xref: /aosp_15_r20/external/ComputeLibrary/tests/validation/reference/StackLayer.cpp (revision c217d954acce2dbc11938adb493fc0abd69584f3)
1*c217d954SCole Faust /*
2*c217d954SCole Faust  * Copyright (c) 2018-2019 Arm Limited.
3*c217d954SCole Faust  *
4*c217d954SCole Faust  * SPDX-License-Identifier: MIT
5*c217d954SCole Faust  *
6*c217d954SCole Faust  * Permission is hereby granted, free of charge, to any person obtaining a copy
7*c217d954SCole Faust  * of this software and associated documentation files (the "Software"), to
8*c217d954SCole Faust  * deal in the Software without restriction, including without limitation the
9*c217d954SCole Faust  * rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
10*c217d954SCole Faust  * sell copies of the Software, and to permit persons to whom the Software is
11*c217d954SCole Faust  * furnished to do so, subject to the following conditions:
12*c217d954SCole Faust  *
13*c217d954SCole Faust  * The above copyright notice and this permission notice shall be included in all
14*c217d954SCole Faust  * copies or substantial portions of the Software.
15*c217d954SCole Faust  *
16*c217d954SCole Faust  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17*c217d954SCole Faust  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18*c217d954SCole Faust  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
19*c217d954SCole Faust  * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20*c217d954SCole Faust  * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21*c217d954SCole Faust  * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
22*c217d954SCole Faust  * SOFTWARE.
23*c217d954SCole Faust  */
24*c217d954SCole Faust #include "StackLayer.h"
25*c217d954SCole Faust 
26*c217d954SCole Faust #include "arm_compute/core/Types.h"
27*c217d954SCole Faust 
28*c217d954SCole Faust #include "tests/validation/Helpers.h"
29*c217d954SCole Faust 
30*c217d954SCole Faust #include <vector>
31*c217d954SCole Faust 
32*c217d954SCole Faust namespace arm_compute
33*c217d954SCole Faust {
34*c217d954SCole Faust namespace test
35*c217d954SCole Faust {
36*c217d954SCole Faust namespace validation
37*c217d954SCole Faust {
38*c217d954SCole Faust namespace reference
39*c217d954SCole Faust {
40*c217d954SCole Faust template <typename T>
stack_layer(const std::vector<SimpleTensor<T>> & in,const TensorShape & output_shape,DataType data_type,unsigned int axis)41*c217d954SCole Faust SimpleTensor<T> stack_layer(const std::vector<SimpleTensor<T>> &in, const TensorShape &output_shape, DataType data_type, unsigned int axis)
42*c217d954SCole Faust {
43*c217d954SCole Faust     ARM_COMPUTE_ERROR_ON(output_shape.num_dimensions() > 5);
44*c217d954SCole Faust     ARM_COMPUTE_ERROR_ON(in.size() < 2);
45*c217d954SCole Faust     ARM_COMPUTE_ERROR_ON(axis > in[0].shape().num_dimensions());
46*c217d954SCole Faust 
47*c217d954SCole Faust     SimpleTensor<T> out{ output_shape, data_type };
48*c217d954SCole Faust 
49*c217d954SCole Faust     const int width       = in[0].shape()[0];
50*c217d954SCole Faust     const int height      = in[0].shape()[1];
51*c217d954SCole Faust     const int depth       = in[0].shape()[2];
52*c217d954SCole Faust     const int batch_size  = in[0].shape()[3];
53*c217d954SCole Faust     const int num_tensors = in.size();
54*c217d954SCole Faust 
55*c217d954SCole Faust     // Array to store the input coordinates
56*c217d954SCole Faust     // i_coordinates[0] = xi, i_coordinates[1] = yi, i_coordinates[2] = zi
57*c217d954SCole Faust     // i_coordinates[3] = bi, i_coordinates[4] = i, i_coordinates[5] = 0
58*c217d954SCole Faust     // i_coordinates[5] will be always zero and used for not incrementing the output when the input has less than 4 dimensions
59*c217d954SCole Faust     std::array<int, 6> i_coordinates{ 0 };
60*c217d954SCole Faust 
61*c217d954SCole Faust     // Array of pointers used to map the output coordinates to the input ones accordingly with the axis
62*c217d954SCole Faust     // This array is initialized with &i_coordinates[5] since this will be always zero
63*c217d954SCole Faust     std::array<int *, 5> o_coordinates = { &i_coordinates[5], &i_coordinates[5], &i_coordinates[5], &i_coordinates[5], &i_coordinates[5] };
64*c217d954SCole Faust 
65*c217d954SCole Faust     // Set the axis coordinate
66*c217d954SCole Faust     o_coordinates[axis] = &i_coordinates[4];
67*c217d954SCole Faust 
68*c217d954SCole Faust     unsigned int k_shift = 0;
69*c217d954SCole Faust 
70*c217d954SCole Faust     // Map the output coordinates
71*c217d954SCole Faust     for(unsigned int k = 0; k < in[0].shape().num_dimensions(); ++k)
72*c217d954SCole Faust     {
73*c217d954SCole Faust         if(k == axis)
74*c217d954SCole Faust         {
75*c217d954SCole Faust             k_shift++;
76*c217d954SCole Faust         }
77*c217d954SCole Faust 
78*c217d954SCole Faust         o_coordinates[k + k_shift] = &i_coordinates[k];
79*c217d954SCole Faust     }
80*c217d954SCole Faust 
81*c217d954SCole Faust     // Use alias for the input coordinates
82*c217d954SCole Faust     int &xi = i_coordinates[0];
83*c217d954SCole Faust     int &yi = i_coordinates[1];
84*c217d954SCole Faust     int &zi = i_coordinates[2];
85*c217d954SCole Faust     int &bi = i_coordinates[3];
86*c217d954SCole Faust     int &i  = i_coordinates[4];
87*c217d954SCole Faust 
88*c217d954SCole Faust     // Use alias for the output coordinates
89*c217d954SCole Faust     int &xo = *(o_coordinates[0]);
90*c217d954SCole Faust     int &yo = *(o_coordinates[1]);
91*c217d954SCole Faust     int &zo = *(o_coordinates[2]);
92*c217d954SCole Faust     int &bo = *(o_coordinates[3]);
93*c217d954SCole Faust     int &wo = *(o_coordinates[4]);
94*c217d954SCole Faust 
95*c217d954SCole Faust     // Stack tensors
96*c217d954SCole Faust     for(; i < num_tensors; ++(i))
97*c217d954SCole Faust     {
98*c217d954SCole Faust         bi = 0;
99*c217d954SCole Faust         for(; bi < batch_size; ++(bi))
100*c217d954SCole Faust         {
101*c217d954SCole Faust             zi = 0;
102*c217d954SCole Faust             for(; zi < depth; ++(zi))
103*c217d954SCole Faust             {
104*c217d954SCole Faust                 yi = 0;
105*c217d954SCole Faust                 for(; yi < height; ++(yi))
106*c217d954SCole Faust                 {
107*c217d954SCole Faust                     xi = 0;
108*c217d954SCole Faust                     for(; xi < width; ++(xi))
109*c217d954SCole Faust                     {
110*c217d954SCole Faust                         *(reinterpret_cast<T *>(out(Coordinates(xo, yo, zo, bo, wo)))) = *(reinterpret_cast<const T *>(in[i](Coordinates(xi, yi, zi, bi))));
111*c217d954SCole Faust                     }
112*c217d954SCole Faust                 }
113*c217d954SCole Faust             }
114*c217d954SCole Faust         }
115*c217d954SCole Faust     }
116*c217d954SCole Faust 
117*c217d954SCole Faust     return out;
118*c217d954SCole Faust }
119*c217d954SCole Faust template SimpleTensor<int> stack_layer(const std::vector<SimpleTensor<int>> &in, const TensorShape &output_shape, DataType data_type, unsigned int axis);
120*c217d954SCole Faust template SimpleTensor<short> stack_layer(const std::vector<SimpleTensor<short>> &in, const TensorShape &output_shape, DataType data_type, unsigned int axis);
121*c217d954SCole Faust template SimpleTensor<char> stack_layer(const std::vector<SimpleTensor<char>> &in, const TensorShape &output_shape, DataType data_type, unsigned int axis);
122*c217d954SCole Faust } // namespace reference
123*c217d954SCole Faust } // namespace validation
124*c217d954SCole Faust } // namespace test
125*c217d954SCole Faust } // namespace arm_compute
126