LCOV - code coverage report
Current view: top level - legacy/ascend950/service/collective/alg/coll_alg_factory/alg_ccu_context/reduce_scatter - ccu_context_reduce_scatter_mesh1d_detour.cc (source / functions) Coverage Total Hit
Test: coverage.info Lines: 0.0 % 210 0
Test Date: 2026-07-28 12:11:00 Functions: 0.0 % 5 0

            Line data    Source code
       1              : /**
       2              :  * Copyright (c) 2025 Huawei Technologies Co., Ltd.
       3              :  * This program is free software, you can redistribute it and/or modify it under the terms and conditions of
       4              :  * CANN Open Software License Agreement Version 2.0 (the "License").
       5              :  * Please refer to the License for details. You may not use this file except in compliance with the License.
       6              :  * THIS SOFTWARE IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OF ANY KIND, EITHER EXPRESS OR IMPLIED,
       7              :  * INCLUDING BUT NOT LIMITED TO NON-INFRINGEMENT, MERCHANTABILITY, OR FITNESS FOR A PARTICULAR PURPOSE.
       8              :  * See LICENSE in the root of the software repository for the full text of the License.
       9              :  */
      10              : 
      11              : #include "ccu_context_reduce_scatter_mesh1d_detour.h"
      12              : #include "ccu_instruction_reduce_scatter_mesh1d_detour.h"
      13              : 
      14              : namespace Hccl {
      15              : 
      16              : constexpr int INPUT_XN_ID  = 0;
      17              : constexpr int OUTPUT_XN_ID = 1;
      18              : constexpr int TOKEN_XN_ID  = 2;
      19              : constexpr int CKE_IDX_0    = 0;
      20              : constexpr int CKE_IDX_1    = 1;
      21              : constexpr int CKE_IDX_2    = 2;
      22              : constexpr int CKE_IDX_3    = 3;
      23              : 
      24            0 : CcuContextReduceScatterMeshDetour1D::CcuContextReduceScatterMeshDetour1D(const CcuCtxArg       &arg,
      25              :                                                      const std::vector<CcuTransport *> &transports,
      26            0 :                                                      const CcuTransportGroup           &group)
      27            0 :     : CcuContextAlgBase(arg, transports, group)
      28              : {
      29            0 :     const CcuCtxArgReduceScatterMeshDetour1D *ctxArg = dynamic_cast<const CcuCtxArgReduceScatterMeshDetour1D *>(&arg);
      30            0 :     if (ctxArg == nullptr) {
      31            0 :         THROW<NullPtrException>(StringFormat("CcuContextReduceScatterMeshDetour1D::ctxArg ptr is null"));
      32              :     }
      33            0 :     rankId_ = ctxArg->rankId_;
      34            0 :     rankSize_ = ctxArg->dimSize_[0];
      35            0 :     dataType_ = ctxArg->op_.dataType;
      36            0 :     outputDataType_ = ctxArg->op_.outputDataType;
      37            0 :     if (outputDataType_ == DataType::INVALID) {
      38            0 :         outputDataType_ = dataType_;
      39            0 :         HCCL_INFO("[CcuContextReduceScatterMeshDetour1D] outputDataType is [INVALID], set outputDataType to[%s]",
      40              :             outputDataType_.Describe().c_str());
      41              :     }
      42            0 :     reduceOp_ = ctxArg->op_.reduceOp;
      43            0 :     singleTransportSize_ = ctxArg->singleTransportSize_;
      44            0 :     detourPathNum_ = ctxArg->detourPathNum_;
      45            0 :     pathNumPerPeer_ = ctxArg->pathNumPerPeer_;
      46            0 :     HCCL_INFO("[CcuContextReduceScatterMeshDetour1D] Init, CtxArgs are rankId[%u], rankSize[%u], dataType[%s], "
      47              :         "outputDataType[%s], reduceOp[%s]", rankId_, rankSize_, dataType_.Describe().c_str(),
      48              :         outputDataType_.Describe().c_str(), reduceOp_.Describe().c_str());
      49            0 :     if (transports.size() == 0 || transports.size() < rankSize_ - 1) {
      50            0 :         THROW<NullPtrException>(StringFormat("CcuContextReduceScatterMeshDetour1D transports is empty or size is less"));
      51              :     }
      52            0 :     HCCL_INFO("[CcuContextReduceScatterMeshDetour1D] transport.size[%zu]", transports.size());
      53            0 :     for (uint32_t i = 0; i < pathNumPerPeer_; i++) {
      54              :         // 到每个对端有pathNum个transport,故detourTransport中共有pathNum组
      55            0 :         detourTransports_.emplace_back(std::vector<CcuTransport*>());
      56              :     }
      57            0 :     uint64_t directPathNum = pathNumPerPeer_ - detourPathNum_;
      58            0 :     for (uint64_t i = 0; i < directPathNum; i++) {
      59              :         // 有pathNum-detourPathNum组的直连链路,每组重复
      60            0 :         for (uint32_t j = 0; j < rankSize_ - 1; j++) {
      61            0 :             detourTransports_[i].emplace_back(transports[j]);
      62              :         }
      63            0 :         HCCL_INFO("[CcuContextReduceScatterMeshDetour1D] Add directTransports[%llu], size[%zu]", i, detourTransports_[i].size());
      64              :     }
      65            0 :     for (uint32_t i = 0; i < detourPathNum_; i++) {
      66            0 :         for (uint32_t j = 0; j < rankSize_ - 1; j++) {
      67            0 :             detourTransports_[i + directPathNum].emplace_back(transports[(i + 1) * (rankSize_ - 1) + j]);
      68            0 :             detourTransports_[i + directPathNum].emplace_back(transports[(i + 1) * (rankSize_ - 1) + j + detourPathNum_ * (rankSize_ - 1)]);
      69            0 :             HCCL_INFO("detourTransports_ emplace_back sendLink[%u], recvLink[%u]",
      70              :                 (i + 1) * (rankSize_ - 1) + j, (i + 1) * (rankSize_ - 1) + j + detourPathNum_ * (rankSize_ - 1));
      71              :         }
      72              :     }
      73            0 : }
      74              : 
      75            0 : void CcuContextReduceScatterMeshDetour1D::CreateMultiOpReduceDetour(DataType &dataType, DataType &outputDataType, ReduceOp &opType)
      76              : {
      77            0 :     moConfig.loopCount = CcuRep::CCU_MS_DEFAULT_LOOP_COUNT;
      78            0 :     moConfig.msInterleave = pathNumPerPeer_ * rankSize_;
      79            0 :     if (moRes.executor.size() == 0) {
      80            0 :         moRes.executor = CreateBlockExecutor(moConfig.loopCount);
      81            0 :         moRes.maskSignal = CreateBlockMaskSignal(moConfig.loopCount);
      82            0 :         moRes.ccuBuffer = CreateBlockCcuBuffer(moConfig.loopCount * moConfig.msInterleave);
      83              :     }
      84            0 :     std::string loopType = "reduceDetour";
      85            0 :     if (registeredLoop.find(loopType) != registeredLoop.end()) {
      86            0 :         return;
      87              :     }
      88            0 :     CcuRep::LoopBlock lb(this, loopType + "_loop");
      89              :     {
      90              :         // loopblock的形参
      91            0 :         std::vector<CcuRep::Memory> src;
      92            0 :         std::vector<CcuRep::Memory> dst;
      93            0 :         std::vector<CcuRep::Variable> lengths;
      94            0 :         for (uint32_t i = 0; i < pathNumPerPeer_; i++) {
      95            0 :             lengths.emplace_back(CreateVariable());
      96            0 :             dst.emplace_back(CreateMemory());
      97            0 :             for (uint32_t j = 0; j < rankSize_; j++) {
      98            0 :                 src.emplace_back(CreateMemory());
      99              :             }
     100              :         }
     101              : 
     102            0 :         lb(src, dst, lengths);
     103            0 :         std::vector<std::vector<CcuRep::CcuBuffer>> bufs;
     104            0 :         bufs.resize(pathNumPerPeer_);
     105            0 :         std::vector<CcuRep::MaskSignal> sems;
     106              : 
     107            0 :         for (uint32_t i = 0; i < pathNumPerPeer_; i++) {
     108            0 :             for (uint32_t j = 0; j < rankSize_; j++) {
     109            0 :                 bufs[i].emplace_back(moRes.ccuBuffer[i * rankSize_ + j]);
     110              :             }
     111            0 :             sems.emplace_back(moRes.maskSignal[i]);
     112              :         }
     113              : 
     114              :         // 先读远端直连的到本地MS
     115            0 :         uint64_t directPathNum = pathNumPerPeer_ - detourPathNum_;
     116            0 :         for (uint32_t i = 0; i < directPathNum; i++) {
     117            0 :             for (uint32_t j = 0; j < detourTransports_[i].size(); j++) {
     118            0 :                 if (detourTransports_[i][j] == nullptr) {
     119            0 :                     THROW<CcuApiException>("transport is nullptr");
     120              :                 }
     121            0 :                 Read(*detourTransports_[i][j], bufs[i][j], src[i * rankSize_ + j], lengths[i], sems[i], 1 << j);
     122              :             }
     123              :         }
     124              :         // 再读远端绕路的到本地MS
     125            0 :         for (uint32_t i = directPathNum; i < pathNumPerPeer_; i++) {
     126            0 :             for (uint32_t j = 0; j < rankSize_ - 1; j++) {
     127            0 :                 if (detourTransports_[i][j * 2 + 1] == nullptr) { // j * 2 + 1是recvOnly Link
     128            0 :                     THROW<CcuApiException>("transport is nullptr");
     129              :                 }
     130            0 :                 Read(*detourTransports_[i][j * 2 + 1], bufs[i][j], src[i * rankSize_ + j], lengths[i], sems[i], 1 << j);
     131              :             }
     132              :         }
     133              : 
     134            0 :         for (uint32_t i = 0; i < pathNumPerPeer_; i++) {
     135            0 :             LocalCopy(bufs[i][rankSize_ - 1], src[i * rankSize_ + rankSize_ - 1], lengths[i], sems[i], 1 << (rankSize_ - 1));
     136              :         }
     137            0 :         for (uint32_t i = 0; i < pathNumPerPeer_; i++) {
     138            0 :             LocalWait(sems[i], (1 << rankSize_) - 1);
     139              :         }
     140            0 :         if (rankSize_ > 1) {
     141            0 :             for (uint32_t i = 0; i < pathNumPerPeer_; i++) {
     142            0 :                 LocalReduce(bufs[i], rankSize_, dataType, outputDataType, opType, sems[i], lengths[i]);
     143            0 :                 LocalWait(sems[i]);
     144              :             }
     145              :         }
     146            0 :         for (uint32_t i = 0; i < pathNumPerPeer_; i++) {
     147            0 :             LocalCopy(dst[i], bufs[i][0], lengths[i], sems[i]);
     148            0 :             LocalWait(sems[i]);
     149              :         }
     150            0 :     }
     151            0 :     registeredLoop.insert(loopType);
     152            0 :     return;
     153            0 : }
     154              : 
     155            0 : void CcuContextReduceScatterMeshDetour1D::GroupReduceDetour(std::vector<CcuRep::Memory> &src,
     156              :     std::vector<CcuRep::Memory> &dst, DataType &dataType, DataType &outputDataType, ReduceOp &opType)
     157              : {
     158            0 :     CreateMultiOpReduceDetour(dataType, outputDataType, opType);
     159            0 :     uint32_t interLeave = 8;
     160              : 
     161            0 :     CCU_IF(iterNum_ != 0) {
     162            0 :         CcuRep::Variable loopParam = CreateVariable();
     163            0 :         CcuRep::Variable paraCfg = CreateVariable();
     164            0 :         CcuRep::Variable offsetCfg = CreateVariable();
     165              : 
     166            0 :         loopParam = CcuRep::GetLoopParam(0, singleTransportSize_ * moConfig.loopCount, 0);  // 下次迭代的偏移是单次总搬运量*loopNum
     167            0 :         loopParam += iterNum_;  // 加上loop的迭代次数构成完整loop参数
     168            0 :         paraCfg = CcuRep::GetParallelParam(moConfig.loopCount - 1, 0, 1);  // loop固定展开到128个
     169            0 :         offsetCfg = CcuRep::GetOffsetParam(singleTransportSize_, interLeave, pathNumPerPeer_);  // 下一个loop偏移量
     170            0 :         auto lc = Loop("reduceDetour_loop")(src, dst, lengths_);
     171            0 :         LoopGroup({lc}, {loopParam}, paraCfg, offsetCfg);
     172            0 :     }
     173            0 :     return;
     174            0 : }
     175              : 
     176              : 
     177            0 : void CcuContextReduceScatterMeshDetour1D::Algorithm()
     178              : {
     179            0 :     HCCL_INFO("[CcuContextReduceScatterMeshDetour1D] ReduceScatterMeshDetour1D run");
     180            0 :     uint16_t selfBit = 1 << rankId_;
     181            0 :     uint16_t allBit  = ((1 << rankSize_) - 1) & (~(1 << rankId_));
     182            0 :     output_.push_back(CreateVariable());
     183              :     // 初始化资源
     184            0 :     uint16_t transportIdx = 0;
     185              :     // 按照rank号从小到大遍历transports,遇到本rank就填充本地资源,否则依次取远端资源,要求给框架返回的Link同样是按顺序排列的
     186            0 :     for (uint64_t peerId = 0; peerId < rankSize_; peerId++) {
     187            0 :         if (peerId == rankId_) {
     188            0 :             input_.push_back(CreateVariable());
     189            0 :             token_.push_back(CreateVariable());
     190              :         } else {
     191            0 :             HCCL_INFO("[CcuContextReduceScatterMeshDetour1D] MyRank[%u], PeerId[%llu], TransportId[%u]",
     192              :                 rankId_, peerId, transportIdx);
     193            0 :             CHK_PRT_RET(detourTransports_[0][transportIdx] == nullptr,
     194              :                 HCCL_ERROR("[CcuContextReduceScatterMeshDetour1D] Algorithm transport ptr is null"),);
     195            0 :             input_.push_back(CreateVariable((*detourTransports_[0][transportIdx]), INPUT_XN_ID));
     196            0 :             token_.push_back(CreateVariable((*detourTransports_[0][transportIdx]), TOKEN_XN_ID));
     197            0 :             transportIdx++;
     198              :         }
     199              :     }
     200            0 :     offset_ = CreateVariable();
     201            0 :     iterNum_ = CreateVariable();
     202            0 :     tailOffset_ = CreateVariable();
     203            0 :     tailSize_ = CreateVariable();
     204            0 :     groupOpSize_ = CreateGroupOpSize();
     205            0 :     for (uint32_t i = 0; i < pathNumPerPeer_; i++) {
     206            0 :         lengths_.emplace_back(CreateVariable());
     207              :     }
     208              : 
     209            0 :     Load(input_[rankId_]);
     210            0 :     Load(output_[0]);
     211            0 :     Load(token_[rankId_]);
     212            0 :     Load(offset_);
     213            0 :     Load(iterNum_);
     214            0 :     Load(tailOffset_);
     215            0 :     Load(tailSize_);
     216            0 :     Load(groupOpSize_);
     217            0 :     for (uint32_t i = 0; i < pathNumPerPeer_; i++) {
     218            0 :         Load(lengths_[i]);
     219              :     }
     220              : 
     221            0 :     for (auto &t : detourTransports_[0]) {
     222            0 :         WriteVariableWithSignal(*t, input_[rankId_], INPUT_XN_ID, CKE_IDX_1, selfBit);
     223            0 :         WriteVariableWithSignal(*t, token_[rankId_], TOKEN_XN_ID, CKE_IDX_3, selfBit);
     224              :     }
     225              : 
     226            0 :     GroupWait(*transportGroup, CKE_IDX_1, allBit);
     227            0 :     GroupWait(*transportGroup, CKE_IDX_3, allBit);
     228              :     // 如果是4p*2场景,template里可以都传4k进来,transport和length通过<直连4k>, <直连4k>, <绕路4k>这样构造达成数据量2:1的效果
     229              : 
     230            0 :     std::vector<CcuRep::Memory> reduceSrc;
     231            0 :     std::vector<CcuRep::Memory> reduceDst;
     232              : 
     233              :     // 为每个直连或绕路transport分别准备reduceSrc与reduceDst
     234            0 :     for (uint32_t i = 0; i < pathNumPerPeer_; i++) {
     235            0 :         reduceDst.emplace_back(CreateMemory());
     236            0 :         for (uint32_t j = 0; j < rankSize_; j++) {
     237            0 :             reduceSrc.emplace_back(CreateMemory());
     238              :         }
     239              :     }
     240              : 
     241              :     // reduceDst填充
     242            0 :     reduceDst[0].addr = output_[0];
     243              :     // reduceDst[0].addr += offset_;
     244            0 :     reduceDst[0].token = token_[rankId_];
     245            0 :     for (uint32_t i = 1; i < pathNumPerPeer_; i++) {
     246            0 :         reduceDst[i].addr = reduceDst[i - 1].addr + lengths_[i - 1];
     247            0 :         reduceDst[i].token = token_[rankId_];
     248              :     }
     249              :     // 直连transport的reduceSrc填充
     250            0 :     uint32_t srcId = 0;
     251            0 :     uint32_t curId = 0;
     252            0 :     for (uint32_t rankIdx = 0; rankIdx < rankSize_; rankIdx++) {
     253            0 :         if (rankIdx != rankId_) {
     254            0 :             curId = srcId;
     255            0 :             srcId++;
     256              :         } else {
     257            0 :             curId = rankSize_ - 1;
     258              :         }
     259            0 :         reduceSrc[curId].addr = input_[rankIdx];
     260            0 :         reduceSrc[curId].token = token_[rankIdx];
     261            0 :         reduceSrc[curId].addr += offset_;
     262              :     }
     263              :     // 绕路transport的reduceSrc相比直连src再做偏移
     264            0 :     for (uint32_t i = 1; i < pathNumPerPeer_; i++) {
     265            0 :         for (uint32_t j = 0; j < rankSize_; j++) {
     266            0 :             reduceSrc[i * rankSize_ + j].addr = reduceSrc[(i - 1) * rankSize_ + j].addr + lengths_[i - 1];
     267            0 :             reduceSrc[i * rankSize_ + j].token = reduceSrc[(i - 1) * rankSize_ + j].token;
     268              :         }
     269              :     }
     270              : 
     271            0 :     GroupReduceDetour(reduceSrc, reduceDst, dataType_, outputDataType_, reduceOp_);
     272              : 
     273              :     // 余下的尾块用直连Reduce
     274            0 :     std::vector<CcuRep::Memory> tailSrc;
     275            0 :     CcuRep::Memory tailDst = CreateMemory();
     276            0 :     for (uint32_t i = 0; i < rankSize_; i++) {
     277            0 :         tailSrc.emplace_back(CreateMemory());
     278              :     }
     279            0 :     tailDst.addr = output_[0];
     280              :     // tailDst.addr += offset_;
     281            0 :     tailDst.addr += tailOffset_;
     282            0 :     tailDst.token = token_[rankId_];
     283            0 :     srcId = 0;
     284            0 :     curId = 0;
     285            0 :     for (uint32_t rankIdx = 0; rankIdx < rankSize_; rankIdx++) {
     286            0 :         if (rankIdx != rankId_) {
     287            0 :             curId = srcId;
     288            0 :             srcId++;
     289              :         } else {
     290            0 :             curId = rankSize_ - 1;
     291              :         }
     292            0 :         tailSrc[curId].addr = input_[rankIdx];
     293            0 :         tailSrc[curId].addr += offset_;
     294            0 :         tailSrc[curId].addr += tailOffset_;
     295            0 :         tailSrc[curId].token = token_[rankIdx];
     296              :     }
     297              : 
     298            0 :     GroupReduce(detourTransports_[0], tailDst, tailSrc, groupOpSize_, dataType_, outputDataType_, reduceOp_);
     299              : 
     300            0 :     for (auto t : detourTransports_[0]) {
     301            0 :         RemotePost(*t, CKE_IDX_0, selfBit);
     302              :     }
     303            0 :     GroupWait(*transportGroup, CKE_IDX_0, allBit);
     304              : 
     305            0 :     HCCL_INFO("[CcuContextReduceScatterMeshDetour1D] ReduceScatterMeshDetour1D end");
     306            0 :     return;
     307            0 : }
     308              : 
     309            0 : std::vector<uint64_t> CcuContextReduceScatterMeshDetour1D::GeneArgs(const CcuTaskArg &arg)
     310              : {
     311            0 :     const CcuTaskArgReduceScatterMeshDetour1D *taskArg = dynamic_cast<const CcuTaskArgReduceScatterMeshDetour1D *>(&arg);
     312            0 :     if (taskArg == nullptr) {
     313            0 :         THROW<NullPtrException>(StringFormat("CcuContextReduceScatterMeshDetour1D::taskArg ptr is null"));
     314              :     }
     315            0 :     uint64_t inputAddr   = taskArg->inputAddr_;
     316            0 :     uint64_t outputAddr  = taskArg->outputAddr_;
     317            0 :     uint64_t tokenInfo   = taskArg->token_;
     318            0 :     uint64_t offset      = taskArg->offset_;
     319            0 :     uint64_t iterNum     = taskArg->iterNum_;
     320            0 :     uint64_t tailOffset  = taskArg->tailOffset_;
     321            0 :     uint64_t tailSize    = taskArg->tailSize_;
     322            0 :     auto     goSize      = CalGoSize(tailSize); // ***
     323              : 
     324            0 :     HCCL_INFO("[CcuContextReduceScatterMeshDetour1D] GeneArgs, taskArg are inputAddr[%llu], outputAddr[%llu], "
     325              :         "offset[%llu], iterNum[%llu], tailOffset[%llu], tailSize[%llu]",
     326              :         inputAddr, outputAddr, offset, iterNum, tailOffset, tailSize);
     327              :     std::vector<uint64_t> sqeArgs = {inputAddr, outputAddr, tokenInfo, offset, iterNum, tailOffset, tailSize,
     328            0 :                                      goSize[0], goSize[1], goSize[2], goSize[3]};
     329            0 :     for (auto len : taskArg->lengths_) {
     330            0 :         HCCL_INFO("get lengths");
     331            0 :         sqeArgs.emplace_back(len);
     332              :     }
     333            0 :     return sqeArgs;
     334            0 : }
     335              : 
     336              : }
        

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