source: XIOS/trunk/src/node/grid.hpp @ 2250

Last change on this file since 2250 was 2131, checked in by oabramkina, 3 years ago

Merging branch dev_oa with tiling into trunk

  • Property copyright set to
    Software name : XIOS (Xml I/O Server)
    http://forge.ipsl.jussieu.fr/ioserver
    Creation date : January 2009
    Licence : CeCCIL version2
    see license file in root directory : Licence_CeCILL_V2-en.txt
    or http://www.cecill.info/licences/Licence_CeCILL_V2-en.html
    Holder : CEA/LSCE (Laboratoire des Sciences du CLimat et de l'Environnement)
    CNRS/IPSL (Institut Pierre Simon Laplace)
    Project Manager : Yann Meurdesoif
    yann.meurdesoif@cea.fr
  • Property svn:executable set to *
File size: 24.4 KB
RevLine 
[591]1#ifndef __XIOS_CGrid__
2#define __XIOS_CGrid__
[219]3
[591]4/// XIOS headers ///
5#include "xios_spl.hpp"
[219]6#include "group_factory.hpp"
7
8#include "declare_group.hpp"
9#include "domain.hpp"
10#include "axis.hpp"
[887]11#include "scalar.hpp"
[369]12#include "array_new.hpp"
13#include "attribute_array.hpp"
[552]14#include "distribution_server.hpp"
[553]15#include "client_server_mapping.hpp"
[567]16#include "utils.hpp"
[619]17#include "transformation_enum.hpp"
[219]18
[335]19namespace xios {
[509]20
[1564]21   /// ////////////////////// Declarations ////////////////////// ///
[219]22
23   class CGridGroup;
24   class CGridAttributes;
[540]25   class CDomainGroup;
26   class CAxisGroup;
[887]27   class CScalarGroup;
[219]28   class CGrid;
[551]29   class CDistributionClient;
[552]30   class CDistributionServer;
[553]31   class CServerDistributionDescription;
32   class CClientServerMapping;
[620]33   class CGridTransformation;
[219]34
35   ///--------------------------------------------------------------
36
37   // Declare/Define CGridAttribute
38   BEGIN_DECLARE_ATTRIBUTE_MAP(CGrid)
39#  include "grid_attribute.conf"
40   END_DECLARE_ATTRIBUTE_MAP(CGrid)
41
42   ///--------------------------------------------------------------
43
44   class CGrid
45      : public CObjectTemplate<CGrid>
46      , public CGridAttributes
47   {
48         /// typedef ///
49         typedef CObjectTemplate<CGrid>   SuperClass;
50         typedef CGridAttributes SuperClassAttribute;
51
[676]52      public:
[219]53
54         typedef CGridAttributes RelAttributes;
55         typedef CGridGroup      RelGroup;
56
[300]57         enum EEventId
58         {
[887]59           EVENT_ID_INDEX, EVENT_ID_ADD_DOMAIN, EVENT_ID_ADD_AXIS, EVENT_ID_ADD_SCALAR
[650]60         };
[509]61
[219]62         /// Constructeurs ///
63         CGrid(void);
[650]64         explicit CGrid(const StdString& id);
65         CGrid(const CGrid& grid);       // Not implemented yet.
66         CGrid(const CGrid* const grid); // Not implemented yet.
[219]67
68         /// Traitements ///
[509]69//         void solveReference(void);
[219]70
[676]71         void checkEligibilityForCompressedOutput();
72
[509]73         void solveDomainAxisRef(bool areAttributesChecked);
74
75         void checkMaskIndex(bool doCalculateIndex);
76
[650]77 //        virtual void toBinary  (StdOStream& os) const;
78//         virtual void fromBinary(StdIStream& is);
[219]79
[676]80         void addRelFileCompressed(const StdString& filename);
81
[219]82         /// Tests ///
[676]83         bool isCompressible(void) const;
84         bool isWrittenCompressed(const StdString& filename) const;
[219]85
[676]86      public:
[219]87
88         /// Accesseurs ///
[1158]89         StdSize getDimension(void);
[509]90
[286]91         StdSize  getDataSize(void) const;
[219]92
[2131]93         StdSize  getTileDataSize(int tileId);
94
95         StdSize  getTileSize(int tileId);
96
[1564]97         /// Entrees-sorties de champs
[369]98         template <int n>
[593]99         void inputField(const CArray<double,n>& field, CArray<double,1>& stored) const;
100         template <int n>
[2131]101         void maskField(const CArray<double,n>& field, CArray<double,1>& stored, bool isTiled = false) const;
[1637]102         template <int n>
[1250]103         void outputField(const CArray<double,1>& stored, CArray<double,n>& field) const; 
104         template <int n>
105         void uncompressField(const CArray<double,n>& data, CArray<double,1>& outData) const; 
[2131]106         template <int n>
107         void copyTile(const CArray<double,n>& tileData, CArray<double, 1>& stored, int tileId);
[509]108
[650]109         virtual void parse(xml::CXMLNode& node);
[540]110
[219]111         /// Destructeur ///
112         virtual ~CGrid(void);
113
[676]114      public:
[219]115
116         /// Accesseurs statiques ///
117         static StdString GetName(void);
118         static StdString GetDefName(void);
[509]119
[219]120         static ENodeType GetType(void);
121
122         /// Instanciateurs Statiques ///
[347]123         static CGrid* createGrid(CDomain* domain);
124         static CGrid* createGrid(CDomain* domain, CAxis* axis);
[745]125         static CGrid* createGrid(const std::vector<CDomain*>& domains, const std::vector<CAxis*>& axis,
[887]126                                  const CArray<int,1>& axisDomainOrder = CArray<int,1>());
[745]127         static CGrid* createGrid(StdString id, const std::vector<CDomain*>& domains, const std::vector<CAxis*>& axis,
[887]128                                  const std::vector<CScalar*>& scalars, const CArray<int,1>& axisDomainOrder = CArray<int,1>());
129         static CGrid* createGrid(const std::vector<CDomain*>& domains, const std::vector<CAxis*>& axis,
130                                  const std::vector<CScalar*>& scalars, const CArray<int,1>& axisDomainOrder);
[745]131         static StdString generateId(const std::vector<CDomain*>& domains, const std::vector<CAxis*>& axis,
[887]132                                     const std::vector<CScalar*>& scalars, const CArray<int,1>& axisDomainOrder = CArray<int,1>());
[823]133         static StdString generateId(const CGrid* gridSrc, const CGrid* gridDest);
134         static CGrid* cloneGrid(const StdString& idNewGrid, CGrid* gridSrc);
[219]135
[1144]136      public:           
[219]137         void computeIndexServer(void);
138         void computeIndex(void);
[586]139         void computeIndexScalarGrid();
[1129]140         void computeWrittenIndex();
[219]141
[509]142         void solveDomainRef(bool checkAtt);
143         void solveAxisRef(bool checkAtt);
[887]144         void solveScalarRef(bool checkAtt);
[540]145         void solveDomainAxisRefInheritance(bool apply = true);
[619]146         void solveTransformations();
[775]147         void solveDomainAxisBaseRef();
[509]148
[835]149         CDomain* addDomain(const std::string& id=StdString());
150         CAxis* addAxis(const std::string& id=StdString());
[887]151         CScalar* addScalar(const std::string& id=StdString());
[540]152         void sendAddDomain(const std::string& id="");
153         void sendAddAxis(const std::string& id="");
[887]154         void sendAddScalar(const std::string& id="");
[1927]155         void sendGrid(void) ;
[540]156
[650]157         static void recvAddDomain(CEventServer& event);
158         void recvAddDomain(CBufferIn& buffer);
159         static void recvAddAxis(CEventServer& event);
160         void recvAddAxis(CBufferIn& buffer);
[887]161         static void recvAddScalar(CEventServer& event);
162         void recvAddScalar(CBufferIn& buffer);
[540]163
[650]164         static bool dispatchEvent(CEventServer& event);
165         static void recvIndex(CEventServer& event);
166         void recvIndex(vector<int> ranks, vector<CBufferIn*> buffers);
167         void sendIndex(void);
[586]168         void sendIndexScalarGrid();
[509]169
[1294]170         void setContextClient(CContextClient* contextClient);
171
[509]172         void computeDomConServer();
173         std::map<int, int> getDomConServerSide();
[1330]174         std::map<int, StdSize> getAttributesBufferSize(CContextClient* client, bool bufferForWriting = false);
175         std::map<int, StdSize> getDataBufferSize(CContextClient* client, const std::string& id = "", bool bufferForWriting = false);
[540]176         std::vector<StdString> getDomainList();
177         std::vector<StdString> getAxisList();
[887]178         std::vector<StdString> getScalarList();
[540]179         std::vector<CDomain*> getDomains();
180         std::vector<CAxis*> getAxis();
[887]181         std::vector<CScalar*> getScalars();
[943]182         CDomain* getDomain(int domainIndex);
183         CAxis* getAxis(int axisIndex);
184         CScalar* getScalar(int scalarIndex);
[551]185         std::vector<int> getAxisOrder();
[567]186         std::vector<int> getGlobalDimension();
[1236]187         bool isScalarGrid() const;         
[540]188
[567]189         bool doGridHaveDataToWrite();
[1235]190         bool doGridHaveDataDistributed(CContextClient* client = 0);
[567]191         size_t getWrittenDataSize() const;
[676]192         int getNumberWrittenIndexes() const;
193         int getTotalNumberWrittenIndexes() const;
194         int getOffsetWrittenIndexes() const;
[567]195
[834]196         CDistributionServer* getDistributionServer();
197         CDistributionClient* getDistributionClient();
[620]198         CGridTransformation* getTransformations();
[567]199
[632]200         void transformGrid(CGrid* transformGridSrc);
[775]201         void completeGrid(CGrid* transformGridSrc = 0);
[687]202         void doAutoDistribution(CGrid* transformGridSrc);
[619]203         bool isTransformed();
204         void setTransformed();
[890]205         bool isGenerated();
206         void setGenerated();
[823]207         void addTransGridSource(CGrid* gridSrc);
208         std::map<CGrid*, std::pair<bool,StdString> >& getTransGridSource();
[824]209         bool hasTransform();
[1215]210         size_t getGlobalWrittenSize(void) ;
[219]211      public:
[650]212         CArray<int, 1> storeIndex_client;
[2131]213         CArray<int, 1> storeIndexTiled_client;
[1637]214         CArray<bool, 1> storeMask_client;
[2131]215         CArray<bool, 1> storeMaskTiled_client;
[509]216
[1263]217/** Map containing indexes that will be sent in sendIndex(). */
[1243]218         std::map<CContextClient*, map<int, CArray<int, 1> > > storeIndex_toSrv;
219
[1263]220/** Map storing the number of senders. Key = size of receiver's intracomm */
221         std::map<int, std::map<int,int> > nbSenders;
222
223         std::map<CContextClient*, std::map<int,int> > nbReadSenders;
224
[1236]225         map<int, CArray<int, 1> > storeIndex_fromSrv; // Support, for now, reading with level-1 server
[1243]226
[1294]227         map<int, CArray<size_t, 1> > outIndexFromClient;  // Deprecated
[1243]228
[1294]229         map<int, CArray<size_t, 1> > compressedOutIndexFromClient;
[1129]230
[1294]231/** Map storing received indexes. Key = sender rank, value = index array. */
232         map<int, CArray<size_t, 1> > outGlobalIndexFromClient;
233
[2131]234/** Map storing received indexes. Key = sender rank, value = index array for tiled domains */
235         map<int, CArray<size_t, 1> > outGlobalIndexFromClientTiled;
236
[1294]237// Manh Ha's comment: " A client receives global index from other clients (via recvIndex)
238// then does mapping these index into local index of STORE_CLIENTINDEX
239// In this way, store_clientIndex can be used as an input of a source filter
240// Maybe we need a flag to determine whether a client wants to write. TODO "
241
242/** Map storing received data. Key = sender rank, value = data array.
243 *  The map is created in CGrid::computeClientIndex and filled upon receiving data in CField::recvUpdateData() */
[1129]244         map<int, CArray<size_t, 1> > outLocalIndexStoreOnClient; 
245
[2131]246/** Map storing received data. Key = sender rank, value = data array.
247 *  The map is created in CGrid::computeClientIndex and filled upon receiving data in CField::recvUpdateData() */
248         map<int, CArray<size_t, 1> > outLocalIndexStoreOnClientTiled;
249
250
[1294]251/** Indexes calculated based on server-like distribution.
252 *  They are used for writing/reading data and only calculated for server level that does the writing/reading.
253 *  Along with localIndexToWriteOnClient, these indexes are used to correctly place incoming data. */
[1243]254         CArray<size_t,1> localIndexToWriteOnServer;
[1129]255
[1294]256/** Indexes calculated based on client-like distribution.
257 *  They are used for writing/reading data and only calculated for server level that does the writing/reading.
258 *  Along with localIndexToWriteOnServer, these indexes are used to correctly place incoming data. */
[1243]259         CArray<size_t,1> localIndexToWriteOnClient;
260
[1025]261         CArray<size_t,1> indexFromClients;
[1294]262
[1637]263         bool hasMask(void) const;
[650]264         void checkMask(void);
[821]265         void createMask(void);
[1129]266         void modifyMask(const CArray<int,1>& indexToModify, bool valueToModify = false);
267         void modifyMaskSize(const std::vector<int>& newDimensionSize, bool newValue = false);
[509]268
[742]269         void computeGridGlobalDimension(const std::vector<CDomain*>& domains,
270                                         const std::vector<CAxis*>& axis,
[887]271                                         const std::vector<CScalar*>& scalars,
272                                         const CArray<int,1>& axisDomainOrder);
[742]273
[2131]274         int getNTiles();
275         bool isTiled(void) const;
276         bool isTiledOnly(void) const;
277
[540]278      private:
[567]279       template<int N>
280       void checkGridMask(CArray<bool,N>& gridMask,
[664]281                          const std::vector<CArray<bool,1>* >& domainMasks,
[567]282                          const std::vector<CArray<bool,1>* >& axisMasks,
[887]283                          const CArray<int,1>& axisDomainOrder,
[821]284                          bool createMask = false);
[623]285        template<int N>
[1129]286        void modifyGridMask(CArray<bool,N>& gridMask, const CArray<int,1>& indexToModify, bool valueToModify);
[623]287
[1129]288        template<int N>
289        void modifyGridMaskSize(CArray<bool,N>& gridMask, const std::vector<int>& eachDimSize, bool newValue);
290
[1144]291        void storeField_arr(const double* const data, CArray<double, 1>& stored) const;
292        void restoreField_arr(const CArray<double, 1>& stored, double* const data) const;
[1250]293        void uncompressField_arr(const double* const data, CArray<double, 1>& outData) const;
[2131]294        void maskField_arr(const double* const data, CArray<double, 1>& stored, bool isTiled = false) const;
295        void copyTile_arr(const double* const tileData, CArray<double, 1>& stored, int tileId);
[1144]296
[540]297        void setVirtualDomainGroup(CDomainGroup* newVDomainGroup);
298        void setVirtualAxisGroup(CAxisGroup* newVAxisGroup);
[887]299        void setVirtualScalarGroup(CScalarGroup* newVScalarGroup);
[567]300
[887]301        void setDomainList(const std::vector<CDomain*> domains = std::vector<CDomain*>());
[540]302        void setAxisList(const std::vector<CAxis*> axis = std::vector<CAxis*>());
[887]303        void setScalarList(const std::vector<CScalar*> scalars = std::vector<CScalar*>());
[540]304
[887]305        CDomainGroup* getVirtualDomainGroup() const;
[540]306        CAxisGroup* getVirtualAxisGroup() const;
[887]307        CScalarGroup* getVirtualScalarGroup() const;
[619]308
[657]309        void checkAttributesAfterTransformation();
[619]310        void setTransformationAlgorithms();
[1542]311        void computeIndexByElement(const std::vector<std::unordered_map<size_t,std::vector<int> > >& indexServerOnElement,
[1263]312                                   const CContextClient* client,
[865]313                                   CClientServerMapping::GlobalIndexMap& globalIndexOnServer);
[1158]314        int computeGridGlobalDimension(std::vector<int>& globalDim,
315                                       const std::vector<CDomain*> domains,
316                                       const std::vector<CAxis*> axis,
317                                       const std::vector<CScalar*> scalars,
318                                       const CArray<int,1>& axisDomainOrder);
319        int getDistributedDimension();
[619]320
[1025]321        void computeClientIndex();
[2131]322        void computeClientIndexTiled();
[1025]323        void computeConnectedClients();
[1202]324        void computeClientIndexScalarGrid(); 
325        void computeConnectedClientsScalarGrid(); 
[1025]326
[2131]327        void computeTileIndex();
328
[540]329      private:
[1236]330
[1294]331/** Clients that have to send a grid. There can be multiple clients in case of secondary server, otherwise only one client. */
[1353]332        std::list<CContextClient*> clients;
333        std::set<CContextClient*> clientsSet;
[1294]334
335        bool isChecked;
336        bool isDomainAxisChecked;
337        bool isIndexSent;
338
[2131]339        int nTiles_;
340/** True if tiled data is defined on the grid */
341        bool isTiled_;
342/** True if ONLY tiled data is defined on the grid */
343        bool isTiledOnly_;
344
345/** Vector containing local domain indexes for each tile */
346        std::vector<CArray<int,1> > storeTileIndex;
347
[540]348        CDomainGroup* vDomainGroup_;
349        CAxisGroup* vAxisGroup_;
[887]350        CScalarGroup* vScalarGroup_;
351        std::vector<std::string> axisList_, domList_, scalarList_;
352        bool isAxisListSet, isDomListSet, isScalarListSet;
[567]353
[1294]354/** Client-like distribution calculated based on the knowledge of the entire grid */
[551]355        CDistributionClient* clientDistribution_;
[1243]356
[2131]357/** Client-like distribution calculated based on the knowledge of the entire grid in case of a tiled domain */
358        CDistributionClient* clientDistributionTiled_;
359
360
[1294]361/** Server-like distribution calculated upon receiving indexes */
[552]362        CDistributionServer* serverDistribution_;
[1243]363
[568]364        CClientServerMapping* clientServerMap_;
[567]365        size_t writtenDataSize_;
[676]366        int numberWrittenIndexes_, totalNumberWrittenIndexes_, offsetWrittenIndexes_;
[1243]367
[1330]368/** Map storing local ranks of connected receivers. Key = size of receiver's intracomm.
369  * It is calculated in computeConnectedClients(). */
[1263]370        std::map<int, std::vector<int> > connectedServerRank_;
[1243]371
[1330]372/** Map storing the size of data to be send. Key = size of receiver's intracomm
373  * It is calculated in computeConnectedClients(). */
[1263]374        std::map<int, std::map<int,size_t> > connectedDataSize_;
[1243]375
[1330]376/** Ranks of connected receivers in case of reading. It is calculated in recvIndex(). */
377        std::vector<int> connectedServerRankRead_;
378
379/** Size of data to be send in case of reading. It is calculated in recvIndex(). */
380        std::map<int,size_t> connectedDataSizeRead_;
381
[1165]382        bool isDataDistributed_;       
[676]383         //! True if and only if the data defined on the grid can be outputted in a compressed way
384        bool isCompressible_;
385        std::set<std::string> relFilesCompressed;
[619]386
[1129]387        bool isTransformed_, isGenerated_;
388        bool computedWrittenIndex_;
[620]389        std::vector<int> axisPositionInGrid_;
390        CGridTransformation* transformations_;
[1158]391        bool hasDomainAxisBaseRef_;       
[823]392        std::map<CGrid*, std::pair<bool,StdString> > gridSrc_;
[824]393        bool hasTransform_;
[1243]394
[1263]395/** Map storing global indexes of server-like (band-wise) distribution for sending to receivers.
396  * Key = size of receiver's intracomm.
397  */
398//        std::map<CContextClient*, CClientServerMapping::GlobalIndexMap> globalIndexOnServer_;
399        std::map<int, CClientServerMapping::GlobalIndexMap> globalIndexOnServer_;
[1243]400
[1263]401
[1243]402/** List order of axis and domain in a grid, if there is a domain, it will take value 1 (true), axis 0 (false) */
[887]403        std::vector<int> order_;
[1243]404
[219]405   }; // class CGrid
406
407   ///--------------------------------------------------------------
408
[369]409   template <int n>
[567]410   void CGrid::inputField(const CArray<double,n>& field, CArray<double,1>& stored) const
[1622]411   TRY
[219]412   {
[1294]413//#ifdef __XIOS_DEBUG
[369]414      if (this->getDataSize() != field.numElements())
415         ERROR("void CGrid::inputField(const  CArray<double,n>& field, CArray<double,1>& stored) const",
[680]416                << "[ Awaiting data of size = " << this->getDataSize() << ", "
[421]417                << "Received data size = "      << field.numElements() << " ] "
[955]418                << "The data array does not have the right size! "
[1343]419                << "Grid = " << this->getId())
[1294]420//#endif
[650]421      this->storeField_arr(field.dataFirst(), stored);
[219]422   }
[1622]423   CATCH
[219]424
[593]425   template <int n>
[2131]426   void CGrid::copyTile(const CArray<double,n>& tileData, CArray<double,1>& storedData, int tileId)
[1637]427   {
[2131]428      this->copyTile_arr(tileData.dataFirst(), storedData, tileId);
429   }
430
431   template <int n>
432   void CGrid::maskField(const CArray<double,n>& field, CArray<double,1>& stored, bool isTiled) const
433   {
[1637]434//#ifdef __XIOS_DEBUG
435      if (this->getDataSize() != field.numElements())
[2131]436         ERROR("void CGrid::maskField(const  CArray<double,n>& field, CArray<double,1>& stored) const",
[1637]437                << "[ Awaiting data of size = " << this->getDataSize() << ", "
438                << "Received data size = "      << field.numElements() << " ] "
439                << "The data array does not have the right size! "
440                << "Grid = " << this->getId())
441//#endif
[2131]442      this->maskField_arr(field.dataFirst(), stored, isTiled);
[1637]443   }
444
445   template <int n>
[593]446   void CGrid::outputField(const CArray<double,1>& stored, CArray<double,n>& field) const
[1622]447   TRY
[593]448   {
[1294]449//#ifdef __XIOS_DEBUG
[593]450      if (this->getDataSize() != field.numElements())
451         ERROR("void CGrid::outputField(const CArray<double,1>& stored, CArray<double,n>& field) const",
452                << "[ Size of the data = " << this->getDataSize() << ", "
453                << "Output data size = "   << field.numElements() << " ] "
[955]454                << "The ouput array does not have the right size! "
[1343]455                << "Grid = " << this->getId())
[1294]456//#endif
[593]457      this->restoreField_arr(stored, field.dataFirst());
458   }
[1622]459   CATCH
[593]460
[1250]461   /*!
462     This function removes the effect of mask on received data on the server.
463     This function only serve for the checking purpose. TODO: Something must be done to seperate mask and data_index from each other in received data
464     \data data received data with masking effect on the server
465     \outData data without masking effect
466   */
467   template <int N>
468   void CGrid::uncompressField(const CArray<double,N>& data, CArray<double,1>& outData) const
[1622]469   TRY
[1250]470   {     
471     uncompressField_arr(data.dataFirst(), outData);
472   }
[1622]473   CATCH
[1250]474
[567]475   template<int N>
476   void CGrid::checkGridMask(CArray<bool,N>& gridMask,
[664]477                             const std::vector<CArray<bool,1>* >& domainMasks,
[567]478                             const std::vector<CArray<bool,1>* >& axisMasks,
[887]479                             const CArray<int,1>& axisDomainOrder,
[821]480                             bool createMask)
[1622]481   TRY
[567]482   {
[1637]483     int idx = 0;
484     int numElement = axisDomainOrder.numElements();
485     int dim = domainMasks.size() * 2 + axisMasks.size();
486     std::vector<CDomain*> domainP = this->getDomains();
487     std::vector<CAxis*> axisP = this->getAxis();
[567]488
[1637]489     std::vector<int> idxLoop(dim,0), indexMap(numElement), eachDimSize(dim);
490     std::vector<int> currentIndex(dim);
491     int idxDomain = 0, idxAxis = 0;
492    for (int i = 0; i < numElement; ++i)
493    {
494      indexMap[i] = idx;
495      if (2 == axisDomainOrder(i)) {
496          eachDimSize[indexMap[i]]   = domainP[idxDomain]->ni;
497          eachDimSize[indexMap[i]+1] = domainP[idxDomain]->nj;
498          idx += 2; ++idxDomain;
499      }
500      else if (1 == axisDomainOrder(i)) {
501//        eachDimSize[indexMap[i]] = axisMasks[idxAxis]->numElements();
502        eachDimSize[indexMap[i]] = axisP[idxAxis]->n;
503        ++idx; ++idxAxis;
504      }
505      else {};
506    }
507
508    if (!gridMask.isEmpty() && !createMask)
509    {
510      for (int i = 0; i < dim; ++i)
[567]511      {
[1637]512        if (gridMask.extent(i) != eachDimSize[i])
513          ERROR("CGrid::checkMask(void)",
514                << "The mask has one dimension whose size is different from the one of the local grid." << std::endl
515                << "Local size of dimension " << i << " is " << eachDimSize[i] << "." << std::endl
516                << "Mask size for dimension " << i << " is " << gridMask.extent(i) << "." << std::endl
517                << "Grid = " << this->getId())
[567]518      }
[1637]519    }
520    else {
521        CArrayBoolTraits<CArray<bool,N> >::resizeArray(gridMask,eachDimSize);
522        gridMask = true;
523    }
[567]524
[1637]525    int ssize = gridMask.numElements();
526    idx = 0;
527    while (idx < ssize)
528    {
529      for (int i = 0; i < dim-1; ++i)
[567]530      {
[1637]531        if (idxLoop[i] == eachDimSize[i])
[567]532        {
[1637]533          idxLoop[i] = 0;
534          ++idxLoop[i+1];
[567]535        }
536      }
537
[1637]538      // Find out outer index
539      idxDomain = idxAxis = 0;
540      bool maskValue = true;
541      for (int i = 0; i < numElement; ++i)
[567]542      {
[1637]543        if (2 == axisDomainOrder(i))
[567]544        {
[1637]545          int idxTmp = idxLoop[indexMap[i]] + idxLoop[indexMap[i]+1] * eachDimSize[indexMap[i]];
546          if (idxTmp < (*domainMasks[idxDomain]).numElements())
547            maskValue = maskValue && (*domainMasks[idxDomain])(idxTmp);
548          else
549            maskValue = false;
550          ++idxDomain;
[567]551        }
[1637]552        else if (1 == axisDomainOrder(i))
[567]553        {
[1637]554          int idxTmp = idxLoop[indexMap[i]];
555          if (idxTmp < (*axisMasks[idxAxis]).numElements())
556            maskValue = maskValue && (*axisMasks[idxAxis])(idxTmp);
557          else
558            maskValue = false;
[1421]559
[1637]560          ++idxAxis;
[567]561        }
[1637]562      }
[567]563
[1637]564      int maskIndex = idxLoop[0];
565      int mulDim = 1;
566      for (int k = 1; k < dim; ++k)
567      {
568        mulDim *= eachDimSize[k-1];
569        maskIndex += idxLoop[k]*mulDim;
570      }
571      *(gridMask.dataFirst()+maskIndex) &= maskValue;
[1564]572
[1637]573      ++idxLoop[0];
574      ++idx;
575    }
[567]576   }
[1622]577   CATCH_DUMP_ATTR
[567]578
[1129]579   template<int N>
580   void CGrid::modifyGridMaskSize(CArray<bool,N>& gridMask,
581                                  const std::vector<int>& eachDimSize,
582                                  bool newValue)
[1622]583   TRY
[1129]584   {
585      if (N != eachDimSize.size())
586      {
587        // ERROR("CGrid::modifyGridMaskSize(CArray<bool,N>& gridMask,
588        //                                  const std::vector<int>& eachDimSize,
589        //                                  bool newValue)",
590        //       << "Dimension size of the mask is different from input dimension size." << std::endl
591        //       << "Mask dimension is " << N << "." << std::endl
592        //       << "Input dimension is " << eachDimSize.size() << "." << std::endl
[1343]593        //       << "Grid = " << this->getId())
[1129]594      }
595      CArrayBoolTraits<CArray<bool,N> >::resizeArray(gridMask,eachDimSize);
596      gridMask = newValue;
597   }
[1622]598   CATCH_DUMP_ATTR
[1129]599                                 
600
[623]601   /*!
602     Modify the current mask of grid, the local index to be modified will take value false
603     \param [in/out] gridMask current mask of grid
604     \param [in] indexToModify local index to modify
605   */
606   template<int N>
[1129]607   void CGrid::modifyGridMask(CArray<bool,N>& gridMask, const CArray<int,1>& indexToModify, bool valueToModify)
[1622]608   TRY
[1129]609   {     
[623]610     int num = indexToModify.numElements();
611     for (int idx = 0; idx < num; ++idx)
612     {
613       *(gridMask.dataFirst()+indexToModify(idx)) = valueToModify;
614     }
615   }
[1622]616   CATCH_DUMP_ATTR
617
[219]618   ///--------------------------------------------------------------
619
[1397]620
621
[219]622   // Declare/Define CGridGroup and CGridDefinition
623   DECLARE_GROUP(CGrid);
624
625   ///--------------------------------------------------------------
626
[335]627} // namespace xios
[219]628
[591]629#endif // __XIOS_CGrid__
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