/************************************************************************* * Copyright (c) 2016-2022, NVIDIA CORPORATION. All rights reserved. * Modifications Copyright (c) 2019-2022 Advanced Micro Devices, Inc. All rights reserved. * * See LICENSE.txt for license information ************************************************************************/ #include "common.h" #include "cuda_runtime.h" void AlltoAllGetCollByteCount(size_t* sendcount, size_t* recvcount, size_t* paramcount, size_t* sendInplaceOffset, size_t* recvInplaceOffset, size_t count, size_t eltSize, int nranks) { *paramcount = (count / nranks) & -(16 / eltSize); *sendcount = nranks * (*paramcount); *recvcount = *sendcount; *sendInplaceOffset = 0; *recvInplaceOffset = 0; } testResult_t AlltoAllInitData(struct threadArgs* args, ncclDataType_t type, ncclRedOp_t op, int root, int rep, int in_place) { size_t sendcount = args->sendBytes / wordSize(type); size_t recvcount = args->expectedBytes / wordSize(type); int nranks = args->nProcs * args->nThreads * args->nGpus; for(int i = 0; i < args->nGpus; i++) { CUDACHECK(cudaSetDevice(args->gpus[i])); int rank = ((args->proc * args->nThreads + args->thread) * args->nGpus + i); CUDACHECK(cudaMemset(args->recvbuffs[i], 0, args->expectedBytes)); void* data = in_place ? args->recvbuffs[i] : args->sendbuffs[i]; TESTCHECK(InitData(data, sendcount, 0, type, ncclSum, 33 * rep + rank, 1, 0)); for(int j = 0; j < nranks; j++) { size_t partcount = sendcount / nranks; TESTCHECK(InitData((char*) args->expected[i] + j * partcount * wordSize(type), partcount, rank * partcount, type, ncclSum, 33 * rep + j, 1, 0)); } CUDACHECK(cudaDeviceSynchronize()); } // We don't support in-place alltoall args->reportErrors = in_place ? 0 : 1; return testSuccess; } void AlltoAllGetBw(size_t count, int typesize, double sec, double* algBw, double* busBw, int nranks) { double baseBw = (double) (count * nranks * typesize) / 1.0E9 / sec; *algBw = baseBw; double factor = ((double) (nranks - 1)) / ((double) (nranks)); *busBw = baseBw * factor; } testResult_t AlltoAllRunColl(void* sendbuff, void* recvbuff, size_t count, ncclDataType_t type, ncclRedOp_t op, int root, ncclComm_t comm, cudaStream_t stream) { NCCLCHECK(ncclAllToAll(sendbuff, recvbuff, count, type, comm, stream)); return testSuccess; } struct testColl alltoAllTest = { "AlltoAll", AlltoAllGetCollByteCount, AlltoAllInitData, AlltoAllGetBw, AlltoAllRunColl }; void AlltoAllGetBuffSize(size_t* sendcount, size_t* recvcount, size_t count, int nranks) { size_t paramcount, sendInplaceOffset, recvInplaceOffset; AlltoAllGetCollByteCount(sendcount, recvcount, ¶mcount, &sendInplaceOffset, &recvInplaceOffset, count, /*eltSize=*/1, nranks); } testResult_t AlltoAllRunTest(struct threadArgs* args, int root, ncclDataType_t type, const char* typeName, ncclRedOp_t op, const char* opName) { args->collTest = &alltoAllTest; ncclDataType_t* run_types; const char** run_typenames; int type_count; if((int) type != -1) { type_count = 1; run_types = &type; run_typenames = &typeName; } else { type_count = test_typenum; run_types = test_types; run_typenames = test_typenames; } for(int i = 0; i < type_count; i++) { TESTCHECK( TimeTest(args, run_types[i], run_typenames[i], (ncclRedOp_t) 0, "none", -1)); } return testSuccess; } struct testEngine ncclTestEngine = { AlltoAllGetBuffSize, AlltoAllRunTest };