kqueue_reactor.hpp 8.1 KB

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  1. //
  2. // detail/kqueue_reactor.hpp
  3. // ~~~~~~~~~~~~~~~~~~~~~~~~~
  4. //
  5. // Copyright (c) 2003-2021 Christopher M. Kohlhoff (chris at kohlhoff dot com)
  6. // Copyright (c) 2005 Stefan Arentz (stefan at soze dot com)
  7. //
  8. // Distributed under the Boost Software License, Version 1.0. (See accompanying
  9. // file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
  10. //
  11. #ifndef BOOST_ASIO_DETAIL_KQUEUE_REACTOR_HPP
  12. #define BOOST_ASIO_DETAIL_KQUEUE_REACTOR_HPP
  13. #if defined(_MSC_VER) && (_MSC_VER >= 1200)
  14. # pragma once
  15. #endif // defined(_MSC_VER) && (_MSC_VER >= 1200)
  16. #include <boost/asio/detail/config.hpp>
  17. #if defined(BOOST_ASIO_HAS_KQUEUE)
  18. #include <cstddef>
  19. #include <sys/types.h>
  20. #include <sys/event.h>
  21. #include <sys/time.h>
  22. #include <boost/asio/detail/limits.hpp>
  23. #include <boost/asio/detail/mutex.hpp>
  24. #include <boost/asio/detail/object_pool.hpp>
  25. #include <boost/asio/detail/op_queue.hpp>
  26. #include <boost/asio/detail/reactor_op.hpp>
  27. #include <boost/asio/detail/select_interrupter.hpp>
  28. #include <boost/asio/detail/socket_types.hpp>
  29. #include <boost/asio/detail/timer_queue_base.hpp>
  30. #include <boost/asio/detail/timer_queue_set.hpp>
  31. #include <boost/asio/detail/wait_op.hpp>
  32. #include <boost/asio/error.hpp>
  33. #include <boost/asio/execution_context.hpp>
  34. // Older versions of Mac OS X may not define EV_OOBAND.
  35. #if !defined(EV_OOBAND)
  36. # define EV_OOBAND EV_FLAG1
  37. #endif // !defined(EV_OOBAND)
  38. #include <boost/asio/detail/push_options.hpp>
  39. namespace boost {
  40. namespace asio {
  41. namespace detail {
  42. class scheduler;
  43. class kqueue_reactor
  44. : public execution_context_service_base<kqueue_reactor>
  45. {
  46. private:
  47. // The mutex type used by this reactor.
  48. typedef conditionally_enabled_mutex mutex;
  49. public:
  50. enum op_types { read_op = 0, write_op = 1,
  51. connect_op = 1, except_op = 2, max_ops = 3 };
  52. // Per-descriptor queues.
  53. struct descriptor_state
  54. {
  55. descriptor_state(bool locking) : mutex_(locking) {}
  56. friend class kqueue_reactor;
  57. friend class object_pool_access;
  58. descriptor_state* next_;
  59. descriptor_state* prev_;
  60. mutex mutex_;
  61. int descriptor_;
  62. int num_kevents_; // 1 == read only, 2 == read and write
  63. op_queue<reactor_op> op_queue_[max_ops];
  64. bool shutdown_;
  65. };
  66. // Per-descriptor data.
  67. typedef descriptor_state* per_descriptor_data;
  68. // Constructor.
  69. BOOST_ASIO_DECL kqueue_reactor(boost::asio::execution_context& ctx);
  70. // Destructor.
  71. BOOST_ASIO_DECL ~kqueue_reactor();
  72. // Destroy all user-defined handler objects owned by the service.
  73. BOOST_ASIO_DECL void shutdown();
  74. // Recreate internal descriptors following a fork.
  75. BOOST_ASIO_DECL void notify_fork(
  76. boost::asio::execution_context::fork_event fork_ev);
  77. // Initialise the task.
  78. BOOST_ASIO_DECL void init_task();
  79. // Register a socket with the reactor. Returns 0 on success, system error
  80. // code on failure.
  81. BOOST_ASIO_DECL int register_descriptor(socket_type descriptor,
  82. per_descriptor_data& descriptor_data);
  83. // Register a descriptor with an associated single operation. Returns 0 on
  84. // success, system error code on failure.
  85. BOOST_ASIO_DECL int register_internal_descriptor(
  86. int op_type, socket_type descriptor,
  87. per_descriptor_data& descriptor_data, reactor_op* op);
  88. // Move descriptor registration from one descriptor_data object to another.
  89. BOOST_ASIO_DECL void move_descriptor(socket_type descriptor,
  90. per_descriptor_data& target_descriptor_data,
  91. per_descriptor_data& source_descriptor_data);
  92. // Post a reactor operation for immediate completion.
  93. void post_immediate_completion(reactor_op* op, bool is_continuation)
  94. {
  95. scheduler_.post_immediate_completion(op, is_continuation);
  96. }
  97. // Start a new operation. The reactor operation will be performed when the
  98. // given descriptor is flagged as ready, or an error has occurred.
  99. BOOST_ASIO_DECL void start_op(int op_type, socket_type descriptor,
  100. per_descriptor_data& descriptor_data, reactor_op* op,
  101. bool is_continuation, bool allow_speculative);
  102. // Cancel all operations associated with the given descriptor. The
  103. // handlers associated with the descriptor will be invoked with the
  104. // operation_aborted error.
  105. BOOST_ASIO_DECL void cancel_ops(socket_type descriptor,
  106. per_descriptor_data& descriptor_data);
  107. // Cancel any operations that are running against the descriptor and remove
  108. // its registration from the reactor. The reactor resources associated with
  109. // the descriptor must be released by calling cleanup_descriptor_data.
  110. BOOST_ASIO_DECL void deregister_descriptor(socket_type descriptor,
  111. per_descriptor_data& descriptor_data, bool closing);
  112. // Remove the descriptor's registration from the reactor. The reactor
  113. // resources associated with the descriptor must be released by calling
  114. // cleanup_descriptor_data.
  115. BOOST_ASIO_DECL void deregister_internal_descriptor(
  116. socket_type descriptor, per_descriptor_data& descriptor_data);
  117. // Perform any post-deregistration cleanup tasks associated with the
  118. // descriptor data.
  119. BOOST_ASIO_DECL void cleanup_descriptor_data(
  120. per_descriptor_data& descriptor_data);
  121. // Add a new timer queue to the reactor.
  122. template <typename Time_Traits>
  123. void add_timer_queue(timer_queue<Time_Traits>& queue);
  124. // Remove a timer queue from the reactor.
  125. template <typename Time_Traits>
  126. void remove_timer_queue(timer_queue<Time_Traits>& queue);
  127. // Schedule a new operation in the given timer queue to expire at the
  128. // specified absolute time.
  129. template <typename Time_Traits>
  130. void schedule_timer(timer_queue<Time_Traits>& queue,
  131. const typename Time_Traits::time_type& time,
  132. typename timer_queue<Time_Traits>::per_timer_data& timer, wait_op* op);
  133. // Cancel the timer operations associated with the given token. Returns the
  134. // number of operations that have been posted or dispatched.
  135. template <typename Time_Traits>
  136. std::size_t cancel_timer(timer_queue<Time_Traits>& queue,
  137. typename timer_queue<Time_Traits>::per_timer_data& timer,
  138. std::size_t max_cancelled = (std::numeric_limits<std::size_t>::max)());
  139. // Move the timer operations associated with the given timer.
  140. template <typename Time_Traits>
  141. void move_timer(timer_queue<Time_Traits>& queue,
  142. typename timer_queue<Time_Traits>::per_timer_data& target,
  143. typename timer_queue<Time_Traits>::per_timer_data& source);
  144. // Run the kqueue loop.
  145. BOOST_ASIO_DECL void run(long usec, op_queue<operation>& ops);
  146. // Interrupt the kqueue loop.
  147. BOOST_ASIO_DECL void interrupt();
  148. private:
  149. // Create the kqueue file descriptor. Throws an exception if the descriptor
  150. // cannot be created.
  151. BOOST_ASIO_DECL static int do_kqueue_create();
  152. // Allocate a new descriptor state object.
  153. BOOST_ASIO_DECL descriptor_state* allocate_descriptor_state();
  154. // Free an existing descriptor state object.
  155. BOOST_ASIO_DECL void free_descriptor_state(descriptor_state* s);
  156. // Helper function to add a new timer queue.
  157. BOOST_ASIO_DECL void do_add_timer_queue(timer_queue_base& queue);
  158. // Helper function to remove a timer queue.
  159. BOOST_ASIO_DECL void do_remove_timer_queue(timer_queue_base& queue);
  160. // Get the timeout value for the kevent call.
  161. BOOST_ASIO_DECL timespec* get_timeout(long usec, timespec& ts);
  162. // The scheduler used to post completions.
  163. scheduler& scheduler_;
  164. // Mutex to protect access to internal data.
  165. mutex mutex_;
  166. // The kqueue file descriptor.
  167. int kqueue_fd_;
  168. // The interrupter is used to break a blocking kevent call.
  169. select_interrupter interrupter_;
  170. // The timer queues.
  171. timer_queue_set timer_queues_;
  172. // Whether the service has been shut down.
  173. bool shutdown_;
  174. // Mutex to protect access to the registered descriptors.
  175. mutex registered_descriptors_mutex_;
  176. // Keep track of all registered descriptors.
  177. object_pool<descriptor_state> registered_descriptors_;
  178. };
  179. } // namespace detail
  180. } // namespace asio
  181. } // namespace boost
  182. #include <boost/asio/detail/pop_options.hpp>
  183. #include <boost/asio/detail/impl/kqueue_reactor.hpp>
  184. #if defined(BOOST_ASIO_HEADER_ONLY)
  185. # include <boost/asio/detail/impl/kqueue_reactor.ipp>
  186. #endif // defined(BOOST_ASIO_HEADER_ONLY)
  187. #endif // defined(BOOST_ASIO_HAS_KQUEUE)
  188. #endif // BOOST_ASIO_DETAIL_KQUEUE_REACTOR_HPP