A Discrete-Event Network Simulator
API
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wifi-simple-ht-hidden-stations.cc
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1/*
2 * Copyright (c) 2015 Sébastien Deronne
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License version 2 as
6 * published by the Free Software Foundation;
7 *
8 * This program is distributed in the hope that it will be useful,
9 * but WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
11 * GNU General Public License for more details.
12 *
13 * You should have received a copy of the GNU General Public License
14 * along with this program; if not, write to the Free Software
15 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
16 *
17 * Author: Sébastien Deronne <sebastien.deronne@gmail.com>
18 */
19
20#include "ns3/boolean.h"
21#include "ns3/command-line.h"
22#include "ns3/config.h"
23#include "ns3/double.h"
24#include "ns3/internet-stack-helper.h"
25#include "ns3/ipv4-address-helper.h"
26#include "ns3/log.h"
27#include "ns3/mobility-helper.h"
28#include "ns3/ssid.h"
29#include "ns3/string.h"
30#include "ns3/udp-client-server-helper.h"
31#include "ns3/uinteger.h"
32#include "ns3/yans-wifi-channel.h"
33#include "ns3/yans-wifi-helper.h"
34
35// This example considers two hidden stations in an 802.11n network which supports MPDU aggregation.
36// The user can specify whether RTS/CTS is used and can set the number of aggregated MPDUs.
37//
38// Example: ./ns3 run "wifi-simple-ht-hidden-stations --enableRts=1 --nMpdus=8"
39//
40// Network topology:
41//
42// Wifi 192.168.1.0
43//
44// AP
45// * * *
46// | | |
47// n1 n2 n3
48//
49// Packets in this simulation belong to BestEffort Access Class (AC_BE).
50
51using namespace ns3;
52
53NS_LOG_COMPONENT_DEFINE("SimplesHtHiddenStations");
54
55int
56main(int argc, char* argv[])
57{
58 uint32_t payloadSize = 1472; // bytes
59 double simulationTime = 10; // seconds
60 uint32_t nMpdus = 1;
61 uint32_t maxAmpduSize = 0;
62 bool enableRts = 0;
63 double minExpectedThroughput = 0;
64 double maxExpectedThroughput = 0;
65
66 CommandLine cmd(__FILE__);
67 cmd.AddValue("nMpdus", "Number of aggregated MPDUs", nMpdus);
68 cmd.AddValue("payloadSize", "Payload size in bytes", payloadSize);
69 cmd.AddValue("enableRts", "Enable RTS/CTS", enableRts);
70 cmd.AddValue("simulationTime", "Simulation time in seconds", simulationTime);
71 cmd.AddValue("minExpectedThroughput",
72 "if set, simulation fails if the lowest throughput is below this value",
73 minExpectedThroughput);
74 cmd.AddValue("maxExpectedThroughput",
75 "if set, simulation fails if the highest throughput is above this value",
76 maxExpectedThroughput);
77 cmd.Parse(argc, argv);
78
79 if (!enableRts)
80 {
81 Config::SetDefault("ns3::WifiRemoteStationManager::RtsCtsThreshold", StringValue("999999"));
82 }
83 else
84 {
85 Config::SetDefault("ns3::WifiRemoteStationManager::RtsCtsThreshold", StringValue("0"));
86 }
87
88 // Set the maximum size for A-MPDU with regards to the payload size
89 maxAmpduSize = nMpdus * (payloadSize + 200);
90
91 // Set the maximum wireless range to 5 meters in order to reproduce a hidden nodes scenario,
92 // i.e. the distance between hidden stations is larger than 5 meters
93 Config::SetDefault("ns3::RangePropagationLossModel::MaxRange", DoubleValue(5));
94
96 wifiStaNodes.Create(2);
98 wifiApNode.Create(1);
99
101 channel.AddPropagationLoss(
102 "ns3::RangePropagationLossModel"); // wireless range limited to 5 meters!
103
105 phy.SetPcapDataLinkType(WifiPhyHelper::DLT_IEEE802_11_RADIO);
106 phy.SetChannel(channel.Create());
107 phy.Set("ChannelSettings", StringValue("{36, 0, BAND_5GHZ, 0}"));
108
110 wifi.SetStandard(WIFI_STANDARD_80211n);
111 wifi.SetRemoteStationManager("ns3::ConstantRateWifiManager",
112 "DataMode",
113 StringValue("HtMcs7"),
114 "ControlMode",
115 StringValue("HtMcs0"));
117
118 Ssid ssid = Ssid("simple-mpdu-aggregation");
119 mac.SetType("ns3::StaWifiMac", "Ssid", SsidValue(ssid));
120
122 staDevices = wifi.Install(phy, mac, wifiStaNodes);
123
124 mac.SetType("ns3::ApWifiMac",
125 "Ssid",
126 SsidValue(ssid),
127 "EnableBeaconJitter",
128 BooleanValue(false));
129
130 NetDeviceContainer apDevice;
131 apDevice = wifi.Install(phy, mac, wifiApNode);
132
133 Config::Set("/NodeList/*/DeviceList/*/$ns3::WifiNetDevice/Mac/BE_MaxAmpduSize",
134 UintegerValue(maxAmpduSize));
135
136 // Setting mobility model
138 Ptr<ListPositionAllocator> positionAlloc = CreateObject<ListPositionAllocator>();
139
140 // AP is between the two stations, each station being located at 5 meters from the AP.
141 // The distance between the two stations is thus equal to 10 meters.
142 // Since the wireless range is limited to 5 meters, the two stations are hidden from each other.
143 positionAlloc->Add(Vector(5.0, 0.0, 0.0));
144 positionAlloc->Add(Vector(0.0, 0.0, 0.0));
145 positionAlloc->Add(Vector(10.0, 0.0, 0.0));
146 mobility.SetPositionAllocator(positionAlloc);
147
148 mobility.SetMobilityModel("ns3::ConstantPositionMobilityModel");
149
150 mobility.Install(wifiApNode);
151 mobility.Install(wifiStaNodes);
152
153 // Internet stack
155 stack.Install(wifiApNode);
156 stack.Install(wifiStaNodes);
157
159 address.SetBase("192.168.1.0", "255.255.255.0");
160 Ipv4InterfaceContainer StaInterface;
161 StaInterface = address.Assign(staDevices);
162 Ipv4InterfaceContainer ApInterface;
163 ApInterface = address.Assign(apDevice);
164
165 // Setting applications
166 uint16_t port = 9;
168 ApplicationContainer serverApp = server.Install(wifiApNode);
169 serverApp.Start(Seconds(0.0));
170 serverApp.Stop(Seconds(simulationTime + 1));
171
172 UdpClientHelper client(ApInterface.GetAddress(0), port);
173 client.SetAttribute("MaxPackets", UintegerValue(4294967295U));
174 client.SetAttribute("Interval", TimeValue(Time("0.0001"))); // packets/s
175 client.SetAttribute("PacketSize", UintegerValue(payloadSize));
176
177 // Saturated UDP traffic from stations to AP
178 ApplicationContainer clientApp1 = client.Install(wifiStaNodes);
179 clientApp1.Start(Seconds(1.0));
180 clientApp1.Stop(Seconds(simulationTime + 1));
181
182 phy.EnablePcap("SimpleHtHiddenStations_Ap", apDevice.Get(0));
183 phy.EnablePcap("SimpleHtHiddenStations_Sta1", staDevices.Get(0));
184 phy.EnablePcap("SimpleHtHiddenStations_Sta2", staDevices.Get(1));
185
186 AsciiTraceHelper ascii;
187 phy.EnableAsciiAll(ascii.CreateFileStream("SimpleHtHiddenStations.tr"));
188
189 Simulator::Stop(Seconds(simulationTime + 1));
190
192
193 uint64_t totalPacketsThrough = DynamicCast<UdpServer>(serverApp.Get(0))->GetReceived();
194
196
197 double throughput = totalPacketsThrough * payloadSize * 8 / (simulationTime * 1000000.0);
198 std::cout << "Throughput: " << throughput << " Mbit/s" << '\n';
199 if (throughput < minExpectedThroughput ||
200 (maxExpectedThroughput > 0 && throughput > maxExpectedThroughput))
201 {
202 NS_LOG_ERROR("Obtained throughput " << throughput << " is not in the expected boundaries!");
203 exit(1);
204 }
205 return 0;
206}
holds a vector of ns3::Application pointers.
void Start(Time start) const
Start all of the Applications in this container at the start time given as a parameter.
Ptr< Application > Get(uint32_t i) const
Get the Ptr<Application> stored in this container at a given index.
void Stop(Time stop) const
Arrange for all of the Applications in this container to Stop() at the Time given as a parameter.
Manage ASCII trace files for device models.
Definition: trace-helper.h:173
Ptr< OutputStreamWrapper > CreateFileStream(std::string filename, std::ios::openmode filemode=std::ios::out)
Create and initialize an output stream object we'll use to write the traced bits.
AttributeValue implementation for Boolean.
Definition: boolean.h:37
Parse command-line arguments.
Definition: command-line.h:232
This class can be used to hold variables of floating point type such as 'double' or 'float'.
Definition: double.h:42
aggregate IP/TCP/UDP functionality to existing Nodes.
A helper class to make life easier while doing simple IPv4 address assignment in scripts.
holds a vector of std::pair of Ptr<Ipv4> and interface index.
Ipv4Address GetAddress(uint32_t i, uint32_t j=0) const
Helper class used to assign positions and mobility models to nodes.
holds a vector of ns3::NetDevice pointers
Ptr< NetDevice > Get(uint32_t i) const
Get the Ptr<NetDevice> stored in this container at a given index.
keep track of a set of node pointers.
Smart pointer class similar to boost::intrusive_ptr.
Definition: ptr.h:78
static void Destroy()
Execute the events scheduled with ScheduleDestroy().
Definition: simulator.cc:140
static void Run()
Run the simulation.
Definition: simulator.cc:176
static void Stop()
Tell the Simulator the calling event should be the last one executed.
Definition: simulator.cc:184
The IEEE 802.11 SSID Information Element.
Definition: ssid.h:36
AttributeValue implementation for Ssid.
Hold variables of type string.
Definition: string.h:56
Simulation virtual time values and global simulation resolution.
Definition: nstime.h:105
AttributeValue implementation for Time.
Definition: nstime.h:1423
Create a client application which sends UDP packets carrying a 32bit sequence number and a 64 bit tim...
Create a server application which waits for input UDP packets and uses the information carried into t...
Hold an unsigned integer type.
Definition: uinteger.h:45
helps to create WifiNetDevice objects
Definition: wifi-helper.h:324
create MAC layers for a ns3::WifiNetDevice.
@ DLT_IEEE802_11_RADIO
Include Radiotap link layer information.
Definition: wifi-helper.h:178
manage and create wifi channel objects for the YANS model.
static YansWifiChannelHelper Default()
Create a channel helper in a default working state.
Make it easy to create and manage PHY objects for the YANS model.
uint16_t port
Definition: dsdv-manet.cc:44
void SetDefault(std::string name, const AttributeValue &value)
Definition: config.cc:891
void Set(std::string path, const AttributeValue &value)
Definition: config.cc:877
#define NS_LOG_ERROR(msg)
Use NS_LOG to output a message of level LOG_ERROR.
Definition: log.h:254
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
Definition: log.h:202
Time Seconds(double value)
Construct a Time in the indicated unit.
Definition: nstime.h:1336
@ WIFI_STANDARD_80211n
ns address
Definition: first.py:40
ns stack
Definition: first.py:37
Every class exported by the ns3 library is enclosed in the ns3 namespace.
ns cmd
Definition: second.py:33
ns wifi
Definition: third.py:88
ns ssid
Definition: third.py:86
ns staDevices
Definition: third.py:91
ns mac
Definition: third.py:85
ns wifiApNode
Definition: third.py:79
ns channel
Definition: third.py:81
ns mobility
Definition: third.py:96
ns wifiStaNodes
Definition: third.py:77
ns phy
Definition: third.py:82