A Discrete-Event Network Simulator
API
radvd-two-prefix.cc
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1/*
2 * Copyright (c) 2009 Strasbourg University
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: David Gross <gdavid.devel@gmail.com>
18 * Sebastien Vincent <vincent@clarinet.u-strasbg.fr>
19 */
20
21// Network topology
22// //
23// // n0 R n1
24// // | _ |
25// // ====|_|====
26// // router
27// // - R sends RA to n0's subnet (2001:1::/64 and 2001:ABCD::/64);
28// // - R interface to n0 has two addresses with following prefixes 2001:1::/64 and 2001:ABCD::/64;
29// // - R sends RA to n1's subnet (2001:2::/64);
30// // - n0 ping6 n1.
31// //
32// // - Tracing of queues and packet receptions to file "radvd-two-prefix.tr"
33
34#include "ns3/core-module.h"
35#include "ns3/csma-module.h"
36#include "ns3/internet-apps-module.h"
37#include "ns3/internet-module.h"
38#include "ns3/ipv6-routing-table-entry.h"
39#include "ns3/ipv6-static-routing-helper.h"
40#include "ns3/radvd-interface.h"
41#include "ns3/radvd-prefix.h"
42#include "ns3/radvd.h"
43
44#include <fstream>
45
46using namespace ns3;
47
48NS_LOG_COMPONENT_DEFINE("RadvdTwoPrefixExample");
49
55{
56 public:
62 {
63 Ptr<Ipv6> ipv6 = n->GetObject<Ipv6>();
64 uint32_t nInterfaces = ipv6->GetNInterfaces();
65
66 std::cout << "Node: " << ipv6->GetObject<Node>()->GetId()
67 << " Time: " << Simulator::Now().GetSeconds() << "s "
68 << "IPv6 addresses" << std::endl;
69 std::cout << "(Interface index, Address index)\t"
70 << "IPv6 Address" << std::endl;
71
72 for (uint32_t i = 0; i < nInterfaces; i++)
73 {
74 for (uint32_t j = 0; j < ipv6->GetNAddresses(i); j++)
75 {
76 std::cout << "(" << int(i) << "," << int(j) << ")\t" << ipv6->GetAddress(i, j)
77 << std::endl;
78 }
79 }
80 std::cout << std::endl;
81 }
82};
83
84int
85main(int argc, char** argv)
86{
87 bool verbose = false;
88
89 CommandLine cmd(__FILE__);
90 cmd.AddValue("verbose", "turn on log components", verbose);
91 cmd.Parse(argc, argv);
92
93 if (verbose)
94 {
95 LogComponentEnable("Ipv6L3Protocol", LOG_LEVEL_ALL);
96 LogComponentEnable("Ipv6RawSocketImpl", LOG_LEVEL_ALL);
97 LogComponentEnable("Icmpv6L4Protocol", LOG_LEVEL_ALL);
98 LogComponentEnable("Ipv6StaticRouting", LOG_LEVEL_ALL);
99 LogComponentEnable("Ipv6Interface", LOG_LEVEL_ALL);
100 LogComponentEnable("RadvdApplication", LOG_LEVEL_ALL);
101 LogComponentEnable("Ping6Application", LOG_LEVEL_ALL);
102 }
103
104 NS_LOG_INFO("Create nodes.");
105 Ptr<Node> n0 = CreateObject<Node>();
106 Ptr<Node> r = CreateObject<Node>();
107 Ptr<Node> n1 = CreateObject<Node>();
108
109 NodeContainer net1(n0, r);
110 NodeContainer net2(r, n1);
111 NodeContainer all(n0, r, n1);
112
113 NS_LOG_INFO("Create IPv6 Internet Stack");
114 InternetStackHelper internetv6;
115 internetv6.Install(all);
116
117 NS_LOG_INFO("Create channels.");
119 csma.SetChannelAttribute("DataRate", DataRateValue(5000000));
120 csma.SetChannelAttribute("Delay", TimeValue(MilliSeconds(2)));
121 NetDeviceContainer d1 = csma.Install(net1); /* n0 - R */
122 NetDeviceContainer d2 = csma.Install(net2); /* R - n1 */
123
124 NS_LOG_INFO("Create networks and assign IPv6 Addresses.");
126
127 /* first subnet */
128 ipv6.SetBase(Ipv6Address("2001:1::"), Ipv6Prefix(64));
130 tmp.Add(d1.Get(0)); /* n0 */
131 Ipv6InterfaceContainer iic1 = ipv6.AssignWithoutAddress(tmp); /* n0 interface */
132
134 tmp2.Add(d1.Get(1)); /* R */
136 ipv6.Assign(tmp2); /* R interface to the first subnet is just statically assigned */
137 iicr1.SetForwarding(0, true);
138 iic1.Add(iicr1);
139
140 /* add another IPv6 address for second prefix advertised on first subnet */
141 ipv6.SetBase(Ipv6Address("2001:ABCD::"), Ipv6Prefix(64));
142 ipv6.Assign(tmp2);
143
144 /* second subnet R - n1 */
145 ipv6.SetBase(Ipv6Address("2001:2::"), Ipv6Prefix(64));
147 tmp3.Add(d2.Get(0)); /* R */
148 Ipv6InterfaceContainer iicr2 = ipv6.Assign(tmp3); /* R interface */
149 iicr2.SetForwarding(0, true);
150
152 tmp4.Add(d2.Get(1)); /* n1 */
154 iic2.Add(iicr2);
155
156 /* radvd configuration */
157 RadvdHelper radvdHelper;
158 /* R interface (n0 - R) */
159 radvdHelper.AddAnnouncedPrefix(iic1.GetInterfaceIndex(1), Ipv6Address("2001:ABCD::0"), 64);
160 radvdHelper.AddAnnouncedPrefix(iic1.GetInterfaceIndex(1), Ipv6Address("2001:1::0"), 64);
161
162 // Set some non-standard timers so the simulation is not taking ages
163 Ptr<RadvdInterface> routerInterface = radvdHelper.GetRadvdInterface(iic1.GetInterfaceIndex(1));
164 routerInterface->SetMaxRtrAdvInterval(2000);
165 routerInterface->SetMinRtrAdvInterval(1000);
166 RadvdInterface::RadvdPrefixList prefixList = routerInterface->GetPrefixes();
167 for (RadvdInterface::RadvdPrefixListI iter = prefixList.begin(); iter != prefixList.end();
168 iter++)
169 {
170 (*iter)->SetPreferredLifeTime(3);
171 (*iter)->SetValidLifeTime(5);
172 }
173
174 /* R interface (R - n1) */
175 radvdHelper.AddAnnouncedPrefix(iic2.GetInterfaceIndex(1), Ipv6Address("2001:2::0"), 64);
176
177 // Set some non-standard timers so the simulation is not taking ages
178 routerInterface = radvdHelper.GetRadvdInterface(iic2.GetInterfaceIndex(1));
179 routerInterface->SetMaxRtrAdvInterval(2000);
180 routerInterface->SetMinRtrAdvInterval(1000);
181 prefixList = routerInterface->GetPrefixes();
182 for (RadvdInterface::RadvdPrefixListI iter = prefixList.begin(); iter != prefixList.end();
183 iter++)
184 {
185 (*iter)->SetPreferredLifeTime(3);
186 (*iter)->SetValidLifeTime(5);
187 }
188
189 ApplicationContainer radvdApps = radvdHelper.Install(r);
190 radvdApps.Start(Seconds(1.0));
191 radvdApps.Stop(Seconds(2.0));
192
193 /* Create a Ping6 application to send ICMPv6 echo request from n0 to n1 via R */
194 uint32_t packetSize = 1024;
195 uint32_t maxPacketCount = 8;
196 Time interPacketInterval = Seconds(1.);
197 Ping6Helper ping6;
198
199 /* ping6.SetLocal (iic1.GetAddress (0, 1)); */
200 ping6.SetRemote(
201 Ipv6Address("2001:2::200:ff:fe00:4")); /* should be n1 address after autoconfiguration */
202 ping6.SetIfIndex(iic1.GetInterfaceIndex(0));
203
204 ping6.SetAttribute("MaxPackets", UintegerValue(maxPacketCount));
205 ping6.SetAttribute("Interval", TimeValue(interPacketInterval));
206 ping6.SetAttribute("PacketSize", UintegerValue(packetSize));
207 ApplicationContainer apps = ping6.Install(net1.Get(0));
208 apps.Start(Seconds(2.0));
209 apps.Stop(Seconds(9.0));
210
211 Ipv6StaticRoutingHelper routingHelper;
212 Ptr<OutputStreamWrapper> routingStream = Create<OutputStreamWrapper>(&std::cout);
213 routingHelper.PrintRoutingTableAt(Seconds(2.0), n0, routingStream);
214 routingHelper.PrintRoutingTableAt(Seconds(10.0), n0, routingStream);
215
216 IpAddressHelper ipAddressHelper;
217 /* RA should be received, two prefixes + routes + default route should be present */
218 Simulator::Schedule(Seconds(2.0), &IpAddressHelper::PrintIpAddresses, &ipAddressHelper, n0);
219 /* at the end, RA addresses and routes should be cleared */
220 Simulator::Schedule(Seconds(10.0), &IpAddressHelper::PrintIpAddresses, &ipAddressHelper, n0);
221
222 AsciiTraceHelper ascii;
223 csma.EnableAsciiAll(ascii.CreateFileStream("radvd-two-prefix.tr"));
224 csma.EnablePcapAll(std::string("radvd-two-prefix"), true);
225
226 NS_LOG_INFO("Run Simulation.");
227 Simulator::Run();
228 Simulator::Destroy();
229 NS_LOG_INFO("Done.");
230
231 return 0;
232}
Helper to print a node's IP addresses.
void PrintIpAddresses(Ptr< Node > &n)
Print the node's IP addresses.
holds a vector of ns3::Application pointers.
void Start(Time start)
Arrange for all of the Applications in this container to Start() at the Time given as a parameter.
void Stop(Time stop)
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.
Parse command-line arguments.
Definition: command-line.h:232
build a set of CsmaNetDevice objects
Definition: csma-helper.h:48
AttributeValue implementation for DataRate.
aggregate IP/TCP/UDP functionality to existing Nodes.
void Install(std::string nodeName) const
Aggregate implementations of the ns3::Ipv4, ns3::Ipv6, ns3::Udp, and ns3::Tcp classes onto the provid...
Helper class to auto-assign global IPv6 unicast addresses.
Ipv6InterfaceContainer AssignWithoutAddress(const NetDeviceContainer &c)
Allocate an Ipv6InterfaceContainer but do not assign any IPv6 addresses.
void SetBase(Ipv6Address network, Ipv6Prefix prefix, Ipv6Address base=Ipv6Address("::1"))
Set the base network number, network prefix, and base interface ID.
Ipv6InterfaceContainer Assign(const NetDeviceContainer &c)
Allocate an Ipv6InterfaceContainer with auto-assigned addresses.
Describes an IPv6 address.
Definition: ipv6-address.h:50
Access to the IPv6 forwarding table, interfaces, and configuration.
Definition: ipv6.h:82
Keep track of a set of IPv6 interfaces.
void SetForwarding(uint32_t i, bool state)
Set the state of the stack (act as a router or as an host) for the specified index.
uint32_t GetInterfaceIndex(uint32_t i) const
Get the interface index for the specified node index.
void Add(Ptr< Ipv6 > ipv6, uint32_t interface)
Add a couple IPv6/interface.
Describes an IPv6 prefix.
Definition: ipv6-address.h:456
static void PrintRoutingTableAt(Time printTime, Ptr< Node > node, Ptr< OutputStreamWrapper > stream, Time::Unit unit=Time::S)
prints the routing tables of a node at a particular time.
Helper class that adds ns3::Ipv6StaticRouting objects.
holds a vector of ns3::NetDevice pointers
void Add(NetDeviceContainer other)
Append the contents of another NetDeviceContainer to the end of this container.
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.
A network Node.
Definition: node.h:56
Ptr< T > GetObject() const
Get a pointer to the requested aggregated Object.
Definition: object.h:471
Ping6 application helper.
Definition: ping6-helper.h:38
void SetRemote(Ipv6Address ip)
Set the remote IPv6 address.
Definition: ping6-helper.cc:41
ApplicationContainer Install(NodeContainer c)
Install the application in Nodes.
Definition: ping6-helper.cc:53
void SetAttribute(std::string name, const AttributeValue &value)
Set some attributes.
Definition: ping6-helper.cc:47
void SetIfIndex(uint32_t ifIndex)
Set the out interface index.
Definition: ping6-helper.cc:71
Radvd application helper.
Definition: radvd-helper.h:41
void AddAnnouncedPrefix(uint32_t interface, Ipv6Address prefix, uint32_t prefixLength)
Add a new prefix to be announced through an interface.
Definition: radvd-helper.cc:39
ApplicationContainer Install(Ptr< Node > node)
Install the application in a Node.
Ptr< RadvdInterface > GetRadvdInterface(uint32_t interface)
Get the low-level RadvdInterface specification for an interface.
Definition: radvd-helper.cc:97
std::list< Ptr< RadvdPrefix > > RadvdPrefixList
Container: Ptr to RadvdPrefix.
RadvdPrefixList GetPrefixes() const
Get list of prefixes advertised for this interface.
std::list< Ptr< RadvdPrefix > >::iterator RadvdPrefixListI
Container Iterator: Ptr to RadvdPrefix.
void SetMaxRtrAdvInterval(uint32_t maxRtrAdvInterval)
Get maximum RA interval.
void SetMinRtrAdvInterval(uint32_t minRtrAdvInterval)
Get minimum RA interval.
Simulation virtual time values and global simulation resolution.
Definition: nstime.h:105
double GetSeconds() const
Get an approximation of the time stored in this instance in the indicated unit.
Definition: nstime.h:402
AttributeValue implementation for Time.
Definition: nstime.h:1425
Hold an unsigned integer type.
Definition: uinteger.h:45
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
Definition: log.h:202
#define NS_LOG_INFO(msg)
Use NS_LOG to output a message of level LOG_INFO.
Definition: log.h:275
Time Now()
create an ns3::Time instance which contains the current simulation time.
Definition: simulator.cc:296
Time Seconds(double value)
Construct a Time in the indicated unit.
Definition: nstime.h:1338
Time MilliSeconds(uint64_t value)
Construct a Time in the indicated unit.
Definition: nstime.h:1350
Every class exported by the ns3 library is enclosed in the ns3 namespace.
@ LOG_LEVEL_ALL
Print everything.
Definition: log.h:116
void LogComponentEnable(const char *name, enum LogLevel level)
Enable the logging output associated with that log component.
Definition: log.cc:358
csma
Definition: second.py:56
cmd
Definition: second.py:33
bool verbose
static const uint32_t packetSize
Packet size generated at the AP.