2007-11-01 01:35:20 +00:00
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///////////////////////////////////////////////////////////////////////////////
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// Name: wx/thread.h
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// Purpose: Message queues for inter-thread communication
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// Author: Evgeniy Tarassov
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// Created: 2007-10-31
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// RCS-ID: $Id$
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// Copyright: (C) 2007 TT-Solutions SARL
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// Licence: wxWindows licence
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///////////////////////////////////////////////////////////////////////////////
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#ifndef _WX_MSGQUEUE_H_
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#define _WX_MSGQUEUE_H_
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// ----------------------------------------------------------------------------
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// headers
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// ----------------------------------------------------------------------------
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#include "wx/thread.h"
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#if wxUSE_THREADS
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2008-01-25 21:51:42 +00:00
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#include "wx/stopwatch.h"
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2007-11-01 01:35:20 +00:00
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#include "wx/beforestd.h"
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#include <queue>
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#include "wx/afterstd.h"
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enum wxMessageQueueError
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{
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wxMSGQUEUE_NO_ERROR = 0, // operation completed successfully
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wxMSGQUEUE_TIMEOUT, // no messages received before timeout expired
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wxMSGQUEUE_MISC_ERROR // some unexpected (and fatal) error has occurred
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};
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// ---------------------------------------------------------------------------
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// Message queue allows passing message between threads.
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//
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// This class is typically used for communicating between the main and worker
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// threads. The main thread calls Post() and the worker thread calls Receive().
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//
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// For this class a message is an object of arbitrary type T. Notice that
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// typically there must be some special message indicating that the thread
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// should terminate as there is no other way to gracefully shutdown a thread
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// waiting on the message queue.
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// ---------------------------------------------------------------------------
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template <typename T>
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class wxMessageQueue
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{
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public:
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// The type of the messages transported by this queue
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typedef T Message;
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// Default ctor creates an initially empty queue
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wxMessageQueue()
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: m_conditionNotEmpty(m_mutex)
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{
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}
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// Add a message to this queue and signal the threads waiting for messages.
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//
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// This method is safe to call from multiple threads in parallel.
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wxMessageQueueError Post(const Message& msg)
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{
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wxMutexLocker locker(m_mutex);
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wxCHECK( locker.IsOk(), wxMSGQUEUE_MISC_ERROR );
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m_messages.push(msg);
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m_conditionNotEmpty.Signal();
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return wxMSGQUEUE_NO_ERROR;
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}
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// Wait no more than timeout milliseconds until a message becomes available.
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//
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// Setting timeout to 0 is equivalent to an infinite timeout. See Receive().
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wxMessageQueueError ReceiveTimeout(long timeout, T& msg)
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{
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wxCHECK( IsOk(), wxMSGQUEUE_MISC_ERROR );
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wxMutexLocker locker(m_mutex);
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wxCHECK( locker.IsOk(), wxMSGQUEUE_MISC_ERROR );
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const wxMilliClock_t waitUntil = wxGetLocalTimeMillis() + timeout;
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while ( m_messages.empty() )
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{
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wxCondError result = m_conditionNotEmpty.WaitTimeout(timeout);
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if ( result == wxCOND_NO_ERROR )
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continue;
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wxCHECK( result == wxCOND_TIMEOUT, wxMSGQUEUE_MISC_ERROR );
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const wxMilliClock_t now = wxGetLocalTimeMillis();
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if ( now >= waitUntil )
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return wxMSGQUEUE_TIMEOUT;
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timeout = (waitUntil - now).ToLong();
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wxASSERT(timeout > 0);
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}
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msg = m_messages.front();
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m_messages.pop();
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return wxMSGQUEUE_NO_ERROR;
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}
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// Same as ReceiveTimeout() but waits for as long as it takes for a message
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// to become available (so it can't return wxMSGQUEUE_TIMEOUT)
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wxMessageQueueError Receive(T& msg)
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{
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wxCHECK( IsOk(), wxMSGQUEUE_MISC_ERROR );
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wxMutexLocker locker(m_mutex);
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wxCHECK( locker.IsOk(), wxMSGQUEUE_MISC_ERROR );
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while ( m_messages.empty() )
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{
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wxCondError result = m_conditionNotEmpty.Wait();
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wxCHECK( result == wxCOND_NO_ERROR, wxMSGQUEUE_MISC_ERROR );
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}
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msg = m_messages.front();
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m_messages.pop();
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return wxMSGQUEUE_NO_ERROR;
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}
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// Return false only if there was a fatal error in ctor
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bool IsOk() const
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{
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return m_conditionNotEmpty.IsOk();
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}
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private:
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// Disable copy ctor and assignment operator
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wxMessageQueue(const wxMessageQueue<T>& rhs);
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wxMessageQueue<T>& operator=(const wxMessageQueue<T>& rhs);
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mutable wxMutex m_mutex;
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wxCondition m_conditionNotEmpty;
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std::queue<T> m_messages;
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};
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#endif // wxUSE_THREADS
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#endif // _WX_MSGQUEUE_H_
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