/* Copyright (c) 2021 PaddlePaddle Authors. All Rights Reserved. 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. */ #pragma once #include "paddle/fluid/platform/enforce.h" #include "paddle/fluid/platform/float16.h" #include "paddle/fluid/platform/hostdevice.h" #include "paddle/pten/core/dense_tensor.h" #include "paddle/pten/kernels/hybird/blas/elementwise.h" #include "paddle/pten/kernels/hybird/eigen/elementwise.h" namespace pten { namespace general { // Define the binary functors used in elementwise ops. // Add template struct SameDimsAddFunctor { void operator()(const DevCtx& dev_ctx, const DenseTensor& x, const DenseTensor& y, DenseTensor* z); }; template struct SameDimsAddFunctor< DevCtx, T, typename std::enable_if::value>::type> { void operator()(const DevCtx& dev_ctx, const DenseTensor& x, const DenseTensor& y, DenseTensor* z) { blas::ElementwiseAdd(dev_ctx, x, y, z); } }; template struct SameDimsAddFunctor< DevCtx, T, typename std::enable_if::value>::type> { void operator()(const DevCtx& dev_ctx, const DenseTensor& x, const DenseTensor& y, DenseTensor* z) { eigen::ElementwiseAdd(dev_ctx, x, y, z); } }; template struct AddFunctor { inline HOSTDEVICE T operator()(const T& a, const T& b) const { return a + b; } }; template struct InverseAddFunctor { inline HOSTDEVICE T operator()(const T& a, const T& b) const { return b + a; } }; // Subtract template struct SameDimsSubtractFunctor { void operator()(const DevCtx& dev_ctx, const DenseTensor& x, const DenseTensor& y, DenseTensor* z); }; template struct SameDimsSubtractFunctor< DevCtx, T, typename std::enable_if::value>::type> { void operator()(const DevCtx& dev_ctx, const DenseTensor& x, const DenseTensor& y, DenseTensor* z) { blas::ElementwiseSub(dev_ctx, x, y, z); } }; template struct SameDimsSubtractFunctor< DevCtx, T, typename std::enable_if::value>::type> { void operator()(const DevCtx& dev_ctx, const DenseTensor& x, const DenseTensor& y, DenseTensor* z) { eigen::ElementwiseSub(dev_ctx, x, y, z); } }; template struct SubtractFunctor { inline HOSTDEVICE T operator()(const T& a, const T& b) const { return a - b; } }; template struct InverseSubtractFunctor { inline HOSTDEVICE T operator()(const T& a, const T& b) const { return b - a; } }; // Divide template struct SameDimsDivideFunctor { void operator()(const DevCtx& dev_ctx, const DenseTensor& x, const DenseTensor& y, DenseTensor* z); }; template struct SameDimsDivideFunctor< DevCtx, T, typename std::enable_if::value>::type> { void operator()(const DevCtx& dev_ctx, const DenseTensor& x, const DenseTensor& y, DenseTensor* z) { paddle::platform::errors::InvalidArgument( "If use SameDimsDivideFunctor, template args(T) must be floating " "point. "); } }; template struct SameDimsDivideFunctor< DevCtx, T, typename std::enable_if::value>::type> { void operator()(const DevCtx& dev_ctx, const DenseTensor& x, const DenseTensor& y, DenseTensor* z) { blas::ElementwiseDiv(dev_ctx, x, y, z); } }; #define DIV_ERROR_INFO \ "InvalidArgumentError: Integer division by zero encountered in " \ "(floor) divide. Please check the input value." template struct DivideFunctor { inline HOSTDEVICE T operator()(const T& a, const T& b) const { return a / b; } }; template struct DivideFunctor< T, typename std::enable_if::value>::type> { inline HOSTDEVICE T operator()(const T& a, const T& b) const { // For int32/int64, need to check whether the divison is zero. PADDLE_ENFORCE(b != 0, DIV_ERROR_INFO); return a / b; } }; template struct InverseDivideFunctor { inline HOSTDEVICE T operator()(const T& a, const T& b) const { return b / a; } }; // Multiply template struct SameDimsMultiplyFunctor { void operator()(const DevCtx& dev_ctx, const DenseTensor& x, const DenseTensor& y, DenseTensor* z); }; template struct SameDimsMultiplyFunctor< DevCtx, T, typename std::enable_if::value>::type> { void operator()(const DevCtx& dev_ctx, const DenseTensor& x, const DenseTensor& y, DenseTensor* z) { blas::ElementwiseMul(dev_ctx, x, y, z); } }; template struct SameDimsMultiplyFunctor< DevCtx, T, typename std::enable_if::value>::type> { void operator()(const DevCtx& dev_ctx, const DenseTensor& x, const DenseTensor& y, DenseTensor* z) { eigen::ElementwiseMul(dev_ctx, x, y, z); } }; template struct MultiplyFunctor { inline HOSTDEVICE T operator()(const T& a, const T& b) const { return a * b; } }; template struct InverseMultiplyFunctor { inline HOSTDEVICE T operator()(const T& a, const T& b) const { return b * a; } }; } // namespace general } // namespace pten