forked from bartvdbraak/blender
31d679b667
Fixes some issues with NaN vertices in special cases. Also adds edge interpolation routines which are currently unused but which are requires to implement edge CD interpolation.
373 lines
14 KiB
C++
373 lines
14 KiB
C++
// Begin License:
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// Copyright (C) 2006-2011 Tobias Sargeant (tobias.sargeant@gmail.com).
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// All rights reserved.
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//
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// This file is part of the Carve CSG Library (http://carve-csg.com/)
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//
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// This file may be used under the terms of the GNU General Public
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// License version 2.0 as published by the Free Software Foundation
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// and appearing in the file LICENSE.GPL2 included in the packaging of
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// this file.
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//
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// This file is provided "AS IS" with NO WARRANTY OF ANY KIND,
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// INCLUDING THE WARRANTIES OF DESIGN, MERCHANTABILITY AND FITNESS FOR
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// A PARTICULAR PURPOSE.
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// End:
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#if defined(HAVE_CONFIG_H)
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# include <carve_config.h>
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#endif
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#include <carve/csg.hpp>
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#include <iostream>
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#include "csg_collector.hpp"
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#include "intersect_debug.hpp"
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#if defined(CARVE_DEBUG_WRITE_PLY_DATA)
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void writePLY(const std::string &out_file, const carve::mesh::MeshSet<3> *poly, bool ascii);
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#endif
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namespace carve {
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namespace csg {
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namespace {
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class BaseCollector : public CSG::Collector {
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BaseCollector();
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BaseCollector(const BaseCollector &);
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BaseCollector &operator=(const BaseCollector &);
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protected:
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struct face_data_t {
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carve::mesh::MeshSet<3>::face_t *face;
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const carve::mesh::MeshSet<3>::face_t *orig_face;
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bool flipped;
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face_data_t(carve::mesh::MeshSet<3>::face_t *_face,
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const carve::mesh::MeshSet<3>::face_t *_orig_face,
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bool _flipped) : face(_face), orig_face(_orig_face), flipped(_flipped) {
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};
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};
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std::list<face_data_t> faces;
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const carve::mesh::MeshSet<3> *src_a;
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const carve::mesh::MeshSet<3> *src_b;
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BaseCollector(const carve::mesh::MeshSet<3> *_src_a,
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const carve::mesh::MeshSet<3> *_src_b) : CSG::Collector(), src_a(_src_a), src_b(_src_b) {
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}
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virtual ~BaseCollector() {
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}
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void FWD(const carve::mesh::MeshSet<3>::face_t *orig_face,
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const std::vector<carve::mesh::MeshSet<3>::vertex_t *> &vertices,
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carve::geom3d::Vector /* normal */,
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bool /* poly_a */,
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FaceClass face_class,
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CSG::Hooks &hooks) {
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std::vector<carve::mesh::MeshSet<3>::face_t *> new_faces;
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new_faces.reserve(1);
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new_faces.push_back(orig_face->create(vertices.begin(), vertices.end(), false));
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hooks.processOutputFace(new_faces, orig_face, false);
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for (size_t i = 0; i < new_faces.size(); ++i) {
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faces.push_back(face_data_t(new_faces[i], orig_face, false));
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}
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#if defined(CARVE_DEBUG) && defined(DEBUG_PRINT_RESULT_FACES)
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std::cerr << "+" << ENUM(face_class) << " ";
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for (unsigned i = 0; i < vertices.size(); ++i) std::cerr << " " << vertices[i] << ":" << *vertices[i];
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std::cerr << std::endl;
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#endif
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}
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void REV(const carve::mesh::MeshSet<3>::face_t *orig_face,
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const std::vector<carve::mesh::MeshSet<3>::vertex_t *> &vertices,
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carve::geom3d::Vector /* normal */,
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bool /* poly_a */,
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FaceClass face_class,
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CSG::Hooks &hooks) {
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// normal = -normal;
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std::vector<carve::mesh::MeshSet<3>::face_t *> new_faces;
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new_faces.reserve(1);
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new_faces.push_back(orig_face->create(vertices.begin(), vertices.end(), true));
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hooks.processOutputFace(new_faces, orig_face, true);
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for (size_t i = 0; i < new_faces.size(); ++i) {
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faces.push_back(face_data_t(new_faces[i], orig_face, true));
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}
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#if defined(CARVE_DEBUG) && defined(DEBUG_PRINT_RESULT_FACES)
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std::cerr << "-" << ENUM(face_class) << " ";
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for (unsigned i = 0; i < vertices.size(); ++i) std::cerr << " " << vertices[i] << ":" << *vertices[i];
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std::cerr << std::endl;
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#endif
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}
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virtual void collect(const carve::mesh::MeshSet<3>::face_t *orig_face,
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const std::vector<carve::mesh::MeshSet<3>::vertex_t *> &vertices,
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carve::geom3d::Vector normal,
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bool poly_a,
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FaceClass face_class,
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CSG::Hooks &hooks) =0;
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virtual void collect(FaceLoopGroup *grp, CSG::Hooks &hooks) {
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std::list<ClassificationInfo> &cinfo = (grp->classification);
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if (cinfo.size() == 0) {
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std::cerr << "WARNING! group " << grp << " has no classification info!" << std::endl;
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return;
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}
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FaceClass fc = FACE_UNCLASSIFIED;
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unsigned fc_closed_bits = 0;
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unsigned fc_open_bits = 0;
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unsigned fc_bits = 0;
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for (std::list<ClassificationInfo>::const_iterator i = grp->classification.begin(), e = grp->classification.end(); i != e; ++i) {
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if ((*i).intersected_mesh == NULL) {
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// classifier only returns global info
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fc_closed_bits = class_to_class_bit((*i).classification);
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break;
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}
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if ((*i).classification == FACE_UNCLASSIFIED) continue;
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if ((*i).intersectedMeshIsClosed()) {
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fc_closed_bits |= class_to_class_bit((*i).classification);
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} else {
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fc_open_bits |= class_to_class_bit((*i).classification);
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}
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}
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if (fc_closed_bits) {
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fc_bits = fc_closed_bits;
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} else {
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fc_bits = fc_open_bits;
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}
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fc = class_bit_to_class(fc_bits);
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// handle the complex cases where a group is classified differently with respect to two or more closed manifolds.
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if (fc == FACE_UNCLASSIFIED) {
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unsigned inout_bits = fc_bits & FACE_NOT_ON_BIT;
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unsigned on_bits = fc_bits & FACE_ON_BIT;
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// both in and out. indicates an invalid manifold embedding.
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if (inout_bits == (FACE_IN_BIT | FACE_OUT_BIT)) goto out;
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// on, both orientations. could be caused by two manifolds touching at a face.
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if (on_bits == (FACE_ON_ORIENT_IN_BIT | FACE_ON_ORIENT_OUT_BIT)) goto out;
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// in or out, but also on (with orientation). the on classification takes precedence.
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fc = class_bit_to_class(on_bits);
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}
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out:
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if (fc == FACE_UNCLASSIFIED) {
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std::cerr << "group " << grp << " is unclassified!" << std::endl;
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#if defined(CARVE_DEBUG_WRITE_PLY_DATA)
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static int uc_count = 0;
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std::vector<carve::mesh::MeshSet<3>::face_t *> faces;
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for (FaceLoop *f = grp->face_loops.head; f; f = f->next) {
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carve::mesh::MeshSet<3>::face_t *temp = f->orig_face->create(f->vertices.begin(), f->vertices.end(), false);
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faces.push_back(temp);
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}
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carve::mesh::MeshSet<3> *p = new carve::mesh::MeshSet<3>(faces);
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std::ostringstream filename;
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filename << "classifier_fail_" << ++uc_count << ".ply";
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std::string out(filename.str().c_str());
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::writePLY(out, p, false);
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delete p;
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#endif
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return;
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}
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bool is_poly_a = grp->src == src_a;
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for (FaceLoop *f = grp->face_loops.head; f; f = f->next) {
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collect(f->orig_face, f->vertices, f->orig_face->plane.N, is_poly_a, fc, hooks);
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}
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}
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virtual carve::mesh::MeshSet<3> *done(CSG::Hooks &hooks) {
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std::vector<carve::mesh::MeshSet<3>::face_t *> f;
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f.reserve(faces.size());
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for (std::list<face_data_t>::iterator i = faces.begin(); i != faces.end(); ++i) {
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f.push_back((*i).face);
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}
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carve::mesh::MeshSet<3> *p = new carve::mesh::MeshSet<3>(f);
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if (hooks.hasHook(carve::csg::CSG::Hooks::RESULT_FACE_HOOK)) {
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for (std::list<face_data_t>::iterator i = faces.begin(); i != faces.end(); ++i) {
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hooks.resultFace((*i).face, (*i).orig_face, (*i).flipped);
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}
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}
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return p;
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}
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};
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class AllCollector : public BaseCollector {
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public:
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AllCollector(const carve::mesh::MeshSet<3> *_src_a,
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const carve::mesh::MeshSet<3> *_src_b) : BaseCollector(_src_a, _src_b) {
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}
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virtual ~AllCollector() {
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}
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virtual void collect(FaceLoopGroup *grp, CSG::Hooks &hooks) {
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for (FaceLoop *f = grp->face_loops.head; f; f = f->next) {
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FWD(f->orig_face, f->vertices, f->orig_face->plane.N, f->orig_face->mesh->meshset == src_a, FACE_OUT, hooks);
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}
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}
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virtual void collect(const carve::mesh::MeshSet<3>::face_t *orig_face,
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const std::vector<carve::mesh::MeshSet<3>::vertex_t *> &vertices,
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carve::geom3d::Vector normal,
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bool poly_a,
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FaceClass face_class,
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CSG::Hooks &hooks) {
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FWD(orig_face, vertices, normal, poly_a, face_class, hooks);
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}
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};
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class UnionCollector : public BaseCollector {
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public:
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UnionCollector(const carve::mesh::MeshSet<3> *_src_a,
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const carve::mesh::MeshSet<3> *_src_b) : BaseCollector(_src_a, _src_b) {
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}
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virtual ~UnionCollector() {
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}
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virtual void collect(const carve::mesh::MeshSet<3>::face_t *orig_face,
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const std::vector<carve::mesh::MeshSet<3>::vertex_t *> &vertices,
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carve::geom3d::Vector normal,
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bool poly_a,
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FaceClass face_class,
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CSG::Hooks &hooks) {
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if (face_class == FACE_OUT || (poly_a && face_class == FACE_ON_ORIENT_OUT)) {
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FWD(orig_face, vertices, normal, poly_a, face_class, hooks);
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}
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}
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};
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class IntersectionCollector : public BaseCollector {
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public:
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IntersectionCollector(const carve::mesh::MeshSet<3> *_src_a,
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const carve::mesh::MeshSet<3> *_src_b) : BaseCollector(_src_a, _src_b) {
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}
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virtual ~IntersectionCollector() {
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}
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virtual void collect(const carve::mesh::MeshSet<3>::face_t *orig_face,
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const std::vector<carve::mesh::MeshSet<3>::vertex_t *> &vertices,
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carve::geom3d::Vector normal,
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bool poly_a,
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FaceClass face_class,
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CSG::Hooks &hooks) {
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if (face_class == FACE_IN || (poly_a && face_class == FACE_ON_ORIENT_OUT)) {
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FWD(orig_face, vertices, normal, poly_a, face_class, hooks);
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}
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}
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};
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class SymmetricDifferenceCollector : public BaseCollector {
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public:
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SymmetricDifferenceCollector(const carve::mesh::MeshSet<3> *_src_a,
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const carve::mesh::MeshSet<3> *_src_b) : BaseCollector(_src_a, _src_b) {
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}
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virtual ~SymmetricDifferenceCollector() {
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}
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virtual void collect(const carve::mesh::MeshSet<3>::face_t *orig_face,
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const std::vector<carve::mesh::MeshSet<3>::vertex_t *> &vertices,
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carve::geom3d::Vector normal,
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bool poly_a,
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FaceClass face_class,
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CSG::Hooks &hooks) {
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if (face_class == FACE_OUT) {
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FWD(orig_face, vertices, normal, poly_a, face_class, hooks);
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} else if (face_class == FACE_IN) {
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REV(orig_face, vertices, normal, poly_a, face_class, hooks);
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}
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}
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};
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class AMinusBCollector : public BaseCollector {
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public:
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AMinusBCollector(const carve::mesh::MeshSet<3> *_src_a,
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const carve::mesh::MeshSet<3> *_src_b) : BaseCollector(_src_a, _src_b) {
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}
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virtual ~AMinusBCollector() {
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}
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virtual void collect(const carve::mesh::MeshSet<3>::face_t *orig_face,
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const std::vector<carve::mesh::MeshSet<3>::vertex_t *> &vertices,
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carve::geom3d::Vector normal,
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bool poly_a,
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FaceClass face_class,
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CSG::Hooks &hooks) {
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if ((face_class == FACE_OUT || face_class == FACE_ON_ORIENT_IN) && poly_a) {
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FWD(orig_face, vertices, normal, poly_a, face_class, hooks);
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} else if (face_class == FACE_IN && !poly_a) {
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REV(orig_face, vertices, normal, poly_a, face_class, hooks);
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}
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}
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};
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class BMinusACollector : public BaseCollector {
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public:
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BMinusACollector(const carve::mesh::MeshSet<3> *_src_a,
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const carve::mesh::MeshSet<3> *_src_b) : BaseCollector(_src_a, _src_b) {
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}
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virtual ~BMinusACollector() {
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}
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virtual void collect(const carve::mesh::MeshSet<3>::face_t *orig_face,
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const std::vector<carve::mesh::MeshSet<3>::vertex_t *> &vertices,
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carve::geom3d::Vector normal,
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bool poly_a,
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FaceClass face_class,
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CSG::Hooks &hooks) {
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if ((face_class == FACE_OUT || face_class == FACE_ON_ORIENT_IN) && !poly_a) {
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FWD(orig_face, vertices, normal, poly_a, face_class, hooks);
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} else if (face_class == FACE_IN && poly_a) {
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REV(orig_face, vertices, normal, poly_a, face_class, hooks);
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}
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}
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};
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}
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CSG::Collector *makeCollector(CSG::OP op,
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const carve::mesh::MeshSet<3> *poly_a,
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const carve::mesh::MeshSet<3> *poly_b) {
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switch (op) {
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case CSG::UNION: return new UnionCollector(poly_a, poly_b);
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case CSG::INTERSECTION: return new IntersectionCollector(poly_a, poly_b);
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case CSG::A_MINUS_B: return new AMinusBCollector(poly_a, poly_b);
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case CSG::B_MINUS_A: return new BMinusACollector(poly_a, poly_b);
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case CSG::SYMMETRIC_DIFFERENCE: return new SymmetricDifferenceCollector(poly_a, poly_b);
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case CSG::ALL: return new AllCollector(poly_a, poly_b);
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}
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return NULL;
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}
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}
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}
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