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tkDNN/src/pluginsRT/ReshapeRT.cpp
T
2021-11-10 14:37:16 +05:30

198 lines
5.7 KiB
C++

#include <tkDNN/pluginsRT/ReshapeRT.h>
using namespace nvinfer1;
std::vector<PluginField> ReshapeRTPluginCreator::mPluginAttributes;
PluginFieldCollection ReshapeRTPluginCreator::mFC{};
static const char* RESHAPERT_PLUGIN_VERSION{"1"};
static const char* RESHAPERT_PLUGIN_NAME{"ReshapeRT_tkDNN"};
ReshapeRT::ReshapeRT(int n,int c,int h,int w) {
this->n = n;
this->c = c;
this->h = h;
this->w = w;
}
ReshapeRT::ReshapeRT(const void *data, size_t length) {
const char *buf = reinterpret_cast<const char*>(data),*bufCheck = buf;
n = readBUF<int>(buf);
c = readBUF<int>(buf);
h = readBUF<int>(buf);
w = readBUF<int>(buf);
assert(buf == bufCheck + length);
}
ReshapeRT::~ReshapeRT() {}
int ReshapeRT::getNbOutputs() const NOEXCEPT {
return 1;
}
Dims ReshapeRT::getOutputDimensions(int index, const Dims *inputs, int nbInputDims) NOEXCEPT {
return Dims3{ c,h,w} ;
}
int ReshapeRT::initialize() NOEXCEPT {
return 0;
}
void ReshapeRT::terminate() NOEXCEPT {}
size_t ReshapeRT::getWorkspaceSize(int maxBatchSize) const NOEXCEPT {
return 0;
}
#if NV_TENSORRT_MAJOR > 7
int ReshapeRT::enqueue(int batchSize, const void *const *inputs, void *const *outputs, void *workspace,
cudaStream_t stream) NOEXCEPT {
dnnType *srcData = (dnnType*)reinterpret_cast<const dnnType*>(inputs[0]);
dnnType *dstData = reinterpret_cast<dnnType*>(outputs[0]);
checkCuda( cudaMemcpyAsync(dstData, srcData, batchSize*c*h*w*sizeof(dnnType), cudaMemcpyDeviceToDevice, stream));
return 0;
}
#elif NV_TENSORRT_MAJOR <= 7
int32_t ReshapeRT::enqueue(int32_t batchSize, const void *const *inputs, void **outputs, void *workspace, cudaStream_t stream) {
dnnType *srcData = (dnnType*)reinterpret_cast<const dnnType*>(inputs[0]);
dnnType *dstData = reinterpret_cast<dnnType*>(outputs[0]);
std::cout << "C : " << c << "H : " << h << "w :" << w << std::endl;
checkCuda( cudaMemcpyAsync(dstData, srcData, batchSize*c*h*w*sizeof(dnnType), cudaMemcpyDeviceToDevice, stream));
return 0;
}
#endif
size_t ReshapeRT::getSerializationSize() const NOEXCEPT {
return 4*sizeof(int);
}
void ReshapeRT::serialize(void *buffer) const NOEXCEPT {
char *buf = reinterpret_cast<char*>(buffer),*a = buf;
writeBUF(buf, n);
writeBUF(buf, c);
writeBUF(buf, h);
writeBUF(buf, w);
assert(buf == a + getSerializationSize());
}
bool ReshapeRT::supportsFormat(DataType type, PluginFormat format) const NOEXCEPT {
return (type == DataType::kFLOAT && format == PluginFormat::kLINEAR);
}
const char *ReshapeRT::getPluginType() const NOEXCEPT {
return RESHAPERT_PLUGIN_NAME;
}
const char *ReshapeRT::getPluginVersion() const NOEXCEPT {
return RESHAPERT_PLUGIN_VERSION;
}
void ReshapeRT::destroy() NOEXCEPT {
delete this;
}
const char *ReshapeRT::getPluginNamespace() const NOEXCEPT {
return mPluginNamespace.c_str();
}
void ReshapeRT::setPluginNamespace(const char *pluginNamespace) NOEXCEPT {
mPluginNamespace = pluginNamespace;
}
IPluginV2Ext *ReshapeRT::clone() const NOEXCEPT {
auto *p = new ReshapeRT(n,c,h,w);
p->setPluginNamespace(mPluginNamespace.c_str());
return p;
}
DataType ReshapeRT::getOutputDataType(int index, const nvinfer1::DataType *inputTypes, int nbInputs) const NOEXCEPT {
return DataType::kFLOAT;
}
void ReshapeRT::attachToContext(cudnnContext *cudnnContext, cublasContext *cublasContext,
IGpuAllocator *gpuAllocator) NOEXCEPT {
}
bool
ReshapeRT::isOutputBroadcastAcrossBatch(int outputIndex, const bool *inputIsBroadcasted, int nbInputs) const NOEXCEPT {
return false;
}
bool ReshapeRT::canBroadcastInputAcrossBatch(int inputIndex) const NOEXCEPT {
return false;
}
void ReshapeRT::configurePlugin(const Dims *inputDims, int32_t nbInputs, const Dims *outputDims, int32_t nbOutputs,
const DataType *inputTypes, const DataType *outputTypes, const bool *inputIsBroadcast,
const bool *outputIsBroadcast, PluginFormat floatFormat,
int32_t maxBatchSize) NOEXCEPT {
}
void ReshapeRT::detachFromContext() NOEXCEPT {
}
ReshapeRTPluginCreator::ReshapeRTPluginCreator() {
mPluginAttributes.clear();
mFC.nbFields = mPluginAttributes.size();
mFC.fields = mPluginAttributes.data();
}
void ReshapeRTPluginCreator::setPluginNamespace(const char *pluginNamespace) NOEXCEPT {
mPluginNamespace = pluginNamespace;
}
const char *ReshapeRTPluginCreator::getPluginNamespace() const NOEXCEPT {
return mPluginNamespace.c_str();
}
IPluginV2Ext *ReshapeRTPluginCreator::deserializePlugin(const char *name, const void *serialData, size_t serialLength) NOEXCEPT {
auto *pluginObj = new ReshapeRT(serialData,serialLength);
pluginObj->setPluginNamespace(mPluginNamespace.c_str());
return pluginObj;
}
IPluginV2Ext *ReshapeRTPluginCreator::createPlugin(const char *name, const PluginFieldCollection *fc) NOEXCEPT {
const PluginField *fields = fc->fields;
assert(fc->nbFields == 4);
for(int i=0;i<4;i++){
assert(fields[1].type == PluginFieldType::kINT32);
}
int n = *(static_cast<const int *>(fields[0].data));
int c = *(static_cast<const int *>(fields[1].data));
int h = *(static_cast<const int *>(fields[2].data));
int w = *(static_cast<const int *>(fields[3].data));
auto *pluginObj = new ReshapeRT(n,c,h,w);
pluginObj->setPluginNamespace(mPluginNamespace.c_str());
return pluginObj;
}
const char *ReshapeRTPluginCreator::getPluginName() const NOEXCEPT {
return RESHAPERT_PLUGIN_NAME;
}
const char *ReshapeRTPluginCreator::getPluginVersion() const NOEXCEPT {
return RESHAPERT_PLUGIN_VERSION;
}
const PluginFieldCollection *ReshapeRTPluginCreator::getFieldNames() NOEXCEPT {
return &mFC;
}