/* Copyright (c) 2016 PaddlePaddle Authors. All Rights Reserve. Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except in compliance with the License. You may obtain a copy of the License at http://www.apache.org/licenses/LICENSE-2.0 Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License. */ #include #include "paddle/framework/data_transform.h" #include "paddle/framework/lod_tensor.h" #include "paddle/platform/device_context.h" namespace paddle { namespace framework { DataTransformFnMap& DataTransformFnMap::Instance() { static DataTransformFnMap data_transform_map; return data_transform_map; } auto KernelFP32 = OpKernelType(proto::DataType::FP32, platform::CPUPlace(), DataLayout::kNHWC, LibraryType::kPlain); auto KernelFP64 = OpKernelType(proto::DataType::FP64, platform::CPUPlace(), DataLayout::kNHWC, LibraryType::kPlain); auto KernelNHWC = OpKernelType(proto::DataType::FP64, platform::CPUPlace(), DataLayout::kNHWC, LibraryType::kPlain); auto KernelNCHW = OpKernelType(proto::DataType::FP64, platform::CPUPlace(), DataLayout::kNCHW, LibraryType::kPlain); // TODO(dzhwinter): Only for testing multiple op kernel. // Dummy transform function for library_type // should be removed. auto KernelPlain = OpKernelType(proto::DataType::FP32, platform::CUDAPlace(0), DataLayout::kAnyLayout, LibraryType::kPlain); auto KernelCUDNN = OpKernelType(proto::DataType::FP32, platform::CUDAPlace(0), DataLayout::kAnyLayout, LibraryType::kCUDNN); void DummyTrans(const platform::DeviceContext* ctx, const KernelTypePair& kernel_pair, const Variable& in, Variable* out) { PADDLE_ENFORCE(in.IsType(), "Only Support Tensor transform!."); PADDLE_ENFORCE( platform::places_are_same_class(kernel_pair.first.place_, kernel_pair.second.place_), "TransDataType Only Support DataType transform on same place!"); auto src = in.Get(); auto* dst = out->GetMutable(); *dst = src; } void TransDataType(const platform::DeviceContext* ctx, const KernelTypePair& kernel_pair, const Variable& in, Variable* out) { PADDLE_ENFORCE(in.IsType(), "Only Support Tensor transform!."); PADDLE_ENFORCE( platform::places_are_same_class(kernel_pair.first.place_, kernel_pair.second.place_), "TransDataType Only Support DataType transform on same place!"); auto src = in.Get(); auto* dst = out->GetMutable(); auto dims = src.dims(); dst->Resize(dims); auto dst_type = kernel_pair.second.data_type_; auto src_type = kernel_pair.first.data_type_; switch (src_type) { case proto::DataType::FP32: framework::VisitDataType(dst_type, CastDataType(src, dst, ctx)); break; case proto::DataType::FP64: framework::VisitDataType(dst_type, CastDataType(src, dst, ctx)); break; case proto::DataType::INT32: framework::VisitDataType(dst_type, CastDataType(src, dst, ctx)); break; case proto::DataType::INT64: framework::VisitDataType(dst_type, CastDataType(src, dst, ctx)); break; case proto::DataType::BOOL: framework::VisitDataType(dst_type, CastDataType(src, dst, ctx)); break; default: PADDLE_THROW("Not support type %d", src_type); } } void TransDataLayout(const std::vector& axis, const platform::DeviceContext* ctx, const KernelTypePair& kernel_pair, const Variable& in, Variable* out) { PADDLE_ENFORCE(in.IsType(), "Only support Tensor transform!."); PADDLE_ENFORCE( platform::places_are_same_class(kernel_pair.first.place_, kernel_pair.second.place_), "TransDataLayout only support DataLayout transform on same place!"); PADDLE_ENFORCE(kernel_pair.first.data_type_ == kernel_pair.second.data_type_, "TransDataLayout only support Datatype are same!"); auto src = in.Get(); auto* dst = out->GetMutable(); PADDLE_ENFORCE(arity(src.dims()) == 4, "Input Arity Only Suppport 4!"); auto place = kernel_pair.second.place_; CopyFrom(src, place, *ctx, dst); auto src_dim = src.dims(); std::vector dst_dim; dst_dim.resize(axis.size()); for (size_t i = 0; i < axis.size(); i++) { dst_dim[i] = src_dim[axis[i]]; } dst->Resize(make_ddim(dst_dim)); auto src_type = kernel_pair.first.data_type_; framework::VisitDataType(src_type, CastDataLayout(ctx, axis, src, dst)); dst->set_layout(kernel_pair.second.data_layout_); } } // namespace framework } // namespace paddle namespace f = paddle::framework; namespace { std::vector NHWC2NCHW = {0, 3, 1, 2}; std::vector NCHW2NHWC = {0, 2, 3, 1}; } REGISTER_DATA_TRANSFORM_FN(f::KernelFP32, f::KernelFP64, f::TransDataType); REGISTER_DATA_TRANSFORM_FN(f::KernelPlain, f::KernelCUDNN, f::DummyTrans); REGISTER_DATA_TRANSFORM_FN(f::KernelCUDNN, f::KernelPlain, f::DummyTrans); REGISTER_DATA_TRANSFORM_FN(f::KernelNHWC, f::KernelNCHW, std::bind(f::TransDataLayout, NHWC2NCHW, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3, std::placeholders::_4)); REGISTER_DATA_TRANSFORM_FN(f::KernelNCHW, f::KernelNHWC, std::bind(f::TransDataLayout, NCHW2NHWC, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3, std::placeholders::_4));