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Gian Marco Iodicebf9731e2018-12-12 10:18:04 +00001/*
Gian Marco Iodicebacfec52019-01-11 11:30:55 +00002 * Copyright (c) 2018-2019 ARM Limited.
Gian Marco Iodicebf9731e2018-12-12 10:18:04 +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
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
19 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * 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 */
24#include "arm_compute/core/CL/kernels/CLGEMMMatrixMultiplyReshapedKernel.h"
25
26#include "arm_compute/core/AccessWindowStatic.h"
27#include "arm_compute/core/CL/CLHelpers.h"
28#include "arm_compute/core/CL/CLKernelLibrary.h"
Georgios Pinitas8f5802f2019-02-22 11:08:32 +000029#include "arm_compute/core/CL/CLValidate.h"
Gian Marco Iodicebf9731e2018-12-12 10:18:04 +000030#include "arm_compute/core/CL/ICLTensor.h"
31#include "arm_compute/core/CL/OpenCL.h"
32#include "arm_compute/core/Error.h"
33#include "arm_compute/core/Helpers.h"
34#include "arm_compute/core/TensorInfo.h"
35#include "arm_compute/core/Types.h"
36#include "arm_compute/core/Utils.h"
37#include "arm_compute/core/Validate.h"
38#include "arm_compute/core/Window.h"
39#include "arm_compute/core/utils/misc/ShapeCalculator.h"
40#include "support/ToolchainSupport.h"
41
42#include <cstddef>
43#include <cstdint>
44#include <tuple>
45
46using namespace arm_compute;
47using namespace arm_compute::misc::shape_calculator;
48
49namespace arm_compute
50{
51class Coordinates;
52} // namespace arm_compute
53
54namespace
55{
56using ElementsProcessed = Steps;
57
58Status validate_arguments(const ITensorInfo *input0, const ITensorInfo *input1, const ITensorInfo *output, float alpha, const GEMMLHSMatrixInfo &lhs_info, const GEMMRHSMatrixInfo &rhs_info,
59 const GEMMReshapeInfo &gemm_info)
60{
61 ARM_COMPUTE_UNUSED(alpha);
62 ARM_COMPUTE_RETURN_ERROR_ON_NULLPTR(input0, input1, output);
Georgios Pinitas8f5802f2019-02-22 11:08:32 +000063 ARM_COMPUTE_RETURN_ERROR_ON_F16_UNSUPPORTED(input0);
Gian Marco Iodicebf9731e2018-12-12 10:18:04 +000064 ARM_COMPUTE_RETURN_ERROR_ON_DATA_TYPE_CHANNEL_NOT_IN(input0, 1, DataType::F32, DataType::F16);
65 ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_DATA_TYPES(input0, input1);
66 ARM_COMPUTE_RETURN_ERROR_ON_MSG(input0->num_dimensions() > 4, "The number of dimensions for the LHS matrix must be <= 4");
67 ARM_COMPUTE_RETURN_ERROR_ON_MSG(input1->num_dimensions() > 3, "The number of dimensions for the RHS matrix must be <= 3");
68 ARM_COMPUTE_RETURN_ERROR_ON(lhs_info.transpose);
69 ARM_COMPUTE_RETURN_ERROR_ON(!rhs_info.transpose);
70 ARM_COMPUTE_RETURN_ERROR_ON(lhs_info.k0 != rhs_info.k0);
Gian Marco Iodicebacfec52019-01-11 11:30:55 +000071 ARM_COMPUTE_RETURN_ERROR_ON_MSG(((lhs_info.k0 & (lhs_info.k0 - 1)) && lhs_info.k0 != 3), "Only 2,3,4,8,16 are supported for k0");
72 ARM_COMPUTE_RETURN_ERROR_ON(lhs_info.k0 > 16);
Gian Marco Iodicebf9731e2018-12-12 10:18:04 +000073 ARM_COMPUTE_RETURN_ERROR_ON(lhs_info.m0 < 2 || lhs_info.m0 > 8);
Gian Marco Iodicebacfec52019-01-11 11:30:55 +000074 ARM_COMPUTE_RETURN_ERROR_ON_MSG(((rhs_info.n0 & (rhs_info.n0 - 1)) && rhs_info.n0 != 3), "Only 2,3,4,8,16 are supported for n0");
Gian Marco Iodicebf9731e2018-12-12 10:18:04 +000075
76 const int m = gemm_info.m();
77 const int n = gemm_info.n();
78 const int k = gemm_info.k();
79
80 TensorShape tensor_shape0{ input0->tensor_shape() };
81 tensor_shape0.set(0, k);
82 tensor_shape0.set(1, m);
83
84 TensorShape tensor_shape1{ input1->tensor_shape() };
85 tensor_shape1.set(0, n);
86 tensor_shape1.set(1, k);
87
88 const TensorInfo tensor_info0 = input0->clone()->set_tensor_shape(tensor_shape0);
89 const TensorInfo tensor_info1 = input1->clone()->set_tensor_shape(tensor_shape1);
90
91 const TensorInfo tensor_info_reshaped0 = input0->clone()->set_tensor_shape(compute_lhs_reshaped_shape(tensor_info0, lhs_info));
92 const TensorInfo tensor_info_reshaped1 = input1->clone()->set_tensor_shape(compute_rhs_reshaped_shape(tensor_info1, rhs_info));
93
94 ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_SHAPES(input0, &tensor_info_reshaped0);
95 ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_SHAPES(input1, &tensor_info_reshaped1);
96
97 if(output->total_size() != 0)
98 {
99 const TensorInfo tensor_info_output = output->clone()->set_tensor_shape(compute_mm_shape(*input0, *input1, gemm_info));
100 ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_SHAPES(output, &tensor_info_output);
101 ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_DATA_TYPES(input0, output);
102 }
103
104 return Status{};
105}
106
107std::pair<Status, Window> validate_and_configure_window(ITensorInfo *input0, ITensorInfo *input1, ITensorInfo *output, const GEMMLHSMatrixInfo &lhs_info, const GEMMRHSMatrixInfo &rhs_info,
108 const GEMMReshapeInfo &gemm_info, ElementsProcessed &num_elements_processed)
109{
110 unsigned int &num_elems_processed_per_iteration_x = num_elements_processed[0];
111 unsigned int &num_elems_processed_per_iteration_y = num_elements_processed[1];
112 bool reinterpret_output_as_3d = (gemm_info.depth_output_gemm3d() != 0);
113
114 Window win{};
115 Window win_out{};
116 bool window_changed = false;
117
118 // Output tensor auto initialization if not yet initialized
119 auto_init_if_empty(*output, input0->clone()->set_tensor_shape(compute_mm_shape(*input0, *input1, gemm_info)));
120
121 TensorInfo tmp_info(*output);
122
123 if(reinterpret_output_as_3d)
124 {
125 // Since the output tensor has to be reinterpreted as 3D and the execute window is based on a 2D GEMM,
126 // the window needs to be constructed on the 2D collapsed version of the tensor
127 TensorShape tmp_shape(output->tensor_shape());
128 tmp_shape.collapse(2U, 1U);
129 tmp_info.set_tensor_shape(tmp_shape);
130 }
131
132 // Configure kernel window
133 num_elems_processed_per_iteration_x = rhs_info.n0;
134 num_elems_processed_per_iteration_y = lhs_info.m0;
135
136 // Note: bottom paddings are calculated manually as the output can be reinterpreted as 3D tensor
137 // The only way to set properly the paddings, it is to set those explicitly through the AccessWindowStatic
138 const int m = gemm_info.m();
139 const int bottom_pad = (num_elems_processed_per_iteration_y - (m % num_elems_processed_per_iteration_y)) % num_elems_processed_per_iteration_y;
140
141 win = calculate_max_window(tmp_info, Steps(num_elems_processed_per_iteration_x, num_elems_processed_per_iteration_y));
142 win_out = calculate_max_window(*output, Steps(num_elems_processed_per_iteration_x, num_elems_processed_per_iteration_y));
143
144 AccessWindowStatic input0_access(input0, 0, 0,
145 ceil_to_multiple(input0->dimension(0), num_elems_processed_per_iteration_y),
146 input0->dimension(1));
147 AccessWindowStatic input1_access(input1, 0, 0,
148 ceil_to_multiple(input1->dimension(0), num_elems_processed_per_iteration_x),
149 input1->dimension(1));
150 AccessWindowStatic output_access(output, 0, 0,
151 ceil_to_multiple(output->dimension(0), num_elems_processed_per_iteration_x),
152 output->dimension(1) + bottom_pad);
153
154 window_changed = update_window_and_padding(win, input0_access, input1_access) || // window used by the execute_window_loop
155 update_window_and_padding(win_out, output_access); // window used to update the padding requirements of output tensor
156
157 output_access.set_valid_region(win_out, ValidRegion(Coordinates(0, 0), output->tensor_shape()));
158
159 // Collapse along the Z direction
160 // This collapse needs to be here in order to tune the Z dimension of LWS
161 Window collapsed = win;
162 const unsigned int dimension_to_collapse = std::min(static_cast<unsigned int>(output->num_dimensions()), 2u);
163 collapsed = win.collapse(win, dimension_to_collapse);
164
165 Status err = (window_changed) ? ARM_COMPUTE_CREATE_ERROR(ErrorCode::RUNTIME_ERROR, "Insufficient Padding!") : Status{};
166 return std::make_pair(err, collapsed);
167}
168} // namespace
169
170CLGEMMMatrixMultiplyReshapedKernel::CLGEMMMatrixMultiplyReshapedKernel()
Gian Marco Iodicebacfec52019-01-11 11:30:55 +0000171 : _input0(nullptr), _input1(nullptr), _output(nullptr), _slide_matrix_b(true), _reinterpret_output_as_3d(false), _k(1)
Gian Marco Iodicebf9731e2018-12-12 10:18:04 +0000172{
173}
174
175void CLGEMMMatrixMultiplyReshapedKernel::configure(const ICLTensor *input0, const ICLTensor *input1, ICLTensor *output, float alpha, const GEMMLHSMatrixInfo &lhs_info,
176 const GEMMRHSMatrixInfo &rhs_info, const GEMMReshapeInfo &gemm_info)
177{
178 ARM_COMPUTE_ERROR_ON_NULLPTR(input0, input1, output);
179
180 ARM_COMPUTE_ERROR_THROW_ON(validate_arguments(input0->info(), input1->info(), output->info(), alpha, lhs_info, rhs_info, gemm_info));
181
182 _input0 = input0;
183 _input1 = input1;
184 _output = output;
185 _reinterpret_output_as_3d = (gemm_info.depth_output_gemm3d() != 0);
Gian Marco Iodicebacfec52019-01-11 11:30:55 +0000186 _k = gemm_info.k();
Gian Marco Iodicebf9731e2018-12-12 10:18:04 +0000187
188 // Check if we need to slide the matrix B
189 const unsigned int num_dimensions_input0 = _input0->info()->num_dimensions();
190 _slide_matrix_b = (_input1->info()->num_dimensions() >= num_dimensions_input0);
191
192 ElementsProcessed num_elements_processed{};
193
194 // Configure kernel window
195 auto win_config = validate_and_configure_window(input0->info(), input1->info(), output->info(), lhs_info, rhs_info, gemm_info, num_elements_processed);
196 ARM_COMPUTE_ERROR_THROW_ON(win_config.first);
197 ICLKernel::configure_internal(win_config.second);
198
199 // Create build options
200 CLBuildOptions build_opts;
201 build_opts.add_option("-DDATA_TYPE=" + get_cl_type_from_data_type(input0->info()->data_type()));
202 build_opts.add_option_if(std::abs(1.0f - alpha) > 0.00001f, "-DALPHA=" + float_to_string_with_full_precision(alpha));
203 build_opts.add_option_if(_reinterpret_output_as_3d, "-DREINTERPRET_OUTPUT_AS_3D");
204 build_opts.add_option_if(_reinterpret_output_as_3d, "-DHEIGHT_GEMM3D=" + support::cpp11::to_string(output->info()->dimension(1)));
205 build_opts.add_option_if(_reinterpret_output_as_3d, "-DDEPTH_GEMM3D=" + support::cpp11::to_string(output->info()->dimension(2)));
206 build_opts.add_option_if(!_slide_matrix_b, "-DMATRIX_B_DEPTH=" + support::cpp11::to_string(input1->info()->dimension(2)));
207 build_opts.add_option_if(lhs_info.interleave, "-DLHS_INTERLEAVE");
208 build_opts.add_option_if(rhs_info.interleave, "-DRHS_INTERLEAVE");
Gian Marco Iodicebf9731e2018-12-12 10:18:04 +0000209 build_opts.add_option("-DM0=" + support::cpp11::to_string(lhs_info.m0));
210 build_opts.add_option("-DN0=" + support::cpp11::to_string(rhs_info.n0));
211 build_opts.add_option("-DK0=" + support::cpp11::to_string(lhs_info.k0));
212 build_opts.add_option("-DV0=" + support::cpp11::to_string(lhs_info.v0));
213 build_opts.add_option("-DH0=" + support::cpp11::to_string(rhs_info.h0));
214
215 std::string kernel_name("gemm_mm_reshaped_");
216 kernel_name += lhs_info.transpose ? "lhs_t_" : "lhs_nt_";
217 kernel_name += rhs_info.transpose ? "rhs_t" : "rhs_nt";
218
219 // Create kernel
220 _kernel = static_cast<cl::Kernel>(CLKernelLibrary::get().create_kernel(kernel_name, build_opts.options()));
221
222 // Set config_id for enabling LWS tuning
223 _config_id = kernel_name;
224 _config_id += "_";
225 _config_id += (_reinterpret_output_as_3d ? "3do_" : "");
226 _config_id += lower_string(string_from_data_type(input0->info()->data_type()));
227 _config_id += "_";
228 _config_id += support::cpp11::to_string(output->info()->dimension(1));
229 _config_id += "_";
230 _config_id += support::cpp11::to_string(output->info()->dimension(0));
231 _config_id += "_";
232 _config_id += support::cpp11::to_string(gemm_info.k());
233 _config_id += "_";
234 _config_id += support::cpp11::to_string(output->info()->dimension(2));
235 _config_id += "_";
236 _config_id += support::cpp11::to_string(lhs_info.m0);
237 _config_id += "_";
238 _config_id += support::cpp11::to_string(rhs_info.n0);
239 _config_id += "_";
240 _config_id += support::cpp11::to_string(lhs_info.k0);
241 _config_id += "_";
242 _config_id += support::cpp11::to_string(lhs_info.v0);
243 _config_id += "_";
244 _config_id += support::cpp11::to_string(rhs_info.h0);
245 _config_id += "_";
246 _config_id += support::cpp11::to_string(lhs_info.interleave);
247 _config_id += "_";
248 _config_id += support::cpp11::to_string(rhs_info.interleave);
249}
250
251Status CLGEMMMatrixMultiplyReshapedKernel::validate(const ITensorInfo *input0, const ITensorInfo *input1, const ITensorInfo *output, float alpha, const GEMMLHSMatrixInfo &lhs_info,
252 const GEMMRHSMatrixInfo &rhs_info, const GEMMReshapeInfo &gemm_info)
253{
254 ElementsProcessed num_elements_processed{};
255 ARM_COMPUTE_RETURN_ON_ERROR(validate_arguments(input0, input1, output, alpha, lhs_info, rhs_info, gemm_info));
256 ARM_COMPUTE_RETURN_ON_ERROR(validate_and_configure_window(input0->clone().get(),
257 input1->clone().get(),
258 output->clone().get(),
259 lhs_info,
260 rhs_info,
261 gemm_info,
262 num_elements_processed)
263 .first);
264
265 return Status{};
266}
267
268void CLGEMMMatrixMultiplyReshapedKernel::run(const Window &window, cl::CommandQueue &queue)
269{
270 ARM_COMPUTE_ERROR_ON_UNCONFIGURED_KERNEL(this);
271 ARM_COMPUTE_ERROR_ON_INVALID_SUBWINDOW(ICLKernel::window(), window);
272
273 if(_input1->info()->num_dimensions() < 3)
274 {
275 // The stride_z for matrix B must be zero if we do not slice
276 ARM_COMPUTE_ERROR_ON(_input1->info()->strides_in_bytes()[3] != 0);
277 }
278
279 Window slice = window.first_slice_window_3D();
280 Window slice_matrix_b = slice;
281
282 slice_matrix_b.set(Window::DimX, Window::Dimension(0, 1, 1));
283 slice_matrix_b.set(Window::DimY, Window::Dimension(0, 1, 1));
284
285 if(_reinterpret_output_as_3d)
286 {
287 // Pass bottom paddings to the kernel if the output has to be reinterpreted as 3D tensor
Gian Marco Iodicebacfec52019-01-11 11:30:55 +0000288 const unsigned int idx0 = 3 * num_arguments_per_2D_tensor() + 4;
Gian Marco Iodicebf9731e2018-12-12 10:18:04 +0000289 const unsigned int total_cross_plane_pad = _output->info()->padding().top + _output->info()->padding().bottom;
290 _kernel.setArg<cl_uint>(idx0, static_cast<unsigned int>(total_cross_plane_pad));
291 }
292
293 do
294 {
295 Window slice_b = slice;
296 // Don't slice matrix B along the z dimension if matrix B has just 2 dimensions and matrix A more than 2
297 // This scenario can happen when the matrix multiplication is used to perform a convolution operation
298 if(!_slide_matrix_b)
299 {
300 slice_b = slice_matrix_b;
301 }
302
303 unsigned int idx = 0;
304 add_2D_tensor_argument(idx, _input0, slice);
305 add_2D_tensor_argument(idx, _input1, slice_b);
306 add_2D_tensor_argument(idx, _output, slice);
Gian Marco Iodicebacfec52019-01-11 11:30:55 +0000307 _kernel.setArg<cl_uint>(idx++, static_cast<unsigned int>(_k));
Gian Marco Iodicebf9731e2018-12-12 10:18:04 +0000308 _kernel.setArg<cl_uint>(idx++, static_cast<unsigned int>(_input0->info()->strides_in_bytes()[2]));
309 _kernel.setArg<cl_uint>(idx++, static_cast<unsigned int>(_input1->info()->strides_in_bytes()[2]));
310 _kernel.setArg<cl_uint>(idx++, static_cast<unsigned int>(_output->info()->strides_in_bytes()[2]));
311 enqueue(queue, *this, slice, lws_hint());
312 }
313 while(window.slide_window_slice_3D(slice));
314}