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https://github.com/pytorch/pytorch.git
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* add autograd automatic anomaly detection * python 3 string support * Fix non python build * fix typo in doc * better test and naming fix * fix no python build and python object handling * fix missing checks * clean NO_PYTHON build * Remove unwanted changes
250 lines
7.0 KiB
C++
250 lines
7.0 KiB
C++
#include "torch/csrc/autograd/python_cpp_function.h"
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#include "torch/csrc/python_headers.h"
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#include <memory>
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#include <stdio.h>
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#include <typeindex>
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#include <unordered_map>
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#include "torch/csrc/autograd/python_function.h"
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#include "torch/csrc/autograd/python_variable.h"
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#include "torch/csrc/autograd/python_hook.h"
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#include "torch/csrc/autograd/python_anomaly_mode.h"
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#include "torch/csrc/utils/auto_gil.h"
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#include "torch/csrc/DynamicTypes.h"
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#include "torch/csrc/Exceptions.h"
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using namespace torch::autograd;
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namespace torch { namespace autograd {
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namespace {
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PyObject* THPCppFunction_call(PyObject* self, PyObject* args, PyObject *kwargs)
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{
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if (kwargs && PyDict_Size(kwargs) != 0) {
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return PyErr_Format(PyExc_TypeError, "keyword arguments are not supported");
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}
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int num_inputs = PyTuple_GET_SIZE(args);
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variable_list vars(num_inputs);
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for (int i = 0; i != num_inputs; ++i) {
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PyObject* arg = PyTuple_GET_ITEM(args, i);
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if (arg == Py_None) {
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continue;
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}
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if (!THPVariable_Check(arg)) {
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return PyErr_Format(PyExc_TypeError, "argument %d is not a Variable", i);
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}
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vars[i] = ((THPVariable*)arg)->cdata;
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}
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variable_list output;
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HANDLE_TH_ERRORS {
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AutoNoGIL nogil;
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output = (*((THPCppFunction*)self)->cdata)(vars);
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}
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END_HANDLE_TH_ERRORS
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int num_outputs = output.size();
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if (num_outputs == 1) {
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// assume we want to unpack one element tuples for now
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return THPVariable_Wrap(output[0]);
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}
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THPObjectPtr tuple(PyTuple_New(num_outputs));
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for (int i = 0; i != num_outputs; ++i) {
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PyTuple_SET_ITEM(tuple.get(), i, THPVariable_Wrap(output[i]));
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}
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return tuple.release();
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}
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int THPCppFunction_traverse(PyObject* self, visitproc visit, void *arg)
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{
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auto& fn = *((THPCppFunction*)self)->cdata;
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for (const auto& hook : fn.pre_hooks()) {
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if (auto pyhook = dynamic_cast<PyFunctionPreHook*>(hook.get())) {
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Py_VISIT(pyhook->dict);
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}
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}
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for (const auto& hook : fn.post_hooks()) {
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if (auto pyhook = dynamic_cast<PyFunctionPostHook*>(hook.get())) {
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Py_VISIT(pyhook->dict);
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}
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}
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return 0;
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}
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int THPCppFunction_clear(PyObject* self)
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{
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auto f = (THPCppFunction*)self;
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// Remove the weak ref of the c++ object if it exist
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if (f->cdata) {
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f->cdata->set_pyobj(nullptr);
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}
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f->cdata.reset();
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return 0;
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}
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void THPCppFunction_dealloc(PyObject* self)
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{
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THPCppFunction_clear(self);
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((THPCppFunction*)self)->cdata.~shared_ptr();
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Py_TYPE(self)->tp_free(self);
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}
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} // namespace
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PyObject* THPCppFunction_next_functions(THPCppFunction* self, PyObject* hook)
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{
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const auto num_next = self->cdata->num_outputs();
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THPObjectPtr py_functions(PyTuple_New(num_next));
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if (!py_functions) return nullptr;
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for (size_t i = 0; i < num_next; ++i) {
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auto& c_tuple = self->cdata->next_edge(i);
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THPObjectPtr tuple(PyTuple_New(2));
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if (!tuple) return nullptr;
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PyObject *py_fn = functionToPyObject(c_tuple.function);
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if (!py_fn) return nullptr;
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PyTuple_SET_ITEM(tuple.get(), 0, py_fn);
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PyObject *py_idx = PyLong_FromLong(c_tuple.input_nr);
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if (!py_idx) return nullptr;
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PyTuple_SET_ITEM(tuple.get(), 1, py_idx);
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PyTuple_SET_ITEM(py_functions.get(), i, tuple.release());
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}
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return py_functions.release();
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}
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PyObject* THPCppFunction_metadata(THPCppFunction *self, void *_unused)
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{
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auto metadata = static_cast<PyAnomalyMetadata*>(self->cdata->metadata())->dict();
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Py_INCREF(metadata);
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return metadata;
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}
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PyObject* THPCppFunction_requires_grad(THPCppFunction* self) {
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Py_RETURN_TRUE;
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}
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PyObject* THPCppFunction_register_hook_dict(PyObject* self, PyObject* _var)
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{
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if (!THPVariable_Check(_var)) {
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return PyErr_Format(PyExc_TypeError, "_register_hook_dict expected a variable");
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}
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auto var = (THPVariable*)_var;
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auto& fn = *((THPCppFunction*)self)->cdata;
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std::unique_ptr<FunctionPreHook> hook(
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new PyFunctionPreHook(var->backward_hooks, var->cdata.output_nr()));
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fn.add_pre_hook(std::move(hook));
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Py_RETURN_NONE;
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}
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PyObject* THPCppFunction_register_hook(PyObject* self, PyObject* hook)
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{
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auto& fn = *((THPCppFunction*)self)->cdata;
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return registerFunctionHook(fn, hook);
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}
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static struct PyMethodDef default_methods[] = {
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THP_FUNCTION_DEFAULT_METHODS,
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{nullptr}
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};
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static struct PyGetSetDef default_properties[] = {
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THP_FUNCTION_DEFAULT_PROPERTIES,
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{nullptr}
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};
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PyTypeObject* _initFunctionPyTypeObject(PyTypeObject& type, const char* name,
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PyGetSetDef* function_properties, PyMethodDef* function_methods)
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{
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type.tp_flags = Py_TPFLAGS_DEFAULT | Py_TPFLAGS_HAVE_GC;
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type.tp_name = name;
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type.tp_basicsize = sizeof(THPCppFunction);
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type.tp_call = THPCppFunction_call;
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type.tp_methods = function_methods ? function_methods : default_methods;
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type.tp_getset = function_properties ? function_properties : default_properties;
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type.tp_dealloc = THPCppFunction_dealloc;
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type.tp_traverse = THPCppFunction_traverse;
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type.tp_clear = THPCppFunction_clear;
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if (PyType_Ready(&type) < 0) {
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auto msg = std::string("Unable to instantiate PyTypeObject for ") + name;
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throw std::runtime_error(msg);
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}
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return &type;
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}
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static std::unordered_map<std::type_index, THPObjectPtr> cpp_function_types;
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PyObject* functionToPyObject(std::shared_ptr<Function> cdata)
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{
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if (!cdata) {
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Py_RETURN_NONE;
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}
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if (auto pfw = dynamic_cast<PyFunction*>(cdata.get())) {
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PyObject* obj = pfw->obj;
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Py_INCREF(obj);
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return obj;
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}
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if (cdata->pyobj()) {
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Py_INCREF(cdata->pyobj());
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} else {
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auto& fn = *cdata;
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auto it = cpp_function_types.find(std::type_index(typeid(fn)));
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if (it == cpp_function_types.end()) {
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return PyErr_Format(PyExc_TypeError,
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"Don't know how to create Python object for %s", typeid(fn).name());
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}
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PyTypeObject* type = (PyTypeObject*)it->second.get();
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THPObjectPtr obj(type->tp_alloc(type, 0));
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if (!obj) return nullptr;
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THPCppFunction* f = (THPCppFunction*)obj.get();
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new (&f->cdata) std::shared_ptr<Function>(cdata);
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// No INCREF here as we only have a weak reference
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cdata->set_pyobj(obj.release());
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}
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return cdata->pyobj();
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}
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void registerCppFunction(const std::type_info& type, PyTypeObject* pytype)
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{
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Py_INCREF((PyObject*)pytype);
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cpp_function_types[std::type_index(type)] = THPObjectPtr((PyObject*)pytype);
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}
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PyObject* registerFunctionHook(Function& fn, PyObject* hook)
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{
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PyObject* dict = Py_None;
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for (const auto& hook : fn.post_hooks()) {
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if (auto pyhook = dynamic_cast<PyFunctionPostHook*>(hook.get())) {
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dict = pyhook->dict;
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break;
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}
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}
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THPObjectPtr register_fn(PyObject_GetAttrString(THPFunctionClass, "_register_hook"));
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if (!register_fn) return nullptr;
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THPObjectPtr res(PyObject_CallFunctionObjArgs(register_fn.get(), dict, hook, nullptr));
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if (!res) return nullptr;
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if (dict == Py_None) {
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dict = PyTuple_GET_ITEM(res.get(), 0);
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std::unique_ptr<FunctionPostHook> hook(new PyFunctionPostHook(dict));
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fn.add_post_hook(std::move(hook));
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}
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PyObject* handle = PyTuple_GET_ITEM(res.get(), 1);
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Py_INCREF(handle);
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return handle;
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}
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}} // namespace torch::autograd
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