/* * Copyright (c) 2018-2020 Arm Limited. * * SPDX-License-Identifier: MIT * * Permission is hereby granted, free of charge, to any person obtaining a copy * of this software and associated documentation files (the "Software"), to * deal in the Software without restriction, including without limitation the * rights to use, copy, modify, merge, publish, distribute, sublicense, and/or * sell copies of the Software, and to permit persons to whom the Software is * furnished to do so, subject to the following conditions: * * The above copyright notice and this permission notice shall be included in all * copies or substantial portions of the Software. * * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE * SOFTWARE. */ #include "arm_compute/core/Validate.h" #include "arm_compute/runtime/NEON/functions/NEElementwiseOperations.h" #include #include "arm_compute/core/ITensor.h" #include "support/MemorySupport.h" #include namespace arm_compute { namespace experimental { void NEElementwiseMax::configure(const ITensorInfo *input1, const ITensorInfo *input2, ITensorInfo *output) { auto k = arm_compute::support::cpp14::make_unique(); k->configure(ArithmeticOperation::MAX, input1, input2, output); _kernel = std::move(k); } Status NEElementwiseMax::validate(const ITensorInfo *input1, const ITensorInfo *input2, const ITensorInfo *output) { return NEArithmeticOperationKernel::validate(ArithmeticOperation::MAX, input1, input2, output); } void NEElementwiseMin::configure(const ITensorInfo *input1, const ITensorInfo *input2, ITensorInfo *output) { auto k = arm_compute::support::cpp14::make_unique(); k->configure(ArithmeticOperation::MIN, input1, input2, output); _kernel = std::move(k); } Status NEElementwiseMin::validate(const ITensorInfo *input1, const ITensorInfo *input2, const ITensorInfo *output) { return NEArithmeticOperationKernel::validate(ArithmeticOperation::MIN, input1, input2, output); } void NEElementwiseSquaredDiff::configure(const ITensorInfo *input1, const ITensorInfo *input2, ITensorInfo *output) { auto k = arm_compute::support::cpp14::make_unique(); k->configure(ArithmeticOperation::SQUARED_DIFF, input1, input2, output); _kernel = std::move(k); } Status NEElementwiseSquaredDiff::validate(const ITensorInfo *input1, const ITensorInfo *input2, const ITensorInfo *output) { return NEArithmeticOperationKernel::validate(ArithmeticOperation::SQUARED_DIFF, input1, input2, output); } void NEElementwiseDivision::configure(const ITensorInfo *input1, const ITensorInfo *input2, ITensorInfo *output) { auto k = arm_compute::support::cpp14::make_unique(); k->configure(input1, input2, output); _kernel = std::move(k); } Status NEElementwiseDivision::validate(const ITensorInfo *input1, const ITensorInfo *input2, const ITensorInfo *output) { return NEDivisionOperationKernel::validate(input1, input2, output); } void NEElementwisePower::configure(const ITensorInfo *input1, const ITensorInfo *input2, ITensorInfo *output) { auto k = arm_compute::support::cpp14::make_unique(); k->configure(input1, input2, output); _kernel = std::move(k); } Status NEElementwisePower::validate(const ITensorInfo *input1, const ITensorInfo *input2, const ITensorInfo *output) { return NEPowerOperationKernel::validate(input1, input2, output); } template void NEElementwiseComparisonStatic::configure(const ITensorInfo *input1, const ITensorInfo *input2, ITensorInfo *output) { auto k = arm_compute::support::cpp14::make_unique(); k->configure(COP, input1, input2, output); _kernel = std::move(k); } template Status NEElementwiseComparisonStatic::validate(const ITensorInfo *input1, const ITensorInfo *input2, const ITensorInfo *output) { return NEComparisonOperationKernel::validate(COP, input1, input2, output); } void NEElementwiseComparison::configure(const ITensorInfo *input1, const ITensorInfo *input2, ITensorInfo *output, ComparisonOperation op) { auto k = arm_compute::support::cpp14::make_unique(); k->configure(op, input1, input2, output); _kernel = std::move(k); } Status NEElementwiseComparison::validate(const ITensorInfo *input1, const ITensorInfo *input2, const ITensorInfo *output, ComparisonOperation op) { return NEComparisonOperationKernel::validate(op, input1, input2, output); } // Supported Specializations template class NEElementwiseComparisonStatic; template class NEElementwiseComparisonStatic; template class NEElementwiseComparisonStatic; template class NEElementwiseComparisonStatic; template class NEElementwiseComparisonStatic; template class NEElementwiseComparisonStatic; } // namespace experimental struct NEElementwiseMax::Impl { const ITensor *src_0{ nullptr }; const ITensor *src_1{ nullptr }; ITensor *dst{ nullptr }; std::unique_ptr op{ nullptr }; }; NEElementwiseMax::NEElementwiseMax() : _impl(support::cpp14::make_unique()) { } NEElementwiseMax::NEElementwiseMax(NEElementwiseMax &&) = default; NEElementwiseMax &NEElementwiseMax::operator=(NEElementwiseMax &&) = default; NEElementwiseMax::~NEElementwiseMax() = default; void NEElementwiseMax::configure(ITensor *input1, ITensor *input2, ITensor *output, const ActivationLayerInfo &act_info) { ARM_COMPUTE_UNUSED(act_info); _impl->src_0 = input1; _impl->src_1 = input2; _impl->dst = output; _impl->op = arm_compute::support::cpp14::make_unique(); _impl->op->configure(input1->info(), input2->info(), output->info()); } Status NEElementwiseMax::validate(const ITensorInfo *input1, const ITensorInfo *input2, const ITensorInfo *output, const ActivationLayerInfo &act_info) { ARM_COMPUTE_RETURN_ERROR_ON(act_info.enabled()); return experimental::NEElementwiseMax::validate(input1, input2, output); } void NEElementwiseMax::run() { const InputTensorMap src{ { TensorType::ACL_SRC_0, _impl->src_0 }, { TensorType::ACL_SRC_1, _impl->src_1 } }; const OutputTensorMap dst{ { TensorType::ACL_DST, _impl->dst } }; _impl->op->run(src, dst, {}); } struct NEElementwiseMin::Impl { const ITensor *src_0{ nullptr }; const ITensor *src_1{ nullptr }; ITensor *dst{ nullptr }; std::unique_ptr op{ nullptr }; }; NEElementwiseMin::NEElementwiseMin() : _impl(support::cpp14::make_unique()) { } NEElementwiseMin::NEElementwiseMin(NEElementwiseMin &&) = default; NEElementwiseMin &NEElementwiseMin::operator=(NEElementwiseMin &&) = default; NEElementwiseMin::~NEElementwiseMin() = default; void NEElementwiseMin::configure(ITensor *input1, ITensor *input2, ITensor *output, const ActivationLayerInfo &act_info) { ARM_COMPUTE_UNUSED(act_info); _impl->src_0 = input1; _impl->src_1 = input2; _impl->dst = output; _impl->op = arm_compute::support::cpp14::make_unique(); _impl->op->configure(input1->info(), input2->info(), output->info()); } Status NEElementwiseMin::validate(const ITensorInfo *input1, const ITensorInfo *input2, const ITensorInfo *output, const ActivationLayerInfo &act_info) { ARM_COMPUTE_RETURN_ERROR_ON(act_info.enabled()); return experimental::NEElementwiseMin::validate(input1, input2, output); } void NEElementwiseMin::run() { const InputTensorMap src{ { TensorType::ACL_SRC_0, _impl->src_0 }, { TensorType::ACL_SRC_1, _impl->src_1 } }; const OutputTensorMap dst{ { TensorType::ACL_DST, _impl->dst } }; _impl->op->run(src, dst, {}); } struct NEElementwiseSquaredDiff::Impl { const ITensor *src_0{ nullptr }; const ITensor *src_1{ nullptr }; ITensor *dst{ nullptr }; std::unique_ptr op{ nullptr }; }; NEElementwiseSquaredDiff::NEElementwiseSquaredDiff() : _impl(support::cpp14::make_unique()) { } NEElementwiseSquaredDiff::NEElementwiseSquaredDiff(NEElementwiseSquaredDiff &&) = default; NEElementwiseSquaredDiff &NEElementwiseSquaredDiff::operator=(NEElementwiseSquaredDiff &&) = default; NEElementwiseSquaredDiff::~NEElementwiseSquaredDiff() = default; void NEElementwiseSquaredDiff::configure(ITensor *input1, ITensor *input2, ITensor *output, const ActivationLayerInfo &act_info) { ARM_COMPUTE_UNUSED(act_info); _impl->src_0 = input1; _impl->src_1 = input2; _impl->dst = output; _impl->op = arm_compute::support::cpp14::make_unique(); _impl->op->configure(input1->info(), input2->info(), output->info()); } Status NEElementwiseSquaredDiff::validate(const ITensorInfo *input1, const ITensorInfo *input2, const ITensorInfo *output, const ActivationLayerInfo &act_info) { ARM_COMPUTE_RETURN_ERROR_ON(act_info.enabled()); return experimental::NEElementwiseSquaredDiff::validate(input1, input2, output); } void NEElementwiseSquaredDiff::run() { const InputTensorMap src{ { TensorType::ACL_SRC_0, _impl->src_0 }, { TensorType::ACL_SRC_1, _impl->src_1 } }; const OutputTensorMap dst{ { TensorType::ACL_DST, _impl->dst } }; _impl->op->run(src, dst, {}); } struct NEElementwiseDivision::Impl { const ITensor *src_0{ nullptr }; const ITensor *src_1{ nullptr }; ITensor *dst{ nullptr }; std::unique_ptr op{ nullptr }; }; NEElementwiseDivision::NEElementwiseDivision() : _impl(support::cpp14::make_unique()) { } NEElementwiseDivision::NEElementwiseDivision(NEElementwiseDivision &&) = default; NEElementwiseDivision &NEElementwiseDivision::operator=(NEElementwiseDivision &&) = default; NEElementwiseDivision::~NEElementwiseDivision() = default; void NEElementwiseDivision::configure(ITensor *input1, ITensor *input2, ITensor *output, const ActivationLayerInfo &act_info) { ARM_COMPUTE_UNUSED(act_info); _impl->src_0 = input1; _impl->src_1 = input2; _impl->dst = output; _impl->op = arm_compute::support::cpp14::make_unique(); _impl->op->configure(input1->info(), input2->info(), output->info()); } Status NEElementwiseDivision::validate(const ITensorInfo *input1, const ITensorInfo *input2, const ITensorInfo *output, const ActivationLayerInfo &act_info) { ARM_COMPUTE_RETURN_ERROR_ON(act_info.enabled()); return experimental::NEElementwiseDivision::validate(input1, input2, output); } void NEElementwiseDivision::run() { const InputTensorMap src{ { TensorType::ACL_SRC_0, _impl->src_0 }, { TensorType::ACL_SRC_1, _impl->src_1 } }; const OutputTensorMap dst{ { TensorType::ACL_DST, _impl->dst } }; _impl->op->run(src, dst, {}); } struct NEElementwisePower::Impl { const ITensor *src_0{ nullptr }; const ITensor *src_1{ nullptr }; ITensor *dst{ nullptr }; std::unique_ptr op{ nullptr }; }; NEElementwisePower::NEElementwisePower() : _impl(support::cpp14::make_unique()) { } NEElementwisePower::NEElementwisePower(NEElementwisePower &&) = default; NEElementwisePower &NEElementwisePower::operator=(NEElementwisePower &&) = default; NEElementwisePower::~NEElementwisePower() = default; void NEElementwisePower::configure(ITensor *input1, ITensor *input2, ITensor *output, const ActivationLayerInfo &act_info) { ARM_COMPUTE_UNUSED(act_info); _impl->src_0 = input1; _impl->src_1 = input2; _impl->dst = output; _impl->op = arm_compute::support::cpp14::make_unique(); _impl->op->configure(input1->info(), input2->info(), output->info()); } Status NEElementwisePower::validate(const ITensorInfo *input1, const ITensorInfo *input2, const ITensorInfo *output, const ActivationLayerInfo &act_info) { ARM_COMPUTE_RETURN_ERROR_ON(act_info.enabled()); return experimental::NEElementwisePower::validate(input1, input2, output); } void NEElementwisePower::run() { const InputTensorMap src{ { TensorType::ACL_SRC_0, _impl->src_0 }, { TensorType::ACL_SRC_1, _impl->src_1 } }; const OutputTensorMap dst{ { TensorType::ACL_DST, _impl->dst } }; _impl->op->run(src, dst, {}); } template struct NEElementwiseComparisonStatic::Impl { const ITensor *src_0{ nullptr }; const ITensor *src_1{ nullptr }; ITensor *dst{ nullptr }; std::unique_ptr> op{ nullptr }; }; template NEElementwiseComparisonStatic::NEElementwiseComparisonStatic() : _impl(support::cpp14::make_unique()) { } template NEElementwiseComparisonStatic::NEElementwiseComparisonStatic(NEElementwiseComparisonStatic &&) = default; template NEElementwiseComparisonStatic &NEElementwiseComparisonStatic::operator=(NEElementwiseComparisonStatic &&) = default; template NEElementwiseComparisonStatic::~NEElementwiseComparisonStatic() = default; template void NEElementwiseComparisonStatic::configure(ITensor *input1, ITensor *input2, ITensor *output) { _impl->src_0 = input1; _impl->src_1 = input2; _impl->dst = output; _impl->op = arm_compute::support::cpp14::make_unique>(); _impl->op->configure(input1->info(), input2->info(), output->info()); } template Status NEElementwiseComparisonStatic::validate(const ITensorInfo *input1, const ITensorInfo *input2, const ITensorInfo *output) { return experimental::NEElementwiseComparisonStatic::validate(input1, input2, output); } template void NEElementwiseComparisonStatic::run() { const InputTensorMap src{ { TensorType::ACL_SRC_0, _impl->src_0 }, { TensorType::ACL_SRC_1, _impl->src_1 } }; const OutputTensorMap dst{ { TensorType::ACL_DST, _impl->dst } }; _impl->op->run(src, dst, {}); } struct NEElementwiseComparison::Impl { const ITensor *src_0{ nullptr }; const ITensor *src_1{ nullptr }; ITensor *dst{ nullptr }; std::unique_ptr op{ nullptr }; }; NEElementwiseComparison::NEElementwiseComparison() : _impl(support::cpp14::make_unique()) { } NEElementwiseComparison::NEElementwiseComparison(NEElementwiseComparison &&) = default; NEElementwiseComparison &NEElementwiseComparison::operator=(NEElementwiseComparison &&) = default; NEElementwiseComparison::~NEElementwiseComparison() = default; void NEElementwiseComparison::configure(ITensor *input1, ITensor *input2, ITensor *output, ComparisonOperation op) { _impl->src_0 = input1; _impl->src_1 = input2; _impl->dst = output; _impl->op = arm_compute::support::cpp14::make_unique(); _impl->op->configure(input1->info(), input2->info(), output->info(), op); } Status NEElementwiseComparison::validate(const ITensorInfo *input1, const ITensorInfo *input2, const ITensorInfo *output, ComparisonOperation op) { return experimental::NEElementwiseComparison::validate(input1, input2, output, op); } void NEElementwiseComparison::run() { const InputTensorMap src{ { TensorType::ACL_SRC_0, _impl->src_0 }, { TensorType::ACL_SRC_1, _impl->src_1 } }; const OutputTensorMap dst{ { TensorType::ACL_DST, _impl->dst } }; _impl->op->run(src, dst, {}); } // Supported Specializations template class NEElementwiseComparisonStatic; template class NEElementwiseComparisonStatic; template class NEElementwiseComparisonStatic; template class NEElementwiseComparisonStatic; template class NEElementwiseComparisonStatic; template class NEElementwiseComparisonStatic; } // namespace arm_compute