DOLFIN
DOLFIN C++ interface
DofMapBuilder.h
1 // Copyright (C) 2008-2015 Anders Logg, Ola Skavhaug and Garth N. Wells
2 //
3 // This file is part of DOLFIN.
4 //
5 // DOLFIN is free software: you can redistribute it and/or modify
6 // it under the terms of the GNU Lesser General Public License as published by
7 // the Free Software Foundation, either version 3 of the License, or
8 // (at your option) any later version.
9 //
10 // DOLFIN is distributed in the hope that it will be useful,
11 // but WITHOUT ANY WARRANTY; without even the implied warranty of
12 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 // GNU Lesser General Public License for more details.
14 //
15 // You should have received a copy of the GNU Lesser General Public License
16 // along with DOLFIN. If not, see <http://www.gnu.org/licenses/>.
17 //
18 // Modified by Niclas Jansson 2009.
19 // Modified by Garth Wells 2009-2012
20 // Modified by Mikael Mortensen 2012.
21 // Modified by Martin Alnaes, 2015
22 
23 #ifndef __DOF_MAP_BUILDER_H
24 #define __DOF_MAP_BUILDER_H
25 
26 #include <map>
27 #include <memory>
28 #include <set>
29 #include <unordered_map>
30 #include <utility>
31 #include <vector>
32 
33 namespace ufc
34 {
35  class dofmap;
36 }
37 
38 namespace dolfin
39 {
40 
41  class DofMap;
42  class Mesh;
43  class IndexMap;
44  class SubDomain;
45  class UFC;
46  class Cell;
47 
49 
51  {
52 
53  public:
54 
61  static void build(DofMap& dofmap, const Mesh& dolfin_mesh,
62  std::shared_ptr<const SubDomain> constrained_domain);
63 
70  static void build_sub_map_view(DofMap& sub_dofmap,
71  const DofMap& parent_dofmap,
72  const std::vector<std::size_t>& component,
73  const Mesh& mesh);
74 
75  private:
76 
77  // Build modified global entity indices that account for periodic
78  // bcs
79  static std::size_t build_constrained_vertex_indices(
80  const Mesh& mesh,
81  const std::map<unsigned int, std::pair<unsigned int,
82  unsigned int>>& slave_to_master_vertices,
83  std::vector<std::int64_t>& modified_vertex_indices_global);
84 
85  // Build simple local UFC-based dofmap data structure (does not
86  // account for master/slave constraints)
87  static void
88  build_local_ufc_dofmap(std::vector<std::vector<dolfin::la_index>>& dofmap,
89  const ufc::dofmap& ufc_dofmap,
90  const Mesh& mesh);
91 
92  // Compute which process 'owns' each node (point at which dofs live)
93  // - node_ownership = -1 -> dof shared but not 'owned' by this
94  // process
95  // - node_ownership = 0 -> dof owned by this process and shared
96  // with other processes
97  // - node_ownership = 1 -> dof owned by this process and not
98  // shared
99  //
100  // Also computes map from shared node to sharing processes and a
101  // set of process that share dofs on this process.
102  // Returns: number of locally owned nodes
103  static int compute_node_ownership(
104  std::vector<short int>& node_ownership,
105  std::unordered_map<int, std::vector<int>>& shared_node_to_processes,
106  std::set<int>& neighbours,
107  const std::vector<std::vector<la_index>>& node_dofmap,
108  const std::vector<int>& boundary_nodes,
109  const std::set<std::size_t>& global_nodes,
110  const std::vector<std::size_t>& node_local_to_global,
111  const Mesh& mesh,
112  const std::size_t global_dim);
113 
114  // Build dofmap based on re-ordered nodes
115  static void
116  build_dofmap(std::vector<std::vector<la_index>>& dofmap,
117  const std::vector<std::vector<la_index>>& node_dofmap,
118  const std::vector<int>& old_to_new_node_local,
119  const std::size_t block_size);
120 
121  // Compute set of global dofs (e.g. Reals associated with global
122  // Lagrange multipliers) based on UFC numbering. Global dofs are
123  // not associated with any mesh entity. The returned indices are
124  // local to the process.
125  static std::set<std::size_t>
126  compute_global_dofs(std::shared_ptr<const ufc::dofmap> ufc_dofmap,
127  const std::vector<std::size_t>& num_mesh_entities_local);
128 
129  // Iterate recursively over all sub-dof maps to find global
130  // degrees of freedom
131  static void
132  compute_global_dofs(std::set<std::size_t>& global_dofs,
133  std::size_t& offset_local,
134  std::shared_ptr<const ufc::dofmap> ufc_dofmap,
135  const std::vector<std::size_t>& num_mesh_entities_local);
136 
137  // Recursively extract UFC sub-dofmap and compute offset
138  static std::shared_ptr<ufc::dofmap> extract_ufc_sub_dofmap(
139  const ufc::dofmap& ufc_dofmap,
140  std::size_t& offset,
141  const std::vector<std::size_t>& component,
142  const std::vector<std::size_t>& num_global_mesh_entities);
143 
144  // Compute block size, e.g. in 3D elasticity block_size = 3
145  static std::size_t compute_blocksize(const ufc::dofmap& ufc_dofmap);
146 
147  static void compute_constrained_mesh_indices(
148  std::vector<std::vector<std::int64_t>>& global_entity_indices,
149  std::vector<std::size_t>& num_mesh_entities_global,
150  const std::vector<bool>& needs_mesh_entities,
151  const Mesh& mesh,
152  const SubDomain& constrained_domain);
153 
154  static std::shared_ptr<const ufc::dofmap>
155  build_ufc_node_graph(
156  std::vector<std::vector<la_index>>& node_dofmap,
157  std::vector<std::size_t>& node_local_to_global,
158  std::vector<std::size_t>& num_mesh_entities_global,
159  std::shared_ptr<const ufc::dofmap> ufc_dofmap,
160  const Mesh& mesh,
161  std::shared_ptr<const SubDomain> constrained_domain,
162  const std::size_t block_size);
163 
164  static std::shared_ptr<const ufc::dofmap>
165  build_ufc_node_graph_constrained(
166  std::vector<std::vector<la_index>>& node_dofmap,
167  std::vector<std::size_t>& node_local_to_global,
168  std::vector<int>& node_ufc_local_to_local,
169  std::vector<std::size_t>& num_mesh_entities_global,
170  std::shared_ptr<const ufc::dofmap> ufc_dofmap,
171  const Mesh& mesh,
172  std::shared_ptr<const SubDomain> constrained_domain,
173  const std::size_t block_size);
174 
175 
176  // Mark shared nodes. Boundary nodes are assigned a random
177  // positive integer, interior nodes are marked as -1, interior
178  // nodes in ghost layer of other processes are marked -2, and
179  // ghost nodes are marked as -3
180  static void compute_shared_nodes(
181  std::vector<int>& boundary_nodes,
182  const std::vector<std::vector<la_index>>& node_dofmap,
183  const std::size_t num_nodes_local,
184  const ufc::dofmap& ufc_dofmap,
185  const Mesh& mesh);
186 
187  static void compute_node_reordering(
188  IndexMap& index_map,
189  std::vector<int>& old_to_new_local,
190  const std::unordered_map<int, std::vector<int>>& node_to_sharing_processes,
191  const std::vector<std::size_t>& old_local_to_global,
192  const std::vector<std::vector<la_index>>& node_dofmap,
193  const std::vector<short int>& node_ownership,
194  const std::set<std::size_t>& global_nodes,
195  const MPI_Comm mpi_comm);
196 
197  static void get_cell_entities_local(const Cell& cell,
198  std::vector<std::vector<std::size_t>>& entity_indices,
199  const std::vector<bool>& needs_mesh_entities);
200 
201  static void get_cell_entities_global(const Cell& cell,
202  std::vector<std::vector<std::size_t>>& entity_indices,
203  const std::vector<bool>& needs_mesh_entities);
204 
205  static void get_cell_entities_global_constrained(const Cell& cell,
206  std::vector<std::vector<std::size_t>>& entity_indices,
207  const std::vector<std::vector<std::int64_t>>& global_entity_indices,
208  const std::vector<bool>& needs_mesh_entities);
209 
210  // Compute number of mesh entities for dimensions required by
211  // dofmap
212  static std::vector<std::size_t> compute_num_mesh_entities_local(
213  const Mesh& mesh, const std::vector<bool>& needs_mesh_entities);
214 
215  };
216 }
217 
218 #endif
Definition: SubDomain.h:42
Definition: IndexMap.h:35
Definition: adapt.h:29
Definition: Extrapolation.h:34
A Cell is a MeshEntity of topological codimension 0.
Definition: Cell.h:42
Degree-of-freedom map.
Definition: DofMap.h:54
Builds a DofMap on a Mesh.
Definition: DofMapBuilder.h:50
Definition: Mesh.h:82