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https://github.com/CrowCpp/Crow.git
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499 lines
16 KiB
C++
499 lines
16 KiB
C++
#pragma once
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#include <chrono>
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#include <string>
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#include <functional>
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#include <memory>
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#include <future>
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#include <cstdint>
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#include <type_traits>
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#include <thread>
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#include <condition_variable>
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#include "crow/version.h"
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#include "crow/settings.h"
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#include "crow/logging.h"
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#include "crow/utility.h"
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#include "crow/routing.h"
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#include "crow/middleware_context.h"
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#include "crow/http_request.h"
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#include "crow/http_server.h"
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#include "crow/task_timer.h"
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#ifdef CROW_ENABLE_COMPRESSION
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#include "crow/compression.h"
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#endif
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#ifdef CROW_MSVC_WORKAROUND
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#define CROW_ROUTE(app, url) app.route_dynamic(url)
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#define CROW_BP_ROUTE(blueprint, url) blueprint.new_rule_dynamic(url)
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#else
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#define CROW_ROUTE(app, url) app.route<crow::black_magic::get_parameter_tag(url)>(url)
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#define CROW_BP_ROUTE(blueprint, url) blueprint.new_rule_tagged<crow::black_magic::get_parameter_tag(url)>(url)
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#define CROW_WEBSOCKET_ROUTE(app, url) app.route<crow::black_magic::get_parameter_tag(url)>(url).websocket<decltype(app)>(&app)
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#define CROW_MIDDLEWARES(app, ...) middlewares<std::remove_reference<decltype(app)>::type, __VA_ARGS__>()
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#endif
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#define CROW_CATCHALL_ROUTE(app) app.catchall_route()
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#define CROW_BP_CATCHALL_ROUTE(blueprint) blueprint.catchall_rule()
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namespace crow
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{
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#ifdef CROW_ENABLE_SSL
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using ssl_context_t = boost::asio::ssl::context;
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#endif
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/// The main server application
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///
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/// Use `SimpleApp` or `App<Middleware1, Middleware2, etc...>`
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template<typename... Middlewares>
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class Crow
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{
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public:
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/// This crow application
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using self_t = Crow;
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/// The HTTP server
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using server_t = Server<Crow, SocketAdaptor, Middlewares...>;
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#ifdef CROW_ENABLE_SSL
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/// An HTTP server that runs on SSL with an SSLAdaptor
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using ssl_server_t = Server<Crow, SSLAdaptor, Middlewares...>;
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#endif
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Crow()
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{}
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/// Process an Upgrade request
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///
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/// Currently used to upgrade an HTTP connection to a WebSocket connection
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template<typename Adaptor>
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void handle_upgrade(const request& req, response& res, Adaptor&& adaptor)
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{
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router_.handle_upgrade(req, res, adaptor);
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}
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/// Process the request and generate a response for it
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void handle(request& req, response& res)
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{
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router_.handle(req, res);
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}
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/// Create a dynamic route using a rule (**Use CROW_ROUTE instead**)
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DynamicRule& route_dynamic(std::string&& rule)
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{
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return router_.new_rule_dynamic(std::move(rule));
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}
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///Create a route using a rule (**Use CROW_ROUTE instead**)
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template<uint64_t Tag>
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#ifdef CROW_GCC83_WORKAROUND
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auto& route(std::string&& rule)
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#else
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auto route(std::string&& rule)
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#endif
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#if defined CROW_CAN_USE_CPP17 && !defined CROW_GCC83_WORKAROUND
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-> typename std::invoke_result<decltype(&Router::new_rule_tagged<Tag>), Router, std::string&&>::type
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#elif !defined CROW_GCC83_WORKAROUND
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-> typename std::result_of<decltype (&Router::new_rule_tagged<Tag>)(Router, std::string&&)>::type
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#endif
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{
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return router_.new_rule_tagged<Tag>(std::move(rule));
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}
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/// Create a route for any requests without a proper route (**Use CROW_CATCHALL_ROUTE instead**)
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CatchallRule& catchall_route()
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{
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return router_.catchall_rule();
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}
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self_t& signal_clear()
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{
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signals_.clear();
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return *this;
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}
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self_t& signal_add(int signal_number)
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{
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signals_.push_back(signal_number);
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return *this;
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}
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/// Set the port that Crow will handle requests on
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self_t& port(std::uint16_t port)
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{
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port_ = port;
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return *this;
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}
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/// Get the port that Crow will handle requests on
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std::uint16_t port()
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{
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return port_;
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}
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/// Set the connection timeout in seconds (default is 5)
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self_t& timeout(std::uint8_t timeout)
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{
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timeout_ = timeout;
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return *this;
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}
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/// Set the server name
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self_t& server_name(std::string server_name)
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{
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server_name_ = server_name;
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return *this;
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}
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/// The IP address that Crow will handle requests on (default is 0.0.0.0)
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self_t& bindaddr(std::string bindaddr)
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{
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bindaddr_ = bindaddr;
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return *this;
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}
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/// Run the server on multiple threads using all available threads
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self_t& multithreaded()
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{
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return concurrency(std::thread::hardware_concurrency());
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}
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/// Run the server on multiple threads using a specific number
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self_t& concurrency(std::uint16_t concurrency)
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{
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if (concurrency < 2) // Crow can have a minimum of 2 threads running
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concurrency = 2;
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concurrency_ = concurrency;
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return *this;
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}
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/// Set the server's log level
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///
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/// Possible values are:<br>
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/// crow::LogLevel::Debug (0)<br>
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/// crow::LogLevel::Info (1)<br>
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/// crow::LogLevel::Warning (2)<br>
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/// crow::LogLevel::Error (3)<br>
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/// crow::LogLevel::Critical (4)<br>
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self_t& loglevel(LogLevel level)
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{
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crow::logger::setLogLevel(level);
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return *this;
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}
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/// Set the response body size (in bytes) beyond which Crow automatically streams responses (Default is 1MiB)
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///
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/// Any streamed response is unaffected by Crow's timer, and therefore won't timeout before a response is fully sent.
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self_t& stream_threshold(size_t threshold)
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{
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res_stream_threshold_ = threshold;
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return *this;
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}
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/// Get the response body size (in bytes) beyond which Crow automatically streams responses
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size_t& stream_threshold()
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{
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return res_stream_threshold_;
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}
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self_t& register_blueprint(Blueprint& blueprint)
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{
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router_.register_blueprint(blueprint);
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return *this;
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}
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/// Set a custom duration and function to run on every tick
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template<typename Duration, typename Func>
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self_t& tick(Duration d, Func f)
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{
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tick_interval_ = std::chrono::duration_cast<std::chrono::milliseconds>(d);
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tick_function_ = f;
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return *this;
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}
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#ifdef CROW_ENABLE_COMPRESSION
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self_t& use_compression(compression::algorithm algorithm)
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{
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comp_algorithm_ = algorithm;
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compression_used_ = true;
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return *this;
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}
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compression::algorithm compression_algorithm()
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{
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return comp_algorithm_;
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}
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bool compression_used() const
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{
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return compression_used_;
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}
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#endif
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/// A wrapper for `validate()` in the router
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///
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/// Go through the rules, upgrade them if possible, and add them to the list of rules
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void validate()
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{
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if (!validated_)
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{
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#ifndef CROW_DISABLE_STATIC_DIR
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route<crow::black_magic::get_parameter_tag(CROW_STATIC_ENDPOINT)>(CROW_STATIC_ENDPOINT)([](crow::response& res, std::string file_path_partial) {
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utility::sanitize_filename(file_path_partial);
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res.set_static_file_info_unsafe(CROW_STATIC_DIRECTORY + file_path_partial);
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res.end();
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});
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#if defined(__APPLE__) || defined(__MACH__)
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if (!router_.blueprints().empty())
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#endif
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{
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for (Blueprint* bp : router_.blueprints())
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{
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if (!bp->static_dir().empty())
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{
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bp->new_rule_tagged<crow::black_magic::get_parameter_tag(CROW_STATIC_ENDPOINT)>(CROW_STATIC_ENDPOINT)([bp](crow::response& res, std::string file_path_partial) {
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utility::sanitize_filename(file_path_partial);
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res.set_static_file_info_unsafe(bp->static_dir() + '/' + file_path_partial);
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res.end();
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});
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}
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}
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}
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#endif
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router_.validate();
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validated_ = true;
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}
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}
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/// Notify anything using `wait_for_server_start()` to proceed
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void notify_server_start()
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{
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std::unique_lock<std::mutex> lock(start_mutex_);
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server_started_ = true;
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cv_started_.notify_all();
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}
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/// Run the server
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void run()
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{
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validate();
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#ifdef CROW_ENABLE_SSL
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if (ssl_used_)
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{
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ssl_server_ = std::move(std::unique_ptr<ssl_server_t>(new ssl_server_t(this, bindaddr_, port_, server_name_, &middlewares_, concurrency_, timeout_, &ssl_context_)));
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ssl_server_->set_tick_function(tick_interval_, tick_function_);
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ssl_server_->signal_clear();
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for (auto snum : signals_)
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{
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ssl_server_->signal_add(snum);
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}
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notify_server_start();
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ssl_server_->run();
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}
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else
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#endif
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{
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server_ = std::move(std::unique_ptr<server_t>(new server_t(this, bindaddr_, port_, server_name_, &middlewares_, concurrency_, timeout_, nullptr)));
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server_->set_tick_function(tick_interval_, tick_function_);
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server_->signal_clear();
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for (auto snum : signals_)
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{
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server_->signal_add(snum);
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}
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notify_server_start();
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server_->run();
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}
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}
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/// Non-blocking version of \ref run()
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std::future<void> run_async()
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{
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return std::async(std::launch::async, [&] {
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this->run();
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});
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}
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/// Stop the server
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void stop()
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{
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#ifdef CROW_ENABLE_SSL
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if (ssl_used_)
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{
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if (ssl_server_) { ssl_server_->stop(); }
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}
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else
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#endif
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{
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if (server_) { server_->stop(); }
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}
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}
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/// Print the routing paths defined for each HTTP method
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void debug_print()
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{
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CROW_LOG_DEBUG << "Routing:";
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router_.debug_print();
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}
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#ifdef CROW_ENABLE_SSL
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/// Use certificate and key files for SSL
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self_t& ssl_file(const std::string& crt_filename, const std::string& key_filename)
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{
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ssl_used_ = true;
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ssl_context_.set_verify_mode(boost::asio::ssl::verify_peer);
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ssl_context_.set_verify_mode(boost::asio::ssl::verify_client_once);
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ssl_context_.use_certificate_file(crt_filename, ssl_context_t::pem);
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ssl_context_.use_private_key_file(key_filename, ssl_context_t::pem);
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ssl_context_.set_options(
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boost::asio::ssl::context::default_workarounds | boost::asio::ssl::context::no_sslv2 | boost::asio::ssl::context::no_sslv3);
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return *this;
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}
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/// Use .pem file for SSL
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self_t& ssl_file(const std::string& pem_filename)
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{
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ssl_used_ = true;
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ssl_context_.set_verify_mode(boost::asio::ssl::verify_peer);
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ssl_context_.set_verify_mode(boost::asio::ssl::verify_client_once);
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ssl_context_.load_verify_file(pem_filename);
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ssl_context_.set_options(
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boost::asio::ssl::context::default_workarounds | boost::asio::ssl::context::no_sslv2 | boost::asio::ssl::context::no_sslv3);
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return *this;
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}
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/// Use certificate chain and key files for SSL
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self_t& ssl_chainfile(const std::string& crt_filename, const std::string& key_filename)
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{
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ssl_used_ = true;
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ssl_context_.set_verify_mode(boost::asio::ssl::verify_peer);
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ssl_context_.set_verify_mode(boost::asio::ssl::verify_client_once);
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ssl_context_.use_certificate_chain_file(crt_filename);
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ssl_context_.use_private_key_file(key_filename, ssl_context_t::pem);
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ssl_context_.set_options(
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boost::asio::ssl::context::default_workarounds | boost::asio::ssl::context::no_sslv2 | boost::asio::ssl::context::no_sslv3);
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return *this;
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}
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self_t& ssl(boost::asio::ssl::context&& ctx)
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{
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ssl_used_ = true;
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ssl_context_ = std::move(ctx);
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return *this;
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}
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bool ssl_used() const
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{
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return ssl_used_;
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}
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#else
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template<typename T, typename... Remain>
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self_t& ssl_file(T&&, Remain&&...)
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{
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// We can't call .ssl() member function unless CROW_ENABLE_SSL is defined.
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static_assert(
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// make static_assert dependent to T; always false
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std::is_base_of<T, void>::value,
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"Define CROW_ENABLE_SSL to enable ssl support.");
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return *this;
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}
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template<typename T, typename... Remain>
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self_t& ssl_chainfile(T&&, Remain&&...)
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{
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// We can't call .ssl() member function unless CROW_ENABLE_SSL is defined.
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static_assert(
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// make static_assert dependent to T; always false
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std::is_base_of<T, void>::value,
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"Define CROW_ENABLE_SSL to enable ssl support.");
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return *this;
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}
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template<typename T>
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self_t& ssl(T&&)
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{
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// We can't call .ssl() member function unless CROW_ENABLE_SSL is defined.
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static_assert(
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// make static_assert dependent to T; always false
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std::is_base_of<T, void>::value,
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"Define CROW_ENABLE_SSL to enable ssl support.");
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return *this;
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}
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bool ssl_used() const
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{
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return false;
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}
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#endif
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// middleware
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using context_t = detail::context<Middlewares...>;
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using mw_container_t = std::tuple<Middlewares...>;
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template<typename T>
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typename T::context& get_context(const request& req)
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{
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static_assert(black_magic::contains<T, Middlewares...>::value, "App doesn't have the specified middleware type.");
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auto& ctx = *reinterpret_cast<context_t*>(req.middleware_context);
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return ctx.template get<T>();
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}
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template<typename T>
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T& get_middleware()
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{
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return utility::get_element_by_type<T, Middlewares...>(middlewares_);
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}
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/// Wait until the server has properly started
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void wait_for_server_start()
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{
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std::unique_lock<std::mutex> lock(start_mutex_);
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if (server_started_)
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return;
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cv_started_.wait(lock);
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}
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private:
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std::uint8_t timeout_{5};
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uint16_t port_ = 80;
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uint16_t concurrency_ = 2;
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bool validated_ = false;
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std::string server_name_ = std::string("Crow/") + VERSION;
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std::string bindaddr_ = "0.0.0.0";
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size_t res_stream_threshold_ = 1048576;
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Router router_;
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#ifdef CROW_ENABLE_COMPRESSION
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compression::algorithm comp_algorithm_;
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bool compression_used_{false};
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#endif
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std::chrono::milliseconds tick_interval_;
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std::function<void()> tick_function_;
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std::tuple<Middlewares...> middlewares_;
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#ifdef CROW_ENABLE_SSL
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std::unique_ptr<ssl_server_t> ssl_server_;
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bool ssl_used_{false};
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ssl_context_t ssl_context_{boost::asio::ssl::context::sslv23};
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#endif
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std::unique_ptr<server_t> server_;
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std::vector<int> signals_{SIGINT, SIGTERM};
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bool server_started_{false};
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std::condition_variable cv_started_;
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std::mutex start_mutex_;
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};
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template<typename... Middlewares>
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using App = Crow<Middlewares...>;
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using SimpleApp = Crow<>;
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} // namespace crow
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