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Summary: Pull Request resolved: https://github.com/pytorch/pytorch/pull/29765 instead of wrapping this C++ function with python that causes unnecessary overhead, we can move this to pybind and use the `DefaultRpcAgent` to get the timeout. ghstack-source-id: 93879236 Test Plan: unit tests pass Differential Revision: D18493195 fbshipit-source-id: fd0f1f13ee15acb5ea1ae7c696925c9b54304f6d
198 lines
6.1 KiB
C++
198 lines
6.1 KiB
C++
#include <torch/csrc/python_headers.h>
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#include <torch/csrc/distributed/rpc/future_message.h>
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#include <torch/csrc/distributed/rpc/process_group_agent.h>
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#include <torch/csrc/distributed/rpc/py_rref.h>
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#include <torch/csrc/distributed/rpc/python_functions.h>
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#include <torch/csrc/distributed/rpc/rpc_agent.h>
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#include <torch/csrc/distributed/rpc/rref.h>
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#include <torch/csrc/distributed/rpc/rref_context.h>
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#include <torch/csrc/distributed/rpc/types.h>
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#include <torch/csrc/jit/pybind_utils.h>
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#include <torch/csrc/utils/object_ptr.h>
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#include <torch/csrc/utils/pybind.h>
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#include <torch/types.h>
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#include <pybind11/chrono.h>
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namespace torch {
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namespace distributed {
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namespace rpc {
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namespace {
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template <typename T>
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using shared_ptr_class_ = py::class_<T, std::shared_ptr<T>>;
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PyObject* rpc_init(PyObject* /* unused */) {
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auto rpc_module =
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THPObjectPtr(PyImport_ImportModule("torch.distributed.rpc"));
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if (!rpc_module) {
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throw python_error();
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}
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auto module = py::handle(rpc_module).cast<py::module>();
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auto workerInfo = shared_ptr_class_<WorkerInfo>(module, "WorkerInfo")
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.def_readonly("name", &WorkerInfo::name_)
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.def_readonly("id", &WorkerInfo::id_);
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auto rpcAgent =
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shared_ptr_class_<RpcAgent>(module, "RpcAgent")
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.def(
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"join", &RpcAgent::join, py::call_guard<py::gil_scoped_release>())
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.def(
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"sync",
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&RpcAgent::sync,
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py::call_guard<py::gil_scoped_release>());
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auto pyRRef =
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shared_ptr_class_<PyRRef>(module, "RRef", R"(
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A class encapsulating a reference to a value of some type on a remote worker.
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This handle will keep the referenced remote value alive on the worker.
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)")
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.def(py::init<const py::object&>())
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.def(
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// not releasing GIL here to avoid context switch on getters
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"is_owner",
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&PyRRef::isOwner)
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.def(
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// not releasing GIL here to avoid context switch on getters
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"owner",
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&PyRRef::owner)
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.def(
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"to_here",
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&PyRRef::toHere,
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py::call_guard<py::gil_scoped_release>())
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.def(
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"local_value",
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&PyRRef::localValue,
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py::call_guard<py::gil_scoped_release>())
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.def(py::pickle(
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[](const PyRRef& self) {
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// __getstate__
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return self.pickle();
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},
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[](py::tuple t) { // NOLINT
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// __setstate__
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return PyRRef::unpickle(t);
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}));
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// future.wait() should not be called after join_rpc(), e.g., pythonRpcHandler
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// is cleaned up in join_rpc(), after join_rpc(), python objects returned
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// from rpc python call can not be resolved.
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auto futureMessage =
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shared_ptr_class_<FutureMessage>(module, "FutureMessage")
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.def(
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"wait",
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[&](FutureMessage& fut) { return toPyObj(fut.wait()); },
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py::call_guard<py::gil_scoped_release>());
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shared_ptr_class_<ProcessGroupAgent>(module, "ProcessGroupAgent", rpcAgent)
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.def(
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py::init<
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std::string,
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std::shared_ptr<::c10d::ProcessGroup>,
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int,
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std::chrono::milliseconds>(),
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py::arg("name"),
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py::arg("process_group"),
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py::arg("num_send_recv_threads"),
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py::arg("rpc_timeout"))
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.def(
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"get_worker_info",
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(const WorkerInfo& (ProcessGroupAgent::*)(void)const) &
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RpcAgent::getWorkerInfo,
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py::call_guard<py::gil_scoped_release>())
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.def(
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"get_worker_info",
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(const WorkerInfo& (ProcessGroupAgent::*)(const std::string&)const) &
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ProcessGroupAgent::getWorkerInfo,
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py::call_guard<py::gil_scoped_release>())
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.def(
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"join",
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&ProcessGroupAgent::join,
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py::call_guard<py::gil_scoped_release>())
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.def(
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"sync",
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&ProcessGroupAgent::sync,
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py::call_guard<py::gil_scoped_release>());
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module.def("_start_rpc_agent", [](const std::shared_ptr<RpcAgent>& agent) {
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RpcAgent::setDefaultRpcAgent(agent);
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agent->start();
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});
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module.def("_destroy_rref_context", []() {
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RRefContext::getInstance().destroyInstance();
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});
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module.def("_cleanup_python_rpc_handler", []() {
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PythonRpcHandler::getInstance().cleanup();
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});
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module.def(
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"_invoke_rpc_builtin",
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[](RpcAgent& agent,
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const WorkerInfo& dst,
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const std::string& opName,
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const py::args& args,
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const py::kwargs& kwargs) {
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return pyRpcBuiltin(agent, dst, opName, args, kwargs);
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});
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module.def(
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"_invoke_rpc_python_udf",
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[](RpcAgent& agent,
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const WorkerInfo& dst,
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std::string& pickledPythonUDF,
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std::vector<torch::Tensor>& tensors) {
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return pyRpcPythonUdf(agent, dst, pickledPythonUDF, tensors);
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});
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module.def(
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"_invoke_remote_builtin",
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[](RpcAgent& agent,
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const WorkerInfo& dst,
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const std::string& opName,
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const py::args& args,
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const py::kwargs& kwargs) {
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return pyRemoteBuiltin(agent, dst, opName, args, kwargs);
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});
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module.def(
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"_invoke_remote_python_udf",
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[](RpcAgent& agent,
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const WorkerInfo& dst,
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std::string& pickledPythonUDF,
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std::vector<torch::Tensor>& tensors) {
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return pyRemotePythonUdf(agent, dst, pickledPythonUDF, tensors);
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});
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module.def(
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"get_rpc_timeout",
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[]() { return RpcAgent::getDefaultRpcAgent()->getRpcTimeout(); },
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R"(
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Retrieve the timeout for all RPCs that was set during RPC initialization.
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Returns:
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`datetime.timedelta` instance indicating the RPC timeout.
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)");
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Py_RETURN_TRUE;
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}
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} // namespace
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static PyMethodDef methods[] = { // NOLINT
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{"_rpc_init", (PyCFunction)rpc_init, METH_NOARGS, nullptr},
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{nullptr, nullptr, 0, nullptr}};
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PyMethodDef* python_functions() {
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return methods;
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}
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} // namespace rpc
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} // namespace distributed
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} // namespace torch
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