24 : cRed00( 0.0 ), cRed10( 0.0 ), cRed20( 0.0 ), cRed30( 0.0 ), cRed01( 0.0 ), cRed11( 0.0 ), cRed21( 0.0 ), cRed31( 0.0 )
25 , cRed02( 0.0 ), cRed12( 0.0 ), cRed22( 0.0 ), cRed32( 0.0 ), cRed03( 0.0 ), cRed13( 0.0 ), cRed23( 0.0 ), cRed33( 0.0 )
27 , cGreen00( 0.0 ), cGreen10( 0.0 ), cGreen20( 0.0 ), cGreen30( 0.0 ), cGreen01( 0.0 ), cGreen11( 0.0 ), cGreen21( 0.0 ), cGreen31( 0.0 )
28 , cGreen02( 0.0 ), cGreen12( 0.0 ), cGreen22( 0.0 ), cGreen32( 0.0 ), cGreen03( 0.0 ), cGreen13( 0.0 ), cGreen23( 0.0 ), cGreen33( 0.0 )
30 , cBlue00( 0.0 ), cBlue10( 0.0 ), cBlue20( 0.0 ), cBlue30( 0.0 ), cBlue01( 0.0 ), cBlue11( 0.0 ), cBlue21( 0.0 ), cBlue31( 0.0 )
31 , cBlue02( 0.0 ), cBlue12( 0.0 ), cBlue22( 0.0 ), cBlue32( 0.0 ), cBlue03( 0.0 ), cBlue13( 0.0 ), cBlue23( 0.0 ), cBlue33( 0.0 )
33 , cAlpha00( 0.0 ), cAlpha10( 0.0 ), cAlpha20( 0.0 ), cAlpha30( 0.0 ), cAlpha01( 0.0 ), cAlpha11( 0.0 ), cAlpha21( 0.0 ), cAlpha31( 0.0 )
34 , cAlpha02( 0.0 ), cAlpha12( 0.0 ), cAlpha22( 0.0 ), cAlpha32( 0.0 ), cAlpha03( 0.0 ), cAlpha13( 0.0 ), cAlpha23( 0.0 ), cAlpha33( 0.0 )
49 int nCols = srcImage.width();
50 int nRows = srcImage.height();
54 int *redMatrix =
new int[ nCols * nRows ];
55 int *greenMatrix =
new int[ nCols * nRows ];
56 int *blueMatrix =
new int[ nCols * nRows ];
57 int *alphaMatrix =
new int[ nCols * nRows ];
59 for (
int heightIndex = 0; heightIndex < nRows; ++heightIndex )
61 QRgb* scanLine = ( QRgb* )srcImage.constScanLine( heightIndex );
62 for (
int widthIndex = 0; widthIndex < nCols; ++widthIndex )
64 px = scanLine[widthIndex];
65 int alpha = qAlpha( px );
66 alphaMatrix[pos] = alpha;
67 redMatrix[pos] = qRed( px );
68 greenMatrix[pos] = qGreen( px );
69 blueMatrix[pos] = qBlue( px );
76 double* xDerivativeMatrixRed =
new double[ nCols * nRows ];
77 xDerivativeMatrix( nCols, nRows, xDerivativeMatrixRed, redMatrix );
78 double* xDerivativeMatrixGreen =
new double[ nCols * nRows ];
79 xDerivativeMatrix( nCols, nRows, xDerivativeMatrixGreen, greenMatrix );
80 double* xDerivativeMatrixBlue =
new double[ nCols * nRows ];
81 xDerivativeMatrix( nCols, nRows, xDerivativeMatrixBlue, blueMatrix );
82 double* xDerivativeMatrixAlpha =
new double[ nCols * nRows ];
83 xDerivativeMatrix( nCols, nRows, xDerivativeMatrixAlpha, alphaMatrix );
86 double* yDerivativeMatrixRed =
new double[ nCols * nRows ];
87 yDerivativeMatrix( nCols, nRows, yDerivativeMatrixRed, redMatrix );
88 double* yDerivativeMatrixGreen =
new double[ nCols * nRows ];
89 yDerivativeMatrix( nCols, nRows, yDerivativeMatrixGreen, greenMatrix );
90 double* yDerivativeMatrixBlue =
new double[ nCols * nRows ];
91 yDerivativeMatrix( nCols, nRows, yDerivativeMatrixBlue, blueMatrix );
92 double* yDerivativeMatrixAlpha =
new double[ nCols * nRows ];
93 yDerivativeMatrix( nCols, nRows, yDerivativeMatrixAlpha, alphaMatrix );
96 double nSrcPerDstX = ( double ) srcImage.width() / ( double ) dstImage.width();
97 double nSrcPerDstY = ( double ) srcImage.height() / ( double ) dstImage.height();
99 double currentSrcRow = nSrcPerDstY / 2.0 - 0.5;
100 double currentSrcCol;
101 int currentSrcColInt;
102 int currentSrcRowInt;
103 int lastSrcColInt = -100;
104 int lastSrcRowInt = -100;
107 double bp0u, bp1u, bp2u, bp3u, bp0v, bp1v, bp2v, bp3v;
110 for (
int y = 0; y < dstImage.height(); ++y )
112 currentSrcRowInt = floor( currentSrcRow );
113 v = currentSrcRow - currentSrcRowInt;
115 currentSrcCol = nSrcPerDstX / 2.0 - 0.5;
117 QRgb* scanLine = ( QRgb* )dstImage.scanLine( y );
118 for (
int x = 0; x < dstImage.width(); ++x )
120 currentSrcColInt = floor( currentSrcCol );
121 u = currentSrcCol - currentSrcColInt;
124 if (( currentSrcRowInt < 0 || currentSrcRowInt >= ( srcImage.height() - 1 ) || currentSrcColInt < 0 || currentSrcColInt >= ( srcImage.width() - 1 ) ) )
128 if ( currentSrcRowInt < 0 && currentSrcColInt < 0 )
130 scanLine[x] = srcImage.pixel( 0, 0 );
132 else if ( currentSrcRowInt < 0 && currentSrcColInt >= ( srcImage.width() - 1 ) )
134 scanLine[x] = srcImage.pixel( srcImage.width() - 1, 0 );
136 else if ( currentSrcRowInt >= ( srcImage.height() - 1 ) && currentSrcColInt >= ( srcImage.width() - 1 ) )
138 scanLine[x] = srcImage.pixel( srcImage.width() - 1, srcImage.height() - 1 );
140 else if ( currentSrcRowInt >= ( srcImage.height() - 1 ) && currentSrcColInt < 0 )
142 scanLine[x] = srcImage.pixel( 0, srcImage.height() - 1 );
144 else if ( currentSrcRowInt < 0 )
146 px1 = srcImage.pixel( currentSrcColInt, 0 );
147 px2 = srcImage.pixel( currentSrcColInt + 1, 0 );
148 scanLine[x] = curveInterpolation( px1, px2, u, xDerivativeMatrixRed[ currentSrcColInt ], xDerivativeMatrixGreen[ currentSrcColInt ],
149 xDerivativeMatrixBlue[ currentSrcColInt ], xDerivativeMatrixAlpha[ currentSrcColInt ], xDerivativeMatrixRed[ currentSrcColInt + 1 ], xDerivativeMatrixGreen[ currentSrcColInt + 1 ],
150 xDerivativeMatrixBlue[ currentSrcColInt + 1 ], xDerivativeMatrixAlpha[ currentSrcColInt + 1 ] );
152 else if ( currentSrcRowInt >= ( srcImage.height() - 1 ) )
154 int idx = ( srcImage.height() - 1 ) * srcImage.width() + currentSrcColInt;
155 px1 = srcImage.pixel( currentSrcColInt, srcImage.height() - 1 );
156 px2 = srcImage.pixel( currentSrcColInt + 1, srcImage.height() - 1 );
157 scanLine[x] = curveInterpolation( px1, px2, u, xDerivativeMatrixRed[ idx ], xDerivativeMatrixGreen[ idx ], xDerivativeMatrixBlue[idx],
158 xDerivativeMatrixAlpha[idx], xDerivativeMatrixRed[ idx + 1 ], xDerivativeMatrixGreen[ idx + 1 ], xDerivativeMatrixBlue[idx + 1],
159 xDerivativeMatrixAlpha[idx + 1] );
161 else if ( currentSrcColInt < 0 )
163 int idx1 = currentSrcRowInt * srcImage.width();
164 int idx2 = idx1 + srcImage.width();
165 px1 = srcImage.pixel( 0, currentSrcRowInt );
166 px2 = srcImage.pixel( 0, currentSrcRowInt + 1 );
167 scanLine[x] = curveInterpolation( px1, px2, v, yDerivativeMatrixRed[ idx1 ], yDerivativeMatrixGreen[ idx1 ], yDerivativeMatrixBlue[ idx1],
168 yDerivativeMatrixAlpha[ idx1], yDerivativeMatrixRed[ idx2 ], yDerivativeMatrixGreen[ idx2 ], yDerivativeMatrixBlue[ idx2],
169 yDerivativeMatrixAlpha[ idx2] );
171 else if ( currentSrcColInt >= ( srcImage.width() - 1 ) )
173 int idx1 = currentSrcRowInt * srcImage.width() + srcImage.width() - 1;
174 int idx2 = idx1 + srcImage.width();
175 px1 = srcImage.pixel( srcImage.width() - 1, currentSrcRowInt );
176 px2 = srcImage.pixel( srcImage.width() - 1, currentSrcRowInt + 1 );
177 scanLine[x] = curveInterpolation( px1, px2, v, yDerivativeMatrixRed[ idx1 ], yDerivativeMatrixGreen[ idx1 ], yDerivativeMatrixBlue[ idx1],
178 yDerivativeMatrixAlpha[ idx1], yDerivativeMatrixRed[ idx2 ], yDerivativeMatrixGreen[ idx2 ], yDerivativeMatrixBlue[ idx2],
179 yDerivativeMatrixAlpha[ idx2] );
181 currentSrcCol += nSrcPerDstX;
186 if ( currentSrcColInt != lastSrcColInt || currentSrcRowInt != lastSrcRowInt )
188 calculateControlPoints( nCols, nRows, currentSrcRowInt, currentSrcColInt, redMatrix, greenMatrix, blueMatrix, alphaMatrix,
189 xDerivativeMatrixRed, xDerivativeMatrixGreen, xDerivativeMatrixBlue, xDerivativeMatrixAlpha,
190 yDerivativeMatrixRed, yDerivativeMatrixGreen, yDerivativeMatrixBlue, yDerivativeMatrixAlpha );
194 bp0u = calcBernsteinPolyN3( 0, u ); bp1u = calcBernsteinPolyN3( 1, u );
195 bp2u = calcBernsteinPolyN3( 2, u ); bp3u = calcBernsteinPolyN3( 3, u );
196 bp0v = calcBernsteinPolyN3( 0, v ); bp1v = calcBernsteinPolyN3( 1, v );
197 bp2v = calcBernsteinPolyN3( 2, v ); bp3v = calcBernsteinPolyN3( 3, v );
201 int r = bp0u * bp0v * cRed00 +
202 bp1u * bp0v * cRed10 +
203 bp2u * bp0v * cRed20 +
204 bp3u * bp0v * cRed30 +
205 bp0u * bp1v * cRed01 +
206 bp1u * bp1v * cRed11 +
207 bp2u * bp1v * cRed21 +
208 bp3u * bp1v * cRed31 +
209 bp0u * bp2v * cRed02 +
210 bp1u * bp2v * cRed12 +
211 bp2u * bp2v * cRed22 +
212 bp3u * bp2v * cRed32 +
213 bp0u * bp3v * cRed03 +
214 bp1u * bp3v * cRed13 +
215 bp2u * bp3v * cRed23 +
216 bp3u * bp3v * cRed33;
218 int g = bp0u * bp0v * cGreen00 +
219 bp1u * bp0v * cGreen10 +
220 bp2u * bp0v * cGreen20 +
221 bp3u * bp0v * cGreen30 +
222 bp0u * bp1v * cGreen01 +
223 bp1u * bp1v * cGreen11 +
224 bp2u * bp1v * cGreen21 +
225 bp3u * bp1v * cGreen31 +
226 bp0u * bp2v * cGreen02 +
227 bp1u * bp2v * cGreen12 +
228 bp2u * bp2v * cGreen22 +
229 bp3u * bp2v * cGreen32 +
230 bp0u * bp3v * cGreen03 +
231 bp1u * bp3v * cGreen13 +
232 bp2u * bp3v * cGreen23 +
233 bp3u * bp3v * cGreen33;
235 int b = bp0u * bp0v * cBlue00 +
236 bp1u * bp0v * cBlue10 +
237 bp2u * bp0v * cBlue20 +
238 bp3u * bp0v * cBlue30 +
239 bp0u * bp1v * cBlue01 +
240 bp1u * bp1v * cBlue11 +
241 bp2u * bp1v * cBlue21 +
242 bp3u * bp1v * cBlue31 +
243 bp0u * bp2v * cBlue02 +
244 bp1u * bp2v * cBlue12 +
245 bp2u * bp2v * cBlue22 +
246 bp3u * bp2v * cBlue32 +
247 bp0u * bp3v * cBlue03 +
248 bp1u * bp3v * cBlue13 +
249 bp2u * bp3v * cBlue23 +
250 bp3u * bp3v * cBlue33;
252 int a = bp0u * bp0v * cAlpha00 +
253 bp1u * bp0v * cAlpha10 +
254 bp2u * bp0v * cAlpha20 +
255 bp3u * bp0v * cAlpha30 +
256 bp0u * bp1v * cAlpha01 +
257 bp1u * bp1v * cAlpha11 +
258 bp2u * bp1v * cAlpha21 +
259 bp3u * bp1v * cAlpha31 +
260 bp0u * bp2v * cAlpha02 +
261 bp1u * bp2v * cAlpha12 +
262 bp2u * bp2v * cAlpha22 +
263 bp3u * bp2v * cAlpha32 +
264 bp0u * bp3v * cAlpha03 +
265 bp1u * bp3v * cAlpha13 +
266 bp2u * bp3v * cAlpha23 +
267 bp3u * bp3v * cAlpha33;
269 scanLine[x] = createPremultipliedColor( r, g, b, a );
271 lastSrcColInt = currentSrcColInt;
272 currentSrcCol += nSrcPerDstX;
274 lastSrcRowInt = currentSrcRowInt;
275 currentSrcRow += nSrcPerDstY;
281 delete[] greenMatrix;
283 delete[] alphaMatrix;
284 delete[] xDerivativeMatrixRed;
285 delete[] xDerivativeMatrixGreen;
286 delete[] xDerivativeMatrixBlue;
287 delete[] xDerivativeMatrixAlpha;
288 delete[] yDerivativeMatrixRed;
289 delete[] yDerivativeMatrixGreen;
290 delete[] yDerivativeMatrixBlue;
291 delete[] yDerivativeMatrixAlpha;
294 void QgsCubicRasterResampler::xDerivativeMatrix(
int nCols,
int nRows,
double* matrix,
const int* colorMatrix )
299 for (
int y = 0; y < nRows; ++y )
301 for (
int x = 0; x < nCols; ++x )
305 val = colorMatrix[index + 1] - colorMatrix[
index];
307 else if ( x == ( nCols - 1 ) )
309 val = colorMatrix[
index] - colorMatrix[ index - 1 ];
313 val = ( colorMatrix[index + 1] - colorMatrix[index - 1] ) / 2.0;
321 void QgsCubicRasterResampler::yDerivativeMatrix(
int nCols,
int nRows,
double* matrix,
const int* colorMatrix )
326 for (
int y = 0; y < nRows; ++y )
328 for (
int x = 0; x < nCols; ++x )
332 val = colorMatrix[ index + nCols ] - colorMatrix[
index ];
334 else if ( y == ( nRows - 1 ) )
336 val = colorMatrix[
index ] - colorMatrix[ index - nCols ];
340 val = ( colorMatrix[ index + nCols ] - colorMatrix[ index - nCols ] ) / 2.0;
348 void QgsCubicRasterResampler::calculateControlPoints(
int nCols,
int nRows,
int currentRow,
int currentCol,
int* redMatrix,
int* greenMatrix,
int* blueMatrix,
349 int* alphaMatrix,
double* xDerivativeMatrixRed,
double* xDerivativeMatrixGreen,
double* xDerivativeMatrixBlue,
double* xDerivativeMatrixAlpha,
350 double* yDerivativeMatrixRed,
double* yDerivativeMatrixGreen,
double* yDerivativeMatrixBlue,
double* yDerivativeMatrixAlpha )
353 int idx00 = currentRow * nCols + currentCol;
354 int idx10 = idx00 + 1;
355 int idx01 = idx00 + nCols;
356 int idx11 = idx01 + 1;
359 cRed00 = redMatrix[idx00]; cGreen00 = greenMatrix[idx00]; cBlue00 = blueMatrix[idx00]; cAlpha00 = alphaMatrix[idx00];
360 cRed30 = redMatrix[idx10]; cGreen30 = greenMatrix[idx10]; cBlue30 = blueMatrix[idx10]; cAlpha30 = alphaMatrix[idx10];
361 cRed03 = redMatrix[idx01]; cGreen03 = greenMatrix[idx01]; cBlue03 = blueMatrix[idx01]; cAlpha03 = alphaMatrix[idx01];
362 cRed33 = redMatrix[idx11]; cGreen33 = greenMatrix[idx11]; cBlue33 = blueMatrix[idx11]; cAlpha33 = alphaMatrix[idx11];
365 cRed10 = cRed00 + 0.333 * xDerivativeMatrixRed[idx00]; cGreen10 = cGreen00 + 0.333 * xDerivativeMatrixGreen[idx00];
366 cBlue10 = cBlue00 + 0.333 * xDerivativeMatrixBlue[idx00];cAlpha10 = cAlpha00 + 0.333 * xDerivativeMatrixAlpha[idx00];
367 cRed01 = cRed00 + 0.333 * yDerivativeMatrixRed[idx00]; cGreen01 = cGreen00 + 0.333 * yDerivativeMatrixGreen[idx00];
368 cBlue01 = cBlue00 + 0.333 * yDerivativeMatrixBlue[idx00];cAlpha01 = cAlpha00 + 0.333 * yDerivativeMatrixAlpha[idx00];
369 cRed11 = cRed10 + 0.333 * yDerivativeMatrixRed[idx00]; cGreen11 = cGreen10 + 0.333 * yDerivativeMatrixGreen[idx00];
370 cBlue11 = cBlue10 + 0.333 * yDerivativeMatrixBlue[idx00];cAlpha11 = cAlpha10 + 0.333 * yDerivativeMatrixAlpha[idx00];
373 cRed20 = cRed30 - 0.333 * xDerivativeMatrixRed[idx10]; cGreen20 = cGreen30 - 0.333 * xDerivativeMatrixGreen[idx10];
374 cBlue20 = cBlue30 - 0.333 * xDerivativeMatrixBlue[idx10]; cAlpha20 = cAlpha30 - 0.333 * xDerivativeMatrixAlpha[idx10];
375 cRed31 = cRed30 + 0.333 * yDerivativeMatrixRed[idx10]; cGreen31 = cGreen30 + 0.333 * yDerivativeMatrixGreen[idx10];
376 cBlue31 = cBlue30 + 0.333 * yDerivativeMatrixBlue[idx10]; cAlpha31 = cAlpha30 + 0.333 * yDerivativeMatrixAlpha[idx10];
377 cRed21 = cRed20 + 0.333 * yDerivativeMatrixRed[idx10]; cGreen21 = cGreen20 + 0.333 * yDerivativeMatrixGreen[idx10];
378 cBlue21 = cBlue20 + 0.333 * yDerivativeMatrixBlue[idx10]; cAlpha21 = cAlpha20 + 0.333 * yDerivativeMatrixAlpha[idx10];
381 cRed13 = cRed03 + 0.333 * xDerivativeMatrixRed[idx01]; cGreen13 = cGreen03 + 0.333 * xDerivativeMatrixGreen[idx01];
382 cBlue13 = cBlue03 + 0.333 * xDerivativeMatrixBlue[idx01]; cAlpha13 = cAlpha03 + 0.333 * xDerivativeMatrixAlpha[idx01];
383 cRed02 = cRed03 - 0.333 * yDerivativeMatrixRed[idx01]; cGreen02 = cGreen03 - 0.333 * yDerivativeMatrixGreen[idx01];
384 cBlue02 = cBlue03 - 0.333 * yDerivativeMatrixBlue[idx01]; cAlpha02 = cAlpha03 - 0.333 * yDerivativeMatrixAlpha[idx01];
385 cRed12 = cRed02 + 0.333 * xDerivativeMatrixRed[idx01]; cGreen12 = cGreen02 + 0.333 * xDerivativeMatrixGreen[idx01];
386 cBlue12 = cBlue02 + 0.333 * xDerivativeMatrixBlue[idx01]; cAlpha12 = cAlpha02 + 0.333 * xDerivativeMatrixAlpha[idx01];
389 cRed23 = cRed33 - 0.333 * xDerivativeMatrixRed[idx11]; cGreen23 = cGreen33 - 0.333 * xDerivativeMatrixGreen[idx11];
390 cBlue23 = cBlue33 - 0.333 * xDerivativeMatrixBlue[idx11]; cAlpha23 = cAlpha33 - 0.333 * xDerivativeMatrixAlpha[idx11];
391 cRed32 = cRed33 - 0.333 * yDerivativeMatrixRed[idx11]; cGreen32 = cGreen33 - 0.333 * yDerivativeMatrixGreen[idx11];
392 cBlue32 = cBlue33 - 0.333 * yDerivativeMatrixBlue[idx11]; cAlpha32 = cAlpha33 - 0.333 * yDerivativeMatrixAlpha[idx11];
393 cRed22 = cRed32 - 0.333 * xDerivativeMatrixRed[idx11]; cGreen22 = cGreen32 - 0.333 * xDerivativeMatrixGreen[idx11];
394 cBlue22 = cBlue32 - 0.333 * xDerivativeMatrixBlue[idx11]; cAlpha22 = cAlpha32 - 0.333 * xDerivativeMatrixAlpha[idx11];
397 QRgb QgsCubicRasterResampler::curveInterpolation( QRgb pt1, QRgb pt2,
double t,
double d1red,
double d1green,
double d1blue,
double d1alpha,
398 double d2red,
double d2green,
double d2blue,
double d2alpha )
401 double p0r = qRed( pt1 );
double p1r = p0r + 0.333 * d1red;
double p3r = qRed( pt2 );
double p2r = p3r - 0.333 * d2red;
402 double p0g = qGreen( pt1 );
double p1g = p0g + 0.333 * d1green;
double p3g = qGreen( pt2 );
double p2g = p3g - 0.333 * d2green;
403 double p0b = qBlue( pt1 );
double p1b = p0b + 0.333 * d1blue;
double p3b = qBlue( pt2 );
double p2b = p3b - 0.333 * d2blue;
404 double p0a = qAlpha( pt1 );
double p1a = p0a + 0.333 * d1alpha;
double p3a = qAlpha( pt2 );
double p2a = p3a - 0.333 * d2alpha;
407 double bp0 = calcBernsteinPolyN3( 0, t );
408 double bp1 = calcBernsteinPolyN3( 1, t );
409 double bp2 = calcBernsteinPolyN3( 2, t );
410 double bp3 = calcBernsteinPolyN3( 3, t );
412 int red = bp0 * p0r + bp1 * p1r + bp2 * p2r + bp3 * p3r;
413 int green = bp0 * p0g + bp1 * p1g + bp2 * p2g + bp3 * p3g;
414 int blue = bp0 * p0b + bp1 * p1b + bp2 * p2b + bp3 * p3b;
415 int alpha = bp0 * p0a + bp1 * p1a + bp2 * p2a + bp3 * p3a;
417 return createPremultipliedColor( red, green, blue, alpha );
420 double QgsCubicRasterResampler::calcBernsteinPolyN3(
int i,
double t )
427 return lowerN3( i ) * qPow( t, i ) * qPow(( 1 - t ), ( 3 - i ) );
430 inline int QgsCubicRasterResampler::lowerN3(
int i )
445 QRgb QgsCubicRasterResampler::createPremultipliedColor(
const int r,
const int g,
const int b,
const int a )
447 int maxComponentBounds = qBound( 0, a, 255 );
448 return qRgba( qBound( 0, r, maxComponentBounds ),
449 qBound( 0, g, maxComponentBounds ),
450 qBound( 0, b, maxComponentBounds ),