/** * Copyright 2021 Huawei Technologies Co., Ltd * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ #include "ops/acosh.h" #include #include #include #include #include #include "ops/op_utils.h" #include "utils/check_convert_utils.h" #include "abstract/primitive_infer_map.h" namespace mindspore { namespace ops { namespace { abstract::ShapePtr AcoshInferShape(const PrimitivePtr &primitive, const std::vector &input_args) { MS_EXCEPTION_IF_NULL(primitive); auto prim_name = primitive->name(); (void)CheckAndConvertUtils::CheckArgs(prim_name, input_args, 0); auto x = input_args[0]->BuildShape(); const int64_t max_dim = 8; auto in_shape = CheckAndConvertUtils::ConvertShapePtrToShapeMap(input_args[0]->BuildShape())[kShape]; (void)CheckAndConvertUtils::CheckInteger("The dimension of Acosh input", SizeToLong(in_shape.size()), kLessThan, max_dim, prim_name); MS_EXCEPTION_IF_NULL(x); auto shape_element = x->cast(); MS_EXCEPTION_IF_NULL(shape_element); return shape_element; } TypePtr AcoshInferType(const PrimitivePtr &primitive, const std::vector &input_args) { MS_EXCEPTION_IF_NULL(primitive); auto prim_name = primitive->name(); MS_EXCEPTION_IF_NULL(input_args[0]); auto x_type = input_args[0]->BuildType(); const std::set valid_types = {kFloat16, kFloat32, kFloat64}; (void)CheckAndConvertUtils::CheckTensorTypeValid("input_x", x_type, valid_types, prim_name); return x_type; } } // namespace AbstractBasePtr AcoshInfer(const abstract::AnalysisEnginePtr &, const PrimitivePtr &primitive, const std::vector &input_args) { MS_EXCEPTION_IF_NULL(primitive); const int64_t input_num = 1; CheckAndConvertUtils::CheckInputArgs(input_args, kEqual, input_num, primitive->name()); auto infer_type = AcoshInferType(primitive, input_args); auto infer_shape = AcoshInferShape(primitive, input_args); return abstract::MakeAbstract(infer_shape, infer_type); } REGISTER_PRIMITIVE_EVAL_IMPL(Acosh, prim::kPrimAcosh, AcoshInfer, nullptr, true); } // namespace ops } // namespace mindspore