174 lines
5.9 KiB
C++
174 lines
5.9 KiB
C++
/*
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* Copyright (c) 2015
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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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* Author: Sebastien Deronne <sebastien.deronne@gmail.com>
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*/
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#include "ns3/command-line.h"
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#include "ns3/config.h"
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#include "ns3/double.h"
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#include "ns3/internet-stack-helper.h"
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#include "ns3/ipv4-address-helper.h"
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#include "ns3/ipv4-global-routing-helper.h"
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#include "ns3/log.h"
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#include "ns3/mobility-helper.h"
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#include "ns3/mobility-model.h"
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#include "ns3/ssid.h"
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#include "ns3/string.h"
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#include "ns3/udp-client-server-helper.h"
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#include "ns3/uinteger.h"
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#include "ns3/yans-wifi-channel.h"
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#include "ns3/yans-wifi-helper.h"
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// This example shows how to set Wi-Fi timing parameters through WifiMac attributes.
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//
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// Example: set slot time to 20 microseconds, while keeping other values as defined in the
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// simulation script:
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//
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// ./ns3 run "wifi-timing-attributes --slot=20"
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//
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// Network topology:
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//
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// Wifi 192.168.1.0
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//
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// AP
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// * *
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// | |
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// n1 n2
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using namespace ns3;
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NS_LOG_COMPONENT_DEFINE("wifi-timing-attributes");
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int
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main(int argc, char* argv[])
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{
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uint32_t slot = 9; // slot time in microseconds
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uint32_t sifs = 10; // SIFS duration in microseconds
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uint32_t pifs = 19; // PIFS duration in microseconds
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double simulationTime = 10; // simulation time in seconds
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CommandLine cmd(__FILE__);
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cmd.AddValue("slot", "Slot time in microseconds", slot);
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cmd.AddValue("sifs", "SIFS duration in microseconds", sifs);
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cmd.AddValue("pifs", "PIFS duration in microseconds", pifs);
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cmd.AddValue("simulationTime", "Simulation time in seconds", simulationTime);
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cmd.Parse(argc, argv);
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// Since default reference loss is defined for 5 GHz, it needs to be changed when operating
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// at 2.4 GHz
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Config::SetDefault("ns3::LogDistancePropagationLossModel::ReferenceLoss", DoubleValue(40.046));
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// Create nodes
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NodeContainer wifiStaNode;
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wifiStaNode.Create(1);
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NodeContainer wifiApNode;
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wifiApNode.Create(1);
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// Create wireless channel
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YansWifiChannelHelper channel = YansWifiChannelHelper::Default();
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YansWifiPhyHelper phy;
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phy.SetChannel(channel.Create());
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// Default IEEE 802.11n (2.4 GHz)
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WifiHelper wifi;
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wifi.SetStandard(WIFI_STANDARD_80211n);
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wifi.SetRemoteStationManager("ns3::ConstantRateWifiManager",
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"DataMode",
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StringValue("HtMcs7"),
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"ControlMode",
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StringValue("HtMcs0"));
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WifiMacHelper mac;
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// Install PHY and MAC
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Ssid ssid = Ssid("ns3-wifi");
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mac.SetType("ns3::StaWifiMac", "Ssid", SsidValue(ssid));
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NetDeviceContainer staDevice;
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staDevice = wifi.Install(phy, mac, wifiStaNode);
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mac.SetType("ns3::ApWifiMac", "Ssid", SsidValue(ssid));
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NetDeviceContainer apDevice;
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apDevice = wifi.Install(phy, mac, wifiApNode);
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// Once install is done, we overwrite the standard timing values
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Config::Set("/NodeList/*/DeviceList/*/$ns3::WifiNetDevice/Phy/Slot",
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TimeValue(MicroSeconds(slot)));
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Config::Set("/NodeList/*/DeviceList/*/$ns3::WifiNetDevice/Phy/Sifs",
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TimeValue(MicroSeconds(sifs)));
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Config::Set("/NodeList/*/DeviceList/*/$ns3::WifiNetDevice/Phy/Pifs",
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TimeValue(MicroSeconds(pifs)));
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// Mobility
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MobilityHelper mobility;
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Ptr<ListPositionAllocator> positionAlloc = CreateObject<ListPositionAllocator>();
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positionAlloc->Add(Vector(0.0, 0.0, 0.0));
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positionAlloc->Add(Vector(1.0, 0.0, 0.0));
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mobility.SetPositionAllocator(positionAlloc);
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mobility.SetMobilityModel("ns3::ConstantPositionMobilityModel");
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mobility.Install(wifiApNode);
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mobility.Install(wifiStaNode);
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// Internet stack
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InternetStackHelper stack;
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stack.Install(wifiApNode);
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stack.Install(wifiStaNode);
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Ipv4AddressHelper address;
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address.SetBase("192.168.1.0", "255.255.255.0");
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Ipv4InterfaceContainer staNodeInterface;
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Ipv4InterfaceContainer apNodeInterface;
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staNodeInterface = address.Assign(staDevice);
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apNodeInterface = address.Assign(apDevice);
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// Setting applications
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uint16_t port = 9;
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UdpServerHelper server(port);
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ApplicationContainer serverApp = server.Install(wifiStaNode.Get(0));
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serverApp.Start(Seconds(0.0));
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serverApp.Stop(Seconds(simulationTime + 1));
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UdpClientHelper client(staNodeInterface.GetAddress(0), port);
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client.SetAttribute("MaxPackets", UintegerValue(4294967295U));
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client.SetAttribute("Interval", TimeValue(Time("0.0001"))); // packets/s
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client.SetAttribute("PacketSize", UintegerValue(1472)); // bytes
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ApplicationContainer clientApp = client.Install(wifiApNode.Get(0));
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clientApp.Start(Seconds(1.0));
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clientApp.Stop(Seconds(simulationTime + 1));
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// Populate routing table
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Ipv4GlobalRoutingHelper::PopulateRoutingTables();
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// Set simulation time and launch simulation
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Simulator::Stop(Seconds(simulationTime + 1));
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Simulator::Run();
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// Get and print results
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uint64_t totalPacketsThrough = DynamicCast<UdpServer>(serverApp.Get(0))->GetReceived();
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double throughput = totalPacketsThrough * 1472 * 8 / (simulationTime * 1000000.0); // Mbit/s
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std::cout << "Throughput: " << throughput << " Mbit/s" << std::endl;
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Simulator::Destroy();
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return 0;
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}
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