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Michele Di Giorgio1e0208a2021-01-22 15:42:59 +00001/*
2 * Copyright (c) 2018-2021 Arm Limited.
3 *
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 */
Georgios Pinitas7891a732021-08-20 21:39:25 +010024#include "src/gpu/cl/kernels/ClElementwiseKernel.h"
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +000025
26#include "arm_compute/core/CL/CLHelpers.h"
27#include "arm_compute/core/CL/ICLTensor.h"
Georgios Pinitas8a5146f2021-01-12 15:51:07 +000028#include "src/common/utils/Validate.h"
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +000029#include "src/core/CL/CLValidate.h"
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +000030#include "src/core/helpers/AutoConfiguration.h"
31#include "src/core/helpers/WindowHelpers.h"
32#include "support/Cast.h"
33#include "support/StringSupport.h"
34#include <map>
35
36namespace arm_compute
37{
38namespace opencl
39{
40namespace kernels
41{
42namespace
43{
44constexpr unsigned int vector_size_byte_opencl = 16;
45
46std::map<ArithmeticOperation, std::string> supported_arithmetic_ops =
47{
48 { ArithmeticOperation::ADD, "ADD" },
49 { ArithmeticOperation::SUB, "SUB" },
50 { ArithmeticOperation::DIV, "DIV" },
51 { ArithmeticOperation::SQUARED_DIFF, "SQUARED_DIFF" },
52 { ArithmeticOperation::MIN, "MIN" },
53 { ArithmeticOperation::MAX, "MAX" },
54 { ArithmeticOperation::POWER, "POWER" },
55 { ArithmeticOperation::PRELU, "PRELU" },
56};
57
58std::map<ArithmeticOperation, std::string> supported_sat_arithmetic_ops =
59{
60 { ArithmeticOperation::ADD, "ADD" },
61 { ArithmeticOperation::SUB, "SUB" },
62};
63
64std::string generate_id_for_tuning_common(const std::string &kernel_name, const ITensorInfo &src1, const ITensorInfo &dst)
65{
66 std::string config_id;
67 // Set config_id for enabling LWS tuning
68 config_id = kernel_name;
69 config_id += "_";
70 config_id += lower_string(string_from_data_type(src1.data_type()));
71 config_id += "_";
72 config_id += support::cpp11::to_string(dst.dimension(0));
73 config_id += "_";
74 config_id += support::cpp11::to_string(dst.dimension(1));
75 return config_id;
76}
77
Sheri Zhanga387e272021-06-29 17:34:06 +010078Status validate_in_place_output_shape(const bool in_place, const bool src1_in_place, const ITensorInfo &src1, const ITensorInfo &src2, const ITensorInfo &dst, const TensorShape &out_shape)
79{
80 if(in_place)
81 {
82 ARM_COMPUTE_RETURN_ERROR_ON_MSG(detail::have_different_dimensions(out_shape, src1_in_place ? src1.tensor_shape() : src2.tensor_shape(), 0),
83 "Wrong shape for dst, cannot do in_place calculation");
84 }
85 else
86 {
87 ARM_COMPUTE_RETURN_ERROR_ON_MSG(detail::have_different_dimensions(out_shape, dst.tensor_shape(), 0),
88 "Wrong shape for dst");
89 }
90 return Status{};
91}
92
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +000093Status validate_arguments_with_float_only_supported_rules(const ITensorInfo &src1, const ITensorInfo &src2, const ITensorInfo &dst)
94{
95 ARM_COMPUTE_RETURN_ERROR_ON_NULLPTR(&src1, &src2, &dst);
96 ARM_COMPUTE_RETURN_ERROR_ON_F16_UNSUPPORTED(&src1);
97 ARM_COMPUTE_RETURN_ERROR_ON_DATA_TYPE_CHANNEL_NOT_IN(&src1, 1, DataType::F16, DataType::F32);
98 ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_DATA_TYPES(&src1, &src2);
99
Sheri Zhanga387e272021-06-29 17:34:06 +0100100 // Check whether it is in_place calculation
101 const bool in_place = (&src1 == &dst) || (&src2 == &dst);
102 const bool src1_in_place = in_place && (&src1 == &dst);
103
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000104 const TensorShape out_shape = TensorShape::broadcast_shape(src1.tensor_shape(), src2.tensor_shape());
105
106 ARM_COMPUTE_RETURN_ERROR_ON_MSG(out_shape.total_size() == 0, "Inputs are not broadcast compatible");
107
108 // Validate in case of configured dst
109 if(dst.total_size() > 0)
110 {
111 ARM_COMPUTE_RETURN_ERROR_ON_DATA_TYPE_CHANNEL_NOT_IN(&dst, 1, DataType::F16, DataType::F32);
112 ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_DATA_TYPES(&src1, &dst);
Sheri Zhanga387e272021-06-29 17:34:06 +0100113 ARM_COMPUTE_RETURN_ON_ERROR(validate_in_place_output_shape(in_place, src1_in_place, src1, src2, dst, out_shape));
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000114 }
115
116 return Status{};
117}
118
Giorgio Arena4a95bba2021-06-28 11:00:27 +0100119Status validate_arguments_divide_operation(const ITensorInfo *src1, const ITensorInfo *src2, const ITensorInfo *dst)
Suhail Munshiae1c9fe2021-04-14 12:16:49 +0100120{
121 ARM_COMPUTE_RETURN_ERROR_ON_NULLPTR(src1, src2, dst);
122 ARM_COMPUTE_RETURN_ERROR_ON_F16_UNSUPPORTED(src1);
123 ARM_COMPUTE_RETURN_ERROR_ON_DATA_TYPE_CHANNEL_NOT_IN(src1, 1, DataType::F16, DataType::F32, DataType::S32);
124 ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_DATA_TYPES(src1, src2);
125
Sheri Zhanga387e272021-06-29 17:34:06 +0100126 // Check whether it is in_place calculation
127 const bool in_place = (src1 == dst) || (src2 == dst);
128 const bool src1_in_place = in_place && (src1 == dst);
129
Suhail Munshiae1c9fe2021-04-14 12:16:49 +0100130 const TensorShape out_shape = TensorShape::broadcast_shape(src1->tensor_shape(), src2->tensor_shape());
131
132 ARM_COMPUTE_RETURN_ERROR_ON_MSG(out_shape.total_size() == 0, "Inputs are not broadcast compatible");
133
134 // Validate in case of configured dst
135 if(dst->total_size() > 0)
136 {
137 ARM_COMPUTE_RETURN_ERROR_ON_DATA_TYPE_CHANNEL_NOT_IN(dst, 1, DataType::F16, DataType::F32, DataType::S32);
138 ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_DATA_TYPES(src1, dst);
Sheri Zhanga387e272021-06-29 17:34:06 +0100139 ARM_COMPUTE_RETURN_ON_ERROR(validate_in_place_output_shape(in_place, src1_in_place, *src1, *src2, *dst, out_shape));
Suhail Munshiae1c9fe2021-04-14 12:16:49 +0100140 }
141
142 return Status{};
143}
144
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000145Status validate_arguments_with_arithmetic_rules(const ITensorInfo &src1, const ITensorInfo &src2, const ITensorInfo &dst)
146{
147 ARM_COMPUTE_RETURN_ERROR_ON_F16_UNSUPPORTED(&src1);
148 ARM_COMPUTE_RETURN_ERROR_ON_DATA_TYPE_CHANNEL_NOT_IN(&src1, 1, DataType::U8, DataType::QASYMM8, DataType::QASYMM8_SIGNED,
149 DataType::S16, DataType::QSYMM16, DataType::F16,
150 DataType::S32, DataType::F32);
Georgios Pinitasda816752021-07-02 09:22:14 +0100151 ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_DATA_TYPES(&src1, &src2);
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000152
Georgios Pinitasda816752021-07-02 09:22:14 +0100153 if(is_data_type_quantized_symmetric(src1.data_type()))
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000154 {
Georgios Pinitasda816752021-07-02 09:22:14 +0100155 const int32_t in1_offset = src1.quantization_info().uniform().offset;
156 const int32_t in2_offset = src2.quantization_info().uniform().offset;
157 ARM_COMPUTE_RETURN_ERROR_ON_MSG(in1_offset != 0, "For quantized symmetric, offset must be zero");
158 ARM_COMPUTE_RETURN_ERROR_ON_MSG(in2_offset != 0, "For quantized symmetric, offset must be zero");
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000159 }
160
Sheri Zhanga387e272021-06-29 17:34:06 +0100161 // Check whether it is in_place calculation
162 const bool in_place = (&src1 == &dst) || (&src2 == &dst);
163 const bool src1_in_place = in_place && (&src1 == &dst);
164
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000165 const TensorShape out_shape = TensorShape::broadcast_shape(src1.tensor_shape(), src2.tensor_shape());
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000166 ARM_COMPUTE_RETURN_ERROR_ON_MSG(out_shape.total_size() == 0, "Inputs are not broadcast compatible");
167
168 // Validate in case of configured dst
169 if(dst.total_size() > 0)
170 {
Georgios Pinitasda816752021-07-02 09:22:14 +0100171 ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_DATA_TYPES(&src1, &dst);
172 ARM_COMPUTE_RETURN_ERROR_ON_MSG(detail::have_different_dimensions(out_shape, dst.tensor_shape(), 0), "Wrong shape for dst");
Sheri Zhanga387e272021-06-29 17:34:06 +0100173 ARM_COMPUTE_RETURN_ON_ERROR(validate_in_place_output_shape(in_place, src1_in_place, src1, src2, dst, out_shape));
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000174
Georgios Pinitasda816752021-07-02 09:22:14 +0100175 if(is_data_type_quantized_symmetric(dst.data_type()))
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000176 {
Georgios Pinitasda816752021-07-02 09:22:14 +0100177 const int32_t offset = dst.quantization_info().uniform().offset;
178 ARM_COMPUTE_RETURN_ERROR_ON_MSG(offset != 0, "For quantized symmetric, offset must be zero");
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000179 }
180 }
181 return Status{};
182}
183
184CLBuildOptions generate_build_options_with_arithmetic_rules(const ITensorInfo &src1, const ITensorInfo &src2, const ITensorInfo &dst, const std::string &operation_string)
185{
186 CLBuildOptions build_opts;
187
188 const unsigned int num_elems_processed_per_iteration = adjust_vec_size(vector_size_byte_opencl / dst.element_size(), dst.dimension(0));
189
Georgios Pinitasda816752021-07-02 09:22:14 +0100190 build_opts.add_option("-DDATA_TYPE=" + get_cl_type_from_data_type(src1.data_type()));
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000191 build_opts.add_option("-DVEC_SIZE_IN1=" + support::cpp11::to_string(src1.dimension(0) == 1 ? 1 : num_elems_processed_per_iteration));
192 build_opts.add_option("-DVEC_SIZE_IN2=" + support::cpp11::to_string(src2.dimension(0) == 1 ? 1 : num_elems_processed_per_iteration));
193 build_opts.add_option("-DVEC_SIZE_OUT=" + support::cpp11::to_string(num_elems_processed_per_iteration));
194 build_opts.add_option("-DVEC_SIZE_LEFTOVER=" + support::cpp11::to_string(dst.dimension(0) % num_elems_processed_per_iteration));
195 build_opts.add_option("-DOP=" + operation_string);
196 if(is_data_type_quantized(src1.data_type()))
197 {
198 const UniformQuantizationInfo iq1info = src1.quantization_info().uniform();
199 const UniformQuantizationInfo iq2info = src2.quantization_info().uniform();
200 const UniformQuantizationInfo oqinfo = dst.quantization_info().uniform();
201
202 build_opts.add_option("-DOFFSET_IN1=" + support::cpp11::to_string(iq1info.offset));
203 build_opts.add_option("-DOFFSET_IN2=" + support::cpp11::to_string(iq2info.offset));
204 build_opts.add_option("-DOFFSET_OUT=" + support::cpp11::to_string(oqinfo.offset));
205 build_opts.add_option("-DSCALE_IN1=" + float_to_string_with_full_precision(iq1info.scale));
206 build_opts.add_option("-DSCALE_IN2=" + float_to_string_with_full_precision(iq2info.scale));
207 build_opts.add_option("-DSCALE_OUT=" + float_to_string_with_full_precision(oqinfo.scale));
208 }
Suhail Munshiae1c9fe2021-04-14 12:16:49 +0100209 build_opts.add_option_if(src1.data_type() == DataType::S32, "-DS32");
210
Sheri Zhanga387e272021-06-29 17:34:06 +0100211 // Check whether it is in_place calculation
212 const bool in_place = (&src1 == &dst) || (&src2 == &dst);
213 const bool src1_in_place = in_place && (&src1 == &dst);
214 build_opts.add_option_if(in_place, "-DIN_PLACE");
215 build_opts.add_option_if(src1_in_place, "-DSRC1_IN_PLACE");
216
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000217 return build_opts;
218}
219
220std::pair<Status, Window> configure_window_arithmetic_common(ITensorInfo &dst)
221{
222 const unsigned int num_elems_processed_per_iteration = adjust_vec_size(vector_size_byte_opencl / dst.element_size(), dst.dimension(0));
223 Window win = calculate_max_window(dst, Steps(num_elems_processed_per_iteration));
224 return std::make_pair(Status{}, win);
225}
226
227std::pair<Status, Window> validate_and_configure_window_for_arithmetic_operators(ITensorInfo &src1, ITensorInfo &src2, ITensorInfo &dst)
228{
229 const std::pair<TensorShape, ValidRegion> broadcast_pair = ITensorInfo::broadcast_shape_and_valid_region(src1, src2);
230 const TensorShape &out_shape = broadcast_pair.first;
231
Georgios Pinitasda816752021-07-02 09:22:14 +0100232 auto_init_if_empty(dst, out_shape, 1, src1.data_type());
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000233
234 return configure_window_arithmetic_common(dst);
235}
236
237std::pair<Status, Window> validate_and_configure_window_for_logical_binary_operators(ITensorInfo &src1, ITensorInfo &src2, ITensorInfo &dst)
238{
239 const std::pair<TensorShape, ValidRegion> broadcast_pair = ITensorInfo::broadcast_shape_and_valid_region(src1, src2);
240 const TensorShape &out_shape = broadcast_pair.first;
241
242 set_shape_if_empty(dst, out_shape);
243 set_data_type_if_unknown(dst, DataType::U8);
244
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000245 return configure_window_arithmetic_common(dst);
246}
247
248std::pair<Status, Window> validate_and_configure_window_for_division(ITensorInfo &src1, ITensorInfo &src2, ITensorInfo &dst)
249{
250 const std::pair<TensorShape, ValidRegion> broadcast_pair = ITensorInfo::broadcast_shape_and_valid_region(src1, src2);
251 const TensorShape &out_shape = broadcast_pair.first;
Georgios Pinitasda816752021-07-02 09:22:14 +0100252
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000253 auto_init_if_empty(dst, out_shape, 1, src1.data_type());
Georgios Pinitasda816752021-07-02 09:22:14 +0100254
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000255 return configure_window_arithmetic_common(dst);
256}
257} // namespace
258
Giorgio Arena4a95bba2021-06-28 11:00:27 +0100259ClElementwiseKernel::ClElementwiseKernel()
260{
261 _type = CLKernelType::ELEMENTWISE;
262}
263
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000264void ClElementwiseKernel::configure_common(const ClCompileContext &compile_context, ITensorInfo *src1, ITensorInfo *src2, ITensorInfo *dst)
265{
266 // Configure kernel window
267 auto win_config = validate_and_configure_window(*src1, *src2, *dst);
268 ARM_COMPUTE_ERROR_THROW_ON(win_config.first);
269
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000270 std::string kernel_name = "elementwise_operation_" + name();
271 if(is_data_type_quantized(src1->data_type()))
272 {
273 kernel_name += "_quantized";
274 }
275
276 // Set kernel build options
277 CLBuildOptions build_opts = generate_build_options(*src1, *src2, *dst);
278 if(_act_info.enabled())
279 {
280 build_opts.add_option("-DACTIVATION_TYPE=" + lower_string(string_from_activation_func(_act_info.activation())));
281 build_opts.add_option("-DA_VAL=" + float_to_string_with_full_precision(_act_info.a()));
282 build_opts.add_option("-DB_VAL=" + float_to_string_with_full_precision(_act_info.b()));
283 }
284
285 // Create kernel
286 _kernel = create_kernel(compile_context, kernel_name, build_opts.options());
287
288 ICLKernel::configure_internal(win_config.second);
289
290 _config_id = generate_id_for_tuning(kernel_name, *src1, *dst);
291}
292
293void ClElementwiseKernel::run_op(ITensorPack &tensors, const Window &window, ::cl::CommandQueue &queue)
294{
295 ARM_COMPUTE_ERROR_ON_UNCONFIGURED_KERNEL(this);
296 ARM_COMPUTE_ERROR_ON_INVALID_SUBWINDOW(ICLKernel::window(), window);
297
298 const auto src_0 = utils::cast::polymorphic_downcast<const ICLTensor *>(tensors.get_const_tensor(TensorType::ACL_SRC_0));
299 const auto src_1 = utils::cast::polymorphic_downcast<const ICLTensor *>(tensors.get_const_tensor(TensorType::ACL_SRC_1));
300 auto dst = utils::cast::polymorphic_downcast<ICLTensor *>(tensors.get_tensor(TensorType::ACL_DST));
301
Sheri Zhanga387e272021-06-29 17:34:06 +0100302 ARM_COMPUTE_ERROR_ON_NULLPTR(src_0, src_1, dst);
303
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000304 const TensorShape &in_shape1 = src_0->info()->tensor_shape();
305 const TensorShape &in_shape2 = src_1->info()->tensor_shape();
306 const TensorShape &out_shape = dst->info()->tensor_shape();
307
308 bool can_collapse = true;
309 const bool is_vector = in_shape1.num_dimensions() == 1 || in_shape2.num_dimensions() == 1;
310 if(std::min(in_shape1.total_size(), in_shape2.total_size()) > 1 && !is_vector)
311 {
312 can_collapse = (std::min(in_shape1.num_dimensions(), in_shape2.num_dimensions()) > Window::DimZ);
313 for(size_t d = Window::DimZ; can_collapse && (d < out_shape.num_dimensions()); d++)
314 {
315 can_collapse = (in_shape1[d] == in_shape2[d]);
316 }
317 }
318
319 bool has_collapsed = false;
320 Window collapsed = can_collapse ? window.collapse_if_possible(ICLKernel::window(), Window::DimZ, &has_collapsed) : window;
321
322 const TensorShape &in_shape1_collapsed = has_collapsed ? in_shape1.collapsed_from(Window::DimZ) : in_shape1;
323 const TensorShape &in_shape2_collapsed = has_collapsed ? in_shape2.collapsed_from(Window::DimZ) : in_shape2;
324
325 Window slice = collapsed.first_slice_window_3D();
326 Window slice_src1 = slice.broadcast_if_dimension_le_one(in_shape1_collapsed);
327 Window slice_src2 = slice.broadcast_if_dimension_le_one(in_shape2_collapsed);
Sheri Zhanga387e272021-06-29 17:34:06 +0100328
329 // Check whether it is in_place calculation
330 const bool in_place = (src_0 == dst) || (src_1 == dst);
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000331 do
332 {
333 unsigned int idx = 0;
334 add_3D_tensor_argument(idx, src_0, slice_src1);
335 add_3D_tensor_argument(idx, src_1, slice_src2);
Sheri Zhanga387e272021-06-29 17:34:06 +0100336 if(!in_place)
337 {
338 add_3D_tensor_argument(idx, dst, slice);
339 }
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000340
341 enqueue(queue, *this, slice, lws_hint());
342 ARM_COMPUTE_UNUSED(collapsed.slide_window_slice_3D(slice_src1));
343 ARM_COMPUTE_UNUSED(collapsed.slide_window_slice_3D(slice_src2));
344 }
345 while(collapsed.slide_window_slice_3D(slice));
346}
347
348/** Logical binary */
349
350void ClLogicalBinaryKernel::configure(const ClCompileContext &compile_context, LogicalOperation op, ITensorInfo *src1, ITensorInfo *src2, ITensorInfo *dst)
351{
352 ARM_COMPUTE_ERROR_ON_NULLPTR(src1, src2, dst);
353 ARM_COMPUTE_ERROR_THROW_ON(ClLogicalBinaryKernel::validate(op, src1, src2, dst));
354 _op = op;
355 configure_common(compile_context, src1, src2, dst);
356}
357
358Status ClLogicalBinaryKernel::validate(LogicalOperation op, const ITensorInfo *src1, const ITensorInfo *src2, const ITensorInfo *dst)
359{
360 ARM_COMPUTE_UNUSED(op);
361 ARM_COMPUTE_ASSERT(op != LogicalOperation::Unknown && op != LogicalOperation::Not);
362 ARM_COMPUTE_RETURN_ERROR_ON_NULLPTR(src1, src2, dst);
363
364 ARM_COMPUTE_RETURN_ERROR_ON_DATA_TYPE_CHANNEL_NOT_IN(src1, 1, DataType::U8);
365 ARM_COMPUTE_RETURN_ERROR_ON_MISMATCHING_DATA_TYPES(src1, src2);
366
367 ARM_COMPUTE_RETURN_ON_ERROR(validate_arguments_with_arithmetic_rules(*src1, *src2, *dst));
368 ARM_COMPUTE_RETURN_ON_ERROR(validate_and_configure_window_for_logical_binary_operators(*src1->clone(), *src2->clone(), *dst->clone()).first);
369
370 return Status{};
371}
372
373std::string ClLogicalBinaryKernel::name()
374{
375 switch(_op)
376 {
377 case LogicalOperation::And:
378 return "AND";
379 case LogicalOperation::Or:
380 return "OR";
381 case LogicalOperation::Not:
382 /* fall through */
383 default:
384 ARM_COMPUTE_ASSERT(true);
385 }
386 return "";
387}
388
389std::pair<Status, Window> ClLogicalBinaryKernel::validate_and_configure_window(ITensorInfo &src1, ITensorInfo &src2, ITensorInfo &dst)
390{
391 return validate_and_configure_window_for_logical_binary_operators(src1, src2, dst);
392}
393
394CLBuildOptions ClLogicalBinaryKernel::generate_build_options(const ITensorInfo &src1, const ITensorInfo &src2, const ITensorInfo &dst)
395{
396 // The arithmetic utility functions can be share
397 return generate_build_options_with_arithmetic_rules(src1, src2, dst, name());
398}
399
400std::string ClLogicalBinaryKernel::generate_id_for_tuning(const std::string &kernel_name, const ITensorInfo &src1, const ITensorInfo &dst)
401{
402 return generate_id_for_tuning_common(kernel_name, src1, dst);
403}
404
405/** Arithmetic operations with saturation*/
406void ClSaturatedArithmeticKernel::configure(const ClCompileContext &compile_context, ArithmeticOperation op, ITensorInfo *input1, ITensorInfo *input2, ITensorInfo *output,
407 const ConvertPolicy &policy,
408 const ActivationLayerInfo &act_info)
409{
410 ARM_COMPUTE_ERROR_ON_NULLPTR(input1, input2, output);
411 ARM_COMPUTE_ERROR_THROW_ON(ClSaturatedArithmeticKernel::validate(op, input1, input2, output, policy, act_info));
412 auto padding_info = get_padding_info({ input1, input2, output });
413
414 _policy = policy;
415 _op = op;
416 _act_info = act_info;
417 configure_common(compile_context, input1, input2, output);
418 ARM_COMPUTE_ERROR_ON(has_padding_changed(padding_info));
419}
420
421Status ClSaturatedArithmeticKernel::validate(ArithmeticOperation op, const ITensorInfo *input1, const ITensorInfo *input2, const ITensorInfo *output, const ConvertPolicy &policy,
422 const ActivationLayerInfo &act_info)
423{
424 ARM_COMPUTE_UNUSED(op, policy);
425 ARM_COMPUTE_RETURN_ERROR_ON_NULLPTR(input1, input2, output);
426 ARM_COMPUTE_RETURN_ON_ERROR(validate_arguments_with_arithmetic_rules(*input1, *input2, *output));
427 ARM_COMPUTE_RETURN_ON_ERROR(validate_and_configure_window_for_arithmetic_operators(*input1->clone(), *input2->clone(), *output->clone()).first);
428 ARM_COMPUTE_RETURN_ERROR_ON(act_info.enabled() && !is_data_type_float(output->data_type()));
429
430 return Status{};
431}
432
433std::pair<Status, Window> ClSaturatedArithmeticKernel::validate_and_configure_window(ITensorInfo &input1, ITensorInfo &input2, ITensorInfo &output)
434{
435 return validate_and_configure_window_for_arithmetic_operators(input1, input2, output);
436}
437
438CLBuildOptions ClSaturatedArithmeticKernel::generate_build_options(const ITensorInfo &input1, const ITensorInfo &input2, const ITensorInfo &output)
439{
440 const bool has_float_out = is_data_type_float(output.data_type());
441 auto build_options = generate_build_options_with_arithmetic_rules(input1, input2, output, name());
442 build_options.add_option((_policy == ConvertPolicy::WRAP || has_float_out) ? "-DWRAP" : "-DSATURATE");
443 return build_options;
444}
445
446std::string ClSaturatedArithmeticKernel::generate_id_for_tuning(const std::string &kernel_name, const ITensorInfo &input1, const ITensorInfo &output)
447{
448 auto config_id = generate_id_for_tuning_common(kernel_name, input1, output);
449 config_id += (_policy == ConvertPolicy::WRAP) ? "_wrap_" : "_saturate_";
450 config_id += lower_string(string_from_data_layout(input1.data_layout()));
451 return config_id;
452}
453
454std::string ClSaturatedArithmeticKernel::name()
455{
456 return supported_sat_arithmetic_ops[_op];
457}
458
459/** Arithmetic operations*/
460void ClArithmeticKernel::configure(const ClCompileContext &compile_context, ArithmeticOperation op, ITensorInfo *src1, ITensorInfo *src2, ITensorInfo *dst,
461 const ActivationLayerInfo &act_info)
462{
463 ARM_COMPUTE_ERROR_ON_NULLPTR(src1, src2, dst);
464 ARM_COMPUTE_ERROR_THROW_ON(ClArithmeticKernel::validate(op, src1, src2, dst, act_info));
465 auto padding_info = get_padding_info({ src1, src2, dst });
466
467 _op = op;
468 _act_info = act_info;
469 configure_common(compile_context, src1, src2, dst);
470 ARM_COMPUTE_ERROR_ON(has_padding_changed(padding_info));
471}
472
473Status ClArithmeticKernel::validate(ArithmeticOperation op, const ITensorInfo *src1, const ITensorInfo *src2, const ITensorInfo *dst, const ActivationLayerInfo &act_info)
474{
475 ARM_COMPUTE_RETURN_ERROR_ON_NULLPTR(src1, src2, dst);
Suhail Munshiae1c9fe2021-04-14 12:16:49 +0100476 if(op == ArithmeticOperation::DIV)
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000477 {
Suhail Munshiae1c9fe2021-04-14 12:16:49 +0100478 // Partial integer support S32/F32/F16
479 ARM_COMPUTE_RETURN_ON_ERROR(validate_arguments_divide_operation(src1, src2, dst));
480 ARM_COMPUTE_RETURN_ON_ERROR(validate_and_configure_window_for_division(*src1->clone(), *src2->clone(), *dst->clone()).first);
481 }
482 else if(op == ArithmeticOperation::POWER)
483 {
484 // Power operators doesn't support integer arithmetic
Michele Di Giorgio1e0208a2021-01-22 15:42:59 +0000485 ARM_COMPUTE_RETURN_ON_ERROR(validate_arguments_with_float_only_supported_rules(*src1, *src2, *dst));
486 ARM_COMPUTE_RETURN_ON_ERROR(validate_and_configure_window_for_division(*src1->clone(), *src2->clone(), *dst->clone()).first);
487 }
488 else
489 {
490 ARM_COMPUTE_RETURN_ON_ERROR(validate_arguments_with_arithmetic_rules(*src1, *src2, *dst));
491 ARM_COMPUTE_RETURN_ON_ERROR(validate_and_configure_window_for_arithmetic_operators(*src1->clone(), *src2->clone(), *dst->clone()).first);
492 }
493 ARM_COMPUTE_RETURN_ERROR_ON(act_info.enabled() && !is_data_type_float(dst->data_type()));
494
495 return Status{};
496}
497std::pair<Status, Window> ClArithmeticKernel::validate_and_configure_window(ITensorInfo &src1, ITensorInfo &src2, ITensorInfo &dst)
498{
499 if(_op == ArithmeticOperation::DIV || _op == ArithmeticOperation::POWER)
500 {
501 // Division and Power operators don't support integer arithmetic
502 return validate_and_configure_window_for_division(src1, src2, dst);
503 }
504 else
505 {
506 return validate_and_configure_window_for_arithmetic_operators(src1, src2, dst);
507 }
508}
509
510CLBuildOptions ClArithmeticKernel::generate_build_options(const ITensorInfo &src1, const ITensorInfo &src2, const ITensorInfo &dst)
511{
512 return generate_build_options_with_arithmetic_rules(src1, src2, dst, name());
513}
514std::string ClArithmeticKernel::generate_id_for_tuning(const std::string &kernel_name, const ITensorInfo &src1, const ITensorInfo &dst)
515{
516 return generate_id_for_tuning_common(kernel_name, src1, dst);
517}
518
519std::string ClArithmeticKernel::name()
520{
521 return supported_arithmetic_ops[_op];
522}
523} // namespace kernels
524} // namespace opencl
525} // namespace arm_compute