source: XIOS/dev/branch_yushan/src/filter/spatial_transform_filter.cpp @ 1103

Last change on this file since 1103 was 1103, checked in by yushan, 7 years ago

save modif. Todo: axis, domain, mesh, scalar, transformation

File size: 10.7 KB
Line 
1#include "spatial_transform_filter.hpp"
2#include "grid_transformation.hpp"
3#include "context.hpp"
4#include "context_client.hpp"
5
6namespace xios
7{
8  CSpatialTransformFilter::CSpatialTransformFilter(CGarbageCollector& gc, CSpatialTransformFilterEngine* engine, double outputValue, size_t inputSlotsCount)
9    : CFilter(gc, inputSlotsCount, engine), outputDefaultValue(outputValue)
10  { /* Nothing to do */ }
11
12  std::pair<boost::shared_ptr<CSpatialTransformFilter>, boost::shared_ptr<CSpatialTransformFilter> >
13  CSpatialTransformFilter::buildFilterGraph(CGarbageCollector& gc, CGrid* srcGrid, CGrid* destGrid, double defaultValue)
14  {
15    if (!srcGrid || !destGrid)
16      ERROR("std::pair<boost::shared_ptr<CSpatialTransformFilter>, boost::shared_ptr<CSpatialTransformFilter> >"
17            "buildFilterGraph(CGarbageCollector& gc, CGrid* srcGrid, CGrid* destGrid)",
18            "Impossible to build the filter graph if either the source or the destination grid are null.");
19
20    boost::shared_ptr<CSpatialTransformFilter> firstFilter, lastFilter;
21    // Note that this loop goes from the last transformation to the first transformation
22    do
23    {
24      CGridTransformation* gridTransformation = destGrid->getTransformations();
25      CSpatialTransformFilterEngine* engine = CSpatialTransformFilterEngine::get(destGrid->getTransformations());
26      const std::vector<StdString>& auxInputs = gridTransformation->getAuxInputs();
27      size_t inputCount = 1 + (auxInputs.empty() ? 0 : auxInputs.size());
28      boost::shared_ptr<CSpatialTransformFilter> filter(new CSpatialTransformFilter(gc, engine, defaultValue, inputCount));
29
30      if (!lastFilter)
31        lastFilter = filter;
32      else
33        filter->connectOutput(firstFilter, 0);
34
35      firstFilter = filter;
36      for (size_t idx = 0; idx < auxInputs.size(); ++idx)
37      {
38        CField* fieldAuxInput = CField::get(auxInputs[idx]);
39        fieldAuxInput->buildFilterGraph(gc, false);
40        fieldAuxInput->getInstantDataFilter()->connectOutput(firstFilter,idx+1);
41      }
42
43      destGrid = gridTransformation->getGridSource();
44    }
45    while (destGrid != srcGrid);
46
47    return std::make_pair(firstFilter, lastFilter);
48  }
49
50  void CSpatialTransformFilter::onInputReady(std::vector<CDataPacketPtr> data)
51  {
52    CSpatialTransformFilterEngine* spaceFilter = static_cast<CSpatialTransformFilterEngine*>(engine);
53    CDataPacketPtr outputPacket = spaceFilter->applyFilter(data, outputDefaultValue);
54    if (outputPacket)
55      deliverOuput(outputPacket);
56  }
57
58  CSpatialTransformFilterEngine::CSpatialTransformFilterEngine(CGridTransformation* gridTransformation)
59    : gridTransformation(gridTransformation)
60  {
61    if (!gridTransformation)
62      ERROR("CSpatialTransformFilterEngine::CSpatialTransformFilterEngine(CGridTransformation* gridTransformation)",
63            "Impossible to construct a spatial transform filter engine without a valid grid transformation.");
64  }
65
66  std::map<CGridTransformation*, boost::shared_ptr<CSpatialTransformFilterEngine> > *CSpatialTransformFilterEngine::engines_ptr = 0;
67
68  CSpatialTransformFilterEngine* CSpatialTransformFilterEngine::get(CGridTransformation* gridTransformation)
69  {
70    if (!gridTransformation)
71      ERROR("CSpatialTransformFilterEngine& CSpatialTransformFilterEngine::get(CGridTransformation* gridTransformation)",
72            "Impossible to get the requested engine, the grid transformation is invalid.");
73
74    if(engines_ptr == NULL) engines_ptr = new std::map<CGridTransformation*, boost::shared_ptr<CSpatialTransformFilterEngine> >;
75
76    std::map<CGridTransformation*, boost::shared_ptr<CSpatialTransformFilterEngine> >::iterator it = engines_ptr->find(gridTransformation);
77    if (it == engines_ptr->end())
78    {
79      boost::shared_ptr<CSpatialTransformFilterEngine> engine(new CSpatialTransformFilterEngine(gridTransformation));
80      it = engines_ptr->insert(std::make_pair(gridTransformation, engine)).first;
81    }
82
83    return it->second.get();
84  }
85
86  CDataPacketPtr CSpatialTransformFilterEngine::apply(std::vector<CDataPacketPtr> data)
87  {
88    /* Nothing to do */
89  }
90
91  CDataPacketPtr CSpatialTransformFilterEngine::applyFilter(std::vector<CDataPacketPtr> data, double defaultValue)
92  {
93    CDataPacketPtr packet(new CDataPacket);
94    packet->date = data[0]->date;
95    packet->timestamp = data[0]->timestamp;
96    packet->status = data[0]->status;
97
98    if (packet->status == CDataPacket::NO_ERROR)
99    {
100      if (1 < data.size())  // Dynamical transformations
101      {
102        std::vector<CArray<double,1>* > dataAuxInputs(data.size()-1);
103        for (size_t idx = 0; idx < dataAuxInputs.size(); ++idx) dataAuxInputs[idx] = &(data[idx+1]->data);
104        gridTransformation->computeAll(dataAuxInputs, packet->timestamp);
105      }
106      packet->data.resize(gridTransformation->getGridDestination()->storeIndex_client.numElements());
107      packet->data = defaultValue;
108      apply(data[0]->data, packet->data);
109    }
110
111    return packet;
112  }
113
114  void CSpatialTransformFilterEngine::apply(const CArray<double, 1>& dataSrc, CArray<double,1>& dataDest)
115  {
116    CContextClient* client = CContext::getCurrent()->client;
117
118    // Get default value for output data
119    double defaultValue = 0.0;
120    if (0 != dataDest.numElements()) defaultValue = dataDest(0);
121
122    const std::list<CGridTransformation::SendingIndexGridSourceMap>& listLocalIndexSend = gridTransformation->getLocalIndexToSendFromGridSource();
123    const std::list<CGridTransformation::RecvIndexGridDestinationMap>& listLocalIndexToReceive = gridTransformation->getLocalIndexToReceiveOnGridDest();
124    const std::list<size_t>& listNbLocalIndexToReceive = gridTransformation->getNbLocalIndexToReceiveOnGridDest();
125    const std::list<std::vector<bool> >& listLocalIndexMaskOnDest = gridTransformation->getLocalMaskIndexOnGridDest();
126    const std::vector<CGenericAlgorithmTransformation*>& listAlgos = gridTransformation->getAlgos();
127
128    CArray<double,1> dataCurrentDest(dataSrc.copy());
129
130    std::list<CGridTransformation::SendingIndexGridSourceMap>::const_iterator itListSend  = listLocalIndexSend.begin(),
131                                                                              iteListSend = listLocalIndexSend.end();
132    std::list<CGridTransformation::RecvIndexGridDestinationMap>::const_iterator itListRecv = listLocalIndexToReceive.begin();
133    std::list<size_t>::const_iterator itNbListRecv = listNbLocalIndexToReceive.begin();
134    std::list<std::vector<bool> >::const_iterator itLocalMaskIndexOnDest = listLocalIndexMaskOnDest.begin();
135    std::vector<CGenericAlgorithmTransformation*>::const_iterator itAlgo = listAlgos.begin();
136
137    for (; itListSend != iteListSend; ++itListSend, ++itListRecv, ++itNbListRecv, ++itLocalMaskIndexOnDest, ++itAlgo)
138    {
139      CArray<double,1> dataCurrentSrc(dataCurrentDest);
140      const CGridTransformation::SendingIndexGridSourceMap& localIndexToSend = *itListSend;
141
142      // Sending data from field sources to do transformations
143      std::map<int, CArray<int,1> >::const_iterator itbSend = localIndexToSend.begin(), itSend,
144                                                    iteSend = localIndexToSend.end();
145      int idxSendBuff = 0;
146      std::vector<double*> sendBuff(localIndexToSend.size());
147      for (itSend = itbSend; itSend != iteSend; ++itSend, ++idxSendBuff)
148      {
149        if (0 != itSend->second.numElements())
150          sendBuff[idxSendBuff] = new double[itSend->second.numElements()];
151      }
152
153      idxSendBuff = 0;
154      std::vector<ep_lib::MPI_Request> sendRecvRequest;
155      for (itSend = itbSend; itSend != iteSend; ++itSend, ++idxSendBuff)
156      {
157        int destRank = itSend->first;
158        const CArray<int,1>& localIndex_p = itSend->second;
159        int countSize = localIndex_p.numElements();
160        for (int idx = 0; idx < countSize; ++idx)
161        {
162          sendBuff[idxSendBuff][idx] = dataCurrentSrc(localIndex_p(idx));
163        }
164        sendRecvRequest.push_back(ep_lib::MPI_Request());
165        MPI_Isend(sendBuff[idxSendBuff], countSize, MPI_DOUBLE, destRank, 12, client->intraComm, &sendRecvRequest.back());
166      }
167
168      // Receiving data on destination fields
169      const CGridTransformation::RecvIndexGridDestinationMap& localIndexToReceive = *itListRecv;
170      CGridTransformation::RecvIndexGridDestinationMap::const_iterator itbRecv = localIndexToReceive.begin(), itRecv,
171                                                                       iteRecv = localIndexToReceive.end();
172      int recvBuffSize = 0;
173      for (itRecv = itbRecv; itRecv != iteRecv; ++itRecv) recvBuffSize += itRecv->second.size(); //(recvBuffSize < itRecv->second.size())
174                                                                       //? itRecv->second.size() : recvBuffSize;
175      double* recvBuff;
176      if (0 != recvBuffSize) recvBuff = new double[recvBuffSize];
177      int currentBuff = 0;
178      for (itRecv = itbRecv; itRecv != iteRecv; ++itRecv)
179      {
180        int srcRank = itRecv->first;
181        int countSize = itRecv->second.size();
182        sendRecvRequest.push_back(ep_lib::MPI_Request());
183        MPI_Irecv(recvBuff + currentBuff, countSize, MPI_DOUBLE, srcRank, 12, client->intraComm, &sendRecvRequest.back());
184        currentBuff += countSize;
185      }
186      std::vector<ep_lib::MPI_Status> status(sendRecvRequest.size());
187      MPI_Waitall(sendRecvRequest.size(), &sendRecvRequest[0], &status[0]);
188
189      dataCurrentDest.resize(*itNbListRecv);
190      const std::vector<bool>& localMaskDest = *itLocalMaskIndexOnDest;
191      for (int i = 0; i < localMaskDest.size(); ++i)
192        if (localMaskDest[i]) dataCurrentDest(i) = 0.0;
193        else dataCurrentDest(i) = defaultValue;
194
195      std::vector<bool> localInitFlag(dataCurrentDest.size(), true);
196      currentBuff = 0;
197      for (itRecv = itbRecv; itRecv != iteRecv; ++itRecv)
198      {
199        int countSize = itRecv->second.size();
200        const std::vector<std::pair<int,double> >& localIndex_p = itRecv->second;
201        (*itAlgo)->apply(localIndex_p,
202                         recvBuff+currentBuff,
203                         dataCurrentDest,
204                         localInitFlag,
205                         defaultValue);
206
207        currentBuff += countSize;
208      }
209
210      (*itAlgo)->updateData(dataCurrentDest);
211
212      idxSendBuff = 0;
213      for (itSend = itbSend; itSend != iteSend; ++itSend, ++idxSendBuff)
214      {
215        if (0 != itSend->second.numElements())
216          delete [] sendBuff[idxSendBuff];
217      }
218      if (0 != recvBuffSize) delete [] recvBuff;
219    }
220    if (dataCurrentDest.numElements() != dataDest.numElements())
221    ERROR("CSpatialTransformFilterEngine::apply(const CArray<double, 1>& dataSrc, CArray<double,1>& dataDest)",
222          "Incoherent between the received size and expected size" <<
223          "Expected size: " << dataDest.numElements() <<
224          "Received size: " << dataCurrentDest.numElements());
225
226    dataDest = dataCurrentDest;
227  }
228} // namespace xios
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