A Discrete-Event Network Simulator
API
wifi-simple-adhoc.cc
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19 
20 // This script configures two nodes on an 802.11b physical layer, with
21 // 802.11b NICs in adhoc mode, and by default, sends one packet of 1000
22 // (application) bytes to the other node. The physical layer is configured
23 // to receive at a fixed RSS (regardless of the distance and transmit
24 // power); therefore, changing position of the nodes has no effect.
25 //
26 // There are a number of command-line options available to control
27 // the default behavior. The list of available command-line options
28 // can be listed with the following command:
29 // ./waf --run "wifi-simple-adhoc --help"
30 //
31 // For instance, for this configuration, the physical layer will
32 // stop successfully receiving packets when rss drops below -97 dBm.
33 // To see this effect, try running:
34 //
35 // ./waf --run "wifi-simple-adhoc --rss=-97 --numPackets=20"
36 // ./waf --run "wifi-simple-adhoc --rss=-98 --numPackets=20"
37 // ./waf --run "wifi-simple-adhoc --rss=-99 --numPackets=20"
38 //
39 // Note that all ns-3 attributes (not just the ones exposed in the below
40 // script) can be changed at command line; see the documentation.
41 //
42 // This script can also be helpful to put the Wifi layer into verbose
43 // logging mode; this command will turn on all wifi logging:
44 //
45 // ./waf --run "wifi-simple-adhoc --verbose=1"
46 //
47 // When you are done, you will notice two pcap trace files in your directory.
48 // If you have tcpdump installed, you can try this:
49 //
50 // tcpdump -r wifi-simple-adhoc-0-0.pcap -nn -tt
51 //
52 
53 #include "ns3/core-module.h"
54 #include "ns3/mobility-module.h"
55 #include "ns3/wifi-module.h"
56 #include "ns3/internet-module.h"
57 
58 using namespace ns3;
59 
60 NS_LOG_COMPONENT_DEFINE ("WifiSimpleAdhoc");
61 
63 {
64  while (socket->Recv ())
65  {
66  NS_LOG_UNCOND ("Received one packet!");
67  }
68 }
69 
70 static void GenerateTraffic (Ptr<Socket> socket, uint32_t pktSize,
71  uint32_t pktCount, Time pktInterval )
72 {
73  if (pktCount > 0)
74  {
75  socket->Send (Create<Packet> (pktSize));
76  Simulator::Schedule (pktInterval, &GenerateTraffic,
77  socket, pktSize,pktCount - 1, pktInterval);
78  }
79  else
80  {
81  socket->Close ();
82  }
83 }
84 
85 int main (int argc, char *argv[])
86 {
87  std::string phyMode ("DsssRate1Mbps");
88  double rss = -80; // -dBm
89  uint32_t packetSize = 1000; // bytes
90  uint32_t numPackets = 1;
91  double interval = 1.0; // seconds
92  bool verbose = false;
93 
95 
96  cmd.AddValue ("phyMode", "Wifi Phy mode", phyMode);
97  cmd.AddValue ("rss", "received signal strength", rss);
98  cmd.AddValue ("packetSize", "size of application packet sent", packetSize);
99  cmd.AddValue ("numPackets", "number of packets generated", numPackets);
100  cmd.AddValue ("interval", "interval (seconds) between packets", interval);
101  cmd.AddValue ("verbose", "turn on all WifiNetDevice log components", verbose);
102 
103  cmd.Parse (argc, argv);
104  // Convert to time object
105  Time interPacketInterval = Seconds (interval);
106 
107  // disable fragmentation for frames below 2200 bytes
108  Config::SetDefault ("ns3::WifiRemoteStationManager::FragmentationThreshold", StringValue ("2200"));
109  // turn off RTS/CTS for frames below 2200 bytes
110  Config::SetDefault ("ns3::WifiRemoteStationManager::RtsCtsThreshold", StringValue ("2200"));
111  // Fix non-unicast data rate to be the same as that of unicast
112  Config::SetDefault ("ns3::WifiRemoteStationManager::NonUnicastMode",
113  StringValue (phyMode));
114 
115  NodeContainer c;
116  c.Create (2);
117 
118  // The below set of helpers will help us to put together the wifi NICs we want
120  if (verbose)
121  {
122  wifi.EnableLogComponents (); // Turn on all Wifi logging
123  }
125 
127  // This is one parameter that matters when using FixedRssLossModel
128  // set it to zero; otherwise, gain will be added
129  wifiPhy.Set ("RxGain", DoubleValue (0) );
130  // ns-3 supports RadioTap and Prism tracing extensions for 802.11b
132 
133  YansWifiChannelHelper wifiChannel;
134  wifiChannel.SetPropagationDelay ("ns3::ConstantSpeedPropagationDelayModel");
135  // The below FixedRssLossModel will cause the rss to be fixed regardless
136  // of the distance between the two stations, and the transmit power
137  wifiChannel.AddPropagationLoss ("ns3::FixedRssLossModel","Rss",DoubleValue (rss));
138  wifiPhy.SetChannel (wifiChannel.Create ());
139 
140  // Add a mac and disable rate control
141  WifiMacHelper wifiMac;
142  wifi.SetRemoteStationManager ("ns3::ConstantRateWifiManager",
143  "DataMode",StringValue (phyMode),
144  "ControlMode",StringValue (phyMode));
145  // Set it to adhoc mode
146  wifiMac.SetType ("ns3::AdhocWifiMac");
147  NetDeviceContainer devices = wifi.Install (wifiPhy, wifiMac, c);
148 
149  // Note that with FixedRssLossModel, the positions below are not
150  // used for received signal strength.
152  Ptr<ListPositionAllocator> positionAlloc = CreateObject<ListPositionAllocator> ();
153  positionAlloc->Add (Vector (0.0, 0.0, 0.0));
154  positionAlloc->Add (Vector (5.0, 0.0, 0.0));
155  mobility.SetPositionAllocator (positionAlloc);
156  mobility.SetMobilityModel ("ns3::ConstantPositionMobilityModel");
157  mobility.Install (c);
158 
159  InternetStackHelper internet;
160  internet.Install (c);
161 
162  Ipv4AddressHelper ipv4;
163  NS_LOG_INFO ("Assign IP Addresses.");
164  ipv4.SetBase ("10.1.1.0", "255.255.255.0");
165  Ipv4InterfaceContainer i = ipv4.Assign (devices);
166 
167  TypeId tid = TypeId::LookupByName ("ns3::UdpSocketFactory");
168  Ptr<Socket> recvSink = Socket::CreateSocket (c.Get (0), tid);
170  recvSink->Bind (local);
172 
173  Ptr<Socket> source = Socket::CreateSocket (c.Get (1), tid);
174  InetSocketAddress remote = InetSocketAddress (Ipv4Address ("255.255.255.255"), 80);
175  source->SetAllowBroadcast (true);
176  source->Connect (remote);
177 
178  // Tracing
179  wifiPhy.EnablePcap ("wifi-simple-adhoc", devices);
180 
181  // Output what we are doing
182  NS_LOG_UNCOND ("Testing " << numPackets << " packets sent with receiver rss " << rss );
183 
185  Seconds (1.0), &GenerateTraffic,
186  source, packetSize, numPackets, interPacketInterval);
187 
188  Simulator::Run ();
190 
191  return 0;
192 }
void AddPropagationLoss(std::string name, std::string n0="", const AttributeValue &v0=EmptyAttributeValue(), std::string n1="", const AttributeValue &v1=EmptyAttributeValue(), std::string n2="", const AttributeValue &v2=EmptyAttributeValue(), std::string n3="", const AttributeValue &v3=EmptyAttributeValue(), std::string n4="", const AttributeValue &v4=EmptyAttributeValue(), std::string n5="", const AttributeValue &v5=EmptyAttributeValue(), std::string n6="", const AttributeValue &v6=EmptyAttributeValue(), std::string n7="", const AttributeValue &v7=EmptyAttributeValue())
void Set(std::string name, const AttributeValue &v)
Definition: wifi-helper.cc:132
Simulation virtual time values and global simulation resolution.
Definition: nstime.h:102
an Inet address class
static Ipv4Address GetAny(void)
tuple devices
Definition: first.py:32
holds a vector of std::pair of Ptr and interface index.
Ptr< YansWifiChannel > Create(void) const
void SetRemoteStationManager(std::string type, std::string n0="", const AttributeValue &v0=EmptyAttributeValue(), std::string n1="", const AttributeValue &v1=EmptyAttributeValue(), std::string n2="", const AttributeValue &v2=EmptyAttributeValue(), std::string n3="", const AttributeValue &v3=EmptyAttributeValue(), std::string n4="", const AttributeValue &v4=EmptyAttributeValue(), std::string n5="", const AttributeValue &v5=EmptyAttributeValue(), std::string n6="", const AttributeValue &v6=EmptyAttributeValue(), std::string n7="", const AttributeValue &v7=EmptyAttributeValue())
Definition: wifi-helper.cc:719
Hold variables of type string.
Definition: string.h:41
virtual bool SetAllowBroadcast(bool allowBroadcast)=0
Configure whether broadcast datagram transmissions are allowed.
Make it easy to create and manage PHY objects for the yans model.
static void GenerateTraffic(Ptr< Socket > socket, uint32_t pktSize, uint32_t pktCount, Time pktInterval)
static void Run(void)
Run the simulation.
Definition: simulator.cc:226
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
Definition: log.h:201
aggregate IP/TCP/UDP functionality to existing Nodes.
#define NS_LOG_INFO(msg)
Use NS_LOG to output a message of level LOG_INFO.
Definition: log.h:277
static YansWifiPhyHelper Default(void)
Create a phy helper in a default working state.
helps to create WifiNetDevice objects
Definition: wifi-helper.h:213
tuple cmd
Definition: second.py:35
void SetPcapDataLinkType(enum SupportedPcapDataLinkTypes dlt)
Set the data link type of PCAP traces to be used.
Definition: wifi-helper.cc:566
void SetChannel(Ptr< YansWifiChannel > channel)
void Install(Ptr< Node > node) const
"Layout" a single node according to the current position allocator type.
tuple mobility
Definition: third.py:101
static EventId Schedule(Time const &delay, MEM mem_ptr, OBJ obj)
Schedule an event to expire after delay.
Definition: simulator.h:1375
holds a vector of ns3::NetDevice pointers
virtual void SetStandard(enum WifiPhyStandard standard)
Definition: wifi-helper.cc:742
virtual NetDeviceContainer Install(const WifiPhyHelper &phy, const WifiMacHelper &mac, NodeContainer::Iterator first, NodeContainer::Iterator last) const
Definition: wifi-helper.cc:748
Callback< R > MakeCallback(R(T::*memPtr)(void), OBJ objPtr)
Definition: callback.h:1489
void SetRecvCallback(Callback< void, Ptr< Socket > >)
Notify application when new data is available to be read.
Definition: socket.cc:128
static Ptr< Socket > CreateSocket(Ptr< Node > node, TypeId tid)
This method wraps the creation of sockets that is performed on a given node by a SocketFactory specif...
Definition: socket.cc:71
Parse command-line arguments.
Definition: command-line.h:205
static void Destroy(void)
Execute the events scheduled with ScheduleDestroy().
Definition: simulator.cc:190
virtual int Connect(const Address &address)=0
Initiate a connection to a remote host.
virtual int Bind(const Address &address)=0
Allocate a local endpoint for this socket.
Every class exported by the ns3 library is enclosed in the ns3 namespace.
keep track of a set of node pointers.
virtual Ptr< Packet > Recv(uint32_t maxSize, uint32_t flags)=0
Read data from the socket.
DSSS PHY (Clause 15) and HR/DSSS PHY (Clause 18)
void SetMobilityModel(std::string type, std::string n1="", const AttributeValue &v1=EmptyAttributeValue(), std::string n2="", const AttributeValue &v2=EmptyAttributeValue(), std::string n3="", const AttributeValue &v3=EmptyAttributeValue(), std::string n4="", const AttributeValue &v4=EmptyAttributeValue(), std::string n5="", const AttributeValue &v5=EmptyAttributeValue(), std::string n6="", const AttributeValue &v6=EmptyAttributeValue(), std::string n7="", const AttributeValue &v7=EmptyAttributeValue(), std::string n8="", const AttributeValue &v8=EmptyAttributeValue(), std::string n9="", const AttributeValue &v9=EmptyAttributeValue())
void Install(std::string nodeName) const
Aggregate implementations of the ns3::Ipv4, ns3::Ipv6, ns3::Udp, and ns3::Tcp classes onto the provid...
#define NS_LOG_UNCOND(msg)
Output the requested message unconditionaly.
manage and create wifi channel objects for the yans model.
create MAC layers for a ns3::WifiNetDevice.
virtual void SetType(std::string type, std::string n0="", const AttributeValue &v0=EmptyAttributeValue(), std::string n1="", const AttributeValue &v1=EmptyAttributeValue(), std::string n2="", const AttributeValue &v2=EmptyAttributeValue(), std::string n3="", const AttributeValue &v3=EmptyAttributeValue(), std::string n4="", const AttributeValue &v4=EmptyAttributeValue(), std::string n5="", const AttributeValue &v5=EmptyAttributeValue(), std::string n6="", const AttributeValue &v6=EmptyAttributeValue(), std::string n7="", const AttributeValue &v7=EmptyAttributeValue(), std::string n8="", const AttributeValue &v8=EmptyAttributeValue(), std::string n9="", const AttributeValue &v9=EmptyAttributeValue(), std::string n10="", const AttributeValue &v10=EmptyAttributeValue())
void ReceivePacket(Ptr< Socket > socket)
Helper class used to assign positions and mobility models to nodes.
static void ScheduleWithContext(uint32_t context, Time const &delay, MEM mem_ptr, OBJ obj)
Schedule an event with the given context.
Definition: simulator.h:1469
Ipv4 addresses are stored in host order in this class.
Definition: ipv4-address.h:40
static void EnableLogComponents(void)
Helper to enable all WifiNetDevice log components with one statement.
Definition: wifi-helper.cc:797
Ipv4InterfaceContainer Assign(const NetDeviceContainer &c)
Assign IP addresses to the net devices specified in the container based on the current network prefix...
uint32_t GetId(void) const
Definition: node.cc:107
virtual Ptr< Node > GetNode(void) const =0
Return the node this socket is associated with.
void AddValue(const std::string &name, const std::string &help, T &value)
Add a program argument, assigning to POD.
Definition: command-line.h:498
Ptr< Node > Get(uint32_t i) const
Get the Ptr stored in this container at a given index.
Time Seconds(double value)
Construct a Time in the indicated unit.
Definition: nstime.h:993
void SetDefault(std::string name, const AttributeValue &value)
Definition: config.cc:782
void Add(Vector v)
Add a position to the list of positions.
void Parse(int argc, char *argv[])
Parse the program arguments.
A helper class to make life easier while doing simple IPv4 address assignment in scripts.
tuple wifi
Definition: third.py:89
void Create(uint32_t n)
Create n nodes and append pointers to them to the end of this NodeContainer.
static const uint32_t packetSize
void SetPropagationDelay(std::string name, std::string n0="", const AttributeValue &v0=EmptyAttributeValue(), std::string n1="", const AttributeValue &v1=EmptyAttributeValue(), std::string n2="", const AttributeValue &v2=EmptyAttributeValue(), std::string n3="", const AttributeValue &v3=EmptyAttributeValue(), std::string n4="", const AttributeValue &v4=EmptyAttributeValue(), std::string n5="", const AttributeValue &v5=EmptyAttributeValue(), std::string n6="", const AttributeValue &v6=EmptyAttributeValue(), std::string n7="", const AttributeValue &v7=EmptyAttributeValue())
void EnablePcap(std::string prefix, Ptr< NetDevice > nd, bool promiscuous=false, bool explicitFilename=false)
Enable pcap output the indicated net device.
virtual int Send(Ptr< Packet > p, uint32_t flags)=0
Send data (or dummy data) to the remote host.
void SetPositionAllocator(Ptr< PositionAllocator > allocator)
Set the position allocator which will be used to allocate the initial position of every node initiali...
virtual int Close(void)=0
Close a socket.
This class can be used to hold variables of floating point type such as 'double' or 'float'...
Definition: double.h:41
a unique identifier for an interface.
Definition: type-id.h:58
Include Radiotap link layer information.
Definition: wifi-helper.h:111
void SetBase(Ipv4Address network, Ipv4Mask mask, Ipv4Address base="0.0.0.1")
Set the base network number, network mask and base address.
bool verbose
static TypeId LookupByName(std::string name)
Get a TypeId by name.
Definition: type-id.cc:823