forked from huawei/mindspore2022
242 lines
7.9 KiB
C++
242 lines
7.9 KiB
C++
/**
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* Copyright 2019 Huawei Technologies Co., Ltd
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "runtime/device/gpu/cuda_driver.h"
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#include <iostream>
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#include "utils/log_adapter.h"
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#include "utils/convert_utils.h"
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namespace mindspore {
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namespace device {
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namespace gpu {
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size_t CudaDriver::AllocDeviceMem(size_t size, DeviceMemPtr *addr) {
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size_t retreat_count = 0;
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auto ret = cudaMalloc(reinterpret_cast<void **>(addr), size);
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// If free memory is not enough, then retry with mem_malloc_retry_rate_.
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while (ret == cudaErrorMemoryAllocation) {
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size = FloatToSize(size * mem_malloc_retry_rate_);
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size = (size / mem_malloc_align_size_) * mem_malloc_align_size_;
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ret = cudaMalloc(reinterpret_cast<void **>(addr), size);
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retreat_count++;
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if (retreat_count > mem_malloc_retry_conut_max_) {
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break;
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}
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}
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaMalloc failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return 0;
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}
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return size;
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}
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bool CudaDriver::FreeDeviceMem(const DeviceMemPtr &addr) {
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auto ret = cudaFree(addr);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaFree failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return false;
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}
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return true;
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}
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size_t CudaDriver::AllocHostPinnedMem(size_t size, void **addr) {
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if (size == 0) {
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MS_LOG(EXCEPTION) << "The memory allocate size is 0";
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}
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auto ret = cudaHostAlloc(addr, size, cudaHostAllocDefault);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaHostAlloc failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return 0;
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}
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return size;
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}
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void CudaDriver::FreeHostPinnedMem(void *addr) {
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if (addr) {
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auto ret = cudaFreeHost(addr);
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if (ret != cudaSuccess) {
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MS_LOG(EXCEPTION) << "cudaFreeHost failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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}
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}
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}
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bool CudaDriver::CopyHostMemToDevice(const DeviceMemPtr &dst, const void *src, size_t size) {
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auto ret = cudaMemcpy(dst, src, size, cudaMemcpyHostToDevice);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaMemcpy failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return false;
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}
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return true;
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}
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bool CudaDriver::CopyDeviceMemToHost(const HostMemPtr &dst, const DeviceMemPtr &src, size_t size) {
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auto ret = cudaMemcpy(dst, src, size, cudaMemcpyDeviceToHost);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaMemcpy failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return false;
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}
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return true;
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}
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bool CudaDriver::CopyHostMemToDeviceAsync(const DeviceMemPtr &dst, const void *src, size_t size, DeviceStream stream) {
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auto ret = cudaMemcpyAsync(dst, src, size, cudaMemcpyHostToDevice, (cudaStream_t)stream);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaMemcpyAsync failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return false;
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}
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return true;
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}
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bool CudaDriver::CopyDeviceMemToHostAsync(const HostMemPtr &dst, const DeviceMemPtr &src, size_t size,
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DeviceStream stream) {
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auto ret = cudaMemcpyAsync(dst, src, size, cudaMemcpyDeviceToHost, (cudaStream_t)stream);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaMemcpyAsync failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return false;
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}
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return true;
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}
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size_t CudaDriver::total_mem_size() {
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size_t free;
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size_t total;
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auto ret = cudaMemGetInfo(&free, &total);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaMemGetInfo failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return 0;
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}
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return total;
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}
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size_t CudaDriver::free_mem_size() {
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size_t free;
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size_t total;
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auto ret = cudaMemGetInfo(&free, &total);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaMemGetInfo failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return 0;
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}
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return free;
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}
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bool CudaDriver::CreateStream(DeviceStream *stream) {
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auto ret = cudaStreamCreateWithFlags(reinterpret_cast<CUstream_st **>(stream), cudaStreamNonBlocking);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaStreamCreate failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return false;
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}
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return true;
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}
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bool CudaDriver::DestroyStream(const DeviceStream &stream) {
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auto ret = cudaStreamDestroy((cudaStream_t)stream);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaStreamDestroy failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return false;
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}
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return true;
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}
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bool CudaDriver::SyncStream(const DeviceStream &stream) {
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auto ret = cudaStreamSynchronize((cudaStream_t)stream);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaStreamSynchronize failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return false;
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}
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return true;
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}
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bool CudaDriver::CreateEvent(DeviceEvent *event, unsigned int flag) {
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auto ret = cudaEventCreateWithFlags(reinterpret_cast<cudaEvent_t *>(event), flag);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaEventCreateWithFlags failed, ret[" << static_cast<int>(ret) << "], "
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<< cudaGetErrorString(ret);
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return false;
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}
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return true;
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}
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bool CudaDriver::DestroyEvent(const DeviceEvent &event) {
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auto ret = cudaEventDestroy((cudaEvent_t)event);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaEventDestroy failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return false;
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}
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return true;
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}
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bool CudaDriver::RecordEvent(DeviceEvent event, DeviceStream stream) {
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auto ret = cudaEventRecord((cudaEvent_t)event, (cudaStream_t)stream);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaEventRecord failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return false;
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}
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return true;
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}
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bool CudaDriver::SyncEvent(const DeviceEvent &event) {
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auto ret = cudaEventSynchronize((cudaEvent_t)event);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaEventSynchronize failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return false;
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}
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return true;
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}
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bool CudaDriver::QueryEvent(const DeviceEvent &event) {
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auto ret = cudaEventQuery((cudaEvent_t)event);
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if (ret == cudaSuccess) {
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return true;
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} else if (ret == cudaErrorNotReady) {
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return false;
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} else {
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MS_LOG(ERROR) << "cudaEventQuery failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return false;
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}
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}
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bool CudaDriver::ElapsedTime(float *cost_time, const DeviceEvent &start, const DeviceEvent &end) {
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auto ret = cudaEventElapsedTime(cost_time, (cudaEvent_t)start, (cudaEvent_t)end);
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if (ret == cudaSuccess) {
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return true;
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} else {
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MS_LOG(ERROR) << "cudaEventElapsedTime failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return false;
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}
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}
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int CudaDriver::device_count() {
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int dev_count;
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auto ret = cudaGetDeviceCount(&dev_count);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaGetDeviceCount failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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}
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return dev_count;
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}
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bool CudaDriver::set_current_device(int index) {
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auto ret = cudaSetDevice(index);
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if (ret != cudaSuccess) {
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MS_LOG(ERROR) << "cudaSetDevice failed, ret[" << static_cast<int>(ret) << "], " << cudaGetErrorString(ret);
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return false;
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}
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return true;
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}
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} // namespace gpu
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} // namespace device
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} // namespace mindspore
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