Nektar++
ProcessDisplacement.cpp
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1////////////////////////////////////////////////////////////////////////////////
2//
3// File: ProcessDisplacement.cpp
4//
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7// The MIT License
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9// Copyright (c) 2006 Division of Applied Mathematics, Brown University (USA),
10// Department of Aeronautics, Imperial College London (UK), and Scientific
11// Computing and Imaging Institute, University of Utah (USA).
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30//
31// Description: Deforms a mesh given input field defining displacement.
32//
33////////////////////////////////////////////////////////////////////////////////
34
35#include <iostream>
36#include <string>
37using namespace std;
38
39#include "ProcessDisplacement.h"
40
43#include <LocalRegions/SegExp.h>
44#include <LocalRegions/TriExp.h>
48
49namespace Nektar
50{
51namespace FieldUtils
52{
54{
55 TriFaceIDs(int a, int b, int c) : a(a), b(b), c(c)
56 {
57 }
58 int a;
59 int b;
60 int c;
61};
62
64{
65 std::size_t operator()(TriFaceIDs const &p) const
66 {
67 std::vector<int> ids(3);
68
69 ids[0] = p.a;
70 ids[1] = p.b;
71 ids[2] = p.c;
72
73 std::sort(ids.begin(), ids.end());
74 return hash_combine(ids[0], ids[1], ids[2]);
75 }
76};
77
78bool operator==(TriFaceIDs const &p1, TriFaceIDs const &p2)
79{
80 std::vector<int> ids1(3), ids2(3);
81
82 ids1[0] = p1.a;
83 ids1[1] = p1.b;
84 ids1[2] = p1.c;
85 ids2[0] = p2.a;
86 ids2[1] = p2.b;
87 ids2[2] = p2.c;
88
89 std::sort(ids1.begin(), ids1.end());
90 std::sort(ids2.begin(), ids2.end());
91
92 return ids1[0] == ids2[0] && ids1[1] == ids2[1] && ids1[2] == ids2[2];
93}
94
95typedef std::unordered_map<TriFaceIDs, int, TriFaceHash> TriFaceMap;
96
100 "Deform a mesh given an input field defining displacement");
101
104{
105 m_config["to"] =
106 ConfigOption(false, "", "Name of file containing high order boundary");
107
108 m_config["usevertexids"] = ConfigOption(
109 true, "0", "Use vertex IDs instead of face IDs for matching");
110}
111
113{
114}
115
116void ProcessDisplacement::v_Process(po::variables_map &vm)
117{
119 ASSERTL0(!boost::iequals(m_config["bnd"].as<string>(), "All"),
120 "ProcessDisplacement needs bnd parameter with a single id.");
121
122 string toFile = m_config["to"].as<string>();
123
124 if (toFile == "")
125 {
126 cout << "ProcessDisplacement: you must provide a file" << endl;
127 return;
128 }
129
130 bool useVertexIds = m_config["usevertexids"].as<bool>();
131
132 vector<string> files;
133 files.push_back(toFile);
138
139 // Try to find boundary condition expansion.
140 int bndCondId = m_config["bnd"].as<int>();
141
142 // FIXME: We should be storing boundary condition IDs
143 // somewhere...
144 if (bndGraph->GetMeshDimension() == 1)
145 {
146 m_f->m_exp.push_back(m_f->AppendExpList(0, "v"));
147 m_f->m_variables.push_back("v");
148
150 m_f->m_exp[0]->GetBndCondExpansions()[bndCondId];
152 m_f->m_exp[1]->GetBndCondExpansions()[bndCondId];
153
154 map<int, int> bndCondIds;
155 for (int i = 0; i < bndCondExpU->GetExpSize(); ++i)
156 {
157 bndCondIds[bndCondExpU->GetExp(i)->GetGeom()->GetGlobalID()] = i;
158 }
159
160 const SpatialDomains::SegGeomMap &tmp = bndGraph->GetAllSegGeoms();
161
162 for (auto &sIt : tmp)
163 {
164 auto mIt = bndCondIds.find(sIt.first);
165
166 if (mIt == bndCondIds.end())
167 {
168 cout << "Warning: couldn't find element " << sIt.first << endl;
169 continue;
170 }
171
172 int e = mIt->second;
173
175 std::dynamic_pointer_cast<SpatialDomains::SegGeom>(
176 bndCondExpU->GetExp(e)->GetGeom());
177
178 SpatialDomains::SegGeomSharedPtr to = sIt.second;
179
180 // Create temporary SegExp
183 bndCondExpU->GetExp(e)->GetBasis(0)->GetBasisKey(), to);
184
185 const int offset = bndCondExpU->GetPhys_Offset(e);
186 const int nq = toSeg->GetTotPoints();
187
188 Array<OneD, NekDouble> xL(nq), xC(nq), yL(nq), yC(nq), tmp;
189
190 bndCondExpU->GetExp(e)->GetCoords(xC, yC);
191 toSeg->GetCoords(xL, yL);
192
193 Vmath::Vsub(nq, xL, 1, xC, 1,
194 tmp = bndCondExpU->UpdatePhys() + offset, 1);
195 Vmath::Vsub(nq, yL, 1, yC, 1,
196 tmp = bndCondExpV->UpdatePhys() + offset, 1);
197 }
198
199 // bndconstrained?
200 bndCondExpU->FwdTransBndConstrained(bndCondExpU->GetPhys(),
201 bndCondExpU->UpdateCoeffs());
202 bndCondExpV->FwdTransBndConstrained(bndCondExpV->GetPhys(),
203 bndCondExpV->UpdateCoeffs());
204 }
205 else if (bndGraph->GetMeshDimension() == 2)
206 {
207 m_f->m_exp.push_back(m_f->AppendExpList(0, "v"));
208 m_f->m_exp.push_back(m_f->AppendExpList(0, "w"));
209 m_f->m_variables.push_back("v");
210 m_f->m_variables.push_back("w");
211
213 m_f->m_exp[0]->GetBndCondExpansions()[bndCondId];
215 m_f->m_exp[1]->GetBndCondExpansions()[bndCondId];
217 m_f->m_exp[2]->GetBndCondExpansions()[bndCondId];
218
219 map<int, int> bndCondIds;
220 for (int i = 0; i < bndCondExpU->GetExpSize(); ++i)
221 {
222 bndCondIds[bndCondExpU->GetExp(i)->GetGeom()->GetGlobalID()] = i;
223 }
224
225 TriFaceMap vertexFaceMap;
226
227 if (useVertexIds)
228 {
229 for (int i = 0; i < bndCondExpU->GetExpSize(); ++i)
230 {
232 std::dynamic_pointer_cast<SpatialDomains::TriGeom>(
233 bndCondExpU->GetExp(i)->GetGeom());
234
235 TriFaceIDs t(from->GetVid(0), from->GetVid(1), from->GetVid(2));
236 vertexFaceMap[t] = i;
237 }
238 }
239
240 const SpatialDomains::TriGeomMap &tmp = bndGraph->GetAllTriGeoms();
241
242 for (auto &sIt : tmp)
243 {
244 int e;
245
246 if (useVertexIds)
247 {
248 TriFaceIDs t(sIt.second->GetVid(0), sIt.second->GetVid(1),
249 sIt.second->GetVid(2));
250
251 auto tIt = vertexFaceMap.find(t);
252 e = tIt == vertexFaceMap.end() ? -1 : tIt->second;
253 }
254 else
255 {
256 auto mIt = bndCondIds.find(sIt.first);
257 e = mIt == bndCondIds.end() ? -1 : mIt->second;
258 }
259
260 if (e == -1)
261 {
262 cout << "Warning: couldn't find element " << sIt.first << endl;
263 continue;
264 }
265
267 std::dynamic_pointer_cast<SpatialDomains::TriGeom>(
268 bndCondExpU->GetExp(e)->GetGeom());
269
270 SpatialDomains::TriGeomSharedPtr to = sIt.second;
271
272 // Create temporary SegExp
275 bndCondExpU->GetExp(e)->GetBasis(0)->GetBasisKey(),
276 bndCondExpV->GetExp(e)->GetBasis(1)->GetBasisKey(), to);
277
278 const int offset = bndCondExpU->GetPhys_Offset(e);
279 const int nq = toSeg->GetTotPoints();
280
281 Array<OneD, NekDouble> xL(nq), xC(nq), yL(nq), yC(nq), tmp;
282 Array<OneD, NekDouble> zL(nq), zC(nq);
283
284 bndCondExpU->GetExp(e)->GetCoords(xC, yC, zC);
285 toSeg->GetCoords(xL, yL, zL);
286
287 Vmath::Vsub(nq, xL, 1, xC, 1,
288 tmp = bndCondExpU->UpdatePhys() + offset, 1);
289 Vmath::Vsub(nq, yL, 1, yC, 1,
290 tmp = bndCondExpV->UpdatePhys() + offset, 1);
291 Vmath::Vsub(nq, zL, 1, zC, 1,
292 tmp = bndCondExpW->UpdatePhys() + offset, 1);
293 }
294
295 // bndconstrained?
296 bndCondExpU->FwdTransBndConstrained(bndCondExpU->GetPhys(),
297 bndCondExpU->UpdateCoeffs());
298 bndCondExpV->FwdTransBndConstrained(bndCondExpV->GetPhys(),
299 bndCondExpV->UpdateCoeffs());
300 bndCondExpW->FwdTransBndConstrained(bndCondExpW->GetPhys(),
301 bndCondExpW->UpdateCoeffs());
302 }
303}
304} // namespace FieldUtils
305} // namespace Nektar
#define ASSERTL0(condition, msg)
Definition: ErrorUtil.hpp:215
FieldSharedPtr m_f
Field object.
Definition: Module.h:234
std::map< std::string, ConfigOption > m_config
List of configuration values.
Definition: Module.h:263
This processing module sets up for the boundary field to be extracted.
virtual void v_Process(po::variables_map &vm) override
virtual void v_Process(po::variables_map &vm) override
Write mesh to output file.
static std::shared_ptr< Module > create(FieldSharedPtr f)
Creates an instance of this class.
tKey RegisterCreatorFunction(tKey idKey, CreatorFunction classCreator, std::string pDesc="")
Register a class with the factory.
Definition: NekFactory.hpp:198
static SessionReaderSharedPtr CreateInstance(int argc, char *argv[])
Creates an instance of the SessionReader class.
static std::shared_ptr< DataType > AllocateSharedPtr(const Args &...args)
Allocate a shared pointer from the memory pool.
static MeshGraphSharedPtr Read(const LibUtilities::SessionReaderSharedPtr pSession, LibUtilities::DomainRangeShPtr rng=LibUtilities::NullDomainRangeShPtr, bool fillGraph=true, SpatialDomains::MeshGraphSharedPtr partitionedGraph=nullptr)
Definition: MeshGraph.cpp:116
std::shared_ptr< Field > FieldSharedPtr
Definition: Field.hpp:991
std::pair< ModuleType, std::string > ModuleKey
Definition: Module.h:317
bool operator==(TriFaceIDs const &p1, TriFaceIDs const &p2)
std::unordered_map< TriFaceIDs, int, TriFaceHash > TriFaceMap
ModuleFactory & GetModuleFactory()
Definition: Module.cpp:49
std::shared_ptr< SessionReader > SessionReaderSharedPtr
std::shared_ptr< SegExp > SegExpSharedPtr
Definition: SegExp.h:251
std::shared_ptr< TriExp > TriExpSharedPtr
Definition: TriExp.h:253
std::shared_ptr< ExpList > ExpListSharedPtr
Shared pointer to an ExpList object.
std::map< int, TriGeomSharedPtr > TriGeomMap
Definition: TriGeom.h:59
std::map< int, SegGeomSharedPtr > SegGeomMap
Definition: SegGeom.h:52
std::shared_ptr< SegGeom > SegGeomSharedPtr
Definition: Geometry2D.h:62
std::shared_ptr< MeshGraph > MeshGraphSharedPtr
Definition: MeshGraph.h:176
std::shared_ptr< TriGeom > TriGeomSharedPtr
Definition: TriGeom.h:58
The above copyright notice and this permission notice shall be included.
Definition: CoupledSolver.h:2
void hash_combine(std::size_t &seed)
Definition: HashUtils.hpp:46
void Vsub(int n, const T *x, const int incx, const T *y, const int incy, T *z, const int incz)
Subtract vector z = x-y.
Definition: Vmath.cpp:414
Represents a command-line configuration option.
Definition: Module.h:131
std::size_t operator()(TriFaceIDs const &p) const