mirror of https://github.com/CGAL/cgal
backticks and rephrasing
Co-authored-by: Mael <mael.rouxel.labbe@geometryfactory.com>
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@ -78,7 +78,7 @@ cell_topo topo_from_name(const std::string& t)
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}
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/**
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* @brief To get the type of dimD cell of the CMap of cmapdim dimension.
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* @brief To get the type of `dimD` cell of the `CMap` of `cmapdim` dimension.
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*/
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template<typename CMap, unsigned int dimcell,
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unsigned int cmapdim=CMap::dimension>
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@ -6,7 +6,7 @@ namespace IO {
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* format.
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*
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* Only supports:
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* - Linear_cell_complex_for_combinatorial_map<3,3>
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* - `CGAL::Linear_cell_complex_for_combinatorial_map<3,3>`
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* - VTK legacy ASCII format (.vtk files)
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* - Optional scalar fields for vertices and volumes
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*
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@ -23,14 +23,14 @@ namespace IO {
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/**
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* \brief Reads a VTK legacy ASCII file and load it into a 3D
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* Linear_cell_complex.
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* linear cell complex.
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* \ingroup PkgLinearCellComplexRefIOVTK
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*
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* \tparam LCC must be a `CGAL::Linear_cell_complex_for_combinatorial_map<3,3>`
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* \tparam VertexScalarType Type for vertex scalar data (default: float)
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* \tparam VolumeScalarType Type for volume scalar data (default: float)
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* \param filename Path to the VTK file
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* \param alcc The Linear_cell_complex to populate (will be cleared first)
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* \param alcc The linear cell complex to populate (will be cleared first)
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* \param vertex_scalars Optional output vector to store per-vertex scalar values.
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* If provided, will be resized to match number of vertices.
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* \param volume_scalars Optional output vector to store per-volume scalar values.
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@ -51,7 +51,7 @@ bool read_VTK(const char* filename,
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* \tparam VertexScalarType Type for vertex scalar data (default: float)
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* \tparam VolumeScalarType Type for volume scalar data (default: float)
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* \param filename Path to the output VTK file
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* \param alcc The Linear_cell_complex to export
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* \param alcc The linear cell complex to export
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* \param vertex_scalars Optional per-vertex scalar data. If provided, must have
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* same size as number of vertex attributes in the LCC.
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* \param volume_scalars Optional per-volume scalar data. If provided, must have
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@ -289,15 +289,15 @@ The following example shows the use of \link GenericMap::insert_cell_1_between_t
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Result of the run of the linear_cell_complex_3_insert program. A window shows the 3D cube where one face has a hole.
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\cgalFigureEnd
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\subsection Linear_cell_complexWriteVTK Write a Linear Cell Complex in a VTK File
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\subsection Linear_cell_complexWriteVTK Writing a Linear Cell Complex to a VTK File
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\anchor ssecLCCWriteVtK
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This example loads a 3D linear cell complex from a `.3map` file (using the `operator>>`). It computes for each 3-cell (volume) the number of incident vertices (0-cells), stores these values in a `std::vector<std::size_t>`, and writes the result to a `.vtk` file with `CGAL::IO::write_VTK()`, using the computed values as scalars for each volume.
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This example loads a 3D linear cell complex from a `.3map` file (using the `operator>>`). It computes for each 3-cell (volume) the number of incident vertices (0-cells), stores these values in a `std::vector<std::size_t>`, and writes the result to a `.vtk` file using `CGAL::IO::write_VTK()`, with the computed values as scalars for each volume.
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\cgalExample{Linear_cell_complex/linear_cell_complex_3_vtk_io.cpp}
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\cgalFigureBegin{fig_lcc_export_vtk,lcc-export-vtk.png}
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Visualization of the VTK file generated by the linear_cell_complex_3_vtk_io program, using Paraview. Each volume is colored depending on its number of vertices.
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Visualization of the VTK file generated by the `linear_cell_complex_3_vtk_io` program, using Paraview. Each volume is colored depending on its number of vertices.
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\cgalFigureEnd
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