Listing the "Blender Foundation" as copyright holder implied the Blender Foundation holds copyright to files which may include work from many developers. While keeping copyright on headers makes sense for isolated libraries, Blender's own code may be refactored or moved between files in a way that makes the per file copyright holders less meaningful. Copyright references to the "Blender Foundation" have been replaced with "Blender Authors", with the exception of `./extern/` since these this contains libraries which are more isolated, any changed to license headers there can be handled on a case-by-case basis. Some directories in `./intern/` have also been excluded: - `./intern/cycles/` it's own `AUTHORS` file is planned. - `./intern/opensubdiv/`. An "AUTHORS" file has been added, using the chromium projects authors file as a template. Design task: #110784 Ref !110783.
296 lines
7.9 KiB
C++
296 lines
7.9 KiB
C++
/* SPDX-FileCopyrightText: 2008-2023 Blender Authors
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*
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* SPDX-License-Identifier: GPL-2.0-or-later */
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/** \file
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* \ingroup freestyle
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* \brief Convenient access to the steerable ViewMap to which any element of the ViewMap belongs
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* to.
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*/
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#include <sstream>
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#include "Silhouette.h"
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#include "SteerableViewMap.h"
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#include "../geometry/Geom.h"
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#include "../image/Image.h"
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#include "../image/ImagePyramid.h"
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#include "BLI_math_base.h"
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#include "BLI_sys_types.h"
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#include "BKE_global.h"
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#include "IMB_imbuf.h"
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#include "IMB_imbuf_types.h"
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namespace Freestyle {
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using namespace Geometry;
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SteerableViewMap::SteerableViewMap(uint nbOrientations)
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{
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_nbOrientations = nbOrientations;
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_bound = cos(M_PI / float(_nbOrientations));
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for (uint i = 0; i < _nbOrientations; ++i) {
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_directions.emplace_back(cos(float(i) * M_PI / float(_nbOrientations)),
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sin(float(i) * M_PI / float(_nbOrientations)));
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}
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Build();
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}
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void SteerableViewMap::Build()
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{
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_imagesPyramids =
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new ImagePyramid *[_nbOrientations + 1]; // one more map to store the complete visible VM
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memset((_imagesPyramids), 0, (_nbOrientations + 1) * sizeof(ImagePyramid *));
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}
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SteerableViewMap::SteerableViewMap(const SteerableViewMap &iBrother)
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{
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_nbOrientations = iBrother._nbOrientations;
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uint i;
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_bound = iBrother._bound;
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_directions = iBrother._directions;
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_mapping = iBrother._mapping;
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_imagesPyramids =
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new ImagePyramid *[_nbOrientations + 1]; // one more map to store the complete visible VM
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for (i = 0; i <= _nbOrientations; ++i) {
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_imagesPyramids[i] = new GaussianPyramid(
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*(dynamic_cast<GaussianPyramid *>(iBrother._imagesPyramids[i])));
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}
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}
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SteerableViewMap::~SteerableViewMap()
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{
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Clear();
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}
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void SteerableViewMap::Clear()
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{
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uint i;
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if (_imagesPyramids) {
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for (i = 0; i <= _nbOrientations; ++i) {
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if (_imagesPyramids[i]) {
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delete (_imagesPyramids)[i];
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}
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}
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delete[] _imagesPyramids;
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_imagesPyramids = nullptr;
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}
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if (!_mapping.empty()) {
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for (map<uint, double *>::iterator m = _mapping.begin(), mend = _mapping.end(); m != mend; ++m)
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{
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delete[](*m).second;
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}
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_mapping.clear();
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}
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}
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void SteerableViewMap::Reset()
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{
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Clear();
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Build();
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}
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double SteerableViewMap::ComputeWeight(const Vec2d &dir, uint i)
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{
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double dotp = fabs(dir * _directions[i]);
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if (dotp < _bound) {
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return 0.0;
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}
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if (dotp > 1.0) {
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dotp = 1.0;
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}
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return cos(float(_nbOrientations) / 2.0 * acos(dotp));
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}
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double *SteerableViewMap::AddFEdge(FEdge *iFEdge)
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{
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uint i;
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uint id = iFEdge->getId().getFirst();
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map<uint, double *>::iterator o = _mapping.find(id);
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if (o != _mapping.end()) {
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return (*o).second;
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}
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double *res = new double[_nbOrientations];
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for (i = 0; i < _nbOrientations; ++i) {
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res[i] = 0.0;
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}
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Vec3r o2d3 = iFEdge->orientation2d();
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Vec2r o2d2(o2d3.x(), o2d3.y());
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real norm = o2d2.norm();
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if (norm < 1.0e-6) {
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return res;
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}
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o2d2 /= norm;
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for (i = 0; i < _nbOrientations; ++i) {
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res[i] = ComputeWeight(o2d2, i);
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}
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_mapping[id] = res;
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return res;
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}
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uint SteerableViewMap::getSVMNumber(Vec2f dir)
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{
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// soc uint res = 0;
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real norm = dir.norm();
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if (norm < 1.0e-6) {
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return _nbOrientations + 1;
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}
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dir /= norm;
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double maxw = 0.0f;
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uint winner = _nbOrientations + 1;
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for (uint i = 0; i < _nbOrientations; ++i) {
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double w = ComputeWeight(dir, i);
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if (w > maxw) {
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maxw = w;
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winner = i;
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}
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}
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return winner;
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}
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uint SteerableViewMap::getSVMNumber(uint id)
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{
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map<uint, double *>::iterator o = _mapping.find(id);
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if (o != _mapping.end()) {
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double *wvalues = (*o).second;
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double maxw = 0.0;
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uint winner = _nbOrientations + 1;
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for (uint i = 0; i < _nbOrientations; ++i) {
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double w = wvalues[i];
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if (w > maxw) {
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maxw = w;
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winner = i;
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}
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}
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return winner;
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}
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return _nbOrientations + 1;
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}
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void SteerableViewMap::buildImagesPyramids(GrayImage **steerableBases,
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bool copy,
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uint iNbLevels,
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float iSigma)
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{
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for (uint i = 0; i <= _nbOrientations; ++i) {
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ImagePyramid *svm = (_imagesPyramids)[i];
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delete svm;
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if (copy) {
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svm = new GaussianPyramid(*(steerableBases[i]), iNbLevels, iSigma);
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}
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else {
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svm = new GaussianPyramid(steerableBases[i], iNbLevels, iSigma);
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}
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_imagesPyramids[i] = svm;
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}
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}
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float SteerableViewMap::readSteerableViewMapPixel(uint iOrientation, int iLevel, int x, int y)
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{
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ImagePyramid *pyramid = _imagesPyramids[iOrientation];
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if (!pyramid) {
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if (G.debug & G_DEBUG_FREESTYLE) {
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cout << "Warning: this steerable ViewMap level doesn't exist" << endl;
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}
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return 0.0f;
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}
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if ((x < 0) || (x >= pyramid->width()) || (y < 0) || (y >= pyramid->height())) {
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return 0;
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}
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// float v = pyramid->pixel(x, pyramid->height() - 1 - y, iLevel) * 255.0f;
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// We encode both the directionality and the lines counting on 8 bits (because of frame buffer).
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// Thus, we allow until 8 lines to pass through the same pixel, so that we can discretize the
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// Pi/_nbOrientations angle into 32 slices. Therefore, for example, in the vertical direction, a
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// vertical line will have the value 32 on each pixel it passes through.
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float v = pyramid->pixel(x, pyramid->height() - 1 - y, iLevel) / 32.0f;
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return v;
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}
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float SteerableViewMap::readCompleteViewMapPixel(int iLevel, int x, int y)
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{
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return readSteerableViewMapPixel(_nbOrientations, iLevel, x, y);
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}
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uint SteerableViewMap::getNumberOfPyramidLevels() const
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{
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if (_imagesPyramids[0]) {
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return _imagesPyramids[0]->getNumberOfLevels();
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}
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return 0;
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}
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void SteerableViewMap::saveSteerableViewMap() const
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{
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for (uint i = 0; i <= _nbOrientations; ++i) {
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if (_imagesPyramids[i] == nullptr) {
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cerr << "SteerableViewMap warning: orientation " << i
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<< " of steerable View Map whas not been computed yet" << endl;
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continue;
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}
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int ow = _imagesPyramids[i]->width(0);
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int oh = _imagesPyramids[i]->height(0);
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// soc QString base("SteerableViewMap");
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string base("SteerableViewMap");
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stringstream filepath;
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for (int j = 0; j < _imagesPyramids[i]->getNumberOfLevels(); ++j) { // soc
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float coeff = 1.0f; // 1 / 255.0f; // 100 * 255; // * pow(2, j);
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// soc QImage qtmp(ow, oh, QImage::Format_RGB32);
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ImBuf *ibuf = IMB_allocImBuf(ow, oh, 32, IB_rect);
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int rowbytes = ow * 4;
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uchar *pix;
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for (int y = 0; y < oh; ++y) { // soc
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for (int x = 0; x < ow; ++x) { // soc
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int c = int(coeff * _imagesPyramids[i]->pixel(x, y, j));
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if (c > 255) {
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c = 255;
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}
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// int c = int(_imagesPyramids[i]->pixel(x, y, j));
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// soc qtmp.setPixel(x, y, qRgb(c, c, c));
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pix = ibuf->byte_buffer.data + y * rowbytes + x * 4;
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pix[0] = pix[1] = pix[2] = c;
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}
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}
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// soc qtmp.save(base+QString::number(i)+"-"+QString::number(j)+".png", "PNG");
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filepath << base;
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filepath << i << "-" << j << ".png";
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ibuf->ftype = IMB_FTYPE_PNG;
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IMB_saveiff(ibuf, const_cast<char *>(filepath.str().c_str()), 0);
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}
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#if 0
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QString base("SteerableViewMap");
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for (uint j = 0; j < _imagesPyramids[i]->getNumberOfLevels(); ++j) {
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GrayImage *img = _imagesPyramids[i]->getLevel(j);
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int ow = img->width();
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int oh = img->height();
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float coeff = 1.0f; // 100 * 255; // * pow(2, j);
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QImage qtmp(ow, oh, 32);
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for (uint y = 0; y < oh; ++y) {
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for (uint x = 0; x < ow; ++x) {
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int c = int(coeff * img->pixel(x, y));
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if (c > 255) {
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c = 255;
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}
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// int c = int(_imagesPyramids[i]->pixel(x, y, j));
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qtmp.setPixel(x, y, qRgb(c, c, c));
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}
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}
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qtmp.save(base + QString::number(i) + "-" + QString::number(j) + ".png", "PNG");
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}
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#endif
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}
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}
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} /* namespace Freestyle */
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