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........ r43377 | chris_kohlhoff | 2008-02-23 09:43:54 +1100 (Sat, 23 Feb 2008) | 2 lines Use the correct vector of timer queues when dispatching timers. ........ r43437 | chris_kohlhoff | 2008-02-29 23:57:57 +1100 (Fri, 29 Feb 2008) | 2 lines Add missing tie(). ........ r43469 | chris_kohlhoff | 2008-03-04 00:21:05 +1100 (Tue, 04 Mar 2008) | 4 lines Disable use of CancelIo by default, due to the possibility of silent failure on some system configurations. Swallow error returned by CancelIoEx if there are no operations to be cancelled. ........ r43470 | chris_kohlhoff | 2008-03-04 00:27:06 +1100 (Tue, 04 Mar 2008) | 2 lines Add missing 'boost_' prefix to helper namespace. ........ r43471 | chris_kohlhoff | 2008-03-04 00:36:35 +1100 (Tue, 04 Mar 2008) | 2 lines Regenerate documentation. ........ r43472 | chris_kohlhoff | 2008-03-04 01:05:35 +1100 (Tue, 04 Mar 2008) | 1 line Update copyright notices. ........ r43473 | chris_kohlhoff | 2008-03-04 01:13:01 +1100 (Tue, 04 Mar 2008) | 2 lines Update copyright notices. ........ r43569 | chris_kohlhoff | 2008-03-13 00:25:49 +1100 (Thu, 13 Mar 2008) | 4 lines Revert to having the windows-bug workaround (short timeout on GetQueuedCompletionStatus) on all threads as there are still scenarios where threads can get stuck indefinitely. ........ [SVN r43571]
172 lines
4.0 KiB
C++
172 lines
4.0 KiB
C++
//
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// strand.cpp
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// ~~~~~~~~~~
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//
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// Copyright (c) 2003-2008 Christopher M. Kohlhoff (chris at kohlhoff dot com)
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//
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// Distributed under the Boost Software License, Version 1.0. (See accompanying
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// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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//
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// Disable autolinking for unit tests.
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#if !defined(BOOST_ALL_NO_LIB)
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#define BOOST_ALL_NO_LIB 1
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#endif // !defined(BOOST_ALL_NO_LIB)
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// Test that header file is self-contained.
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#include <boost/asio/strand.hpp>
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#include <sstream>
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#include <boost/bind.hpp>
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#include <boost/asio.hpp>
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#include <boost/thread.hpp>
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#include "unit_test.hpp"
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using namespace boost::asio;
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void increment(int* count)
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{
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++(*count);
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}
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void increment_without_lock(strand* s, int* count)
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{
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int original_count = *count;
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s->dispatch(boost::bind(increment, count));
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// No other functions are currently executing through the locking dispatcher,
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// so the previous call to dispatch should have successfully nested.
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BOOST_CHECK(*count == original_count + 1);
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}
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void increment_with_lock(strand* s, int* count)
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{
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int original_count = *count;
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s->dispatch(boost::bind(increment, count));
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// The current function already holds the strand's lock, so the
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// previous call to dispatch should have successfully nested.
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BOOST_CHECK(*count == original_count + 1);
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}
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void sleep_increment(io_service* ios, int* count)
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{
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deadline_timer t(*ios, boost::posix_time::seconds(2));
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t.wait();
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++(*count);
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}
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void start_sleep_increments(io_service* ios, strand* s, int* count)
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{
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// Give all threads a chance to start.
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deadline_timer t(*ios, boost::posix_time::seconds(2));
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t.wait();
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// Start three increments.
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s->post(boost::bind(sleep_increment, ios, count));
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s->post(boost::bind(sleep_increment, ios, count));
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s->post(boost::bind(sleep_increment, ios, count));
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}
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void throw_exception()
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{
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throw 1;
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}
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void io_service_run(io_service* ios)
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{
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ios->run();
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}
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void strand_test()
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{
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io_service ios;
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strand s(ios);
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int count = 0;
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ios.post(boost::bind(increment_without_lock, &s, &count));
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// No handlers can be called until run() is called.
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BOOST_CHECK(count == 0);
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ios.run();
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// The run() call will not return until all work has finished.
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BOOST_CHECK(count == 1);
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count = 0;
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ios.reset();
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s.post(boost::bind(increment_with_lock, &s, &count));
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// No handlers can be called until run() is called.
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BOOST_CHECK(count == 0);
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ios.run();
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// The run() call will not return until all work has finished.
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BOOST_CHECK(count == 1);
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count = 0;
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ios.reset();
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ios.post(boost::bind(start_sleep_increments, &ios, &s, &count));
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boost::thread thread1(boost::bind(io_service_run, &ios));
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boost::thread thread2(boost::bind(io_service_run, &ios));
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// Check all events run one after another even though there are two threads.
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deadline_timer timer1(ios, boost::posix_time::seconds(3));
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timer1.wait();
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BOOST_CHECK(count == 0);
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timer1.expires_at(timer1.expires_at() + boost::posix_time::seconds(2));
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timer1.wait();
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BOOST_CHECK(count == 1);
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timer1.expires_at(timer1.expires_at() + boost::posix_time::seconds(2));
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timer1.wait();
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BOOST_CHECK(count == 2);
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thread1.join();
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thread2.join();
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// The run() calls will not return until all work has finished.
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BOOST_CHECK(count == 3);
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count = 0;
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int exception_count = 0;
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ios.reset();
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s.post(throw_exception);
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s.post(boost::bind(increment, &count));
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s.post(boost::bind(increment, &count));
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s.post(throw_exception);
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s.post(boost::bind(increment, &count));
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// No handlers can be called until run() is called.
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BOOST_CHECK(count == 0);
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BOOST_CHECK(exception_count == 0);
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for (;;)
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{
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try
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{
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ios.run();
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break;
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}
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catch (int)
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{
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++exception_count;
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}
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}
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// The run() calls will not return until all work has finished.
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BOOST_CHECK(count == 3);
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BOOST_CHECK(exception_count == 2);
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}
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test_suite* init_unit_test_suite(int argc, char* argv[])
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{
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test_suite* test = BOOST_TEST_SUITE("strand");
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test->add(BOOST_TEST_CASE(&strand_test));
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return test;
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}
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