A Discrete-Event Network Simulator
API
 All Classes Namespaces Files Functions Variables Typedefs Enumerations Enumerator Properties Friends Macros Groups Pages
ipv6-interface.cc
Go to the documentation of this file.
1 /* -*- Mode:C++; c-file-style:"gnu"; indent-tabs-mode:nil; -*- */
2 /*
3  * Copyright (c) 2007-2009 Strasbourg University
4  *
5  * This program is free software; you can redistribute it and/or modify
6  * it under the terms of the GNU General Public License version 2 as
7  * published by the Free Software Foundation;
8  *
9  * This program is distributed in the hope that it will be useful,
10  * but WITHOUT ANY WARRANTY; without even the implied warranty of
11  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12  * GNU General Public License for more details.
13  *
14  * You should have received a copy of the GNU General Public License
15  * along with this program; if not, write to the Free Software
16  * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
17  *
18  * Author: Sebastien Vincent <vincent@clarinet.u-strasbg.fr>
19  */
20 
21 #include "ns3/log.h"
22 #include "ns3/node.h"
23 #include "ns3/packet.h"
24 
25 #include "ipv6-interface.h"
26 #include "ns3/net-device.h"
27 #include "loopback-net-device.h"
28 #include "ns3/mac16-address.h"
29 #include "ns3/mac64-address.h"
30 #include "ipv6-l3-protocol.h"
31 #include "icmpv6-l4-protocol.h"
32 #include "ndisc-cache.h"
33 
34 namespace ns3
35 {
36 
37 NS_LOG_COMPONENT_DEFINE ("Ipv6Interface");
38 
39 NS_OBJECT_ENSURE_REGISTERED (Ipv6Interface);
40 
42 {
43  static TypeId tid = TypeId ("ns3::Ipv6Interface")
44  .SetParent<Object> ()
45  ;
46  return tid;
47 }
48 
50  : m_ifup (false),
51  m_forwarding (true),
52  m_metric (1),
53  m_node (0),
54  m_device (0),
55  m_ndCache (0),
56  m_curHopLimit (0),
57  m_baseReachableTime (0),
58  m_reachableTime (0),
59  m_retransTimer (0)
60 {
61  NS_LOG_FUNCTION (this);
62 }
63 
65 {
67 }
68 
70 {
72  m_node = 0;
73  m_device = 0;
74  m_ndCache = 0;
76 }
77 
79 {
81 
82  if (m_node == 0 || m_device == 0)
83  {
84  return;
85  }
86 
87  /* set up link-local address */
88  if (!DynamicCast<LoopbackNetDevice> (m_device)) /* no autoconf for ip6-localhost */
89  {
90  Address addr = GetDevice ()->GetAddress ();
91 
93  {
95  AddAddress (ifaddr);
96  }
97  else if (Mac48Address::IsMatchingType (addr))
98  {
100  AddAddress (ifaddr);
101  }
102  else if (Mac16Address::IsMatchingType (addr))
103  {
105  AddAddress (ifaddr);
106  }
107  else
108  {
109  NS_ASSERT_MSG (false, "IPv6 autoconf for this kind of address not implemented.");
110  }
111  }
112  else
113  {
114  return; /* no NDISC cache for ip6-localhost */
115  }
116 
117  Ptr<Icmpv6L4Protocol> icmpv6 = m_node->GetObject<Ipv6L3Protocol> ()->GetIcmpv6 ();
118  if (m_device->NeedsArp ())
119  {
120  m_ndCache = icmpv6->CreateCache (m_device, this);
121  }
122 }
123 
125 {
126  NS_LOG_FUNCTION (this << node);
127  m_node = node;
128  DoSetup ();
129 }
130 
132 {
133  NS_LOG_FUNCTION (this << device);
134  m_device = device;
135  DoSetup ();
136 }
137 
139 {
141  return m_device;
142 }
143 
144 void Ipv6Interface::SetMetric (uint16_t metric)
145 {
146  NS_LOG_FUNCTION (this << metric);
147  m_metric = metric;
148 }
149 
150 uint16_t Ipv6Interface::GetMetric () const
151 {
153  return m_metric;
154 }
155 
156 bool Ipv6Interface::IsUp () const
157 {
159  return m_ifup;
160 }
161 
163 {
165  return !m_ifup;
166 }
167 
169 {
171 
172  if (m_ifup)
173  {
174  return;
175  }
176  m_ifup = true;
177 }
178 
180 {
182  m_ifup = false;
183  m_addresses.clear ();
184 }
185 
187 {
189  return m_forwarding;
190 }
191 
192 void Ipv6Interface::SetForwarding (bool forwarding)
193 {
194  NS_LOG_FUNCTION (this << forwarding);
195  m_forwarding = forwarding;
196 }
197 
199 {
201  Ipv6Address addr = iface.GetAddress ();
202 
203  /* DAD handling */
204  if (!addr.IsAny ())
205  {
206  for (Ipv6InterfaceAddressListCI it = m_addresses.begin (); it != m_addresses.end (); ++it)
207  {
208  if ((*it).GetAddress () == addr)
209  {
210  return false;
211  }
212  }
213 
214  m_addresses.push_back (iface);
215 
216  if (!addr.IsAny () || !addr.IsLocalhost ())
217  {
218  /* DAD handling */
219  Ptr<Icmpv6L4Protocol> icmpv6 = m_node->GetObject<Ipv6L3Protocol> ()->GetIcmpv6 ();
220 
221  if (icmpv6 && icmpv6->IsAlwaysDad ())
222  {
223  Simulator::Schedule (Seconds (0.), &Icmpv6L4Protocol::DoDAD, icmpv6, addr, this);
224  Simulator::Schedule (Seconds (1.), &Icmpv6L4Protocol::FunctionDadTimeout, icmpv6, this, addr);
225  }
226  }
227  return true;
228  }
229 
230  /* bad address */
231  return false;
232 }
233 
235 {
236  /* IPv6 interface has always at least one IPv6 link-local address */
238 
239  for (Ipv6InterfaceAddressListCI it = m_addresses.begin (); it != m_addresses.end (); ++it)
240  {
241  if ((*it).GetAddress ().IsLinkLocal ())
242  {
243  return (*it);
244  }
245  }
246  NS_ASSERT_MSG (false, "No link-local address on interface " << this);
248  return addr; /* quiet compiler */
249 }
250 
252 {
253  NS_LOG_FUNCTION (this << index);
254  uint32_t i = 0;
255 
256  if (m_addresses.size () > index)
257  {
258  for (Ipv6InterfaceAddressListCI it = m_addresses.begin (); it != m_addresses.end (); ++it)
259  {
260  if (i == index)
261  {
262  return (*it);
263  }
264  i++;
265  }
266  }
267 
268  NS_ASSERT_MSG (false, "Address " << index << " not found");
270  return addr; /* quiet compiler */
271 }
272 
274 {
276  return m_addresses.size ();
277 }
278 
280 {
281  NS_LOG_FUNCTION (this << index);
282  uint32_t i = 0;
283 
284  if (m_addresses.size () < index)
285  {
286  NS_ASSERT_MSG (false, "Try to remove index that don't exist in Ipv6Interface::RemoveAddress");
287  }
288 
289  for (Ipv6InterfaceAddressListI it = m_addresses.begin (); it != m_addresses.end (); ++it)
290  {
291  if (i == index)
292  {
293  Ipv6InterfaceAddress iface = (*it);
294  m_addresses.erase (it);
295  return iface;
296  }
297 
298  i++;
299  }
300 
301  NS_ASSERT_MSG (false, "Address " << index << " not found");
303  return addr; /* quiet compiler */
304 }
305 
308 {
309  NS_LOG_FUNCTION(this << address);
310 
311  if (address == address.GetLoopback())
312  {
313  NS_LOG_WARN ("Cannot remove loopback address.");
314  return Ipv6InterfaceAddress();
315  }
316 
317  for (Ipv6InterfaceAddressListI it = m_addresses.begin (); it != m_addresses.end (); ++it)
318  {
319  if((*it).GetAddress() == address)
320  {
321  Ipv6InterfaceAddress iface = (*it);
322  m_addresses.erase(it);
323  return iface;
324  }
325  }
326  return Ipv6InterfaceAddress();
327 }
328 
330 {
331  NS_LOG_FUNCTION (this << dst);
332 
333  for (Ipv6InterfaceAddressList::const_iterator it = m_addresses.begin (); it != m_addresses.end (); ++it)
334  {
335  Ipv6InterfaceAddress ifaddr = (*it);
336 
337  if (ifaddr.GetPrefix ().IsMatch (ifaddr.GetAddress (), dst))
338  {
339  return ifaddr;
340  }
341  }
342 
343  /* NS_ASSERT_MSG (false, "Not matching address."); */
345  return ret; /* quiet compiler */
346 }
347 
349 {
350  NS_LOG_FUNCTION (this << p << dest);
352 
353  if (!IsUp ())
354  {
355  return;
356  }
357 
358  /* check if destination is localhost (::1) */
359  if (DynamicCast<LoopbackNetDevice> (m_device))
360  {
364  m_device->Send (p, m_device->GetBroadcast (), Ipv6L3Protocol::PROT_NUMBER);
365  return;
366  }
367 
368  /* check if destination is for one of our interface */
369  for (Ipv6InterfaceAddressListCI it = m_addresses.begin (); it != m_addresses.end (); ++it)
370  {
371  if (dest == (*it).GetAddress ())
372  {
373  ipv6->Receive (m_device, p, Ipv6L3Protocol::PROT_NUMBER,
374  m_device->GetBroadcast (),
375  m_device->GetBroadcast (),
376  NetDevice::PACKET_HOST // note: linux uses PACKET_LOOPBACK here
377  );
378  return;
379  }
380  }
381 
382  /* other address */
383  if (m_device->NeedsArp ())
384  {
385  NS_LOG_LOGIC ("Needs ARP" << " " << dest);
386  Ptr<Icmpv6L4Protocol> icmpv6 = ipv6->GetIcmpv6 ();
387  Address hardwareDestination;
388  bool found = false;
389 
390  NS_ASSERT (icmpv6);
391 
392  if (dest.IsMulticast ())
393  {
394  NS_LOG_LOGIC ("IsMulticast");
395  NS_ASSERT_MSG (m_device->IsMulticast (), "Ipv6Interface::SendTo (): Sending multicast packet over non-multicast device");
396 
397  hardwareDestination = m_device->GetMulticast (dest);
398  found = true;
399  }
400  else
401  {
402  NS_LOG_LOGIC ("NDISC Lookup");
403  found = icmpv6->Lookup (p, dest, GetDevice (), m_ndCache, &hardwareDestination);
404  }
405 
406  if (found)
407  {
408  NS_LOG_LOGIC ("Address Resolved. Send.");
409  m_device->Send (p, hardwareDestination, Ipv6L3Protocol::PROT_NUMBER);
410  }
411  }
412  else
413  {
414  NS_LOG_LOGIC ("Doesn't need ARP");
415  m_device->Send (p, m_device->GetBroadcast (), Ipv6L3Protocol::PROT_NUMBER);
416  }
417 }
418 
419 void Ipv6Interface::SetCurHopLimit (uint8_t curHopLimit)
420 {
421  NS_LOG_FUNCTION (this << curHopLimit);
422  m_curHopLimit = curHopLimit;
423 }
424 
426 {
428  return m_curHopLimit;
429 }
430 
431 void Ipv6Interface::SetBaseReachableTime (uint16_t baseReachableTime)
432 {
433  NS_LOG_FUNCTION (this << baseReachableTime);
434  m_baseReachableTime = baseReachableTime;
435 }
436 
438 {
440  return m_baseReachableTime;
441 }
442 
443 void Ipv6Interface::SetReachableTime (uint16_t reachableTime)
444 {
445  NS_LOG_FUNCTION (this << reachableTime);
446  m_reachableTime = reachableTime;
447 }
448 
450 {
452  return m_reachableTime;
453 }
454 
455 void Ipv6Interface::SetRetransTimer (uint16_t retransTimer)
456 {
457  NS_LOG_FUNCTION (this << retransTimer);
458  m_retransTimer = retransTimer;
459 }
460 
462 {
464  return m_retransTimer;
465 }
466 
468 {
469  NS_LOG_FUNCTION (this << address << state);
470 
471  for (Ipv6InterfaceAddressListI it = m_addresses.begin (); it != m_addresses.end (); ++it)
472  {
473  if ((*it).GetAddress () == address)
474  {
475  (*it).SetState (state);
476  return;
477  }
478  }
479  /* not found, maybe address has expired */
480 }
481 
483 {
484  NS_LOG_FUNCTION (this << address << uid);
485 
486  for (Ipv6InterfaceAddressListI it = m_addresses.begin (); it != m_addresses.end (); ++it)
487  {
488  if ((*it).GetAddress () == address)
489  {
490  (*it).SetNsDadUid (uid);
491  return;
492  }
493  }
494  /* not found, maybe address has expired */
495 }
496 
497 } /* namespace ns3 */
498 
bool IsMatch(Ipv6Address a, Ipv6Address b) const
If the Address match the type.
Ipv6InterfaceAddressList m_addresses
The addresses assigned to this interface.
bool IsAny() const
If the IPv6 address is the "Any" address.
static bool IsMatchingType(const Address &address)
static Ipv6Address GetLoopback()
Get the loopback address.
bool m_ifup
The state of this interface.
bool AddAddress(Ipv6InterfaceAddress iface)
Add an IPv6 address.
smart pointer class similar to boost::intrusive_ptr
Definition: ptr.h:59
#define NS_LOG_FUNCTION(parameters)
Definition: log.h:311
void SetState(Ipv6Address address, Ipv6InterfaceAddress::State_e state)
Update state of an interface address.
void SetUp()
Enable this interface.
uint16_t GetRetransTimer() const
Get the retransmission timer.
bool m_forwarding
Forwarding state.
static Mac16Address ConvertFrom(const Address &address)
static bool IsMatchingType(const Address &address)
IPv6 layer implementation.
#define NS_ASSERT(condition)
Definition: assert.h:64
Ipv6InterfaceAddress GetAddress(uint32_t index) const
Get an address from IPv6 interface.
IPv6 address associated with an interface.
Ptr< NetDevice > m_device
NetDevice associated with this interface.
void SetDevice(Ptr< NetDevice > device)
Set the NetDevice.
void SetReachableTime(uint16_t reachableTime)
Set the reachable time.
virtual void DoDispose(void)
Definition: object.cc:335
std::list< Ipv6InterfaceAddress >::iterator Ipv6InterfaceAddressListI
#define NS_LOG_FUNCTION_NOARGS()
Definition: log.h:275
static EventId Schedule(Time const &time, MEM mem_ptr, OBJ obj)
Definition: simulator.h:824
bool IsUp() const
Is the interface UP ?
bool IsDown() const
Is the interface DOWN ?
a polymophic address class
Definition: address.h:86
void SetBaseReachableTime(uint16_t baseReachableTime)
Set the base reachable time.
static void FunctionDadTimeout(Ptr< Icmpv6L4Protocol > icmpv6, Ipv6Interface *interface, Ipv6Address addr)
Function called when DAD timeout.
uint16_t m_baseReachableTime
Base value used for computing the random reachable time value (in millisecond).
uint16_t GetBaseReachableTime() const
Get the base reachable time.
Ipv6Address GetAddress() const
Get the IPv6 address.
uint32_t GetNAddresses(void) const
Get number of addresses on this IPv6 interface.
void SetMetric(uint16_t metric)
Set the metric.
Ptr< Node > m_node
Node associated with this interface.
virtual ~Ipv6Interface()
Destructor.
void SetRetransTimer(uint16_t retransTimer)
Set the retransmission timer.
uint16_t m_retransTimer
Retransmission timer (in millisecond). Time between retransmission of NS.
NS_OBJECT_ENSURE_REGISTERED(AntennaModel)
static TypeId GetTypeId()
Get the type ID.
virtual Ptr< NetDevice > GetDevice() const
Get the NetDevice.
Ipv6Prefix GetPrefix() const
Get the IPv6 prefix.
void Send(Ptr< Packet > p, Ipv6Address dest)
Send a packet through this interface.
#define NS_LOG_LOGIC(msg)
Definition: log.h:334
void SetNsDadUid(Ipv6Address address, uint32_t uid)
Update NS DAD packet UID of an interface address.
static Mac48Address ConvertFrom(const Address &address)
void SetNode(Ptr< Node > node)
Set node associated with interface.
void SetForwarding(bool forward)
Set forwarding enabled or not.
uint8_t m_curHopLimit
Current hop limit.
void SetCurHopLimit(uint8_t curHopLimit)
Set the current hop limit.
bool IsMulticast() const
If the IPv6 address is multicast (ff00::/8).
#define NS_ASSERT_MSG(condition, message)
Definition: assert.h:86
void DoDAD(Ipv6Address target, Ptr< Ipv6Interface > interface)
Do the Duplication Address Detection (DAD). It consists in sending a NS with our IPv6 as target...
static Ipv6Address MakeAutoconfiguredLinkLocalAddress(Mac16Address mac)
Make the autoconfigured link-local IPv6 address with Mac16Address.
Ipv6InterfaceAddress GetLinkLocalAddress() const
Get link-local address from IPv6 interface.
uint8_t GetCurHopLimit() const
Get the current hop limit value.
Describes an IPv6 address.
Definition: ipv6-address.h:46
uint16_t GetMetric() const
Get the metric.
NS_LOG_COMPONENT_DEFINE("PacketLossCounter")
State_e
State of an address associated with an interface.
static Mac64Address ConvertFrom(const Address &address)
void DoSetup()
Initialize interface.
#define NS_LOG_WARN(msg)
Definition: log.h:246
uint16_t m_reachableTime
Reachable time (in millisecond). The time a neighbor is considered reachable after receiving a reacha...
bool IsForwarding() const
If the interface allows forwarding packets.
Describes an IPv6 prefix. It is just a bitmask like Ipv4Mask.
Definition: ipv6-address.h:364
uint16_t GetReachableTime() const
Get the reachable time.
Ipv6InterfaceAddress RemoveAddress(uint32_t index)
Remove an address from interface.
a base class which provides memory management and object aggregation
Definition: object.h:63
tuple address
Definition: first.py:37
virtual void DoDispose()
Dispose this object.
static bool IsMatchingType(const Address &address)
std::list< Ipv6InterfaceAddress >::const_iterator Ipv6InterfaceAddressListCI
uint16_t m_metric
The metric.
bool IsLocalhost() const
If the IPv6 address is localhost (::1).
Ptr< T > GetObject(void) const
Definition: object.h:360
void SetDown()
Disable this interface.
a unique identifier for an interface.
Definition: type-id.h:49
Ipv6InterfaceAddress GetAddressMatchingDestination(Ipv6Address dst)
Get an address which is in the same network prefix as destination.
TypeId SetParent(TypeId tid)
Definition: type-id.cc:610
Ptr< NdiscCache > m_ndCache
Neighbor cache.
static const uint16_t PROT_NUMBER
The protocol number for IPv6 (0x86DD).
Ipv6Interface()
Constructs an Ipv6Interface.