mirror of
https://github.com/PaddlePaddle/FastDeploy.git
synced 2025-10-07 01:22:59 +08:00
200 lines
5.2 KiB
C++
200 lines
5.2 KiB
C++
// Copyright (c) 2022 PaddlePaddle Authors. All Rights Reserved.
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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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#pragma once
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#include <iostream>
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#include <map>
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#include <string>
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#include <vector>
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#include <algorithm>
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#include <cuda_runtime_api.h>
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#include "NvInfer.h"
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#include "fastdeploy/utils/utils.h"
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namespace fastdeploy {
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struct FDInferDeleter {
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template<typename T> void operator()(T* obj) const {
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delete obj;
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}
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};
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template<typename T> using FDUniquePtr = std::unique_ptr<T, FDInferDeleter>;
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inline uint32_t GetElementSize(nvinfer1::DataType t) noexcept {
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switch (t) {
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case nvinfer1::DataType::kINT32:
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return 4;
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case nvinfer1::DataType::kFLOAT:
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return 4;
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case nvinfer1::DataType::kHALF:
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return 2;
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case nvinfer1::DataType::kBOOL:
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case nvinfer1::DataType::kINT8:
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return 1;
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}
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return 0;
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}
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inline int64_t Volume(const nvinfer1::Dims& d) {
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return std::accumulate(d.d, d.d + d.nbDims, 1, std::multiplies<int64_t>());
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}
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inline nvinfer1::Dims ToDims(const std::vector<int>& vec) {
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int limit = static_cast<int>(nvinfer1::Dims::MAX_DIMS);
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if (static_cast<int>(vec.size()) > limit) {
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FDWARNING << "Vector too long, only first 8 elements are used in dimension." << std::endl;
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}
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// Pick first nvinfer1::Dims::MAX_DIMS elements
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nvinfer1::Dims dims{std::min(static_cast<int>(vec.size()), limit), {}};
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std::copy_n(vec.begin(), dims.nbDims, std::begin(dims.d));
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return dims;
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}
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template <typename AllocFunc, typename FreeFunc> class FDGenericBuffer {
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public:
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//!
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//! \brief Construct an empty buffer.
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//!
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explicit FDGenericBuffer(nvinfer1::DataType type = nvinfer1::DataType::kFLOAT)
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: mSize(0), mCapacity(0), mType(type), mBuffer(nullptr) {}
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//!
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//! \brief Construct a buffer with the specified allocation size in bytes.
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//!
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FDGenericBuffer(size_t size, nvinfer1::DataType type)
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: mSize(size), mCapacity(size), mType(type) {
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if (!allocFn(&mBuffer, this->nbBytes())) {
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throw std::bad_alloc();
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}
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}
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FDGenericBuffer(FDGenericBuffer&& buf)
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: mSize(buf.mSize), mCapacity(buf.mCapacity), mType(buf.mType),
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mBuffer(buf.mBuffer) {
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buf.mSize = 0;
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buf.mCapacity = 0;
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buf.mType = nvinfer1::DataType::kFLOAT;
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buf.mBuffer = nullptr;
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}
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FDGenericBuffer& operator=(FDGenericBuffer&& buf) {
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if (this != &buf) {
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freeFn(mBuffer);
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mSize = buf.mSize;
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mCapacity = buf.mCapacity;
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mType = buf.mType;
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mBuffer = buf.mBuffer;
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// Reset buf.
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buf.mSize = 0;
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buf.mCapacity = 0;
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buf.mBuffer = nullptr;
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}
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return *this;
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}
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//!
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//! \brief Returns pointer to underlying array.
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//!
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void* data() { return mBuffer; }
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//!
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//! \brief Returns pointer to underlying array.
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//!
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const void* data() const { return mBuffer; }
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//!
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//! \brief Returns the size (in number of elements) of the buffer.
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//!
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size_t size() const { return mSize; }
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//!
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//! \brief Returns the size (in bytes) of the buffer.
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//!
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size_t nbBytes() const {
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return this->size() * GetElementSize(mType);
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}
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//!
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//! \brief Resizes the buffer. This is a no-op if the new size is smaller than
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//! or equal to the current capacity.
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//!
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void resize(size_t newSize) {
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mSize = newSize;
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if (mCapacity < newSize) {
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freeFn(mBuffer);
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if (!allocFn(&mBuffer, this->nbBytes())) {
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throw std::bad_alloc{};
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}
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mCapacity = newSize;
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}
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}
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//!
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//! \brief Overload of resize that accepts Dims
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//!
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void resize(const nvinfer1::Dims& dims) {
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return this->resize(Volume(dims));
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}
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~FDGenericBuffer() { freeFn(mBuffer); }
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private:
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size_t mSize{0}, mCapacity{0};
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nvinfer1::DataType mType;
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void* mBuffer;
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AllocFunc allocFn;
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FreeFunc freeFn;
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};
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class FDDeviceAllocator {
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public:
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bool operator()(void** ptr, size_t size) const {
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return cudaMalloc(ptr, size) == cudaSuccess;
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}
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};
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class FDDeviceFree {
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public:
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void operator()(void* ptr) const { cudaFree(ptr); }
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};
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using FDDeviceBuffer = FDGenericBuffer<FDDeviceAllocator, FDDeviceFree>;
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class FDTrtLogger : public nvinfer1::ILogger {
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public:
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static FDTrtLogger* logger;
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static FDTrtLogger* Get() {
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if (logger != nullptr) {
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return logger;
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}
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logger = new FDTrtLogger();
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return logger;
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}
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void log(nvinfer1::ILogger::Severity severity, const char* msg) noexcept override {
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if (severity == nvinfer1::ILogger::Severity::kINFO) {
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FDINFO << msg << std::endl;
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} else if (severity == nvinfer1::ILogger::Severity::kWARNING) {
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FDWARNING << msg << std::endl;
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} else if (severity == nvinfer1::ILogger::Severity::kERROR) {
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FDERROR << msg << std::endl;
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} else if (severity == nvinfer1::ILogger::Severity::kINTERNAL_ERROR) {
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FDASSERT(false, "%s", msg);
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}
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}
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};
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} // namespace fastdeploy
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