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giuros0115ecc9a2018-12-06 10:47:34 +00001/*
Michalis Spyrouebcebf12020-10-21 00:04:14 +01002 * Copyright (c) 2018-2020 Arm Limited.
giuros0115ecc9a2018-12-06 10:47:34 +00003 *
4 * SPDX-License-Identifier: MIT
5 *
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to
8 * deal in the Software without restriction, including without limitation the
9 * rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
10 * sell copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
12 *
13 * The above copyright notice and this permission notice shall be included in all
14 * copies or substantial portions of the Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
George Wort5a97b282018-12-21 16:21:04 +000017 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
giuros0115ecc9a2018-12-06 10:47:34 +000018 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
George Wort5a97b282018-12-21 16:21:04 +000019 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
giuros0115ecc9a2018-12-06 10:47:34 +000020 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
22 * SOFTWARE.
23 */
Michalis Spyrouf4643372019-11-29 16:17:13 +000024#ifndef ARM_COMPUTE_NEFUSEBATCHNORMALIZATION_H
25#define ARM_COMPUTE_NEFUSEBATCHNORMALIZATION_H
giuros0115ecc9a2018-12-06 10:47:34 +000026
27#include "arm_compute/core/ITensor.h"
giuros0115ecc9a2018-12-06 10:47:34 +000028#include "arm_compute/core/Types.h"
29#include "arm_compute/runtime/IFunction.h"
30
31namespace arm_compute
32{
33// Forward declarations
34class ITensor;
Michalis Spyrouebcebf12020-10-21 00:04:14 +010035class NEFuseBatchNormalizationKernel;
giuros0115ecc9a2018-12-06 10:47:34 +000036
37/** Basic function to fuse the batch normalization node to a preceding convolution node */
38class NEFuseBatchNormalization : public IFunction
39{
40public:
41 /** Default constructor */
42 NEFuseBatchNormalization();
43 /** Prevent instances of this class from being copied (As this class contains pointers) */
44 NEFuseBatchNormalization(const NEFuseBatchNormalization &) = delete;
45 /** Prevent instances of this class from being copied (As this class contains pointers) */
46 NEFuseBatchNormalization &operator=(const NEFuseBatchNormalization &) = delete;
47 /** Allow instances of this class to be moved */
48 NEFuseBatchNormalization(NEFuseBatchNormalization &&) = default;
49 /** Allow instances of this class to be moved */
50 NEFuseBatchNormalization &operator=(NEFuseBatchNormalization &&) = default;
51 /** Default destructor */
Michalis Spyrouebcebf12020-10-21 00:04:14 +010052 ~NEFuseBatchNormalization();
giuros0115ecc9a2018-12-06 10:47:34 +000053 /** Set the input and output tensors.
54 *
Manuel Bottini11091762019-06-17 12:04:40 +010055 * @param[in] input_weights Input weights tensor for convolution or depthwise convolution layer. Data type supported: F16/F32. Data layout supported: NCHW, NHWC
56 * @param[in] bn_mean Batch normalization layer mean tensor. Same as @p input_weights
57 * @param[in] bn_var Batch normalization layer variance tensor. Same as @p input_weights
58 * @param[out] fused_weights (Optional) Output fused weights tensor. It can be a nullptr in case of in-place computation. Same as @p input_weights
59 * @param[out] fused_bias (Optional) Output fused bias tensor. It can be a nullptr in case of in-place computation and input_bias != nullptr. Same as @p input_weights
60 * @param[in] input_bias (Optional) Input bias tensor for convolution or depthwise convolution layer. It can be a nullptr in case the bias tensor is not required. Same as @p input_weights
61 * @param[in] bn_beta (Optional) Batch normalization layer beta tensor. It can be a nullptr in case the beta tensor is not required. Same as @p input_weights
62 * @note if nullptr, bn_beta is set to 0.0
63 * @param[in] bn_gamma (Optional) Batch normalization layer gamma tensor. It can be a nullptr in case the gamma tensor is not required. Same as @p input_weights
64 * @note if nullptr, bn_gamma is set to 1.0
giuros0115ecc9a2018-12-06 10:47:34 +000065 * @param[in] epsilon (Optional) Batch normalization layer epsilon parameter. Defaults to 0.001f.
Manuel Bottini11091762019-06-17 12:04:40 +010066 * @param[in] fbn_type (Optional) Fused batch normalization type. Defaults to Convolution.
giuros0115ecc9a2018-12-06 10:47:34 +000067 */
Manuel Bottini11091762019-06-17 12:04:40 +010068 void configure(const ITensor *input_weights, const ITensor *bn_mean, const ITensor *bn_var, ITensor *fused_weights, ITensor *fused_bias,
69 const ITensor *input_bias = nullptr, const ITensor *bn_beta = nullptr, const ITensor *bn_gamma = nullptr,
70 float epsilon = 0.001f, FuseBatchNormalizationType fbn_type = FuseBatchNormalizationType::CONVOLUTION);
giuros0115ecc9a2018-12-06 10:47:34 +000071 /** Static function to check if given info will lead to a valid configuration of @ref NEFuseBatchNormalization
72 *
Manuel Bottini11091762019-06-17 12:04:40 +010073 * @param[in] input_weights Input weights tensor info for convolution or depthwise convolution layer. Data type supported: F16/F32. Data layout supported: NCHW, NHWC
74 * @param[in] bn_mean Batch normalization layer mean tensor info. Same as @p input_weights
75 * @param[in] bn_var Batch normalization layer variance tensor info. Same as @p input_weights
76 * @param[in] fused_weights (Optional) Output fused weights tensor info. It can be a nullptr in case of in-place computation. Same as @p input_weights
77 * @param[in] fused_bias (Optional) Output fused bias tensor info. It can be a nullptr in case of in-place computation and input_bias != nullptr. Same as @p input_weights
78 * @param[in] input_bias (Optional) Input bias tensor info for convolution or depthwise convolution layer. It can be a nullptr in case the bias tensor is not required. Same as @p input_weights
79 * @param[in] bn_beta (Optional) Batch normalization layer beta tensor info. It can be a nullptr in case the beta tensor is not required. Same as @p input_weights
80 * @note if nullptr, bn_beta is set to 0.0
81 * @param[in] bn_gamma (Optional) Batch normalization layer gamma tensor info. It can be a nullptr in case the gamma tensor is not required. Same as @p input_weights
82 * @note if nullptr, bn_gamma is set to 1.0
giuros0115ecc9a2018-12-06 10:47:34 +000083 * @param[in] epsilon (Optional) Batch normalization layer epsilon parameter. Defaults to 0.001f.
Manuel Bottini11091762019-06-17 12:04:40 +010084 * @param[in] fbn_type (Optional) Fused batch normalization type. Defaults to Convolution.
giuros0115ecc9a2018-12-06 10:47:34 +000085 *
86 * @return a status
87 */
Manuel Bottini11091762019-06-17 12:04:40 +010088 static Status validate(const ITensorInfo *input_weights, const ITensorInfo *bn_mean, const ITensorInfo *bn_var,
giuros0115ecc9a2018-12-06 10:47:34 +000089 const ITensorInfo *fused_weights, const ITensorInfo *fused_bias,
Manuel Bottini11091762019-06-17 12:04:40 +010090 const ITensorInfo *input_bias = nullptr, const ITensorInfo *bn_beta = nullptr, const ITensorInfo *bn_gamma = nullptr,
91 float epsilon = 0.001f, FuseBatchNormalizationType fbn_type = FuseBatchNormalizationType::CONVOLUTION);
giuros0115ecc9a2018-12-06 10:47:34 +000092
93 // Inherited methods overridden:
94 void run() override;
95
96private:
Michalis Spyrouebcebf12020-10-21 00:04:14 +010097 std::unique_ptr<NEFuseBatchNormalizationKernel> _fuse_bn_kernel;
giuros0115ecc9a2018-12-06 10:47:34 +000098};
99} // namespace arm_compute
Michalis Spyrouf4643372019-11-29 16:17:13 +0000100#endif /*ARM_COMPUTE_NEFUSEBATCHNORMALIZATION_H */