A Discrete-Event Network Simulator
API
tcp-dctcp.cc
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1/*
2 * Copyright (c) 2017 NITK Surathkal
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: Shravya K.S. <shravya.ks0@gmail.com>
18 *
19 */
20
21#include "tcp-dctcp.h"
22
23#include "ns3/abort.h"
24#include "ns3/log.h"
25#include "ns3/tcp-socket-state.h"
26
27namespace ns3
28{
29
30NS_LOG_COMPONENT_DEFINE("TcpDctcp");
31
33
34TypeId
36{
37 static TypeId tid =
38 TypeId("ns3::TcpDctcp")
40 .AddConstructor<TcpDctcp>()
41 .SetGroupName("Internet")
42 .AddAttribute("DctcpShiftG",
43 "Parameter G for updating dctcp_alpha",
44 DoubleValue(0.0625),
46 MakeDoubleChecker<double>(0, 1))
47 .AddAttribute("DctcpAlphaOnInit",
48 "Initial alpha value",
49 DoubleValue(1.0),
51 MakeDoubleChecker<double>(0, 1))
52 .AddAttribute("UseEct0",
53 "Use ECT(0) for ECN codepoint, if false use ECT(1)",
54 BooleanValue(true),
57 .AddTraceSource("CongestionEstimate",
58 "Update sender-side congestion estimate state",
60 "ns3::TcpDctcp::CongestionEstimateTracedCallback");
61 return tid;
62}
63
64std::string
66{
67 return "TcpDctcp";
68}
69
71 : TcpLinuxReno(),
72 m_ackedBytesEcn(0),
73 m_ackedBytesTotal(0),
74 m_priorRcvNxt(SequenceNumber32(0)),
75 m_priorRcvNxtFlag(false),
76 m_nextSeq(SequenceNumber32(0)),
77 m_nextSeqFlag(false),
78 m_ceState(false),
79 m_delayedAckReserved(false),
80 m_initialized(false)
81{
82 NS_LOG_FUNCTION(this);
83}
84
86 : TcpLinuxReno(sock),
87 m_ackedBytesEcn(sock.m_ackedBytesEcn),
88 m_ackedBytesTotal(sock.m_ackedBytesTotal),
89 m_priorRcvNxt(sock.m_priorRcvNxt),
90 m_priorRcvNxtFlag(sock.m_priorRcvNxtFlag),
91 m_alpha(sock.m_alpha),
92 m_nextSeq(sock.m_nextSeq),
93 m_nextSeqFlag(sock.m_nextSeqFlag),
94 m_ceState(sock.m_ceState),
95 m_delayedAckReserved(sock.m_delayedAckReserved),
96 m_g(sock.m_g),
97 m_useEct0(sock.m_useEct0),
98 m_initialized(sock.m_initialized)
99{
100 NS_LOG_FUNCTION(this);
101}
102
104{
105 NS_LOG_FUNCTION(this);
106}
107
110{
111 NS_LOG_FUNCTION(this);
112 return CopyObject<TcpDctcp>(this);
113}
114
115void
117{
118 NS_LOG_FUNCTION(this << tcb);
119 NS_LOG_INFO(this << "Enabling DctcpEcn for DCTCP");
123 m_initialized = true;
124}
125
126// Step 9, Section 3.3 of RFC 8257. GetSsThresh() is called upon
127// entering the CWR state, and then later, when CWR is exited,
128// cwnd is set to ssthresh (this value). bytesInFlight is ignored.
131{
132 NS_LOG_FUNCTION(this << tcb << bytesInFlight);
133 return static_cast<uint32_t>((1 - m_alpha / 2.0) * tcb->m_cWnd);
134}
135
136void
138{
139 NS_LOG_FUNCTION(this << tcb << segmentsAcked << rtt);
140 m_ackedBytesTotal += segmentsAcked * tcb->m_segmentSize;
142 {
143 m_ackedBytesEcn += segmentsAcked * tcb->m_segmentSize;
144 }
145 if (m_nextSeqFlag == false)
146 {
148 m_nextSeqFlag = true;
149 }
150 if (tcb->m_lastAckedSeq >= m_nextSeq)
151 {
152 double bytesEcn = 0.0; // Corresponds to variable M in RFC 8257
153 if (m_ackedBytesTotal > 0)
154 {
155 bytesEcn = static_cast<double>(m_ackedBytesEcn * 1.0 / m_ackedBytesTotal);
156 }
157 m_alpha = (1.0 - m_g) * m_alpha + m_g * bytesEcn;
159 NS_LOG_INFO(this << "bytesEcn " << bytesEcn << ", m_alpha " << m_alpha);
160 Reset(tcb);
161 }
162}
163
164void
166{
167 NS_LOG_FUNCTION(this << alpha);
168 NS_ABORT_MSG_IF(m_initialized, "DCTCP has already been initialized");
169 m_alpha = alpha;
170}
171
172void
174{
175 NS_LOG_FUNCTION(this << tcb);
177 m_ackedBytesEcn = 0;
179}
180
181void
183{
184 NS_LOG_FUNCTION(this << tcb);
186 {
187 SequenceNumber32 tmpRcvNxt;
188 /* Save current NextRxSequence. */
189 tmpRcvNxt = tcb->m_rxBuffer->NextRxSequence();
190
191 /* Generate previous ACK without ECE */
192 tcb->m_rxBuffer->SetNextRxSequence(m_priorRcvNxt);
194
195 /* Recover current RcvNxt. */
196 tcb->m_rxBuffer->SetNextRxSequence(tmpRcvNxt);
197 }
198
199 if (m_priorRcvNxtFlag == false)
200 {
201 m_priorRcvNxtFlag = true;
202 }
203 m_priorRcvNxt = tcb->m_rxBuffer->NextRxSequence();
204 m_ceState = true;
206}
207
208void
210{
211 NS_LOG_FUNCTION(this << tcb);
213 {
214 SequenceNumber32 tmpRcvNxt;
215 /* Save current NextRxSequence. */
216 tmpRcvNxt = tcb->m_rxBuffer->NextRxSequence();
217
218 /* Generate previous ACK with ECE */
219 tcb->m_rxBuffer->SetNextRxSequence(m_priorRcvNxt);
221
222 /* Recover current RcvNxt. */
223 tcb->m_rxBuffer->SetNextRxSequence(tmpRcvNxt);
224 }
225
226 if (m_priorRcvNxtFlag == false)
227 {
228 m_priorRcvNxtFlag = true;
229 }
230 m_priorRcvNxt = tcb->m_rxBuffer->NextRxSequence();
231 m_ceState = false;
232
235 {
237 }
238}
239
240void
242{
243 NS_LOG_FUNCTION(this << tcb << event);
244 switch (event)
245 {
248 {
250 }
251 break;
254 {
255 m_delayedAckReserved = false;
256 }
257 break;
258 default:
259 /* Don't care for the rest. */
260 break;
261 }
262}
263
264void
266{
267 NS_LOG_FUNCTION(this << tcb << event);
268 switch (event)
269 {
271 CeState0to1(tcb);
272 break;
274 CeState1to0(tcb);
275 break;
278 UpdateAckReserved(tcb, event);
279 break;
280 default:
281 /* Don't care for the rest. */
282 break;
283 }
284}
285
286} // namespace ns3
AttributeValue implementation for Boolean.
Definition: boolean.h:37
This class can be used to hold variables of floating point type such as 'double' or 'float'.
Definition: double.h:42
Smart pointer class similar to boost::intrusive_ptr.
Definition: ptr.h:78
An implementation of DCTCP.
Definition: tcp-dctcp.h:39
Ptr< TcpCongestionOps > Fork() override
Copy the congestion control algorithm across sockets.
Definition: tcp-dctcp.cc:109
static TypeId GetTypeId()
Get the type ID.
Definition: tcp-dctcp.cc:35
SequenceNumber32 m_priorRcvNxt
Sequence number of the first missing byte in data.
Definition: tcp-dctcp.h:132
double m_alpha
Parameter used to estimate the amount of network congestion.
Definition: tcp-dctcp.h:134
double m_g
Estimation gain.
Definition: tcp-dctcp.h:140
bool m_initialized
Whether DCTCP has been initialized.
Definition: tcp-dctcp.h:142
bool m_ceState
DCTCP Congestion Experienced state.
Definition: tcp-dctcp.h:138
bool m_priorRcvNxtFlag
Variable used in setting the value of m_priorRcvNxt for first time.
Definition: tcp-dctcp.h:133
void InitializeDctcpAlpha(double alpha)
Initialize the value of m_alpha.
Definition: tcp-dctcp.cc:165
SequenceNumber32 m_nextSeq
TCP sequence number threshold for beginning a new observation window.
Definition: tcp-dctcp.h:136
uint32_t m_ackedBytesEcn
Number of acked bytes which are marked.
Definition: tcp-dctcp.h:130
void Init(Ptr< TcpSocketState > tcb) override
Set configuration required by congestion control algorithm, This method will force DctcpEcn mode and ...
Definition: tcp-dctcp.cc:116
TcpDctcp()
Create an unbound tcp socket.
Definition: tcp-dctcp.cc:70
void Reset(Ptr< TcpSocketState > tcb)
Resets the value of m_ackedBytesEcn, m_ackedBytesTotal and m_nextSeq.
Definition: tcp-dctcp.cc:173
uint32_t m_ackedBytesTotal
Total number of acked bytes.
Definition: tcp-dctcp.h:131
bool m_nextSeqFlag
Variable used in setting the value of m_nextSeq for first time.
Definition: tcp-dctcp.h:137
std::string GetName() const override
Get the name of the congestion control algorithm.
Definition: tcp-dctcp.cc:65
uint32_t GetSsThresh(Ptr< const TcpSocketState > tcb, uint32_t bytesInFlight) override
Get the slow start threshold after a loss event.
Definition: tcp-dctcp.cc:130
void PktsAcked(Ptr< TcpSocketState > tcb, uint32_t segmentsAcked, const Time &rtt) override
Timing information on received ACK.
Definition: tcp-dctcp.cc:137
void CwndEvent(Ptr< TcpSocketState > tcb, const TcpSocketState::TcpCAEvent_t event) override
Trigger events/calculations on occurrence of congestion window event.
Definition: tcp-dctcp.cc:265
void CeState1to0(Ptr< TcpSocketState > tcb)
Changes state of m_ceState to false.
Definition: tcp-dctcp.cc:209
void UpdateAckReserved(Ptr< TcpSocketState > tcb, const TcpSocketState::TcpCAEvent_t event)
Updates the value of m_delayedAckReserved.
Definition: tcp-dctcp.cc:241
bool m_delayedAckReserved
Delayed Ack state.
Definition: tcp-dctcp.h:139
TracedCallback< uint32_t, uint32_t, double > m_traceCongestionEstimate
Callback pointer for congestion state update.
Definition: tcp-dctcp.h:146
bool m_useEct0
Use ECT(0) for ECN codepoint.
Definition: tcp-dctcp.h:141
void CeState0to1(Ptr< TcpSocketState > tcb)
Changes state of m_ceState to true.
Definition: tcp-dctcp.cc:182
~TcpDctcp() override
Destructor.
Definition: tcp-dctcp.cc:103
Reno congestion control algorithm.
uint32_t m_segmentSize
Segment size.
TcpCAEvent_t
Congestion avoidance events.
@ CA_EVENT_ECN_IS_CE
received CE marked IP packet.
@ CA_EVENT_ECN_NO_CE
ECT set, but not CE marked.
@ CA_EVENT_DELAYED_ACK
Delayed ack is sent.
@ CA_EVENT_NON_DELAYED_ACK
Non-delayed ack is sent.
EcnMode_t m_ecnMode
ECN mode.
Callback< void, uint8_t > m_sendEmptyPacketCallback
Callback to send an empty packet.
UseEcn_t m_useEcn
Socket ECN capability.
SequenceNumber32 m_lastAckedSeq
Last sequence ACKed.
@ DctcpEcn
ECN functionality as described in RFC 8257.
@ ECN_ECE_RCVD
Last ACK received had ECE bit set in TCP header.
@ ECN_IDLE
ECN is enabled but currently there is no action pertaining to ECE or CWR to be taken.
@ ECN_CE_RCVD
Last packet received had CE bit set in IP header.
@ ECN_SENDING_ECE
Receiver sends an ACK with ECE bit set in TCP header.
Ptr< TcpRxBuffer > m_rxBuffer
Rx buffer (reordering buffer)
TracedValue< SequenceNumber32 > m_nextTxSequence
Next seqnum to be sent (SND.NXT), ReTx pushes it back.
TracedValue< EcnState_t > m_ecnState
Current ECN State, represented as combination of EcnState values.
EcnCodePoint_t m_ectCodePoint
ECT code point to use.
Simulation virtual time values and global simulation resolution.
Definition: nstime.h:105
T Get() const
Get the underlying value.
Definition: traced-value.h:249
a unique identifier for an interface.
Definition: type-id.h:60
TypeId SetParent(TypeId tid)
Set the parent TypeId.
Definition: type-id.cc:935
Ptr< const AttributeAccessor > MakeBooleanAccessor(T1 a1)
Definition: boolean.h:86
Ptr< const AttributeChecker > MakeBooleanChecker()
Definition: boolean.cc:124
Ptr< const AttributeAccessor > MakeDoubleAccessor(T1 a1)
Definition: double.h:43
#define NS_ABORT_MSG_IF(cond, msg)
Abnormal program termination if a condition is true, with a message.
Definition: abort.h:108
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
Definition: log.h:202
#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.
Definition: log.h:275
#define NS_OBJECT_ENSURE_REGISTERED(type)
Register an Object subclass with the TypeId system.
Definition: object-base.h:45
Ptr< const TraceSourceAccessor > MakeTraceSourceAccessor(T a)
Create a TraceSourceAccessor which will control access to the underlying trace source.
Every class exported by the ns3 library is enclosed in the ns3 namespace.