Loading benchmarks/tnl-benchmark-mesh.h +8 −8 Original line number Diff line number Diff line Loading @@ -72,21 +72,21 @@ resolveCellTopology( Benchmark & benchmark, return false; } using Readers::VTKEntityType; switch( reader.getCellVTKType() ) using Readers::EntityShape; switch( reader.getCellShape() ) { case VTKEntityType::Line: case EntityShape::Line: return setMeshParameters< Topologies::Edge >( benchmark, metadata, meshFile ); case VTKEntityType::Triangle: case EntityShape::Triangle: return setMeshParameters< Topologies::Triangle >( benchmark, metadata, meshFile ); case VTKEntityType::Quad: case EntityShape::Quad: return setMeshParameters< Topologies::Quadrilateral >( benchmark, metadata, meshFile ); case VTKEntityType::Tetra: case EntityShape::Tetra: return setMeshParameters< Topologies::Tetrahedron >( benchmark, metadata, meshFile ); // case VTKEntityType::Hexahedron: // case EntityShape::Hexahedron: // return setMeshParameters< Topologies::Hexahedron >( benchmark, metadata, meshFile ); default: std::cerr << "unsupported cell topology: " << reader.getCellVTKType() << std::endl; std::cerr << "unsupported cell topology: " << reader.getCellShape() << std::endl; return false; } } Loading Loading
benchmarks/tnl-benchmark-mesh.h +8 −8 Original line number Diff line number Diff line Loading @@ -72,21 +72,21 @@ resolveCellTopology( Benchmark & benchmark, return false; } using Readers::VTKEntityType; switch( reader.getCellVTKType() ) using Readers::EntityShape; switch( reader.getCellShape() ) { case VTKEntityType::Line: case EntityShape::Line: return setMeshParameters< Topologies::Edge >( benchmark, metadata, meshFile ); case VTKEntityType::Triangle: case EntityShape::Triangle: return setMeshParameters< Topologies::Triangle >( benchmark, metadata, meshFile ); case VTKEntityType::Quad: case EntityShape::Quad: return setMeshParameters< Topologies::Quadrilateral >( benchmark, metadata, meshFile ); case VTKEntityType::Tetra: case EntityShape::Tetra: return setMeshParameters< Topologies::Tetrahedron >( benchmark, metadata, meshFile ); // case VTKEntityType::Hexahedron: // case EntityShape::Hexahedron: // return setMeshParameters< Topologies::Hexahedron >( benchmark, metadata, meshFile ); default: std::cerr << "unsupported cell topology: " << reader.getCellVTKType() << std::endl; std::cerr << "unsupported cell topology: " << reader.getCellShape() << std::endl; return false; } } Loading