| Line | Branch | Exec | Source |
|---|---|---|---|
| 1 | /* | ||
| 2 | * Copyright (c) 2000-2022 Inria | ||
| 3 | * All rights reserved. | ||
| 4 | * | ||
| 5 | * Redistribution and use in source and binary forms, with or without | ||
| 6 | * modification, are permitted provided that the following conditions are met: | ||
| 7 | * | ||
| 8 | * * Redistributions of source code must retain the above copyright notice, | ||
| 9 | * this list of conditions and the following disclaimer. | ||
| 10 | * * Redistributions in binary form must reproduce the above copyright notice, | ||
| 11 | * this list of conditions and the following disclaimer in the documentation | ||
| 12 | * and/or other materials provided with the distribution. | ||
| 13 | * * Neither the name of the ALICE Project-Team nor the names of its | ||
| 14 | * contributors may be used to endorse or promote products derived from this | ||
| 15 | * software without specific prior written permission. | ||
| 16 | * | ||
| 17 | * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" | ||
| 18 | * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE | ||
| 19 | * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE | ||
| 20 | * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE | ||
| 21 | * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR | ||
| 22 | * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF | ||
| 23 | * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS | ||
| 24 | * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN | ||
| 25 | * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) | ||
| 26 | * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE | ||
| 27 | * POSSIBILITY OF SUCH DAMAGE. | ||
| 28 | * | ||
| 29 | * Contact: Bruno Levy | ||
| 30 | * | ||
| 31 | * https://www.inria.fr/fr/bruno-levy | ||
| 32 | * | ||
| 33 | * Inria, | ||
| 34 | * Domaine de Voluceau, | ||
| 35 | * 78150 Le Chesnay - Rocquencourt | ||
| 36 | * FRANCE | ||
| 37 | * | ||
| 38 | */ | ||
| 39 | |||
| 40 | #include <geogram/delaunay/delaunay_tetgen.h> | ||
| 41 | #include <geogram/mesh/mesh.h> | ||
| 42 | #include <geogram/basic/logger.h> | ||
| 43 | #include <geogram/basic/command_line.h> | ||
| 44 | #include <geogram/bibliography/bibliography.h> | ||
| 45 | |||
| 46 | #include <geogram/mesh/mesh_io.h> | ||
| 47 | |||
| 48 | #ifdef GEOGRAM_WITH_TETGEN | ||
| 49 | |||
| 50 | namespace GEO { | ||
| 51 | |||
| 52 | 1 | DelaunayTetgen::DelaunayTetgen(coord_index_t dimension) : | |
| 53 | 1 | Delaunay(3) | |
| 54 | { | ||
| 55 |
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1 | if(dimension != 3) { |
| 56 | ✗ | throw InvalidDimension(dimension, "DelaunayTetgen", "3"); | |
| 57 | } | ||
| 58 | |||
| 59 |
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1 | geo_cite("DBLP:journals/toms/Si15"); |
| 60 | |||
| 61 | 1 | tetgen_in_.firstnumber = 0; | |
| 62 | 1 | tetgen_out_.firstnumber = 0; | |
| 63 | 1 | } | |
| 64 | |||
| 65 | 4 | DelaunayTetgen::~DelaunayTetgen() { | |
| 66 | // We do not want that the destructor of tetgen_in_ | ||
| 67 | // deallocates the points, since they are managed | ||
| 68 | // by a vector<>. | ||
| 69 | 2 | tetgen_in_.pointlist = nullptr; | |
| 70 | 2 | tetgen_in_.numberofpoints = 0; | |
| 71 | 4 | } | |
| 72 | |||
| 73 | ✗ | index_t DelaunayTetgen::region(index_t t) const { | |
| 74 | ✗ | geo_debug_assert(keep_regions_); | |
| 75 | ✗ | geo_debug_assert(t < nb_cells()); | |
| 76 | ✗ | return index_t(tetgen_out_.tetrahedronattributelist[t]); | |
| 77 | } | ||
| 78 | |||
| 79 | 1 | bool DelaunayTetgen::supports_constraints() const { | |
| 80 | 1 | return true; | |
| 81 | } | ||
| 82 | |||
| 83 | 1 | void DelaunayTetgen::set_vertices( | |
| 84 | index_t nb_vertices, const double* vertices | ||
| 85 | ) { | ||
| 86 |
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1 | if(constraints_ != nullptr) { |
| 87 | 1 | set_vertices_constrained(nb_vertices, vertices); | |
| 88 | } else { | ||
| 89 | ✗ | set_vertices_unconstrained(nb_vertices, vertices); | |
| 90 | } | ||
| 91 | 1 | } | |
| 92 | |||
| 93 | ✗ | void DelaunayTetgen::set_vertices_unconstrained( | |
| 94 | index_t nb_vertices, const double* vertices | ||
| 95 | ) { | ||
| 96 | // Q: quiet | ||
| 97 | // n: output tet neighbors | ||
| 98 | // V: verbose | ||
| 99 | ✗ | if(CmdLine::get_arg_bool("dbg:tetgen")) { | |
| 100 | ✗ | tetgen_args_.parse_commandline(const_cast<char*>("Vn")); | |
| 101 | } else { | ||
| 102 | ✗ | tetgen_args_.parse_commandline(const_cast<char*>("Qn")); | |
| 103 | } | ||
| 104 | |||
| 105 | ✗ | Delaunay::set_vertices(nb_vertices, vertices); | |
| 106 | ✗ | tetgen_out_.deinitialize(); | |
| 107 | ✗ | tetgen_in_.initialize(); | |
| 108 | ✗ | tetgen_in_.numberofpoints = int(nb_vertices); | |
| 109 | ✗ | tetgen_in_.pointlist = const_cast<double*>(vertices); | |
| 110 | try { | ||
| 111 | ✗ | GEO_3rdParty::tetrahedralize( | |
| 112 | &tetgen_args_, &tetgen_in_, &tetgen_out_ | ||
| 113 | ); | ||
| 114 | } | ||
| 115 | ✗ | catch(int error_code) { | |
| 116 | ✗ | Logger::err("DelaunayTetgen") | |
| 117 | ✗ | << "Encountered a problem..." << std::endl; | |
| 118 | ✗ | throw Delaunay::InvalidInput(error_code); | |
| 119 | ✗ | } | |
| 120 | ✗ | set_arrays( | |
| 121 | ✗ | index_t(tetgen_out_.numberoftetrahedra), | |
| 122 | ✗ | reinterpret_cast<index_t*>(tetgen_out_.tetrahedronlist), | |
| 123 | ✗ | reinterpret_cast<index_t*>(tetgen_out_.neighborlist) | |
| 124 | ); | ||
| 125 | ✗ | } | |
| 126 | |||
| 127 | |||
| 128 | 1 | void DelaunayTetgen::set_vertices_constrained( | |
| 129 | index_t nb_vertices, const double* vertices | ||
| 130 | ) { | ||
| 131 | 1 | index_t nb_borders = 0; | |
| 132 |
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12001 | for(index_t c=0; c<constraints_->facet_corners.nb(); ++c) { |
| 133 |
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12000 | if(constraints_->facet_corners.adjacent_facet(c) == NO_FACET) { |
| 134 | ✗ | ++nb_borders; | |
| 135 | } | ||
| 136 | } | ||
| 137 | |||
| 138 |
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1 | if(nb_borders != 0) { |
| 139 | ✗ | Logger::warn("DelaunayTetgen") | |
| 140 | ✗ | << "Constraints have " << nb_borders | |
| 141 | ✗ | << " edge(s) on the border" | |
| 142 | ✗ | << std::endl; | |
| 143 | } | ||
| 144 | |||
| 145 | 1 | tetgen_out_.deinitialize(); | |
| 146 | |||
| 147 | // Q: quiet | ||
| 148 | // p: input data is surfacic | ||
| 149 | // n: output tet neighbors | ||
| 150 | // q: desired quality | ||
| 151 | // O0: do not optimize mesh | ||
| 152 | // V: verbose | ||
| 153 | // YY: prohibit steiner points on boundaries | ||
| 154 | // (first Y for exterior boundary, second Y for the | ||
| 155 | // other ones). | ||
| 156 | // AA: generate region tags for each shell. | ||
| 157 | // M: do not merge coplanar facets | ||
| 158 | |||
| 159 | 1 | std::string cmdline; | |
| 160 |
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1 | if(refine_) { |
| 161 |
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2 | if(CmdLine::get_arg_bool("dbg:tetgen")) { |
| 162 | ✗ | cmdline = "Vpnq" + String::to_string(quality_) + "YYAA"; | |
| 163 | } else { | ||
| 164 |
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1 | cmdline = "Qpnq" + String::to_string(quality_) + "YYAA"; |
| 165 | } | ||
| 166 | } else { | ||
| 167 | ✗ | if(CmdLine::get_arg_bool("dbg:tetgen")) { | |
| 168 | ✗ | cmdline = "VpnO0YYAA"; | |
| 169 | } else { | ||
| 170 | ✗ | cmdline = "QpnO0YYAA"; | |
| 171 | } | ||
| 172 | } | ||
| 173 |
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1 | tetgen_args_.parse_commandline(const_cast<char*>(cmdline.c_str())); |
| 174 | |||
| 175 | 1 | tetgen_in_.deinitialize(); | |
| 176 | 1 | tetgen_in_.initialize(); | |
| 177 | 1 | tetgen_in_.firstnumber = 0 ; | |
| 178 | |||
| 179 | // | ||
| 180 | // Copy vertices | ||
| 181 | // | ||
| 182 | |||
| 183 | 1 | tetgen_in_.numberofpoints = int( | |
| 184 | 1 | constraints_->vertices.nb()+nb_vertices | |
| 185 | ); | ||
| 186 |
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1 | tetgen_in_.pointlist = new double[3*tetgen_in_.numberofpoints]; |
| 187 |
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1 | if(constraints_->vertices.nb() != 0) { |
| 188 | 2 | Memory::copy( | |
| 189 | 1 | tetgen_in_.pointlist, constraints_->vertices.point_ptr(0), | |
| 190 |
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1 | constraints_->vertices.nb()*3*sizeof(double) |
| 191 | ); | ||
| 192 | } | ||
| 193 |
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1 | if(nb_vertices != 0) { |
| 194 | ✗ | Memory::copy( | |
| 195 | ✗ | &tetgen_in_.pointlist[3*constraints_->vertices.nb()], | |
| 196 | ✗ | vertices, nb_vertices*3*sizeof(double) | |
| 197 | ); | ||
| 198 | } | ||
| 199 | |||
| 200 | // Edges constraints | ||
| 201 | // (no need to copy, we make tetgen_in_ | ||
| 202 | // point to the edges of the input | ||
| 203 | // constraints mesh) | ||
| 204 | |||
| 205 |
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1 | if(constraints_->edges.nb() != 0) { |
| 206 | ✗ | tetgen_in_.numberofedges = int( | |
| 207 | ✗ | constraints_->edges.nb() | |
| 208 | ); | ||
| 209 | ✗ | tetgen_in_.edgelist = const_cast<int*>( | |
| 210 | ✗ | (const int*)constraints_->edges.vertex_index_ptr(0) | |
| 211 | ); | ||
| 212 | } | ||
| 213 | |||
| 214 | // Copy facet constraints | ||
| 215 | // | ||
| 216 | // All the polygons are allocated in one go, in a contiguous array. | ||
| 217 | |||
| 218 | GEO_3rdParty::tetgenio::polygon* polygons = | ||
| 219 |
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1 | new GEO_3rdParty::tetgenio::polygon[constraints_->facets.nb()]; |
| 220 | 1 | tetgen_in_.numberoffacets = int(constraints_->facets.nb()) ; | |
| 221 | 1 | tetgen_in_.facetlist = | |
| 222 |
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1 | new GEO_3rdParty::tetgenio::facet[tetgen_in_.numberoffacets]; |
| 223 |
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4001 | for(index_t f=0; f<constraints_->facets.nb(); ++f) { |
| 224 | 4000 | GEO_3rdParty::tetgenio::facet& F = tetgen_in_.facetlist[f]; | |
| 225 | 4000 | GEO_3rdParty::tetgenio::init(&F); | |
| 226 | 4000 | F.numberofpolygons = 1; | |
| 227 | 4000 | F.polygonlist = &polygons[f]; | |
| 228 | 4000 | GEO_3rdParty::tetgenio::polygon& P = F.polygonlist[0]; | |
| 229 | 4000 | GEO_3rdParty::tetgenio::init(&P) ; | |
| 230 |
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4000 | P.numberofvertices = int(constraints_->facets.nb_vertices(f)); |
| 231 | 4000 | P.vertexlist = reinterpret_cast<int*>( | |
| 232 |
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4000 | const_cast<Mesh*>(constraints_)->facet_corners.vertex_index_ptr( |
| 233 |
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4000 | constraints_->facets.corners_begin(f) |
| 234 | ) | ||
| 235 | ); | ||
| 236 | 4000 | F.numberofholes = 0 ; | |
| 237 | 4000 | F.holelist = nullptr ; | |
| 238 | } | ||
| 239 | |||
| 240 | 1 | bool there_was_an_error = false; | |
| 241 | 1 | int error_code = 0; | |
| 242 | |||
| 243 | try { | ||
| 244 |
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1 | GEO_3rdParty::tetrahedralize( |
| 245 | &tetgen_args_, &tetgen_in_, &tetgen_out_ | ||
| 246 | ); | ||
| 247 | ✗ | } catch(...) { | |
| 248 | ✗ | Logger::err("DelaunayTetgen") | |
| 249 | ✗ | << "Encountered a problem..." | |
| 250 | ✗ | << std::endl; | |
| 251 | ✗ | there_was_an_error = true; | |
| 252 | /* | ||
| 253 | Logger::err("DelaunayTetgen") | ||
| 254 | << "Encountered a problem, relaunching in diagnose mode..." | ||
| 255 | << std::endl; | ||
| 256 | cmdline += "d"; | ||
| 257 | tetgen_args_.parse_commandline(const_cast<char*>(cmdline.c_str())); | ||
| 258 | try { | ||
| 259 | GEO_3rdParty::tetrahedralize( | ||
| 260 | &tetgen_args_, &tetgen_in_, &tetgen_out_ | ||
| 261 | ); | ||
| 262 | } catch(...) { | ||
| 263 | } | ||
| 264 | */ | ||
| 265 | ✗ | } | |
| 266 | |||
| 267 | |||
| 268 | // Deallocate the datastructures used by tetgen, | ||
| 269 | // and disconnect them from tetgen, | ||
| 270 | // so that tetgen does not try to deallocate them. | ||
| 271 | |||
| 272 | // Pointlist was allocated in local array | ||
| 273 | 1 | tetgen_in_.numberofpoints = 0; | |
| 274 |
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1 | delete[] tetgen_in_.pointlist; |
| 275 | 1 | tetgen_in_.pointlist = nullptr; | |
| 276 | |||
| 277 | // Edges were shared with constraint mesh | ||
| 278 | // (no need to deallocate) | ||
| 279 | 1 | tetgen_in_.numberofedges = 0; | |
| 280 | 1 | tetgen_in_.edgelist = nullptr; | |
| 281 | |||
| 282 | // Facets structures were allocated in local | ||
| 283 | // array, and vertices indices were shared | ||
| 284 | // with constraint mesh | ||
| 285 |
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1 | delete[] tetgen_in_.facetlist; |
| 286 | 1 | tetgen_in_.facetlist = nullptr; | |
| 287 | 1 | tetgen_in_.numberoffacets = 0; | |
| 288 |
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1 | delete[] polygons; |
| 289 | |||
| 290 |
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1 | if(there_was_an_error) { |
| 291 | ✗ | InvalidInput error_report(error_code); | |
| 292 | ✗ | for(auto f : tetgen_in_.isectfaces) { | |
| 293 | // Note: tetgen reports facets with | ||
| 294 | // 1-based indexing ([1...nf]) !! | ||
| 295 | ✗ | error_report.invalid_facets.push_back(index_t(f)-1); | |
| 296 | } | ||
| 297 | ✗ | Logger::err("DelaunayTetgen") | |
| 298 | ✗ | << "Found " | |
| 299 | ✗ | << error_report.invalid_facets.size() | |
| 300 | ✗ | << " facets with intersections." << std::endl; | |
| 301 | ✗ | throw(error_report); | |
| 302 | ✗ | } | |
| 303 | |||
| 304 | 1 | index_t nb_tets = index_t(tetgen_out_.numberoftetrahedra); | |
| 305 | |||
| 306 |
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1 | if(!keep_regions_) { |
| 307 | // Determine which regions are incident to | ||
| 308 | // the 'exterior' (neighbor = -1 or tet is adjacent to | ||
| 309 | // a tet in region 0). | ||
| 310 | // The region Id of tet t is determined by: | ||
| 311 | // tetgen_out_.tetrahedronattributelist[t] | ||
| 312 | |||
| 313 | 1 | std::set<double> good_regions; | |
| 314 | 10535 | for( | |
| 315 | 1 | index_t t = 0; | |
| 316 |
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10536 | t < index_t(tetgen_out_.numberoftetrahedra); ++t |
| 317 | ) { | ||
| 318 |
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46487 | for(index_t f=0; f<4; ++f) { |
| 319 | 39757 | signed_index_t n = (tetgen_out_.neighborlist[t*4+f]); | |
| 320 |
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39757 | if( |
| 321 | 35952 | n == -1 || | |
| 322 |
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35952 | tetgen_out_.tetrahedronattributelist[n] == 0.0 |
| 323 | ) { | ||
| 324 | 3805 | good_regions.insert( | |
| 325 |
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3805 | tetgen_out_.tetrahedronattributelist[t] |
| 326 | ); | ||
| 327 | 3805 | break; | |
| 328 | } | ||
| 329 | } | ||
| 330 | } | ||
| 331 | |||
| 332 | // Remove the tets that are not in good_region. | ||
| 333 | vector<index_t> old2new( | ||
| 334 | 1 | index_t(tetgen_out_.numberoftetrahedra),NO_INDEX | |
| 335 |
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1 | ); |
| 336 | 1 | nb_tets = 0; | |
| 337 | 10535 | for( | |
| 338 | 1 | index_t t = 0; | |
| 339 |
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10536 | t < index_t(tetgen_out_.numberoftetrahedra); ++t |
| 340 | ) { | ||
| 341 | 10535 | if( | |
| 342 | ✗ | good_regions.find( | |
| 343 |
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10535 | tetgen_out_.tetrahedronattributelist[t] |
| 344 |
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21070 | ) != good_regions.end() |
| 345 | ) { | ||
| 346 |
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10535 | if(t != nb_tets) { |
| 347 | ✗ | Memory::copy( | |
| 348 | ✗ | &tetgen_out_.tetrahedronlist[nb_tets * 4], | |
| 349 | ✗ | &tetgen_out_.tetrahedronlist[t * 4], | |
| 350 | 4 * sizeof(signed_index_t) | ||
| 351 | ); | ||
| 352 | ✗ | Memory::copy( | |
| 353 | ✗ | &tetgen_out_.neighborlist[nb_tets * 4], | |
| 354 | ✗ | &tetgen_out_.neighborlist[t * 4], | |
| 355 | 4 * sizeof(signed_index_t) | ||
| 356 | ); | ||
| 357 | } | ||
| 358 |
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10535 | old2new[t] = nb_tets; |
| 359 | 10535 | ++nb_tets; | |
| 360 | } | ||
| 361 | } | ||
| 362 |
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42141 | for(index_t i = 0; i < 4 * nb_tets; ++i) { |
| 363 | 42140 | signed_index_t t = tetgen_out_.neighborlist[i]; | |
| 364 |
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42140 | if(t != -1) { |
| 365 |
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38140 | t = signed_index_t(old2new[t]); |
| 366 | } | ||
| 367 | 42140 | tetgen_out_.neighborlist[i] = t; | |
| 368 | } | ||
| 369 | 1 | } | |
| 370 | |||
| 371 | // Link tetgen's output to Delaunay class data structures. | ||
| 372 | |||
| 373 | 1 | Delaunay::set_vertices( | |
| 374 |
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1 | index_t(tetgen_out_.numberofpoints), tetgen_out_.pointlist |
| 375 | ); | ||
| 376 | |||
| 377 | 1 | set_arrays( | |
| 378 | nb_tets, | ||
| 379 | 1 | reinterpret_cast<index_t*>(tetgen_out_.tetrahedronlist), | |
| 380 |
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1 | reinterpret_cast<index_t*>(tetgen_out_.neighborlist) |
| 381 | ); | ||
| 382 | 1 | } | |
| 383 | |||
| 384 | |||
| 385 | } | ||
| 386 | |||
| 387 | #else | ||
| 388 | |||
| 389 | // Declare a dummy variable so that | ||
| 390 | // MSVC does not complain that it | ||
| 391 | // generated an empty object file. | ||
| 392 | extern int dummy_delaunay_tetgen_compiled; | ||
| 393 | int dummy_delaunay_tetgen_compiled = 1; | ||
| 394 | |||
| 395 | #endif | ||
| 396 |