311 lines
14 KiB
C++
311 lines
14 KiB
C++
/* -*- Mode:C++; c-file-style:"gnu"; indent-tabs-mode:nil; -*- */
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/*
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* Copyright (c) 2015 Universita' degli Studi di Napoli Federico II
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2 as
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* published by the Free Software Foundation;
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*
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* Authors: Pasquale Imputato <p.imputato@gmail.com>
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* Stefano Avallone <stefano.avallone@unina.it>
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*/
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// This example serves as a benchmark for all the queue discs (with BQL enabled or not)
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//
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// Network topology
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//
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// 192.168.1.0 192.168.2.0
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// n1 ------------------------------------ n2 ----------------------------------- n3
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// point-to-point (access link) point-to-point (bottleneck link)
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// 100 Mbps, 0.1 ms bandwidth [10 Mbps], delay [5 ms]
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// qdiscs PfifoFast with capacity qdiscs queueDiscType in {PfifoFast, ARED, CoDel, FqCoDel, PIE} [PfifoFast]
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// of 1000 packets with capacity of queueDiscSize packets [1000]
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// netdevices queues with size of 100 packets netdevices queues with size of netdevicesQueueSize packets [100]
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// without BQL bql BQL [false]
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// *** fixed configuration ***
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//
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// Two TCP flows are generated: one from n1 to n3 and the other from n3 to n1.
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// Additionally, n1 pings n3, so that the RTT can be measured.
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//
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// The output will consist of a number of ping Rtt such as:
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//
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// /NodeList/0/ApplicationList/2/$ns3::V4Ping/Rtt=111 ms
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// /NodeList/0/ApplicationList/2/$ns3::V4Ping/Rtt=111 ms
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// /NodeList/0/ApplicationList/2/$ns3::V4Ping/Rtt=110 ms
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// /NodeList/0/ApplicationList/2/$ns3::V4Ping/Rtt=111 ms
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// /NodeList/0/ApplicationList/2/$ns3::V4Ping/Rtt=111 ms
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// /NodeList/0/ApplicationList/2/$ns3::V4Ping/Rtt=112 ms
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// /NodeList/0/ApplicationList/2/$ns3::V4Ping/Rtt=111 ms
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//
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// The files output will consist of a trace file with bytes in queue and of a trace file for limits
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// (when BQL is enabled) both for bottleneck NetDevice on n2, two files with upload and download
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// goodput for flows configuration and a file with flow monitor stats.
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//
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// If you use an AQM as queue disc on the bottleneck netdevices, you can observe that the ping Rtt
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// decrease. A further decrease can be observed when you enable BQL.
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#include "ns3/core-module.h"
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#include "ns3/network-module.h"
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#include "ns3/internet-module.h"
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#include "ns3/point-to-point-module.h"
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#include "ns3/applications-module.h"
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#include "ns3/internet-apps-module.h"
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#include "ns3/traffic-control-module.h"
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#include "ns3/flow-monitor-module.h"
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using namespace ns3;
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NS_LOG_COMPONENT_DEFINE ("BenchmarkQueueDiscs");
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void
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LimitsTrace (Ptr<OutputStreamWrapper> stream, uint32_t oldVal, uint32_t newVal)
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{
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*stream->GetStream () << Simulator::Now ().GetSeconds () << " " << newVal << std::endl;
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}
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void
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BytesInQueueTrace (Ptr<OutputStreamWrapper> stream, uint32_t oldVal, uint32_t newVal)
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{
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*stream->GetStream () << Simulator::Now ().GetSeconds () << " " << newVal << std::endl;
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}
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static void
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GoodputSampling (std::string fileName, ApplicationContainer app, Ptr<OutputStreamWrapper> stream, float period)
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{
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Simulator::Schedule (Seconds (period), &GoodputSampling, fileName, app, stream, period);
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double goodput;
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uint64_t totalPackets = DynamicCast<PacketSink> (app.Get (0))->GetTotalRx ();
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goodput = totalPackets * 8 / (Simulator::Now ().GetSeconds () * 1024); // Kbit/s
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*stream->GetStream () << Simulator::Now ().GetSeconds () << " " << goodput << std::endl;
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}
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static void PingRtt (std::string context, Time rtt)
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{
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std::cout << context << "=" << rtt.GetMilliSeconds () << " ms" << std::endl;
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}
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int main (int argc, char *argv[])
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{
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std::string bandwidth = "10Mbps";
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std::string delay = "5ms";
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std::string queueDiscType = "PfifoFast";
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uint32_t queueDiscSize = 1000;
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uint32_t netdevicesQueueSize = 50;
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bool bql = false;
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std::string flowsDatarate = "20Mbps";
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uint32_t flowsPacketsSize = 1000;
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float startTime = 0.1f; // in s
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float simDuration = 60;
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float samplingPeriod = 1;
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CommandLine cmd (__FILE__);
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cmd.AddValue ("bandwidth", "Bottleneck bandwidth", bandwidth);
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cmd.AddValue ("delay", "Bottleneck delay", delay);
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cmd.AddValue ("queueDiscType", "Bottleneck queue disc type in {PfifoFast, ARED, CoDel, FqCoDel, PIE, prio}", queueDiscType);
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cmd.AddValue ("queueDiscSize", "Bottleneck queue disc size in packets", queueDiscSize);
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cmd.AddValue ("netdevicesQueueSize", "Bottleneck netdevices queue size in packets", netdevicesQueueSize);
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cmd.AddValue ("bql", "Enable byte queue limits on bottleneck netdevices", bql);
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cmd.AddValue ("flowsDatarate", "Upload and download flows datarate", flowsDatarate);
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cmd.AddValue ("flowsPacketsSize", "Upload and download flows packets sizes", flowsPacketsSize);
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cmd.AddValue ("startTime", "Simulation start time", startTime);
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cmd.AddValue ("simDuration", "Simulation duration in seconds", simDuration);
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cmd.AddValue ("samplingPeriod", "Goodput sampling period in seconds", samplingPeriod);
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cmd.Parse (argc, argv);
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float stopTime = startTime + simDuration;
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// Create nodes
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NodeContainer n1, n2, n3;
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n1.Create (1);
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n2.Create (1);
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n3.Create (1);
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// Create and configure access link and bottleneck link
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PointToPointHelper accessLink;
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accessLink.SetDeviceAttribute ("DataRate", StringValue ("100Mbps"));
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accessLink.SetChannelAttribute ("Delay", StringValue ("0.1ms"));
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accessLink.SetQueue ("ns3::DropTailQueue", "MaxSize", StringValue ("100p"));
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PointToPointHelper bottleneckLink;
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bottleneckLink.SetDeviceAttribute ("DataRate", StringValue (bandwidth));
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bottleneckLink.SetChannelAttribute ("Delay", StringValue (delay));
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bottleneckLink.SetQueue ("ns3::DropTailQueue", "MaxSize", StringValue (std::to_string (netdevicesQueueSize) + "p"));
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InternetStackHelper stack;
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stack.InstallAll ();
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// Access link traffic control configuration
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TrafficControlHelper tchPfifoFastAccess;
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tchPfifoFastAccess.SetRootQueueDisc ("ns3::PfifoFastQueueDisc", "MaxSize", StringValue ("1000p"));
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// Bottleneck link traffic control configuration
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TrafficControlHelper tchBottleneck;
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if (queueDiscType.compare ("PfifoFast") == 0)
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{
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tchBottleneck.SetRootQueueDisc ("ns3::PfifoFastQueueDisc", "MaxSize",
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QueueSizeValue (QueueSize (QueueSizeUnit::PACKETS, queueDiscSize)));
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}
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else if (queueDiscType.compare ("ARED") == 0)
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{
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tchBottleneck.SetRootQueueDisc ("ns3::RedQueueDisc");
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Config::SetDefault ("ns3::RedQueueDisc::ARED", BooleanValue (true));
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Config::SetDefault ("ns3::RedQueueDisc::MaxSize",
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QueueSizeValue (QueueSize (QueueSizeUnit::PACKETS, queueDiscSize)));
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}
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else if (queueDiscType.compare ("CoDel") == 0)
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{
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tchBottleneck.SetRootQueueDisc ("ns3::CoDelQueueDisc");
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Config::SetDefault ("ns3::CoDelQueueDisc::MaxSize",
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QueueSizeValue (QueueSize (QueueSizeUnit::PACKETS, queueDiscSize)));
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}
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else if (queueDiscType.compare ("FqCoDel") == 0)
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{
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tchBottleneck.SetRootQueueDisc ("ns3::FqCoDelQueueDisc");
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Config::SetDefault ("ns3::FqCoDelQueueDisc::MaxSize",
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QueueSizeValue (QueueSize (QueueSizeUnit::PACKETS, queueDiscSize)));
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}
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else if (queueDiscType.compare ("PIE") == 0)
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{
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tchBottleneck.SetRootQueueDisc ("ns3::PieQueueDisc");
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Config::SetDefault ("ns3::PieQueueDisc::MaxSize",
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QueueSizeValue (QueueSize (QueueSizeUnit::PACKETS, queueDiscSize)));
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}
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else if (queueDiscType.compare ("prio") == 0)
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{
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uint16_t handle = tchBottleneck.SetRootQueueDisc ("ns3::PrioQueueDisc", "Priomap",
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StringValue ("0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1"));
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TrafficControlHelper::ClassIdList cid = tchBottleneck.AddQueueDiscClasses (handle, 2, "ns3::QueueDiscClass");
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tchBottleneck.AddChildQueueDisc (handle, cid[0], "ns3::FifoQueueDisc");
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tchBottleneck.AddChildQueueDisc (handle, cid[1], "ns3::RedQueueDisc");
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}
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else
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{
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NS_ABORT_MSG ("--queueDiscType not valid");
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}
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if (bql)
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{
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tchBottleneck.SetQueueLimits ("ns3::DynamicQueueLimits");
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}
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NetDeviceContainer devicesAccessLink = accessLink.Install (n1.Get (0), n2.Get (0));
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tchPfifoFastAccess.Install (devicesAccessLink);
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Ipv4AddressHelper address;
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address.SetBase ("192.168.0.0", "255.255.255.0");
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address.NewNetwork ();
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Ipv4InterfaceContainer interfacesAccess = address.Assign (devicesAccessLink);
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NetDeviceContainer devicesBottleneckLink = bottleneckLink.Install (n2.Get (0), n3.Get (0));
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QueueDiscContainer qdiscs;
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qdiscs = tchBottleneck.Install (devicesBottleneckLink);
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address.NewNetwork ();
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Ipv4InterfaceContainer interfacesBottleneck = address.Assign (devicesBottleneckLink);
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Ptr<NetDeviceQueueInterface> interface = devicesBottleneckLink.Get (0)->GetObject<NetDeviceQueueInterface> ();
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Ptr<NetDeviceQueue> queueInterface = interface->GetTxQueue (0);
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Ptr<DynamicQueueLimits> queueLimits = StaticCast<DynamicQueueLimits> (queueInterface->GetQueueLimits ());
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AsciiTraceHelper ascii;
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if (bql)
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{
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queueDiscType = queueDiscType + "-bql";
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Ptr<OutputStreamWrapper> streamLimits = ascii.CreateFileStream (queueDiscType + "-limits.txt");
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queueLimits->TraceConnectWithoutContext ("Limit",MakeBoundCallback (&LimitsTrace, streamLimits));
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}
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Ptr<Queue<Packet> > queue = StaticCast<PointToPointNetDevice> (devicesBottleneckLink.Get (0))->GetQueue ();
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Ptr<OutputStreamWrapper> streamBytesInQueue = ascii.CreateFileStream (queueDiscType + "-bytesInQueue.txt");
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queue->TraceConnectWithoutContext ("BytesInQueue",MakeBoundCallback (&BytesInQueueTrace, streamBytesInQueue));
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Ipv4InterfaceContainer n1Interface;
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n1Interface.Add (interfacesAccess.Get (0));
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Ipv4InterfaceContainer n3Interface;
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n3Interface.Add (interfacesBottleneck.Get (1));
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Ipv4GlobalRoutingHelper::PopulateRoutingTables ();
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Config::SetDefault ("ns3::TcpSocket::SegmentSize", UintegerValue (flowsPacketsSize));
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// Flows configuration
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// Bidirectional TCP streams with ping like flent tcp_bidirectional test.
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uint16_t port = 7;
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ApplicationContainer uploadApp, downloadApp, sourceApps;
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// Configure and install upload flow
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Address addUp (InetSocketAddress (Ipv4Address::GetAny (), port));
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PacketSinkHelper sinkHelperUp ("ns3::TcpSocketFactory", addUp);
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sinkHelperUp.SetAttribute ("Protocol", TypeIdValue (TcpSocketFactory::GetTypeId ()));
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uploadApp.Add (sinkHelperUp.Install (n3));
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InetSocketAddress socketAddressUp = InetSocketAddress (n3Interface.GetAddress (0), port);
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OnOffHelper onOffHelperUp ("ns3::TcpSocketFactory", Address ());
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onOffHelperUp.SetAttribute ("Remote", AddressValue (socketAddressUp));
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onOffHelperUp.SetAttribute ("OnTime", StringValue ("ns3::ConstantRandomVariable[Constant=1]"));
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onOffHelperUp.SetAttribute ("OffTime", StringValue ("ns3::ConstantRandomVariable[Constant=0]"));
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onOffHelperUp.SetAttribute ("PacketSize", UintegerValue (flowsPacketsSize));
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onOffHelperUp.SetAttribute ("DataRate", StringValue (flowsDatarate));
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sourceApps.Add (onOffHelperUp.Install (n1));
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port = 8;
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// Configure and install download flow
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Address addDown (InetSocketAddress (Ipv4Address::GetAny (), port));
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PacketSinkHelper sinkHelperDown ("ns3::TcpSocketFactory", addDown);
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sinkHelperDown.SetAttribute ("Protocol", TypeIdValue (TcpSocketFactory::GetTypeId ()));
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downloadApp.Add (sinkHelperDown.Install (n1));
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InetSocketAddress socketAddressDown = InetSocketAddress (n1Interface.GetAddress (0), port);
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OnOffHelper onOffHelperDown ("ns3::TcpSocketFactory", Address ());
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onOffHelperDown.SetAttribute ("Remote", AddressValue (socketAddressDown));
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onOffHelperDown.SetAttribute ("OnTime", StringValue ("ns3::ConstantRandomVariable[Constant=1]"));
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onOffHelperDown.SetAttribute ("OffTime", StringValue ("ns3::ConstantRandomVariable[Constant=0]"));
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onOffHelperDown.SetAttribute ("PacketSize", UintegerValue (flowsPacketsSize));
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onOffHelperDown.SetAttribute ("DataRate", StringValue (flowsDatarate));
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sourceApps.Add (onOffHelperDown.Install (n3));
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// Configure and install ping
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V4PingHelper ping = V4PingHelper (n3Interface.GetAddress (0));
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ping.Install (n1);
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Config::Connect ("/NodeList/*/ApplicationList/*/$ns3::V4Ping/Rtt", MakeCallback (&PingRtt));
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uploadApp.Start (Seconds (0));
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uploadApp.Stop (Seconds (stopTime));
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downloadApp.Start (Seconds (0));
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downloadApp.Stop (Seconds (stopTime));
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sourceApps.Start (Seconds (0 + 0.1));
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sourceApps.Stop (Seconds (stopTime - 0.1));
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Ptr<OutputStreamWrapper> uploadGoodputStream = ascii.CreateFileStream (queueDiscType + "-upGoodput.txt");
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Simulator::Schedule (Seconds (samplingPeriod), &GoodputSampling, queueDiscType + "-upGoodput.txt", uploadApp,
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uploadGoodputStream, samplingPeriod);
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Ptr<OutputStreamWrapper> downloadGoodputStream = ascii.CreateFileStream (queueDiscType + "-downGoodput.txt");
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Simulator::Schedule (Seconds (samplingPeriod), &GoodputSampling, queueDiscType + "-downGoodput.txt", downloadApp,
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downloadGoodputStream, samplingPeriod);
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// Flow monitor
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Ptr<FlowMonitor> flowMonitor;
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FlowMonitorHelper flowHelper;
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flowMonitor = flowHelper.InstallAll();
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Simulator::Stop (Seconds (stopTime));
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Simulator::Run ();
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flowMonitor->SerializeToXmlFile(queueDiscType + "-flowMonitor.xml", true, true);
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Simulator::Destroy ();
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return 0;
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}
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