source: XIOS3/trunk/src/transport/context_client.cpp @ 2551

Last change on this file since 2551 was 2551, checked in by jderouillat, 10 months ago

Add a test on the inter-communicator in ContextClient? and ContextServer? constructor

  • Property svn:eol-style set to native
  • Property svn:executable set to *
File size: 5.8 KB
Line 
1#include "xios_spl.hpp"
2#include "context_client.hpp"
3#include "context_server.hpp"
4#include "event_client.hpp"
5#include "buffer_out.hpp"
6#include "buffer_client.hpp"
7#include "type.hpp"
8#include "event_client.hpp"
9#include "context.hpp"
10#include "mpi.hpp"
11#include "timer.hpp"
12#include "cxios.hpp"
13#include "server.hpp"
14#include "services.hpp"
15#include <boost/functional/hash.hpp>
16#include <random>
17#include <chrono>
18#include "one_sided_context_client.hpp"
19#include "legacy_context_client.hpp"
20#include "online_context_client.hpp"
21
22
23namespace xios
24{
25    /*!
26    \param [in] parent Pointer to context on client side
27    \param [in] intraComm_ communicator of group client
28    \param [in] interComm_ communicator of group server
29    \cxtSer [in] cxtSer Pointer to context of server side. (It is only used in case of attached mode).
30    */
31    CContextClient::CContextClient(CContext* parent, MPI_Comm intraComm_, MPI_Comm interComm_, CContext* cxtSer)
32     : parentServer(cxtSer),  associatedServer_(nullptr)
33    {
34     
35      context_ = parent;
36      intraComm = intraComm_;
37      interComm = interComm_;
38      MPI_Comm_rank(intraComm, &clientRank);
39      MPI_Comm_size(intraComm, &clientSize);
40
41      int flag;     
42      MPI_Comm_test_inter(interComm, &flag);
43      if (flag) MPI_Comm_remote_size(interComm, &serverSize);
44      else  MPI_Comm_size(interComm, &serverSize);
45     
46      computeLeader(clientRank, clientSize, serverSize, ranksServerLeader, ranksServerNotLeader);
47
48      auto time=chrono::system_clock::now().time_since_epoch().count() ;
49      std::default_random_engine rd(time); // not reproducible from a run to another
50      std::uniform_int_distribution<size_t> dist;
51      hashId_=dist(rd) ;
52      MPI_Bcast(&hashId_,1,MPI_SIZE_T,0,intraComm) ; // Bcast to all server of the context
53
54    }
55
56    template<>
57    CContextClient* CContextClient::getNew<CContextClient::generic>(CContext* parent, MPI_Comm intraComm, MPI_Comm interComm, CContext* parentServer)
58    { 
59      string defaultProtocol = CXios::getin<string>("transport_protocol", "default") ;
60      if (defaultProtocol=="one_sided") return getNew<CContextClient::oneSided>(parent, intraComm, interComm) ;
61      else if  (defaultProtocol=="legacy") return getNew<CContextClient::legacy>(parent, intraComm, interComm) ;
62      else if  (defaultProtocol=="online") return getNew<CContextClient::online>(parent, intraComm, interComm) ;
63      else if  (defaultProtocol=="default") return getNew<CContextClient::legacy>(parent, intraComm, interComm) ;
64      else ERROR("CContextClient* CContextClient::getNew<CContextClient::generic>(CContext* parent, MPI_Comm intraComm, MPI_Comm interComm, CContext* parentServer)",
65                <<"Protocol name <"<<defaultProtocol<<"> is undefined,  must be <default>, <one_sided> or <legacy>" ) ; 
66    }
67
68    template<>
69    CContextClient* CContextClient::getNew<CContextClient::oneSided>(CContext* parent, MPI_Comm intraComm, MPI_Comm interComm, CContext* parentServer)
70    { 
71      return new COneSidedContextClient(parent, intraComm, interComm, parentServer); 
72    }
73
74    template<>
75    CContextClient* CContextClient::getNew<CContextClient::legacy>(CContext* parent, MPI_Comm intraComm, MPI_Comm interComm, CContext* parentServer)
76    { 
77      return new CLegacyContextClient(parent, intraComm, interComm, parentServer); 
78    }
79
80    template<>
81    CContextClient* CContextClient::getNew<CContextClient::online>(CContext* parent, MPI_Comm intraComm, MPI_Comm interComm, CContext* parentServer)
82    { 
83      return new COnlineContextClient(parent, intraComm, interComm, parentServer); 
84    }
85
86    void CContextClient::computeLeader(int clientRank, int clientSize, int serverSize,
87                                       std::list<int>& rankRecvLeader,
88                                       std::list<int>& rankRecvNotLeader)
89    {
90      if ((0 == clientSize) || (0 == serverSize)) return;
91
92      if (clientSize < serverSize)
93      {
94        int serverByClient = serverSize / clientSize;
95        int remain = serverSize % clientSize;
96        int rankStart = serverByClient * clientRank;
97
98        if (clientRank < remain)
99        {
100          serverByClient++;
101          rankStart += clientRank;
102        }
103        else
104          rankStart += remain;
105
106        for (int i = 0; i < serverByClient; i++)
107          rankRecvLeader.push_back(rankStart + i);
108
109        rankRecvNotLeader.resize(0);
110      }
111      else
112      {
113        int clientByServer = clientSize / serverSize;
114        int remain = clientSize % serverSize;
115
116        if (clientRank < (clientByServer + 1) * remain)
117        {
118          if (clientRank % (clientByServer + 1) == 0)
119            rankRecvLeader.push_back(clientRank / (clientByServer + 1));
120          else
121            rankRecvNotLeader.push_back(clientRank / (clientByServer + 1));
122        }
123        else
124        {
125          int rank = clientRank - (clientByServer + 1) * remain;
126          if (rank % clientByServer == 0)
127            rankRecvLeader.push_back(remain + rank / clientByServer);
128          else
129            rankRecvNotLeader.push_back(remain + rank / clientByServer);
130        }
131      }
132    }
133
134  /*!
135  Get leading server in the group of connected server
136  \return ranks of leading servers
137  */
138  const std::list<int>& CContextClient::getRanksServerNotLeader(void) const
139  {
140    return ranksServerNotLeader;
141  }
142
143  /*!
144  Check if client connects to leading server
145  \return connected(true), not connected (false)
146  */
147  bool CContextClient::isServerNotLeader(void) const
148  {
149    return !ranksServerNotLeader.empty();
150  }
151
152  /*!
153  Get leading server in the group of connected server
154  \return ranks of leading servers
155  */
156  const std::list<int>& CContextClient::getRanksServerLeader(void) const
157  {
158    return ranksServerLeader;
159  }
160
161  /*!
162  Check if client connects to leading server
163  \return connected(true), not connected (false)
164  */
165  bool CContextClient::isServerLeader(void) const
166  {
167    return !ranksServerLeader.empty();
168  }
169
170
171
172}
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