFileColumnConst in = vLHS[ix];\r
+ ImageFileColumn out = vResult[ix];\r
+ for (unsigned int iy = 0; iy < m_ny; iy++)\r
+ if (*in < 0)\r
+ *out++ = -::sqrt(-*in++);\r
+ else\r
+ *out++ = ::sqrt(*in++);\r
+ }\r
+ \r
+ return true;\r
+}\r
+\r
+bool\r
+ImageFile::log (ImageFile& result) const\r
+{\r
+ if (m_nx != result.nx() || m_ny != result.ny()) {\r
+ sys_error (ERR_WARNING, "Difference sizes of images [ImageFile::invertPixelValues]");\r
+ return false;\r
+ }\r
+ \r
+ ImageFileArrayConst vLHS = getArray();\r
+ ImageFileArray vResult = result.getArray();\r
+ \r
+ for (unsigned int ix = 0; ix < m_nx; ix++) {\r
+ ImageFileColumnConst in = vLHS[ix];\r
+ ImageFileColumn out = vResult[ix];\r
+ for (unsigned int iy = 0; iy < m_ny; iy++)\r
+ if (*in <= 0)\r
+ *out++ = 0;\r
+ else\r
+ *out++ = ::log(*in++);\r
+ }\r
+ \r
+ return true;\r
+}\r
+\r
+bool\r
+ImageFile::exp (ImageFile& result) const\r
+{\r
+ if (m_nx != result.nx() || m_ny != result.ny()) {\r
+ sys_error (ERR_WARNING, "Difference sizes of images [ImageFile::invertPixelValues]");\r
+ return false;\r
+ }\r
+ \r
+ ImageFileArrayConst vLHS = getArray();\r
+ ImageFileArray vResult = result.getArray();\r
+ \r
+ for (unsigned int ix = 0; ix < m_nx; ix++) {\r
+ ImageFileColumnConst in = vLHS[ix];\r
+ ImageFileColumn out = vResult[ix];\r
+ for (unsigned int iy = 0; iy < m_ny; iy++)\r
+ *out++ = ::exp (*in++);\r
+ }\r
+ \r
+ return true;\r
+}\r
+\r
+namespace ProcessImage {\r
+\r
+void\r
+shuffleFourierToNaturalOrder (ImageFile& im)\r
+{\r
+ ImageFileArray vReal = im.getArray();\r
+ ImageFileArray vImag = im.getImaginaryArray();\r
+ unsigned int ix, iy;\r
+ unsigned int nx = im.nx();\r
+ unsigned int ny = im.ny();\r
+\r
+ // shuffle each column\r
+ for (ix = 0; ix < nx; ix++) {\r
+ ProcessSignal::shuffleFourierToNaturalOrder (vReal[ix], ny);\r
+ if (im.isComplex())\r
+ ProcessSignal::shuffleFourierToNaturalOrder (vImag[ix], ny);\r
+ }\r
+\r
+ // shuffle each row\r
+ float* pRow = new float [nx];\r
+ for (iy = 0; iy < ny; iy++) {\r
+ for (ix = 0; ix < nx; ix++)\r
+ pRow[ix] = vReal[ix][iy];\r
+ ProcessSignal::shuffleFourierToNaturalOrder (pRow, nx);\r
+ for (ix = 0; ix < nx; ix++)\r
+ vReal[ix][iy] = pRow[ix];\r
+ if (im.isComplex()) {\r
+ for (ix = 0; ix < nx; ix++)\r
+ pRow[ix] = vImag[ix][iy];\r
+ ProcessSignal::shuffleFourierToNaturalOrder (pRow, nx);;\r
+ for (ix = 0; ix < nx; ix++)\r
+ vImag[ix][iy] = pRow[ix];\r
+ }\r
+ }\r
+ delete pRow;\r
+}\r
+ \r
+void\r
+shuffleNaturalToFourierOrder (ImageFile& im)\r
+{\r
+ ImageFileArray vReal = im.getArray();\r
+ ImageFileArray vImag = im.getImaginaryArray();\r
+ unsigned int ix, iy;\r
+ unsigned int nx = im.nx();\r
+ unsigned int ny = im.ny();\r
+\r
+ // shuffle each x column\r
+ for (ix = 0; ix < nx; ix++) {\r
+ ProcessSignal::shuffleNaturalToFourierOrder (vReal[ix], ny);\r
+ if (im.isComplex())\r
+ ProcessSignal::shuffleNaturalToFourierOrder (vImag[ix], ny);\r
+ }\r
+\r
+ // shuffle each y row\r
+ float* pRow = new float [nx];\r
+ for (iy = 0; iy < ny; iy++) {\r
+ for (ix = 0; ix < nx; ix++)\r
+ pRow[ix] = vReal[ix][iy];\r
+ ProcessSignal::shuffleNaturalToFourierOrder (pRow, nx);\r
+ for (ix = 0; ix < nx; ix++)\r
+ vReal[ix][iy] = pRow[ix];\r
+ if (im.isComplex()) {\r
+ for (ix = 0; ix < nx; ix++)\r
+ pRow[ix] = vImag[ix][iy];\r
+ ProcessSignal::shuffleNaturalToFourierOrder (pRow, nx);\r
+ for (ix = 0; ix < nx; ix++)\r
+ vImag[ix][iy] = pRow[ix];\r
+ }\r
+ }\r
+ delete [] pRow;\r
+}\r
+\r
+ \r
+}; // namespace ProcessIamge\r
+\r
+#ifdef HAVE_FFTW\r
+bool\r
+ImageFile::fft (ImageFile& result) const\r
+{\r
+ if (m_nx != result.nx() || m_ny != result.ny()) {\r
+ sys_error (ERR_WARNING, "Difference sizes of images [ImageFile::invertPixelValues]");\r
+ return false;\r
+ }\r
+\r
+ if (result.dataType() == Array2dFile::DATA_TYPE_REAL) {\r
+ if (! result.reallocRealToComplex ())\r
+ return false;\r
+ }\r
+\r
+ fftw_complex* in = new fftw_complex [m_nx * m_ny];\r
+\r
+ ImageFileArrayConst vReal = getArray();\r
+ ImageFileArrayConst vImag = getImaginaryArray();\r
+\r
+ unsigned int ix, iy;\r
+ unsigned int iArray = 0;\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ for (iy = 0; iy < m_ny; iy++) {\r
+ in[iArray].re = vReal[ix][iy];\r
+ if (isComplex())\r
+ in[iArray].im = vImag[ix][iy];\r
+ else\r
+ in[iArray].im = 0;\r
+ iArray++;\r
+ }\r
+\r
+ fftwnd_plan plan = fftw2d_create_plan (m_nx, m_ny, FFTW_FORWARD, FFTW_IN_PLACE);\r
+\r
+ fftwnd_one (plan, in, NULL);\r
+\r
+ ImageFileArray vRealResult = result.getArray();\r
+ ImageFileArray vImagResult = result.getImaginaryArray();\r
+ iArray = 0;\r
+ unsigned int iScale = m_nx * m_ny;\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ for (iy = 0; iy < m_ny; iy++) {\r
+ vRealResult[ix][iy] = in[iArray].re / iScale;\r
+ vImagResult[ix][iy] = in[iArray].im / iScale;\r
+ iArray++;\r
+ }\r
+\r
+ fftwnd_destroy_plan (plan);\r
+ delete in;\r
+\r
+\r
+ ProcessImage::shuffleFourierToNaturalOrder (result);\r
+\r
+ return true;\r
+}\r
+\r
+\r
+bool\r
+ImageFile::ifft (ImageFile& result) const\r
+{\r
+ if (m_nx != result.nx() || m_ny != result.ny()) {\r
+ sys_error (ERR_WARNING, "Difference sizes of images [ImageFile::invertPixelValues]");\r
+ return false;\r
+ }\r
+\r
+ if (result.dataType() == Array2dFile::DATA_TYPE_REAL) {\r
+ if (! result.reallocRealToComplex ())\r
+ return false;\r
+ }\r
+\r
+ ImageFileArrayConst vReal = getArray();\r
+ ImageFileArrayConst vImag = getImaginaryArray();\r
+ ImageFileArray vRealResult = result.getArray();\r
+ ImageFileArray vImagResult = result.getImaginaryArray();\r
+ unsigned int ix, iy;\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ for (iy = 0; iy < m_ny; iy++) {\r
+ vRealResult[ix][iy] = vReal[ix][iy];\r
+ if (isComplex()) \r
+ vImagResult[ix][iy] = vImag[ix][iy];\r
+ else\r
+ vImagResult[ix][iy] = 0;\r
+ }\r
+\r
+ ProcessImage::shuffleNaturalToFourierOrder (result);\r
+\r
+ fftw_complex* in = new fftw_complex [m_nx * m_ny];\r
+\r
+ unsigned int iArray = 0;\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ for (iy = 0; iy < m_ny; iy++) {\r
+ in[iArray].re = vRealResult[ix][iy];\r
+ in[iArray].im = vImagResult[ix][iy];\r
+ iArray++;\r
+ }\r
+\r
+ fftwnd_plan plan = fftw2d_create_plan (m_nx, m_ny, FFTW_BACKWARD, FFTW_IN_PLACE);\r
+\r
+ fftwnd_one (plan, in, NULL);\r
+\r
+ iArray = 0;\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ for (iy = 0; iy < m_ny; iy++) {\r
+ vRealResult[ix][iy] = in[iArray].re;\r
+ vImagResult[ix][iy] = in[iArray].im;\r
+ iArray++;\r
+ }\r
+\r
+ fftwnd_destroy_plan (plan);\r
+\r
+ delete in;\r
+\r
+ return true;\r
+}\r
+#endif // HAVE_FFTW\r
+\r
+\r
+ \r
+bool\r
+ImageFile::fourier (ImageFile& result) const\r
+{\r
+ if (m_nx != result.nx() || m_ny != result.ny()) {\r
+ sys_error (ERR_WARNING, "Difference sizes of images [ImageFile::invertPixelValues]");\r
+ return false;\r
+ }\r
+ \r
+ if (result.dataType() == Array2dFile::DATA_TYPE_REAL) {\r
+ if (! result.reallocRealToComplex ())\r
+ return false;\r
+ }\r
+ \r
+ ImageFileArrayConst vLHS = getArray();\r
+ ImageFileArrayConst vLHSImag = getImaginaryArray();\r
+ ImageFileArray vRealResult = result.getArray();\r
+ ImageFileArray vImagResult = result.getImaginaryArray();\r
+ \r
+ unsigned int ix, iy;\r
+\r
+ // alloc output matrix\r
+ CTSimComplex** complexOut = new CTSimComplex* [m_nx];\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ complexOut[ix] = new CTSimComplex [m_ny];\r
+ \r
+ // fourier each x column\r
+#if 1\r
+ CTSimComplex* pY = new CTSimComplex [m_ny];\r
+ for (ix = 0; ix < m_nx; ix++) {\r
+ for (iy = 0; iy < m_ny; iy++) {\r
+ pY[iy].real (vLHS[ix][iy]);\r
+ if (isComplex())\r
+ pY[iy].imag (vLHSImag[ix][iy]);\r
+ else\r
+ pY[iy].imag (0);\r
+ } \r
+ ProcessSignal::finiteFourierTransform (pY, complexOut[ix], m_ny, ProcessSignal::FORWARD);\r
+ }\r
+#else\r
+ double* pY = new double [m_ny];\r
+ for (ix = 0; ix < m_nx; ix++) {\r
+ for (iy = 0; iy < m_ny; iy++) {\r
+ pY[iy] = vLHS[ix][iy];\r
+ } \r
+ ProcessSignal::finiteFourierTransform (pY, complexOut[ix], m_ny, ProcessSignal::FORWARD);\r
+ }\r
+#endif\r
+ delete [] pY;\r
+ \r
+ // fourier each y row\r
+ CTSimComplex* pX = new CTSimComplex [m_nx];\r
+ CTSimComplex* complexOutRow = new CTSimComplex [m_nx];\r
+ for (iy = 0; iy < m_ny; iy++) {\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ pX[ix] = complexOut[ix][iy];\r
+ ProcessSignal::finiteFourierTransform (pX, complexOutRow, m_nx, ProcessSignal::FORWARD);\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ complexOut[ix][iy] = complexOutRow[ix];\r
+ }\r
+ delete [] pX;\r
+ \r
+ // shuffle each column\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ ProcessSignal::shuffleFourierToNaturalOrder (complexOut[ix], m_ny);\r
+ \r
+ // shuffle each row\r
+ for (iy = 0; iy < m_ny; iy++) {\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ complexOutRow[ix] = complexOut[ix][iy];\r
+ ProcessSignal::shuffleFourierToNaturalOrder (complexOutRow, m_nx);;\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ complexOut[ix][iy] = complexOutRow[ix];\r
+ \r
+ }\r
+ delete [] complexOutRow;\r
+ \r
+ for (ix = 0; ix < m_nx; ix++)\r
+ for (iy = 0; iy < m_ny; iy++) {\r
+ vRealResult[ix][iy] = complexOut[ix][iy].real();\r
+ vImagResult[ix][iy] = complexOut[ix][iy].imag();\r
+ }\r
+ \r
+ for (ix = 0; ix < m_nx; ix++)\r
+ delete [] complexOut[ix];\r
+ delete [] complexOut;\r
+ \r
+ return true;\r
+}\r
+\r
+bool\r
+ImageFile::inverseFourier (ImageFile& result) const\r
+{\r
+ if (m_nx != result.nx() || m_ny != result.ny()) {\r
+ sys_error (ERR_WARNING, "Difference sizes of images [ImageFile::invertPixelValues]");\r
+ return false;\r
+ }\r
+ \r
+ if (result.dataType() == Array2dFile::DATA_TYPE_REAL) {\r
+ if (! result.reallocRealToComplex ())\r
+ return false;\r
+ }\r
+ \r
+ ImageFileArrayConst vLHSReal = getArray();\r
+ ImageFileArrayConst vLHSImag = getImaginaryArray();\r
+ \r
+ unsigned int ix, iy;\r
+\r
+ // alloc 2d complex output matrix\r
+ CTSimComplex** complexOut = new CTSimComplex* [m_nx];\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ complexOut[ix] = new CTSimComplex [m_ny];\r
+\r
+ // put input image into complexOut\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ for (iy = 0; iy < m_ny; iy++) {\r
+ complexOut[ix][iy].real (vLHSReal[ix][iy]);\r
+ if (isComplex())\r
+ complexOut[ix][iy].imag (vLHSImag[ix][iy]);\r
+ else\r
+ complexOut[ix][iy].imag (0);\r
+ }\r
+\r
+ // shuffle each x column\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ ProcessSignal::shuffleNaturalToFourierOrder (complexOut[ix], m_ny);\r
+\r
+ // shuffle each y row\r
+ CTSimComplex* pComplexRow = new CTSimComplex [m_nx];\r
+ for (iy = 0; iy < m_ny; iy++) {\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ pComplexRow[ix] = complexOut[ix][iy];\r
+ ProcessSignal::shuffleNaturalToFourierOrder (pComplexRow, m_nx);\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ complexOut[ix][iy] = pComplexRow[ix];\r
+ }\r
+ delete [] pComplexRow;\r
+\r
+ // ifourier each x column\r
+ CTSimComplex* pCol = new CTSimComplex [m_ny];\r
+ for (ix = 0; ix < m_nx; ix++) {\r
+ for (iy = 0; iy < m_ny; iy++)\r
+ pCol[iy] = complexOut[ix][iy];\r
+ ProcessSignal::finiteFourierTransform (pCol, complexOut[ix], m_ny, ProcessSignal::BACKWARD);\r
+ }\r
+ delete [] pCol;\r
+\r
+ // ifourier each y row\r
+ CTSimComplex* complexInRow = new CTSimComplex [m_nx];\r
+ CTSimComplex* complexOutRow = new CTSimComplex [m_nx];\r
+ for (iy = 0; iy < m_ny; iy++) {\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ complexInRow[ix] = complexOut[ix][iy];\r
+ ProcessSignal::finiteFourierTransform (complexInRow, complexOutRow, m_nx, ProcessSignal::BACKWARD);\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ complexOut[ix][iy] = complexOutRow[ix];\r
+ }\r
+ delete [] complexInRow;\r
+ delete [] complexOutRow;\r
+\r
+ ImageFileArray vRealResult = result.getArray();\r
+ ImageFileArray vImagResult = result.getImaginaryArray();\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ for (iy = 0; iy < m_ny; iy++) {\r
+ vRealResult[ix][iy] = complexOut[ix][iy].real();\r
+ vImagResult[ix][iy] = complexOut[ix][iy].imag();\r
+ }\r
+ \r
+ // delete complexOut matrix\r
+ for (ix = 0; ix < m_nx; ix++)\r
+ delete [] complexOut[ix];\r
+ delete [] complexOut;\r
+ \r
+ return true;\r
+}\r
+\r
+\r
+bool\r
+ImageFile::magnitude (ImageFile& result) const\r
+{\r
+ if (m_nx != result.nx() || m_ny != result.ny()) {\r
+ sys_error (ERR_WARNING, "Difference sizes of images [ImageFile::invertPixelValues]");\r
+ return false;\r
+ }\r
+ \r
+ ImageFileArray vReal = getArray();\r
+ ImageFileArray vImag = getImaginaryArray();\r
+ \r
+ ImageFileArray vRealResult = result.getArray();\r
+ for (unsigned int ix = 0; ix < m_nx; ix++)\r
+ for (unsigned int iy = 0; iy < m_ny; iy++) {\r
+ if (isComplex()) \r
+ vRealResult[ix][iy] = ::sqrt (vReal[ix][iy] * vReal[ix][iy] + vImag[ix][iy] * vImag[ix][iy]);\r
+ else\r
+ vRealResult[ix][iy] = vReal[ix][iy];\r
+ }\r
+\r
+ if (result.isComplex())\r
+ result.reallocComplexToReal();\r
+ \r
+ return true;\r
+}\r
+\r
+bool\r
+ImageFile::phase (ImageFile& result) const\r
+{\r
+ if (m_nx != result.nx() || m_ny != result.ny()) {\r
+ sys_error (ERR_WARNING, "Difference sizes of images [ImageFile::invertPixelValues]");\r
+ return false;\r
+ }\r
+ \r
+ ImageFileArray vReal = getArray();\r
+ ImageFileArray vImag = getImaginaryArray();\r
+ \r
+ ImageFileArray vRealResult = result.getArray();\r
+ for (unsigned int ix = 0; ix < m_nx; ix++)\r
+ for (unsigned int iy = 0; iy < m_ny; iy++) {\r
+ if (isComplex())\r
+ vRealResult[ix][iy] = ::atan2 (vImag[ix][iy], vReal[ix][iy]);\r
+ else\r
+ vRealResult[ix][iy] = 0;\r
+ }\r
+ \r
+ if (result.isComplex())\r
+ result.reallocComplexToReal();\r
+ \r
+ return true;\r
+}\r
+\r
+bool\r
+ImageFile::square (ImageFile& result) const\r
+{\r
+ if (m_nx != result.nx() || m_ny != result.ny()) {\r
+ sys_error (ERR_WARNING, "Difference sizes of images [ImageFile::invertPixelValues]");\r
+ return false;\r
+ }\r
+ \r
+ ImageFileArrayConst vLHS = getArray();\r
+ ImageFileArray vResult = result.getArray();\r
+ \r
+ for (unsigned int ix = 0; ix < m_nx; ix++) {\r
+ ImageFileColumnConst in = vLHS[ix];\r
+ ImageFileColumn out = vResult[ix];\r
+ for (unsigned int iy = 0; iy < m_ny; iy++) {\r
+ *out++ = *in * *in;\r
+ in++;\r
+ }\r
+ }\r
+ \r
+ return true;\r
+}\r
+\r
+\r
void
ImageFile::writeImagePGM (const char *outfile, int nxcell, int nycell, double densmin, double densmax)
{
int nx = m_nx;
int ny = m_ny;
ImageFileArray v = getArray();
-
- unsigned char rowp [nx * nxcell];
-
+
+ unsigned char* rowp = new unsigned char [nx * nxcell];
+
if ((fp = fopen (outfile, "wb")) == NULL)
- return;
-
+ return;
+
fprintf(fp, "P5\n");
fprintf(fp, "%d %d\n", nx, ny);
fprintf(fp, "255\n");
-
+
for (int irow = ny - 1; irow >= 0; irow--) {
for (int icol = 0; icol < nx; icol++) {
int pos = icol * nxcell;
double dens = (v[icol][irow] - densmin) / (densmax - densmin);
dens = clamp (dens, 0., 1.);
for (int p = pos; p < pos + nxcell; p++) {
- rowp[p] = static_cast<unsigned int> (dens * 255.);
+ rowp[p] = static_cast<unsigned int> (dens * 255.);
}
}
for (int ir = 0; ir < nycell; ir++) {
for (int ic = 0; ic < nx * nxcell; ic++)
- fprintf(fp, "%c ", rowp[ic]);
+ fputc( rowp[ic], fp );
}
}
-
+ \r
+ delete rowp;
fclose(fp);
}
int nx = m_nx;
int ny = m_ny;
ImageFileArray v = getArray();
-
- unsigned char rowp [nx * nxcell];
- if (rowp == NULL)
- return;
-
+
+ unsigned char* rowp = new unsigned char [nx * nxcell];
+
if ((fp = fopen (outfile, "wb")) == NULL)
- return;
-
+ return;
+
fprintf(fp, "P2\n");
fprintf(fp, "%d %d\n", nx, ny);
fprintf(fp, "255\n");
-
+
for (int irow = ny - 1; irow >= 0; irow--) {
for (int icol = 0; icol < nx; icol++) {
int pos = icol * nxcell;
double dens = (v[icol][irow] - densmin) / (densmax - densmin);
dens = clamp (dens, 0., 1.);
for (int p = pos; p < pos + nxcell; p++) {
- rowp[p] = static_cast<unsigned int> (dens * 255.);
+ rowp[p] = static_cast<unsigned int> (dens * 255.);
}
}
for (int ir = 0; ir < nycell; ir++) {
for (int ic = 0; ic < nx * nxcell; ic++)
- fprintf(fp, "%d ", rowp[ic]);
+ fprintf(fp, "%d ", rowp[ic]);
fprintf(fp, "\n");
}
}
-
+ \r
+ delete rowp;
fclose(fp);
}
int nx = m_nx;
int ny = m_ny;
ImageFileArray v = getArray();
-
- unsigned char rowp [nx * nxcell * (bitdepth / 8)];
-
+
+ unsigned char* rowp = new unsigned char [nx * nxcell * (bitdepth / 8)];
+
if ((fp = fopen (outfile, "wb")) == NULL)
- return;
-
+ return;
+
png_ptr = png_create_write_struct (PNG_LIBPNG_VER_STRING, NULL, NULL, NULL);
if (! png_ptr)
return;
-
+
info_ptr = png_create_info_struct(png_ptr);
if (! info_ptr) {
png_destroy_write_struct(&png_ptr, (png_infopp) NULL);
fclose(fp);
return;
}
-
+
if (setjmp(png_ptr->jmpbuf)) {
png_destroy_write_struct(&png_ptr, &info_ptr);
fclose(fp);
return;
}
-
+
png_init_io(png_ptr, fp);
-
+
png_set_IHDR(png_ptr, info_ptr, nx * nxcell, ny * nycell, bitdepth, PNG_COLOR_TYPE_GRAY, PNG_INTERLACE_NONE, PNG_COMPRESSION_TYPE_BASE, PNG_FILTER_TYPE_DEFAULT);
-
+
png_write_info(png_ptr, info_ptr);
for (int irow = ny - 1; irow >= 0; irow--) {
png_bytep row_pointer = rowp;
double dens = (v[icol][irow] - densmin) / (densmax - densmin);
dens = clamp (dens, 0., 1.);
unsigned int outval = static_cast<unsigned int> (dens * max_out_level);
-
+
for (int p = pos; p < pos + nxcell; p++) {
- if (bitdepth == 8)
- rowp[p] = outval;
- else {
- int rowpos = p * 2;
- rowp[rowpos] = (outval >> 8) & 0xFF;
- rowp[rowpos+1] = (outval & 0xFF);
- }
+ if (bitdepth == 8)
+ rowp[p] = outval;
+ else {
+ int rowpos = p * 2;
+ rowp[rowpos] = (outval >> 8) & 0xFF;
+ rowp[rowpos+1] = (outval & 0xFF);
+ }
}
}
for (int ir = 0; ir < nycell; ir++)
png_write_rows (png_ptr, &row_pointer, 1);
}
-
+
png_write_end(png_ptr, info_ptr);
png_destroy_write_struct(&png_ptr, &info_ptr);
-
+ delete rowp;\r
+
fclose(fp);
}
#endif
int nx = m_nx;
int ny = m_ny;
ImageFileArray v = getArray();
-
+
unsigned char rowp [nx * nxcell];
if (rowp == NULL)
return;
-
+
gif = gdImageCreate(nx * nxcell, ny * nycell);
for (int i = 0; i < N_GRAYSCALE; i++)
gs_indices[i] = gdImageColorAllocate(gif, i, i, i);
-
+
int lastrow = ny * nycell - 1;
for (int irow = 0; irow < ny; irow++) {
int rpos = irow * nycell;
for (int ir = rpos; ir < rpos + nycell; ir++) {
for (int icol = 0; icol < nx; icol++) {
- int cpos = icol * nxcell;
- double dens = (v[icol][irow] - densmin) / (densmax - densmin);
- dens = clamp(dens, 0., 1.);
- for (int ic = cpos; ic < cpos + nxcell; ic++) {
- rowp[ic] = (unsigned int) (dens * (double) (N_GRAYSCALE - 1));
- gdImageSetPixel(gif, ic, lastrow - ir, gs_indices[rowp[ic]]);
- }
+ int cpos = icol * nxcell;
+ double dens = (v[icol][irow] - densmin) / (densmax - densmin);
+ dens = clamp(dens, 0., 1.);
+ for (int ic = cpos; ic < cpos + nxcell; ic++) {
+ rowp[ic] = (unsigned int) (dens * (double) (N_GRAYSCALE - 1));
+ gdImageSetPixel(gif, ic, lastrow - ir, gs_indices[rowp[ic]]);
+ }
}
}
}
-
+
if ((out = fopen(outfile,"w")) == NULL) {
sys_error(ERR_FATAL, "Error opening output file %s for writing", outfile);
return (1);