mirror of https://github.com/CGAL/cgal
Merge pull request #828 from afabri/Triangulation-more_typos-GF
Fix typos and add a dependency
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commit
e4bfb46bcd
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@ -316,18 +316,14 @@ Vertex_handle vertex(Full_cell_handle c, const int i) const;
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/*!
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Returns the index of `c` as a neighbor of its `i`-th neighbor.
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\pre \f$0 \leq i \leq \f$`tds`.`current_dimension`()
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and `c!=Full_cell_handle()`.
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\pre \f$0 \leq i \leq \f$`tds`.`current_dimension`() and `c!=Full_cell_handle()`.
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*/
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int mirror_index(Full_cell_handle c, int i) const;
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/*!
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Returns the vertex of the `i`-th neighbor of `c`
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that is not vertex of `c`.
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\pre \f$0 \leq i \leq \f$`tds`.`current_dimension`()
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and `c!=Full_cell_handle()`.
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\pre \f$0 \leq i \leq \f$`tds`.`current_dimension`() and `c!=Full_cell_handle()`.
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*/
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Vertex_handle mirror_vertex(Full_cell_handle c, int i) const;
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@ -357,9 +353,7 @@ Full_cell_handle full_cell(Vertex_handle v) const;
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/*!
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Returns a `Full_cell_handle` pointing to the `Full_cell`
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opposite to the `i`-th vertex of `c`.
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\pre \f$0 \leq i \leq \f$`tds`.`current_dimension()`
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and `c != Full_cell_handle()`
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\pre \f$0 \leq i \leq \f$`tds`.`current_dimension()` and `c != Full_cell_handle()`
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*/
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Full_cell_handle neighbor(Full_cell_handle c, int i) const;
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@ -415,8 +409,7 @@ share the vertex `v`.
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Insertion in a full cell, \f$ d=2\f$
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\cgalFigureEnd
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\pre Current dimension is positive and `c` is a full cell of
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`tds`.
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\pre Current dimension is positive and `c` is a full cell of `tds`.
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*/
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Vertex_handle insert_in_full_cell(Full_cell_handle c);
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@ -73,8 +73,8 @@ is opposite to the vertex with the same index.
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## Triangulation Data Structure ##
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- `TriangulationDataStructure`
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- `TriangulationDataStructure_2::FullCell`
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- `TriangulationDataStructure_2::Vertex`
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- `TriangulationDataStructure::FullCell`
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- `TriangulationDataStructure::Vertex`
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- `TriangulationDSVertex`
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- `TriangulationDSFullCell`
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- `TriangulationDSFace`
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@ -21,10 +21,9 @@ sets of points.
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## Some Definitions ##
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A <I>finite abstract simplicial complex</I> is built on a finite set of
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vertices \f$ V\f$ and consists of a collection \f$ S\f$ of subsets of \f$ V\f$ such that
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<CENTER>if \f$ s\f$ is a set of vertices in \f$ S\f$, then all the subsets of \f$ s\f$ are also
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in \f$ S\f$.</CENTER>
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vertices \f$ V\f$ and consists of a collection \f$ S\f$ of subsets of \f$ V\f$ such that,
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if \f$ s\f$ is a set of vertices in \f$ S\f$, then all the subsets of \f$ s\f$ are also
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in \f$ S\f$.
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The sets in \f$ S\f$ (which are subsets of \f$ V\f$) are called
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<I>faces</I> or <I>simplices</I> (the
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@ -1,4 +1,5 @@
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Manual
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Kernel_23
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Kernel_d
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STL_Extension
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Algebraic_foundations
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