363 lines
		
	
	
		
			8.4 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			363 lines
		
	
	
		
			8.4 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| /*
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|  *	Message Dispatcher Implementation
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|  *	Copyright(C) 2003-2017 Jinhao(cnjinhao@hotmail.com)
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|  *
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|  *	Distributed under the Boost Software License, Version 1.0. 
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|  *	(See accompanying file LICENSE_1_0.txt or copy at 
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|  *	http://www.boost.org/LICENSE_1_0.txt)
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|  *
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|  *	@file: nana/detail/msg_dispatcher.hpp
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|  *
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|  *  @DO NOT INCLUDE THIS HEADER FILE IN YOUR SOURCE FILE!!
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|  *
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|  *	This class msg_dispatcher provides a simulation of Windows-like message
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|  *	dispatcher. Every event is dispatched into its own message queue for
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|  *	corresponding thread.
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|  */
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| 
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| #ifndef NANA_DETAIL_MSG_DISPATCHER_HPP
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| #define NANA_DETAIL_MSG_DISPATCHER_HPP
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| #include <nana/detail/linux_X11/msg_packet.hpp>
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| #include <nana/system/platform.hpp>
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| #include <list>
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| #include <set>
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| #include <map>
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| #include <mutex>
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| #include <condition_variable>
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| #include <memory>
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| #include <thread>
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| 
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| namespace nana
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| {
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| namespace detail
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| {
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| 	class msg_dispatcher
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| 	{
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| 		struct thread_binder
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| 		{
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| 			unsigned tid;
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| 			std::mutex	mutex;
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| 			std::condition_variable	cond;
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| 			std::list<msg_packet_tag>	msg_queue;
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| 			std::set<Window> window;
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| 		};
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| 
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| 	public:
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| 		typedef msg_packet_tag	msg_packet;
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| 		typedef void (*timer_proc_type)(unsigned tid);
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| 		typedef void (*event_proc_type)(Display*, msg_packet_tag&);
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| 		typedef int (*event_filter_type)(XEvent&, msg_packet_tag&);
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| 
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| 		typedef std::list<msg_packet_tag> msg_queue_type;
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| 
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| 		msg_dispatcher(Display* disp)
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| 			: display_(disp)
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| 		{
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| 			proc_.event_proc = 0;
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| 			proc_.timer_proc = 0;
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| 			proc_.filter_proc = 0;
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| 		}
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| 
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| 		~msg_dispatcher()
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| 		{
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| 			if(thrd_ && thrd_->joinable())
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| 			{
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| 				is_work_ = false;
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| 				thrd_->join();
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| 			}
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| 		}
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| 
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| 		void set(timer_proc_type timer_proc, event_proc_type event_proc, event_filter_type filter)
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| 		{
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| 			proc_.timer_proc = timer_proc;
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| 			proc_.event_proc = event_proc;
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| 			proc_.filter_proc = filter;
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| 		}
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| 
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| 		void insert(Window wd)
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| 		{
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| 			unsigned tid = nana::system::this_thread_id();
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| 
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| 			bool start_driver;
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| 
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| 			{
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| 				std::lock_guard<decltype(table_.mutex)> lock(table_.mutex);
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| 
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| 				//No thread is running, so msg dispatcher should start the msg driver.
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| 				start_driver = (0 == table_.thr_table.size());
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| 				thread_binder * thr;
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| 
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| 				std::map<unsigned, thread_binder*>::iterator i = table_.thr_table.find(tid);
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| 				if(i == table_.thr_table.end())
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| 				{
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| 					thr = new thread_binder;
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| 					thr->tid = tid;
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| 					table_.thr_table.insert(std::make_pair(tid, thr));
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| 				}
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| 				else
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| 					thr = i->second;
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| 
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| 				thr->mutex.lock();
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| 				thr->window.insert(wd);
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| 				thr->mutex.unlock();
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| 			
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| 				table_.wnd_table[wd] = thr;
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| 			}
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| 
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| 			if(start_driver && proc_.event_proc && proc_.timer_proc)
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| 			{
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| 				//It should start the msg driver, before starting it, the msg driver must be inactive.
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| 				if(thrd_)
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| 				{
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| 					is_work_ = false;
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| 					thrd_->join();
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| 				}
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| 				is_work_ = true;
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| 				thrd_ = std::unique_ptr<std::thread>(new std::thread([this](){ this->_m_msg_driver(); }));
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| 			}
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| 		}
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| 
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| 		void erase(Window wd)
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| 		{
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| 			std::lock_guard<decltype(table_.mutex)> lock(table_.mutex);
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| 			
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| 			auto i = table_.wnd_table.find(wd);
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| 			if(i != table_.wnd_table.end())
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| 			{
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| 				thread_binder * const thr = i->second;
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| 				std::lock_guard<decltype(thr->mutex)> lock(thr->mutex);
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| 				for(auto li = thr->msg_queue.begin(); li != thr->msg_queue.end();)
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| 				{
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| 					if(wd == _m_window(*li))
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| 						li = thr->msg_queue.erase(li);
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| 					else
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| 						++li;
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| 				}
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| 
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| 				table_.wnd_table.erase(i);
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| 				thr->window.erase(wd);
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| 				
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| 				//There still is at least one window alive.
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| 				if(thr->window.size())
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| 				{
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| 					//Make a cleanup msg packet to infor the dispatcher the window is closed.
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| 					msg_packet_tag msg;
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| 					msg.kind = msg.kind_cleanup;
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| 					msg.u.packet_window = wd;
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| 					thr->msg_queue.push_back(msg);
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| 				}
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| 			}
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| 		}
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| 
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| 		void dispatch(Window modal)
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| 		{
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| 			unsigned tid = nana::system::this_thread_id();
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| 			msg_packet_tag msg;
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| 			int qstate;
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| 			
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| 			//Test whether the thread is registered for window, and retrieve the queue state for event
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| 			while((qstate = _m_read_queue(tid, msg, modal)))
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| 			{
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| 				//the queue is empty
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| 				if(-1 == qstate)
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| 				{
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| 					if(false == _m_wait_for_queue(tid))
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| 						proc_.timer_proc(tid);
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| 				}
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| 				else
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| 				{
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| 					proc_.event_proc(display_, msg);
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| 				}
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| 			}
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| 		}
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| 	private:
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| 		void _m_msg_driver()
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| 		{
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| 			const int fd_X11 = ConnectionNumber(display_);
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| 
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| 			msg_packet_tag msg_pack;
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| 			XEvent event;
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| 			while(is_work_)
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| 			{
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| 				int pending;
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| 				{
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| 					nana::detail::platform_scope_guard lock;
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| 					pending = ::XPending(display_);
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| 					if(pending)
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| 					{
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| 						::XNextEvent(display_, &event);
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| 						
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| 						if(KeyRelease == event.type)
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| 						{
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| 							//Check whether the key is pressed, because X will send KeyRelease when pressing and
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| 							//holding a key if auto repeat is on.
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| 							char keymap[32];
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| 							::XQueryKeymap(display_, keymap);
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| 
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| 							if(keymap[event.xkey.keycode / 8] & (1 << (event.xkey.keycode % 8)))
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| 								continue;
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| 						}
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| 
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| 						if(::XFilterEvent(&event, None))
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| 							continue;
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| 					}
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| 				}
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| 
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| 				if(0 == pending)
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| 				{
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| 					fd_set fdset;
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| 					FD_ZERO(&fdset);
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| 					FD_SET(fd_X11, &fdset);
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| 
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| 					struct timeval tv;
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| 					tv.tv_usec = 10000;
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| 					tv.tv_sec = 0;
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| 					::select(fd_X11 + 1, &fdset, 0, 0, &tv);
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| 				}
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| 				else
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| 				{
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| 					switch(proc_.filter_proc(event, msg_pack))
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| 					{
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| 					case 0:
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| 						msg_pack.kind = msg_pack.kind_xevent;
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| 						msg_pack.u.xevent = event;
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| 					case 1:
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| 						_m_msg_dispatch(msg_pack);
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| 					}
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| 				}
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| 			}
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| 		}
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| 	private:
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| 		static Window _m_event_window(const XEvent& event)
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| 		{
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| 			switch(event.type)
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| 			{
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| 			case MapNotify:
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| 			case UnmapNotify:
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| 				return event.xmap.window;
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| 			}
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| 			return event.xkey.window;
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| 		}
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| 
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| 		static Window _m_window(const msg_packet_tag& pack)
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| 		{
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| 			switch(pack.kind)
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| 			{
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| 			case msg_packet_tag::kind_xevent:
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| 				return _m_event_window(pack.u.xevent);
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| 			case msg_packet_tag::kind_mouse_drop:
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| 				return pack.u.mouse_drop.window;
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| 			default:
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| 				break;
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| 			}
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| 			return 0;
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| 		}
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| 
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| 		void _m_msg_dispatch(const msg_packet_tag &msg)
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| 		{
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| 			std::lock_guard<decltype(table_.mutex)> lock(table_.mutex);
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| 			auto i = table_.wnd_table.find(_m_window(msg));
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| 			if(i != table_.wnd_table.end())
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| 			{
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| 				thread_binder * const thr = i->second;
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| 				
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| 				std::lock_guard<decltype(thr->mutex)> lock(thr->mutex);
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| 				thr->msg_queue.push_back(msg);
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| 				thr->cond.notify_one();
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| 			}
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| 		}
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| 
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| 		//_m_read_queue
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| 		//@brief:Read the event from a specified thread queue.
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| 		//@return: 0 = exit the queue, 1 = fetch the msg, -1 = no msg
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| 		int _m_read_queue(unsigned tid, msg_packet_tag& msg, Window modal)
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| 		{
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| 			bool stop_driver = false;
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| 
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| 			{
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| 				std::lock_guard<decltype(table_.mutex)> lock(table_.mutex);
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| 				//Find the thread whether it is registered for the window.
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| 				auto i = table_.thr_table.find(tid);
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| 				if(i != table_.thr_table.end())
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| 				{
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| 					if(i->second->window.size())
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| 					{
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| 						msg_queue_type & queue = i->second->msg_queue;
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| 						if(queue.size())
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| 						{
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| 							msg = queue.front();
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| 							queue.pop_front();
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| 
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| 							//Check whether the event dispatcher is used for the modal window
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| 							//and when the modal window is closing, the event dispatcher would
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| 							//stop event pumping.
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| 							if((modal == msg.u.packet_window) && (msg.kind == msg.kind_cleanup))
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| 								return 0;
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| 
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| 							return 1;
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| 						}
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| 						else
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| 							return -1;
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| 					}
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| 
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| 					delete i->second;
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| 					table_.thr_table.erase(i);
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| 					stop_driver = (table_.thr_table.size() == 0);
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| 				}
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| 			}
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| 			if(stop_driver)
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| 			{
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| 				is_work_ = false;
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| 				thrd_->join();
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| 				thrd_.reset();
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| 			}
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| 			return 0;
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| 		}
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| 
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| 		//_m_wait_for_queue
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| 		//	wait for the insertion of queue.
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| 		//return@ it returns true if the queue is not empty, otherwise the wait is timeout.
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| 		bool _m_wait_for_queue(unsigned tid)
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| 		{
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| 			thread_binder * thr = nullptr;
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| 			{
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| 				std::lock_guard<decltype(table_.mutex)> lock(table_.mutex);
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| 				auto i = table_.thr_table.find(tid);
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| 				if(i != table_.thr_table.end())
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| 				{
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| 					if(i->second->msg_queue.size())
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| 						return true;
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| 					thr = i->second;
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| 				}
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| 			}
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| 			
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| 			//Waits for notifying the condition variable, it indicates a new msg is pushing into the queue.
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| 			std::unique_lock<decltype(thr->mutex)> lock(thr->mutex);
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| 			return (thr->cond.wait_for(lock, std::chrono::milliseconds(10)) != std::cv_status::timeout);
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| 		}
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| 		
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| 	private:
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| 		Display * display_;
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| 		volatile bool is_work_{ false };
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| 		std::unique_ptr<std::thread> thrd_;
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| 
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| 		struct table_tag
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| 		{
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| 			std::recursive_mutex mutex;
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| 			std::map<unsigned, thread_binder*> thr_table;
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| 			std::map<Window, thread_binder*> wnd_table;
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| 		}table_;
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| 
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| 		struct proc_tag
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| 		{
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| 			timer_proc_type	timer_proc;
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| 			event_proc_type	event_proc;
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| 			event_filter_type filter_proc;
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| 		}proc_;
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| 	};
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| }//end namespace detail
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| }//end namespace nana
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| 
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| #endif
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| 
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