xref: /aosp_15_r20/external/ComputeLibrary/src/runtime/CL/functions/CLUnstack.cpp (revision c217d954acce2dbc11938adb493fc0abd69584f3)
1*c217d954SCole Faust /*
2*c217d954SCole Faust  * Copyright (c) 2018-2021 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 "arm_compute/runtime/CL/functions/CLUnstack.h"
25*c217d954SCole Faust 
26*c217d954SCole Faust #include "arm_compute/core/CL/ICLTensor.h"
27*c217d954SCole Faust #include "arm_compute/core/Error.h"
28*c217d954SCole Faust #include "arm_compute/core/TensorInfo.h"
29*c217d954SCole Faust #include "arm_compute/core/Types.h"
30*c217d954SCole Faust #include "arm_compute/core/utils/misc/ShapeCalculator.h"
31*c217d954SCole Faust 
32*c217d954SCole Faust #include "src/common/utils/Log.h"
33*c217d954SCole Faust 
34*c217d954SCole Faust namespace arm_compute
35*c217d954SCole Faust {
36*c217d954SCole Faust namespace
37*c217d954SCole Faust {
wrap_axis(int axis,const ITensorInfo * const tensor)38*c217d954SCole Faust inline unsigned int wrap_axis(int axis, const ITensorInfo *const tensor)
39*c217d954SCole Faust {
40*c217d954SCole Faust     return wrap_around(axis, static_cast<int>(tensor->num_dimensions()));
41*c217d954SCole Faust }
42*c217d954SCole Faust 
setup_slice_coordinates_and_mask(Coordinates & slice_start,int32_t & slice_end_mask,const unsigned int input_num_dimensions)43*c217d954SCole Faust inline void setup_slice_coordinates_and_mask(Coordinates &slice_start, int32_t &slice_end_mask, const unsigned int input_num_dimensions)
44*c217d954SCole Faust {
45*c217d954SCole Faust     // Setups up coordinates to slice the input tensor: start coordinates to all 0s and the unstacking axis of both Start/End to slice just one 2d tensor at a time.
46*c217d954SCole Faust     Coordinates slice_end;
47*c217d954SCole Faust     slice_start.set_num_dimensions(input_num_dimensions);
48*c217d954SCole Faust     slice_end.set_num_dimensions(input_num_dimensions);
49*c217d954SCole Faust     for(size_t k = 0; k < input_num_dimensions; ++k)
50*c217d954SCole Faust     {
51*c217d954SCole Faust         slice_start.set(k, 0);
52*c217d954SCole Faust         slice_end.set(k, -1);
53*c217d954SCole Faust     }
54*c217d954SCole Faust     slice_end_mask = arm_compute::helpers::tensor_transform::construct_slice_end_mask(slice_end);
55*c217d954SCole Faust }
56*c217d954SCole Faust } // namespace
57*c217d954SCole Faust 
CLUnstack()58*c217d954SCole Faust CLUnstack::CLUnstack() // NOLINT
59*c217d954SCole Faust     : _num_slices(0),
60*c217d954SCole Faust       _strided_slice_vector()
61*c217d954SCole Faust {
62*c217d954SCole Faust }
63*c217d954SCole Faust 
configure(const ICLTensor * input,const std::vector<ICLTensor * > & output_vector,int axis)64*c217d954SCole Faust void CLUnstack::configure(const ICLTensor *input, const std::vector<ICLTensor *> &output_vector, int axis)
65*c217d954SCole Faust {
66*c217d954SCole Faust     configure(CLKernelLibrary::get().get_compile_context(), input, output_vector, axis);
67*c217d954SCole Faust }
68*c217d954SCole Faust 
configure(const CLCompileContext & compile_context,const ICLTensor * input,const std::vector<ICLTensor * > & output_vector,int axis)69*c217d954SCole Faust void CLUnstack::configure(const CLCompileContext &compile_context, const ICLTensor *input, const std::vector<ICLTensor *> &output_vector, int axis)
70*c217d954SCole Faust {
71*c217d954SCole Faust     ARM_COMPUTE_LOG_PARAMS(input, output_vector, axis);
72*c217d954SCole Faust     std::vector<ITensorInfo *> outputs_vector_info(output_vector.size());
73*c217d954SCole Faust     std::transform(output_vector.begin(), output_vector.end(), outputs_vector_info.begin(), [](ICLTensor * t)
74*c217d954SCole Faust     {
75*c217d954SCole Faust         ARM_COMPUTE_ERROR_ON_NULLPTR(t);
76*c217d954SCole Faust         return t->info();
77*c217d954SCole Faust     });
78*c217d954SCole Faust 
79*c217d954SCole Faust     ARM_COMPUTE_ERROR_ON_NULLPTR(input);
80*c217d954SCole Faust     ARM_COMPUTE_ERROR_THROW_ON(CLUnstack::validate(input->info(), outputs_vector_info, axis));
81*c217d954SCole Faust 
82*c217d954SCole Faust     // Wrap around negative values
83*c217d954SCole Faust     const unsigned int axis_u = wrap_axis(axis, input->info());
84*c217d954SCole Faust     _num_slices               = std::min(outputs_vector_info.size(), input->info()->dimension(axis_u));
85*c217d954SCole Faust     _strided_slice_vector.resize(_num_slices);
86*c217d954SCole Faust 
87*c217d954SCole Faust     Coordinates slice_start;
88*c217d954SCole Faust     int32_t     slice_end_mask;
89*c217d954SCole Faust     setup_slice_coordinates_and_mask(slice_start, slice_end_mask, input->info()->tensor_shape().num_dimensions());
90*c217d954SCole Faust     for(unsigned int slice = 0; slice < _num_slices; ++slice)
91*c217d954SCole Faust     {
92*c217d954SCole Faust         // Adjusts start and end coordinates to take a 2D slice at a time
93*c217d954SCole Faust         slice_start.set(axis_u, slice);
94*c217d954SCole Faust         _strided_slice_vector[slice].configure(compile_context, input, output_vector[slice], slice_start, Coordinates(), BiStrides(), 0, slice_end_mask, (1 << axis_u));
95*c217d954SCole Faust     }
96*c217d954SCole Faust }
97*c217d954SCole Faust 
validate(const ITensorInfo * input,const std::vector<ITensorInfo * > & output_vector,int axis)98*c217d954SCole Faust Status CLUnstack::validate(const ITensorInfo *input, const std::vector<ITensorInfo *> &output_vector, int axis)
99*c217d954SCole Faust {
100*c217d954SCole Faust     ARM_COMPUTE_RETURN_ERROR_ON_NULLPTR(input);
101*c217d954SCole Faust     ARM_COMPUTE_RETURN_ERROR_ON(output_vector.empty());
102*c217d954SCole Faust     ARM_COMPUTE_RETURN_ERROR_ON(axis < (-static_cast<int>(input->tensor_shape().num_dimensions())));
103*c217d954SCole Faust     ARM_COMPUTE_RETURN_ERROR_ON(axis >= static_cast<int>(input->tensor_shape().num_dimensions()));
104*c217d954SCole Faust     const unsigned int num_slices = std::min(output_vector.size(), input->dimension(wrap_axis(axis, input)));
105*c217d954SCole Faust     ARM_COMPUTE_RETURN_ERROR_ON(num_slices > input->dimension(wrap_axis(axis, input)));
106*c217d954SCole Faust     ARM_COMPUTE_RETURN_ERROR_ON(num_slices > output_vector.size());
107*c217d954SCole Faust     Coordinates slice_start;
108*c217d954SCole Faust     int32_t     slice_end_mask;
109*c217d954SCole Faust     for(size_t k = 0; k < num_slices; ++k)
110*c217d954SCole Faust     {
111*c217d954SCole Faust         slice_start.set(wrap_axis(axis, input), k);
112*c217d954SCole Faust         setup_slice_coordinates_and_mask(slice_start, slice_end_mask, input->tensor_shape().num_dimensions());
113*c217d954SCole Faust         ARM_COMPUTE_RETURN_ON_ERROR(CLStridedSlice::validate(input, output_vector[k], slice_start, Coordinates(), BiStrides(), 0, slice_end_mask, (1 << wrap_axis(axis, input))));
114*c217d954SCole Faust     }
115*c217d954SCole Faust     return Status{};
116*c217d954SCole Faust }
117*c217d954SCole Faust 
run()118*c217d954SCole Faust void CLUnstack::run()
119*c217d954SCole Faust {
120*c217d954SCole Faust     for(unsigned i = 0; i < _num_slices; ++i)
121*c217d954SCole Faust     {
122*c217d954SCole Faust         _strided_slice_vector[i].run();
123*c217d954SCole Faust     }
124*c217d954SCole Faust }
125*c217d954SCole Faust 
126*c217d954SCole Faust } // namespace arm_compute
127