LCOV - code coverage report
Current view: top level - legacy/ascend910/algorithm/base/alg_template/temp_reduce_scatter - reduce_scatter_mesh_mix_single_stream.cc (source / functions) Coverage Total Hit
Test: coverage.info Lines: 8.0 % 113 9
Test Date: 2026-07-28 12:11:00 Functions: 50.0 % 8 4

            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 "reduce_scatter_mesh_mix_single_stream.h"
      12              : #include "alg_template_register.h"
      13              : 
      14              : namespace hccl {
      15            1 : ReduceScatterMeshMixSingleStream::ReduceScatterMeshMixSingleStream(const HcclDispatcher dispatcher)
      16            1 :     : AlgTemplateBase(dispatcher), reduceAttr_(0), streamIndex_(0)
      17              : {
      18            1 : }
      19              : 
      20            2 : ReduceScatterMeshMixSingleStream::~ReduceScatterMeshMixSingleStream()
      21              : {
      22            2 : }
      23              : 
      24            1 : HcclResult ReduceScatterMeshMixSingleStream::Prepare(u64 reduceAttrBitMap, u32 streamIndex)
      25              : {
      26            1 :     reduceAttr_ = reduceAttrBitMap;
      27            1 :     streamIndex_ = streamIndex;
      28            1 :     return HCCL_SUCCESS;
      29              : }
      30              : 
      31            0 : HcclResult ReduceScatterMeshMixSingleStream::RunSourceReducer(const LINK &link, const std::vector<Slice> &txSlices,
      32              :     const std::vector<Slice> &dstSlices)
      33              : {
      34              :     // 发送inputmem
      35            0 :     std::vector<SenderMemoryInfo> txMems;
      36            0 :     for (u64 i = 0; i < txSlices.size(); i++) {
      37            0 :         DeviceMem srcMem = inputMem_.range(txSlices[i].offset, txSlices[i].size);
      38            0 :         HCCL_DEBUG("[ReduceScatterMeshMixSingleStream][RunSourceReducer] send inputmem range[%llu], size[%llu] "
      39              :             "tx dstmem offset[%llu]", txSlices[i].offset, txSlices[i].size, dstSlices[i].offset);
      40            0 :         txMems.emplace_back(SenderMemoryInfo{baseOffset_ + dstSlices[i].offset, srcMem});
      41            0 :     }
      42              : 
      43            0 :     CHK_RET(senderInfo_->run(link, txMems, stream_));
      44            0 :     return HCCL_SUCCESS;
      45            0 : }
      46              : 
      47            0 : HcclResult ReduceScatterMeshMixSingleStream::RunDestReducer(const LINK &link, const std::vector<Slice> &rxSlices,
      48              :     const std::vector<Slice> &dstSlices)
      49              : {
      50              :     // 使用scratchmem接收数据,并同inputmem数据做reduce
      51            0 :     std::vector<ReducerMemoryInfo> rxReduceMems;
      52            0 :     for (u64 i = 0; i < rxSlices.size(); i++) {
      53            0 :         DeviceMem dstMem = inputMem_.range(rxSlices[i].offset, rxSlices[i].size);
      54            0 :         DeviceMem srcMem = scratchMem_.range(dstSlices[i].offset, dstSlices[i].size);
      55            0 :         HCCL_DEBUG("[ReduceScatterMeshMixSingleStream][RunDestReducer] rcv offset[%llu], size[%llu] ,then reduce with "
      56              :             "offset[%llu] size[%llu] ",
      57              :             dstSlices[i].offset, dstSlices[i].size, rxSlices[i].offset, rxSlices[i].size);
      58            0 :         rxReduceMems.emplace_back(ReducerMemoryInfo{baseOffset_ + rxSlices[i].offset, dstMem, dstMem, srcMem});
      59            0 :     }
      60              : 
      61            0 :     CHK_RET(reducerInfo_->run(dispatcher_, link, rxReduceMems, stream_));
      62            0 :     return HCCL_SUCCESS;
      63            0 : }
      64              : 
      65            0 : HcclResult ReduceScatterMeshMixSingleStream::RunReduceScatter(const u32 rank, const u32 rankSize,
      66              :     const std::vector<LINK> &links, const std::vector<Slice> &inputSlices, const std::vector<Slice> &scratchSlices)
      67              : {
      68            0 :     u32 interRankSize = inputSlices.size() / rankSize;
      69            0 :     std::vector<u32> txRankOpOrder;
      70            0 :     std::vector<u32> rxRankOpOrder;
      71              :     // 计算默认的每轮接收的源rank和发送的目的rank
      72            0 :     for (u32 round = 1; round < rankSize; round++) {
      73            0 :         u32 srcRank = ForwardRank(rank, rankSize, round);
      74            0 :         u32 dstRank = BackwardRank(rank, rankSize, round);
      75            0 :         HCCL_INFO("<multiDie>RunReduceScatter:srcRank[%u] dstRank[%u]", srcRank, dstRank);
      76            0 :         rxRankOpOrder.push_back(srcRank);
      77            0 :         txRankOpOrder.push_back(dstRank);
      78              :     }
      79              : 
      80            0 :     HcclResult ret = HCCL_SUCCESS;
      81            0 :     for (u32 round = 1; round < rankSize; round++) {
      82              :         // 不同的stream依次轮训默认的顺序数组
      83            0 :         u32 orderIndex = (round + streamIndex_ - 1) % (rankSize - 1);
      84            0 :         u32 srcRank = rxRankOpOrder[orderIndex];
      85            0 :         s32 dstRank = txRankOpOrder[orderIndex];
      86            0 :         CHK_SMART_PTR_NULL(links[srcRank]);
      87            0 :         HCCL_INFO("rank[%u] will tx_ack to rank[%u]", rank, srcRank);
      88            0 :         ret = links[srcRank]->TxAck(stream_);
      89            0 :         CHK_PRT_RET(ret != HCCL_SUCCESS,
      90              :             HCCL_ERROR("[Run][ReduceScatter]rank[%u] tx ack to rank[%u] failed", rank, srcRank), ret);
      91            0 :         CHK_SMART_PTR_NULL(links[dstRank]);
      92            0 :         HCCL_INFO("rank[%u] will rx_ack from rank[%d]", rank, dstRank);
      93              : 
      94            0 :         ret = links[dstRank]->RxAck(stream_);
      95            0 :         CHK_PRT_RET(ret != HCCL_SUCCESS,
      96              :             HCCL_ERROR("[Run][ReduceScatter]rank[%u] rx ack from rank[%d] failed", rank, dstRank), ret);
      97            0 :         HCCL_INFO("rank:%u round[%u] send to rank:[%d], inputSlices offset[%llu]"
      98              :             "size[%llu] scratchSlice offset[%llu] size[%llu] ",
      99              :             rank, round, dstRank, inputSlices[dstRank].offset, inputSlices[dstRank].size,
     100              :             scratchSlices[dstRank].offset, scratchSlices[dstRank].size);
     101              :         // 发送数据
     102            0 :         std::vector<Slice> txSlices;
     103            0 :         std::vector<Slice> txDstSlices;
     104            0 :         for (u32 i = dstRank * interRankSize; i < (dstRank + 1) * interRankSize; i++) {
     105            0 :             txSlices.push_back(inputSlices[i]);
     106            0 :             txDstSlices.push_back(scratchSlices[i]);
     107              :         }
     108            0 :         ret = RunSourceReducer(links[dstRank], txSlices, txDstSlices);
     109            0 :         CHK_PRT_RET(ret != HCCL_SUCCESS,
     110              :             HCCL_ERROR("[Run][ReduceScatter]rank:%u round[%u] reducer src run failed", rank, round), ret);
     111            0 :         HCCL_INFO("rank[%u] round[%u] rx from rank[%u], inSlicesoffset[%llu] size[%llu] "\
     112              :             "scratchSlices offset[%llu] size[%llu]",
     113              :             rank, round, srcRank, inputSlices[rank].offset, inputSlices[rank].size,
     114              :             scratchSlices[rank].offset, scratchSlices[rank].size);
     115              : 
     116            0 :         std::vector<Slice> rxSlices;
     117            0 :         std::vector<Slice> rxDstSlices;
     118            0 :         for (u32 i = rank * interRankSize; i < (rank + 1) * interRankSize; i++) {
     119            0 :             rxSlices.push_back(inputSlices[i]);
     120            0 :             rxDstSlices.push_back(scratchSlices[i]);
     121              :         }
     122            0 :         ret = RunDestReducer(links[srcRank], rxSlices, rxDstSlices);
     123            0 :         CHK_PRT_RET(ret != HCCL_SUCCESS,
     124              :             HCCL_ERROR("[Run][ReduceScatter]rank[%u] round[%u] reducer dst run failed", rank, round), ret);
     125              : 
     126            0 :         ret = links[srcRank]->RxWaitDone(stream_);
     127            0 :         CHK_PRT_RET(ret != HCCL_SUCCESS, HCCL_ERROR("[Run][ReduceScatter]RxWaitDone failed"), ret);
     128            0 :         ret = links[dstRank]->TxWaitDone(stream_);
     129            0 :         CHK_PRT_RET(ret != HCCL_SUCCESS, HCCL_ERROR("[Run][ReduceScatter]TxWaitDone failed"), ret);
     130            0 :     }
     131            0 :     if (barrierSwitchOn_) {
     132            0 :         for (u32 round = 1; round < rankSize; round++) {
     133            0 :             u32 orderIndex = (round + streamIndex_ - 1) % (rankSize - 1);
     134            0 :             u32 srcRank = rxRankOpOrder[orderIndex];
     135            0 :             s32 dstRank = txRankOpOrder[orderIndex];
     136              : 
     137            0 :             ret = ExecuteBarrier(links[srcRank], links[dstRank]);
     138            0 :             CHK_PRT_RET(ret != HCCL_SUCCESS,
     139              :                 HCCL_ERROR("[Run][ReduceScatter]rank[%u] run ReduceScatter executor barrier "\
     140              :                     "failed. srcRank:%u dstRank:%d", rank, srcRank, dstRank), ret);
     141              :         }
     142              :     }
     143              : 
     144            0 :     return HCCL_SUCCESS;
     145            0 : }
     146              : 
     147              : // reducescatter的入口函数
     148            0 : HcclResult ReduceScatterMeshMixSingleStream::RunAsync(const u32 rank, const u32 rankSize, const std::vector<LINK> &links)
     149              : {
     150            0 :     CHK_SMART_PTR_NULL(dispatcher_);
     151            0 :     CHK_PTR_NULL(stream_.ptr());
     152            0 :     if (!outputMem_ || !inputMem_) {
     153            0 :         HCCL_ERROR("[ReduceScatterMeshMixSingleStream][RunAsync]rank[%u] run_async inputmem or outputmem is null", rank);
     154            0 :         return HCCL_E_PTR;
     155              :     }
     156            0 :     HCCL_INFO("[ReduceScatterMeshMixSingleStream][RunAsync]rank[%u] totalrank[%u] inputMem[%p] outputMem[%p] "
     157              :         "count[%llu]", rank, rankSize, inputMem_.ptr(), outputMem_.ptr(), count_);
     158              : 
     159              :     // 创建reducer & sender
     160            0 :     senderInfo_.reset(new (std::nothrow) Sender(dataType_, reductionOp_, reduceAttr_));
     161            0 :     CHK_SMART_PTR_NULL(senderInfo_);
     162              : 
     163            0 :     reducerInfo_.reset(new (std::nothrow) Reducer(dataType_, reductionOp_, reduceAttr_));
     164            0 :     CHK_SMART_PTR_NULL(reducerInfo_);
     165            0 :     if (rankSize == 1) {
     166            0 :         if (inputMem_ != outputMem_) {
     167            0 :             return HcclD2DMemcpyAsync(dispatcher_, outputMem_, inputMem_, stream_);
     168              :         }
     169            0 :         return HCCL_SUCCESS;
     170              :     }
     171              : 
     172            0 :     if (links.size() < rankSize) {
     173            0 :         HCCL_ERROR("[ReduceScatterMeshMixSingleStream][RunAsync]rank[%u] linksize error", rank);
     174            0 :         return HCCL_E_INTERNAL;
     175              :     }
     176              : 
     177            0 :     if (streamIndex_ >= rankSize - 1) {
     178            0 :         HCCL_ERROR("[ReduceScatterMeshMixSingleStream][RunAsync]rank[%u] stream index[%u] is out of range when ranksize[%u]",
     179              :             rank, streamIndex_, rankSize);
     180            0 :         return HCCL_E_INTERNAL;
     181              :     }
     182              : 
     183            0 :     u32 unitSize = DataUnitSize(dataType_);
     184            0 :     if (unitSize == 0) {
     185            0 :         HCCL_ERROR("[ReduceScatterMeshMixSingleStream][RunAsync]rank[%u] unit data size is zero", rank);
     186            0 :         return HCCL_E_INTERNAL;
     187              :     }
     188              : 
     189            0 :     std::vector<Slice> scratchSlices(slices_);
     190              : 
     191              :     // 运行reduce-scatter, mesh算法
     192            0 :     CHK_RET(RunReduceScatter(rank, rankSize, links, slices_, scratchSlices));
     193              : 
     194            0 :     HCCL_INFO("ReduceScatterMeshMixSingleStream finished: rank[%u]", rank);
     195            0 :     return HCCL_SUCCESS;
     196            0 : }
     197              : REGISTER_TEMPLATE(TemplateType::TEMPLATE_REDUCESCATTER_MESH_MIX_SS, ReduceScatterMeshMixSingleStream);
     198              : }  // namespace hccl
        

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