interceptor.cc 4.9 KB
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// Copyright (c) 2021 PaddlePaddle Authors. All Rights Reserved.
//
// 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 "paddle/fluid/distributed/fleet_executor/interceptor.h"
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#include "paddle/fluid/distributed/fleet_executor/message_bus.h"
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namespace paddle {
namespace distributed {

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Interceptor::Interceptor(int64_t interceptor_id, TaskNode* node)
    : interceptor_id_(interceptor_id), node_(node) {
  interceptor_thread_ = std::thread([this]() {
    VLOG(3) << "Start pooling local mailbox's thread.";
    PoolTheMailbox();
  });
}

Interceptor::~Interceptor() { interceptor_thread_.join(); }

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void Interceptor::RegisterMsgHandle(MsgHandle handle) { handle_ = handle; }
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void Interceptor::Handle(const InterceptorMessage& msg) {
  if (handle_) {
    handle_(msg);
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  } else {
    VLOG(3) << "Interceptor is using default message handler. This handler is "
               "only used for test purpose. Check whether you init interceptor "
               "in the proper way.";
    if (msg.message_type() == DATA_IS_READY) {
      VLOG(3) << "Fake handler is sending stop message to it self.";
      InterceptorMessage msg;
      msg.set_message_type(STOP);
      Send(interceptor_id_, msg);
    }
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  }
}

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std::condition_variable& Interceptor::GetCondVar() {
  // get the conditional var
  return cond_var_;
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}

int64_t Interceptor::GetInterceptorId() const {
  // return the interceptor id
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  return interceptor_id_;
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}

bool Interceptor::EnqueueRemoteInterceptorMessage(
    const InterceptorMessage& interceptor_message) {
  // Called by Carrier, enqueue an InterceptorMessage to remote mailbox
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  VLOG(3) << "Enqueue message: " << interceptor_message.message_type()
          << " into " << interceptor_id_ << "'s remote mailbox.";
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  std::unique_lock<std::mutex> lock(remote_mailbox_mutex_);
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  remote_mailbox_.push(interceptor_message);
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  return true;
}

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bool Interceptor::Send(int64_t dst_id, InterceptorMessage& msg) {
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  msg.set_src_id(interceptor_id_);
  msg.set_dst_id(dst_id);
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  return MessageBus::Instance().Send(msg);
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}

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void Interceptor::PoolTheMailbox() {
  // pool the local mailbox, parse the Message
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  while (true) {
    if (local_mailbox_.empty()) {
      // local mailbox is empty, fetch the remote mailbox
      VLOG(3) << interceptor_id_ << "'s local mailbox is empty. "
              << "Fetch the remote mailbox.";
      PADDLE_ENFORCE_EQ(FetchRemoteMailbox(), true,
                        platform::errors::InvalidArgument(
                            "Error encountered when fetch remote mailbox."));
    }
    const InterceptorMessage interceptor_message = local_mailbox_.front();
    local_mailbox_.pop();
    const MessageType message_type = interceptor_message.message_type();
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    VLOG(3) << "Interceptor " << interceptor_id_ << " has received a message"
            << " from interceptor " << interceptor_message.src_id()
            << " with message: " << message_type << ".";
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    if (message_type == STOP) {
      // break the pooling thread
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      VLOG(3) << "Interceptor " << interceptor_id_ << " is quiting.";
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      break;
    }
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    Handle(interceptor_message);
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  }
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}

bool Interceptor::FetchRemoteMailbox() {
  // fetch all Message from remote mailbox to local mailbox
  // return true if remote mailbox not empty, otherwise return false
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  std::unique_lock<std::mutex> lock(remote_mailbox_mutex_);
  cond_var_.wait(lock, [this]() { return !remote_mailbox_.empty(); });
  if (remote_mailbox_.empty()) {
    // the thread has been unblocked accidentally
    return false;
  }
  while (!remote_mailbox_.empty()) {
    local_mailbox_.push(std::move(remote_mailbox_.front()));
    remote_mailbox_.pop();
  }
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  return true;
}

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static InterceptorFactory::CreateInterceptorMap& GetInterceptorMap() {
  static InterceptorFactory::CreateInterceptorMap interceptorMap;
  return interceptorMap;
}

std::unique_ptr<Interceptor> InterceptorFactory::Create(const std::string& type,
                                                        int64_t id,
                                                        TaskNode* node) {
  auto& interceptor_map = GetInterceptorMap();
  auto iter = interceptor_map.find(type);
  PADDLE_ENFORCE_NE(
      iter, interceptor_map.end(),
      platform::errors::NotFound("interceptor %s is not register", type));
  return iter->second(id, node);
}

void InterceptorFactory::Register(
    const std::string& type, InterceptorFactory::CreateInterceptorFunc func) {
  auto& interceptor_map = GetInterceptorMap();
  interceptor_map.emplace(type, func);
}

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}  // namespace distributed
}  // namespace paddle