op_params.h 3.9 KB
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// Copyright (c) 2019 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
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#include <vector>
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#include "paddle/fluid/lite/core/compatible_tensor.h"
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#include "paddle/fluid/lite/core/framework.pb.h"
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#include "paddle/fluid/lite/utils/all.h"

/*
 * This file contains all the argument parameter data structure for operators.
 */

namespace paddle {
namespace lite {
namespace operators {

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using param_t = Any;

/// ----------------------- Functional operators ------------------------------
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struct FeedParam {
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  const std::vector<lite::Tensor>* feed_list{};
  lite::Tensor* out{};
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  int col;
};

struct FetchParam {
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  const lite::Tensor* input{};
  std::vector<lite::Tensor>* fetch_list{};
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  int col;
};

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// Helper op for lite framework
struct IoCopyParam {
  const lite::Tensor* x{};
  lite::Tensor* y{};
};

/// -------------------------- NN operators ------------------------------------

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struct FcParam {
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  lite::Tensor* input{};
  lite::Tensor* w{};
  lite::Tensor* bias{};
  lite::Tensor* output{};
  lite::DDim in_mat_dims;
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  int in_num_col_dims{1};
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};

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struct ReluParam {
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  lite::Tensor* input{};
  lite::Tensor* output{};
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};

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// For Mul Op
struct MulParam {
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  lite::Tensor* x{};
  lite::Tensor* y{};
  lite::Tensor* output{};
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  int x_num_col_dims{1};
  int y_num_col_dims{1};
};

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struct MulGradParam {
  const lite::Tensor* x{};
  const lite::Tensor* y{};
  const lite::Tensor* output_grad{};
  lite::Tensor* x_grad{};
  lite::Tensor* y_grad{};

  int x_num_col_dims{1};
  int y_num_col_dims{1};
};

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// For Scale Op
struct ScaleParam {
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  lite::Tensor* x{};
  lite::Tensor* output{};
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  float scale{1.};
  float bias{};
  bool bias_after_scale{true};
};

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// For Softmax Op
struct SoftmaxParam {
  lite::Tensor* x{};
  lite::Tensor* output{};

  int axis{-1};
};

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/// ----------------------- element wise operators ----------------------
struct ElementwiseParam {
  const lite::Tensor* X{};
  const lite::Tensor* Y{};
  lite::Tensor* Out{};
  int axis{-1};  // for broadcasting.
};

struct ElementwiseGradParam {
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  const lite::Tensor* Y{};
  const lite::Tensor* Out_grad{};
  lite::Tensor* X_grad{};
  lite::Tensor* Y_grad{};
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  int axis{-1};  // for broadcasting.
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};

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/// ----------------------- activation operators ----------------------
struct ActivationParam {
  const lite::Tensor* X{};
  lite::Tensor* Out{};
};

struct ActivationGradParam {
  const lite::Tensor* X{};
  const lite::Tensor* Out{};
  // for backward
  lite::Tensor* X_grad{};
  const lite::Tensor* Out_grad{};
};
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/// ----------------------- mean operators ----------------------
struct MeanParam {
  const lite::Tensor* X{};
  lite::Tensor* Out{};
};

struct MeanGradParam {
  const lite::Tensor* X{};
  const lite::Tensor* Out_grad{};
  // for backward
  lite::Tensor* X_grad{};
};

/// ----------------------- fill_constant operators ----------------------
struct FillConstantParam {
  int dtype{framework::proto::VarType::FP32};
  std::vector<int64_t> shape{};
  float value{0.0f};
  // useless for x86, keep it for compatibility
  bool force_cpu{false};
  lite::Tensor* Out{};
};

/// ----------------------- sgd operators ----------------------
struct SGDParam {
  int dtype{framework::proto::VarType::FP32};

  const lite::Tensor* Param{};
  const lite::Tensor* LearningRate{};
  const lite::Tensor* Grad{};
  lite::Tensor* ParamOut{};
};

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}  // namespace operators
}  // namespace lite
}  // namespace paddle