1*c217d954SCole Faust /*
2*c217d954SCole Faust * Copyright (c) 2019-2021 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/NEON/functions/NEFFT1D.h"
25*c217d954SCole Faust
26*c217d954SCole Faust #include "arm_compute/core/ITensor.h"
27*c217d954SCole Faust #include "arm_compute/core/Validate.h"
28*c217d954SCole Faust #include "arm_compute/runtime/NEON/NEScheduler.h"
29*c217d954SCole Faust #include "src/common/utils/Log.h"
30*c217d954SCole Faust #include "src/core/NEON/kernels/NEFFTDigitReverseKernel.h"
31*c217d954SCole Faust #include "src/core/NEON/kernels/NEFFTRadixStageKernel.h"
32*c217d954SCole Faust #include "src/core/NEON/kernels/NEFFTScaleKernel.h"
33*c217d954SCole Faust #include "src/core/utils/helpers/fft.h"
34*c217d954SCole Faust
35*c217d954SCole Faust namespace arm_compute
36*c217d954SCole Faust {
37*c217d954SCole Faust NEFFT1D::~NEFFT1D() = default;
38*c217d954SCole Faust
NEFFT1D(std::shared_ptr<IMemoryManager> memory_manager)39*c217d954SCole Faust NEFFT1D::NEFFT1D(std::shared_ptr<IMemoryManager> memory_manager)
40*c217d954SCole Faust : _memory_group(std::move(memory_manager)), _digit_reverse_kernel(), _fft_kernels(), _scale_kernel(), _digit_reversed_input(), _digit_reverse_indices(), _num_ffts(0), _axis(0), _run_scale(false)
41*c217d954SCole Faust {
42*c217d954SCole Faust }
43*c217d954SCole Faust
configure(const ITensor * input,ITensor * output,const FFT1DInfo & config)44*c217d954SCole Faust void NEFFT1D::configure(const ITensor *input, ITensor *output, const FFT1DInfo &config)
45*c217d954SCole Faust {
46*c217d954SCole Faust ARM_COMPUTE_ERROR_ON_NULLPTR(input, output);
47*c217d954SCole Faust ARM_COMPUTE_ERROR_THROW_ON(NEFFT1D::validate(input->info(), output->info(), config));
48*c217d954SCole Faust ARM_COMPUTE_LOG_PARAMS(input, output, config);
49*c217d954SCole Faust
50*c217d954SCole Faust // Decompose size to radix factors
51*c217d954SCole Faust const auto supported_radix = NEFFTRadixStageKernel::supported_radix();
52*c217d954SCole Faust const unsigned int N = input->info()->tensor_shape()[config.axis];
53*c217d954SCole Faust const auto decomposed_vector = arm_compute::helpers::fft::decompose_stages(N, supported_radix);
54*c217d954SCole Faust ARM_COMPUTE_ERROR_ON(decomposed_vector.empty());
55*c217d954SCole Faust
56*c217d954SCole Faust // Flags
57*c217d954SCole Faust _run_scale = config.direction == FFTDirection::Inverse;
58*c217d954SCole Faust
59*c217d954SCole Faust const bool is_c2r = input->info()->num_channels() == 2 && output->info()->num_channels() == 1;
60*c217d954SCole Faust
61*c217d954SCole Faust // Configure digit reverse
62*c217d954SCole Faust FFTDigitReverseKernelInfo digit_reverse_config;
63*c217d954SCole Faust digit_reverse_config.axis = config.axis;
64*c217d954SCole Faust digit_reverse_config.conjugate = config.direction == FFTDirection::Inverse;
65*c217d954SCole Faust TensorInfo digit_reverse_indices_info(TensorShape(input->info()->tensor_shape()[config.axis]), 1, DataType::U32);
66*c217d954SCole Faust _digit_reverse_indices.allocator()->init(digit_reverse_indices_info);
67*c217d954SCole Faust _memory_group.manage(&_digit_reversed_input);
68*c217d954SCole Faust _digit_reverse_kernel = std::make_unique<NEFFTDigitReverseKernel>();
69*c217d954SCole Faust _digit_reverse_kernel->configure(input, &_digit_reversed_input, &_digit_reverse_indices, digit_reverse_config);
70*c217d954SCole Faust
71*c217d954SCole Faust // Create and configure FFT kernels
72*c217d954SCole Faust unsigned int Nx = 1;
73*c217d954SCole Faust _num_ffts = decomposed_vector.size();
74*c217d954SCole Faust _fft_kernels.resize(_num_ffts);
75*c217d954SCole Faust _axis = config.axis;
76*c217d954SCole Faust
77*c217d954SCole Faust for(unsigned int i = 0; i < _num_ffts; ++i)
78*c217d954SCole Faust {
79*c217d954SCole Faust const unsigned int radix_for_stage = decomposed_vector.at(i);
80*c217d954SCole Faust
81*c217d954SCole Faust FFTRadixStageKernelInfo fft_kernel_info;
82*c217d954SCole Faust fft_kernel_info.axis = config.axis;
83*c217d954SCole Faust fft_kernel_info.radix = radix_for_stage;
84*c217d954SCole Faust fft_kernel_info.Nx = Nx;
85*c217d954SCole Faust fft_kernel_info.is_first_stage = (i == 0);
86*c217d954SCole Faust _fft_kernels[i] = std::make_unique<NEFFTRadixStageKernel>();
87*c217d954SCole Faust _fft_kernels[i]->configure(&_digit_reversed_input, ((i == (_num_ffts - 1)) && !is_c2r) ? output : nullptr, fft_kernel_info);
88*c217d954SCole Faust
89*c217d954SCole Faust Nx *= radix_for_stage;
90*c217d954SCole Faust }
91*c217d954SCole Faust
92*c217d954SCole Faust // Configure scale kernel
93*c217d954SCole Faust if(_run_scale)
94*c217d954SCole Faust {
95*c217d954SCole Faust FFTScaleKernelInfo scale_config;
96*c217d954SCole Faust scale_config.scale = static_cast<float>(N);
97*c217d954SCole Faust scale_config.conjugate = config.direction == FFTDirection::Inverse;
98*c217d954SCole Faust _scale_kernel = std::make_unique<NEFFTScaleKernel>();
99*c217d954SCole Faust is_c2r ? _scale_kernel->configure(&_digit_reversed_input, output, scale_config) : _scale_kernel->configure(output, nullptr, scale_config);
100*c217d954SCole Faust }
101*c217d954SCole Faust
102*c217d954SCole Faust // Allocate tensors
103*c217d954SCole Faust _digit_reversed_input.allocator()->allocate();
104*c217d954SCole Faust _digit_reverse_indices.allocator()->allocate();
105*c217d954SCole Faust
106*c217d954SCole Faust // Init digit reverse indices
107*c217d954SCole Faust const auto digit_reverse_cpu = arm_compute::helpers::fft::digit_reverse_indices(N, decomposed_vector);
108*c217d954SCole Faust std::copy_n(digit_reverse_cpu.data(), N, reinterpret_cast<unsigned int *>(_digit_reverse_indices.buffer()));
109*c217d954SCole Faust }
110*c217d954SCole Faust
validate(const ITensorInfo * input,const ITensorInfo * output,const FFT1DInfo & config)111*c217d954SCole Faust Status NEFFT1D::validate(const ITensorInfo *input, const ITensorInfo *output, const FFT1DInfo &config)
112*c217d954SCole Faust {
113*c217d954SCole Faust ARM_COMPUTE_RETURN_ERROR_ON_NULLPTR(input, output);
114*c217d954SCole Faust ARM_COMPUTE_RETURN_ERROR_ON(input->data_type() != DataType::F32);
115*c217d954SCole Faust ARM_COMPUTE_RETURN_ERROR_ON(input->num_channels() > 2);
116*c217d954SCole Faust ARM_COMPUTE_RETURN_ERROR_ON(std::set<unsigned int>({ 0, 1 }).count(config.axis) == 0);
117*c217d954SCole Faust
118*c217d954SCole Faust // Check if FFT is decomposable
119*c217d954SCole Faust const auto supported_radix = NEFFTRadixStageKernel::supported_radix();
120*c217d954SCole Faust const unsigned int N = input->tensor_shape()[config.axis];
121*c217d954SCole Faust const auto decomposed_vector = arm_compute::helpers::fft::decompose_stages(N, supported_radix);
122*c217d954SCole Faust ARM_COMPUTE_RETURN_ERROR_ON(decomposed_vector.empty());
123*c217d954SCole Faust
124*c217d954SCole Faust // Checks performed when output is configured
125*c217d954SCole Faust if((output != nullptr) && (output->total_size() != 0))
126*c217d954SCole Faust {
127*c217d954SCole Faust // All combinations are supported except real input with real output (i.e., both input channels set to 1)
128*c217d954SCole Faust ARM_COMPUTE_RETURN_ERROR_ON(output->num_channels() == 1 && input->num_channels() == 1);
129*c217d954SCole Faust ARM_COMPUTE_RETURN_ERROR_ON(output->num_channels() > 2);
130*c217d954SCole Faust ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_SHAPES(input, output);
131*c217d954SCole Faust ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_DATA_TYPES(input, output);
132*c217d954SCole Faust }
133*c217d954SCole Faust
134*c217d954SCole Faust return Status{};
135*c217d954SCole Faust }
136*c217d954SCole Faust
run()137*c217d954SCole Faust void NEFFT1D::run()
138*c217d954SCole Faust {
139*c217d954SCole Faust MemoryGroupResourceScope scope_mg(_memory_group);
140*c217d954SCole Faust
141*c217d954SCole Faust NEScheduler::get().schedule(_digit_reverse_kernel.get(), (_axis == 0 ? Window::DimY : Window::DimZ));
142*c217d954SCole Faust
143*c217d954SCole Faust for(unsigned int i = 0; i < _num_ffts; ++i)
144*c217d954SCole Faust {
145*c217d954SCole Faust NEScheduler::get().schedule(_fft_kernels[i].get(), (_axis == 0 ? Window::DimY : Window::DimX));
146*c217d954SCole Faust }
147*c217d954SCole Faust
148*c217d954SCole Faust // Run output scaling
149*c217d954SCole Faust if(_run_scale)
150*c217d954SCole Faust {
151*c217d954SCole Faust NEScheduler::get().schedule(_scale_kernel.get(), Window::DimY);
152*c217d954SCole Faust }
153*c217d954SCole Faust }
154*c217d954SCole Faust } // namespace arm_compute
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