21 #include "ns3/assert.h"
23 #include "ns3/nstime.h"
24 #include "ns3/boolean.h"
25 #include "ns3/object-vector.h"
27 #include "ns3/packet.h"
29 #include "ns3/simulator.h"
30 #include "ns3/ipv4-route.h"
31 #include "ns3/ipv6-route.h"
62 #undef NS_LOG_APPEND_CONTEXT
63 #define NS_LOG_APPEND_CONTEXT \
64 if (m_node) { std::clog << " [node " << m_node->GetId () << "] "; }
74 .SetGroupName (
"Internet")
76 .AddAttribute (
"RttEstimatorType",
77 "Type of RttEstimator objects.",
81 .AddAttribute (
"SocketType",
82 "Socket type of TCP objects.",
86 .AddAttribute (
"RecoveryType",
87 "Recovery type of TCP objects.",
91 .AddAttribute (
"SocketList",
"The list of sockets associated to this protocol.",
94 MakeObjectVectorChecker<TcpSocketBase> ())
121 Ptr<Node> node = this->GetObject<Node> ();
122 Ptr<Ipv4> ipv4 = this->GetObject<Ipv4> ();
127 if ((node != 0) && (ipv4 != 0 || ipv6 != 0))
131 tcpFactory->SetTcp (
this);
198 congestionAlgorithmFactory.
SetTypeId (congestionTypeId);
199 recoveryAlgorithmFactory.
SetTypeId (recoveryTypeId);
207 socket->SetTcp (
this);
208 socket->SetRtt (rtt);
209 socket->SetCongestionControlAlgorithm (algo);
210 socket->SetRecoveryAlgorithm (recovery);
255 NS_LOG_FUNCTION (
this << boundNetDevice << localAddress << localPort << peerAddress << peerPort);
257 localAddress, localPort,
258 peerAddress, peerPort);
301 NS_LOG_FUNCTION (
this << boundNetDevice << localAddress << localPort << peerAddress << peerPort);
303 localAddress, localPort,
304 peerAddress, peerPort);
316 uint8_t icmpType, uint8_t icmpCode, uint32_t icmpInfo,
318 const uint8_t payload[8])
320 NS_LOG_FUNCTION (
this << icmpSource << (uint16_t) icmpTtl << (uint16_t) icmpType << (uint16_t) icmpCode << icmpInfo
321 << payloadSource << payloadDestination);
323 src = payload[0] << 8;
325 dst = payload[2] << 8;
331 endPoint->
ForwardIcmp (icmpSource, icmpTtl, icmpType, icmpCode, icmpInfo);
335 NS_LOG_DEBUG (
"no endpoint found source=" << payloadSource <<
336 ", destination=" << payloadDestination <<
337 ", src=" << src <<
", dst=" << dst);
343 uint8_t icmpType, uint8_t icmpCode, uint32_t icmpInfo,
345 const uint8_t payload[8])
347 NS_LOG_FUNCTION (
this << icmpSource << (uint16_t) icmpTtl << (uint16_t) icmpType << (uint16_t) icmpCode << icmpInfo
348 << payloadSource << payloadDestination);
350 src = payload[0] << 8;
352 dst = payload[2] << 8;
358 endPoint->
ForwardIcmp (icmpSource, icmpTtl, icmpType, icmpCode, icmpInfo);
362 NS_LOG_DEBUG (
"no endpoint found source=" << payloadSource <<
363 ", destination=" << payloadDestination <<
364 ", src=" << src <<
", dst=" << dst);
372 NS_LOG_FUNCTION (
this << packet << incomingTcpHeader << source << destination);
386 <<
" data size " << packet->
GetSize ());
402 NS_LOG_FUNCTION (
this << incomingHeader << incomingSAddr << incomingDAddr);
430 SendPacket (rstPacket, outgoingTcpHeader, incomingDAddr, incomingSAddr);
439 NS_LOG_FUNCTION (
this << packet << incomingIpHeader << incomingInterface);
450 return checksumControl;
460 if (endPoints.empty ())
462 if (this->GetObject<Ipv6L3Protocol> () != 0)
464 NS_LOG_LOGIC (
" No Ipv4 endpoints matched on TcpL4Protocol, trying Ipv6 " <<
this);
465 Ptr<Ipv6Interface> fakeInterface;
466 Ipv6Header ipv6Header;
467 Ipv6Address src, dst;
471 ipv6Header.SetSourceAddress (src);
472 ipv6Header.SetDestinationAddress (dst);
473 return (this->
Receive (packet, ipv6Header, fakeInterface));
476 NS_LOG_LOGIC (
"TcpL4Protocol " <<
this <<
" received a packet but"
477 " no endpoints matched." <<
480 " source IP: " << incomingIpHeader.
GetSource () <<
490 NS_ASSERT_MSG (endPoints.size () == 1,
"Demux returned more than one endpoint");
491 NS_LOG_LOGIC (
"TcpL4Protocol " <<
this <<
" received a packet and"
492 " now forwarding it up to endpoint/socket");
494 (*endPoints.begin ())->ForwardUp (packet, incomingIpHeader,
503 Ipv6Header
const &incomingIpHeader,
504 Ptr<Ipv6Interface> interface)
506 NS_LOG_FUNCTION (
this << packet << incomingIpHeader.GetSourceAddress () <<
507 incomingIpHeader.GetDestinationAddress ());
509 TcpHeader incomingTcpHeader;
517 incomingIpHeader.GetSourceAddress (),
518 incomingIpHeader.GetDestinationAddress ());
522 return checksumControl;
527 incomingTcpHeader.GetDestinationPort (),
528 incomingIpHeader.GetSourceAddress (),
529 incomingTcpHeader.GetSourcePort (), interface);
530 if (endPoints.empty ())
532 NS_LOG_LOGIC (
"TcpL4Protocol " <<
this <<
" received a packet but"
533 " no endpoints matched." <<
534 " destination IP: " << incomingIpHeader.GetDestinationAddress () <<
535 " destination port: "<< incomingTcpHeader.GetDestinationPort () <<
536 " source IP: " << incomingIpHeader.GetSourceAddress () <<
537 " source port: "<< incomingTcpHeader.GetSourcePort ());
540 incomingIpHeader.GetDestinationAddress ());
545 NS_ASSERT_MSG (endPoints.size () == 1,
"Demux returned more than one endpoint");
546 NS_LOG_LOGIC (
"TcpL4Protocol " <<
this <<
" received a packet and"
547 " now forwarding it up to endpoint/socket");
549 (*endPoints.begin ())->ForwardUp (packet, incomingIpHeader,
550 incomingTcpHeader.GetSourcePort (), interface);
565 <<
" data size " << packet->
GetSize ());
589 if (ipv4->GetRoutingProtocol () != 0)
591 route = ipv4->GetRoutingProtocol ()->RouteOutput (packet, header, oif, errno_);
602 NS_FATAL_ERROR (
"Trying to use Tcp on a node without an Ipv4 interface");
616 <<
" data size " << packet->
GetSize ());
643 if (ipv6->GetRoutingProtocol () != 0)
645 route = ipv6->GetRoutingProtocol ()->RouteOutput (packet, header, oif, errno_);
656 NS_FATAL_ERROR (
"Trying to use Tcp on a node without an Ipv6 interface");
710 std::vector<Ptr<TcpSocketBase> >::iterator it =
m_sockets.begin ();
729 std::vector<Ptr<TcpSocketBase> >::iterator it =
m_sockets.begin ();
a polymophic address class
bool IsNull(void) const
Check for null implementation.
void Nullify(void)
Discard the implementation, set it to null.
static Inet6SocketAddress ConvertFrom(const Address &addr)
Convert the address to a InetSocketAddress.
static bool IsMatchingType(const Address &addr)
If the address match.
Ipv6Address GetIpv6(void) const
Get the IPv6 address.
Ipv4Address GetIpv4(void) const
static bool IsMatchingType(const Address &address)
static InetSocketAddress ConvertFrom(const Address &address)
Returns an InetSocketAddress which corresponds to the input Address.
L4 Protocol abstract base class.
Ipv4 addresses are stored in host order in this class.
static Ipv4Address ConvertFrom(const Address &address)
static bool IsMatchingType(const Address &address)
Demultiplexes packets to various transport layer endpoints.
std::list< Ipv4EndPoint * > EndPoints
Container of the IPv4 endpoints.
Ipv4EndPoint * SimpleLookup(Ipv4Address daddr, uint16_t dport, Ipv4Address saddr, uint16_t sport)
simple lookup for a match with all the parameters.
Ipv4EndPoint * Allocate(void)
Allocate a Ipv4EndPoint.
EndPoints Lookup(Ipv4Address daddr, uint16_t dport, Ipv4Address saddr, uint16_t sport, Ptr< Ipv4Interface > incomingInterface)
lookup for a match with all the parameters.
void DeAllocate(Ipv4EndPoint *endPoint)
Remove a end point.
A representation of an internet endpoint/connection.
void ForwardIcmp(Ipv4Address icmpSource, uint8_t icmpTtl, uint8_t icmpType, uint8_t icmpCode, uint32_t icmpInfo)
Forward the ICMP packet to the upper level.
Access to the IPv4 forwarding table, interfaces, and configuration.
virtual void Send(Ptr< Packet > packet, Ipv4Address source, Ipv4Address destination, uint8_t protocol, Ptr< Ipv4Route > route)=0
Describes an IPv6 address.
bool IsIpv4MappedAddress() const
If the address is an IPv4-mapped address.
static Ipv6Address ConvertFrom(const Address &address)
Convert the Address object into an Ipv6Address ones.
Ipv4Address GetIpv4MappedAddress() const
Return the Ipv4 address.
static bool IsMatchingType(const Address &address)
If the Address matches the type.
static Ipv6Address MakeIpv4MappedAddress(Ipv4Address addr)
Make the Ipv4-mapped IPv6 address.
Demultiplexer for end points.
EndPoints Lookup(Ipv6Address dst, uint16_t dport, Ipv6Address src, uint16_t sport, Ptr< Ipv6Interface > incomingInterface)
lookup for a match with all the parameters.
std::list< Ipv6EndPoint * > EndPoints
Container of the IPv6 endpoints.
Ipv6EndPoint * Allocate(void)
Allocate a Ipv6EndPoint.
Ipv6EndPoint * SimpleLookup(Ipv6Address dst, uint16_t dport, Ipv6Address src, uint16_t sport)
Simple lookup for a four-tuple match.
void DeAllocate(Ipv6EndPoint *endPoint)
Remove a end point.
A representation of an IPv6 endpoint/connection.
void ForwardIcmp(Ipv6Address src, uint8_t ttl, uint8_t type, uint8_t code, uint32_t info)
Forward the ICMP packet to the upper level.
Access to the IPv6 forwarding table, interfaces, and configuration.
virtual void Send(Ptr< Packet > packet, Ipv6Address source, Ipv6Address destination, uint8_t protocol, Ptr< Ipv6Route > route)=0
Higher-level layers call this method to send a packet down the stack to the MAC and PHY layers.
IPv6 layer implementation.
static bool ChecksumEnabled(void)
Instantiate subclasses of ns3::Object.
Ptr< Object > Create(void) const
Create an Object instance of the configured TypeId.
void SetTypeId(TypeId tid)
Set the TypeId of the Objects to be created by this factory.
virtual void NotifyNewAggregate(void)
Notify all Objects aggregated to this one of a new Object being aggregated.
virtual void DoDispose(void)
Destructor implementation.
void AggregateObject(Ptr< Object > other)
Aggregate two Objects together.
Ptr< T > GetObject(void) const
Get a pointer to the requested aggregated Object.
Container for a set of ns3::Object pointers.
void AddHeader(const Header &header)
Add header to this packet.
uint32_t PeekHeader(Header &header) const
Deserialize but does not remove the header from the internal buffer.
uint32_t GetSize(void) const
Returns the the size in bytes of the packet (including the zero-filled initial payload).
Base class for all RTT Estimators.
static TypeId GetTypeId(void)
Get the type ID.
SocketErrno
Enumeration of the possible errors returned by a socket.
Congestion control abstract class.
static TypeId GetTypeId(void)
Get the type ID.
TCP socket creation and multiplexing/demultiplexing.
void SetNode(Ptr< Node > node)
Set node associated with this stack.
void NoEndPointsFound(const TcpHeader &incomingHeader, const Address &incomingSAddr, const Address &incomingDAddr)
Check if RST packet should be sent, and in case, send it.
bool RemoveSocket(Ptr< TcpSocketBase > socket)
Remove a socket from the internal list.
TypeId m_congestionTypeId
The socket TypeId.
virtual int GetProtocolNumber(void) const
Returns the protocol number of this protocol.
enum IpL4Protocol::RxStatus PacketReceived(Ptr< Packet > packet, TcpHeader &incomingTcpHeader, const Address &source, const Address &destination)
Get the tcp header of the incoming packet and checks its checksum if needed.
void SendPacketV6(Ptr< Packet > pkt, const TcpHeader &outgoing, const Ipv6Address &saddr, const Ipv6Address &daddr, Ptr< NetDevice > oif=0) const
Send a packet via TCP (IPv6)
TypeId m_recoveryTypeId
The recovery TypeId.
IpL4Protocol::DownTargetCallback m_downTarget
Callback to send packets over IPv4.
virtual enum IpL4Protocol::RxStatus Receive(Ptr< Packet > p, Ipv4Header const &incomingIpHeader, Ptr< Ipv4Interface > incomingInterface)
Called from lower-level layers to send the packet up in the stack.
Ipv4EndPointDemux * m_endPoints
A list of IPv4 end points.
std::vector< Ptr< TcpSocketBase > > m_sockets
list of sockets
virtual IpL4Protocol::DownTargetCallback GetDownTarget(void) const
This method allows a caller to get the current down target callback set for this L4 protocol (IPv4 ca...
Ipv6EndPointDemux * m_endPoints6
A list of IPv6 end points.
Ptr< Socket > CreateSocket(void)
Create a TCP socket using the TypeId set by SocketType attribute.
Ptr< Node > m_node
the node this stack is associated with
virtual void DoDispose(void)
Destructor implementation.
Ipv4EndPoint * Allocate(void)
Allocate an IPv4 Endpoint.
virtual void SetDownTarget(IpL4Protocol::DownTargetCallback cb)
This method allows a caller to set the current down target callback set for this L4 protocol (IPv4 ca...
virtual void ReceiveIcmp(Ipv4Address icmpSource, uint8_t icmpTtl, uint8_t icmpType, uint8_t icmpCode, uint32_t icmpInfo, Ipv4Address payloadSource, Ipv4Address payloadDestination, const uint8_t payload[8])
Called from lower-level layers to send the ICMP packet up in the stack.
void DeAllocate(Ipv4EndPoint *endPoint)
Remove an IPv4 Endpoint.
void SendPacketV4(Ptr< Packet > pkt, const TcpHeader &outgoing, const Ipv4Address &saddr, const Ipv4Address &daddr, Ptr< NetDevice > oif=0) const
Send a packet via TCP (IPv4)
static const uint8_t PROT_NUMBER
protocol number (0x6)
virtual IpL4Protocol::DownTargetCallback6 GetDownTarget6(void) const
This method allows a caller to get the current down target callback set for this L4 protocol (IPv6 ca...
void SendPacket(Ptr< Packet > pkt, const TcpHeader &outgoing, const Address &saddr, const Address &daddr, Ptr< NetDevice > oif=0) const
Send a packet via TCP (IP-agnostic)
virtual void NotifyNewAggregate()
Setup socket factory and callbacks when aggregated to a node.
static TypeId GetTypeId(void)
Get the type ID.
Ipv6EndPoint * Allocate6(void)
Allocate an IPv6 Endpoint.
void AddSocket(Ptr< TcpSocketBase > socket)
Make a socket fully operational.
virtual void SetDownTarget6(IpL4Protocol::DownTargetCallback6 cb)
This method allows a caller to set the current down target callback set for this L4 protocol (IPv6 ca...
IpL4Protocol::DownTargetCallback6 m_downTarget6
Callback to send packets over IPv6.
TypeId m_rttTypeId
The RTT Estimator TypeId.
static TypeId GetTypeId(void)
Get the type ID.
a unique identifier for an interface.
TypeId SetParent(TypeId tid)
Set the parent TypeId.
std::string GetName(void) const
Get the name.
AttributeValue implementation for TypeId.
#define NS_ASSERT(condition)
At runtime, in debugging builds, if this condition is not true, the program prints the source file,...
#define NS_ASSERT_MSG(condition, message)
At runtime, in debugging builds, if this condition is not true, the program prints the message to out...
Ptr< const AttributeAccessor > MakeObjectVectorAccessor(U T::*memberVariable)
MakeAccessorHelper implementation for ObjectVector.
Ptr< const AttributeAccessor > MakeTypeIdAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method.
Ptr< const AttributeChecker > MakeTypeIdChecker(void)
#define NS_FATAL_ERROR(msg)
Report a fatal error with a message and terminate.
#define NS_LOG_ERROR(msg)
Use NS_LOG to output a message of level LOG_ERROR.
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
#define NS_LOG_DEBUG(msg)
Use NS_LOG to output a message of level LOG_DEBUG.
#define NS_LOG_LOGIC(msg)
Use NS_LOG to output a message of level LOG_LOGIC.
#define NS_LOG_FUNCTION(parameters)
If log level LOG_FUNCTION is enabled, this macro will output all input parameters separated by ",...
#define NS_LOG_INFO(msg)
Use NS_LOG to output a message of level LOG_INFO.
#define NS_OBJECT_ENSURE_REGISTERED(type)
Register an Object subclass with the TypeId system.
Every class exported by the ns3 library is enclosed in the ns3 namespace.
Callback< R, Ts... > MakeCallback(R(T::*memPtr)(Ts...), OBJ objPtr)
Build Callbacks for class method members which take varying numbers of arguments and potentially retu...