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377 lines
8.9 KiB
C++
377 lines
8.9 KiB
C++
#include "webcc/server.h"
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#include <algorithm>
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#include <csignal>
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#include <utility>
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#include "boost/algorithm/string.hpp"
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#include "boost/filesystem/fstream.hpp"
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#include "webcc/body.h"
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#include "webcc/logger.h"
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#include "webcc/request.h"
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#include "webcc/response.h"
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#include "webcc/url.h"
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#include "webcc/utility.h"
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namespace bfs = boost::filesystem;
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using tcp = boost::asio::ip::tcp;
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namespace webcc {
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Server::Server(std::uint16_t port, const Path& doc_root)
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: port_(port), doc_root_(doc_root), running_(false),
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acceptor_(io_context_), signals_(io_context_) {
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AddSignals();
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}
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bool Server::Route(const std::string& url, ViewPtr view,
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const Strings& methods) {
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assert(view);
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// TODO: More error check
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routes_.push_back({ url, {}, view, methods });
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return true;
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}
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bool Server::Route(const UrlRegex& regex_url, ViewPtr view,
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const Strings& methods) {
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assert(view);
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// TODO: More error check
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try {
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routes_.push_back({ "", regex_url(), view, methods });
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} catch (const std::regex_error& e) {
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LOG_ERRO("Not a valid regular expression: %s", e.what());
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return false;
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}
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return true;
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}
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void Server::Run(std::size_t workers, std::size_t loops) {
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assert(workers > 0);
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{
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std::lock_guard<std::mutex> lock(state_mutex_);
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assert(worker_threads_.empty());
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if (IsRunning()) {
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LOG_WARN("Server is already running.");
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return;
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}
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running_ = true;
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io_context_.restart();
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if (!Listen(port_)) {
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LOG_ERRO("Server is NOT going to run.");
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return;
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}
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LOG_INFO("Server is going to run...");
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AsyncWaitSignals();
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AsyncAccept();
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// Create worker threads.
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for (std::size_t i = 0; i < workers; ++i) {
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worker_threads_.emplace_back(std::bind(&Server::WorkerRoutine, this));
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}
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}
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// Start the event loop.
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// The io_context::run() call will block until all asynchronous operations
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// have finished. While the server is running, there is always at least one
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// asynchronous operation outstanding: the asynchronous accept call waiting
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// for new incoming connections.
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LOG_INFO("Loop is running in %u thread(s).", loops);
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if (loops == 1) {
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// Just run the loop in the current thread.
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io_context_.run();
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} else {
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std::vector<std::thread> loop_threads;
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for (std::size_t i = 0; i < loops; ++i) {
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loop_threads.emplace_back(&boost::asio::io_context::run, &io_context_);
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}
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// Join the threads for blocking.
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for (std::size_t i = 0; i < loops; ++i) {
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loop_threads[i].join();
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}
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}
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}
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void Server::Stop() {
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std::lock_guard<std::mutex> lock(state_mutex_);
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DoStop();
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}
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bool Server::IsRunning() const {
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return running_ && !io_context_.stopped();
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}
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void Server::AddSignals() {
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signals_.add(SIGINT); // Ctrl+C
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signals_.add(SIGTERM);
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#if defined(SIGQUIT)
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signals_.add(SIGQUIT);
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#endif
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}
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void Server::AsyncWaitSignals() {
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signals_.async_wait(
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[this](boost::system::error_code, int signo) {
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// The server is stopped by canceling all outstanding asynchronous
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// operations. Once all operations have finished the io_context::run()
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// call will exit.
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LOG_INFO("On signal %d, stopping the server...", signo);
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DoStop();
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});
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}
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bool Server::Listen(std::uint16_t port) {
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boost::system::error_code ec;
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tcp::endpoint endpoint(tcp::v4(), port);
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// Open the acceptor.
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acceptor_.open(endpoint.protocol(), ec);
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if (ec) {
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LOG_ERRO("Acceptor open error (%s).", ec.message().c_str());
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return false;
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}
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// Set option SO_REUSEADDR on.
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// When SO_REUSEADDR is set, multiple servers can listen on the same port.
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// This is necessary for restarting the server on the same port.
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// More details:
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// - https://stackoverflow.com/a/3233022
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// - http://www.andy-pearce.com/blog/posts/2013/Feb/so_reuseaddr-on-windows/
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acceptor_.set_option(tcp::acceptor::reuse_address(true));
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// Bind to the server address.
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acceptor_.bind(endpoint, ec);
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if (ec) {
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LOG_ERRO("Acceptor bind error (%s).", ec.message().c_str());
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return false;
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}
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// Start listening for connections.
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// After listen, the client is able to connect to the server even the server
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// has not started to accept the connection yet.
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acceptor_.listen(boost::asio::socket_base::max_listen_connections, ec);
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if (ec) {
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LOG_ERRO("Acceptor listen error (%s).", ec.message().c_str());
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return false;
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}
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return true;
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}
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void Server::AsyncAccept() {
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acceptor_.async_accept(
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[this](boost::system::error_code ec, tcp::socket socket) {
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// Check whether the server was stopped by a signal before this
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// completion handler had a chance to run.
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if (!acceptor_.is_open()) {
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return;
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}
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if (!ec) {
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LOG_INFO("Accepted a connection.");
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auto connection = std::make_shared<Connection>(
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std::move(socket), &pool_, &queue_);
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pool_.Start(connection);
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}
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AsyncAccept();
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});
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}
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void Server::DoStop() {
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// Stop accepting new connections.
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acceptor_.close();
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// Stop worker threads.
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// This might take some time if the threads are still processing.
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StopWorkers();
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// Close all pending connections.
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pool_.Clear();
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// Finally, stop the event processing loop.
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// This function does not block, but instead simply signals the io_context to
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// stop. All invocations of its run() or run_one() member functions should
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// return as soon as possible.
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io_context_.stop();
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running_ = false;
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}
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void Server::WorkerRoutine() {
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LOG_INFO("Worker is running.");
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for (;;) {
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auto connection = queue_.PopOrWait();
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if (!connection) {
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LOG_INFO("Worker is going to stop.");
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// For stopping next worker.
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queue_.Push(ConnectionPtr());
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// Stop this worker.
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break;
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}
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Handle(connection);
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}
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}
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void Server::StopWorkers() {
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LOG_INFO("Stopping workers...");
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// Clear pending connections.
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// The connections will be closed later.
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LOG_INFO("Clear pending connections...");
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queue_.Clear();
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// Enqueue a null connection to trigger the first worker to stop.
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queue_.Push(ConnectionPtr());
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// Wait for worker threads to finish.
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for (auto& t : worker_threads_) {
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if (t.joinable()) {
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t.join();
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}
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}
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// Cleanup worker threads.
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worker_threads_.clear();
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// Clear the queue because it has a remaining null connection pushed by the
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// last worker thread.
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queue_.Clear();
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LOG_INFO("All workers have been stopped.");
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}
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void Server::Handle(ConnectionPtr connection) {
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auto request = connection->request();
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const Url& url = request->url();
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UrlArgs args;
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LOG_INFO("Request URL path: %s", url.path().c_str());
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auto view = FindView(request->method(), url.path(), &args);
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if (!view) {
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LOG_WARN("No view matches the URL path: %s", url.path().c_str());
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if (!ServeStatic(connection)) {
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connection->SendResponse(Status::kNotFound);
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}
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return;
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}
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// Save the (regex matched) URL args to request object.
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request->set_args(args);
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// Ask the matched view to process the request.
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ResponsePtr response = view->Handle(request);
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// Send the response back.
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if (response) {
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connection->SendResponse(response);
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} else {
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connection->SendResponse(Status::kNotImplemented);
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}
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}
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ViewPtr Server::FindView(const std::string& method, const std::string& url,
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UrlArgs* args) {
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assert(args != nullptr);
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for (auto& route : routes_) {
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if (std::find(route.methods.begin(), route.methods.end(), method) ==
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route.methods.end()) {
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continue;
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}
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if (route.url.empty()) {
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std::smatch match;
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if (std::regex_match(url, match, route.url_regex)) {
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// Any sub-matches?
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// Start from 1 because match[0] is the whole string itself.
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for (size_t i = 1; i < match.size(); ++i) {
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args->push_back(match[i].str());
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}
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return route.view;
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}
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} else {
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if (boost::iequals(route.url, url)) {
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return route.view;
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}
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}
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}
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return ViewPtr();
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}
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bool Server::ServeStatic(ConnectionPtr connection) {
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if (doc_root_.empty()) {
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LOG_INFO("The doc root was not specified.");
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return false;
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}
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auto request = connection->request();
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std::string path = request->url().path();
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// If path ends in slash (i.e. is a directory) then add "index.html".
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if (path[path.size() - 1] == '/') {
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path += "index.html"; // TODO
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}
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Path p = doc_root_ / path;
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try {
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auto body = std::make_shared<FileBody>(p);
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auto response = std::make_shared<Response>(Status::kOK);
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std::string extension = p.extension().string();
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response->SetContentType(media_types::FromExtension(extension), "");
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// NOTE: Gzip compression is not supported.
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response->SetBody(body, true);
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// Send response back to client.
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connection->SendResponse(response);
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return true;
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} catch (const Error& error) {
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LOG_ERRO("File error: %s.", error.message().c_str());
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return false;
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}
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}
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} // namespace webcc
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