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1 /*
2 * Copyright (c) 2000-2017 Apple Inc. All rights reserved.
3 *
4 * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5 *
6 * This file contains Original Code and/or Modifications of Original Code
7 * as defined in and that are subject to the Apple Public Source License
8 * Version 2.0 (the 'License'). You may not use this file except in
9 * compliance with the License. The rights granted to you under the License
10 * may not be used to create, or enable the creation or redistribution of,
11 * unlawful or unlicensed copies of an Apple operating system, or to
12 * circumvent, violate, or enable the circumvention or violation of, any
13 * terms of an Apple operating system software license agreement.
14 *
15 * Please obtain a copy of the License at
16 * http://www.opensource.apple.com/apsl/ and read it before using this file.
17 *
18 * The Original Code and all software distributed under the License are
19 * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23 * Please see the License for the specific language governing rights and
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25 *
26 * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
27 */
28 /*
29 * Copyright (c) 1982, 1986, 1993, 1994, 1995
30 * The Regents of the University of California. All rights reserved.
31 *
32 * Redistribution and use in source and binary forms, with or without
33 * modification, are permitted provided that the following conditions
34 * are met:
35 * 1. Redistributions of source code must retain the above copyright
36 * notice, this list of conditions and the following disclaimer.
37 * 2. Redistributions in binary form must reproduce the above copyright
38 * notice, this list of conditions and the following disclaimer in the
39 * documentation and/or other materials provided with the distribution.
40 * 3. All advertising materials mentioning features or use of this software
41 * must display the following acknowledgement:
42 * This product includes software developed by the University of
43 * California, Berkeley and its contributors.
44 * 4. Neither the name of the University nor the names of its contributors
45 * may be used to endorse or promote products derived from this software
46 * without specific prior written permission.
47 *
48 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
49 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
50 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
51 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
52 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
53 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
54 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
55 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
56 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
57 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
58 * SUCH DAMAGE.
59 *
60 * @(#)tcp_var.h 8.4 (Berkeley) 5/24/95
61 * $FreeBSD: src/sys/netinet/tcp_var.h,v 1.56.2.8 2001/08/22 00:59:13 silby Exp $
62 */
63
64 #ifndef _NETINET_TCP_VAR_H_
65 #define _NETINET_TCP_VAR_H_
66 #include <sys/types.h>
67 #include <sys/appleapiopts.h>
68 #include <sys/queue.h>
69 #include <netinet/in_pcb.h>
70 #include <netinet/tcp.h>
71 #include <netinet/tcp_timer.h>
72
73 #if defined(__LP64__)
74 #define _TCPCB_PTR(x) u_int32_t
75 #define _TCPCB_LIST_HEAD(name, type) \
76 struct name { \
77 u_int32_t lh_first; \
78 }
79 #else
80 #define _TCPCB_PTR(x) x
81 #define _TCPCB_LIST_HEAD(name, type) LIST_HEAD(name, type)
82 #endif
83
84 #ifdef KERNEL_PRIVATE
85
86 #define TCP_RETRANSHZ 1000 /* granularity of TCP timestamps, 1ms */
87 /* Minimum time quantum within which the timers are coalesced */
88 #define TCP_TIMER_10MS_QUANTUM (TCP_RETRANSHZ/100) /* every 10ms */
89 #define TCP_TIMER_100MS_QUANTUM (TCP_RETRANSHZ/10) /* every 100ms */
90 #define TCP_TIMER_500MS_QUANTUM (TCP_RETRANSHZ/2) /* every 500ms */
91
92 #define TCP_RETRANSHZ_TO_USEC 1000
93
94 #define N_TIME_WAIT_SLOTS 128 /* must be power of 2 */
95
96 /* Always allow at least 16 packets worth of recv window when adjusting
97 * recv window using inter-packet arrival jitter.
98 */
99 #define MIN_IAJ_WIN 16
100
101 /* A variation in delay of this many milliseconds is tolerable. This limit has to
102 * be low but greater than zero. We also use standard deviation on jitter to adjust
103 * this limit for different link and connection types.
104 */
105 #define ALLOWED_IAJ 5
106
107 /* Ignore the first few packets on a connection until the ACK clock gets going
108 */
109 #define IAJ_IGNORE_PKTCNT 40
110
111 /* Let the accumulated IAJ value increase by this threshold at most. This limit
112 * will control how many ALLOWED_IAJ measurements a receiver will have to see
113 * before opening the receive window
114 */
115 #define ACC_IAJ_HIGH_THRESH 100
116
117 /* When accumulated IAJ reaches this value, the receiver starts to react by
118 * closing the window
119 */
120 #define ACC_IAJ_REACT_LIMIT 200
121
122 /* If the number of small packets (smaller than IAJ packet size) seen on a
123 * connection is more than this threshold, reset the size and learn it again.
124 * This is needed because the sender might send smaller segments after PMTU
125 * discovery and the receiver has to learn the new size.
126 */
127 #define RESET_IAJ_SIZE_THRESH 20
128
129 /*
130 * Adaptive timeout is a read/write timeout specified by the application to
131 * get a socket event when the transport layer detects a stall in data
132 * transfer. The value specified is the number of probes that can be sent
133 * to the peer before generating an event. Since it is not specified as
134 * a time value, the timeout will adjust based on the RTT seen on the link.
135 * The timeout will start only when there is an indication that the read/write
136 * operation is not making progress.
137 *
138 * If a write operation stalls, the probe will be retransmission of data.
139 * If a read operation stalls, the probe will be a keep-alive packet.
140 *
141 * The maximum value of adaptive timeout is set to 10 which will allow
142 * transmission of enough number of probes to the peer.
143 */
144 #define TCP_ADAPTIVE_TIMEOUT_MAX 10
145
146 #define TCP_CONNECTIVITY_PROBES_MAX 5
147
148 /*
149 * Kernel variables for tcp.
150 */
151
152 /* TCP segment queue entry */
153 struct tseg_qent {
154 LIST_ENTRY(tseg_qent) tqe_q;
155 int tqe_len; /* TCP segment data length */
156 struct tcphdr *tqe_th; /* a pointer to tcp header */
157 struct mbuf *tqe_m; /* mbuf contains packet */
158 };
159 LIST_HEAD(tsegqe_head, tseg_qent);
160
161 struct sackblk {
162 tcp_seq start; /* start seq no. of sack block */
163 tcp_seq end; /* end seq no. */
164 };
165
166 struct sackhole {
167 tcp_seq start; /* start seq no. of hole */
168 tcp_seq end; /* end seq no. */
169 tcp_seq rxmit; /* next seq. no in hole to be retransmitted */
170 u_int32_t rxmit_start; /* timestamp of first retransmission */
171 TAILQ_ENTRY(sackhole) scblink; /* scoreboard linkage */
172 };
173
174 struct sackhint {
175 struct sackhole *nexthole;
176 int sack_bytes_rexmit;
177 };
178
179 struct tcp_rxt_seg {
180 tcp_seq rx_start;
181 tcp_seq rx_end;
182 u_int16_t rx_count;
183 u_int16_t rx_flags;
184 #define TCP_RXT_SPURIOUS 0x1 /* received DSACK notification */
185 #define TCP_RXT_DSACK_FOR_TLP 0x2
186 SLIST_ENTRY(tcp_rxt_seg) rx_link;
187 };
188
189 struct tcp_notify_ack_marker {
190 tcp_seq notify_snd_una; /* Notify when snd_una crosses this seq */
191 tcp_notify_ack_id_t notify_id;
192 SLIST_ENTRY(tcp_notify_ack_marker) notify_next;
193 };
194
195 struct tcptemp {
196 u_char tt_ipgen[40]; /* the size must be of max ip header, now IPv6 */
197 struct tcphdr tt_t;
198 };
199
200 struct bwmeas {
201 tcp_seq bw_start; /* start of bw measurement */
202 uint32_t bw_ts; /* timestamp when bw measurement started */
203 uint32_t bw_size; /* burst size in bytes for this bw measurement */
204 uint32_t bw_minsizepkts; /* Min burst size as segments */
205 uint32_t bw_maxsizepkts; /* Max burst size as segments */
206 uint32_t bw_minsize; /* Min size in bytes */
207 uint32_t bw_maxsize; /* Max size in bytes */
208 uint32_t bw_sndbw; /* Measured send bandwidth */
209 uint32_t bw_sndbw_max; /* Max measured bandwidth */
210 uint32_t bw_rcvbw_max; /* Max receive bandwidth measured */
211 };
212
213 /* MPTCP Data sequence map entry */
214 struct mpt_dsn_map {
215 uint64_t mpt_dsn; /* data seq num recvd */
216 uint32_t mpt_sseq; /* relative subflow # */
217 uint16_t mpt_len; /* length of mapping */
218 uint16_t mpt_csum; /* checksum value if on */
219 };
220 #define tcp6cb tcpcb /* for KAME src sync over BSD*'s */
221
222 struct tcp_ccstate {
223 union {
224 struct tcp_cubic_state {
225 u_int32_t tc_last_max; /* cwnd at last loss */
226 u_int32_t tc_epoch_start; /* TS of last loss */
227 u_int32_t tc_origin_point; /* window at the start of an epoch */
228 u_int32_t tc_tcp_win; /* computed tcp win */
229 u_int32_t tc_tcp_bytes_acked; /* bytes acked */
230 u_int32_t tc_target_win; /* cubic target win */
231 u_int32_t tc_avg_lastmax; /* Average of last max */
232 u_int32_t tc_mean_deviation; /* Mean absolute deviation */
233 float tc_epoch_period; /* K parameter */
234 } _cubic_state_;
235 #define cub_last_max __u__._cubic_state_.tc_last_max
236 #define cub_epoch_start __u__._cubic_state_.tc_epoch_start
237 #define cub_origin_point __u__._cubic_state_.tc_origin_point
238 #define cub_tcp_win __u__._cubic_state_.tc_tcp_win
239 #define cub_tcp_bytes_acked __u__._cubic_state_.tc_tcp_bytes_acked
240 #define cub_epoch_period __u__._cubic_state_.tc_epoch_period
241 #define cub_target_win __u__._cubic_state_.tc_target_win
242 #define cub_avg_lastmax __u__._cubic_state_.tc_avg_lastmax
243 #define cub_mean_dev __u__._cubic_state_.tc_mean_deviation
244 } __u__;
245 };
246
247 /*
248 * Tcp control block, one per tcp; fields:
249 * Organized for 16 byte cacheline efficiency.
250 */
251 struct tcpcb {
252 struct tsegqe_head t_segq;
253 int t_dupacks; /* consecutive dup acks recd */
254 int t_state; /* state of this connection */
255 uint32_t t_timer[TCPT_NTIMERS]; /* tcp timers */
256 struct tcptimerentry tentry; /* entry in timer list */
257
258 struct inpcb *t_inpcb; /* back pointer to internet pcb */
259 uint32_t t_flags;
260 #define TF_ACKNOW 0x00001 /* ack peer immediately */
261 #define TF_DELACK 0x00002 /* ack, but try to delay it */
262 #define TF_NODELAY 0x00004 /* don't delay packets to coalesce */
263 #define TF_NOOPT 0x00008 /* don't use tcp options */
264 #define TF_SENTFIN 0x00010 /* have sent FIN */
265 #define TF_REQ_SCALE 0x00020 /* have/will request window scaling */
266 #define TF_RCVD_SCALE 0x00040 /* other side has requested scaling */
267 #define TF_REQ_TSTMP 0x00080 /* have/will request timestamps */
268 #define TF_RCVD_TSTMP 0x00100 /* a timestamp was received in SYN */
269 #define TF_SACK_PERMIT 0x00200 /* other side said I could SACK */
270 #define TF_NEEDSYN 0x00400 /* send SYN (implicit state) */
271 #define TF_NEEDFIN 0x00800 /* send FIN (implicit state) */
272 #define TF_NOPUSH 0x01000 /* don't push */
273 #define TF_REQ_CC 0x02000 /* have/will request CC */
274 #define TF_RCVD_CC 0x04000 /* a CC was received in SYN */
275 #define TF_SENDCCNEW 0x08000 /* Unused */
276 #define TF_MORETOCOME 0x10000 /* More data to be appended to sock */
277 #define TF_LOCAL 0x20000 /* connection to a host on local link */
278 #define TF_RXWIN0SENT 0x40000 /* sent a receiver win 0 in response */
279 #define TF_SLOWLINK 0x80000 /* route is a on a modem speed link */
280 #define TF_LASTIDLE 0x100000 /* connection was previously idle */
281 #define TF_FASTRECOVERY 0x200000 /* in NewReno Fast Recovery */
282 #define TF_WASFRECOVERY 0x400000 /* was in NewReno Fast Recovery */
283 #define TF_SIGNATURE 0x800000 /* require MD5 digests (RFC2385) */
284 #define TF_MAXSEGSNT 0x1000000 /* last segment sent was a full segment */
285 #define TF_STREAMING_ON 0x2000000 /* Receiver detected streaming */
286 #define TF_PMTUD 0x4000000 /* Perform Path MTU Discovery for this connection */
287 #define TF_CLOSING 0x8000000 /* pending tcp close */
288 #define TF_TSO 0x10000000 /* TCP Segment Offloading is enable on this connection */
289 #define TF_BLACKHOLE 0x20000000 /* Path MTU Discovery Black Hole detection */
290 #define TF_TIMER_ONLIST 0x40000000 /* pcb is on tcp_timer_list */
291 #define TF_STRETCHACK 0x80000000 /* receiver is going to delay acks */
292
293 tcp_seq snd_una; /* send unacknowledged */
294 tcp_seq snd_max; /* highest sequence number sent;
295 * used to recognize retransmits
296 */
297 tcp_seq snd_nxt; /* send next */
298 tcp_seq snd_up; /* send urgent pointer */
299
300 tcp_seq snd_wl1; /* window update seg seq number */
301 tcp_seq snd_wl2; /* window update seg ack number */
302 tcp_seq iss; /* initial send sequence number */
303 tcp_seq irs; /* initial receive sequence number */
304
305 tcp_seq rcv_nxt; /* receive next */
306 tcp_seq rcv_adv; /* advertised window */
307 u_int32_t rcv_wnd; /* receive window */
308 tcp_seq rcv_up; /* receive urgent pointer */
309
310 u_int32_t snd_wnd; /* send window */
311 u_int32_t snd_cwnd; /* congestion-controlled window */
312 u_int32_t snd_ssthresh; /* snd_cwnd size threshold for
313 * for slow start exponential to
314 * linear switch
315 */
316 tcp_seq snd_recover; /* for use in NewReno Fast Recovery */
317
318 u_int32_t t_maxopd; /* mss plus options */
319 u_int32_t t_rcvtime; /* time at which a packet was received */
320 u_int32_t t_sndtime; /* time at which we last sent new data */
321 u_int32_t t_starttime; /* time connection was established */
322 int t_rtttime; /* tcp clock when rtt calculation was started */
323 tcp_seq t_rtseq; /* sequence number being timed */
324
325 u_int32_t rfbuf_ts; /* recv buffer autoscaling timestamp */
326 u_int32_t rfbuf_cnt; /* recv buffer autoscaling byte count */
327
328 int t_rxtcur; /* current retransmit value (ticks) */
329 u_int t_maxseg; /* maximum segment size */
330 int t_srtt; /* smoothed round-trip time */
331 int t_rttvar; /* variance in round-trip time */
332
333 u_int64_t t_accsleep_ms; /* accumulated sleep time since last boot */
334 u_int16_t t_reassqlen; /* length of reassembly queue */
335 u_int16_t t_rxtshift; /* log(2) of rexmt exp. backoff */
336 u_int32_t t_rttmin; /* minimum rtt allowed */
337 u_int32_t t_rttbest; /* best rtt we've seen */
338 u_int32_t t_rttcur; /* most recent value of rtt */
339 u_int32_t t_rttupdated; /* number of times rtt sampled */
340 u_int32_t t_rxt_conndroptime; /* retxmt conn gets dropped after this time, when set */
341 u_int32_t t_rxtstart; /* time at which retransmission started */
342 u_int32_t max_sndwnd; /* largest window peer has offered */
343
344 int t_softerror; /* possible error not yet reported */
345 /* out-of-band data */
346 char t_oobflags; /* have some */
347 char t_iobc; /* input character */
348 #define TCPOOB_HAVEDATA 0x01
349 #define TCPOOB_HADDATA 0x02
350 /* RFC 1323 variables */
351 u_int8_t snd_scale; /* window scaling for send window */
352 u_int8_t rcv_scale; /* window scaling for recv window */
353 u_int8_t request_r_scale; /* pending window scaling */
354 u_int8_t requested_s_scale;
355 u_int8_t tcp_cc_index; /* index of congestion control algorithm */
356 u_int8_t t_adaptive_rtimo; /* Read timeout used as a multiple of RTT */
357 u_int8_t t_adaptive_wtimo; /* Write timeout used as a multiple of RTT */
358 u_int8_t t_stretchack_delayed; /* stretch ack delayed */
359
360 /* State for limiting early retransmits when SACK is not enabled */
361 u_int16_t t_early_rexmt_count; /* count of early rexmts */
362 u_int32_t t_early_rexmt_win; /* window for limiting early rexmts */
363
364 u_int32_t ts_recent; /* timestamp echo data */
365
366 u_int32_t ts_recent_age; /* when last updated */
367 tcp_seq last_ack_sent;
368 /* RFC 3465 variables */
369 u_int32_t t_bytes_acked; /* ABC "bytes_acked" parameter */
370
371 int t_lastchain; /* amount of packets chained last time around */
372 u_int16_t t_unacksegs; /* received but unacked segments for delaying acks */
373 u_int8_t t_rexmtthresh; /* duplicate ack threshold for entering fast recovery */
374 u_int8_t t_rtimo_probes; /* number of adaptive rtimo probes sent */
375 u_int32_t t_persist_timeout; /* ZWP persistence limit as set by PERSIST_TIMEOUT */
376 u_int32_t t_persist_stop; /* persistence limit deadline if triggered by ZWP */
377 u_int32_t t_notsent_lowat; /* Low water for not sent data */
378
379 /* Receiver state for stretch-ack algorithm */
380 u_int32_t rcv_unackwin; /* to measure win for stretching acks */
381 u_int32_t rcv_by_unackwin; /* bytes seen during the last ack-stretching win */
382 u_int32_t rcv_nostrack_ts; /* timestamp when stretch ack was disabled automatically */
383 u_int32_t rcv_nostrack_pkts; /* pkts received since strech ack was disabled */
384 u_int16_t rcv_waitforss; /* wait for packets during slow-start */
385
386 /* ECN stats */
387 u_int16_t ecn_flags;
388 #define TE_SETUPSENT 0x0001 /* Indicate we have sent ECN-SETUP SYN or SYN-ACK */
389 #define TE_SETUPRECEIVED 0x0002 /* Indicate we have received ECN-SETUP SYN or SYN-ACK */
390 #define TE_SENDIPECT 0x0004 /* Indicate we haven't sent or received non-ECN-setup SYN or SYN-ACK */
391 #define TE_SENDCWR 0x0008 /* Indicate that the next non-retransmit should have the TCP CWR flag set */
392 #define TE_SENDECE 0x0010 /* Indicate that the next packet should have the TCP ECE flag set */
393 #define TE_INRECOVERY 0x0020 /* connection entered recovery after receiving ECE */
394 #define TE_RECV_ECN_CE 0x0040 /* Received IPTOS_ECN_CE marking atleast once */
395 #define TE_RECV_ECN_ECE 0x0080 /* Received ECE marking atleast once */
396 #define TE_LOST_SYN 0x0100 /* Lost SYN with ECN setup */
397 #define TE_LOST_SYNACK 0x0200 /* Lost SYN-ACK with ECN setup */
398 #define TE_ECN_MODE_ENABLE 0x0400 /* Option ECN mode set to enable */
399 #define TE_ECN_MODE_DISABLE 0x0800 /* Option ECN mode set to disable */
400 #define TE_ENABLE_ECN 0x1000 /* Enable negotiation of ECN */
401 #define TE_ECN_ON (TE_SETUPSENT | TE_SETUPRECEIVED) /* Indicate ECN was successfully negotiated on a connection) */
402 #define TE_CEHEURI_SET 0x2000 /* We did our CE-probing at the beginning */
403 #define TE_CLIENT_SETUP 0x4000 /* setup from client side */
404 #define TE_RCVD_SYN_RST 0x8000 /* Received RST to the first ECN enabled SYN */
405
406 u_int32_t t_ecn_recv_ce; /* Received CE from the network */
407 u_int32_t t_ecn_recv_cwr; /* Packets received with CWR */
408
409 /* state for bad retransmit recovery */
410 u_int32_t snd_cwnd_prev; /* cwnd prior to retransmit */
411 u_int32_t snd_ssthresh_prev; /* ssthresh prior to retransmit */
412 tcp_seq snd_recover_prev; /* snd_recover prior to retransmit */
413 int t_srtt_prev; /* srtt prior to retransmit */
414 int t_rttvar_prev; /* rttvar prior to retransmit */
415 u_int32_t t_badrexmt_time; /* bad rexmt detection time */
416
417 /* Packet reordering metric */
418 u_int16_t t_reorderwin; /* Reordering late time offset */
419
420 /* SACK related state */
421 int16_t snd_numholes; /* number of holes seen by sender */
422 tcp_seq sack_newdata; /* New data xmitted in this recovery
423 episode starts at this seq number */
424 TAILQ_HEAD(sackhole_head, sackhole) snd_holes;
425 /* SACK scoreboard (sorted) */
426 tcp_seq snd_fack; /* last seq number(+1) sack'd by rcv'r*/
427 int rcv_numsacks; /* # distinct sack blks present */
428 struct sackblk sackblks[MAX_SACK_BLKS]; /* seq nos. of sack blocks */
429 struct sackhint sackhint; /* SACK scoreboard hint */
430
431 struct mbuf *t_pktlist_head; /* First packet in transmit chain */
432 struct mbuf *t_pktlist_tail; /* Last packet in transmit chain */
433 u_int32_t t_pktlist_sentlen; /* total bytes in transmit chain */
434
435 u_int32_t t_keepidle; /* keepalive idle timer (override global if > 0) */
436 u_int32_t t_keepinit; /* connection timeout, i.e. idle time
437 in SYN_SENT or SYN_RECV state */
438 u_int32_t t_keepintvl; /* interval between keepalives */
439 u_int32_t t_keepcnt; /* number of keepalives before close */
440
441 u_int32_t tso_max_segment_size; /* TSO maximum segment unit for NIC */
442 u_int16_t t_pmtud_lastseg_size; /* size of the last sent segment */
443 u_int16_t t_pmtud_saved_maxopd; /* MSS saved before performing PMTU-D BlackHole detection */
444 u_int32_t t_pmtud_start_ts; /* Time of PMTUD blackhole detection */
445
446 struct
447 {
448 u_int32_t rxduplicatebytes;
449 u_int32_t rxoutoforderbytes;
450 u_int32_t txretransmitbytes;
451 u_int8_t synrxtshift;
452 u_int8_t unused;
453 u_int16_t unused_pad_to_8;
454 u_int32_t rxmitpkts;
455 } t_stat;
456 u_int8_t t_notify_ack_count;
457 u_int8_t t_ecn_recv_ce_pkt; /* Received packet with CE-bit set (independent from last_ack_sent) */
458 u_int16_t t_cached_maxopd; /* default for MSS adjustment using link status report */
459
460 uint32_t bg_ssthresh; /* Slow start threshold until delay increases */
461 uint32_t t_flagsext; /* Another field to accommodate more flags */
462 #define TF_RXTFINDROP 0x1 /* Drop conn after retransmitting FIN 3 times */
463 #define TF_RCVUNACK_WAITSS 0x2 /* set when the receiver should not stretch acks */
464 #define TF_BWMEAS_INPROGRESS 0x4 /* Indicate BW meas is happening */
465 #define TF_MEASURESNDBW 0x8 /* Measure send bw on this connection */
466 #define TF_LRO_OFFLOADED 0x10 /* Connection LRO offloaded */
467 #define TF_SACK_ENABLE 0x20 /* SACK is enabled */
468 #define TF_RECOMPUTE_RTT 0x40 /* recompute RTT after spurious retransmit */
469 #define TF_DETECT_READSTALL 0x80 /* Used to detect a stall during read operation */
470 #define TF_RECV_THROTTLE 0x100 /* Input throttling active */
471 #define TF_NOSTRETCHACK 0x200 /* ack every other packet */
472 #define TF_NOTIMEWAIT 0x800 /* Avoid going into time-wait */
473 #define TF_SENT_TLPROBE 0x1000 /* Sent data in PTO */
474 #define TF_PKTS_REORDERED 0x2000 /* Detected reordering */
475 #define TF_DELAY_RECOVERY 0x4000 /* delay fast recovery */
476 #define TF_FORCE 0x8000 /* force 1 byte out */
477 #define TF_DISABLE_STRETCHACK 0x10000 /* auto-disable stretch ack */
478 #define TF_NOBLACKHOLE_DETECTION 0x20000 /* Disable PMTU blackhole detection */
479 #define TF_DISABLE_DSACK 0x40000 /* Ignore DSACK due to n/w duplication */
480 #define TF_RESCUE_RXT 0x80000 /* SACK rescue retransmit */
481 #define TF_CWND_NONVALIDATED 0x100000 /* cwnd non validated */
482 #define TF_PROBING 0x200000 /* Trigger probe timeout */
483 #define TF_FASTOPEN 0x400000 /* TCP Fastopen is enabled */
484 #define TF_REASS_INPROG 0x800000 /* Reassembly is in progress */
485 #define TF_FASTOPEN_HEUR 0x1000000 /* Make sure that heuristics get never skipped */
486
487 #if TRAFFIC_MGT
488 /* Inter-arrival jitter related state */
489 uint32_t iaj_rcv_ts; /* tcp clock when the first packet was received */
490 uint16_t iaj_size; /* Size of packet for iaj measurement */
491 uint8_t iaj_small_pkt; /* Count of packets smaller than iaj_size */
492 uint8_t t_pipeack_ind; /* index for next pipeack sample */
493 uint16_t iaj_pktcnt; /* packet count, to avoid throttling initially */
494 uint16_t acc_iaj; /* Accumulated iaj */
495 uint32_t avg_iaj; /* Mean */
496 uint32_t std_dev_iaj; /* Standard deviation */
497 #endif /* TRAFFIC_MGT */
498 struct bwmeas *t_bwmeas; /* State for bandwidth measurement */
499 uint32_t t_lropktlen; /* Bytes in a LRO frame */
500 tcp_seq t_idleat; /* rcv_nxt at idle time */
501 TAILQ_ENTRY(tcpcb) t_twentry; /* link for time wait queue */
502 struct tcp_ccstate *t_ccstate; /* congestion control related state */
503 /* Tail loss probe related state */
504 tcp_seq t_tlphighrxt; /* snd_nxt after PTO */
505 u_int32_t t_tlpstart; /* timestamp at PTO */
506 /* DSACK data receiver state */
507 tcp_seq t_dsack_lseq; /* DSACK left sequence */
508 tcp_seq t_dsack_rseq; /* DSACK right sequence */
509 /* DSACK data sender state */
510 SLIST_HEAD(tcp_rxt_seghead, tcp_rxt_seg) t_rxt_segments;
511 tcp_seq t_dsack_lastuna; /* snd_una when last recovery episode started */
512 /* state for congestion window validation (draft-ietf-tcpm-newcwv-07) */
513 #define TCP_PIPEACK_SAMPLE_COUNT 3
514 u_int32_t t_pipeack_sample[TCP_PIPEACK_SAMPLE_COUNT]; /* pipeack, bytes acked within RTT */
515 tcp_seq t_pipeack_lastuna; /* una when pipeack measurement started */
516 u_int32_t t_pipeack;
517 u_int32_t t_lossflightsize;
518
519 #if MPTCP
520 u_int32_t t_mpflags; /* flags for multipath TCP */
521
522 #define TMPF_PREESTABLISHED 0x00000001 /* conn in pre-established state */
523 #define TMPF_SND_KEYS 0x00000002 /* indicates that keys should be send */
524 #define TMPF_MPTCP_TRUE 0x00000004 /* negotiated MPTCP successfully */
525 #define TMPF_MPTCP_RCVD_KEY 0x00000008 /* state for 3-way handshake */
526 #define TMPF_SND_MPPRIO 0x00000010 /* send priority of subflow */
527 #define TMPF_SND_REM_ADDR 0x00000020 /* initiate address removal */
528 #define TMPF_RCVD_DACK 0x00000040 /* received a data-ack */
529 #define TMPF_JOINED_FLOW 0x00000080 /* Indicates additional flow */
530 #define TMPF_BACKUP_PATH 0x00000100 /* Indicates backup path */
531 #define TMPF_MPTCP_ACKNOW 0x00000200 /* Send Data ACK */
532 #define TMPF_SEND_DSN 0x00000400 /* Send DSN mapping */
533 #define TMPF_SEND_DFIN 0x00000800 /* Send Data FIN */
534 #define TMPF_RECV_DFIN 0x00001000 /* Recv Data FIN */
535 #define TMPF_SENT_JOIN 0x00002000 /* Sent Join */
536 #define TMPF_RECVD_JOIN 0x00004000 /* Received Join */
537 #define TMPF_RESET 0x00008000 /* Send RST */
538 #define TMPF_TCP_FALLBACK 0x00010000 /* Fallback to TCP */
539 #define TMPF_FASTCLOSERCV 0x00020000 /* Received Fastclose option */
540 #define TMPF_EMBED_DSN 0x00040000 /* tp has DSN mapping */
541 #define TMPF_MPTCP_READY 0x00080000 /* Can send DSS options on data */
542 #define TMPF_INFIN_SENT 0x00100000 /* Sent infinite mapping */
543 #define TMPF_SND_MPFAIL 0x00200000 /* Received mapping csum failure */
544 #define TMPF_SND_JACK 0x00400000 /* Send a Join-ACK */
545 #define TMPF_TFO_REQUEST 0x00800000 /* TFO Requested */
546
547 #define TMPF_MPTCP_SIGNALS (TMPF_SND_MPPRIO | TMPF_SND_REM_ADDR | TMPF_SND_MPFAIL | TMPF_SND_KEYS | TMPF_SND_JACK)
548
549 tcp_seq t_mpuna; /* unacknowledged sequence */
550 struct mptcb *t_mptcb; /* pointer to MPTCP TCB */
551 struct mptsub *t_mpsub; /* pointer to the MPTCP subflow */
552 struct mpt_dsn_map t_rcv_map; /* Receive mapping list */
553 u_int8_t t_local_aid; /* Addr Id for authentication */
554 u_int8_t t_rem_aid; /* Addr ID of another subflow */
555 u_int8_t t_mprxtshift; /* join retransmission */
556 #endif /* MPTCP */
557
558 #define TFO_F_OFFER_COOKIE 0x01 /* We will offer a cookie */
559 #define TFO_F_COOKIE_VALID 0x02 /* The received cookie is valid */
560 #define TFO_F_COOKIE_REQ 0x04 /* Client requested a new cookie */
561 #define TFO_F_COOKIE_SENT 0x08 /* Client did send a cookie in the SYN */
562 #define TFO_F_SYN_LOSS 0x10 /* A SYN-loss triggered a fallback to regular TCP on the client-side */
563 #define TFO_F_NO_SNDPROBING 0x20 /* This network is guaranteed to support TFO in the upstream direction */
564 #define TFO_F_HEURISTIC_DONE 0x40 /* We have already marked this network as bad */
565 u_int8_t t_tfo_flags;
566 #define TFO_S_SYNDATA_RCV 0x01 /* SYN+data has been received */
567 #define TFO_S_COOKIEREQ_RECV 0x02 /* TFO-cookie request received */
568 #define TFO_S_COOKIE_SENT 0x04 /* TFO-cookie announced in SYN/ACK */
569 #define TFO_S_COOKIE_INVALID 0x08 /* Received TFO-cookie is invalid */
570 #define TFO_S_COOKIE_REQ 0x10 /* TFO-cookie requested within the SYN */
571 #define TFO_S_COOKIE_RCV 0x20 /* TFO-cookie received in SYN/ACK */
572 #define TFO_S_SYN_DATA_SENT 0x40 /* SYN+data sent */
573 #define TFO_S_SYN_DATA_ACKED 0x80 /* SYN+data has been acknowledged in SYN/ACK */
574 #define TFO_S_SYN_LOSS 0x0100 /* SYN+TFO has been lost - fallback to regular TCP */
575 #define TFO_S_COOKIE_WRONG 0x0200 /* Cookie we sent in the SYN was wrong */
576 #define TFO_S_NO_COOKIE_RCV 0x0400 /* We asked for a cookie but didn't get one */
577 #define TFO_S_HEURISTICS_DISABLE 0x0800 /* TFO-heuristics disabled it for this connection */
578 #define TFO_S_SEND_BLACKHOLE 0x1000 /* TFO got blackholed in the send direction */
579 #define TFO_S_RECV_BLACKHOLE 0x2000 /* TFO got blackholed in the recv direction */
580 #define TFO_S_ONE_BYTE_PROXY 0x4000 /* TFO failed because of a proxy acknowledging just one byte */
581 u_int16_t t_tfo_stats;
582
583 u_int8_t t_tfo_probes; /* TFO-probes we did send */
584 /*
585 * This here is the TFO-probing state-machine. Transitions are as follows:
586 *
587 * Current state: PROBE_NONE
588 * Event: SYN+DATA acknowledged
589 * Action: Transition to PROBE_PROBING and set keepalive-timer
590 *
591 * Current state: PROBE_PROBING (initial state)
592 * Event: Receive data
593 * Action: Transition to PROBE_NONE and cancel keepalive-timer
594 * Event: Receive ACK that does not indicate a hole
595 * Action: Transition to PROBE_NONE and cancel keepalive-timer
596 * Event: Receive ACK that indicates a hole
597 * Action: Transition to PROBE_WAIT_DATA and set a short timer
598 * to wait for the final segment.
599 * Event: Keepalive-timeout (did not receive any segment)
600 * Action: Signal ETIMEDOUT as with regular keepalive-timers
601 *
602 * Current state: PROBE_WAIT_DATA
603 * Event: Receive data
604 * Action: Transition to PROBE_NONE and cancel keepalive-timer
605 * Event: Data-timeout (did not receive the expected data)
606 * Action: Signal ENODATA up to the app and close everything.
607 */
608 #define TFO_PROBE_NONE 0 /* Not probing now */
609 #define TFO_PROBE_PROBING 1 /* Sending out TCP-keepalives waiting for reply */
610 #define TFO_PROBE_WAIT_DATA 2 /* Received reply, waiting for data */
611 u_int8_t t_tfo_probe_state;
612
613 u_int32_t t_rcvoopack; /* out-of-order packets received */
614 u_int32_t t_pawsdrop; /* segments dropped due to PAWS */
615 u_int32_t t_sack_recovery_episode; /* SACK recovery episodes */
616 u_int32_t t_reordered_pkts; /* packets reorderd */
617 u_int32_t t_dsack_sent; /* Sent DSACK notification */
618 u_int32_t t_dsack_recvd; /* Received a valid DSACK option */
619 SLIST_HEAD(,tcp_notify_ack_marker) t_notify_ack; /* state for notifying data acknowledgements */
620 u_int32_t t_recv_throttle_ts; /* TS for start of recv throttle */
621 u_int32_t t_rxt_minimum_timeout; /* minimum retransmit timeout in ms */
622 };
623
624 #define IN_FASTRECOVERY(tp) (tp->t_flags & TF_FASTRECOVERY)
625 #define SACK_ENABLED(tp) (tp->t_flagsext & TF_SACK_ENABLE)
626
627 /*
628 * If the connection is in a throttled state due to advisory feedback from
629 * the interface output queue, reset that state. We do this in favor
630 * of entering recovery because the data transfer during recovery
631 * should be just a trickle and it will help to improve performance.
632 * We also do not want to back off twice in the same RTT.
633 */
634 #define ENTER_FASTRECOVERY(_tp_) do { \
635 (_tp_)->t_flags |= TF_FASTRECOVERY; \
636 if (INP_IS_FLOW_CONTROLLED((_tp_)->t_inpcb)) \
637 inp_reset_fc_state((_tp_)->t_inpcb); \
638 if (!SLIST_EMPTY(&tp->t_rxt_segments)) \
639 tcp_rxtseg_clean(tp); \
640 } while(0)
641
642 #define EXIT_FASTRECOVERY(_tp_) do { \
643 (_tp_)->t_flags &= ~TF_FASTRECOVERY; \
644 (_tp_)->t_dupacks = 0; \
645 (_tp_)->t_rexmtthresh = tcprexmtthresh; \
646 (_tp_)->t_bytes_acked = 0; \
647 (_tp_)->ecn_flags &= ~TE_INRECOVERY; \
648 (_tp_)->t_timer[TCPT_PTO] = 0; \
649 (_tp_)->t_flagsext &= ~TF_RESCUE_RXT; \
650 (_tp_)->t_lossflightsize = 0; \
651 } while(0)
652
653 /*
654 * When the number of duplicate acks received is less than
655 * the retransmit threshold, use Limited Transmit algorithm
656 */
657 extern int tcprexmtthresh;
658 #define ALLOW_LIMITED_TRANSMIT(_tp_) \
659 ((_tp_)->t_dupacks > 0 && \
660 (_tp_)->t_dupacks < (_tp_)->t_rexmtthresh && \
661 ((_tp_)->t_flagsext & (TF_PKTS_REORDERED|TF_DELAY_RECOVERY)) \
662 != (TF_PKTS_REORDERED|TF_DELAY_RECOVERY))
663
664 /*
665 * This condition is true is timestamp option is supported
666 * on a connection.
667 */
668 #define TSTMP_SUPPORTED(_tp_) \
669 (((_tp_)->t_flags & (TF_REQ_TSTMP|TF_RCVD_TSTMP)) == \
670 (TF_REQ_TSTMP|TF_RCVD_TSTMP))
671
672 /*
673 * This condition is true if window scale option is supported
674 * on a connection
675 */
676 #define TCP_WINDOW_SCALE_ENABLED(_tp_) \
677 (((_tp_)->t_flags & (TF_RCVD_SCALE|TF_REQ_SCALE)) == \
678 (TF_RCVD_SCALE|TF_REQ_SCALE))
679
680 /* Is ECN enabled end-to-end */
681 #define TCP_ECN_ENABLED(_tp_) \
682 (((_tp_)->ecn_flags & (TE_ECN_ON)) == (TE_ECN_ON))
683
684 /*
685 * Gives number of bytes acked by this ack
686 */
687 #define BYTES_ACKED(_th_, _tp_) \
688 ((_th_)->th_ack - (_tp_)->snd_una)
689
690 /* Returns true if a DSACK option should be sent */
691 #define TCP_SEND_DSACK_OPT(_tp_) \
692 ((_tp_)->t_dsack_lseq > 0 && (_tp_)->t_dsack_rseq > 0)
693
694 /* Check if DSACK option should be processed */
695 #define TCP_DSACK_ENABLED(tp) (tcp_dsack_enable == 1 && \
696 !(tp->t_flagsext & TF_DISABLE_DSACK))
697
698 /*
699 * Returns true if a DSACK sequence is within the max send window that will
700 * be accepted. In order to set a window to validate sequence numbers, the
701 * max send window within which a DSACK option is processed is limited.
702 *
703 * We need to choose a maximum window to check if the sequence number is
704 * within the window. One arbitrary choice is 256 * MSS because if the
705 * window is as large as 256 segments it might be big enough to ignore the
706 * DSACK option. Choosing a much larger limit means that the memory for
707 * retransmit segments can be held for a longer time.
708 */
709 #define TCP_DSACK_MAX_SEND_WINDOW(_tp_) ((_tp_)->t_maxseg << 8)
710 #define TCP_DSACK_SEQ_IN_WINDOW(_tp_, _seq_, _una_) \
711 (SEQ_LEQ((_seq_), (_tp_)->snd_max) && \
712 SEQ_GEQ((_seq_), ((_una_) - TCP_DSACK_MAX_SEND_WINDOW(_tp_))))
713
714 #define TCP_RESET_REXMT_STATE(_tp_) do { \
715 (_tp_)->t_rxtshift = 0; \
716 (_tp_)->t_rxtstart = 0; \
717 mptcp_reset_rexmit_state((_tp_)); \
718 } while(0);
719
720 #define TCP_AUTORCVBUF_MAX(_ifp_) (((_ifp_) != NULL && \
721 ((_ifp_)->if_eflags & IFEF_3CA)) ? tcp_autorcvbuf_max_ca : \
722 tcp_autorcvbuf_max)
723
724 enum tcp_cc_event {
725 TCP_CC_CWND_INIT, /* 0 */
726 TCP_CC_INSEQ_ACK_RCVD, /* 1 */
727 TCP_CC_ACK_RCVD, /* 2 */
728 TCP_CC_ENTER_FASTRECOVERY, /* 3 */
729 TCP_CC_IN_FASTRECOVERY, /* 4 */
730 TCP_CC_EXIT_FASTRECOVERY, /* 5 */
731 TCP_CC_PARTIAL_ACK, /* 6 */
732 TCP_CC_IDLE_TIMEOUT, /* 7 */
733 TCP_CC_REXMT_TIMEOUT, /* 8 */
734 TCP_CC_ECN_RCVD, /* 9 */
735 TCP_CC_BAD_REXMT_RECOVERY, /* 10 */
736 TCP_CC_OUTPUT_ERROR, /* 11 */
737 TCP_CC_CHANGE_ALGO, /* 12 */
738 TCP_CC_FLOW_CONTROL, /* 13 */
739 TCP_CC_SUSPEND, /* 14 */
740 TCP_CC_LIMITED_TRANSMIT, /* 15 */
741 TCP_CC_EARLY_RETRANSMIT, /* 16 */
742 TCP_CC_TLP_RECOVERY, /* 17 */
743 TCP_CC_TLP_RECOVER_LASTPACKET, /* 18 */
744 TCP_CC_DELAY_FASTRECOVERY, /* 19 */
745 TCP_CC_TLP_IN_FASTRECOVERY, /* 20 */
746 TCP_CC_DSACK_BAD_REXMT /* 21 */
747 };
748
749 /*
750 * Structure to hold TCP options that are only used during segment
751 * processing (in tcp_input), but not held in the tcpcb.
752 * It's basically used to reduce the number of parameters
753 * to tcp_dooptions.
754 */
755 struct tcpopt {
756 u_int32_t to_flags; /* which options are present */
757 #define TOF_TS 0x0001 /* timestamp */
758 #define TOF_MSS 0x0010
759 #define TOF_SCALE 0x0020
760 #define TOF_SIGNATURE 0x0040 /* signature option present */
761 #define TOF_SIGLEN 0x0080 /* signature length valid (RFC2385) */
762 #define TOF_SACK 0x0100 /* Peer sent SACK option */
763 #define TOF_MPTCP 0x0200 /* MPTCP options to be dropped */
764 #define TOF_TFO 0x0400 /* TFO cookie option present */
765 #define TOF_TFOREQ 0x0800 /* TFO cookie request present */
766 u_int32_t to_tsval;
767 u_int32_t to_tsecr;
768 u_int16_t to_mss;
769 u_int8_t to_requested_s_scale;
770 u_int8_t to_nsacks; /* number of SACK blocks */
771 u_char *to_sacks; /* pointer to the first SACK blocks */
772 u_char *to_tfo; /* pointer to the TFO cookie */
773 };
774
775 /*
776 * The TAO cache entry which is stored in the protocol family specific
777 * portion of the route metrics.
778 */
779 struct rmxp_tao {
780 tcp_cc tao_cc; /* latest CC in valid SYN */
781 tcp_cc tao_ccsent; /* latest CC sent to peer */
782 u_short tao_mssopt; /* peer's cached MSS */
783 #ifdef notyet
784 u_short tao_flags; /* cache status flags */
785 #define TAOF_DONT 0x0001 /* peer doesn't understand rfc1644 */
786 #define TAOF_OK 0x0002 /* peer does understand rfc1644 */
787 #define TAOF_UNDEF 0 /* we don't know yet */
788 #endif /* notyet */
789 };
790 #define rmx_taop(r) ((struct rmxp_tao *)(r).rmx_filler)
791
792 #define intotcpcb(ip) ((struct tcpcb *)(ip)->inp_ppcb)
793 #define sototcpcb(so) (intotcpcb(sotoinpcb(so)))
794
795 /* TFO-specific defines */
796 #define TFO_COOKIE_LEN_MIN 4
797 #define TFO_COOKIE_LEN_DEFAULT 8
798 #define TFO_COOKIE_LEN_MAX 16
799
800 /*
801 * The initial retransmission should happen at rtt + 4 * rttvar.
802 * Because of the way we do the smoothing, srtt and rttvar
803 * will each average +1/2 tick of bias. When we compute
804 * the retransmit timer, we want 1/2 tick of rounding and
805 * 1 extra tick because of +-1/2 tick uncertainty in the
806 * firing of the timer. The bias will give us exactly the
807 * 1.5 tick we need. But, because the bias is
808 * statistical, we have to test that we don't drop below
809 * the minimum feasible timer (which is 2 ticks).
810 * This version of the macro adapted from a paper by Lawrence
811 * Brakmo and Larry Peterson which outlines a problem caused
812 * by insufficient precision in the original implementation,
813 * which results in inappropriately large RTO values for very
814 * fast networks.
815 */
816 #define TCP_REXMTVAL(tp) \
817 max((tp)->t_rttmin, (((tp)->t_srtt >> (TCP_RTT_SHIFT - TCP_DELTA_SHIFT)) \
818 + (tp)->t_rttvar) >> TCP_DELTA_SHIFT)
819
820 /*
821 * Jaguar compatible TCP control block, for xtcpcb
822 * Does not have the old fields
823 */
824 struct otcpcb {
825 #else
826 struct tseg_qent;
827 _TCPCB_LIST_HEAD(tsegqe_head, tseg_qent);
828
829 struct tcpcb {
830 #endif /* KERNEL_PRIVATE */
831 #if defined(KERNEL_PRIVATE)
832 u_int32_t t_segq;
833 #else
834 struct tsegqe_head t_segq;
835 #endif /* KERNEL_PRIVATE */
836 int t_dupacks; /* consecutive dup acks recd */
837 u_int32_t unused; /* unused now: was t_template */
838
839 int t_timer[TCPT_NTIMERS_EXT]; /* tcp timers */
840
841 _TCPCB_PTR(struct inpcb *) t_inpcb; /* back pointer to internet pcb */
842 int t_state; /* state of this connection */
843 u_int t_flags;
844 #define TF_ACKNOW 0x00001 /* ack peer immediately */
845 #define TF_DELACK 0x00002 /* ack, but try to delay it */
846 #define TF_NODELAY 0x00004 /* don't delay packets to coalesce */
847 #define TF_NOOPT 0x00008 /* don't use tcp options */
848 #define TF_SENTFIN 0x00010 /* have sent FIN */
849 #define TF_REQ_SCALE 0x00020 /* have/will request window scaling */
850 #define TF_RCVD_SCALE 0x00040 /* other side has requested scaling */
851 #define TF_REQ_TSTMP 0x00080 /* have/will request timestamps */
852 #define TF_RCVD_TSTMP 0x00100 /* a timestamp was received in SYN */
853 #define TF_SACK_PERMIT 0x00200 /* other side said I could SACK */
854 #define TF_NEEDSYN 0x00400 /* send SYN (implicit state) */
855 #define TF_NEEDFIN 0x00800 /* send FIN (implicit state) */
856 #define TF_NOPUSH 0x01000 /* don't push */
857 #define TF_REQ_CC 0x02000 /* have/will request CC */
858 #define TF_RCVD_CC 0x04000 /* a CC was received in SYN */
859 #define TF_SENDCCNEW 0x08000 /* Not implemented */
860 #define TF_MORETOCOME 0x10000 /* More data to be appended to sock */
861 #define TF_LQ_OVERFLOW 0x20000 /* listen queue overflow */
862 #define TF_RXWIN0SENT 0x40000 /* sent a receiver win 0 in response */
863 #define TF_SLOWLINK 0x80000 /* route is a on a modem speed link */
864
865 int t_force; /* 1 if forcing out a byte */
866
867 tcp_seq snd_una; /* send unacknowledged */
868 tcp_seq snd_max; /* highest sequence number sent;
869 * used to recognize retransmits
870 */
871 tcp_seq snd_nxt; /* send next */
872 tcp_seq snd_up; /* send urgent pointer */
873
874 tcp_seq snd_wl1; /* window update seg seq number */
875 tcp_seq snd_wl2; /* window update seg ack number */
876 tcp_seq iss; /* initial send sequence number */
877 tcp_seq irs; /* initial receive sequence number */
878
879 tcp_seq rcv_nxt; /* receive next */
880 tcp_seq rcv_adv; /* advertised window */
881 u_int32_t rcv_wnd; /* receive window */
882 tcp_seq rcv_up; /* receive urgent pointer */
883
884 u_int32_t snd_wnd; /* send window */
885 u_int32_t snd_cwnd; /* congestion-controlled window */
886 u_int32_t snd_ssthresh; /* snd_cwnd size threshold for
887 * for slow start exponential to
888 * linear switch
889 */
890 u_int t_maxopd; /* mss plus options */
891
892 u_int32_t t_rcvtime; /* time at which a packet was received */
893 u_int32_t t_starttime; /* time connection was established */
894 int t_rtttime; /* round trip time */
895 tcp_seq t_rtseq; /* sequence number being timed */
896
897 int t_rxtcur; /* current retransmit value (ticks) */
898 u_int t_maxseg; /* maximum segment size */
899 int t_srtt; /* smoothed round-trip time */
900 int t_rttvar; /* variance in round-trip time */
901
902 int t_rxtshift; /* log(2) of rexmt exp. backoff */
903 u_int t_rttmin; /* minimum rtt allowed */
904 u_int32_t t_rttupdated; /* number of times rtt sampled */
905 u_int32_t max_sndwnd; /* largest window peer has offered */
906
907 int t_softerror; /* possible error not yet reported */
908 /* out-of-band data */
909 char t_oobflags; /* have some */
910 char t_iobc; /* input character */
911 #define TCPOOB_HAVEDATA 0x01
912 #define TCPOOB_HADDATA 0x02
913 /* RFC 1323 variables */
914 u_char snd_scale; /* window scaling for send window */
915 u_char rcv_scale; /* window scaling for recv window */
916 u_char request_r_scale; /* pending window scaling */
917 u_char requested_s_scale;
918 u_int32_t ts_recent; /* timestamp echo data */
919
920 u_int32_t ts_recent_age; /* when last updated */
921 tcp_seq last_ack_sent;
922 /* RFC 1644 variables */
923 tcp_cc cc_send; /* send connection count */
924 tcp_cc cc_recv; /* receive connection count */
925 tcp_seq snd_recover; /* for use in fast recovery */
926 /* experimental */
927 u_int32_t snd_cwnd_prev; /* cwnd prior to retransmit */
928 u_int32_t snd_ssthresh_prev; /* ssthresh prior to retransmit */
929 u_int32_t t_badrxtwin; /* window for retransmit recovery */
930 };
931
932 #define tcps_ecn_setup tcps_ecn_client_success
933 #define tcps_sent_cwr tcps_ecn_recv_ece
934 #define tcps_sent_ece tcps_ecn_sent_ece
935
936 /*
937 * TCP statistics.
938 * Many of these should be kept per connection,
939 * but that's inconvenient at the moment.
940 */
941 struct tcpstat {
942 u_int32_t tcps_connattempt; /* connections initiated */
943 u_int32_t tcps_accepts; /* connections accepted */
944 u_int32_t tcps_connects; /* connections established */
945 u_int32_t tcps_drops; /* connections dropped */
946 u_int32_t tcps_conndrops; /* embryonic connections dropped */
947 u_int32_t tcps_closed; /* conn. closed (includes drops) */
948 u_int32_t tcps_segstimed; /* segs where we tried to get rtt */
949 u_int32_t tcps_rttupdated; /* times we succeeded */
950 u_int32_t tcps_delack; /* delayed acks sent */
951 u_int32_t tcps_timeoutdrop; /* conn. dropped in rxmt timeout */
952 u_int32_t tcps_rexmttimeo; /* retransmit timeouts */
953 u_int32_t tcps_persisttimeo; /* persist timeouts */
954 u_int32_t tcps_keeptimeo; /* keepalive timeouts */
955 u_int32_t tcps_keepprobe; /* keepalive probes sent */
956 u_int32_t tcps_keepdrops; /* connections dropped in keepalive */
957
958 u_int32_t tcps_sndtotal; /* total packets sent */
959 u_int32_t tcps_sndpack; /* data packets sent */
960 u_int32_t tcps_sndbyte; /* data bytes sent */
961 u_int32_t tcps_sndrexmitpack; /* data packets retransmitted */
962 u_int32_t tcps_sndrexmitbyte; /* data bytes retransmitted */
963 u_int32_t tcps_sndacks; /* ack-only packets sent */
964 u_int32_t tcps_sndprobe; /* window probes sent */
965 u_int32_t tcps_sndurg; /* packets sent with URG only */
966 u_int32_t tcps_sndwinup; /* window update-only packets sent */
967 u_int32_t tcps_sndctrl; /* control (SYN|FIN|RST) packets sent */
968
969 u_int32_t tcps_rcvtotal; /* total packets received */
970 u_int32_t tcps_rcvpack; /* packets received in sequence */
971 u_int32_t tcps_rcvbyte; /* bytes received in sequence */
972 u_int32_t tcps_rcvbadsum; /* packets received with ccksum errs */
973 u_int32_t tcps_rcvbadoff; /* packets received with bad offset */
974 u_int32_t tcps_rcvmemdrop; /* packets dropped for lack of memory */
975 u_int32_t tcps_rcvshort; /* packets received too short */
976 u_int32_t tcps_rcvduppack; /* duplicate-only packets received */
977 u_int32_t tcps_rcvdupbyte; /* duplicate-only bytes received */
978 u_int32_t tcps_rcvpartduppack; /* packets with some duplicate data */
979 u_int32_t tcps_rcvpartdupbyte; /* dup. bytes in part-dup. packets */
980 u_int32_t tcps_rcvoopack; /* out-of-order packets received */
981 u_int32_t tcps_rcvoobyte; /* out-of-order bytes received */
982 u_int32_t tcps_rcvpackafterwin; /* packets with data after window */
983 u_int32_t tcps_rcvbyteafterwin; /* bytes rcvd after window */
984 u_int32_t tcps_rcvafterclose; /* packets rcvd after "close" */
985 u_int32_t tcps_rcvwinprobe; /* rcvd window probe packets */
986 u_int32_t tcps_rcvdupack; /* rcvd duplicate acks */
987 u_int32_t tcps_rcvacktoomuch; /* rcvd acks for unsent data */
988 u_int32_t tcps_rcvackpack; /* rcvd ack packets */
989 u_int32_t tcps_rcvackbyte; /* bytes acked by rcvd acks */
990 u_int32_t tcps_rcvwinupd; /* rcvd window update packets */
991 u_int32_t tcps_pawsdrop; /* segments dropped due to PAWS */
992 u_int32_t tcps_predack; /* times hdr predict ok for acks */
993 u_int32_t tcps_preddat; /* times hdr predict ok for data pkts */
994 u_int32_t tcps_pcbcachemiss;
995 u_int32_t tcps_cachedrtt; /* times cached RTT in route updated */
996 u_int32_t tcps_cachedrttvar; /* times cached rttvar updated */
997 u_int32_t tcps_cachedssthresh; /* times cached ssthresh updated */
998 u_int32_t tcps_usedrtt; /* times RTT initialized from route */
999 u_int32_t tcps_usedrttvar; /* times RTTVAR initialized from rt */
1000 u_int32_t tcps_usedssthresh; /* times ssthresh initialized from rt*/
1001 u_int32_t tcps_persistdrop; /* timeout in persist state */
1002 u_int32_t tcps_badsyn; /* bogus SYN, e.g. premature ACK */
1003 u_int32_t tcps_mturesent; /* resends due to MTU discovery */
1004 u_int32_t tcps_listendrop; /* listen queue overflows */
1005
1006 /* new stats from FreeBSD 5.4 sync up */
1007 u_int32_t tcps_minmssdrops; /* average minmss too low drops */
1008 u_int32_t tcps_sndrexmitbad; /* unnecessary packet retransmissions */
1009 u_int32_t tcps_badrst; /* ignored RSTs in the window */
1010
1011 u_int32_t tcps_sc_added; /* entry added to syncache */
1012 u_int32_t tcps_sc_retransmitted; /* syncache entry was retransmitted */
1013 u_int32_t tcps_sc_dupsyn; /* duplicate SYN packet */
1014 u_int32_t tcps_sc_dropped; /* could not reply to packet */
1015 u_int32_t tcps_sc_completed; /* successful extraction of entry */
1016 u_int32_t tcps_sc_bucketoverflow; /* syncache per-bucket limit hit */
1017 u_int32_t tcps_sc_cacheoverflow; /* syncache cache limit hit */
1018 u_int32_t tcps_sc_reset; /* RST removed entry from syncache */
1019 u_int32_t tcps_sc_stale; /* timed out or listen socket gone */
1020 u_int32_t tcps_sc_aborted; /* syncache entry aborted */
1021 u_int32_t tcps_sc_badack; /* removed due to bad ACK */
1022 u_int32_t tcps_sc_unreach; /* ICMP unreachable received */
1023 u_int32_t tcps_sc_zonefail; /* zalloc() failed */
1024 u_int32_t tcps_sc_sendcookie; /* SYN cookie sent */
1025 u_int32_t tcps_sc_recvcookie; /* SYN cookie received */
1026
1027 u_int32_t tcps_hc_added; /* entry added to hostcache */
1028 u_int32_t tcps_hc_bucketoverflow; /* hostcache per bucket limit hit */
1029
1030 /* SACK related stats */
1031 u_int32_t tcps_sack_recovery_episode; /* SACK recovery episodes */
1032 u_int32_t tcps_sack_rexmits; /* SACK rexmit segments */
1033 u_int32_t tcps_sack_rexmit_bytes; /* SACK rexmit bytes */
1034 u_int32_t tcps_sack_rcv_blocks; /* SACK blocks (options) received */
1035 u_int32_t tcps_sack_send_blocks; /* SACK blocks (options) sent */
1036 u_int32_t tcps_sack_sboverflow; /* SACK sendblock overflow */
1037
1038 u_int32_t tcps_bg_rcvtotal; /* total background packets received */
1039 u_int32_t tcps_rxtfindrop; /* drop conn after retransmitting FIN */
1040 u_int32_t tcps_fcholdpacket; /* packets withheld because of flow control */
1041
1042 /* LRO related stats */
1043 u_int32_t tcps_coalesced_pack; /* number of coalesced packets */
1044 u_int32_t tcps_flowtbl_full; /* times flow table was full */
1045 u_int32_t tcps_flowtbl_collision; /* collisions in flow tbl */
1046 u_int32_t tcps_lro_twopack; /* 2 packets coalesced */
1047 u_int32_t tcps_lro_multpack; /* 3 or 4 pkts coalesced */
1048 u_int32_t tcps_lro_largepack; /* 5 or more pkts coalesced */
1049
1050 u_int32_t tcps_limited_txt; /* Limited transmit used */
1051 u_int32_t tcps_early_rexmt; /* Early retransmit used */
1052 u_int32_t tcps_sack_ackadv; /* Cumulative ack advanced along with sack */
1053
1054 /* Checksum related stats */
1055 u_int32_t tcps_rcv_swcsum; /* tcp swcksum (inbound), packets */
1056 u_int32_t tcps_rcv_swcsum_bytes; /* tcp swcksum (inbound), bytes */
1057 u_int32_t tcps_rcv6_swcsum; /* tcp6 swcksum (inbound), packets */
1058 u_int32_t tcps_rcv6_swcsum_bytes; /* tcp6 swcksum (inbound), bytes */
1059 u_int32_t tcps_snd_swcsum; /* tcp swcksum (outbound), packets */
1060 u_int32_t tcps_snd_swcsum_bytes; /* tcp swcksum (outbound), bytes */
1061 u_int32_t tcps_snd6_swcsum; /* tcp6 swcksum (outbound), packets */
1062 u_int32_t tcps_snd6_swcsum_bytes; /* tcp6 swcksum (outbound), bytes */
1063 u_int32_t tcps_msg_unopkts; /* unordered packet on TCP msg stream */
1064 u_int32_t tcps_msg_unoappendfail; /* failed to append unordered pkt */
1065 u_int32_t tcps_msg_sndwaithipri; /* send is waiting for high priority data */
1066
1067 /* MPTCP Related stats */
1068 u_int32_t tcps_invalid_mpcap; /* Invalid MPTCP capable opts */
1069 u_int32_t tcps_invalid_joins; /* Invalid MPTCP joins */
1070 u_int32_t tcps_mpcap_fallback; /* TCP fallback in primary */
1071 u_int32_t tcps_join_fallback; /* No MPTCP in secondary */
1072 u_int32_t tcps_estab_fallback; /* DSS option dropped */
1073 u_int32_t tcps_invalid_opt; /* Catchall error stat */
1074 u_int32_t tcps_mp_outofwin; /* Packet lies outside the
1075 shared recv window */
1076 u_int32_t tcps_mp_reducedwin; /* Reduced subflow window */
1077 u_int32_t tcps_mp_badcsum; /* Bad DSS csum */
1078 u_int32_t tcps_mp_oodata; /* Out of order data */
1079 u_int32_t tcps_mp_switches; /* number of subflow switch */
1080 u_int32_t tcps_mp_rcvtotal; /* number of rcvd packets */
1081 u_int32_t tcps_mp_rcvbytes; /* number of bytes received */
1082 u_int32_t tcps_mp_sndpacks; /* number of data packs sent */
1083 u_int32_t tcps_mp_sndbytes; /* number of bytes sent */
1084 u_int32_t tcps_join_rxmts; /* join ack retransmits */
1085 u_int32_t tcps_tailloss_rto; /* RTO due to tail loss */
1086 u_int32_t tcps_reordered_pkts; /* packets reorderd */
1087 u_int32_t tcps_recovered_pkts; /* recovered after loss */
1088 u_int32_t tcps_pto; /* probe timeout */
1089 u_int32_t tcps_rto_after_pto; /* RTO after a probe */
1090 u_int32_t tcps_tlp_recovery; /* TLP induced fast recovery */
1091 u_int32_t tcps_tlp_recoverlastpkt; /* TLP recoverd last pkt */
1092 u_int32_t tcps_ecn_client_success; /* client-side connection negotiated ECN */
1093 u_int32_t tcps_ecn_recv_ece; /* ECE received, sent CWR */
1094 u_int32_t tcps_ecn_sent_ece; /* Sent ECE notification */
1095 u_int32_t tcps_detect_reordering; /* Detect pkt reordering */
1096 u_int32_t tcps_delay_recovery; /* Delay fast recovery */
1097 u_int32_t tcps_avoid_rxmt; /* Retransmission was avoided */
1098 u_int32_t tcps_unnecessary_rxmt; /* Retransmission was not needed */
1099 u_int32_t tcps_nostretchack; /* disabled stretch ack algorithm on a connection */
1100 u_int32_t tcps_rescue_rxmt; /* SACK rescue retransmit */
1101 u_int32_t tcps_pto_in_recovery; /* rescue retransmit in fast recovery */
1102 u_int32_t tcps_pmtudbh_reverted; /* PMTU Blackhole detection, segment size reverted */
1103
1104 /* DSACK related statistics */
1105 u_int32_t tcps_dsack_disable; /* DSACK disabled due to n/w duplication */
1106 u_int32_t tcps_dsack_ackloss; /* ignore DSACK due to ack loss */
1107 u_int32_t tcps_dsack_badrexmt; /* DSACK based bad rexmt recovery */
1108 u_int32_t tcps_dsack_sent; /* Sent DSACK notification */
1109 u_int32_t tcps_dsack_recvd; /* Received a valid DSACK option */
1110 u_int32_t tcps_dsack_recvd_old; /* Received an out of window DSACK option */
1111
1112 /* MPTCP Subflow selection stats */
1113 u_int32_t tcps_mp_sel_symtomsd; /* By symptomsd */
1114 u_int32_t tcps_mp_sel_rtt; /* By RTT comparison */
1115 u_int32_t tcps_mp_sel_rto; /* By RTO comparison */
1116 u_int32_t tcps_mp_sel_peer; /* By peer's output pattern */
1117 u_int32_t tcps_mp_num_probes; /* Number of probes sent */
1118 u_int32_t tcps_mp_verdowngrade; /* MPTCP version downgrade */
1119 u_int32_t tcps_drop_after_sleep; /* drop after long AP sleep */
1120 u_int32_t tcps_probe_if; /* probe packets after interface availability */
1121 u_int32_t tcps_probe_if_conflict; /* Can't send probe packets for interface */
1122
1123 u_int32_t tcps_ecn_client_setup; /* Attempted ECN setup from client side */
1124 u_int32_t tcps_ecn_server_setup; /* Attempted ECN setup from server side */
1125 u_int32_t tcps_ecn_server_success; /* server-side connection negotiated ECN */
1126 u_int32_t tcps_ecn_lost_synack; /* Lost SYN-ACK with ECN setup */
1127 u_int32_t tcps_ecn_lost_syn; /* Lost SYN with ECN setup */
1128 u_int32_t tcps_ecn_not_supported; /* Server did not support ECN setup */
1129 u_int32_t tcps_ecn_recv_ce; /* Received CE from the network */
1130 u_int32_t tcps_ecn_conn_recv_ce; /* Number of connections received CE atleast once */
1131 u_int32_t tcps_ecn_conn_recv_ece; /* Number of connections received ECE atleast once */
1132 u_int32_t tcps_ecn_conn_plnoce; /* Number of connections that received no CE and sufferred packet loss */
1133 u_int32_t tcps_ecn_conn_pl_ce; /* Number of connections that received CE and sufferred packet loss */
1134 u_int32_t tcps_ecn_conn_nopl_ce; /* Number of connections that received CE and sufferred no packet loss */
1135 u_int32_t tcps_ecn_fallback_synloss; /* Number of times we did fall back due to SYN-Loss */
1136 u_int32_t tcps_ecn_fallback_reorder; /* Number of times we fallback because we detected the PAWS-issue */
1137 u_int32_t tcps_ecn_fallback_ce; /* Number of times we fallback because we received too many CEs */
1138
1139 /* TFO-related statistics */
1140 u_int32_t tcps_tfo_syn_data_rcv; /* Received a SYN+data with valid cookie */
1141 u_int32_t tcps_tfo_cookie_req_rcv;/* Received a TFO cookie-request */
1142 u_int32_t tcps_tfo_cookie_sent; /* Offered a TFO-cookie to the client */
1143 u_int32_t tcps_tfo_cookie_invalid;/* Received an invalid TFO-cookie */
1144 u_int32_t tcps_tfo_cookie_req; /* Cookie requested with the SYN */
1145 u_int32_t tcps_tfo_cookie_rcv; /* Cookie received in a SYN/ACK */
1146 u_int32_t tcps_tfo_syn_data_sent; /* SYN+data+cookie sent */
1147 u_int32_t tcps_tfo_syn_data_acked;/* SYN+data has been acknowledged */
1148 u_int32_t tcps_tfo_syn_loss; /* SYN+TFO has been lost and we fallback */
1149 u_int32_t tcps_tfo_blackhole; /* TFO got blackholed by a middlebox. */
1150 u_int32_t tcps_tfo_cookie_wrong; /* TFO-cookie we sent was wrong */
1151 u_int32_t tcps_tfo_no_cookie_rcv; /* We asked for a cookie but didn't get one */
1152 u_int32_t tcps_tfo_heuristics_disable; /* TFO got disabled due to heuristics */
1153 u_int32_t tcps_tfo_sndblackhole; /* TFO got blackholed in the sending direction */
1154 u_int32_t tcps_mss_to_default; /* Change MSS to default using link status report */
1155 u_int32_t tcps_mss_to_medium; /* Change MSS to medium using link status report */
1156 u_int32_t tcps_mss_to_low; /* Change MSS to low using link status report */
1157 u_int32_t tcps_ecn_fallback_droprst; /* ECN fallback caused by connection drop due to RST */
1158 u_int32_t tcps_ecn_fallback_droprxmt; /* ECN fallback due to drop after multiple retransmits */
1159 u_int32_t tcps_ecn_fallback_synrst; /* ECN fallback due to rst after syn */
1160
1161 u_int32_t tcps_mptcp_rcvmemdrop; /* MPTCP packets dropped for lack of memory */
1162 u_int32_t tcps_mptcp_rcvduppack; /* MPTCP duplicate-only packets received */
1163 u_int32_t tcps_mptcp_rcvpackafterwin; /* MPTCP packets with data after window */
1164
1165 /* TCP timer statistics */
1166 u_int32_t tcps_timer_drift_le_1_ms; /* Timer drift less or equal to 1 ms */
1167 u_int32_t tcps_timer_drift_le_10_ms; /* Timer drift less or equal to 10 ms */
1168 u_int32_t tcps_timer_drift_le_20_ms; /* Timer drift less or equal to 20 ms */
1169 u_int32_t tcps_timer_drift_le_50_ms; /* Timer drift less or equal to 50 ms */
1170 u_int32_t tcps_timer_drift_le_100_ms; /* Timer drift less or equal to 100 ms */
1171 u_int32_t tcps_timer_drift_le_200_ms; /* Timer drift less or equal to 200 ms */
1172 u_int32_t tcps_timer_drift_le_500_ms; /* Timer drift less or equal to 500 ms */
1173 u_int32_t tcps_timer_drift_le_1000_ms; /* Timer drift less or equal to 1000 ms */
1174 u_int32_t tcps_timer_drift_gt_1000_ms; /* Timer drift greater than 1000 ms */
1175
1176 u_int32_t tcps_mptcp_handover_attempt; /* Total number of MPTCP-attempts using handover mode */
1177 u_int32_t tcps_mptcp_interactive_attempt; /* Total number of MPTCP-attempts using interactive mode */
1178 u_int32_t tcps_mptcp_aggregate_attempt; /* Total number of MPTCP-attempts using aggregate mode */
1179 u_int32_t tcps_mptcp_fp_handover_attempt; /* Same as previous three but only for first-party apps */
1180 u_int32_t tcps_mptcp_fp_interactive_attempt;
1181 u_int32_t tcps_mptcp_fp_aggregate_attempt;
1182 u_int32_t tcps_mptcp_heuristic_fallback; /* Total number of MPTCP-connections that fell back due to heuristics */
1183 u_int32_t tcps_mptcp_fp_heuristic_fallback; /* Same as previous but for first-party apps */
1184 u_int32_t tcps_mptcp_handover_success_wifi; /* Total number of successfull handover-mode connections that *started* on WiFi */
1185 u_int32_t tcps_mptcp_handover_success_cell; /* Total number of successfull handover-mode connections that *started* on Cell */
1186 u_int32_t tcps_mptcp_interactive_success; /* Total number of interactive-mode connections that negotiated MPTCP */
1187 u_int32_t tcps_mptcp_aggregate_success; /* Same as previous but for aggregate */
1188 u_int32_t tcps_mptcp_fp_handover_success_wifi; /* Same as previous four, but for first-party apps */
1189 u_int32_t tcps_mptcp_fp_handover_success_cell;
1190 u_int32_t tcps_mptcp_fp_interactive_success;
1191 u_int32_t tcps_mptcp_fp_aggregate_success;
1192 u_int32_t tcps_mptcp_handover_cell_from_wifi; /* Total number of connections that use cell in handover-mode (coming from WiFi) */
1193 u_int32_t tcps_mptcp_handover_wifi_from_cell; /* Total number of connections that use WiFi in handover-mode (coming from cell) */
1194 u_int32_t tcps_mptcp_interactive_cell_from_wifi; /* Total number of connections that use cell in interactive mode (coming from WiFi) */
1195 u_int64_t tcps_mptcp_handover_cell_bytes; /* Total number of bytes sent on cell in handover-mode (on new subflows, ignoring initial one) */
1196 u_int64_t tcps_mptcp_interactive_cell_bytes; /* Same as previous but for interactive */
1197 u_int64_t tcps_mptcp_aggregate_cell_bytes;
1198 u_int64_t tcps_mptcp_handover_all_bytes; /* Total number of bytes sent in handover */
1199 u_int64_t tcps_mptcp_interactive_all_bytes;
1200 u_int64_t tcps_mptcp_aggregate_all_bytes;
1201 u_int32_t tcps_mptcp_back_to_wifi; /* Total number of connections that succeed to move traffic away from cell (when starting on cell) */
1202 u_int32_t tcps_mptcp_wifi_proxy; /* Total number of new subflows that fell back to regular TCP on cell */
1203 u_int32_t tcps_mptcp_cell_proxy; /* Total number of new subflows that fell back to regular TCP on WiFi */
1204 };
1205
1206
1207 struct tcpstat_local {
1208 u_int64_t badformat;
1209 u_int64_t unspecv6;
1210 u_int64_t synfin;
1211 u_int64_t badformatipsec;
1212 u_int64_t noconnnolist;
1213 u_int64_t noconnlist;
1214 u_int64_t listbadsyn;
1215 u_int64_t icmp6unreach;
1216 u_int64_t deprecate6;
1217 u_int64_t ooopacket;
1218 u_int64_t rstinsynrcv;
1219 u_int64_t dospacket;
1220 u_int64_t cleanup;
1221 u_int64_t synwindow;
1222 };
1223
1224 #pragma pack(4)
1225
1226 /*
1227 * TCB structure exported to user-land via sysctl(3).
1228 * Evil hack: declare only if in_pcb.h and sys/socketvar.h have been
1229 * included. Not all of our clients do.
1230 */
1231
1232 struct xtcpcb {
1233 u_int32_t xt_len;
1234 #ifdef KERNEL_PRIVATE
1235 struct inpcb_compat xt_inp;
1236 #else
1237 struct inpcb xt_inp;
1238 #endif
1239 #ifdef KERNEL_PRIVATE
1240 struct otcpcb xt_tp;
1241 #else
1242 struct tcpcb xt_tp;
1243 #endif
1244 struct xsocket xt_socket;
1245 u_quad_t xt_alignment_hack;
1246 };
1247
1248 #if !CONFIG_EMBEDDED
1249
1250 struct xtcpcb64 {
1251 u_int32_t xt_len;
1252 struct xinpcb64 xt_inpcb;
1253
1254 u_int64_t t_segq;
1255 int t_dupacks; /* consecutive dup acks recd */
1256
1257 int t_timer[TCPT_NTIMERS_EXT]; /* tcp timers */
1258
1259 int t_state; /* state of this connection */
1260 u_int t_flags;
1261
1262 int t_force; /* 1 if forcing out a byte */
1263
1264 tcp_seq snd_una; /* send unacknowledged */
1265 tcp_seq snd_max; /* highest sequence number sent;
1266 * used to recognize retransmits
1267 */
1268 tcp_seq snd_nxt; /* send next */
1269 tcp_seq snd_up; /* send urgent pointer */
1270
1271 tcp_seq snd_wl1; /* window update seg seq number */
1272 tcp_seq snd_wl2; /* window update seg ack number */
1273 tcp_seq iss; /* initial send sequence number */
1274 tcp_seq irs; /* initial receive sequence number */
1275
1276 tcp_seq rcv_nxt; /* receive next */
1277 tcp_seq rcv_adv; /* advertised window */
1278 u_int32_t rcv_wnd; /* receive window */
1279 tcp_seq rcv_up; /* receive urgent pointer */
1280
1281 u_int32_t snd_wnd; /* send window */
1282 u_int32_t snd_cwnd; /* congestion-controlled window */
1283 u_int32_t snd_ssthresh; /* snd_cwnd size threshold for
1284 * for slow start exponential to
1285 * linear switch
1286 */
1287 u_int t_maxopd; /* mss plus options */
1288
1289 u_int32_t t_rcvtime; /* time at which a packet was received */
1290 u_int32_t t_starttime; /* time connection was established */
1291 int t_rtttime; /* round trip time */
1292 tcp_seq t_rtseq; /* sequence number being timed */
1293
1294 int t_rxtcur; /* current retransmit value (ticks) */
1295 u_int t_maxseg; /* maximum segment size */
1296 int t_srtt; /* smoothed round-trip time */
1297 int t_rttvar; /* variance in round-trip time */
1298
1299 int t_rxtshift; /* log(2) of rexmt exp. backoff */
1300 u_int t_rttmin; /* minimum rtt allowed */
1301 u_int32_t t_rttupdated; /* number of times rtt sampled */
1302 u_int32_t max_sndwnd; /* largest window peer has offered */
1303
1304 int t_softerror; /* possible error not yet reported */
1305 /* out-of-band data */
1306 char t_oobflags; /* have some */
1307 char t_iobc; /* input character */
1308 /* RFC 1323 variables */
1309 u_char snd_scale; /* window scaling for send window */
1310 u_char rcv_scale; /* window scaling for recv window */
1311 u_char request_r_scale; /* pending window scaling */
1312 u_char requested_s_scale;
1313 u_int32_t ts_recent; /* timestamp echo data */
1314
1315 u_int32_t ts_recent_age; /* when last updated */
1316 tcp_seq last_ack_sent;
1317 /* RFC 1644 variables */
1318 tcp_cc cc_send; /* send connection count */
1319 tcp_cc cc_recv; /* receive connection count */
1320 tcp_seq snd_recover; /* for use in fast recovery */
1321 /* experimental */
1322 u_int32_t snd_cwnd_prev; /* cwnd prior to retransmit */
1323 u_int32_t snd_ssthresh_prev; /* ssthresh prior to retransmit */
1324 u_int32_t t_badrxtwin; /* window for retransmit recovery */
1325
1326 u_quad_t xt_alignment_hack;
1327 };
1328
1329 #endif /* !CONFIG_EMBEDDED */
1330
1331 #ifdef PRIVATE
1332
1333 struct xtcpcb_n {
1334 u_int32_t xt_len;
1335 u_int32_t xt_kind; /* XSO_TCPCB */
1336
1337 u_int64_t t_segq;
1338 int t_dupacks; /* consecutive dup acks recd */
1339
1340 int t_timer[TCPT_NTIMERS_EXT]; /* tcp timers */
1341
1342 int t_state; /* state of this connection */
1343 u_int t_flags;
1344
1345 int t_force; /* 1 if forcing out a byte */
1346
1347 tcp_seq snd_una; /* send unacknowledged */
1348 tcp_seq snd_max; /* highest sequence number sent;
1349 * used to recognize retransmits
1350 */
1351 tcp_seq snd_nxt; /* send next */
1352 tcp_seq snd_up; /* send urgent pointer */
1353
1354 tcp_seq snd_wl1; /* window update seg seq number */
1355 tcp_seq snd_wl2; /* window update seg ack number */
1356 tcp_seq iss; /* initial send sequence number */
1357 tcp_seq irs; /* initial receive sequence number */
1358
1359 tcp_seq rcv_nxt; /* receive next */
1360 tcp_seq rcv_adv; /* advertised window */
1361 u_int32_t rcv_wnd; /* receive window */
1362 tcp_seq rcv_up; /* receive urgent pointer */
1363
1364 u_int32_t snd_wnd; /* send window */
1365 u_int32_t snd_cwnd; /* congestion-controlled window */
1366 u_int32_t snd_ssthresh; /* snd_cwnd size threshold for
1367 * for slow start exponential to
1368 * linear switch
1369 */
1370 u_int t_maxopd; /* mss plus options */
1371
1372 u_int32_t t_rcvtime; /* time at which a packet was received */
1373 u_int32_t t_starttime; /* time connection was established */
1374 int t_rtttime; /* round trip time */
1375 tcp_seq t_rtseq; /* sequence number being timed */
1376
1377 int t_rxtcur; /* current retransmit value (ticks) */
1378 u_int t_maxseg; /* maximum segment size */
1379 int t_srtt; /* smoothed round-trip time */
1380 int t_rttvar; /* variance in round-trip time */
1381
1382 int t_rxtshift; /* log(2) of rexmt exp. backoff */
1383 u_int t_rttmin; /* minimum rtt allowed */
1384 u_int32_t t_rttupdated; /* number of times rtt sampled */
1385 u_int32_t max_sndwnd; /* largest window peer has offered */
1386
1387 int t_softerror; /* possible error not yet reported */
1388 /* out-of-band data */
1389 char t_oobflags; /* have some */
1390 char t_iobc; /* input character */
1391 /* RFC 1323 variables */
1392 u_char snd_scale; /* window scaling for send window */
1393 u_char rcv_scale; /* window scaling for recv window */
1394 u_char request_r_scale; /* pending window scaling */
1395 u_char requested_s_scale;
1396 u_int32_t ts_recent; /* timestamp echo data */
1397
1398 u_int32_t ts_recent_age; /* when last updated */
1399 tcp_seq last_ack_sent;
1400 /* RFC 1644 variables */
1401 tcp_cc cc_send; /* send connection count */
1402 tcp_cc cc_recv; /* receive connection count */
1403 tcp_seq snd_recover; /* for use in fast recovery */
1404 /* experimental */
1405 u_int32_t snd_cwnd_prev; /* cwnd prior to retransmit */
1406 u_int32_t snd_ssthresh_prev; /* ssthresh prior to retransmit */
1407 };
1408
1409 /*
1410 * The rtt measured is in milliseconds as the timestamp granularity is
1411 * a millisecond. The smoothed round-trip time and estimated variance
1412 * are stored as fixed point numbers scaled by the values below.
1413 * For convenience, these scales are also used in smoothing the average
1414 * (smoothed = (1/scale)sample + ((scale-1)/scale)smoothed).
1415 * With these scales, srtt has 5 bits to the right of the binary point,
1416 * and thus an "ALPHA" of 0.875. rttvar has 4 bits to the right of the
1417 * binary point, and is smoothed with an ALPHA of 0.75.
1418 */
1419 #define TCP_RTT_SCALE 32 /* multiplier for srtt; 3 bits frac. */
1420 #define TCP_RTT_SHIFT 5 /* shift for srtt; 5 bits frac. */
1421 #define TCP_RTTVAR_SCALE 16 /* multiplier for rttvar; 4 bits */
1422 #define TCP_RTTVAR_SHIFT 4 /* shift for rttvar; 4 bits */
1423 #define TCP_DELTA_SHIFT 2 /* see tcp_input.c */
1424
1425 #endif /* PRIVATE */
1426
1427 #pragma pack()
1428
1429 /*
1430 * Names for TCP sysctl objects
1431 */
1432 #define TCPCTL_DO_RFC1323 1 /* use RFC-1323 extensions */
1433 #define TCPCTL_DO_RFC1644 2 /* use RFC-1644 extensions */
1434 #define TCPCTL_MSSDFLT 3 /* MSS default */
1435 #define TCPCTL_STATS 4 /* statistics (read-only) */
1436 #define TCPCTL_RTTDFLT 5 /* default RTT estimate */
1437 #define TCPCTL_KEEPIDLE 6 /* keepalive idle timer */
1438 #define TCPCTL_KEEPINTVL 7 /* interval to send keepalives */
1439 #define TCPCTL_SENDSPACE 8 /* send buffer space */
1440 #define TCPCTL_RECVSPACE 9 /* receive buffer space */
1441 #define TCPCTL_KEEPINIT 10 /* timeout for establishing syn */
1442 #define TCPCTL_PCBLIST 11 /* list of all outstanding PCBs */
1443 #define TCPCTL_DELACKTIME 12 /* time before sending delayed ACK */
1444 #define TCPCTL_V6MSSDFLT 13 /* MSS default for IPv6 */
1445 #define TCPCTL_MAXID 14
1446
1447 #ifdef BSD_KERNEL_PRIVATE
1448 #include <sys/bitstring.h>
1449
1450 #define TCP_PKTLIST_CLEAR(tp) { \
1451 (tp)->t_pktlist_head = (tp)->t_pktlist_tail = NULL; \
1452 (tp)->t_lastchain = (tp)->t_pktlist_sentlen = 0; \
1453 }
1454
1455 #define TCPCTL_NAMES { \
1456 { 0, 0 }, \
1457 { "rfc1323", CTLTYPE_INT }, \
1458 { "rfc1644", CTLTYPE_INT }, \
1459 { "mssdflt", CTLTYPE_INT }, \
1460 { "stats", CTLTYPE_STRUCT }, \
1461 { "rttdflt", CTLTYPE_INT }, \
1462 { "keepidle", CTLTYPE_INT }, \
1463 { "keepintvl", CTLTYPE_INT }, \
1464 { "sendspace", CTLTYPE_INT }, \
1465 { "recvspace", CTLTYPE_INT }, \
1466 { "keepinit", CTLTYPE_INT }, \
1467 { "pcblist", CTLTYPE_STRUCT }, \
1468 { "delacktime", CTLTYPE_INT }, \
1469 { "v6mssdflt", CTLTYPE_INT }, \
1470 }
1471
1472 #ifdef SYSCTL_DECL
1473 SYSCTL_DECL(_net_inet_tcp);
1474 #endif /* SYSCTL_DECL */
1475
1476 extern struct inpcbhead tcb; /* head of queue of active tcpcb's */
1477 extern struct inpcbinfo tcbinfo;
1478 extern struct tcpstat tcpstat; /* tcp statistics */
1479 extern int tcp_mssdflt; /* XXX */
1480 extern int tcp_minmss;
1481 #define TCP_FASTOPEN_SERVER 0x01
1482 #define TCP_FASTOPEN_CLIENT 0x02
1483
1484 extern int tcp_tfo_halfcnt;
1485 extern int tcp_tfo_backlog;
1486 extern int tcp_fastopen;
1487 extern int ss_fltsz;
1488 extern int ss_fltsz_local;
1489 extern int tcp_do_rfc3390; /* Calculate ss_fltsz according to RFC 3390 */
1490 extern int tcp_do_rfc1323;
1491 extern int target_qdelay;
1492 extern u_int32_t tcp_now; /* for RFC 1323 timestamps */
1493 extern struct timeval tcp_uptime;
1494 extern lck_spin_t *tcp_uptime_lock;
1495 extern int tcp_delack_enabled;
1496 extern int tcp_do_sack; /* SACK enabled/disabled */
1497 extern int tcp_do_rfc3465;
1498 extern int tcp_do_rfc3465_lim2;
1499 extern int maxseg_unacked;
1500 extern int tcp_use_newreno;
1501 extern struct zone *tcp_reass_zone;
1502 extern struct zone *tcp_rxt_seg_zone;
1503 extern int tcp_ecn_outbound;
1504 extern int tcp_ecn_inbound;
1505 extern u_int32_t tcp_do_autorcvbuf;
1506 extern u_int32_t tcp_autorcvbuf_max;
1507 extern u_int32_t tcp_autorcvbuf_max_ca;
1508 extern u_int32_t tcp_autorcvbuf_inc_shift;
1509 extern int tcp_recv_bg;
1510
1511 struct protosw;
1512 struct domain;
1513
1514 struct tcp_respond_args {
1515 unsigned int ifscope;
1516 unsigned int nocell:1,
1517 noexpensive:1,
1518 awdl_unrestricted:1,
1519 intcoproc_allowed:1;
1520 };
1521
1522 void tcp_canceltimers(struct tcpcb *);
1523 struct tcpcb *
1524 tcp_close(struct tcpcb *);
1525 void tcp_ctlinput(int, struct sockaddr *, void *, struct ifnet *);
1526 int tcp_ctloutput(struct socket *, struct sockopt *);
1527 struct tcpcb *
1528 tcp_drop(struct tcpcb *, int);
1529 void tcp_drain(void);
1530 void tcp_getrt_rtt(struct tcpcb *tp, struct rtentry *rt);
1531 struct rmxp_tao *
1532 tcp_gettaocache(struct inpcb *);
1533 void tcp_init(struct protosw *, struct domain *);
1534 void tcp_input(struct mbuf *, int);
1535 void tcp_mss(struct tcpcb *, int, unsigned int);
1536 int tcp_mssopt(struct tcpcb *);
1537 void tcp_drop_syn_sent(struct inpcb *, int);
1538 void tcp_mtudisc(struct inpcb *, int);
1539 struct tcpcb *
1540 tcp_newtcpcb(struct inpcb *);
1541 int tcp_output(struct tcpcb *);
1542 void tcp_respond(struct tcpcb *, void *, struct tcphdr *, struct mbuf *,
1543 tcp_seq, tcp_seq, int, struct tcp_respond_args *);
1544 struct rtentry *
1545 tcp_rtlookup(struct inpcb *, unsigned int);
1546 void tcp_setpersist(struct tcpcb *);
1547 void tcp_gc(struct inpcbinfo *);
1548 void tcp_itimer(struct inpcbinfo *ipi);
1549 void tcp_check_timer_state(struct tcpcb *tp);
1550 void tcp_run_timerlist(void *arg1, void *arg2);
1551
1552 struct tcptemp *tcp_maketemplate(struct tcpcb *);
1553 void tcp_fillheaders(struct tcpcb *, void *, void *);
1554 struct tcpcb *tcp_timers(struct tcpcb *, int);
1555 void tcp_trace(int, int, struct tcpcb *, void *, struct tcphdr *, int);
1556
1557 void tcp_fill_info(struct tcpcb *, struct tcp_info *);
1558 void tcp_sack_doack(struct tcpcb *, struct tcpopt *, struct tcphdr *,
1559 u_int32_t *);
1560 extern boolean_t tcp_sack_process_dsack(struct tcpcb *, struct tcpopt *,
1561 struct tcphdr *);
1562 int tcp_detect_bad_rexmt(struct tcpcb *, struct tcphdr *, struct tcpopt *,
1563 u_int32_t rxtime);
1564 void tcp_update_sack_list(struct tcpcb *tp, tcp_seq rcv_laststart, tcp_seq rcv_lastend);
1565 void tcp_clean_sackreport(struct tcpcb *tp);
1566 void tcp_sack_adjust(struct tcpcb *tp);
1567 struct sackhole *tcp_sack_output(struct tcpcb *tp, int *sack_bytes_rexmt);
1568 void tcp_sack_partialack(struct tcpcb *, struct tcphdr *);
1569 void tcp_free_sackholes(struct tcpcb *tp);
1570 int32_t tcp_sbspace(struct tcpcb *tp);
1571 void tcp_set_tso(struct tcpcb *tp, struct ifnet *ifp);
1572 void tcp_set_ecn(struct tcpcb *tp, struct ifnet *ifp);
1573 void tcp_reset_stretch_ack(struct tcpcb *tp);
1574 extern void tcp_get_ports_used(u_int32_t, int, u_int32_t, bitstr_t *);
1575 uint32_t tcp_count_opportunistic(unsigned int ifindex, u_int32_t flags);
1576 uint32_t tcp_find_anypcb_byaddr(struct ifaddr *ifa);
1577 void tcp_set_max_rwinscale(struct tcpcb *tp, struct socket *so,
1578 u_int32_t maxrcvbuf);
1579 struct bwmeas* tcp_bwmeas_alloc(struct tcpcb *tp);
1580 void tcp_bwmeas_free(struct tcpcb *tp);
1581 extern int32_t timer_diff(uint32_t t1, uint32_t toff1, uint32_t t2, uint32_t toff2);
1582
1583 extern void tcp_set_background_cc(struct socket *);
1584 extern void tcp_set_foreground_cc(struct socket *);
1585 extern void tcp_set_recv_bg(struct socket *);
1586 extern void tcp_clear_recv_bg(struct socket *);
1587 extern boolean_t tcp_sack_byte_islost(struct tcpcb *tp);
1588 #define IS_TCP_RECV_BG(_so) \
1589 ((_so)->so_flags1 & SOF1_TRAFFIC_MGT_TCP_RECVBG)
1590
1591 #if TRAFFIC_MGT
1592 #define CLEAR_IAJ_STATE(_tp_) (_tp_)->iaj_rcv_ts = 0
1593 void reset_acc_iaj(struct tcpcb *tp);
1594 #endif /* TRAFFIC_MGT */
1595
1596 int tcp_lock (struct socket *, int, void *);
1597 int tcp_unlock (struct socket *, int, void *);
1598 void calculate_tcp_clock(void);
1599
1600 extern void tcp_keepalive_reset(struct tcpcb *);
1601 extern uint32_t get_base_rtt(struct tcpcb *tp);
1602
1603 #ifdef _KERN_LOCKS_H_
1604 lck_mtx_t * tcp_getlock (struct socket *, int);
1605 #else
1606 void * tcp_getlock (struct socket *, int);
1607 #endif
1608
1609 extern struct pr_usrreqs tcp_usrreqs;
1610 extern u_int32_t tcp_sendspace;
1611 extern u_int32_t tcp_recvspace;
1612 tcp_seq tcp_new_isn(struct tcpcb *);
1613
1614 extern int tcp_input_checksum(int, struct mbuf *, struct tcphdr *, int, int);
1615 extern void tcp_getconninfo(struct socket *, struct conninfo_tcp *);
1616 extern void add_to_time_wait(struct tcpcb *, uint32_t delay);
1617 extern void tcp_pmtud_revert_segment_size(struct tcpcb *tp);
1618 extern void tcp_rxtseg_insert(struct tcpcb *, tcp_seq, tcp_seq);
1619 extern struct tcp_rxt_seg *tcp_rxtseg_find(struct tcpcb *, tcp_seq, tcp_seq);
1620 extern void tcp_rxtseg_clean(struct tcpcb *);
1621 extern boolean_t tcp_rxtseg_detect_bad_rexmt(struct tcpcb *, tcp_seq);
1622 extern boolean_t tcp_rxtseg_dsack_for_tlp(struct tcpcb *);
1623 extern u_int32_t tcp_rxtseg_total_size(struct tcpcb *tp);
1624 extern void tcp_rexmt_save_state(struct tcpcb *tp);
1625 extern void tcp_interface_send_probe(u_int16_t if_index_available);
1626 extern void tcp_probe_connectivity(struct ifnet *ifp, u_int32_t enable);
1627 extern void tcp_get_connectivity_status(struct tcpcb *,
1628 struct tcp_conn_status *);
1629
1630 extern void tcp_fill_keepalive_offload_frames(struct ifnet *,
1631 struct ifnet_keepalive_offload_frame *, u_int32_t, size_t, u_int32_t *);
1632
1633 extern boolean_t tfo_enabled(const struct tcpcb *tp);
1634 extern void tcp_disable_tfo(struct tcpcb *tp);
1635 extern void tcp_tfo_gen_cookie(struct inpcb *inp, u_char *out, size_t blk_size);
1636 #define TCP_FASTOPEN_KEYLEN 16
1637 extern errno_t tcp_notify_ack_id_valid(struct tcpcb *, struct socket *, u_int32_t);
1638 extern errno_t tcp_add_notify_ack_marker(struct tcpcb *, u_int32_t);
1639 extern void tcp_notify_ack_free(struct tcpcb *);
1640 extern void tcp_notify_acknowledgement(struct tcpcb *, struct socket *);
1641 extern void tcp_get_notify_ack_count(struct tcpcb *,
1642 struct tcp_notify_ack_complete *);
1643 extern void tcp_get_notify_ack_ids(struct tcpcb *tp,
1644 struct tcp_notify_ack_complete *);
1645 extern void tcp_update_mss_locked(struct socket *, struct ifnet *);
1646
1647 extern int get_tcp_inp_list(struct inpcb **, int, inp_gen_t);
1648 extern bool tcp_notify_ack_active(struct socket *so);
1649
1650 #if MPTCP
1651 extern int mptcp_input_preproc(struct tcpcb *, struct mbuf *, int);
1652 extern uint32_t mptcp_output_csum(struct mbuf *m, uint64_t dss_val,
1653 uint32_t sseq, uint16_t dlen);
1654 extern int mptcp_adj_mss(struct tcpcb *, boolean_t);
1655 extern void mptcp_insert_rmap(struct tcpcb *, struct mbuf *);
1656 #endif
1657
1658 __private_extern__ void tcp_update_stats_per_flow(
1659 struct ifnet_stats_per_flow *, struct ifnet *);
1660
1661 #endif /* BSD_KERNEL_RPIVATE */
1662
1663 #endif /* _NETINET_TCP_VAR_H_ */