forked from huawei/mindspore2022
228 lines
8.1 KiB
C++
228 lines
8.1 KiB
C++
/**
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* Copyright 2019-2020 Huawei Technologies Co., Ltd
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "utils/primitive_py.h"
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#include <mutex>
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#include "ir/signature.h"
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#include "./common.h"
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#include "pipeline/jit/parse/python_adapter.h"
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#include "pipeline/jit/parse/data_converter.h"
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#include "pybind11/pytypes.h"
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#include "utils/convert_utils_base.h"
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#include "utils/primitive_utils.h"
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#include "utils/base_ref_py.h"
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#include "pybind_api/api_register.h"
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#include "pybind_api/export_flags.h"
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namespace mindspore {
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namespace {
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constexpr auto kBpropAttrName = "bprop";
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constexpr auto kCellHookAttrName = "cell_hook";
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constexpr auto kCellIDAttrName = "cell_id";
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void SyncData(const py::object &arg) {
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if (py::isinstance<py::tuple>(arg)) {
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py::tuple arg_list = py::cast<py::tuple>(arg);
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for (size_t i = 0; i < arg_list.size(); i++) {
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SyncData(arg_list[i]);
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}
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}
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if (py::isinstance<tensor::Tensor>(arg)) {
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auto tensor = py::cast<tensor::TensorPtr>(arg);
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(void)tensor->data_sync();
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}
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}
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} // namespace
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std::map<std::string, py::object> PrimitivePy::hook_grad_;
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static ValuePtr PyArgToValue(const py::object &arg) {
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if (py::isinstance<SignatureEnumKind>(arg) &&
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py::cast<SignatureEnumKind>(arg) == SignatureEnumKind::kKindEmptyDefaultValue) {
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return nullptr;
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}
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return parse::data_converter::PyDataToValue(arg);
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}
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void PrimitivePy::set_signatures(
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std::vector<std::tuple<std::string, SignatureEnumRW, SignatureEnumKind, py::object, SignatureEnumDType>> signatures) {
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signatures_.clear();
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for (auto &signature : signatures) {
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auto [name, rw, kind, arg_default, dtype] = signature;
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auto default_value = PyArgToValue(arg_default);
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signatures_.emplace_back(name, rw, kind, default_value, dtype);
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}
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set_has_signature(true);
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}
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py::function PrimitivePy::GetBpropFunction() {
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static const char *const get_bprop_func_name = "get_bprop";
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if (py::hasattr(python_obj_, get_bprop_func_name)) {
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py::function fn = python_obj_.attr(get_bprop_func_name)().cast<py::function>();
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return fn;
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} else {
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auto fn = GetBpropFunctionByObj(python_obj_);
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return fn;
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}
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}
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BaseRef PrimitivePy::RunHookFunction(const VectorRef &args) const {
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auto py_args = ConvertDatatoPyTuple(args);
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py::object obj;
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bool is_bprop = this->HasAttr(kBpropAttrName);
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if (is_bprop) {
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SyncData(py_args);
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obj = hook_(*py_args);
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return std::make_shared<PyObjectRef>(obj);
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}
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SyncData(py_args[2]);
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bool is_cell = this->HasAttr(kCellHookAttrName);
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if (is_cell) {
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auto cell_id = GetValue<std::string>(this->GetAttr(kCellIDAttrName));
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auto iter = hook_grad_.find(cell_id);
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if (iter != hook_grad_.end()) {
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auto hook_args = py::tuple(3);
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hook_args[0] = cell_id;
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hook_args[1] = py::make_tuple(iter->second);
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hook_args[2] = py::make_tuple(py_args[2]);
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obj = hook_(*hook_args);
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if (py::isinstance<py::none>(obj)) {
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obj = py_args[2];
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}
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hook_grad_.erase(cell_id);
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} else {
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hook_grad_[cell_id] = py_args[2];
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obj = py_args[2];
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}
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} else {
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// Hook operator for execute variable hook function
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obj = hook_(py::make_tuple(py_args[2]));
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if (py::isinstance<py::none>(obj)) {
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obj = py_args[2];
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}
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}
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obj = py::make_tuple(obj);
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return std::make_shared<PyObjectRef>(obj);
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}
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py::function PrimitivePy::GetComputeFunction() const {
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static const char *const compute_func_name = "vm_impl";
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if (py::hasattr(python_obj_, compute_func_name)) {
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MS_LOG(INFO) << name() << " compute_func_name";
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py::function fn = python_obj_.attr(compute_func_name).cast<py::function>();
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return fn;
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}
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static const std::string vm_module = "mindspore.ops.vm_impl_registry";
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static const std::string get_vm_impl_fn = "get_vm_impl_fn";
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MS_LOG(INFO) << name() << ": get_vm_impl_fn";
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py::function get_fn = parse::python_adapter::GetPyFn(vm_module, get_vm_impl_fn);
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py::function vm_fn = get_fn(python_obj_);
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if (py::isinstance<py::none>(vm_fn)) {
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MS_LOG(WARNING) << "Cannot find " << python_obj_.attr("__class__").attr("__name__").cast<std::string>();
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vm_fn = mindspore::GetComputeFunction(Primitive::name());
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}
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return vm_fn;
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}
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void PrimitivePy::AddPyAttr(const py::str &name, const py::object &obj) {
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std::string attr_name = name;
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ValuePtr converted_ret = nullptr;
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if (py::isinstance<py::module>(obj)) {
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MS_LOG(EXCEPTION) << "AddPyAttr failed, obj should not be py::module";
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}
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bool converted = parse::ConvertData(obj, &converted_ret);
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if (!converted) {
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MS_LOG(EXCEPTION) << "Attribute convert error with type: " << std::string(py::str(obj));
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}
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(void)this->AddAttr(attr_name, converted_ret);
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}
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py::dict PrimitivePy::GetAttrDict() {
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py::dict attr_dict;
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for (auto &attr : attrs_) {
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attr_dict[py::str(attr.first)] = ValuePtrToPyData(attr.second);
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}
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return attr_dict;
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}
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void PrimitivePy::CopyHookFunction(const PrimitivePtr &primitive) {
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MS_EXCEPTION_IF_NULL(primitive);
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if (!primitive->isa<PrimitivePy>()) {
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MS_LOG(EXCEPTION) << "Cannot copy a primtive which is not python primitive hook function to python primitive!";
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}
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auto primitive_py = primitive->cast<PrimitivePyPtr>();
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MS_EXCEPTION_IF_NULL(primitive_py);
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this->set_hook(primitive_py->hook());
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}
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BaseRef PrimitivePy::RunComputeFunction(const VectorRef &args) const {
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auto py_args = ConvertDatatoPyTuple(args);
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auto result = this->RunPyComputeFunction(py_args);
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if (py::isinstance<py::none>(result)) {
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return std::make_shared<BaseRef>(nullptr);
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}
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return std::make_shared<PyObjectRef>(result);
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}
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py::object PrimitivePy::RunPyComputeFunction(const py::tuple &py_args) const {
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auto func = this->GetComputeFunction();
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if (py::isinstance<py::none>(func)) {
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return py::none();
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}
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auto result = func(*py_args);
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return result;
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}
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bool PrimitivePy::HasComputeFunction() const {
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auto func = GetComputeFunction();
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if (py::isinstance<py::none>(func)) {
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return false;
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}
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return true;
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}
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PrimitivePtr PrimitivePy::Clone() {
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auto clone_fn = python_obj_.attr("_clone");
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py::object new_obj = clone_fn();
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auto cloned_prim = new_obj.cast<PrimitivePyPtr>();
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return cloned_prim;
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}
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py::dict PrimitivePy::RunInfer(const py::tuple &args) {
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if (!HasPyObj()) {
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MS_LOG(EXCEPTION) << "[" << this->ToString() << "]: pyobj is empty";
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}
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auto infer_fuc = python_obj_.attr("__infer__");
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return infer_fuc(*args);
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}
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REGISTER_PYBIND_DEFINE(Primitive_, ([](const py::module *m) {
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(void)py::enum_<PrimType>(*m, "prim_type", py::arithmetic())
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.value("unknown", PrimType::kPrimTypeUnknown)
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.value("builtin", PrimType::kPrimTypeBuiltIn)
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.value("py_infer_shape", PrimType::kPrimTypePyInferShape)
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.value("user_custom", PrimType::kPrimTypeUserCustom);
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(void)py::class_<PrimitivePy, std::shared_ptr<PrimitivePy>>(*m, "Primitive_")
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.def_readonly(PYTHON_PRIMITIVE_FLAG, &PrimitivePy::parse_info_)
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.def(py::init<py::str &, py::object>())
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.def("add_attr", &PrimitivePy::AddPyAttr, "add primitive attr")
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.def("get_attr_dict", &PrimitivePy::GetAttrDict, "get primitive attr")
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.def("set_prim_type", &PrimitivePy::set_prim_type, "Set primitive type.")
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.def("set_signatures", &PrimitivePy::set_signatures, "Set primitive inputs signature.")
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.def("register_hook", &PrimitivePy::set_hook, "Set primitive hook function.")
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.def("set_instance_name", &PrimitivePy::set_instance_name, "Set primitive instance name.");
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}));
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} // namespace mindspore
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