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EpetraExt
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00001 //@HEADER 00002 // *********************************************************************** 00003 // 00004 // EpetraExt: Epetra Extended - Linear Algebra Services Package 00005 // Copyright (2011) Sandia Corporation 00006 // 00007 // Under the terms of Contract DE-AC04-94AL85000 with Sandia Corporation, 00008 // the U.S. Government retains certain rights in this software. 00009 // 00010 // Redistribution and use in source and binary forms, with or without 00011 // modification, are permitted provided that the following conditions are 00012 // met: 00013 // 00014 // 1. Redistributions of source code must retain the above copyright 00015 // notice, this list of conditions and the following disclaimer. 00016 // 00017 // 2. Redistributions in binary form must reproduce the above copyright 00018 // notice, this list of conditions and the following disclaimer in the 00019 // documentation and/or other materials provided with the distribution. 00020 // 00021 // 3. Neither the name of the Corporation nor the names of the 00022 // contributors may be used to endorse or promote products derived from 00023 // this software without specific prior written permission. 00024 // 00025 // THIS SOFTWARE IS PROVIDED BY SANDIA CORPORATION "AS IS" AND ANY 00026 // EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 00027 // IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 00028 // PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL SANDIA CORPORATION OR THE 00029 // CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, 00030 // EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, 00031 // PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR 00032 // PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF 00033 // LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING 00034 // NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS 00035 // SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 00036 // 00037 // Questions? Contact Michael A. Heroux (maherou@sandia.gov) 00038 // 00039 // *********************************************************************** 00040 //@HEADER 00041 00042 #ifndef EPETRAEXT_MULTISERIALCOMM_H 00043 #define EPETRAEXT_MULTISERIALCOMM_H 00044 00045 #include "EpetraExt_ConfigDefs.h" 00046 #include "EpetraExt_MultiComm.h" 00047 #include "Epetra_SerialComm.h" 00048 #include "Teuchos_RCP.hpp" 00049 00054 00064 namespace EpetraExt { 00065 00066 class MultiSerialComm: public EpetraExt::MultiComm { 00067 public: 00068 00070 00071 00080 MultiSerialComm(int numTimeSteps_=-1); 00081 00083 MultiSerialComm( const MultiSerialComm &MSC ); 00084 00086 virtual ~MultiSerialComm(); 00088 00090 virtual Epetra_Comm& SubDomainComm() const {return *subComm;} 00091 00093 virtual Epetra_Comm& TimeDomainComm() const { return *subComm; } 00094 00096 virtual int NumSubDomains() const {return 1;} 00097 00099 virtual int SubDomainRank() const {return 0;} 00100 00102 virtual int NumTimeDomains() const { return 1; } 00103 00105 virtual int TimeDomainRank() const { return 0; } 00106 00108 virtual int NumTimeStepsOnDomain() const {return numTimeSteps;} 00109 virtual int FirstTimeStepOnDomain() const {return 0;} 00110 00112 virtual int NumTimeSteps() const {return numTimeSteps;} 00113 00115 // be set later than the MultiLevel parallelism is set up. 00116 void ResetNumTimeSteps(int numTimeSteps); 00117 00118 virtual Epetra_Comm * Clone() const { return myComm->Clone(); }; 00119 virtual void Barrier() const { myComm->Barrier(); }; 00120 virtual int Broadcast(double * MyVals, int Count, int Root) const 00121 { return myComm->Broadcast( MyVals, Count, Root); }; 00122 virtual int Broadcast(int * MyVals, int Count, int Root) const 00123 { return myComm->Broadcast( MyVals, Count, Root); }; 00124 virtual int Broadcast(long * MyVals, int Count, int Root) const 00125 { return myComm->Broadcast( MyVals, Count, Root); }; 00126 virtual int Broadcast(long long * MyVals, int Count, int Root) const 00127 { return myComm->Broadcast( MyVals, Count, Root); }; 00128 virtual int Broadcast(char * MyVals, int Count, int Root) const 00129 { return myComm->Broadcast( MyVals, Count, Root); }; 00130 virtual int GatherAll(double * MyVals, double * AllVals, int Count) const 00131 { return myComm->GatherAll( MyVals, AllVals, Count); }; 00132 virtual int GatherAll(int * MyVals, int * AllVals, int Count) const 00133 { return myComm->GatherAll( MyVals, AllVals, Count); }; 00134 virtual int GatherAll(long * MyVals, long * AllVals, int Count) const 00135 { return myComm->GatherAll( MyVals, AllVals, Count); }; 00136 virtual int GatherAll(long long* MyVals, long long* AllVals, int Count) const 00137 { return myComm->GatherAll( MyVals, AllVals, Count); }; 00138 virtual int SumAll(double * PartialSums, double * GlobalSums, int Count) const 00139 { return myComm->SumAll( PartialSums, GlobalSums, Count); }; 00140 virtual int SumAll(int * PartialSums, int * GlobalSums, int Count) const 00141 { return myComm->SumAll( PartialSums, GlobalSums, Count); }; 00142 virtual int SumAll(long * PartialSums, long * GlobalSums, int Count) const 00143 { return myComm->SumAll( PartialSums, GlobalSums, Count); }; 00144 virtual int SumAll(long long* PartialSums, long long* GlobalSums, int Count) const 00145 { return myComm->SumAll( PartialSums, GlobalSums, Count); }; 00146 virtual int MaxAll(double * PartialMaxs, double * GlobalMaxs, int Count) const 00147 { return myComm->MaxAll( PartialMaxs, GlobalMaxs, Count); }; 00148 virtual int MaxAll(int * PartialMaxs, int * GlobalMaxs, int Count) const 00149 { return myComm->MaxAll( PartialMaxs, GlobalMaxs, Count); }; 00150 virtual int MaxAll(long * PartialMaxs, long * GlobalMaxs, int Count) const 00151 { return myComm->MaxAll( PartialMaxs, GlobalMaxs, Count); }; 00152 virtual int MaxAll(long long* PartialMaxs, long long* GlobalMaxs, int Count) const 00153 { return myComm->MaxAll( PartialMaxs, GlobalMaxs, Count); }; 00154 virtual int MinAll(double * PartialMins, double * GlobalMins, int Count) const 00155 { return myComm->MinAll( PartialMins, GlobalMins, Count); }; 00156 virtual int MinAll(int * PartialMins, int * GlobalMins, int Count) const 00157 { return myComm->MinAll( PartialMins, GlobalMins, Count); }; 00158 virtual int MinAll(long * PartialMins, long * GlobalMins, int Count)const 00159 { return myComm->MinAll( PartialMins, GlobalMins, Count); }; 00160 virtual int MinAll(long long* PartialMins, long long* GlobalMins, int Count) const 00161 { return myComm->MinAll( PartialMins, GlobalMins, Count); }; 00162 virtual int ScanSum(double * MyVals, double * ScanSums, int Count)const 00163 { return myComm->ScanSum( MyVals, ScanSums, Count); }; 00164 virtual int ScanSum(int * MyVals, int * ScanSums, int Count) const 00165 { return myComm->ScanSum(MyVals, ScanSums, Count); }; 00166 virtual int ScanSum(long * MyVals, long * ScanSums, int Count) const 00167 { return myComm->ScanSum(MyVals, ScanSums, Count); }; 00168 virtual int ScanSum(long long* MyVals, long long* ScanSums, int Count) const 00169 { return myComm->ScanSum(MyVals, ScanSums, Count); }; 00170 virtual int MyPID() const { return myComm->MyPID(); }; 00171 virtual int NumProc() const { return myComm->NumProc(); }; 00172 virtual Epetra_Distributor * CreateDistributor() const { return myComm->CreateDistributor(); }; 00173 virtual Epetra_Directory * CreateDirectory(const Epetra_BlockMap & Map) const 00174 { return myComm->CreateDirectory(Map); }; 00175 virtual void PrintInfo(std::ostream & os) const { myComm->PrintInfo( os); }; 00176 00177 protected: 00178 00179 Teuchos::RCP<Epetra_Comm> myComm; 00180 Epetra_SerialComm* subComm; 00181 int numTimeSteps; 00182 }; 00183 00184 } //namespace EpetraExt 00185 00186 #endif /* EPETRAEXT_MULTISERIALCOMM_H */
1.7.6.1