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#if !defined(RESIP_FiniteFifo_hxx)
#define RESIP_FiniteFifo_hxx 

#include "rutil/AbstractFifo.hxx"

// efficiency note: use a circular buffer do avoid list node allocation

// what happens to timers that can't be queued?

namespace resip
{

/**
   @brief A templated, threadsafe message-queue class with a fixed size.
   @ingroup message_passing
   @deprecated
   @todo remove class
*/
template < class Msg >
class FiniteFifo : public AbstractFifo<Msg*>
{
   public:
      FiniteFifo(unsigned int maxSize);
      virtual ~FiniteFifo();

      using AbstractFifo<Msg*>::mFifo;
      using AbstractFifo<Msg*>::mMutex;
      using AbstractFifo<Msg*>::mCondition;
      using AbstractFifo<Msg*>::empty;
      using AbstractFifo<Msg*>::size;

      // Add a message to the fifo.
      // return true if succeed, false if full
      bool add(Msg* msg);

      /** Returns the first message available. It will wait if no
       *  messages are available. If a signal interrupts the wait,
       *  it will retry the wait. Signals can therefore not be caught
       *  via getNext. If you need to detect a signal, use block
       *  prior to calling getNext.
       */
      Msg* getNext();

      /** Returns the next message available. Will wait up to
       *  ms milliseconds if no information is available. If
       *  the specified time passes or a signal interrupts the
       *  wait, this method returns 0. This interface provides
       *  no mechanism to distinguish between timeout and
       *  interrupt.
       */
      Msg* getNext(int ms);
   private:
      unsigned int mMaxSize;
};

template <class Msg>
FiniteFifo<Msg>::FiniteFifo(unsigned int maxSize)
   : AbstractFifo<Msg*>(),
   mMaxSize(maxSize)
{
}

template <class Msg>
FiniteFifo<Msg>::~FiniteFifo()
{
   Lock lock(mMutex); (void)lock;
   while ( ! mFifo.empty() )
   {
      delete mFifo.front();
      mFifo.pop_front();
   }
}

template <class Msg>
bool
FiniteFifo<Msg>::add(Msg* msg)
{
   Lock lock(mMutex); (void)lock;
   if (mFifo.size() >= mMaxSize)
   {
      return false;
   }
   else
   {
      mFifo.push_back(msg);
      mCondition.signal();
      return true;
   }
}

template <class Msg>
Msg*
FiniteFifo<Msg> ::getNext()
{
   return AbstractFifo<Msg*>::getNext();
}

template <class Msg>
Msg*
FiniteFifo<Msg> ::getNext(int ms)
{
   Msg* result(0);
   AbstractFifo<Msg*>::getNext(ms, result);
   return result;
}

} // namespace resip

#endif

/* ====================================================================
 * The Vovida Software License, Version 1.0 
 * 
 * Copyright (c) 2000 Vovida Networks, Inc.  All rights reserved.
 * 
 * Redistribution and use in source and binary forms, with or without
 * modification, are permitted provided that the following conditions
 * are met:
 * 
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 *    notice, this list of conditions and the following disclaimer.
 * 
 * 2. Redistributions in binary form must reproduce the above copyright
 *    notice, this list of conditions and the following disclaimer in
 *    the documentation and/or other materials provided with the
 *    distribution.
 * 
 * 3. The names "VOCAL", "Vovida Open Communication Application Library",
 *    and "Vovida Open Communication Application Library (VOCAL)" must
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 *
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 * This software consists of voluntary contributions made by Vovida
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