2009-05-11 19:38:43 +02:00
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/*
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* Copyright (c) 1999-2008 Mark D. Hill and David A. Wood
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are
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* met: redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer;
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* redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution;
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* neither the name of the copyright holders nor the names of its
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* contributors may be used to endorse or promote products derived from
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* this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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/*
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2010-03-23 02:43:53 +01:00
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* Unordered buffer of messages that can be inserted such
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2009-05-11 19:38:43 +02:00
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* that they can be dequeued after a given delta time has expired.
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*/
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2010-03-23 02:43:53 +01:00
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#ifndef __MEM_RUBY_BUFFERS_MESSAGEBUFFER_HH__
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#define __MEM_RUBY_BUFFERS_MESSAGEBUFFER_HH__
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2009-05-11 19:38:43 +02:00
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2010-06-11 08:17:07 +02:00
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#include <algorithm>
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2011-01-10 20:11:20 +01:00
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#include <cassert>
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2010-06-11 08:17:07 +02:00
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#include <functional>
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2010-03-11 03:33:11 +01:00
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#include <iostream>
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#include <string>
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2011-04-15 19:44:06 +02:00
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#include <vector>
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2010-03-11 03:33:11 +01:00
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2009-05-11 19:38:45 +02:00
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#include "mem/ruby/buffers/MessageBufferNode.hh"
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2011-04-15 19:44:06 +02:00
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#include "mem/ruby/common/Address.hh"
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2009-05-11 19:38:45 +02:00
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#include "mem/ruby/common/Consumer.hh"
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2010-03-23 02:43:53 +01:00
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#include "mem/ruby/common/Global.hh"
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2009-05-11 19:38:45 +02:00
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#include "mem/ruby/slicc_interface/Message.hh"
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2009-05-11 19:38:43 +02:00
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2010-03-23 02:43:53 +01:00
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class MessageBuffer
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{
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public:
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MessageBuffer(const std::string &name = "");
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2011-02-23 06:58:40 +01:00
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std::string name() const { return m_name; }
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2010-03-23 02:43:53 +01:00
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void
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setRecycleLatency(int recycle_latency)
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{
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m_recycle_latency = recycle_latency;
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}
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2010-08-20 20:46:14 +02:00
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void reanalyzeMessages(const Address& addr);
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2011-02-07 07:14:19 +01:00
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void reanalyzeAllMessages();
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2010-08-20 20:46:14 +02:00
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void stallMessage(const Address& addr);
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2010-03-23 02:43:53 +01:00
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// TRUE if head of queue timestamp <= SystemTime
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bool
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isReady() const
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{
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return ((m_prio_heap.size() > 0) &&
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2012-08-27 08:00:55 +02:00
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(m_prio_heap.front().m_time <= g_system_ptr->getTime()));
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2010-03-23 02:43:53 +01:00
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}
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void
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delayHead()
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{
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2010-06-11 08:17:07 +02:00
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MessageBufferNode node = m_prio_heap.front();
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std::pop_heap(m_prio_heap.begin(), m_prio_heap.end(),
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std::greater<MessageBufferNode>());
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m_prio_heap.pop_back();
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2010-03-23 02:43:53 +01:00
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enqueue(node.m_msgptr, 1);
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}
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bool areNSlotsAvailable(int n);
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int getPriority() { return m_priority_rank; }
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void setPriority(int rank) { m_priority_rank = rank; }
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void setConsumer(Consumer* consumer_ptr)
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{
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2011-01-10 20:11:20 +01:00
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assert(m_consumer_ptr == NULL);
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2010-03-23 02:43:53 +01:00
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m_consumer_ptr = consumer_ptr;
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}
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void setDescription(const std::string& name) { m_name = name; }
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std::string getDescription() { return m_name;}
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Consumer* getConsumer() { return m_consumer_ptr; }
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const Message* peekAtHeadOfQueue() const;
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const Message* peek() const { return peekAtHeadOfQueue(); }
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const MsgPtr getMsgPtrCopy() const;
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const MsgPtr&
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peekMsgPtr() const
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{
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assert(isReady());
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2010-06-11 08:17:07 +02:00
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return m_prio_heap.front().m_msgptr;
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2010-03-23 02:43:53 +01:00
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}
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const MsgPtr&
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peekMsgPtrEvenIfNotReady() const
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{
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2010-06-11 08:17:07 +02:00
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return m_prio_heap.front().m_msgptr;
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2010-03-23 02:43:53 +01:00
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}
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2010-06-11 08:17:06 +02:00
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void enqueue(MsgPtr message) { enqueue(message, 1); }
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void enqueue(MsgPtr message, Time delta);
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2010-03-23 02:43:53 +01:00
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// void enqueueAbsolute(const MsgPtr& message, Time absolute_time);
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int dequeue_getDelayCycles(MsgPtr& message); // returns delay
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// cycles of the
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// message
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void dequeue(MsgPtr& message);
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int dequeue_getDelayCycles(); // returns delay cycles of the message
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void dequeue() { pop(); }
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void pop();
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void recycle();
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bool isEmpty() const { return m_prio_heap.size() == 0; }
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void
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setOrdering(bool order)
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{
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m_strict_fifo = order;
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m_ordering_set = true;
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}
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2010-06-11 08:17:07 +02:00
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void resize(int size) { m_max_size = size; }
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2010-03-23 02:43:53 +01:00
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int getSize();
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void setRandomization(bool random_flag) { m_randomization = random_flag; }
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void clear();
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void print(std::ostream& out) const;
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void printStats(std::ostream& out);
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void clearStats() { m_not_avail_count = 0; m_msg_counter = 0; }
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2011-02-14 23:14:54 +01:00
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void setIncomingLink(int link_id) { m_input_link_id = link_id; }
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void setVnet(int net) { m_vnet_id = net; }
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2010-03-23 02:43:53 +01:00
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private:
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//added by SS
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int m_recycle_latency;
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// Private Methods
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int setAndReturnDelayCycles(MsgPtr message);
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2010-03-23 02:43:53 +01:00
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// Private copy constructor and assignment operator
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MessageBuffer(const MessageBuffer& obj);
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MessageBuffer& operator=(const MessageBuffer& obj);
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// Data Members (m_ prefix)
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Consumer* m_consumer_ptr; // Consumer to signal a wakeup(), can be NULL
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2010-06-11 08:17:07 +02:00
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std::vector<MessageBufferNode> m_prio_heap;
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2010-08-20 20:46:14 +02:00
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2012-04-12 14:35:49 +02:00
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// use a std::map for the stalled messages as this container is
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// sorted and ensures a well-defined iteration order
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typedef std::map< Address, std::list<MsgPtr> > StallMsgMapType;
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typedef std::vector<MsgPtr>::iterator MsgListIter;
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StallMsgMapType m_stall_msg_map;
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std::string m_name;
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int m_max_size;
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int m_size;
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Time m_time_last_time_size_checked;
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int m_size_last_time_size_checked;
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// variables used so enqueues appear to happen imediately, while
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// pop happen the next cycle
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Time m_time_last_time_enqueue;
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Time m_time_last_time_pop;
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int m_size_at_cycle_start;
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int m_msgs_this_cycle;
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int m_not_avail_count; // count the # of times I didn't have N
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// slots available
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uint64 m_msg_counter;
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2010-03-23 02:43:53 +01:00
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int m_priority_rank;
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bool m_strict_fifo;
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bool m_ordering_set;
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bool m_randomization;
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Time m_last_arrival_time;
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2011-02-14 23:14:54 +01:00
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int m_input_link_id;
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int m_vnet_id;
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2009-05-11 19:38:43 +02:00
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};
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2010-03-23 02:43:53 +01:00
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inline std::ostream&
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operator<<(std::ostream& out, const MessageBuffer& obj)
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{
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obj.print(out);
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out << std::flush;
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return out;
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2009-05-11 19:38:43 +02:00
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}
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2010-03-23 02:43:53 +01:00
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#endif // __MEM_RUBY_BUFFERS_MESSAGEBUFFER_HH__
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