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ruengelerb6a39f82012-05-25 12:57:43 +000031\documentclass[a4paper]{article}
32%
33\usepackage{longtable}
iruengeler05218e72012-09-12 09:32:13 +000034%
ruengelerb6a39f82012-05-25 12:57:43 +000035\title{Socket API for the SCTP User-land Implementation (usrsctp)}
36\author{I.~R\"ungeler%
37 \thanks{M\"unster University of Applied Sciences,
38 Department of Electrical Engineering
39 and Computer Science,
40 Stegerwaldstr.~39,
41 D-48565 Steinfurt,
42 Germany,
43 \texttt{i.ruengeler@fh-muenster.de}.}
44 \and
45 M.~T\"uxen%
46 \thanks{M\"unster University of Applied Sciences,
47 Department of Electrical Engineering
48 and Computer Science,
49 Stegerwaldstr.~39,
50 D-48565 Steinfurt,
51 Germany,
52 \texttt{tuexen@fh-muenster.de}.}
53}
54%
55\begin{document}
56\setcounter{secnumdepth}{4}
57\setcounter{tocdepth}{4}
58\maketitle
59\tableofcontents
60
61\section{Introduction}
62In this manual the socket API for the SCTP User-land implementation will be described.
63It is based on RFC 6458~\cite{socketAPI}. The main focus of this document is on pointing out
ruengeler870a7f62012-05-25 14:42:52 +000064 the differences to the SCTP Sockets API. For all aspects of the sockets API that are not
ruengelerb6a39f82012-05-25 12:57:43 +000065 mentioned in this document, please refer to RFC~6458. Questions about SCTP can hopefully be
66 answered by RFC~4960~\cite{SCTP}.
67
68\section{Getting Started}
69The User-land stack has been tested on FreeBSD 10.0, Ubuntu 11.10, Windows 7, Mac OS X 10.6,
70and MAC OS X 10.7.
71The current version of the User-land stack is provided on \textit{http://sctp.fh-muenster.de/sctp-user-land-stack.html}.
72Download the tarball and untar it in a folder of your choice.
ruengelerfa14a2a2012-05-30 09:49:03 +000073The tarball contains all the sources to build the libusrsctp, which has to be linked to the object file of an
ruengeler870a7f62012-05-25 14:42:52 +000074example program. In addition there are two applications in the folder \textit{programs} that can be built and run.
ruengelerb6a39f82012-05-25 12:57:43 +000075
76\subsection{Building the Library and the Applications}
77\subsubsection{Unix-like Operating Systems}
78In the folder \textit{usrsctp} type
79\begin{verbatim}
Felix Weinranke2a0eff2015-11-23 01:39:21 +010080./bootstrap
ruengelerb6a39f82012-05-25 12:57:43 +000081./configure
82make
83\end{verbatim}
84Now, the library \textit{libusrsctp.la} has been built in the subdirectory \textit{usrsctplib}, and the example
85programs are ready to run from the subdirectory \textit{programs}.
86
87If you have root privileges or are in the sudoer group, you can install the library in \textit{/usr/local/lib}
88and copy the header file to \textit{/usr/include} with the command
89\begin{verbatim}
90sudo make install
91\end{verbatim}
92
93\subsubsection{Windows}
94On Windows you need a compiler like Microsoft Visual Studio. You can build the library and the
95example programs with the command line tool of the compiler by typing
96\begin{verbatim}
97nmake -f Makefile.nmake
98\end{verbatim}
99in the directory \textit{usrsctp}.
100
ruengeler870a7f62012-05-25 14:42:52 +0000101\subsection{Running the Test Programs}
102There are two test programs included, a discard server and a client. You can run both to send data from the
103client to the server. The client reads data from stdin and sends them to the server, which prints the message
104in the terminal and discards it. The sources of the server are also provided in Section~\ref{server} and those
105of the client in Section~\ref{client}.
106
107\subsubsection{Using UDP Encapsulation}
108Both programs can either send data over SCTP directly or use UDP encapsulation, thus encapsulating the
109SCTP packet in a UDP datagram. The first mode works on loopback or in a protected setup without any
110NAT boxes involved. In all other cases it is better to use UDP encapsulation.
111
112The usage of the discard\_server is
113\begin{verbatim}
114discard_server [local_encaps_port remote_encaps_port]
115\end{verbatim}
ruengelerfa14a2a2012-05-30 09:49:03 +0000116For UDP encapsulation the ports have to be specified. The local and remote encapsulation ports can be arbitrarily
ruengeler870a7f62012-05-25 14:42:52 +0000117set.
118For example, you can call
119\begin{verbatim}
120./discard_server 11111 22222
121\end{verbatim}
122on a Unix-like OS and
123\begin{verbatim}
124discard_server.exe 11111 22222
125\end{verbatim}
126on Windows.
127
128The client needs two additional parameters, the server's address and its port.
129Its usage is
130\begin{verbatim}
t00fcxen891a25c2014-12-13 10:01:40 +0000131client remote_addr remote_port [local_port local_encaps_port remote_encaps_port]
ruengeler870a7f62012-05-25 14:42:52 +0000132\end{verbatim}
133The remote address is the server's address. If client and server are started on the same machine,
134the loopback address 127.0.0.1 can be used for Unix-like OSs and the local address on Windows.
135The discard port is 9, thus 9 has to be taken as remote port. The encapsulation ports have to
136match those of the server, i.e. the server's local\_encaps\_port is the client's
137remote\_encaps\_port and vice versa. Thus, the client can be started with
138\begin{verbatim}
t00fcxen891a25c2014-12-13 10:01:40 +0000139./client 127.0.0.1 9 0 22222 11111
ruengeler870a7f62012-05-25 14:42:52 +0000140\end{verbatim}
141on a Unix-like OS and
142\begin{verbatim}
t00fcxen891a25c2014-12-13 10:01:40 +0000143client.exe 192.168.0.1 9 0 22222 11111
ruengeler870a7f62012-05-25 14:42:52 +0000144\end{verbatim}
145on Windows provided your local IP address is 192.168.0.1.
146
147\subsubsection{Sending over SCTP}
148To send data over SCTP directly you might need root privileges because raw sockets are used.
149Thus instead of specifying the encapsulation ports you have to start the programs prepending
150\texttt{sudo} or in case of Windows start the program from an administrator console.
151
152\subsubsection{Using the Callback API}
153Instead of asking constantly for new data, a callback API can be used that is triggered by
154SCTP. A callback function has to be registered that will be called whenever data is ready to
155be delivered to the application.
156
157The discard\_server has a flag to switch between the two modi. If use\_cb is set to 1, the
158callback API will be used. To change the setting, just set the flag and compile the program again.
159
ruengelerb6a39f82012-05-25 12:57:43 +0000160
161
162
163\section{Basic Operations}
ruengelerfa14a2a2012-05-30 09:49:03 +0000164All system calls start with the prefix \textit{usrsctp\_} to distinguish them from the kernel variants.
ruengelerb6a39f82012-05-25 12:57:43 +0000165Some of them are changed to account for the different demands in the userland environment.
166
167\subsection{Differences to RFC 6458}
168\subsubsection{usrsctp\_init()}
ruengelerfa14a2a2012-05-30 09:49:03 +0000169Every application has to start with \textit{usrsctp\_init()}. This function calls \textit{sctp\_init()} and reserves
ruengelerb6a39f82012-05-25 12:57:43 +0000170the memory necessary to administer the data transfer.
171The function prototype is
172\begin{verbatim}
173void
174usrsctp_init(uint16_t udp_port)
175\end{verbatim}
176As it is not always possible to send data directly over SCTP because not all NAT boxes can
177process SCTP packets, the data can be sent over UDP. To encapsulate SCTP into UDP
178a UDP port has to be specified, to which the datagrams can be sent. This local UDP port is set
179with the parameter \texttt{udp\_port}. The default value is 9899, the standard UDP encapsulation port.
180If UDP encapsulation is not necessary, the UDP port has to be set to 0.
181
182\subsubsection{usrsctp\_finish()}
ruengelerfa14a2a2012-05-30 09:49:03 +0000183At the end of the program \textit{usrsctp\_finish()} should be called to free all the memory that has been
ruengelerb6a39f82012-05-25 12:57:43 +0000184allocated before.
185The function prototype is
186\begin{verbatim}
187int
188usrsctp_finish(void).
189\end{verbatim}
190The return code is 0 on success and -1 in case of an error.
191
192\subsubsection{usrsctp\_socket()}
ruengelerfa14a2a2012-05-30 09:49:03 +0000193A representation of an SCTP endpoint is a socket. Is it created with \textit{usrsctp\_socket()}.
Bruce Mitchenerce3056c2018-02-19 21:21:59 +0700194The function prototype is:
ruengelerb6a39f82012-05-25 12:57:43 +0000195\begin{verbatim}
196struct socket *
197usrsctp_socket(int domain,
198 int type,
199 int protocol,
200 int (*receive_cb)(struct socket *sock,
201 union sctp_sockstore addr,
202 void *data,
203 size_t datalen,
204 struct sctp_rcvinfo,
Bruce Mitchenerce3056c2018-02-19 21:21:59 +0700205 int flags,
206 void *ulp_info),
ruengelerb6a39f82012-05-25 12:57:43 +0000207 int (*send_cb)(struct socket *sock,
208 uint32_t sb_free),
Bruce Mitchenerce3056c2018-02-19 21:21:59 +0700209 uint32_t sb_threshold,
210 void *ulp_info).
ruengelerb6a39f82012-05-25 12:57:43 +0000211\end{verbatim}
Bruce Mitchenerce3056c2018-02-19 21:21:59 +0700212The arguments taken from RFC~6458 are:
ruengelerfa14a2a2012-05-30 09:49:03 +0000213\begin{itemize}
Bruce Mitchenerce3056c2018-02-19 21:21:59 +0700214\item domain: PF\_INET or PF\_INET6 can be used.
ruengelerfa14a2a2012-05-30 09:49:03 +0000215\item type: In case of a one-to-many style socket it is SOCK\_SEQPACKET, in case of a one-to-one style
216socket it is SOCK\_STREAM. For an explanation of the differences between the socket types please
217refer to RFC~6458.
218\item protocol: Set IPPROTO\_SCTP.
219\end{itemize}
220
Bruce Mitchenerce3056c2018-02-19 21:21:59 +0700221In usrsctp, a callback API can be used.
222\begin{itemize}
223\item The function pointers of the receive and send callbacks are new arguments to the socket call. If no callback API is used, these must be \textit{NULL}.
224\item The \textit{sb\_threshold} specifies the amount of free space in the send socket buffer before the send function in the application is called. If a send callback function is specified and \textit{sb\_threshold} is 0, the function is called whenever there is room in the send socket buffer.
225\item Additional data may be passed along within the \textit{ulp\_info} parameter. This value will be passed to the \textit{receive\_cb} when it is invoked.
226\end{itemize}
ruengelerb6a39f82012-05-25 12:57:43 +0000227
ruengelerfa14a2a2012-05-30 09:49:03 +0000228On success \textit{usrsctp\_socket()} returns the pointer to the new socket in the \texttt{struct socket} data type.
229It will be needed in all other system calls. In case of a failure NULL is returned and
230errno is set to the appropriate error code.
231
ruengelerb6a39f82012-05-25 12:57:43 +0000232\subsubsection{usrsctp\_close()}
233
ruengelerfa14a2a2012-05-30 09:49:03 +0000234The function prototype of \textit{usrsctp\_close()} is
ruengelerb6a39f82012-05-25 12:57:43 +0000235\begin{verbatim}
236void
237usrsctp_close(struct socket *so).
238 \end{verbatim}
239Thus the only difference is the absence of a return code.
240
241\subsection{Same Functionality as RFC 6458}
ruengelerfa14a2a2012-05-30 09:49:03 +0000242The following functions have the same functionality as their kernel pendants. There prototypes
243are described in the following subsections. For a detailed description please refer to RFC~6458.
ruengelerb6a39f82012-05-25 12:57:43 +0000244
ruengelerfa14a2a2012-05-30 09:49:03 +0000245\subsubsection{usrsctp\_bind()}
246The function prototype of \textit{usrsctp\_bind()} is
ruengelerb6a39f82012-05-25 12:57:43 +0000247\begin{verbatim}
248int
249usrsctp_bind(struct socket *so,
250 struct sockaddr *addr,
251 socklen_t addrlen).
ruengelerfa14a2a2012-05-30 09:49:03 +0000252\end{verbatim}
253The arguments are
254\begin{itemize}
255\item so: Pointer to the socket as returned by \textit{usrsctp\_socket()}.
256\item addr: The address structure (struct sockaddr\_in for an IPv4 address
257 or struct sockaddr\_in6 for an IPv6 address).
258\item addrlen: The size of the address structure.
259\end{itemize}
260\textit{usrsctp\_bind()} returns 0 on success and -1 in case of an error.
ruengelerb6a39f82012-05-25 12:57:43 +0000261
ruengelerfa14a2a2012-05-30 09:49:03 +0000262\subsubsection{usrsctp\_listen()}
263The function prototype of \textit{usrsctp\_listen()} is
ruengelerb6a39f82012-05-25 12:57:43 +0000264\begin{verbatim}
265int
266usrsctp_listen(struct socket *so,
267 int backlog).
268 \end{verbatim}
ruengelerfa14a2a2012-05-30 09:49:03 +0000269The arguments are
270\begin{itemize}
271\item so: Pointer to the socket as returned by \textit{usrsctp\_socket()}.
272\item backlog: If backlog is non-zero, enable listening, else disable
273 listening.
274\end{itemize}
275\textit{usrsctp\_listen()} returns 0 on success and -1 in case of an error.
ruengelerb6a39f82012-05-25 12:57:43 +0000276
ruengelerfa14a2a2012-05-30 09:49:03 +0000277\subsubsection{usrsctp\_accept()}
278The function prototype of \textit{usrsctp\_accept()} is
ruengelerb6a39f82012-05-25 12:57:43 +0000279\begin{verbatim}
280struct socket *
281usrsctp_accept(struct socket *so,
282 struct sockaddr * addr,
283 socklen_t * addrlen).
284 \end{verbatim}
ruengelerfa14a2a2012-05-30 09:49:03 +0000285 The arguments are
286\begin{itemize}
287\item so: Pointer to the socket as returned by \textit{usrsctp\_socket()}.
288\item addr: On return, the primary address of the peer (struct sockaddr\_in for an IPv4 address or
289 struct sockaddr\_in6 for an IPv6 address).
290\item addrlen: Size of the returned address structure.
291\end{itemize}
292\textit{usrsctp\_accept()} returns the accepted socket on success and NULL in case of an error.
293
294\subsubsection{usrsctp\_connect()}
295The function prototype of \textit{usrsctp\_connect()} is
ruengelerb6a39f82012-05-25 12:57:43 +0000296\begin{verbatim}
297int
298usrsctp_connect(struct socket *so,
299 struct sockaddr *name,
300 socklen_t addrlen)
301 \end{verbatim}
ruengelerfa14a2a2012-05-30 09:49:03 +0000302The arguments are
303\begin{itemize}
304\item so: Pointer to the socket as returned by \textit{usrsctp\_socket()}.
305 \item name: Address of the peer to connect to (struct sockaddr\_in for an IPv4 address or
306 struct sockaddr\_in6 for an IPv6 address).
307\item addrlen: Size of the peer's address.
308\end{itemize}
309\textit{usrsctp\_connect()} returns 0 on success and -1 in case of an error.
310
311\subsubsection{usrsctp\_shutdown()}
312The function prototype of \textit{usrsctp\_shutdown()} is
ruengelerb6a39f82012-05-25 12:57:43 +0000313\begin{verbatim}
314int
315usrsctp_shutdown(struct socket *so, int how).
316\end{verbatim}
ruengelerfa14a2a2012-05-30 09:49:03 +0000317The arguments are
318\begin{itemize}
319\item so: Pointer to the socket of the association to be closed.
320\item how: Specifies the type of shutdown. The values are as follows:
321\begin{itemize}
322\item SHUT\_RD: Disables further receive operations. No SCTP protocol
323 action is taken.
324\item SHUT\_WR: Disables further send operations, and initiates the SCTP
325 shutdown sequence.
326\item SHUT\_RDWR: Disables further send and receive operations, and
327 initiates the SCTP shutdown sequence.
328\end{itemize}
329\end{itemize}
Bruce Mitchener92b71982018-02-05 21:57:54 +0700330\textit{usrsctp\_shutdown()} returns 0 on success and -1 in case of an error.
ruengelerb6a39f82012-05-25 12:57:43 +0000331
332\section{Sending and Receiving Data}
333Since the publication of RFC~6458 there is only one function for sending and one for receiving
334that is not deprecated. Therefore, only these two are described here.
335
336\subsection{usrsctp\_sendv()}
337The function prototype is
338\begin{verbatim}
339ssize_t
340usrsctp_sendv(struct socket *so,
341 const void *data,
342 size_t len,
343 struct sockaddr *addrs,
344 int addrcnt,
345 void *info,
346 socklen_t infolen,
347 unsigned int infotype,
348 int flags).
349\end{verbatim}
ruengelerfa14a2a2012-05-30 09:49:03 +0000350The arguments are
351\begin{itemize}
352\item so: The socket to send data on.
353\item data: As it is more convenient to send data in a buffer and not a \texttt{struct iovec} data structure, we
354chose to pass the data as a void pointer.
355\item len: Length of the data.
356\item addrs: In this version of usrsctp at most one destination address is supported. In the case of a connected
357socket, the parameter \texttt{addrs} can be set to NULL.
358\item addrcnt: Number of addresses. As at most one address is supported, addrcnt is 0 if addrs is NULL and
3591 otherwise.
360\item info: Additional information for a message is stored in \texttt{void *info}. The data types \texttt{struct~sctp\_sndinfo},
361\texttt{struct~sctp\_prinfo}, and \texttt{struct} \linebreak \texttt{sctp\_sendv\_spa} are supported as defined in
362RFC~6458. Support for \texttt{structsctp\_authinfo} is not implemented yet, therefore, errno is set EINVAL
363and -1 will be returned, if it is used.
364\item infolen: Length of info in bytes.
365\item infotype: Identifies the type of the information provided in info. Possible values are
366SCTP\_SENDV\_NOINFO, SCTP\_SENDV\_SNDINFO, \linebreak SCTP\_SENDV\_PRINFO, SCTP\_SENDV\_SPA.
367For additional information please refer to RFC~6458.
368\item flags: Flags as described in RFC~6458.
369\end{itemize}
ruengelerb6a39f82012-05-25 12:57:43 +0000370
ruengelerfa14a2a2012-05-30 09:49:03 +0000371\textit{usrsctp\_sendv()} returns the number of bytes sent, or -1 if an error
372occurred. The variable errno is then set appropriately.
ruengelerb6a39f82012-05-25 12:57:43 +0000373
ruengelerfa14a2a2012-05-30 09:49:03 +0000374\subsection{usrsctp\_recvv()}
ruengelerb6a39f82012-05-25 12:57:43 +0000375The function prototype is
376\begin{verbatim}
377ssize_t
ruengelerfa14a2a2012-05-30 09:49:03 +0000378usrsctp_recvv(struct socket *so,
ruengelerb6a39f82012-05-25 12:57:43 +0000379 void *dbuf,
380 size_t len,
381 struct sockaddr *from,
382 socklen_t * fromlen,
383 void *info,
384 socklen_t *infolen,
385 unsigned int *infotype,
386 int *msg_flags).
387\end{verbatim}
ruengelerfa14a2a2012-05-30 09:49:03 +0000388The arguments are
389\begin{itemize}
390\item so: The socket to receive data on.
391\item dbuf: Analog to \textit{usrsctp\_sendv()} the data is returned in a buffer.
392\item len: Length of the buffer in bytes.
393\item from: A pointer to an address to be filled with the sender of the
394 received message's address.
395\item fromlen: An in/out parameter describing the from length.
396\item info: A pointer to the buffer to hold the attributes of the received
397 message. The structure type of info is determined by the
398 infotype parameter. The attributes returned in \texttt{info} have to be
399 handled in the same way as specified in RFC~6458.
400\item infolen: An in/out parameter describing the size of the info buffer.
401\item infotype: On return, *infotype is set to the type of the info
402 buffer. The current defined values are SCTP\_RECVV\_NOINFO,
403 SCTP\_RECVV\_RCVINFO, SCTP\_RECVV\_NXTINFO, and
404 SCTP\_RECVV\_RN. A detailed description is given in RFC~6458.
405\item flags: A pointer to an integer to be filled with any message flags
406 (e.g., MSG\_NOTIFICATION). Note that this field is an in/out
407 parameter. Options for the receive may also be passed into the
408 value (e.g., MSG\_EOR). Returning from the call, the flags' value
409 will differ from its original value.
410\end{itemize}
411
412\textit{usrsctp\_recvv()} returns the number of bytes sent, or -1 if an error
413occurred. The variable errno is then set appropriately.
414
415
ruengelerb6a39f82012-05-25 12:57:43 +0000416
417\section{Socket Options}
ruengelerfa14a2a2012-05-30 09:49:03 +0000418Socket options are used to change the default behavior of socket calls.
419Their behavior is specified in RFC~6458. The functions to get or set them are
ruengelerb6a39f82012-05-25 12:57:43 +0000420
421\begin{verbatim}
422int
423usrsctp_getsockopt(struct socket *so,
424 int level,
425 int optname,
426 void *optval,
427 socklen_t *optlen)
428\end{verbatim}
429and
430\begin{verbatim}
431int
432usrsctp_setsockopt(struct socket *so,
433 int level,
434 int optname,
435 const void *optval,
436 socklen_t optlen).
437\end{verbatim}
438
ruengelerfa14a2a2012-05-30 09:49:03 +0000439and the arguments are
440\begin{itemize}
441\item so: The socket of type struct socket.
442\item level: Set to IPPROTO\_SCTP for all SCTP options.
443\item optname: The option name as specified in Table~\ref{options}.
444\item optval: The buffer to store the value of the option as specified in the second column of Table~\ref{options}.
445\item optlen: The size of the buffer (or the length of the option
446 returned in case of \textit{usrsctp\_getsockopt}).
447\end{itemize}
448
449These functions return 0 on success and -1 in case of an error.
450
ruengelerb6a39f82012-05-25 12:57:43 +0000451\begin{longtable}{|l|l|c|}
452\hline
453{\bfseries Option}&{\bfseries Datatype} &{\bfseries r/w}\tabularnewline
454\endhead
455\hline
456SCTP\_RTOINFO&struct sctp\_rtoinfo&r/w\tabularnewline \hline
457SCTP\_ASSOCINFO&struct sctp\_assocparams&r/w\tabularnewline \hline
458SCTP\_INITMSG&struct sctp\_initmsg&r/w\tabularnewline \hline
459SCTP\_NODELAY&int&r/w\tabularnewline \hline
460SCTP\_AUTOCLOSE&int&r/w\tabularnewline \hline
461SCTP\_PRIMARY\_ADDR&struct sctp\_setprim&r/w\tabularnewline \hline
462SCTP\_ADAPTATION\_LAYER&struct sctp\_setadaptation&r/w\tabularnewline \hline
463SCTP\_DISABLE\_FRAGMENTS&int&r/w\tabularnewline \hline
464SCTP\_PEER\_ADDR\_PARAMS&struct sctp\_paddrparams&r/w\tabularnewline \hline
465SCTP\_I\_WANT\_MAPPED\_V4\_ADDR&int&r/w\tabularnewline \hline
466SCTP\_MAXSEG&struct sctp\_assoc\_value&r/w\tabularnewline \hline
467SCTP\_DELAYED\_SACK&struct sctp\_sack\_info&r/w\tabularnewline \hline
468SCTP\_FRAGMENT\_INTERLEAVE&int&r/w\tabularnewline \hline
469SCTP\_PARTIAL\_DELIVERY\_POINT&int&r/w\tabularnewline \hline
470SCTP\_HMAC\_IDENT&struct sctp\_hmacalgo&r/w\tabularnewline \hline
471SCTP\_AUTH\_ACTIVE\_KEY&struct sctp\_authkeyid&r/w\tabularnewline \hline
472SCTP\_AUTO\_ASCONF&int&r/w\tabularnewline \hline
473SCTP\_MAX\_BURST&struct sctp\_assoc\_value&r/w\tabularnewline \hline
474SCTP\_CONTEXT&struct sctp\_assoc\_value&r/w\tabularnewline \hline
475SCTP\_EXPLICIT\_EOR&int&r/w\tabularnewline \hline
476SCTP\_REUSE\_PORT&int&r/w\tabularnewline \hline
477SCTP\_EVENT&struct sctp\_event&r/w\tabularnewline \hline
478SCTP\_RECVRCVINFO&int&r/w\tabularnewline \hline
479SCTP\_RECVNXTINFO&int&r/w\tabularnewline \hline
480SCTP\_DEFAULT\_SNDINFO&struct sctp\_sndinfo&r/w\tabularnewline \hline
481SCTP\_DEFAULT\_PRINFO&struct sctp\_default\_prinfo&r/w\tabularnewline \hline
482SCTP\_REMOTE\_UDP\_ENCAPS\_PORT&int&r/w\tabularnewline \hline
483SCTP\_ENABLE\_STREAM\_RESET&struct sctp\_assoc\_value&r/w\tabularnewline \hline
484SCTP\_STATUS&struct sctp\_status&r\tabularnewline \hline
485SCTP\_GET\_PEER\_ADDR\_INFO&struct sctp\_paddrinfo&r\tabularnewline \hline
486SCTP\_PEER\_AUTH\_CHUNKS&struct sctp\_authchunks&r\tabularnewline \hline
487SCTP\_LOCAL\_AUTH\_CHUNKS&struct sctp\_authchunks&r\tabularnewline \hline
488SCTP\_GET\_ASSOC\_NUMBER&uint32\_t&r\tabularnewline \hline
489SCTP\_GET\_ASSOC\_ID\_LIST&struct sctp\_assoc\_ids&r\tabularnewline \hline
490SCTP\_RESET\_STREAMS&struct sctp\_reset\_streams&w\tabularnewline \hline
491SCTP\_RESET\_ASSOC&struct sctp\_assoc\_t&w\tabularnewline \hline
492SCTP\_ADD\_STREAMS&struct sctp\_add\_streams&w\tabularnewline \hline
493\caption{Socket Options supported by usrsctp}
494\label{options}
495\end{longtable}
496An overview of the supported options is given in Table~\ref{options}. Their use is described in RFC~6458~\cite{socketAPI}, RFC~6525~\cite{streamReset}, and~\cite{udpencaps}.
497
498\section{Sysctl variables}
499
500In kernel implementations like for instance FreeBSD, it is possible to change parameters
501in the operating system. These parameters are called sysctl variables.
502
503In usrsctp applications can set or retrieve these variables with the functions
504\begin{verbatim}
505void
506usrsctp_sysctl_set_ ## (uint32_t value)
507\end{verbatim}
508and
509\begin{verbatim}
510uint32_t
511usrsctp_sysctl_get_ ## (void)
512\end{verbatim}
513respectively, where \#\# stands for the name of the variable.
514
515In the following paragraphs a short description of the parameters will be given.
516
517\subsection{Manipulate Memory}
518\subsubsection{usrsctp\_sysctl\_set\_sctp\_sendspace()}
519The space of the available send buffer can be changed from its default value of 262,144 bytes
520to a value between 0 and $2^{32}-1$ bytes.
521
522\subsubsection{usrsctp\_sysctl\_set\_sctp\_recvspace()}
523The space of the available receive buffer can be changed from its default value of 262,144 bytes
524to a value between 0 and $2^{32}-1$ bytes.
525
526\subsubsection{usrsctp\_sysctl\_set\_sctp\_hashtblsize()}
527The TCB (Thread Control Block) hash table sizes, i.e. the size of one TCB in the hash table, can be tuned between
5281 and $2^{32}-1$ bytes. The default value is 1,024 bytes. A TCB contains for instance pointers to the socket, the
529endpoint, information about the association and some statistic data.
530
531\subsubsection{usrsctp\_sysctl\_set\_sctp\_pcbtblsize()}
532The PCB (Protocol Control Block) hash table sizes, i.e. the size of one PCB in the hash table, can be tuned between
5331 and $2^{32}-1$ bytes. The default value is 256 bytes. The PCB contains all variables that characterize an endpoint.
534
535\subsubsection{usrsctp\_sysctl\_set\_sctp\_system\_free\_resc\_limit()}
536This parameters tunes the maximum number of cached resources in the system. It can be set between
5370 and $2^{32}-1$. The default value is 1000.
538
539\subsubsection{usrsctp\_sysctl\_set\_sctp\_asoc\_free\_resc\_limit()}
540This parameters tunes the maximum number of cached resources in an association. It can be set between
5410 and $2^{32}-1$. The default value is 10.
542
543\subsubsection{usrsctp\_sysctl\_set\_sctp\_mbuf\_threshold\_count()}
544Data is stored in mbufs. Several mbufs can be chained together. The maximum number of small mbufs in a chain
545can be set with this parameter, before an mbuf cluset is used. The default is 5.
546
547\subsubsection{usrsctp\_sysctl\_set\_sctp\_add\_more\_threshold()}
ruengeler6e3a3872012-05-30 13:28:03 +0000548TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000549This parameter configures the threshold below which more space should be added to a socket send buffer.
550The default value is 1452 bytes.
551
552
553\subsection{Configure RTO}
554The retransmission timeout (RTO), i.e. the time that controls the retransmission of messages, has
555several parameters, that can be changed, for example to shorten the time, before a message is
556retransmitted. The range of these parameters is between 0 and $2^{32}-1$~ms.
557
558\subsubsection{usrsctp\_sysctl\_set\_sctp\_rto\_max\_default()}
559The default value for the maximum retransmission timeout in ms is 60,000 (60~secs).
560
561\subsubsection{usrsctp\_sysctl\_set\_sctp\_rto\_min\_default()}
562The default value for the minimum retransmission timeout in ms is 1,000 (1~sec).
563
564\subsubsection{usrsctp\_sysctl\_set\_sctp\_rto\_initial\_default()}
565The default value for the initial retransmission timeout in ms is 3,000 (3~sec). This value is only
566needed before the first calculation of a round trip time took place.
567
568\subsubsection{usrsctp\_sysctl\_set\_sctp\_init\_rto\_max\_default()}
569The default value for the maximum retransmission timeout for an INIT chunk in ms is 60,000 (60~secs).
570
571
572\subsection{Set Timers}
573\subsubsection{usrsctp\_sysctl\_set\_sctp\_valid\_cookie\_life\_default()}
574A cookie has a specified life time. If it expires the cookie is not valid any more and an ABORT is sent.
575The default value in ms is 60,000 (60~secs).
576
577\subsubsection{usrsctp\_sysctl\_set\_sctp\_heartbeat\_interval\_default()}
578Set the default time between two heartbeats. The default is 30,000~ms.
579
580\subsubsection{usrsctp\_sysctl\_set\_sctp\_shutdown\_guard\_time\_default()}
581If a SHUTDOWN is not answered with a SHUTDOWN-ACK while the shutdown guard timer is still
582running, the association will be aborted after the default of 180~secs.
583
584\subsubsection{usrsctp\_sysctl\_set\_sctp\_pmtu\_raise\_time\_default()}
ruengeler6e3a3872012-05-30 13:28:03 +0000585TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000586To set the size of the packets to the highest value possible, the maximum transfer unit (MTU)
587of the complete path has to be known. The default time interval for the path mtu discovery
588is 600~secs.
589
590\subsubsection{usrsctp\_sysctl\_set\_sctp\_secret\_lifetime\_default()}
ruengeler6e3a3872012-05-30 13:28:03 +0000591TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000592The default secret lifetime of a server is 3600~secs.
593
594\subsubsection{usrsctp\_sysctl\_set\_sctp\_vtag\_time\_wait()}
ruengeler6e3a3872012-05-30 13:28:03 +0000595TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000596Vtag time wait time, 0 disables it. Default: 60~secs
597
598
599\subsection{Set Failure Limits}
600Transmissions and retransmissions of messages might fail. To protect the system against too many
601retransmissions, limits have to be defined.
602
603\subsubsection{usrsctp\_sysctl\_set\_sctp\_init\_rtx\_max\_default()}
604The default maximum number of retransmissions of an INIT chunks is 8, before an ABORT is sent.
605
606\subsubsection{usrsctp\_sysctl\_set\_sctp\_assoc\_rtx\_max\_default()}
607This parameter sets the maximum number of failed retransmissions before the association is aborted.
Bruce Mitchener084b8ea2018-02-04 23:10:41 +0700608The default value is 10.
ruengelerb6a39f82012-05-25 12:57:43 +0000609
610\subsubsection{usrsctp\_sysctl\_set\_sctp\_path\_rtx\_max\_default()}
611This parameter sets the maximum number of path failures before the association is aborted.
612The default value is 5. Notice that the number of paths multiplied by this value should be
613equal to sctp\_assoc\_rtx\_max\_default. That means that the default configuration is good for two
614paths.
615
616\subsubsection{usrsctp\_sysctl\_set\_sctp\_max\_retran\_chunk()}
617The parameter configures how many times an unlucky chunk can be retransmitted before the
618association aborts. The default is set to 30.
619
620\subsubsection{usrsctp\_sysctl\_set\_sctp\_path\_pf\_threshold()}
ruengeler6e3a3872012-05-30 13:28:03 +0000621TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000622Default potentially failed threshold. Default: 65535
623
624\subsubsection{usrsctp\_sysctl\_set\_sctp\_abort\_if\_one\_2\_one\_hits\_limit()}
ruengeler6e3a3872012-05-30 13:28:03 +0000625TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000626When one-2-one hits qlimit abort. Default: 0
627
628
629\subsection{Control the Sending of SACKs}
630\subsubsection{usrsctp\_sysctl\_set\_sctp\_sack\_freq\_default()}
631The SACK frequency defines the number of packets that are awaited, before a SACK is sent.
632The default value is 2.
633
634\subsubsection{usrsctp\_sysctl\_set\_sctp\_delayed\_sack\_time\_default()}
635As a SACK (Selective Acknowlegment) is sent after every other packet, a timer is set to send a
636SACK in case another packet does not arrive in due time. The default value for this timer is
637200~ms.
638
639\subsubsection{usrsctp\_sysctl\_set\_sctp\_strict\_sacks()}
ruengeler6e3a3872012-05-30 13:28:03 +0000640TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000641This is a flag to turn the controlling of the coherence of SACKs on or off. The default value is
6421 (on).
643
644\subsubsection{usrsctp\_sysctl\_set\_sctp\_nr\_sack\_on\_off()}
645If a slow hosts receives data on a lossy link it is possible that its receiver window is full and new
646data can only be accepted if one chunk with a higher TSN (Transmission Sequence Number) that has
647previously been acknowledged is dropped. As a consequence the sender has to store data, even if
648they have been acknowledged in case they have to be retransmitted. If this behavior is not necessary,
649non-renegable SACKs can be turned on.
650By default the use of non-renegable SACKs is turned off.
651
652\subsubsection{usrsctp\_sysctl\_set\_sctp\_enable\_sack\_immediately()}
653In some cases it is not desirable to wait for the SACK timer to expire before a SACK is sent. In these
654cases a bit called SACK-IMMEDIATELY~\cite{sack-imm} can be set to provoke the instant sending of a SACK.
655The default is to turn it off.
656
657\subsubsection{usrsctp\_sysctl\_set\_sctp\_L2\_abc\_variable()}
ruengeler6e3a3872012-05-30 13:28:03 +0000658TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000659SCTP ABC max increase per SACK (L). Default: 1
660
661\subsection{Change Max Burst}
662Max burst defines the maximum number of packets that may be sent in one flight.
663
664\subsubsection{usrsctp\_sysctl\_set\_sctp\_max\_burst\_default()}
665The default value for max burst is 0, which means that the number of packets sent as a flight
666is not limited by this parameter, but may be by another one, see the next paragraph.
667
668\subsubsection{usrsctp\_sysctl\_set\_sctp\_use\_cwnd\_based\_maxburst()}
669The use of max burst is based on the size of the congestion window (cwnd).
670This parameter is set by default.
671
672\subsubsection{usrsctp\_sysctl\_set\_sctp\_hb\_maxburst()}
673Heartbeats are mostly used to verify a path. Their number can be limited. The default is 4.
674
675\subsubsection{usrsctp\_sysctl\_set\_sctp\_fr\_max\_burst\_default()}
ruengeler6e3a3872012-05-30 13:28:03 +0000676In the state of fast retransmission the number of packet bursts can be limited. The default
ruengelerb6a39f82012-05-25 12:57:43 +0000677value is 4.
678
679
680\subsection{Handle Chunks}
681\subsubsection{usrsctp\_sysctl\_set\_sctp\_peer\_chunk\_oh()}
682In order to keep track of the peer's advertised receiver window, the sender calculates the window by
683subtracting the amount of data sent. Yet, some OSs reduce the receiver window by the real space needed
684to store the data. This parameter sets the additional amount to debit the peer's receiver window per
685chunk sent. The default value is 256, which is the value needed by FreeBSD.
686
687\subsubsection{usrsctp\_sysctl\_set\_sctp\_max\_chunks\_on\_queue()}
ruengeler6e3a3872012-05-30 13:28:03 +0000688This parameter sets the maximum number of chunks that can be queued per association. The default
ruengelerb6a39f82012-05-25 12:57:43 +0000689value is 512.
690
691\subsubsection{usrsctp\_sysctl\_set\_sctp\_min\_split\_point()}
ruengeler6e3a3872012-05-30 13:28:03 +0000692TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000693The minimum size when splitting a chunk is 2904 bytes by default.
694
695\subsubsection{usrsctp\_sysctl\_set\_sctp\_chunkscale()}
ruengeler6e3a3872012-05-30 13:28:03 +0000696TBD
697This parameter can be tuned for scaling of number of chunks and messages. The default is10.
698
ruengelerb6a39f82012-05-25 12:57:43 +0000699\subsubsection{usrsctp\_sysctl\_set\_sctp\_min\_residual()}
ruengeler6e3a3872012-05-30 13:28:03 +0000700TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000701This parameter configures the minimum size of the residual data chunk in the second
702part of the split. The default is 1452.
703
704
705\subsection{Calculate RTT}
706The calculation of the round trip time (RTT) depends on several parameters.
707
708\subsubsection{usrsctp\_sysctl\_set\_sctp\_rttvar\_bw()}
ruengeler6e3a3872012-05-30 13:28:03 +0000709TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000710Shift amount for bw smoothing on rtt calc. Default: 4
711
712\subsubsection{usrsctp\_sysctl\_set\_sctp\_rttvar\_rtt()}
ruengeler6e3a3872012-05-30 13:28:03 +0000713TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000714Shift amount for rtt smoothing on rtt calc. Default: 5
715
716\subsubsection{usrsctp\_sysctl\_set\_sctp\_rttvar\_eqret()}
ruengeler6e3a3872012-05-30 13:28:03 +0000717TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000718What to return when rtt and bw are unchanged. Default: 0
719
720
721\subsection{Influence the Congestion Control}
722The congestion control should protect the network against fast senders.
723
724\subsubsection{usrsctp\_sysctl\_set\_sctp\_ecn\_enable}
725Explicit congestion notifications are turned on by default.
726
727\subsubsection{usrsctp\_sysctl\_set\_sctp\_default\_cc\_module()}
728This parameter sets the default algorithm for the congestion control.
729Default is 0, i.e. the one specified in RFC~4960.
730
731\subsubsection{usrsctp\_sysctl\_set\_sctp\_initial\_cwnd()}
732Set the initial congestion window in MTUs. The default is 3.
733
734\subsubsection{usrsctp\_sysctl\_set\_sctp\_use\_dccc\_ecn()}
ruengeler6e3a3872012-05-30 13:28:03 +0000735TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000736Enable for RTCC CC datacenter ECN. Default: 1
737
738\subsubsection{usrsctp\_sysctl\_set\_sctp\_steady\_step()}
ruengeler6e3a3872012-05-30 13:28:03 +0000739TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000740How many the sames it takes to try step down of cwnd. Default: 20
741
742
743\subsection{Configure AUTH and ADD-IP}
744An important extension of SCTP is the dynamic address reconfiguration~\cite{addip}, also known as
745ADD-IP, which allows the changing of addresses during the lifetime of an association.
746For this feature the AUTH extension~\cite{auth} is necessary.
747
748\subsubsection{usrsctp\_sysctl\_set\_sctp\_auto\_asconf()}
749If SCTP Auto-ASCONF is enabled, the peer is informed automatically when a new address
750is added or removed. This feature is enabled by default.
751
752\subsubsection{usrsctp\_sysctl\_set\_sctp\_multiple\_asconfs()}
753By default the sending of multiple ASCONFs is disabled.
754
755\subsubsection{usrsctp\_sysctl\_set\_sctp\_auth\_disable()}
756The use of AUTH, which is normally turned on, can be disabled by setting this parameter to 1.
757
758\subsubsection{usrsctp\_sysctl\_set\_sctp\_asconf\_auth\_nochk()}
759It is also possible to disable the requirement to use AUTH in conjunction with ADD-IP by setting this parameter
760to 1.
761
762
763\subsection{Concurrent Multipath Transfer (CMT)}
764A prominent feature of SCTP is the possibility to use several addresses for the same association.
765One is the primary path, and the others are needed in case of a path failure. Using CMT the data is sent
766on several paths to enhance the throughput.
767
768\subsubsection{usrsctp\_sysctl\_set\_sctp\_cmt\_on\_off()}
769To turn CMT on, this parameter has to be set to 1.
770
771\subsubsection{usrsctp\_sysctl\_set\_sctp\_cmt\_use\_dac()}
772To use delayed acknowledgments with CMT this parameter has to be set to 1.
773
774\subsubsection{usrsctp\_sysctl\_set\_sctp\_buffer\_splitting()}
775For CMT it makes sense to split the send and receive buffer to have shares for each path.
776By default buffer splitting is turned off.
777
778
779\subsection{Network Address Translation (NAT)}
780To be able to pass NAT boxes, the boxes have to handle SCTP packets in a specific way.
781
782\subsubsection{usrsctp\_sysctl\_set\_sctp\_nat\_friendly()}
783SCTP NAT friendly operation. Default:1
784
785\subsubsection{usrsctp\_sysctl\_set\_sctp\_inits\_include\_nat\_friendly()}
786Enable sending of the nat-friendly SCTP option on INITs. Default: 0
787
788\subsubsection{usrsctp\_sysctl\_set\_sctp\_udp\_tunneling\_port()}
789Set the SCTP/UDP tunneling port. Default: 9899
790
791\subsection{SCTP Mobility}
792\subsubsection{usrsctp\_sysctl\_set\_sctp\_mobility\_base()}
ruengeler6e3a3872012-05-30 13:28:03 +0000793TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000794Enable SCTP base mobility. Default: 0
795
796
797\subsubsection{usrsctp\_sysctl\_set\_sctp\_mobility\_fasthandoff()}
ruengeler6e3a3872012-05-30 13:28:03 +0000798TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000799Enable SCTP fast handoff. default: 0
800
801
802\subsection{Miscellaneous}
803\subsubsection{usrsctp\_sysctl\_set\_sctp\_no\_csum\_on\_loopback()}
804Calculating the checksum for packets sent on loopback is turned off by default.
805To turn it on, set this parameter to 0.
806
807\subsubsection{usrsctp\_sysctl\_set\_sctp\_nr\_outgoing\_streams\_default()}
808The peer is notified about the number of outgoing streams in the INIT or INIT-ACK chunk.
809The default is 10.
810
811\subsubsection{usrsctp\_sysctl\_set\_sctp\_do\_drain()}
812Determines whether SCTP should respond to the drain calls. Default: 1
813
814\subsubsection{usrsctp\_sysctl\_set\_sctp\_strict\_data\_order()}
ruengeler6e3a3872012-05-30 13:28:03 +0000815TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000816Enforce strict data ordering, abort if control inside data. Default: 0
817
818\subsubsection{usrsctp\_sysctl\_set\_sctp\_default\_ss\_module()}
819Set the default stream scheduling module. Implemented modules are:
820SCTP\_SS\_DEFAULT, SCTP\_SS\_ROUND\_ROBIN, SCTP\_SS\_ROUND\_ROBIN\_PACKET,
821SCTP\_SS\_PRIORITY, SCTP\_SS\_FAIR\_BANDWITH, and SCTP\_SS\_FIRST\_COME.
822
823\subsubsection{usrsctp\_sysctl\_set\_sctp\_default\_frag\_interleave()}
ruengeler6e3a3872012-05-30 13:28:03 +0000824TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000825Default fragment interleave level. Default: 1
826
827\subsubsection{usrsctp\_sysctl\_set\_sctp\_blackhole()}
ruengeler6e3a3872012-05-30 13:28:03 +0000828TBD
ruengelerb6a39f82012-05-25 12:57:43 +0000829Enable SCTP blackholing. Default: 0
830
831\subsubsection{usrsctp\_sysctl\_set\_sctp\_logging\_level()}
832Set the logging level. The default is 0.
833
834
835\subsubsection{usrsctp\_sysctl\_set\_sctp\_debug\_on()}
836Turn debug output on or off. It is disabled by default. To obtain debug output,
837SCTP\_DEBUG has to be set as a compile flag.
838
839
840%The following variables are supported:
841%\begin{longtable}{|l|l|c|}
842%\hline
843%{\bfseries Parameter}&{\bfseries Meaning}&{\bfseries Default Value} \tabularnewline
844%\endhead
845%\hline
846%sctp\_sendspace&Send buffer space&1864135\tabularnewline \hline
847%sctp\_recvspace&Receive buffer space&1864135 \tabularnewline \hline
848%sctp\_hashtblsize&Tunable for TCB hash table sizes&1024 \tabularnewline \hline
849%sctp\_pcbtblsize&Tunable for PCB hash table sizes&256 \tabularnewline \hline
850%sctp\_system\_free\_resc\_limit&Cached resources in the system&1000 \tabularnewline \hline
851%sctp\_asoc\_free\_resc\_limit&Cashed resources in an association&10 \tabularnewline \hline
852%sctp\_rto\_max\_default&Default value for RTO\_max&60000~ms \tabularnewline \hline
853%sctp\_rto\_min\_default&Default value for RTO\_min&1000~ms \tabularnewline \hline
854%sctp\_rto\_initial\_default&Default value for RTO\_initial&3000~ms \tabularnewline \hline
855%sctp\_init\_rto\_max\_default&Default value for the maximum RTO&60000~ms \tabularnewline
856 % &for sending an INIT& \tabularnewline \hline
857%sctp\_valid\_cookie\_life\_default&Valid cookie life time&60000~ms \tabularnewline \hline
858%sctp\_init\_rtx\_max\_default&Maximum number of INIT retransmissions&8 \tabularnewline \hline
859%sctp\_assoc\_rtx\_max\_default&Maximum number of failed retransmissions&10\tabularnewline
860% & before the association is aborted&\tabularnewline \hline
861%sctp\_path\_rtx\_max\_default&Maximum number of failed retransmissions&5\tabularnewline
862% &before a path fails&\tabularnewline \hline
863%sctp\_ecn\_enable&Enabling explicit congestion notifications&1\tabularnewline \hline
864%sctp\_strict\_sacks&Control the coherence of SACKs&1 \tabularnewline \hline
865%sctp\_delayed\_sack\_time\_default&Default delayed SACK timer&200~ms\tabularnewline \hline
866%sctp\_sack\_freq\_default&Default SACK frequency&2 \tabularnewline \hline
867%sctp\_nr\_sack\_on\_off&Turn non-renegable SACKs on or off&0 \tabularnewline \hline
868%sctp\_enable\_sack\_immediately&Enable sending of the SACK-&0 \tabularnewline &IMMEDIATELY bit.&\tabularnewline \hline
869%sctp\_no\_csum\_on\_loopback&Enable the compilation of the checksum on&1 \tabularnewline
870% &packets sent on loopback&\tabularnewline \hline
871%sctp\_peer\_chunk\_oh&Amount to debit peers rwnd per chunk sent&256 \tabularnewline \hline
872%sctp\_max\_burst\_default&Default max burst for SCTP endpoints&0 \tabularnewline \hline
873%sctp\_use\_cwnd\_based\_maxburst&Use max burst based on the size of &1\tabularnewline % &the congestion window&\tabularnewline \hline
874%sctp\_hb\_maxburst&Confirmation Heartbeat max burst&4 \tabularnewline \hline
875%sctp\_max\_chunks\_on\_queue&Default max chunks on queue per asoc&512 \tabularnewline \hline
876%sctp\_min\_split\_point&Minimum size when splitting a chunk&2904 \tabularnewline \hline
877%sctp\_chunkscale&Tunable for Scaling of number of chunks and&10\tabularnewline
878% &messages&\tabularnewline \hline
879%sctp\_mbuf\_threshold\_count&Maximum number of small mbufs in a chain&5\tabularnewline \hline
880%sctp\_heartbeat\_interval\_default&Deafult time between two Heartbeats&30000~ms\tabularnewline \hline
881%sctp\_pmtu\_raise\_time\_default&Default PMTU raise timer&600~secs\tabularnewline \hline
882%sctp\_shutdown\_guard\_time\_default&Default shutdown guard timer&180~secs\tabularnewline \hline
883%sctp\_secret\_lifetime\_default&Default secret lifetime&3600~secs \tabularnewline \hline
884%sctp\_add\_more\_threshold&Threshold when more space should &1452\tabularnewline
885% &be added to a socket send buffer&\tabularnewline \hline
886%sctp\_nr\_outgoing\_streams\_default&Default number of outgoing streams&10\tabularnewline \hline
887%sctp\_cmt\_on\_off&Turn CMT on or off.&0\tabularnewline \hline
888%sctp\_cmt\_use\_dac&Use delayed acknowledgment for CMT&0\tabularnewline \hline
889%sctp\_fr\_max\_burst\_default&Default max burst for SCTP endpoints when &4\tabularnewline
890% &fast retransmitting&\tabularnewline \hline
891%sctp\_auto\_asconf&Enable SCTP Auto-ASCONF&1\tabularnewline \hline
892%sctp\_multiple\_asconfs&Enable SCTP Muliple-ASCONFs&0 \tabularnewline \hline
893%sctp\_asconf\_auth\_nochk&Disable SCTP ASCONF AUTH requirement&0\tabularnewline \hline
894%sctp\_auth\_disable&Disable SCTP AUTH function&0\tabularnewline \hline
895%sctp\_nat\_friendly&SCTP NAT friendly operation&1\tabularnewline \hline
896%sctp\_inits\_include\_nat\_friendly&Enable sending of the nat-friendly &0\tabularnewline
897% &SCTP option on INITs.&\tabularnewline \hline
898%sctp\_udp\_tunneling\_port&Set the SCTP/UDP tunneling port&9899\tabularnewline \hline
899%sctp\_do\_drain&Determines whether SCTP should respond&1\tabularnewline
900% &to the drain calls&\tabularnewline \hline
901%sctp\_abort\_if\_one\_2\_one\_hits\_limit&When one-2-one hits qlimit abort&0 \tabularnewline \hline
902%sctp\_strict\_data\_order&Enforce strict data ordering, abort if control&0\tabularnewline
903% &inside data&\tabularnewline \hline
904%sctp\_min\_residual&Minimum residual data chunk in second&1452\tabularnewline
905% &part of split&\tabularnewline \hline
906%sctp\_max\_retran\_chunk&Maximum times an unlucky chunk can be&30\tabularnewline
907% & retransmitted before the association aborts&\tabularnewline \hline
908%sctp\_default\_cc\_module&Default congestion control module&0\tabularnewline \hline
909%sctp\_default\_ss\_module&Default stream scheduling module&0 \tabularnewline \hline
910%sctp\_default\_frag\_interleave&Default fragment interleave level&1\tabularnewline \hline
911%sctp\_mobility\_base&Enable SCTP base mobility&0\tabularnewline \hline
912%sctp\_mobility\_fasthandoff&Enable SCTP fast handoff&0\tabularnewline \hline
913%sctp\_L2\_abc\_variable&SCTP ABC max increase per SACK (L)&1\tabularnewline \hline
914%sctp\_vtag\_time\_wait&Vtag time wait time, 0 disables it.&60~secs\tabularnewline \hline
915%sctp\_blackhole&Enable SCTP blackholing&0\tabularnewline \hline
916%sctp\_path\_pf\_threshold&Default potentially failed threshold&65535\tabularnewline \hline
917%sctp\_rttvar\_bw&Shift amount for bw smoothing on rtt calc&4 \tabularnewline \hline
918%sctp\_rttvar\_rtt&Shift amount for rtt smoothing on rtt calc&5 \tabularnewline \hline
919%sctp\_rttvar\_eqret &What to return when rtt and bw are&0\tabularnewline
920% &unchanged&\tabularnewline \hline
921%sctp\_steady\_step&How many the sames it takes to try step&20\tabularnewline
922% &down of cwnd&\tabularnewline \hline
923%sctp\_use\_dccc\_ecn&Enable for RTCC CC datacenter ECN&1 \tabularnewline \hline
924%sctp\_buffer\_splitting&Enable send/receive buffer splitting&0 \tabularnewline \hline
925%sctp\_initial\_cwnd&Initial congestion window in MTUs&3\tabularnewline \hline
926%sctp\_logging\_level&Logging level&0 \tabularnewline \hline
927%sctp\_debug\_on&Turns debug output on or off.&0 \tabularnewline \hline
928
929%\caption{Sysctl variables supported by usrsctp}
930%\end{longtable}
931
932\section{Examples}
ruengeler870a7f62012-05-25 14:42:52 +0000933\subsection{Discard Server}\label{server}
ruengelerb6a39f82012-05-25 12:57:43 +0000934\begin{verbatim}
935/*
936 * Copyright (C) 2011-2012 Michael Tuexen
937 *
938 * All rights reserved.
939 *
940 * Redistribution and use in source and binary forms, with or without
941 * modification, are permitted provided that the following conditions
942 * are met:
943 * 1. Redistributions of source code must retain the above copyright
944 * notice, this list of conditions and the following disclaimer.
945 * 2. Redistributions in binary form must reproduce the above copyright
946 * notice, this list of conditions and the following disclaimer in the
947 * documentation and/or other materials provided with the distribution.
948 * 3. Neither the name of the project nor the names of its contributors
949 * may be used to endorse or promote products derived from this software
950 * without specific prior written permission.
951 *
952 * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
953 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
954 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
955 * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
956 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
957 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
958 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
959 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
960 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
961 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
962 * SUCH DAMAGE.
963 */
964
965/*
966 * Usage: discard_server [local_encaps_port] [remote_encaps_port]
967 */
968
969#include <stdio.h>
970#include <stdlib.h>
971#include <string.h>
972#include <sys/types.h>
973#if !defined(__Userspace_os_Windows)
974#include <unistd.h>
975#include <sys/socket.h>
976#include <netinet/in.h>
977#include <arpa/inet.h>
978#endif
979#include <usrsctp.h>
980
981#define BUFFER_SIZE 10240
982
983const int use_cb = 0;
984
985static int
986receive_cb(struct socket *sock, union sctp_sockstore addr, void *data,
987 size_t datalen, struct sctp_rcvinfo rcv, int flags)
988{
989 char name[INET6_ADDRSTRLEN];
990
991 if (data) {
992 if (flags & MSG_NOTIFICATION) {
993 printf("Notification of length %d received.\n", (int)datalen);
994 } else {
995 printf("Msg of length %d received from %s:%u on stream %d with "
996 "SSN %u and TSN %u, PPID %d, context %u.\n",
997 (int)datalen,
998 addr.sa.sa_family == AF_INET ?
ruengeler870a7f62012-05-25 14:42:52 +0000999 inet_ntop(AF_INET, &addr.sin.sin_addr, name,
1000 INET6_ADDRSTRLEN):
1001 inet_ntop(AF_INET6, &addr.sin6.sin6_addr, name,
1002 INET6_ADDRSTRLEN),
ruengelerb6a39f82012-05-25 12:57:43 +00001003 ntohs(addr.sin.sin_port),
1004 rcv.rcv_sid,
1005 rcv.rcv_ssn,
1006 rcv.rcv_tsn,
1007 ntohl(rcv.rcv_ppid),
1008 rcv.rcv_context);
1009 }
1010 free(data);
1011 }
1012 return 1;
1013}
1014
1015int
1016main(int argc, char *argv[])
1017{
1018 struct socket *sock;
1019 struct sockaddr_in6 addr;
1020 struct sctp_udpencaps encaps;
1021 struct sctp_event event;
1022 uint16_t event_types[] = {SCTP_ASSOC_CHANGE,
ruengeler870a7f62012-05-25 14:42:52 +00001023 SCTP_PEER_ADDR_CHANGE,
1024 SCTP_REMOTE_ERROR,
1025 SCTP_SHUTDOWN_EVENT,
1026 SCTP_ADAPTATION_INDICATION,
1027 SCTP_PARTIAL_DELIVERY_EVENT};
ruengelerb6a39f82012-05-25 12:57:43 +00001028 unsigned int i;
1029 struct sctp_assoc_value av;
1030 const int on = 1;
1031 int n, flags;
1032 socklen_t from_len;
1033 char buffer[BUFFER_SIZE];
1034 char name[INET6_ADDRSTRLEN];
1035 struct sctp_recvv_rn rn;
1036 socklen_t infolen = sizeof(struct sctp_recvv_rn);
1037 struct sctp_rcvinfo rcv;
1038 struct sctp_nxtinfo nxt;
1039 unsigned int infotype = 0;
1040
1041 if (argc > 1) {
1042 usrsctp_init(atoi(argv[1]));
1043 } else {
1044 usrsctp_init(9899);
1045 }
1046 usrsctp_sysctl_set_sctp_debug_on(0);
1047 usrsctp_sysctl_set_sctp_blackhole(2);
1048
1049 if ((sock = usrsctp_socket(AF_INET6, SOCK_SEQPACKET, IPPROTO_SCTP,
1050 use_cb?receive_cb:NULL, NULL, 0)) == NULL) {
1051 perror("userspace_socket");
1052 }
1053 if (usrsctp_setsockopt(sock, IPPROTO_SCTP, SCTP_I_WANT_MAPPED_V4_ADDR,
1054 (const void*)&on, (socklen_t)sizeof(int)) < 0) {
1055 perror("setsockopt");
1056 }
1057 memset(&av, 0, sizeof(struct sctp_assoc_value));
1058 av.assoc_id = SCTP_ALL_ASSOC;
1059 av.assoc_value = 47;
1060
1061 if (usrsctp_setsockopt(sock, IPPROTO_SCTP, SCTP_CONTEXT, (const void*)&av,
1062 (socklen_t)sizeof(struct sctp_assoc_value)) < 0) {
1063 perror("setsockopt");
1064 }
1065 if (argc > 2) {
1066 memset(&encaps, 0, sizeof(struct sctp_udpencaps));
1067 encaps.sue_address.ss_family = AF_INET6;
1068 encaps.sue_port = htons(atoi(argv[2]));
1069 if (usrsctp_setsockopt(sock, IPPROTO_SCTP, SCTP_REMOTE_UDP_ENCAPS_PORT,
1070 (const void*)&encaps,
1071 (socklen_t)sizeof(struct sctp_udpencaps)) < 0) {
1072 perror("setsockopt");
1073 }
1074 }
1075 memset(&event, 0, sizeof(event));
1076 event.se_assoc_id = SCTP_FUTURE_ASSOC;
1077 event.se_on = 1;
1078 for (i = 0; i < (unsigned int)(sizeof(event_types)/sizeof(uint16_t)); i++) {
1079 event.se_type = event_types[i];
1080 if (usrsctp_setsockopt(sock, IPPROTO_SCTP, SCTP_EVENT, &event,
1081 sizeof(struct sctp_event)) < 0) {
1082 perror("userspace_setsockopt");
1083 }
1084 }
1085 memset((void *)&addr, 0, sizeof(struct sockaddr_in6));
1086#ifdef HAVE_SIN_LEN
1087 addr.sin6_len = sizeof(struct sockaddr_in6);
1088#endif
1089 addr.sin6_family = AF_INET6;
1090 addr.sin6_port = htons(9);
1091 addr.sin6_addr = in6addr_any;
1092 if (usrsctp_bind(sock, (struct sockaddr *)&addr,
1093 sizeof(struct sockaddr_in6)) < 0) {
1094 perror("userspace_bind");
1095 }
1096 if (usrsctp_listen(sock, 1) < 0) {
1097 perror("userspace_listen");
1098 }
1099 while (1) {
1100 if (use_cb) {
1101#if defined (__Userspace_os_Windows)
1102 Sleep(1*1000);
1103#else
1104 sleep(1);
1105#endif
1106 } else {
1107 from_len = (socklen_t)sizeof(struct sockaddr_in6);
1108 flags = 0;
1109 rn.recvv_rcvinfo = rcv;
1110 rn.recvv_nxtinfo = nxt;
1111 n = usrsctp_recvv(sock, (void*)buffer, BUFFER_SIZE,
1112 (struct sockaddr *) &addr, &from_len, (void *)&rn,
1113 &infolen, &infotype, &flags);
1114 if (n > 0) {
1115 if (flags & MSG_NOTIFICATION) {
1116 printf("Notification of length %d received.\n", n);
1117 } else {
1118 printf("Msg of length %d received from %s:%u on stream "
1119 "%d with SSN %u and TSN %u, PPID %d, context %u, "
1120 "complete %d.\n",
1121 n,
1122 inet_ntop(AF_INET6, &addr.sin6_addr, name,
1123 INET6_ADDRSTRLEN), ntohs(addr.sin6_port),
1124 rn.recvv_rcvinfo.rcv_sid,
1125 rn.recvv_rcvinfo.rcv_ssn,
1126 rn.recvv_rcvinfo.rcv_tsn,
1127 ntohl(rn.recvv_rcvinfo.rcv_ppid),
1128 rn.recvv_rcvinfo.rcv_context,
1129 (flags & MSG_EOR) ? 1 : 0);
1130 }
1131 }
1132 }
1133 }
1134 usrsctp_close(sock);
1135 while (usrsctp_finish() != 0) {
1136#if defined (__Userspace_os_Windows)
1137 Sleep(1000);
1138#else
1139 sleep(1);
1140#endif
1141 }
1142 return (0);
1143}
1144
1145\end{verbatim}
1146
ruengeler870a7f62012-05-25 14:42:52 +00001147\subsection{Client}\label{client}
ruengelerb6a39f82012-05-25 12:57:43 +00001148\begin{verbatim}
1149/*
1150 * Copyright (C) 2011-2012 Michael Tuexen
1151 *
1152 * All rights reserved.
1153 *
1154 * Redistribution and use in source and binary forms, with or without
1155 * modification, are permitted provided that the following conditions
1156 * are met:
1157 * 1. Redistributions of source code must retain the above copyright
1158 * notice, this list of conditions and the following disclaimer.
1159 * 2. Redistributions in binary form must reproduce the above copyright
1160 * notice, this list of conditions and the following disclaimer in the
1161 * documentation and/or other materials provided with the distribution.
1162 * 3. Neither the name of the project nor the names of its contributors
1163 * may be used to endorse or promote products derived from this software
1164 * without specific prior written permission.
1165 *
1166 * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
1167 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
1168 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
1169 * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
1170 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
1171 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
1172 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
1173 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
1174 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
1175 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
1176 * SUCH DAMAGE.
1177 */
1178
1179/*
ruengeler870a7f62012-05-25 14:42:52 +00001180 * Usage: client remote_addr remote_port [local_encaps_port remote_encaps_port]
ruengelerb6a39f82012-05-25 12:57:43 +00001181 */
1182
1183#include <stdio.h>
1184#include <stdlib.h>
1185#include <string.h>
1186#if !defined(__Userspace_os_Windows)
1187#include <unistd.h>
1188#endif
1189#include <sys/types.h>
1190#if !defined(__Userspace_os_Windows)
1191#include <sys/socket.h>
1192#include <netinet/in.h>
1193#include <arpa/inet.h>
1194#endif
1195#include <usrsctp.h>
1196
1197int done = 0;
1198
1199static int
1200receive_cb(struct socket *sock, union sctp_sockstore addr, void *data,
1201 size_t datalen, struct sctp_rcvinfo rcv, int flags)
1202{
ruengeler870a7f62012-05-25 14:42:52 +00001203 if (data == NULL) {
1204 done = 1;
1205 usrsctp_close(sock);
1206 } else {
1207 write(fileno(stdout), data, datalen);
1208 free(data);
1209 }
1210 return 1;
ruengelerb6a39f82012-05-25 12:57:43 +00001211}
1212
1213int
1214main(int argc, char *argv[])
1215{
ruengeler870a7f62012-05-25 14:42:52 +00001216 struct socket *sock;
1217 struct sockaddr_in addr4;
1218 struct sockaddr_in6 addr6;
1219 struct sctp_udpencaps encaps;
1220 char buffer[80];
ruengelerb6a39f82012-05-25 12:57:43 +00001221
ruengeler870a7f62012-05-25 14:42:52 +00001222 if (argc > 3) {
1223 usrsctp_init(atoi(argv[3]));
1224 } else {
1225 usrsctp_init(9899);
1226 }
1227 usrsctp_sysctl_set_sctp_debug_on(0);
1228 usrsctp_sysctl_set_sctp_blackhole(2);
1229 if ((sock = usrsctp_socket(AF_INET, SOCK_STREAM, IPPROTO_SCTP,
1230 receive_cb, NULL, 0)) == NULL) {
1231 perror("userspace_socket ipv6");
1232 }
1233 if (argc > 4) {
1234 memset(&encaps, 0, sizeof(struct sctp_udpencaps));
1235 encaps.sue_address.ss_family = AF_INET6;
1236 encaps.sue_port = htons(atoi(argv[4]));
1237 if (usrsctp_setsockopt(sock, IPPROTO_SCTP, SCTP_REMOTE_UDP_ENCAPS_PORT,
1238 (const void*)&encaps,
1239 (socklen_t)sizeof(struct sctp_udpencaps)) < 0) {
1240 perror("setsockopt");
1241 }
1242 }
1243 memset((void *)&addr4, 0, sizeof(struct sockaddr_in));
1244 memset((void *)&addr6, 0, sizeof(struct sockaddr_in6));
ruengelerb6a39f82012-05-25 12:57:43 +00001245#if !defined(__Userspace_os_Linux) && !defined(__Userspace_os_Windows)
ruengeler870a7f62012-05-25 14:42:52 +00001246 addr4.sin_len = sizeof(struct sockaddr_in);
1247 addr6.sin6_len = sizeof(struct sockaddr_in6);
ruengelerb6a39f82012-05-25 12:57:43 +00001248#endif
ruengeler870a7f62012-05-25 14:42:52 +00001249 addr4.sin_family = AF_INET;
1250 addr6.sin6_family = AF_INET6;
1251 addr4.sin_port = htons(atoi(argv[2]));
1252 addr6.sin6_port = htons(atoi(argv[2]));
1253 if (inet_pton(AF_INET6, argv[1], &addr6.sin6_addr) == 1) {
1254 if (usrsctp_connect(sock, (struct sockaddr *)&addr6,
1255 sizeof(struct sockaddr_in6)) < 0) {
1256 perror("userspace_connect");
1257 }
1258 } else if (inet_pton(AF_INET, argv[1], &addr4.sin_addr) == 1) {
1259 if (usrsctp_connect(sock, (struct sockaddr *)&addr4,
1260 sizeof(struct sockaddr_in)) < 0) {
1261 perror("userspace_connect");
1262 }
1263 } else {
1264 printf("Illegal destination address.\n");
1265 }
1266 while ((fgets(buffer, sizeof(buffer), stdin) != NULL) && !done) {
1267 usrsctp_sendv(sock, buffer, strlen(buffer), NULL, 0,
ruengelerb6a39f82012-05-25 12:57:43 +00001268 NULL, 0, SCTP_SENDV_NOINFO, 0);
ruengeler870a7f62012-05-25 14:42:52 +00001269 }
1270 if (!done) {
1271 usrsctp_shutdown(sock, SHUT_WR);
1272 }
1273 while (!done) {
ruengelerb6a39f82012-05-25 12:57:43 +00001274#if defined (__Userspace_os_Windows)
ruengeler870a7f62012-05-25 14:42:52 +00001275 Sleep(1*1000);
ruengelerb6a39f82012-05-25 12:57:43 +00001276#else
ruengeler870a7f62012-05-25 14:42:52 +00001277 sleep(1);
ruengelerb6a39f82012-05-25 12:57:43 +00001278#endif
ruengeler870a7f62012-05-25 14:42:52 +00001279 }
1280 while (usrsctp_finish() != 0) {
ruengelerb6a39f82012-05-25 12:57:43 +00001281#if defined (__Userspace_os_Windows)
ruengeler870a7f62012-05-25 14:42:52 +00001282 Sleep(1000);
ruengelerb6a39f82012-05-25 12:57:43 +00001283#else
ruengeler870a7f62012-05-25 14:42:52 +00001284 sleep(1);
ruengelerb6a39f82012-05-25 12:57:43 +00001285#endif
ruengeler870a7f62012-05-25 14:42:52 +00001286 }
1287 return(0);
ruengelerb6a39f82012-05-25 12:57:43 +00001288}
1289
1290\end{verbatim}
1291\bibliographystyle{plain}
1292%
1293\begin{thebibliography}{99}
1294
1295\bibitem{socketAPI}
1296R.~Stewart, M.~T\"uxen, K.~Poon, and V.~Yasevich:
1297\textit{Sockets API Extensions for the Stream Control Transmission Protocol (SCTP)}.
1298RFC~6458, Dezember~2011.
1299
1300\bibitem{SCTP}
1301R.~Stewart:
1302\textit{Stream Control Transmission Protocol}.
1303RFC~4960, September~2007.
1304
1305
1306\bibitem{auth}
1307M.~T\"uxen, R.~Stewart, P.~Lei, and E.~Rescorla:
1308\textit{Authenticated Chunks for the Stream Control Transmission Protocol (SCTP)}.
1309RFC~4895, August~2007.
1310
1311\bibitem{streamReset}
1312R.~Stewart, M.~T\"uxen, and P.~Lei:
1313\textit{Stream Control Transmission Protocol (SCTP) Stream Reconfiguration}.
1314RFC~6525, February~2012.
1315
1316
1317\bibitem{addip}
1318R.~Stewart, Q.~Xie, M.~T\"uxen, S.~Maruyama, and M.~Kozuka:
1319\textit{Stream Control Transmission Protocol (SCTP) Dynamic Address Reconfiguration}.
1320RFC~5061, September~2007.
1321
1322\bibitem{sack-imm}
1323M.~T\"uxen, I.~R\"ungeler, and R.~Stewart:
1324\textit{SACK-IMMEDIATELY Extension for the Stream Control Transmission Protocol}.
1325draft-tuexen-tsvwg-sctp-sack-immediately-09 (work in progress), April~2012.
1326
1327\bibitem{udpencaps}
1328M.~T\"uxen and R.~Stewart
1329\textit{UDP Encapsulation of SCTP Packetsl}.
1330draft-ietf-tsvwg-sctp-udp-encaps-03 (work in progress), March~2012.
1331
1332\end{thebibliography}
iruengeler05218e72012-09-12 09:32:13 +00001333\end{document}