A Discrete-Event Network Simulator
API
 All Classes Namespaces Files Functions Variables Typedefs Enumerations Enumerator Properties Friends Macros Groups Pages
ipv6-raw-socket-impl.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 <netinet/in.h>
22 #include <sys/socket.h>
23 #include <sys/types.h>
24 #include "ns3/inet6-socket-address.h"
25 #include "ns3/node.h"
26 #include "ns3/packet.h"
27 #include "ns3/uinteger.h"
28 #include "ns3/log.h"
29 #include "ns3/ipv6-route.h"
30 #include "ns3/ipv6-routing-protocol.h"
31 #include "ns3/ipv6-packet-info-tag.h"
32 
33 #include "ipv6-l3-protocol.h"
34 #include "ipv6-raw-socket-impl.h"
35 #include "icmpv6-header.h"
36 #include "icmpv6-l4-protocol.h"
37 
38 namespace ns3
39 {
40 
41 NS_LOG_COMPONENT_DEFINE ("Ipv6RawSocketImpl");
42 
43 NS_OBJECT_ENSURE_REGISTERED (Ipv6RawSocketImpl);
44 
46 {
47  static TypeId tid = TypeId ("ns3::Ipv6RawSocketImpl")
48  .SetParent<Socket> ()
49  .SetGroupName ("Internet")
50  .AddAttribute ("Protocol", "Protocol number to match.",
51  UintegerValue (0),
53  MakeUintegerChecker<uint16_t> ())
54  ;
55  return tid;
56 }
57 
59 {
62  m_node = 0;
65  m_protocol = 0;
66  m_shutdownSend = false;
67  m_shutdownRecv = false;
69 }
70 
72 {
73 }
74 
76 {
78  m_node = 0;
80 }
81 
83 {
84  NS_LOG_FUNCTION (this << node);
85  m_node = node;
86 }
87 
89 {
90  return m_node;
91 }
92 
94 {
96  return m_err;
97 }
98 
100 {
101  return NS3_SOCK_RAW;
102 }
103 
105 {
106  NS_LOG_FUNCTION (this << address);
107 
108  if (!Inet6SocketAddress::IsMatchingType (address))
109  {
111  return -1;
112  }
114  m_src = ad.GetIpv6 ();
115  return 0;
116 }
117 
119 {
122  return 0;
123 }
124 
126 {
127  return(Bind());
128 }
129 
131 {
133  address = Inet6SocketAddress (m_src, 0);
134  return 0;
135 }
136 
137 int
139 {
140  NS_LOG_FUNCTION (this << address);
141 
142  if (m_dst.IsAny ())
143  {
145  return -1;
146  }
147 
148  address = Inet6SocketAddress (m_dst, 0);
149 
150  return 0;
151 }
152 
154 {
157 
158  Ipv6LeaveGroup ();
159  if (ipv6)
160  {
161  ipv6->DeleteRawSocket (this);
162  }
163  return 0;
164 }
165 
167 {
169  m_shutdownSend = true;
170  return 0;
171 }
172 
174 {
176  m_shutdownRecv = true;
177  return 0;
178 }
179 
181 {
182  NS_LOG_FUNCTION (this << address);
183 
184  if (!Inet6SocketAddress::IsMatchingType (address))
185  {
187  return -1;
188  }
189 
191  m_dst = ad.GetIpv6 ();
192  return 0;
193 }
194 
196 {
199  return -1;
200 }
201 
202 int Ipv6RawSocketImpl::Send (Ptr<Packet> p, uint32_t flags)
203 {
204  NS_LOG_FUNCTION (this << p << flags);
206  return SendTo (p, flags, to);
207 }
208 
209 int Ipv6RawSocketImpl::SendTo (Ptr<Packet> p, uint32_t flags, const Address& toAddress)
210 {
211  NS_LOG_FUNCTION (this << p << flags << toAddress);
212 
213  if (!Inet6SocketAddress::IsMatchingType (toAddress))
214  {
216  return -1;
217  }
218 
219  if (m_shutdownSend)
220  {
221  return 0;
222  }
223 
226  Ipv6Address dst = ad.GetIpv6 ();
227 
228  if (ipv6->GetRoutingProtocol ())
229  {
230  Ipv6Header hdr;
231  hdr.SetDestinationAddress (dst);
233  Ptr<Ipv6Route> route = 0;
234  Ptr<NetDevice> oif (0); /*specify non-zero if bound to a source address */
235 
236  if (!m_src.IsAny ())
237  {
238  int32_t index = ipv6->GetInterfaceForAddress (m_src);
239  NS_ASSERT (index >= 0);
240  oif = ipv6->GetNetDevice (index);
241  }
242 
243  route = ipv6->GetRoutingProtocol ()->RouteOutput (p, hdr, oif, err);
244 
245  if (route)
246  {
247  NS_LOG_LOGIC ("Route exists");
249  {
250  /* calculate checksum here for ICMPv6 echo request (sent by ping6)
251  * as we cannot determine source IPv6 address at application level
252  */
253  uint8_t type;
254  p->CopyData (&type, sizeof(type));
256  {
257  Icmpv6Echo hdr (1);
258  p->RemoveHeader (hdr);
260  p->AddHeader (hdr);
261  }
262  }
263 
264  uint32_t pktSize = p->GetSize ();
265  if (m_src.IsAny ())
266  {
267  ipv6->Send (p, route->GetSource (), dst, m_protocol, route);
268  }
269  else
270  {
271  ipv6->Send (p, m_src, dst, m_protocol, route);
272  }
273  // Return only payload size (as Linux does).
274  NotifyDataSent (pktSize);
276  return pktSize;
277  }
278  else
279  {
280  NS_LOG_DEBUG ("No route, dropped!");
281  }
282  }
283  return 0;
284 }
285 
286 Ptr<Packet> Ipv6RawSocketImpl::Recv (uint32_t maxSize, uint32_t flags)
287 {
288  NS_LOG_FUNCTION (this << maxSize << flags);
289  Address tmp;
290  return RecvFrom (maxSize, flags, tmp);
291 }
292 
293 Ptr<Packet> Ipv6RawSocketImpl::RecvFrom (uint32_t maxSize, uint32_t flags, Address& fromAddress)
294 {
295  NS_LOG_FUNCTION (this << maxSize << flags << fromAddress);
296 
297  if (m_data.empty ())
298  {
299  return 0;
300  }
301 
302  /* get packet */
303  struct Data data = m_data.front ();
304  m_data.pop_front ();
305  fromAddress = Inet6SocketAddress (data.fromIp, data.fromProtocol);
306  if (data.packet->GetSize () > maxSize)
307  {
308  Ptr<Packet> first = data.packet->CreateFragment (0, maxSize);
309  if (!(flags & MSG_PEEK))
310  {
311  data.packet->RemoveAtStart (maxSize);
312  }
313  m_data.push_front (data);
314  return first;
315  }
316 
317  return data.packet;
318 }
319 
320 void
321 Ipv6RawSocketImpl::Ipv6JoinGroup (Ipv6Address address, Socket::Ipv6MulticastFilterMode filterMode, std::vector<Ipv6Address> sourceAddresses)
322 {
323  NS_LOG_FUNCTION (this << address << &filterMode << &sourceAddresses);
324 
325  // We can join only one multicast group (or change its params)
326  NS_ASSERT_MSG ((m_ipv6MulticastGroupAddress == address || m_ipv6MulticastGroupAddress.IsAny ()), "Can join only one IPv6 multicast group.");
327 
329 
331  if (ipv6l3)
332  {
333  if (filterMode == INCLUDE && sourceAddresses.empty ())
334  {
335  // it is a leave
336  if (m_boundnetdevice)
337  {
338  int32_t index = ipv6l3->GetInterfaceForDevice (m_boundnetdevice);
339  NS_ASSERT_MSG (index >= 0, "Interface without a valid index");
340  ipv6l3->RemoveMulticastAddress (address, index);
341  }
342  else
343  {
344  ipv6l3->RemoveMulticastAddress (address);
345  }
346  }
347  else
348  {
349  // it is a join or a modification
350  if (m_boundnetdevice)
351  {
352  int32_t index = ipv6l3->GetInterfaceForDevice (m_boundnetdevice);
353  NS_ASSERT_MSG (index >= 0, "Interface without a valid index");
354  ipv6l3->AddMulticastAddress (address, index);
355  }
356  else
357  {
358  ipv6l3->AddMulticastAddress (address);
359  }
360  }
361  }
362 }
363 
365 {
367  return 0xffffffff;
368 }
369 
371 {
373  uint32_t rx = 0;
374 
375  for (std::list<Data>::const_iterator it = m_data.begin (); it != m_data.end (); ++it)
376  {
377  rx+= (it->packet)->GetSize ();
378  }
379 
380  return rx;
381 }
382 
384 {
385  NS_LOG_FUNCTION (this << *p << hdr << device);
386 
387  if (m_shutdownRecv)
388  {
389  return false;
390  }
391 
392  Ptr<NetDevice> boundNetDevice = Socket::GetBoundNetDevice();
393  if (boundNetDevice)
394  {
395  if (boundNetDevice != device)
396  {
397  return false;
398  }
399  }
400 
401  if ((m_src == Ipv6Address::GetAny () || hdr.GetDestinationAddress () == m_src) &&
402  (m_dst == Ipv6Address::GetAny () || hdr.GetSourceAddress () == m_dst) &&
403  hdr.GetNextHeader () == m_protocol)
404  {
405  Ptr<Packet> copy = p->Copy ();
406 
408  {
409  /* filter */
410  Icmpv6Header icmpHeader;
411  copy->PeekHeader (icmpHeader);
412  uint8_t type = icmpHeader.GetType ();
413 
414  if (Icmpv6FilterWillBlock(type))
415  {
416  /* packet filtered */
417  return false;
418  }
419  }
420 
421  // Should check via getsockopt ()..
422  if (IsRecvPktInfo ())
423  {
424  Ipv6PacketInfoTag tag;
425  copy->RemovePacketTag (tag);
426  tag.SetRecvIf (device->GetIfIndex ());
427  copy->AddPacketTag (tag);
428  }
429 
430  copy->AddHeader (hdr);
431  struct Data data;
432  data.packet = copy;
433  data.fromIp = hdr.GetSourceAddress ();
434  data.fromProtocol = hdr.GetNextHeader ();
435  m_data.push_back (data);
436  NotifyDataRecv ();
437  return true;
438  }
439  return false;
440 }
441 
442 bool
444 {
445  if (!allowBroadcast)
446  {
447  return false;
448  }
449  return true;
450 }
451 
452 bool
454 {
455  return true;
456 }
457 
458 void
460 {
461  memset(&m_icmpFilter, 0xff, sizeof(icmpv6Filter));
462 }
463 
464 void
466 {
467  memset(&m_icmpFilter, 0x00, sizeof(icmpv6Filter));
468 }
469 
470 void
472 {
473  (m_icmpFilter.icmpv6Filt[(type) >> 5]) |= (uint32_t(1) << ((type) & 31));
474 }
475 
476 void
478 {
479  (m_icmpFilter.icmpv6Filt[(type) >> 5]) &= ~(uint32_t(1) << ((type) & 31));
480 }
481 
482 bool
484 {
485  return (((m_icmpFilter.icmpv6Filt[(type) >> 5]) & (uint32_t(1) << ((type) & 31))) != 0);
486 }
487 
488 bool
490 {
491  return (((m_icmpFilter.icmpv6Filt[(type) >> 5]) & (uint32_t(1) << ((type) & 31))) == 0);
492 }
493 
494 } /* namespace ns3 */
495 
void SetNode(Ptr< Node > node)
Set the node associated with this socket.
bool IsAny() const
If the IPv6 address is the "Any" address.
uint32_t RemoveHeader(Header &header)
Deserialize and remove the header from the internal buffer.
Definition: packet.cc:268
uint8_t GetNextHeader(void) const
Get the next header.
Definition: ipv6-header.cc:80
void CalculatePseudoHeaderChecksum(Ipv6Address src, Ipv6Address dst, uint16_t length, uint8_t protocol)
Calculate pseudo header checksum for IPv6.
Ipv6Address GetIpv6(void) const
Get the IPv6 address.
Introspection did not find any typical Config paths.
Definition: ipv6-header.h:33
#define NS_LOG_FUNCTION(parameters)
If log level LOG_FUNCTION is enabled, this macro will output all input parameters separated by "...
virtual void Ipv6JoinGroup(Ipv6Address address, Socket::Ipv6MulticastFilterMode filterMode, std::vector< Ipv6Address > sourceAddresses)
Joins a IPv6 multicast group.
virtual void DoDispose()
Dispose object.
virtual int Connect(const Address &address)
Initiate a connection to a remote host.
#define NS_OBJECT_ENSURE_REGISTERED(type)
Register an Object subclass with the TypeId system.
Definition: object-base.h:44
Ptr< T > GetObject(void) const
Get a pointer to the requested aggregated Object.
Definition: object.h:455
void NotifyDataRecv(void)
Notify through the callback (if set) that some data have been received.
Definition: socket.cc:305
virtual uint32_t GetSerializedSize() const
Get the serialized size.
Ipv6Address fromIp
Source address.
uint32_t icmpv6Filt[8]
ICMPv6 filter specification.
Ipv6Address m_src
Source address.
Ptr< Packet > Recv(void)
Read a single packet from the socket.
Definition: socket.cc:175
IPv6 layer implementation.
void AddPacketTag(const Tag &tag) const
Add a packet tag.
Definition: packet.cc:824
bool m_shutdownSend
Flag to shutdown send capability.
uint8_t GetType() const
Get the type field.
#define NS_ASSERT(condition)
At runtime, in debugging builds, if this condition is not true, the program prints the source file...
Definition: assert.h:67
static Ipv6Address GetAny()
Get the "any" (::) Ipv6Address.
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
Definition: log.h:201
uint32_t GetSize(void) const
Returns the the size in bytes of the packet (including the zero-filled initial payload).
Definition: packet.h:792
uint16_t fromProtocol
Protocol used.
Ptr< Packet > packet
Packet data.
#define NS_LOG_FUNCTION_NOARGS()
Output the name of the function.
virtual int GetPeerName(Address &address) const
Get the peer address of a connected socket.
static TypeId GetTypeId()
Get the type ID of this class.
bool ForwardUp(Ptr< const Packet > p, Ipv6Header hdr, Ptr< NetDevice > device)
Forward up to receive method.
virtual enum Socket::SocketType GetSocketType() const
Get socket type (NS3_SOCK_RAW)
SocketErrno
Enumeration of the possible errors returned by a socket.
Definition: socket.h:82
Ipv6Address m_ipv6MulticastGroupAddress
IPv6 multicast group address.
Definition: socket.h:969
virtual enum Socket::SocketErrno GetErrno() const
Get last error number.
bool IsRecvPktInfo() const
Get status indicating whether enable/disable packet information to socket.
Definition: socket.cc:364
virtual int Send(Ptr< Packet > p, uint32_t flags)
Send data (or dummy data) to the remote host.
a polymophic address class
Definition: address.h:90
virtual int Bind()
Allocate a local IPv4 endpoint for this socket.
bool m_shutdownRecv
Flag to shutdown receive capability.
Ptr< NetDevice > GetBoundNetDevice()
Returns socket's bound netdevice, if any.
Definition: socket.cc:351
Ptr< Packet > CreateFragment(uint32_t start, uint32_t length) const
Create a new packet which contains a fragment of the original packet.
Definition: packet.cc:228
A low-level Socket API based loosely on the BSD Socket API.
Definition: socket.h:66
Introspection did not find any typical Config paths.
Definition: icmpv6-header.h:37
Ipv6MulticastFilterMode
Enumeration of the possible filter of a socket.
Definition: socket.h:122
void RemoveAtStart(uint32_t size)
Remove size bytes from the start of the current packet.
Definition: packet.cc:340
std::list< struct Data > m_data
Packet waiting to be processed.
Hold an unsigned integer type.
Definition: uinteger.h:44
virtual int GetSockName(Address &address) const
Get socket address.
An Inet6 address class.
void NotifyDataSent(uint32_t size)
Notify through the callback (if set) that some data have been sent.
Definition: socket.cc:285
void Icmpv6FilterSetBlock(uint8_t type)
Set the filter to block one ICMPv6 type.
virtual int Bind6()
Allocate a local IPv6 endpoint for this socket.
#define NS_LOG_LOGIC(msg)
Use NS_LOG to output a message of level LOG_LOGIC.
Definition: log.h:252
virtual Ptr< Node > GetNode() const
Return the node this socket is associated with.
IPv6 raw data and additional information.
Struct to hold the ICMPv6 filter.
virtual int Listen()
Listen for incoming connections.
Ptr< Packet > Copy(void) const
performs a COW copy of the packet.
Definition: packet.cc:122
uint32_t PeekHeader(Header &header) const
Deserialize but does not remove the header from the internal buffer.
Definition: packet.cc:278
static uint16_t GetStaticProtocolNumber()
Get ICMPv6 protocol number.
bool Icmpv6FilterWillBlock(uint8_t type)
Ask the filter about the status of one ICMPv6 type.
virtual void Ipv6LeaveGroup(void)
Leaves IPv6 multicast group this socket is joined to.
Definition: socket.cc:531
void Icmpv6FilterSetPass(uint8_t type)
Set the filter to pass one ICMPv6 type.
icmpv6Filter m_icmpFilter
ICMPv6 filter.
virtual Ptr< Packet > RecvFrom(uint32_t maxSize, uint32_t flags, Address &fromAddress)
Read a single packet from the socket and retrieve the sender address.
virtual bool SetAllowBroadcast(bool allowBroadcast)
Configure whether broadcast datagram transmissions are allowed.
virtual void DoDispose(void)
Destructor implementation.
Definition: socket.cc:315
Introspection did not find any typical Config paths.
#define NS_ASSERT_MSG(condition, message)
At runtime, in debugging builds, if this condition is not true, the program prints the message to out...
Definition: assert.h:90
virtual uint32_t GetRxAvailable() const
Return number of bytes which can be returned from one or multiple calls to Recv.
Describes an IPv6 address.
Definition: ipv6-address.h:48
virtual uint32_t GetTxAvailable() const
Returns the number of bytes which can be sent in a single call to Send.
enum Socket::SocketErrno m_err
Last error number.
virtual int SendTo(Ptr< Packet > p, uint32_t flags, const Address &toAddress)
Send data to a specified peer.
Ptr< NetDevice > m_boundnetdevice
the device this socket is bound to (might be null).
Definition: socket.h:967
virtual int Close()
Close a socket.
Ipv6Address m_dst
Destination address.
bool RemovePacketTag(Tag &tag)
Remove a packet tag.
Definition: packet.cc:831
Ipv6Address GetSourceAddress(void) const
Get the "Source address" field.
Definition: ipv6-header.cc:100
#define NS_LOG_DEBUG(msg)
Use NS_LOG to output a message of level LOG_DEBUG.
Definition: log.h:236
static Inet6SocketAddress ConvertFrom(const Address &addr)
Convert the address to a InetSocketAddress.
bool Icmpv6FilterWillPass(uint8_t type)
Ask the filter about the status of one ICMPv6 type.
void Icmpv6FilterSetPassAll()
Clean the ICMPv6 filter structure.
static bool IsMatchingType(const Address &addr)
If the address match.
uint32_t CopyData(uint8_t *buffer, uint32_t size) const
Copy the packet contents to a byte buffer.
Definition: packet.cc:356
This class implements a tag that carries socket ancillary data to the socket interface.
tuple address
Definition: first.py:37
virtual bool GetAllowBroadcast() const
Query whether broadcast datagram transmissions are allowed.
Ptr< const AttributeAccessor > MakeUintegerAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method...
Definition: uinteger.h:45
SocketType
Enumeration of the possible socket types.
Definition: socket.h:104
a unique identifier for an interface.
Definition: type-id.h:58
void SetDestinationAddress(Ipv6Address dst)
Set the "Destination address" field.
Definition: ipv6-header.cc:105
void NotifySend(uint32_t spaceAvailable)
Notify through the callback (if set) that some data have been sent.
Definition: socket.cc:295
TypeId SetParent(TypeId tid)
Set the parent TypeId.
Definition: type-id.cc:827
void SetRecvIf(uint32_t ifindex)
Set the tag's receiving interface.
void AddHeader(const Header &header)
Add header to this packet.
Definition: packet.cc:257
Ipv6Address GetDestinationAddress(void) const
Get the "Destination address" field.
Definition: ipv6-header.cc:110
uint16_t m_protocol
Protocol.
void Icmpv6FilterSetBlockAll()
Set the filter to block all the ICMPv6 types.