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_temp_scatter_mesh_2D.h"
17 : #include "alg_data_trans_wrapper.h"
18 : #include "ccu_instruction_scatter_mesh2d.h"
19 : #include "ccu_ins_group.h"
20 : #include "ccu_rank_group.h"
21 : #include "ccu_ctx_creator_registry.h"
22 : #include "ccu_ins.h"
23 : #include "dev_mode.h"
24 : #include "ccu_context_scatter_mesh2d.h"
25 :
26 : namespace Hccl {
27 :
28 : constexpr int DIE_NUM = 2;
29 :
30 : static CcuInstRegister<CcuContextScatterMesh2D> registrarScatter(CcuInstType::CCU_SCATTER_MESH_2D_DIRECT);
31 :
32 0 : CcuTempScatterMesh2D::CcuTempScatterMesh2D(const RankId virtualRank, const u32 tempRankSize,
33 : const std::vector<std::vector<RankId>> &tempVTopo,
34 0 : const std::map<RankId, u32> &tempVirtRankMap)
35 0 : : CcuAlgTemplateBase(virtualRank, tempRankSize, tempVTopo, tempVirtRankMap)
36 : {
37 0 : if (tempVTopo_.size() != 2 || tempVTopo_[0].size() <= 1 || tempVTopo_[1].size() <= 1) { // concurrmesh的topoMatch返回的vTopo大小应当为2,对应X轴和Y轴的大小
38 0 : THROW<InvalidParamsException>(StringFormat("[CcuTempScatterMesh2D] Rank[%d], Invalid tempVTopo "
39 : "Size[%u] or Invalid tempVTopo[0] size %u or tempVTopo[1] size %u.",
40 0 : myRank_, tempVTopo_.size(), tempVTopo_[0].size(),
41 0 : tempVTopo_[1].size()));
42 : }
43 0 : dimSize_.emplace_back(tempVTopo[0].size());
44 0 : dimSize_.emplace_back(tempVTopo[1].size());
45 0 : }
46 :
47 0 : CcuTempScatterMesh2D::~CcuTempScatterMesh2D()
48 : {
49 0 : }
50 :
51 0 : HcclResult CcuTempScatterMesh2D::CalcRes(AlgTempResReq &tempResReq)
52 : {
53 : // 按照IODienum来确定stream数量,支持2D和2D的template
54 0 : tempResReq.queNum = 1; // 只申请一个insQue,填充一个insGroup,由框架将其中的ins放在多个stream上
55 0 : tempResReq.streamNum = tempResReq.queNum + 1; // 多申请一个 stream 给 ccuInsGroup
56 0 : uint32_t dieNum = tempVTopo_.size();
57 0 : if (dieNum != 2) { // concurrmesh的topoMatch返回的vTopo大小应当为2,对应X轴和Y轴的大小
58 0 : HCCL_ERROR("[CcuTempScatterMesh2D] Rank[%d], Invalid IODieNum[%zu].", myRank_, tempVTopo_.size());
59 0 : return HcclResult::HCCL_E_PARA;
60 : }
61 0 : HCCL_INFO(
62 : "[CcuTempScatterMesh2D] Rank[%d] requiredQueNum[%u] VtopoSize[%u], VtopoSize0[%u] VtopoSize1[%u].",
63 : myRank_, tempResReq.queNum, tempVTopo_.size(), tempVTopo_[0].size(), tempVTopo_[1].size());
64 :
65 : uint32_t myAlgRank;
66 0 : for (u32 dim = 0; dim < tempVTopo_.size(); dim++) {
67 0 : CHK_RET(GetAlgRank(myRank_, tempVTopo_[dim], myAlgRank));
68 0 : for (u32 queIdx = 0; queIdx < tempVTopo_[dim].size() - 1; queIdx++) {
69 : // find neighbors -> virtualRank
70 0 : u32 neighborAlgRank = (myAlgRank + 1 + queIdx) % (tempVTopo_[dim].size());
71 0 : RankId neighborRank = tempVTopo_[dim][neighborAlgRank];
72 0 : HCCL_INFO("[CcuTempScatterMesh2D] Rank[%d], Dim[%u], NeighborRank[%d].", myRank_, dim,
73 : neighborRank);
74 :
75 : // LinkNum
76 0 : tempResReq.links[neighborRank] = 1;
77 : }
78 : }
79 0 : return HcclResult::HCCL_SUCCESS;
80 : }
81 : /*
82 : dataSize / (rankSize) --> chunkSize
83 : dataSize / (rankSize * queNum) --> sliceSize
84 :
85 : SliceInfoVecforNHR: [1st chunk: [1st Slice, 2nd Slice, ...], 2nd chunk: [1st Slice, 2nd Slice, ...], ...]
86 : */
87 0 : HcclResult CcuTempScatterMesh2D::CalcSliceInfo(const AllignInfo &allignInfo, const u64 dataSize,
88 : RankSliceInfo &sliceInfoVec)
89 : {
90 0 : std::vector<SliceInfo> tmp(tempVTopo_.size());
91 0 : sliceInfoVec.resize(tempRankSize_, tmp);
92 0 : CHK_RET(CalcRsAgSliceInfoMesh(myRank_, tempRankSize_, allignInfo, dataSize, sliceInfoVec));
93 0 : HCCL_INFO("[CcuTempScatterMesh2D][CalcSliceInfo] dataSize[%llu]", dataSize);
94 0 : return HcclResult::HCCL_SUCCESS;
95 0 : }
96 :
97 0 : void CcuTempScatterMesh2D::SetA2ASendRecvInfo(const A2ASendRecvInfo &sendRecvInfo)
98 : {
99 0 : localSendRecvInfo_ = sendRecvInfo;
100 0 : }
101 :
102 0 : HcclResult CcuTempScatterMesh2D::SetBuffBlockSize(const u64 buffBlockSize)
103 : {
104 0 : CHK_PRT_RET(buffBlockSize == 0, HCCL_ERROR("[CcuTempScatterMesh2D][SetBuffBlockSize] buffBlockSize should not be zero"),
105 : HcclResult::HCCL_E_PARA);
106 0 : buffBlockSize_ = buffBlockSize;
107 0 : return HcclResult::HCCL_SUCCESS;
108 : }
109 :
110 0 : HcclResult CcuTempScatterMesh2D::SetConcurrentSendRecvNum(const u32 concurrentSendRecvNum)
111 : {
112 0 : CHK_PRT_RET(concurrentSendRecvNum == 0, HCCL_ERROR("[CcuTempScatterMesh2D][SetConcurrentSendRecvNum] concurrentSendRecvNum should not be zero"),
113 : HcclResult::HCCL_E_PARA);
114 0 : concurrentSendRecvNum_ = concurrentSendRecvNum;
115 0 : return HcclResult::HCCL_SUCCESS;
116 : }
117 :
118 0 : uint64_t CcuTempScatterMesh2D::GetMaxSliceSize() const
119 : {
120 0 : return UB_MAX_DATA_SIZE;
121 : }
122 :
123 0 : uint64_t CcuTempScatterMesh2D::GetExpandedMode() const
124 : {
125 0 : return DeviceMode::CCU;
126 : }
127 :
128 0 : uint64_t CcuTempScatterMesh2D::DataSliceToAddr(const DataSlice &dataSlice)
129 : {
130 0 : if (dataSlice.GetType() == BufferType::INPUT) {
131 0 : return static_cast<uint64_t>(op_.inputMem->GetAddr());
132 0 : } else if (dataSlice.GetType() == BufferType::OUTPUT) {
133 0 : return static_cast<uint64_t>(op_.outputMem->GetAddr());
134 : } else {
135 0 : return static_cast<uint64_t>(op_.scratchMem->GetAddr());
136 : }
137 : }
138 :
139 0 : HcclResult CcuTempScatterMesh2D::PrepareLinks(const ResLinks &tempLinks)
140 : {
141 0 : HCCL_INFO("[CcuTempScatterMesh2D] PrepareLinks Starts.");
142 : // 分别记录两个Die上的link,构造rankGroup
143 0 : for (auto pair : tempLinks) {
144 0 : if (pair.second.size() == 0 || pair.second[0].GetHop() != 1) { // ESL环境上暂只有直连链路
145 0 : THROW<InvalidParamsException>(
146 0 : StringFormat("[CcuTempScatterMesh2D] Rank[%d]--Peer[%d], InvalidHop[%u].", myRank_, pair.first,
147 0 : pair.second[0].GetHop()));
148 : }
149 0 : if ((pair.first / dimSize_[0] == myRank_ / dimSize_[0]) && pair.second[0].GetHop() == 1) {
150 0 : HCCL_INFO("[CcuTempScatterMesh2D][Run] Rank[%d] insert link to Rank[%d] in linksX", myRank_,
151 : pair.first);
152 0 : linksX_.emplace_back(pair.second[0]);
153 0 : } else if ((pair.first % dimSize_[0] == myRank_ % dimSize_[0]) && pair.second[0].GetHop() == 1) {
154 0 : HCCL_INFO("[CcuTempScatterMesh2D][Run] Rank[%d] insert link to Rank[%d] in linksY", myRank_,
155 : pair.first);
156 0 : linksY_.emplace_back(pair.second[0]);
157 : } else {
158 0 : HCCL_ERROR("[CcuTempScatterMesh2D] Rank[%d], Unexpected peerRank[%d] in tempLinks.", myRank_, pair.first);
159 0 : return HcclResult::HCCL_E_PARA;
160 : }
161 0 : }
162 0 : HCCL_INFO("[CcuTempScatterMesh2D] PrepareLinks Ends. linksX Size[%u], linksY Size[%u]",
163 : linksX_.size(), linksY_.size());
164 0 : return HcclResult::HCCL_SUCCESS;
165 : }
166 :
167 0 : HcclResult CcuTempScatterMesh2D::PrepareRankGroups()
168 : {
169 0 : HCCL_INFO("[CcuTempScatterMesh2D] PrepareRankGroups Starts.");
170 0 : for (auto &peer : tempVTopo_[0]) {
171 0 : rankGroupX_.AddRank(peer);
172 : }
173 0 : for (auto &peer : tempVTopo_[1]) {
174 0 : rankGroupY_.AddRank(peer);
175 : }
176 0 : CHK_PRT_RET(rankGroupX_.GetRanks().size() <= 1 || rankGroupY_.GetRanks().size() <= 1,
177 : HCCL_ERROR("[CcuTempScatterMesh2D][PrepareRankGroups] Rank[%d] RankGroupX size[%u] or RankGroupY size[%u] is not greater than 1. ",
178 : myRank_, rankGroupX_.GetRanks().size(), rankGroupY_.GetRanks().size()),
179 : HcclResult::HCCL_E_PARA);
180 0 : HCCL_INFO("[CcuTempScatterMesh2D][PrepareRankGroups] RankGroupX size[%u], RankGroupY size[%u].",
181 : rankGroupX_.GetRanks().size(), rankGroupY_.GetRanks().size());
182 0 : return HcclResult::HCCL_SUCCESS;
183 : }
184 :
185 :
186 0 : HcclResult CcuTempScatterMesh2D::Run(const TempFuncs &tempFuncs, const RankSliceInfo &sliceInfoVec,
187 : const BuffInfo &buffInfo, const ResLinks &tempLinks,
188 : std::vector<InsQuePtr> &tempInsQues)
189 : {
190 0 : HCCL_INFO("[CcuTempScatterMesh2D] [Run] Template Run start.");
191 : (void)tempFuncs;
192 :
193 0 : std::vector<uint64_t> dimSize;
194 0 : dimSize.push_back(tempRankSize_);
195 :
196 0 : CHK_RET(PrepareLinks(tempLinks));
197 0 : CHK_RET(PrepareRankGroups());
198 :
199 : // 拿到input和output的首地址,和每片小数据的大小
200 0 : uint64_t inputBase = op_.inputMem == nullptr ? 0 : static_cast<uint64_t>(op_.inputMem->GetAddr());
201 0 : uint64_t outputBase = op_.outputMem == nullptr ? 0 : static_cast<uint64_t>(op_.outputMem->GetAddr());
202 0 : uint64_t scratchBase = op_.scratchMem == nullptr ? 0 : static_cast<uint64_t>(op_.scratchMem->GetAddr());
203 : uint64_t token;
204 0 : CHK_RET(GetToken(op_, token));
205 0 : u32 dataTypeSize = DataTypeSizeGet(op_.dataType);
206 0 : uint64_t stride = op_.dataCount * dataTypeSize;
207 0 : uint64_t offset = buffInfo.inBuffBaseOff;
208 0 : uint64_t inputAddr = inputBase + offset;
209 0 : uint64_t outputAddr = outputBase + offset;
210 0 : uint64_t scratchAddr = scratchBase;
211 0 : uint64_t sliceSize = sliceInfoVec[0][0].size;
212 : // 按照1/2切x方向和y方向的数据大小
213 0 : uint64_t xSliceSize = sliceSize / 2;
214 0 : uint64_t ySliceSize = sliceSize - xSliceSize;
215 :
216 0 : std::unique_ptr<CcuInsGroup> insGroupPtr = std::make_unique<CcuInsGroup>();
217 0 : CHK_PRT_RET(insGroupPtr == nullptr, HCCL_ERROR("[CcuTempScatterMesh2D] insGroupPtr is nullptr!"), HcclResult::HCCL_E_PTR);
218 0 : for (uint32_t axisId = 0; axisId < DIE_NUM; axisId++) {
219 0 : CcuInstructionScatterMesh2D ccuInsScatterMesh2D;
220 0 : ccuInsScatterMesh2D.Init(static_cast<uint32_t>(myRank_), tempRankSize_, axisId, inputAddr, outputAddr, scratchAddr, token,
221 0 : sliceSize, stride, xSliceSize, ySliceSize, op_, tempVTopo_);
222 :
223 0 : ccuInsScatterMesh2D.SetLinks(axisId==0 ? linksX_ : linksY_);
224 0 : ccuInsScatterMesh2D.SetRankGroup(axisId==0 ? rankGroupX_ : rankGroupY_);
225 :
226 0 : u32 cntCkeNum = 5;
227 0 : ccuInsScatterMesh2D.SetCntCkeNum(cntCkeNum);
228 :
229 0 : HCCL_INFO("[CcuTempScatterMesh2D] is [%s]", ccuInsScatterMesh2D.Describe().c_str());
230 0 : insGroupPtr->Append(std::move(std::make_unique<CcuInstructionScatterMesh2D>(ccuInsScatterMesh2D)));
231 0 : }
232 0 : tempInsQues[0]->Append(std::move(insGroupPtr));
233 0 : HCCL_INFO("[CcuTempScatterMesh2D] [Run] Template ends.");
234 :
235 0 : return HcclResult::HCCL_SUCCESS;
236 0 : }
237 : } // namespace Hccl
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