LCOV - code coverage report
Current view: top level - legacy/ascend950/service/collective/alg/coll_alg_factory/alg_template/ccu_alg_template - ccu_temp_reduce_scatter_mesh_1D.cc (source / functions) Coverage Total Hit
Test: coverage.info Lines: 0.0 % 97 0
Test Date: 2026-07-28 12:11:00 Functions: 0.0 % 10 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 <ios>
      12              : #include <iostream>
      13              : 
      14              : #include "log.h"
      15              : 
      16              : #include "ccu_instruction_reduce_scatter_mesh1d.h"
      17              : #include "ccu_rank_group.h"
      18              : #include "ccu_ctx_creator_registry.h"
      19              : #include "ccu_context_reduce_scatter_mesh1d.h"
      20              : #include "ccu_temp_reduce_scatter_mesh_1D.h"
      21              : 
      22              : namespace Hccl {
      23              : 
      24              : static CcuInstRegister<CcuContextReduceScatterMesh1D> g_registrarReduceScatter(
      25              :     CcuInstType::CCU_REDUCE_SCATTER_MESH_1D_DIRECT);
      26              : 
      27            0 : CcuTempReduceScatterMesh1D::CcuTempReduceScatterMesh1D(const RankId virtualRank, const u32 tempRankSize,
      28              :                                    const std::vector<std::vector<RankId>> &tempVTopo,
      29            0 :                                    const std::map<RankId, u32>            &tempVirtRankMap)
      30            0 :     : CcuAlgTemplateBase(virtualRank, tempRankSize, tempVTopo, tempVirtRankMap)
      31              : {
      32            0 : }
      33              : 
      34            0 : CcuTempReduceScatterMesh1D::~CcuTempReduceScatterMesh1D()
      35              : {
      36            0 : }
      37              : 
      38            0 : void CcuTempReduceScatterMesh1D::InitReduceInfo(const ReduceOp &reduceOp, const DataType &dataType) {
      39            0 :     reduceOp_ = reduceOp;
      40            0 :     dataType_ = dataType;
      41            0 : }
      42              : 
      43            0 : HcclResult CcuTempReduceScatterMesh1D::CalcSliceInfo(const AllignInfo &allignInfo, const u64 dataSize,
      44              :                                             RankSliceInfo &sliceInfoVec)
      45              : {
      46            0 :     std::vector<SliceInfo> tmp(tempVTopo_.size());
      47            0 :     sliceInfoVec.resize(tempRankSize_, tmp);
      48            0 :     CHK_RET(CalcRsAgSliceInfoMesh(myRank_, tempRankSize_, allignInfo, dataSize, sliceInfoVec));
      49            0 :     return HcclResult::HCCL_SUCCESS;
      50            0 : }
      51              : 
      52            0 : HcclResult CcuTempReduceScatterMesh1D::CalcRes(AlgTempResReq &tempResReq)
      53              : {
      54            0 :     tempResReq.queNum = 1;
      55            0 :     tempResReq.streamNum = tempResReq.queNum;
      56            0 :     HCCL_INFO("[CalcRes] tempResReq.queNum[%u]", tempResReq.queNum);
      57            0 :     CHK_RET(CalcResLinksMesh(myRank_, tempRankSize_, tempVTopo_, linkNumBtwPeers_, tempResReq));
      58            0 :     return HcclResult::HCCL_SUCCESS;
      59              : }
      60              : 
      61            0 : uint64_t CcuTempReduceScatterMesh1D::GetMaxSliceSize() const
      62              : {
      63            0 :     return UB_MAX_DATA_SIZE;
      64              : }
      65              : 
      66              : /* CCU数据类型校验规则
      67              :  * Reduce算子:
      68              :  *      高精度模式,当dataType==outputDataType时,可选类型为FP32、FP16、BF16、UINT8、INT16、INT32;
      69              :  *      低精度模式,当dataType!=outputDataType时,dataType可选范围HIF8、E4M3、E5M2、INT8;outputDataType可选范围FP32、FP16、BF16;
      70              :  * 非Reduce算子:任意数据类型,dataType==outputDataType即可。
      71              :  */
      72            0 : void CcuTempReduceScatterMesh1D::CheckCcuDataType() const
      73              : {
      74            0 :     if (op_.opType == OpType::REDUCESCATTER && op_.reduceOp == ReduceOp::SUM) {
      75            0 :         if (op_.dataType == op_.outputDataType) {
      76              :             // reduce算子高精度模式
      77            0 :             HCCL_INFO("HIGH PRECISION");
      78              :             set<DataType> highPrecisionSupportedInputDataType
      79              :                 = {DataType::FP32,  DataType::FP16,  DataType::BFP16, DataType::UINT8,
      80            0 :                    DataType::UINT8, DataType::INT16, DataType::INT32};
      81            0 :             if (highPrecisionSupportedInputDataType.count(op_.dataType) == 0) {
      82            0 :                 THROW<CcuApiException>(StringFormat("Unsupported DataType [%s] For OpType [%s].",
      83            0 :                     op_.dataType.Describe().c_str(), op_.opType.Describe().c_str()));
      84              :             }
      85            0 :         } else {
      86              :             // reduce算子的低精度模式
      87            0 :             HCCL_INFO("LOW PRECISION");
      88              :             set<DataType> lowPrecisionSupportedInputDataType
      89            0 :                 = {DataType::HIF8,  DataType::FP8E4M3,  DataType::FP8E5M2, DataType::INT8};
      90              :             set<DataType> lowPrecisionSupportedOutputDataType
      91            0 :                 = {DataType::FP32,  DataType::FP16,  DataType::BFP16};
      92            0 :             if (lowPrecisionSupportedInputDataType.count(op_.dataType) == 0) {
      93            0 :                 THROW<CcuApiException>(StringFormat("Unsupported Input DataType [%s] For OpType [%s].",
      94            0 :                     op_.dataType.Describe().c_str(), op_.opType.Describe().c_str()));
      95              :             }
      96            0 :             if (lowPrecisionSupportedOutputDataType.count(op_.outputDataType) == 0) {
      97            0 :                 THROW<CcuApiException>(StringFormat("Unsupported Output DataType [%s] For OpType [%s].",
      98            0 :                     op_.outputDataType.Describe().c_str(), op_.opType.Describe().c_str()));
      99              :             }
     100            0 :         }
     101              :     } else {
     102            0 :         if (op_.dataType != op_.outputDataType) {
     103            0 :             THROW<CcuApiException>(StringFormat("Inconsistent DataType[%s]--OutputDataType[%s] for OpType[%s].",
     104            0 :                 op_.dataType.Describe().c_str(), op_.outputDataType.Describe().c_str(), op_.opType.Describe().c_str()));
     105              :         }
     106              :     }
     107            0 :     HCCL_INFO("CheckCcuDataType Success!");
     108            0 : }
     109              : 
     110              : 
     111            0 : HcclResult CcuTempReduceScatterMesh1D::Run(const TempFuncs &tempFuncs, const RankSliceInfo &sliceInfoVec,
     112              :                                           const BuffInfo &buffInfo, const ResLinks &tempLinks,
     113              :                                           std::vector<InsQuePtr> &tempInsQues)
     114              : {
     115            0 :     CHK_PRT_RET(tempInsQues.empty(),
     116              :         HCCL_ERROR("[CcuTempReduceScatterMesh1D] empty queue"), HcclResult::HCCL_E_INTERNAL);
     117            0 :     CHK_PTR_NULL(tempInsQues[0]);
     118            0 :     opMode_ = tempFuncs.opMode;
     119            0 :     buffInfo_ = buffInfo;
     120            0 :     CcuInstructionReduceScatterMesh1D ccuInsReduceScatterMesh1D;
     121            0 :     std::vector<uint64_t> dimSize;
     122            0 :     dimSize.push_back(tempRankSize_);
     123              : 
     124              :     uint64_t inputAddr;
     125              :     uint64_t outputAddr;
     126              :     uint64_t offset;
     127            0 :     if (op_.outputDataType == DataType::INVALID) {
     128            0 :         op_.outputDataType = op_.dataType;
     129              :     }
     130              : 
     131            0 :     uint64_t expandingtimes = DataTypeSizeGet(op_.outputDataType) / DataTypeSizeGet(op_.dataType); // 膨胀的倍数是输出类型/输入类型
     132            0 :     HCCL_INFO("[CcuTempReduceScatterMesh1D] dataType outputDatatype %s %s", op_.dataType.Describe().c_str(),
     133              :                op_.outputDataType.Describe().c_str());
     134            0 :     CheckCcuDataType();
     135            0 :     if (opMode_ == OpMode::OPBASE) {
     136            0 :         if (tempFuncs.isForepart) {
     137            0 :             inputAddr = BufferTypeToAddr(tempFuncs.usrData.usrInSlices[myRank_].GetType());
     138              :             // 需要加上UserIn的偏移,包含了loop偏移和rank偏移
     139            0 :             offset = tempFuncs.usrData.usrInSlices[myRank_].GetOffset();
     140              :         } else {
     141            0 :             inputAddr = BufferTypeToAddr(buffInfo_.inBuffType) + buffInfo_.inBuffBaseOff;
     142              :             // 从inBuff获取数据,只需要加rank偏移
     143            0 :             offset = sliceInfoVec[myRank_][0].offset;
     144              :         }
     145            0 :         if (tempFuncs.isBottom) {
     146            0 :             outputAddr = BufferTypeToAddr(tempFuncs.usrData.usrOutSlices[0].GetType())
     147            0 :                 + (tempFuncs.usrData.usrOutSlices[0].GetOffset()) * expandingtimes;
     148              :         } else {
     149            0 :             outputAddr = BufferTypeToAddr(buffInfo_.outBuffType) + buffInfo_.outBuffBaseOff * expandingtimes;
     150              :         }
     151              :     } else {
     152              :         // 图模式没有tempFuncs.usrData,直接通过buffInfo_来获取输入输出地址
     153            0 :         inputAddr  = BufferTypeToAddr(buffInfo_.inBuffType) + buffInfo_.inBuffBaseOff;
     154            0 :         outputAddr = BufferTypeToAddr(buffInfo_.outBuffType) + buffInfo_.outBuffBaseOff + (tempFuncs.usrData.usrOutSlices[0].GetOffset());
     155            0 :         offset     = tempFuncs.usrData.usrInSlices[myRank_].GetOffset();
     156              :     }
     157            0 :     uint64_t sliceSize = sliceInfoVec[myRank_][0].size;  // 获取本rank需要处理的数据量
     158              :     uint64_t token;
     159            0 :     CHK_RET(GetToken(op_, token));
     160            0 :     ccuInsReduceScatterMesh1D.Init(static_cast<uint32_t>(myRank_), inputAddr, outputAddr, sliceSize, offset, token, op_, tempVTopo_);
     161            0 :     HCCL_INFO("[CcuTempReduceScatterMesh1D] Run Init: myRank_[%d], dimSize[%llu], inputAddr[%llu],"\
     162              :         "outputAddr[%llu], sliceSize[%llu], offset[%llu]",
     163              :         myRank_, dimSize[0], inputAddr, outputAddr, sliceSize, offset);
     164              : 
     165            0 :     std::vector<LinkData> links;
     166              : 
     167            0 :     for (auto &pair : tempLinks) {
     168            0 :         if (pair.second.empty()) {
     169            0 :             continue;
     170              :         }
     171            0 :         links.push_back(pair.second[0]);
     172              :     }
     173            0 :     HCCL_INFO("[CcuTempReduceScatterMesh1D] links.size[%zu]", links.size());
     174            0 :     ccuInsReduceScatterMesh1D.SetLinks(links);
     175            0 :     RankGroup rankGroup;
     176              : 
     177            0 :     for (auto &peer : tempVTopo_[0]) {
     178            0 :         rankGroup.AddRank(peer);
     179              :     }
     180            0 :     u32 cntCkeNum = 3;
     181            0 :     ccuInsReduceScatterMesh1D.SetCntCkeNum(cntCkeNum);
     182            0 :     ccuInsReduceScatterMesh1D.SetRankGroup(rankGroup);
     183            0 :     ccuInsReduceScatterMesh1D.Describe();
     184            0 :     tempInsQues[0]->Append(std::move(std::make_unique<CcuInstructionReduceScatterMesh1D>(ccuInsReduceScatterMesh1D)));
     185              : 
     186            0 :     return HcclResult::HCCL_SUCCESS;
     187            0 : }
     188              : 
     189            0 : HcclResult CcuTempReduceScatterMesh1D::GenExtIns(const RankGraph *rankGraph, const TemplateInfo &tmpInfo,
     190              :         const std::vector<InsQuePtr> &tempInsQues) const
     191              : {
     192              :     (void)rankGraph;
     193              :     (void)tmpInfo;
     194              :     (void)tempInsQues;
     195              :     // 框架解析aicpuIns,算法的algCompnnetLite在device侧直接调用Run()
     196            0 :     return HcclResult::HCCL_SUCCESS;
     197              : }
     198              : 
     199              : } // namespace Hccl
        

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