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https://github.com/monero-project/monero.git
synced 2024-10-01 11:49:47 -04:00
connection: fix implementation
This commit is contained in:
parent
724ff21447
commit
3be1dbd096
@ -1076,6 +1076,7 @@ if(STATIC)
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set(Boost_USE_STATIC_RUNTIME ON)
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endif()
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find_package(Boost 1.58 QUIET REQUIRED COMPONENTS system filesystem thread date_time chrono regex serialization program_options locale)
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add_definitions(-DBOOST_ASIO_ENABLE_SEQUENTIAL_STRAND_ALLOCATION)
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set(CMAKE_FIND_LIBRARY_SUFFIXES ${OLD_LIB_SUFFIXES})
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if(NOT Boost_FOUND)
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@ -44,12 +44,16 @@
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#include <cassert>
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#include <map>
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#include <memory>
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#include <condition_variable>
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#include <boost/asio.hpp>
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#include <boost/asio/ssl.hpp>
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#include <boost/asio/strand.hpp>
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#include <boost/asio/steady_timer.hpp>
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#include <boost/array.hpp>
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#include <boost/enable_shared_from_this.hpp>
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#include <boost/thread/thread.hpp>
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#include <boost/optional.hpp>
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#include "byte_slice.h"
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#include "net_utils_base.h"
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#include "syncobj.h"
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@ -85,6 +89,181 @@ namespace net_utils
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public i_service_endpoint,
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public connection_basic
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{
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private:
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using string_t = std::string;
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using handler_t = t_protocol_handler;
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using context_t = typename handler_t::connection_context;
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using connection_t = connection<handler_t>;
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using connection_ptr = boost::shared_ptr<connection_t>;
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using ssl_support_t = epee::net_utils::ssl_support_t;
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using timer_t = boost::asio::steady_timer;
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using duration_t = timer_t::duration;
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using lock_t = std::mutex;
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using condition_t = std::condition_variable_any;
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using lock_guard_t = std::lock_guard<lock_t>;
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using unique_lock_t = std::unique_lock<lock_t>;
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using byte_slice_t = epee::byte_slice;
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using ec_t = boost::system::error_code;
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using handshake_t = boost::asio::ssl::stream_base::handshake_type;
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using io_context_t = boost::asio::io_service;
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using strand_t = boost::asio::io_service::strand;
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using socket_t = boost::asio::ip::tcp::socket;
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using write_queue_t = std::deque<byte_slice_t>;
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using read_buffer_t = std::array<uint8_t, 0x2000>;
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using network_throttle_t = epee::net_utils::network_throttle;
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using network_throttle_manager_t = epee::net_utils::network_throttle_manager;
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unsigned int host_count(int delta = 0);
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duration_t get_default_timeout();
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duration_t get_timeout_from_bytes_read(size_t bytes) const;
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void start_timer(duration_t duration, bool add = {});
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void async_wait_timer();
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void cancel_timer();
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void start_handshake();
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void start_read();
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void start_write();
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void start_shutdown();
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void cancel_socket();
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void cancel_handler();
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void interrupt();
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void on_interrupted();
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void terminate();
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void on_terminating();
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bool send(byte_slice_t message);
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bool start_internal(
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bool is_income,
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bool is_multithreaded,
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boost::optional<network_address> real_remote
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);
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struct state_t {
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struct stat_t {
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struct {
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network_throttle_t throttle{"speed_in", "throttle_speed_in"};
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} in;
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struct {
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network_throttle_t throttle{"speed_out", "throttle_speed_out"};
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} out;
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};
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struct data_t {
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struct {
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read_buffer_t buffer;
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} read;
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struct {
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write_queue_t queue;
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bool wait_consume;
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} write;
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};
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struct ssl_t {
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bool enabled;
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bool forced;
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bool detected;
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bool handshaked;
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};
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struct socket_t {
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bool connected;
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bool wait_handshake;
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bool cancel_handshake;
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bool wait_read;
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bool handle_read;
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bool cancel_read;
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bool wait_write;
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bool handle_write;
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bool cancel_write;
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bool wait_shutdown;
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bool cancel_shutdown;
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};
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struct timer_t {
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bool wait_expire;
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bool cancel_expire;
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bool reset_expire;
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};
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struct timers_t {
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struct throttle_t {
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timer_t in;
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timer_t out;
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};
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timer_t general;
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throttle_t throttle;
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};
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enum status_t {
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TERMINATED,
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RUNNING,
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INTERRUPTED,
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TERMINATING,
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WASTED,
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};
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struct protocol_t {
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size_t reference_counter;
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bool released;
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bool initialized;
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bool wait_release;
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bool wait_init;
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size_t wait_callback;
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};
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lock_t lock;
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condition_t condition;
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status_t status;
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socket_t socket;
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ssl_t ssl;
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timers_t timers;
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protocol_t protocol;
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stat_t stat;
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data_t data;
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};
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using status_t = typename state_t::status_t;
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struct timers_t {
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timers_t(io_context_t &io_context):
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general(io_context),
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throttle(io_context)
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{}
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struct throttle_t {
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throttle_t(io_context_t &io_context):
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in(io_context),
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out(io_context)
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{}
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timer_t in;
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timer_t out;
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};
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timer_t general;
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throttle_t throttle;
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};
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io_context_t &io_context;
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t_connection_type connection_type;
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context_t context{};
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strand_t strand;
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timers_t timers;
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connection_ptr self{};
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bool local{};
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string_t host{};
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state_t state{};
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handler_t handler;
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public:
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typedef typename t_protocol_handler::connection_context t_connection_context;
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@ -141,58 +320,6 @@ namespace net_utils
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virtual bool add_ref();
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virtual bool release();
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//------------------------------------------------------
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bool do_send_chunk(byte_slice chunk); ///< will send (or queue) a part of data. internal use only
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boost::shared_ptr<connection<t_protocol_handler> > safe_shared_from_this();
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bool shutdown();
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/// Handle completion of a receive operation.
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void handle_receive(const boost::system::error_code& e,
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std::size_t bytes_transferred);
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/// Handle completion of a read operation.
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void handle_read(const boost::system::error_code& e,
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std::size_t bytes_transferred);
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/// Handle completion of a write operation.
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void handle_write(const boost::system::error_code& e, size_t cb);
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/// reset connection timeout timer and callback
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void reset_timer(boost::posix_time::milliseconds ms, bool add);
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boost::posix_time::milliseconds get_default_timeout();
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boost::posix_time::milliseconds get_timeout_from_bytes_read(size_t bytes);
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/// host connection count tracking
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unsigned int host_count(const std::string &host, int delta = 0);
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/// Buffer for incoming data.
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boost::array<char, 8192> buffer_;
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size_t buffer_ssl_init_fill;
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t_connection_context context;
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// TODO what do they mean about wait on destructor?? --rfree :
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//this should be the last one, because it could be wait on destructor, while other activities possible on other threads
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t_protocol_handler m_protocol_handler;
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//typename t_protocol_handler::config_type m_dummy_config;
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size_t m_reference_count = 0; // reference count managed through add_ref/release support
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boost::shared_ptr<connection<t_protocol_handler> > m_self_ref; // the reference to hold
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critical_section m_self_refs_lock;
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critical_section m_chunking_lock; // held while we add small chunks of the big do_send() to small do_send_chunk()
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critical_section m_shutdown_lock; // held while shutting down
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t_connection_type m_connection_type;
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// for calculate speed (last 60 sec)
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network_throttle m_throttle_speed_in;
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network_throttle m_throttle_speed_out;
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boost::mutex m_throttle_speed_in_mutex;
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boost::mutex m_throttle_speed_out_mutex;
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boost::asio::deadline_timer m_timer;
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bool m_local;
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bool m_ready_to_close;
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std::string m_host;
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public:
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void setRpcStation();
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};
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File diff suppressed because it is too large
Load Diff
@ -110,6 +110,11 @@ namespace net_utils
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//! Search against internal fingerprints. Always false if `behavior() != user_certificate_check`.
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bool has_fingerprint(boost::asio::ssl::verify_context &ctx) const;
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//! configure ssl_stream handshake verification
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void configure(
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boost::asio::ssl::stream<boost::asio::ip::tcp::socket> &socket,
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boost::asio::ssl::stream_base::handshake_type type,
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const std::string& host = {}) const;
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boost::asio::ssl::context create_context() const;
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/*! \note If `this->support == autodetect && this->verification != none`,
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@ -32,6 +32,8 @@
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#include <boost/asio/ssl.hpp>
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#include <boost/cerrno.hpp>
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#include <boost/filesystem/operations.hpp>
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#include <boost/asio/strand.hpp>
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#include <condition_variable>
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#include <boost/lambda/lambda.hpp>
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#include <openssl/ssl.h>
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#include <openssl/pem.h>
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@ -488,12 +490,10 @@ bool ssl_options_t::has_fingerprint(boost::asio::ssl::verify_context &ctx) const
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return false;
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}
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bool ssl_options_t::handshake(
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void ssl_options_t::configure(
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boost::asio::ssl::stream<boost::asio::ip::tcp::socket> &socket,
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boost::asio::ssl::stream_base::handshake_type type,
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boost::asio::const_buffer buffer,
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const std::string& host,
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std::chrono::milliseconds timeout) const
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const std::string& host) const
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{
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socket.next_layer().set_option(boost::asio::ip::tcp::no_delay(true));
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@ -538,30 +538,101 @@ bool ssl_options_t::handshake(
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return true;
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});
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}
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}
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auto& io_service = GET_IO_SERVICE(socket);
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boost::asio::steady_timer deadline(io_service, timeout);
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deadline.async_wait([&socket](const boost::system::error_code& error) {
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if (error != boost::asio::error::operation_aborted)
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bool ssl_options_t::handshake(
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boost::asio::ssl::stream<boost::asio::ip::tcp::socket> &socket,
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boost::asio::ssl::stream_base::handshake_type type,
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boost::asio::const_buffer buffer,
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const std::string& host,
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std::chrono::milliseconds timeout) const
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{
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socket.next_layer().close();
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}
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});
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configure(socket, type, host);
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boost::system::error_code ec = boost::asio::error::would_block;
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socket.async_handshake(type, boost::asio::buffer(buffer), boost::lambda::var(ec) = boost::lambda::_1);
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if (io_service.stopped())
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{
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io_service.reset();
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auto start_handshake = [&]{
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using ec_t = boost::system::error_code;
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using timer_t = boost::asio::steady_timer;
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using strand_t = boost::asio::io_service::strand;
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using lock_t = std::mutex;
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using lock_guard_t = std::lock_guard<lock_t>;
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using condition_t = std::condition_variable_any;
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using socket_t = boost::asio::ip::tcp::socket;
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auto &io_context = GET_IO_SERVICE(socket);
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if (io_context.stopped())
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io_context.reset();
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strand_t strand(io_context);
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timer_t deadline(io_context, timeout);
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struct state_t {
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lock_t lock;
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condition_t condition;
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ec_t result;
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bool wait_timer;
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bool wait_handshake;
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bool cancel_timer;
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bool cancel_handshake;
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};
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state_t state{};
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state.wait_timer = true;
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auto on_timer = [&](const ec_t &ec){
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lock_guard_t guard(state.lock);
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state.wait_timer = false;
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state.condition.notify_all();
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if (not state.cancel_timer) {
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state.cancel_handshake = true;
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ec_t ec;
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socket.next_layer().cancel(ec);
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}
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while (ec == boost::asio::error::would_block && !io_service.stopped())
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{
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// should poll_one(), can't run_one() because it can block if there is
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// another worker thread executing io_service's tasks
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// TODO: once we get Boost 1.66+, replace with run_one_for/run_until
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std::this_thread::sleep_for(std::chrono::milliseconds(30));
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io_service.poll_one();
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};
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state.wait_handshake = true;
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auto on_handshake = [&](const ec_t &ec, size_t bytes_transferred){
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lock_guard_t guard(state.lock);
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state.wait_handshake = false;
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state.condition.notify_all();
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state.result = ec;
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if (not state.cancel_handshake) {
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state.cancel_timer = true;
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ec_t ec;
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deadline.cancel(ec);
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}
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};
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deadline.async_wait(on_timer);
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strand.post(
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[&]{
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socket.async_handshake(
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type,
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boost::asio::buffer(buffer),
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strand.wrap(on_handshake)
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);
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}
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);
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while (!io_context.stopped())
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{
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io_context.poll_one();
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lock_guard_t guard(state.lock);
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state.condition.wait_for(
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state.lock,
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std::chrono::milliseconds(30),
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[&]{
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return not state.wait_timer and not state.wait_handshake;
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}
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);
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if (not state.wait_timer and not state.wait_handshake)
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break;
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}
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if (state.result.value()) {
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ec_t ec;
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socket.next_layer().shutdown(socket_t::shutdown_both, ec);
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socket.next_layer().close(ec);
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}
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return state.result;
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};
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const auto ec = start_handshake();
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if (ec)
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{
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