1 /*- 2 * SPDX-License-Identifier: BSD-3-Clause 3 * 4 * Copyright (c) 1982, 1986, 1993, 1994, 1995 5 * The Regents of the University of California. All rights reserved. 6 * 7 * Redistribution and use in source and binary forms, with or without 8 * modification, are permitted provided that the following conditions 9 * are met: 10 * 1. Redistributions of source code must retain the above copyright 11 * notice, this list of conditions and the following disclaimer. 12 * 2. Redistributions in binary form must reproduce the above copyright 13 * notice, this list of conditions and the following disclaimer in the 14 * documentation and/or other materials provided with the distribution. 15 * 3. Neither the name of the University nor the names of its contributors 16 * may be used to endorse or promote products derived from this software 17 * without specific prior written permission. 18 * 19 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 20 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 21 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 22 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 23 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 24 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 25 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 26 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 27 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 28 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 29 * SUCH DAMAGE. 30 * 31 * @(#)tcp_var.h 8.4 (Berkeley) 5/24/95 32 * $FreeBSD$ 33 */ 34 35 #ifndef _NETINET_TCP_VAR_H_ 36 #define _NETINET_TCP_VAR_H_ 37 38 #include <netinet/tcp.h> 39 #include <netinet/tcp_fsm.h> 40 41 #ifdef _KERNEL 42 #include "opt_kern_tls.h" 43 #include <net/vnet.h> 44 #include <sys/mbuf.h> 45 #include <sys/ktls.h> 46 #endif 47 48 #define TCP_END_BYTE_INFO 8 /* Bytes that makeup the "end information array" */ 49 /* Types of ending byte info */ 50 #define TCP_EI_EMPTY_SLOT 0 51 #define TCP_EI_STATUS_CLIENT_FIN 0x1 52 #define TCP_EI_STATUS_CLIENT_RST 0x2 53 #define TCP_EI_STATUS_SERVER_FIN 0x3 54 #define TCP_EI_STATUS_SERVER_RST 0x4 55 #define TCP_EI_STATUS_RETRAN 0x5 56 #define TCP_EI_STATUS_PROGRESS 0x6 57 #define TCP_EI_STATUS_PERSIST_MAX 0x7 58 #define TCP_EI_STATUS_KEEP_MAX 0x8 59 #define TCP_EI_STATUS_DATA_A_CLOSE 0x9 60 #define TCP_EI_STATUS_RST_IN_FRONT 0xa 61 #define TCP_EI_STATUS_2MSL 0xb 62 #define TCP_EI_STATUS_MAX_VALUE 0xb 63 64 /************************************************/ 65 /* Status bits we track to assure no duplicates, 66 * the bits here are not used by the code but 67 * for human representation. To check a bit we 68 * take and shift over by 1 minus the value (1-8). 69 */ 70 /************************************************/ 71 #define TCP_EI_BITS_CLIENT_FIN 0x001 72 #define TCP_EI_BITS_CLIENT_RST 0x002 73 #define TCP_EI_BITS_SERVER_FIN 0x004 74 #define TCP_EI_BITS_SERVER_RST 0x008 75 #define TCP_EI_BITS_RETRAN 0x010 76 #define TCP_EI_BITS_PROGRESS 0x020 77 #define TCP_EI_BITS_PRESIST_MAX 0x040 78 #define TCP_EI_BITS_KEEP_MAX 0x080 79 #define TCP_EI_BITS_DATA_A_CLO 0x100 80 #define TCP_EI_BITS_RST_IN_FR 0x200 /* a front state reset */ 81 #define TCP_EI_BITS_2MS_TIMER 0x400 /* 2 MSL timer expired */ 82 83 #if defined(_KERNEL) || defined(_WANT_TCPCB) 84 /* TCP segment queue entry */ 85 struct tseg_qent { 86 TAILQ_ENTRY(tseg_qent) tqe_q; 87 struct mbuf *tqe_m; /* mbuf contains packet */ 88 struct mbuf *tqe_last; /* last mbuf in chain */ 89 tcp_seq tqe_start; /* TCP Sequence number start */ 90 int tqe_len; /* TCP segment data length */ 91 uint32_t tqe_flags; /* The flags from tcp_get_flags() */ 92 uint32_t tqe_mbuf_cnt; /* Count of mbuf overhead */ 93 }; 94 TAILQ_HEAD(tsegqe_head, tseg_qent); 95 96 struct sackblk { 97 tcp_seq start; /* start seq no. of sack block */ 98 tcp_seq end; /* end seq no. */ 99 }; 100 101 struct sackhole { 102 tcp_seq start; /* start seq no. of hole */ 103 tcp_seq end; /* end seq no. */ 104 tcp_seq rxmit; /* next seq. no in hole to be retransmitted */ 105 TAILQ_ENTRY(sackhole) scblink; /* scoreboard linkage */ 106 }; 107 108 struct sackhint { 109 struct sackhole *nexthole; 110 int32_t sack_bytes_rexmit; 111 tcp_seq last_sack_ack; /* Most recent/largest sacked ack */ 112 113 int32_t delivered_data; /* Newly acked data from last SACK */ 114 115 int32_t sacked_bytes; /* Total sacked bytes reported by the 116 * receiver via sack option 117 */ 118 uint32_t recover_fs; /* Flight Size at the start of Loss recovery */ 119 uint32_t prr_delivered; /* Total bytes delivered using PRR */ 120 uint32_t prr_out; /* Bytes sent during IN_RECOVERY */ 121 }; 122 123 #define SEGQ_EMPTY(tp) TAILQ_EMPTY(&(tp)->t_segq) 124 125 STAILQ_HEAD(tcp_log_stailq, tcp_log_mem); 126 127 /* 128 * Tcp control block, one per tcp; fields: 129 * Organized for 64 byte cacheline efficiency based 130 * on common tcp_input/tcp_output processing. 131 */ 132 struct tcpcb { 133 /* Cache line 1 */ 134 struct inpcb *t_inpcb; /* back pointer to internet pcb */ 135 struct tcp_function_block *t_fb;/* TCP function call block */ 136 void *t_fb_ptr; /* Pointer to t_fb specific data */ 137 uint32_t t_maxseg:24, /* maximum segment size */ 138 t_logstate:8; /* State of "black box" logging */ 139 uint32_t t_port:16, /* Tunneling (over udp) port */ 140 t_state:4, /* state of this connection */ 141 t_idle_reduce : 1, 142 t_delayed_ack: 7, /* Delayed ack variable */ 143 t_fin_is_rst: 1, /* Are fin's treated as resets */ 144 t_log_state_set: 1, 145 bits_spare : 2; 146 u_int t_flags; 147 tcp_seq snd_una; /* sent but unacknowledged */ 148 tcp_seq snd_max; /* highest sequence number sent; 149 * used to recognize retransmits 150 */ 151 tcp_seq snd_nxt; /* send next */ 152 tcp_seq snd_up; /* send urgent pointer */ 153 uint32_t snd_wnd; /* send window */ 154 uint32_t snd_cwnd; /* congestion-controlled window */ 155 uint32_t t_peakrate_thr; /* pre-calculated peak rate threshold */ 156 /* Cache line 2 */ 157 uint32_t ts_offset; /* our timestamp offset */ 158 uint32_t rfbuf_ts; /* recv buffer autoscaling timestamp */ 159 int rcv_numsacks; /* # distinct sack blks present */ 160 u_int t_tsomax; /* TSO total burst length limit */ 161 u_int t_tsomaxsegcount; /* TSO maximum segment count */ 162 u_int t_tsomaxsegsize; /* TSO maximum segment size in bytes */ 163 tcp_seq rcv_nxt; /* receive next */ 164 tcp_seq rcv_adv; /* advertised window */ 165 uint32_t rcv_wnd; /* receive window */ 166 u_int t_flags2; /* More tcpcb flags storage */ 167 int t_srtt; /* smoothed round-trip time */ 168 int t_rttvar; /* variance in round-trip time */ 169 uint32_t ts_recent; /* timestamp echo data */ 170 u_char snd_scale; /* window scaling for send window */ 171 u_char rcv_scale; /* window scaling for recv window */ 172 u_char snd_limited; /* segments limited transmitted */ 173 u_char request_r_scale; /* pending window scaling */ 174 tcp_seq last_ack_sent; 175 u_int t_rcvtime; /* inactivity time */ 176 /* Cache line 3 */ 177 tcp_seq rcv_up; /* receive urgent pointer */ 178 int t_segqlen; /* segment reassembly queue length */ 179 uint32_t t_segqmbuflen; /* total reassembly queue byte length */ 180 struct tsegqe_head t_segq; /* segment reassembly queue */ 181 struct mbuf *t_in_pkt; 182 struct mbuf *t_tail_pkt; 183 struct tcp_timer *t_timers; /* All the TCP timers in one struct */ 184 uint32_t snd_ssthresh; /* snd_cwnd size threshold for 185 * for slow start exponential to 186 * linear switch 187 */ 188 tcp_seq snd_wl1; /* window update seg seq number */ 189 /* Cache line 4 */ 190 tcp_seq snd_wl2; /* window update seg ack number */ 191 192 tcp_seq irs; /* initial receive sequence number */ 193 tcp_seq iss; /* initial send sequence number */ 194 u_int t_acktime; /* RACK and BBR incoming new data was acked */ 195 u_int t_sndtime; /* time last data was sent */ 196 u_int ts_recent_age; /* when last updated */ 197 tcp_seq snd_recover; /* for use in NewReno Fast Recovery */ 198 uint16_t cl4_spare; /* Spare to adjust CL 4 */ 199 char t_oobflags; /* have some */ 200 char t_iobc; /* input character */ 201 int t_rxtcur; /* current retransmit value (ticks) */ 202 203 int t_rxtshift; /* log(2) of rexmt exp. backoff */ 204 u_int t_rtttime; /* RTT measurement start time */ 205 206 tcp_seq t_rtseq; /* sequence number being timed */ 207 u_int t_starttime; /* time connection was established */ 208 u_int t_fbyte_in; /* ticks time first byte queued in */ 209 u_int t_fbyte_out; /* ticks time first byte queued out */ 210 211 u_int t_pmtud_saved_maxseg; /* pre-blackhole MSS */ 212 int t_blackhole_enter; /* when to enter blackhole detection */ 213 int t_blackhole_exit; /* when to exit blackhole detection */ 214 u_int t_rttmin; /* minimum rtt allowed */ 215 216 int t_softerror; /* possible error not yet reported */ 217 uint32_t max_sndwnd; /* largest window peer has offered */ 218 /* Cache line 5 */ 219 uint32_t snd_cwnd_prev; /* cwnd prior to retransmit */ 220 uint32_t snd_ssthresh_prev; /* ssthresh prior to retransmit */ 221 tcp_seq snd_recover_prev; /* snd_recover prior to retransmit */ 222 int t_sndzerowin; /* zero-window updates sent */ 223 u_long t_rttupdated; /* number of times rtt sampled */ 224 int snd_numholes; /* number of holes seen by sender */ 225 u_int t_badrxtwin; /* window for retransmit recovery */ 226 TAILQ_HEAD(sackhole_head, sackhole) snd_holes; 227 /* SACK scoreboard (sorted) */ 228 tcp_seq snd_fack; /* last seq number(+1) sack'd by rcv'r*/ 229 struct sackblk sackblks[MAX_SACK_BLKS]; /* seq nos. of sack blocks */ 230 struct sackhint sackhint; /* SACK scoreboard hint */ 231 int t_rttlow; /* smallest observerved RTT */ 232 int rfbuf_cnt; /* recv buffer autoscaling byte count */ 233 struct toedev *tod; /* toedev handling this connection */ 234 int t_sndrexmitpack; /* retransmit packets sent */ 235 int t_rcvoopack; /* out-of-order packets received */ 236 void *t_toe; /* TOE pcb pointer */ 237 struct cc_algo *cc_algo; /* congestion control algorithm */ 238 struct cc_var *ccv; /* congestion control specific vars */ 239 struct osd *osd; /* storage for Khelp module data */ 240 int t_bytes_acked; /* # bytes acked during current RTT */ 241 u_int t_maxunacktime; 242 u_int t_keepinit; /* time to establish connection */ 243 u_int t_keepidle; /* time before keepalive probes begin */ 244 u_int t_keepintvl; /* interval between keepalives */ 245 u_int t_keepcnt; /* number of keepalives before close */ 246 int t_dupacks; /* consecutive dup acks recd */ 247 int t_lognum; /* Number of log entries */ 248 int t_loglimit; /* Maximum number of log entries */ 249 uint32_t t_rcep; /* Number of received CE marked pkts */ 250 uint32_t t_scep; /* Synced number of delivered CE pkts */ 251 int64_t t_pacing_rate; /* bytes / sec, -1 => unlimited */ 252 struct tcp_log_stailq t_logs; /* Log buffer */ 253 struct tcp_log_id_node *t_lin; 254 struct tcp_log_id_bucket *t_lib; 255 const char *t_output_caller; /* Function that called tcp_output */ 256 struct statsblob *t_stats; /* Per-connection stats */ 257 uint32_t t_logsn; /* Log "serial number" */ 258 uint32_t gput_ts; /* Time goodput measurement started */ 259 tcp_seq gput_seq; /* Outbound measurement seq */ 260 tcp_seq gput_ack; /* Inbound measurement ack */ 261 int32_t t_stats_gput_prev; /* XXXLAS: Prev gput measurement */ 262 uint32_t t_maxpeakrate; /* max peak rate set by user, bytes/s */ 263 uint32_t t_sndtlppack; /* tail loss probe packets sent */ 264 uint64_t t_sndtlpbyte; /* total tail loss probe bytes sent */ 265 uint64_t t_sndbytes; /* total bytes sent */ 266 uint64_t t_snd_rxt_bytes; /* total bytes retransmitted */ 267 uint32_t t_dsack_bytes; /* dsack bytes received */ 268 uint32_t t_dsack_tlp_bytes; /* dsack bytes received for TLPs sent */ 269 uint32_t t_dsack_pack; /* dsack packets we have eceived */ 270 /* TCP Fast Open */ 271 uint8_t t_tfo_client_cookie_len; /* TFO client cookie length */ 272 uint32_t t_end_info_status; /* Status flag of end info */ 273 unsigned int *t_tfo_pending; /* TFO server pending counter */ 274 union { 275 uint8_t client[TCP_FASTOPEN_MAX_COOKIE_LEN]; 276 uint64_t server; 277 } t_tfo_cookie; /* TCP Fast Open cookie to send */ 278 union { 279 uint8_t t_end_info_bytes[TCP_END_BYTE_INFO]; 280 uint64_t t_end_info; 281 }; 282 #ifdef TCPPCAP 283 struct mbufq t_inpkts; /* List of saved input packets. */ 284 struct mbufq t_outpkts; /* List of saved output packets. */ 285 #endif 286 }; 287 #endif /* _KERNEL || _WANT_TCPCB */ 288 289 #ifdef _KERNEL 290 struct tcptemp { 291 u_char tt_ipgen[40]; /* the size must be of max ip header, now IPv6 */ 292 struct tcphdr tt_t; 293 }; 294 295 /* Enable TCP/UDP tunneling port */ 296 #define TCP_TUNNELING_PORT_MIN 0 297 #define TCP_TUNNELING_PORT_MAX 65535 298 #define TCP_TUNNELING_PORT_DEFAULT 0 299 300 /* Enable TCP/UDP tunneling port */ 301 #define TCP_TUNNELING_OVERHEAD_MIN sizeof(struct udphdr) 302 #define TCP_TUNNELING_OVERHEAD_MAX 1024 303 #define TCP_TUNNELING_OVERHEAD_DEFAULT TCP_TUNNELING_OVERHEAD_MIN 304 305 /* Minimum map entries limit value, if set */ 306 #define TCP_MIN_MAP_ENTRIES_LIMIT 128 307 308 /* 309 * TODO: We yet need to brave plowing in 310 * to tcp_input() and the pru_usrreq() block. 311 * Right now these go to the old standards which 312 * are somewhat ok, but in the long term may 313 * need to be changed. If we do tackle tcp_input() 314 * then we need to get rid of the tcp_do_segment() 315 * function below. 316 */ 317 /* Flags for tcp functions */ 318 #define TCP_FUNC_BEING_REMOVED 0x01 /* Can no longer be referenced */ 319 #define TCP_FUNC_OUTPUT_CANDROP 0x02 /* tfb_tcp_output may ask tcp_drop */ 320 321 /* 322 * If defining the optional tcp_timers, in the 323 * tfb_tcp_timer_stop call you must use the 324 * callout_async_drain() function with the 325 * tcp_timer_discard callback. You should check 326 * the return of callout_async_drain() and if 0 327 * increment tt_draincnt. Since the timer sub-system 328 * does not know your callbacks you must provide a 329 * stop_all function that loops through and calls 330 * tcp_timer_stop() with each of your defined timers. 331 * Adding a tfb_tcp_handoff_ok function allows the socket 332 * option to change stacks to query you even if the 333 * connection is in a later stage. You return 0 to 334 * say you can take over and run your stack, you return 335 * non-zero (an error number) to say no you can't. 336 * If the function is undefined you can only change 337 * in the early states (before connect or listen). 338 * tfb_tcp_fb_fini is changed to add a flag to tell 339 * the old stack if the tcb is being destroyed or 340 * not. A one in the flag means the TCB is being 341 * destroyed, a zero indicates its transitioning to 342 * another stack (via socket option). 343 */ 344 struct tcp_function_block { 345 char tfb_tcp_block_name[TCP_FUNCTION_NAME_LEN_MAX]; 346 int (*tfb_tcp_output)(struct tcpcb *); 347 int (*tfb_tcp_output_wtime)(struct tcpcb *, const struct timeval *); 348 void (*tfb_tcp_do_segment)(struct mbuf *, struct tcphdr *, 349 struct socket *, struct tcpcb *, 350 int, int, uint8_t); 351 int (*tfb_do_queued_segments)(struct socket *, struct tcpcb *, int); 352 int (*tfb_do_segment_nounlock)(struct mbuf *, struct tcphdr *, 353 struct socket *, struct tcpcb *, 354 int, int, uint8_t, 355 int, struct timeval *); 356 void (*tfb_tcp_hpts_do_segment)(struct mbuf *, struct tcphdr *, 357 struct socket *, struct tcpcb *, 358 int, int, uint8_t, 359 int, struct timeval *); 360 int (*tfb_tcp_ctloutput)(struct inpcb *inp, struct sockopt *sopt); 361 /* Optional memory allocation/free routine */ 362 int (*tfb_tcp_fb_init)(struct tcpcb *); 363 void (*tfb_tcp_fb_fini)(struct tcpcb *, int); 364 /* Optional timers, must define all if you define one */ 365 int (*tfb_tcp_timer_stop_all)(struct tcpcb *); 366 void (*tfb_tcp_timer_activate)(struct tcpcb *, 367 uint32_t, u_int); 368 int (*tfb_tcp_timer_active)(struct tcpcb *, uint32_t); 369 void (*tfb_tcp_timer_stop)(struct tcpcb *, uint32_t); 370 void (*tfb_tcp_rexmit_tmr)(struct tcpcb *); 371 int (*tfb_tcp_handoff_ok)(struct tcpcb *); 372 void (*tfb_tcp_mtu_chg)(struct tcpcb *); 373 int (*tfb_pru_options)(struct tcpcb *, int); 374 void (*tfb_hwtls_change)(struct tcpcb *, int); 375 int (*tfb_compute_pipe)(struct tcpcb *tp); 376 volatile uint32_t tfb_refcnt; 377 uint32_t tfb_flags; 378 uint8_t tfb_id; 379 }; 380 381 struct tcp_function { 382 TAILQ_ENTRY(tcp_function) tf_next; 383 char tf_name[TCP_FUNCTION_NAME_LEN_MAX]; 384 struct tcp_function_block *tf_fb; 385 }; 386 387 TAILQ_HEAD(tcp_funchead, tcp_function); 388 389 struct tcpcb * tcp_drop(struct tcpcb *, int); 390 391 #ifdef _NETINET_IN_PCB_H_ 392 #define intotcpcb(inp) ((struct tcpcb *)(inp)->inp_ppcb) 393 #define sototcpcb(so) intotcpcb(sotoinpcb(so)) 394 #define tptoinpcb(tp) tp->t_inpcb 395 #define tptosocket(tp) tp->t_inpcb->inp_socket 396 397 /* 398 * tcp_output() 399 * Handles tcp_drop request from advanced stacks and reports that inpcb is 400 * gone with negative return code. 401 * Drop in replacement for the default stack. 402 */ 403 static inline int 404 tcp_output(struct tcpcb *tp) 405 { 406 struct inpcb *inp = tptoinpcb(tp); 407 int rv; 408 409 INP_WLOCK_ASSERT(inp); 410 411 rv = tp->t_fb->tfb_tcp_output(tp); 412 if (rv < 0) { 413 KASSERT(tp->t_fb->tfb_flags & TCP_FUNC_OUTPUT_CANDROP, 414 ("TCP stack %s requested tcp_drop(%p)", 415 tp->t_fb->tfb_tcp_block_name, tp)); 416 tp = tcp_drop(tp, -rv); 417 if (tp) 418 INP_WUNLOCK(inp); 419 } 420 421 return (rv); 422 } 423 424 /* 425 * tcp_output_unlock() 426 * Always returns unlocked, handles drop request from advanced stacks. 427 * Always returns positive error code. 428 */ 429 static inline int 430 tcp_output_unlock(struct tcpcb *tp) 431 { 432 struct inpcb *inp = tptoinpcb(tp); 433 int rv; 434 435 INP_WLOCK_ASSERT(inp); 436 437 rv = tp->t_fb->tfb_tcp_output(tp); 438 if (rv < 0) { 439 KASSERT(tp->t_fb->tfb_flags & TCP_FUNC_OUTPUT_CANDROP, 440 ("TCP stack %s requested tcp_drop(%p)", 441 tp->t_fb->tfb_tcp_block_name, tp)); 442 rv = -rv; 443 tp = tcp_drop(tp, rv); 444 if (tp) 445 INP_WUNLOCK(inp); 446 } else 447 INP_WUNLOCK(inp); 448 449 return (rv); 450 } 451 452 /* 453 * tcp_output_nodrop() 454 * Always returns locked. It is caller's responsibility to run tcp_drop()! 455 * Useful in syscall implementations, when we want to perform some logging 456 * and/or tracing with tcpcb before calling tcp_drop(). To be used with 457 * tcp_unlock_or_drop() later. 458 * 459 * XXXGL: maybe don't allow stacks to return a drop request at certain 460 * TCP states? Why would it do in connect(2)? In recv(2)? 461 */ 462 static inline int 463 tcp_output_nodrop(struct tcpcb *tp) 464 { 465 int rv; 466 467 INP_WLOCK_ASSERT(tptoinpcb(tp)); 468 469 rv = tp->t_fb->tfb_tcp_output(tp); 470 KASSERT(rv >= 0 || tp->t_fb->tfb_flags & TCP_FUNC_OUTPUT_CANDROP, 471 ("TCP stack %s requested tcp_drop(%p)", 472 tp->t_fb->tfb_tcp_block_name, tp)); 473 return (rv); 474 } 475 476 /* 477 * tcp_unlock_or_drop() 478 * Handle return code from tfb_tcp_output() after we have logged/traced, 479 * to be used with tcp_output_nodrop(). 480 */ 481 static inline int 482 tcp_unlock_or_drop(struct tcpcb *tp, int tcp_output_retval) 483 { 484 struct inpcb *inp = tptoinpcb(tp); 485 486 INP_WLOCK_ASSERT(inp); 487 488 if (tcp_output_retval < 0) { 489 tcp_output_retval = -tcp_output_retval; 490 if (tcp_drop(tp, tcp_output_retval) != NULL) 491 INP_WUNLOCK(inp); 492 } else 493 INP_WUNLOCK(inp); 494 495 return (tcp_output_retval); 496 } 497 #endif /* _NETINET_IN_PCB_H_ */ 498 499 static int inline 500 tcp_packets_this_ack(struct tcpcb *tp, tcp_seq ack) 501 { 502 return ((ack - tp->snd_una) / tp->t_maxseg + 503 ((((ack - tp->snd_una) % tp->t_maxseg) != 0) ? 1 : 0)); 504 } 505 #endif /* _KERNEL */ 506 507 /* 508 * Flags and utility macros for the t_flags field. 509 */ 510 #define TF_ACKNOW 0x00000001 /* ack peer immediately */ 511 #define TF_DELACK 0x00000002 /* ack, but try to delay it */ 512 #define TF_NODELAY 0x00000004 /* don't delay packets to coalesce */ 513 #define TF_NOOPT 0x00000008 /* don't use tcp options */ 514 #define TF_SENTFIN 0x00000010 /* have sent FIN */ 515 #define TF_REQ_SCALE 0x00000020 /* have/will request window scaling */ 516 #define TF_RCVD_SCALE 0x00000040 /* other side has requested scaling */ 517 #define TF_REQ_TSTMP 0x00000080 /* have/will request timestamps */ 518 #define TF_RCVD_TSTMP 0x00000100 /* a timestamp was received in SYN */ 519 #define TF_SACK_PERMIT 0x00000200 /* other side said I could SACK */ 520 #define TF_NEEDSYN 0x00000400 /* send SYN (implicit state) */ 521 #define TF_NEEDFIN 0x00000800 /* send FIN (implicit state) */ 522 #define TF_NOPUSH 0x00001000 /* don't push */ 523 #define TF_PREVVALID 0x00002000 /* saved values for bad rxmit valid 524 * Note: accessing and restoring from 525 * these may only be done in the 1st 526 * RTO recovery round (t_rxtshift == 1) 527 */ 528 #define TF_WAKESOR 0x00004000 /* wake up receive socket */ 529 #define TF_GPUTINPROG 0x00008000 /* Goodput measurement in progress */ 530 #define TF_MORETOCOME 0x00010000 /* More data to be appended to sock */ 531 #define TF_SONOTCONN 0x00020000 /* needs soisconnected() on ESTAB */ 532 #define TF_LASTIDLE 0x00040000 /* connection was previously idle */ 533 #define TF_RXWIN0SENT 0x00080000 /* sent a receiver win 0 in response */ 534 #define TF_FASTRECOVERY 0x00100000 /* in NewReno Fast Recovery */ 535 #define TF_WASFRECOVERY 0x00200000 /* was in NewReno Fast Recovery */ 536 #define TF_SIGNATURE 0x00400000 /* require MD5 digests (RFC2385) */ 537 #define TF_FORCEDATA 0x00800000 /* force out a byte */ 538 #define TF_TSO 0x01000000 /* TSO enabled on this connection */ 539 #define TF_TOE 0x02000000 /* this connection is offloaded */ 540 #define TF_CLOSED 0x04000000 /* close(2) called on socket */ 541 #define TF_UNUSED1 0x08000000 /* unused */ 542 #define TF_LRD 0x10000000 /* Lost Retransmission Detection */ 543 #define TF_CONGRECOVERY 0x20000000 /* congestion recovery mode */ 544 #define TF_WASCRECOVERY 0x40000000 /* was in congestion recovery */ 545 #define TF_FASTOPEN 0x80000000 /* TCP Fast Open indication */ 546 547 #define IN_FASTRECOVERY(t_flags) (t_flags & TF_FASTRECOVERY) 548 #define ENTER_FASTRECOVERY(t_flags) t_flags |= TF_FASTRECOVERY 549 #define EXIT_FASTRECOVERY(t_flags) t_flags &= ~TF_FASTRECOVERY 550 551 #define IN_CONGRECOVERY(t_flags) (t_flags & TF_CONGRECOVERY) 552 #define ENTER_CONGRECOVERY(t_flags) t_flags |= TF_CONGRECOVERY 553 #define EXIT_CONGRECOVERY(t_flags) t_flags &= ~TF_CONGRECOVERY 554 555 #define IN_RECOVERY(t_flags) (t_flags & (TF_CONGRECOVERY | TF_FASTRECOVERY)) 556 #define ENTER_RECOVERY(t_flags) t_flags |= (TF_CONGRECOVERY | TF_FASTRECOVERY) 557 #define EXIT_RECOVERY(t_flags) t_flags &= ~(TF_CONGRECOVERY | TF_FASTRECOVERY) 558 559 #if defined(_KERNEL) && !defined(TCP_RFC7413) 560 #define IS_FASTOPEN(t_flags) (false) 561 #else 562 #define IS_FASTOPEN(t_flags) (t_flags & TF_FASTOPEN) 563 #endif 564 565 #define BYTES_THIS_ACK(tp, th) (th->th_ack - tp->snd_una) 566 567 /* 568 * Flags for the t_oobflags field. 569 */ 570 #define TCPOOB_HAVEDATA 0x01 571 #define TCPOOB_HADDATA 0x02 572 573 /* 574 * Flags for the extended TCP flags field, t_flags2 575 */ 576 #define TF2_PLPMTU_BLACKHOLE 0x00000001 /* Possible PLPMTUD Black Hole. */ 577 #define TF2_PLPMTU_PMTUD 0x00000002 /* Allowed to attempt PLPMTUD. */ 578 #define TF2_PLPMTU_MAXSEGSNT 0x00000004 /* Last seg sent was full seg. */ 579 #define TF2_LOG_AUTO 0x00000008 /* Session is auto-logging. */ 580 #define TF2_DROP_AF_DATA 0x00000010 /* Drop after all data ack'd */ 581 #define TF2_ECN_PERMIT 0x00000020 /* connection ECN-ready */ 582 #define TF2_ECN_SND_CWR 0x00000040 /* ECN CWR in queue */ 583 #define TF2_ECN_SND_ECE 0x00000080 /* ECN ECE in queue */ 584 #define TF2_ACE_PERMIT 0x00000100 /* Accurate ECN mode */ 585 #define TF2_FBYTES_COMPLETE 0x00000400 /* We have first bytes in and out */ 586 #define TF2_ECN_USE_ECT1 0x00000800 /* Use ECT(1) marking on session */ 587 588 /* 589 * Structure to hold TCP options that are only used during segment 590 * processing (in tcp_input), but not held in the tcpcb. 591 * It's basically used to reduce the number of parameters 592 * to tcp_dooptions and tcp_addoptions. 593 * The binary order of the to_flags is relevant for packing of the 594 * options in tcp_addoptions. 595 */ 596 struct tcpopt { 597 u_int32_t to_flags; /* which options are present */ 598 #define TOF_MSS 0x0001 /* maximum segment size */ 599 #define TOF_SCALE 0x0002 /* window scaling */ 600 #define TOF_SACKPERM 0x0004 /* SACK permitted */ 601 #define TOF_TS 0x0010 /* timestamp */ 602 #define TOF_SIGNATURE 0x0040 /* TCP-MD5 signature option (RFC2385) */ 603 #define TOF_SACK 0x0080 /* Peer sent SACK option */ 604 #define TOF_FASTOPEN 0x0100 /* TCP Fast Open (TFO) cookie */ 605 #define TOF_MAXOPT 0x0200 606 u_int32_t to_tsval; /* new timestamp */ 607 u_int32_t to_tsecr; /* reflected timestamp */ 608 u_char *to_sacks; /* pointer to the first SACK blocks */ 609 u_char *to_signature; /* pointer to the TCP-MD5 signature */ 610 u_int8_t *to_tfo_cookie; /* pointer to the TFO cookie */ 611 u_int16_t to_mss; /* maximum segment size */ 612 u_int8_t to_wscale; /* window scaling */ 613 u_int8_t to_nsacks; /* number of SACK blocks */ 614 u_int8_t to_tfo_len; /* TFO cookie length */ 615 u_int32_t to_spare; /* UTO */ 616 }; 617 618 /* 619 * Flags for tcp_dooptions. 620 */ 621 #define TO_SYN 0x01 /* parse SYN-only options */ 622 623 struct hc_metrics_lite { /* must stay in sync with hc_metrics */ 624 uint32_t rmx_mtu; /* MTU for this path */ 625 uint32_t rmx_ssthresh; /* outbound gateway buffer limit */ 626 uint32_t rmx_rtt; /* estimated round trip time */ 627 uint32_t rmx_rttvar; /* estimated rtt variance */ 628 uint32_t rmx_cwnd; /* congestion window */ 629 uint32_t rmx_sendpipe; /* outbound delay-bandwidth product */ 630 uint32_t rmx_recvpipe; /* inbound delay-bandwidth product */ 631 }; 632 633 /* 634 * Used by tcp_maxmtu() to communicate interface specific features 635 * and limits at the time of connection setup. 636 */ 637 struct tcp_ifcap { 638 int ifcap; 639 u_int tsomax; 640 u_int tsomaxsegcount; 641 u_int tsomaxsegsize; 642 }; 643 644 #ifndef _NETINET_IN_PCB_H_ 645 struct in_conninfo; 646 #endif /* _NETINET_IN_PCB_H_ */ 647 648 /* 649 * The smoothed round-trip time and estimated variance 650 * are stored as fixed point numbers scaled by the values below. 651 * For convenience, these scales are also used in smoothing the average 652 * (smoothed = (1/scale)sample + ((scale-1)/scale)smoothed). 653 * With these scales, srtt has 3 bits to the right of the binary point, 654 * and thus an "ALPHA" of 0.875. rttvar has 2 bits to the right of the 655 * binary point, and is smoothed with an ALPHA of 0.75. 656 */ 657 #define TCP_RTT_SCALE 32 /* multiplier for srtt; 3 bits frac. */ 658 #define TCP_RTT_SHIFT 5 /* shift for srtt; 3 bits frac. */ 659 #define TCP_RTTVAR_SCALE 16 /* multiplier for rttvar; 2 bits */ 660 #define TCP_RTTVAR_SHIFT 4 /* shift for rttvar; 2 bits */ 661 #define TCP_DELTA_SHIFT 2 /* see tcp_input.c */ 662 663 /* 664 * The initial retransmission should happen at rtt + 4 * rttvar. 665 * Because of the way we do the smoothing, srtt and rttvar 666 * will each average +1/2 tick of bias. When we compute 667 * the retransmit timer, we want 1/2 tick of rounding and 668 * 1 extra tick because of +-1/2 tick uncertainty in the 669 * firing of the timer. The bias will give us exactly the 670 * 1.5 tick we need. But, because the bias is 671 * statistical, we have to test that we don't drop below 672 * the minimum feasible timer (which is 2 ticks). 673 * This version of the macro adapted from a paper by Lawrence 674 * Brakmo and Larry Peterson which outlines a problem caused 675 * by insufficient precision in the original implementation, 676 * which results in inappropriately large RTO values for very 677 * fast networks. 678 */ 679 #define TCP_REXMTVAL(tp) \ 680 max((tp)->t_rttmin, (((tp)->t_srtt >> (TCP_RTT_SHIFT - TCP_DELTA_SHIFT)) \ 681 + (tp)->t_rttvar) >> TCP_DELTA_SHIFT) 682 683 /* 684 * TCP statistics. 685 * Many of these should be kept per connection, 686 * but that's inconvenient at the moment. 687 */ 688 struct tcpstat { 689 uint64_t tcps_connattempt; /* connections initiated */ 690 uint64_t tcps_accepts; /* connections accepted */ 691 uint64_t tcps_connects; /* connections established */ 692 uint64_t tcps_drops; /* connections dropped */ 693 uint64_t tcps_conndrops; /* embryonic connections dropped */ 694 uint64_t tcps_minmssdrops; /* average minmss too low drops */ 695 uint64_t tcps_closed; /* conn. closed (includes drops) */ 696 uint64_t tcps_segstimed; /* segs where we tried to get rtt */ 697 uint64_t tcps_rttupdated; /* times we succeeded */ 698 uint64_t tcps_delack; /* delayed acks sent */ 699 uint64_t tcps_timeoutdrop; /* conn. dropped in rxmt timeout */ 700 uint64_t tcps_rexmttimeo; /* retransmit timeouts */ 701 uint64_t tcps_persisttimeo; /* persist timeouts */ 702 uint64_t tcps_keeptimeo; /* keepalive timeouts */ 703 uint64_t tcps_keepprobe; /* keepalive probes sent */ 704 uint64_t tcps_keepdrops; /* connections dropped in keepalive */ 705 uint64_t tcps_progdrops; /* drops due to no progress */ 706 707 uint64_t tcps_sndtotal; /* total packets sent */ 708 uint64_t tcps_sndpack; /* data packets sent */ 709 uint64_t tcps_sndbyte; /* data bytes sent */ 710 uint64_t tcps_sndrexmitpack; /* data packets retransmitted */ 711 uint64_t tcps_sndrexmitbyte; /* data bytes retransmitted */ 712 uint64_t tcps_sndrexmitbad; /* unnecessary packet retransmissions */ 713 uint64_t tcps_sndacks; /* ack-only packets sent */ 714 uint64_t tcps_sndprobe; /* window probes sent */ 715 uint64_t tcps_sndurg; /* packets sent with URG only */ 716 uint64_t tcps_sndwinup; /* window update-only packets sent */ 717 uint64_t tcps_sndctrl; /* control (SYN|FIN|RST) packets sent */ 718 719 uint64_t tcps_rcvtotal; /* total packets received */ 720 uint64_t tcps_rcvpack; /* packets received in sequence */ 721 uint64_t tcps_rcvbyte; /* bytes received in sequence */ 722 uint64_t tcps_rcvbadsum; /* packets received with ccksum errs */ 723 uint64_t tcps_rcvbadoff; /* packets received with bad offset */ 724 uint64_t tcps_rcvreassfull; /* packets dropped for no reass space */ 725 uint64_t tcps_rcvshort; /* packets received too short */ 726 uint64_t tcps_rcvduppack; /* duplicate-only packets received */ 727 uint64_t tcps_rcvdupbyte; /* duplicate-only bytes received */ 728 uint64_t tcps_rcvpartduppack; /* packets with some duplicate data */ 729 uint64_t tcps_rcvpartdupbyte; /* dup. bytes in part-dup. packets */ 730 uint64_t tcps_rcvoopack; /* out-of-order packets received */ 731 uint64_t tcps_rcvoobyte; /* out-of-order bytes received */ 732 uint64_t tcps_rcvpackafterwin; /* packets with data after window */ 733 uint64_t tcps_rcvbyteafterwin; /* bytes rcvd after window */ 734 uint64_t tcps_rcvafterclose; /* packets rcvd after "close" */ 735 uint64_t tcps_rcvwinprobe; /* rcvd window probe packets */ 736 uint64_t tcps_rcvdupack; /* rcvd duplicate acks */ 737 uint64_t tcps_rcvacktoomuch; /* rcvd acks for unsent data */ 738 uint64_t tcps_rcvackpack; /* rcvd ack packets */ 739 uint64_t tcps_rcvackbyte; /* bytes acked by rcvd acks */ 740 uint64_t tcps_rcvwinupd; /* rcvd window update packets */ 741 uint64_t tcps_pawsdrop; /* segments dropped due to PAWS */ 742 uint64_t tcps_predack; /* times hdr predict ok for acks */ 743 uint64_t tcps_preddat; /* times hdr predict ok for data pkts */ 744 uint64_t tcps_pcbcachemiss; 745 uint64_t tcps_cachedrtt; /* times cached RTT in route updated */ 746 uint64_t tcps_cachedrttvar; /* times cached rttvar updated */ 747 uint64_t tcps_cachedssthresh; /* times cached ssthresh updated */ 748 uint64_t tcps_usedrtt; /* times RTT initialized from route */ 749 uint64_t tcps_usedrttvar; /* times RTTVAR initialized from rt */ 750 uint64_t tcps_usedssthresh; /* times ssthresh initialized from rt*/ 751 uint64_t tcps_persistdrop; /* timeout in persist state */ 752 uint64_t tcps_badsyn; /* bogus SYN, e.g. premature ACK */ 753 uint64_t tcps_mturesent; /* resends due to MTU discovery */ 754 uint64_t tcps_listendrop; /* listen queue overflows */ 755 uint64_t tcps_badrst; /* ignored RSTs in the window */ 756 757 uint64_t tcps_sc_added; /* entry added to syncache */ 758 uint64_t tcps_sc_retransmitted; /* syncache entry was retransmitted */ 759 uint64_t tcps_sc_dupsyn; /* duplicate SYN packet */ 760 uint64_t tcps_sc_dropped; /* could not reply to packet */ 761 uint64_t tcps_sc_completed; /* successful extraction of entry */ 762 uint64_t tcps_sc_bucketoverflow;/* syncache per-bucket limit hit */ 763 uint64_t tcps_sc_cacheoverflow; /* syncache cache limit hit */ 764 uint64_t tcps_sc_reset; /* RST removed entry from syncache */ 765 uint64_t tcps_sc_stale; /* timed out or listen socket gone */ 766 uint64_t tcps_sc_aborted; /* syncache entry aborted */ 767 uint64_t tcps_sc_badack; /* removed due to bad ACK */ 768 uint64_t tcps_sc_unreach; /* ICMP unreachable received */ 769 uint64_t tcps_sc_zonefail; /* zalloc() failed */ 770 uint64_t tcps_sc_sendcookie; /* SYN cookie sent */ 771 uint64_t tcps_sc_recvcookie; /* SYN cookie received */ 772 773 uint64_t tcps_hc_added; /* entry added to hostcache */ 774 uint64_t tcps_hc_bucketoverflow;/* hostcache per bucket limit hit */ 775 776 uint64_t tcps_finwait2_drops; /* Drop FIN_WAIT_2 connection after time limit */ 777 778 /* SACK related stats */ 779 uint64_t tcps_sack_recovery_episode; /* SACK recovery episodes */ 780 uint64_t tcps_sack_rexmits; /* SACK rexmit segments */ 781 uint64_t tcps_sack_rexmit_bytes; /* SACK rexmit bytes */ 782 uint64_t tcps_sack_rcv_blocks; /* SACK blocks (options) received */ 783 uint64_t tcps_sack_send_blocks; /* SACK blocks (options) sent */ 784 uint64_t tcps_sack_lostrexmt; /* SACK lost retransmission recovered */ 785 uint64_t tcps_sack_sboverflow; /* times scoreboard overflowed */ 786 787 /* ECN related stats */ 788 uint64_t tcps_ecn_rcvce; /* ECN Congestion Experienced */ 789 uint64_t tcps_ecn_rcvect0; /* ECN Capable Transport */ 790 uint64_t tcps_ecn_rcvect1; /* ECN Capable Transport */ 791 uint64_t tcps_ecn_shs; /* ECN successful handshakes */ 792 uint64_t tcps_ecn_rcwnd; /* # times ECN reduced the cwnd */ 793 794 /* TCP_SIGNATURE related stats */ 795 uint64_t tcps_sig_rcvgoodsig; /* Total matching signature received */ 796 uint64_t tcps_sig_rcvbadsig; /* Total bad signature received */ 797 uint64_t tcps_sig_err_buildsig; /* Failed to make signature */ 798 uint64_t tcps_sig_err_sigopt; /* No signature expected by socket */ 799 uint64_t tcps_sig_err_nosigopt; /* No signature provided by segment */ 800 801 /* Path MTU Discovery Black Hole Detection related stats */ 802 uint64_t tcps_pmtud_blackhole_activated; /* Black Hole Count */ 803 uint64_t tcps_pmtud_blackhole_activated_min_mss; /* BH at min MSS Count */ 804 uint64_t tcps_pmtud_blackhole_failed; /* Black Hole Failure Count */ 805 806 uint64_t tcps_tunneled_pkts; /* Packets encap's in UDP received */ 807 uint64_t tcps_tunneled_errs; /* Packets that had errors that were UDP encaped */ 808 809 /* Dsack related stats */ 810 uint64_t tcps_dsack_count; /* Number of ACKs arriving with DSACKs */ 811 uint64_t tcps_dsack_bytes; /* Number of bytes DSACK'ed no TLP */ 812 uint64_t tcps_dsack_tlp_bytes; /* Number of bytes DSACK'ed due to TLPs */ 813 814 /* TCPS_TIME_WAIT usage stats */ 815 uint64_t tcps_tw_recycles; /* Times time-wait was recycled. */ 816 uint64_t tcps_tw_resets; /* Times time-wait sent a reset. */ 817 uint64_t tcps_tw_responds; /* Times time-wait sent a valid ack. */ 818 819 /* Accurate ECN Handshake stats */ 820 uint64_t tcps_ace_nect; /* ACE SYN packet with Non-ECT */ 821 uint64_t tcps_ace_ect1; /* ACE SYN packet with ECT1 */ 822 uint64_t tcps_ace_ect0; /* ACE SYN packet with ECT0 */ 823 uint64_t tcps_ace_ce; /* ACE SYN packet with CE */ 824 825 /* ECN related stats */ 826 uint64_t tcps_ecn_sndect0; /* ECN Capable Transport */ 827 uint64_t tcps_ecn_sndect1; /* ECN Capable Transport */ 828 829 uint64_t _pad[4]; /* 4 TBD placeholder for STABLE */ 830 }; 831 832 #define tcps_rcvmemdrop tcps_rcvreassfull /* compat */ 833 834 #ifdef _KERNEL 835 #define TI_UNLOCKED 1 836 #define TI_RLOCKED 2 837 #include <sys/counter.h> 838 839 VNET_PCPUSTAT_DECLARE(struct tcpstat, tcpstat); /* tcp statistics */ 840 /* 841 * In-kernel consumers can use these accessor macros directly to update 842 * stats. 843 */ 844 #define TCPSTAT_ADD(name, val) \ 845 VNET_PCPUSTAT_ADD(struct tcpstat, tcpstat, name, (val)) 846 #define TCPSTAT_INC(name) TCPSTAT_ADD(name, 1) 847 848 /* 849 * Kernel module consumers must use this accessor macro. 850 */ 851 void kmod_tcpstat_add(int statnum, int val); 852 #define KMOD_TCPSTAT_ADD(name, val) \ 853 kmod_tcpstat_add(offsetof(struct tcpstat, name) / sizeof(uint64_t), val) 854 #define KMOD_TCPSTAT_INC(name) KMOD_TCPSTAT_ADD(name, 1) 855 856 /* 857 * Running TCP connection count by state. 858 */ 859 VNET_DECLARE(counter_u64_t, tcps_states[TCP_NSTATES]); 860 #define V_tcps_states VNET(tcps_states) 861 #define TCPSTATES_INC(state) counter_u64_add(V_tcps_states[state], 1) 862 #define TCPSTATES_DEC(state) counter_u64_add(V_tcps_states[state], -1) 863 864 /* 865 * TCP specific helper hook point identifiers. 866 */ 867 #define HHOOK_TCP_EST_IN 0 868 #define HHOOK_TCP_EST_OUT 1 869 #define HHOOK_TCP_LAST HHOOK_TCP_EST_OUT 870 871 struct tcp_hhook_data { 872 struct tcpcb *tp; 873 struct tcphdr *th; 874 struct tcpopt *to; 875 uint32_t len; 876 int tso; 877 tcp_seq curack; 878 }; 879 #ifdef TCP_HHOOK 880 void hhook_run_tcp_est_out(struct tcpcb *tp, 881 struct tcphdr *th, struct tcpopt *to, 882 uint32_t len, int tso); 883 #endif 884 #endif 885 886 /* 887 * TCB structure exported to user-land via sysctl(3). 888 * 889 * Fields prefixed with "xt_" are unique to the export structure, and fields 890 * with "t_" or other prefixes match corresponding fields of 'struct tcpcb'. 891 * 892 * Legend: 893 * (s) - used by userland utilities in src 894 * (p) - used by utilities in ports 895 * (3) - is known to be used by third party software not in ports 896 * (n) - no known usage 897 * 898 * Evil hack: declare only if in_pcb.h and sys/socketvar.h have been 899 * included. Not all of our clients do. 900 */ 901 #if defined(_NETINET_IN_PCB_H_) && defined(_SYS_SOCKETVAR_H_) 902 struct xtcpcb { 903 ksize_t xt_len; /* length of this structure */ 904 struct xinpcb xt_inp; 905 char xt_stack[TCP_FUNCTION_NAME_LEN_MAX]; /* (s) */ 906 char xt_logid[TCP_LOG_ID_LEN]; /* (s) */ 907 char xt_cc[TCP_CA_NAME_MAX]; /* (s) */ 908 int64_t spare64[6]; 909 int32_t t_state; /* (s,p) */ 910 uint32_t t_flags; /* (s,p) */ 911 int32_t t_sndzerowin; /* (s) */ 912 int32_t t_sndrexmitpack; /* (s) */ 913 int32_t t_rcvoopack; /* (s) */ 914 int32_t t_rcvtime; /* (s) */ 915 int32_t tt_rexmt; /* (s) */ 916 int32_t tt_persist; /* (s) */ 917 int32_t tt_keep; /* (s) */ 918 int32_t tt_2msl; /* (s) */ 919 int32_t tt_delack; /* (s) */ 920 int32_t t_logstate; /* (3) */ 921 uint32_t t_snd_cwnd; /* (s) */ 922 uint32_t t_snd_ssthresh; /* (s) */ 923 uint32_t t_maxseg; /* (s) */ 924 uint32_t t_rcv_wnd; /* (s) */ 925 uint32_t t_snd_wnd; /* (s) */ 926 uint32_t xt_ecn; /* (s) */ 927 uint32_t t_dsack_bytes; /* (n) */ 928 uint32_t t_dsack_tlp_bytes; /* (n) */ 929 uint32_t t_dsack_pack; /* (n) */ 930 uint16_t xt_encaps_port; /* (s) */ 931 int16_t spare16; 932 int32_t spare32[22]; 933 } __aligned(8); 934 935 #ifdef _KERNEL 936 void tcp_inptoxtp(const struct inpcb *, struct xtcpcb *); 937 #endif 938 #endif 939 940 /* 941 * TCP function information (name-to-id mapping, aliases, and refcnt) 942 * exported to user-land via sysctl(3). 943 */ 944 struct tcp_function_info { 945 uint32_t tfi_refcnt; 946 uint8_t tfi_id; 947 char tfi_name[TCP_FUNCTION_NAME_LEN_MAX]; 948 char tfi_alias[TCP_FUNCTION_NAME_LEN_MAX]; 949 }; 950 951 /* 952 * Identifiers for TCP sysctl nodes 953 */ 954 #define TCPCTL_DO_RFC1323 1 /* use RFC-1323 extensions */ 955 #define TCPCTL_MSSDFLT 3 /* MSS default */ 956 #define TCPCTL_STATS 4 /* statistics */ 957 #define TCPCTL_RTTDFLT 5 /* default RTT estimate */ 958 #define TCPCTL_KEEPIDLE 6 /* keepalive idle timer */ 959 #define TCPCTL_KEEPINTVL 7 /* interval to send keepalives */ 960 #define TCPCTL_SENDSPACE 8 /* send buffer space */ 961 #define TCPCTL_RECVSPACE 9 /* receive buffer space */ 962 #define TCPCTL_KEEPINIT 10 /* timeout for establishing syn */ 963 #define TCPCTL_PCBLIST 11 /* list of all outstanding PCBs */ 964 #define TCPCTL_DELACKTIME 12 /* time before sending delayed ACK */ 965 #define TCPCTL_V6MSSDFLT 13 /* MSS default for IPv6 */ 966 #define TCPCTL_SACK 14 /* Selective Acknowledgement,rfc 2018 */ 967 #define TCPCTL_DROP 15 /* drop tcp connection */ 968 #define TCPCTL_STATES 16 /* connection counts by TCP state */ 969 970 #ifdef _KERNEL 971 #ifdef SYSCTL_DECL 972 SYSCTL_DECL(_net_inet_tcp); 973 SYSCTL_DECL(_net_inet_tcp_sack); 974 MALLOC_DECLARE(M_TCPLOG); 975 #endif 976 977 VNET_DECLARE(int, tcp_log_in_vain); 978 #define V_tcp_log_in_vain VNET(tcp_log_in_vain) 979 980 /* 981 * Global TCP tunables shared between different stacks. 982 * Please keep the list sorted. 983 */ 984 VNET_DECLARE(int, drop_synfin); 985 VNET_DECLARE(int, path_mtu_discovery); 986 VNET_DECLARE(int, tcp_abc_l_var); 987 VNET_DECLARE(int, tcp_autorcvbuf_max); 988 VNET_DECLARE(int, tcp_autosndbuf_inc); 989 VNET_DECLARE(int, tcp_autosndbuf_max); 990 VNET_DECLARE(int, tcp_delack_enabled); 991 VNET_DECLARE(int, tcp_do_autorcvbuf); 992 VNET_DECLARE(int, tcp_do_autosndbuf); 993 VNET_DECLARE(int, tcp_do_ecn); 994 VNET_DECLARE(int, tcp_do_lrd); 995 VNET_DECLARE(int, tcp_do_prr); 996 VNET_DECLARE(int, tcp_do_prr_conservative); 997 VNET_DECLARE(int, tcp_do_newcwv); 998 VNET_DECLARE(int, tcp_do_rfc1323); 999 VNET_DECLARE(int, tcp_tolerate_missing_ts); 1000 VNET_DECLARE(int, tcp_do_rfc3042); 1001 VNET_DECLARE(int, tcp_do_rfc3390); 1002 VNET_DECLARE(int, tcp_do_rfc3465); 1003 VNET_DECLARE(int, tcp_do_newsack); 1004 VNET_DECLARE(int, tcp_do_sack); 1005 VNET_DECLARE(int, tcp_do_tso); 1006 VNET_DECLARE(int, tcp_ecn_maxretries); 1007 VNET_DECLARE(int, tcp_initcwnd_segments); 1008 VNET_DECLARE(int, tcp_insecure_rst); 1009 VNET_DECLARE(int, tcp_insecure_syn); 1010 VNET_DECLARE(uint32_t, tcp_map_entries_limit); 1011 VNET_DECLARE(uint32_t, tcp_map_split_limit); 1012 VNET_DECLARE(int, tcp_minmss); 1013 VNET_DECLARE(int, tcp_mssdflt); 1014 #ifdef STATS 1015 VNET_DECLARE(int, tcp_perconn_stats_dflt_tpl); 1016 VNET_DECLARE(int, tcp_perconn_stats_enable); 1017 #endif /* STATS */ 1018 VNET_DECLARE(int, tcp_recvspace); 1019 VNET_DECLARE(int, tcp_sack_globalholes); 1020 VNET_DECLARE(int, tcp_sack_globalmaxholes); 1021 VNET_DECLARE(int, tcp_sack_maxholes); 1022 VNET_DECLARE(int, tcp_sc_rst_sock_fail); 1023 VNET_DECLARE(int, tcp_sendspace); 1024 VNET_DECLARE(int, tcp_udp_tunneling_overhead); 1025 VNET_DECLARE(int, tcp_udp_tunneling_port); 1026 VNET_DECLARE(struct inpcbinfo, tcbinfo); 1027 1028 #define V_tcp_do_lrd VNET(tcp_do_lrd) 1029 #define V_tcp_do_prr VNET(tcp_do_prr) 1030 #define V_tcp_do_prr_conservative VNET(tcp_do_prr_conservative) 1031 #define V_tcp_do_newcwv VNET(tcp_do_newcwv) 1032 #define V_drop_synfin VNET(drop_synfin) 1033 #define V_path_mtu_discovery VNET(path_mtu_discovery) 1034 #define V_tcbinfo VNET(tcbinfo) 1035 #define V_tcp_abc_l_var VNET(tcp_abc_l_var) 1036 #define V_tcp_autorcvbuf_max VNET(tcp_autorcvbuf_max) 1037 #define V_tcp_autosndbuf_inc VNET(tcp_autosndbuf_inc) 1038 #define V_tcp_autosndbuf_max VNET(tcp_autosndbuf_max) 1039 #define V_tcp_delack_enabled VNET(tcp_delack_enabled) 1040 #define V_tcp_do_autorcvbuf VNET(tcp_do_autorcvbuf) 1041 #define V_tcp_do_autosndbuf VNET(tcp_do_autosndbuf) 1042 #define V_tcp_do_ecn VNET(tcp_do_ecn) 1043 #define V_tcp_do_rfc1323 VNET(tcp_do_rfc1323) 1044 #define V_tcp_tolerate_missing_ts VNET(tcp_tolerate_missing_ts) 1045 #define V_tcp_ts_offset_per_conn VNET(tcp_ts_offset_per_conn) 1046 #define V_tcp_do_rfc3042 VNET(tcp_do_rfc3042) 1047 #define V_tcp_do_rfc3390 VNET(tcp_do_rfc3390) 1048 #define V_tcp_do_rfc3465 VNET(tcp_do_rfc3465) 1049 #define V_tcp_do_newsack VNET(tcp_do_newsack) 1050 #define V_tcp_do_sack VNET(tcp_do_sack) 1051 #define V_tcp_do_tso VNET(tcp_do_tso) 1052 #define V_tcp_ecn_maxretries VNET(tcp_ecn_maxretries) 1053 #define V_tcp_initcwnd_segments VNET(tcp_initcwnd_segments) 1054 #define V_tcp_insecure_rst VNET(tcp_insecure_rst) 1055 #define V_tcp_insecure_syn VNET(tcp_insecure_syn) 1056 #define V_tcp_map_entries_limit VNET(tcp_map_entries_limit) 1057 #define V_tcp_map_split_limit VNET(tcp_map_split_limit) 1058 #define V_tcp_minmss VNET(tcp_minmss) 1059 #define V_tcp_mssdflt VNET(tcp_mssdflt) 1060 #ifdef STATS 1061 #define V_tcp_perconn_stats_dflt_tpl VNET(tcp_perconn_stats_dflt_tpl) 1062 #define V_tcp_perconn_stats_enable VNET(tcp_perconn_stats_enable) 1063 #endif /* STATS */ 1064 #define V_tcp_recvspace VNET(tcp_recvspace) 1065 #define V_tcp_sack_globalholes VNET(tcp_sack_globalholes) 1066 #define V_tcp_sack_globalmaxholes VNET(tcp_sack_globalmaxholes) 1067 #define V_tcp_sack_maxholes VNET(tcp_sack_maxholes) 1068 #define V_tcp_sc_rst_sock_fail VNET(tcp_sc_rst_sock_fail) 1069 #define V_tcp_sendspace VNET(tcp_sendspace) 1070 #define V_tcp_udp_tunneling_overhead VNET(tcp_udp_tunneling_overhead) 1071 #define V_tcp_udp_tunneling_port VNET(tcp_udp_tunneling_port) 1072 1073 #ifdef TCP_HHOOK 1074 VNET_DECLARE(struct hhook_head *, tcp_hhh[HHOOK_TCP_LAST + 1]); 1075 #define V_tcp_hhh VNET(tcp_hhh) 1076 #endif 1077 1078 int tcp_addoptions(struct tcpopt *, u_char *); 1079 struct tcpcb * 1080 tcp_close(struct tcpcb *); 1081 void tcp_discardcb(struct tcpcb *); 1082 bool tcp_freecb(struct tcpcb *); 1083 void tcp_twstart(struct tcpcb *); 1084 int tcp_ctloutput(struct socket *, struct sockopt *); 1085 void tcp_fini(void *); 1086 char *tcp_log_addrs(struct in_conninfo *, struct tcphdr *, const void *, 1087 const void *); 1088 char *tcp_log_vain(struct in_conninfo *, struct tcphdr *, const void *, 1089 const void *); 1090 int tcp_reass(struct tcpcb *, struct tcphdr *, tcp_seq *, int *, 1091 struct mbuf *); 1092 void tcp_reass_global_init(void); 1093 void tcp_reass_flush(struct tcpcb *); 1094 void tcp_dooptions(struct tcpopt *, u_char *, int, int); 1095 void tcp_dropwithreset(struct mbuf *, struct tcphdr *, 1096 struct tcpcb *, int, int); 1097 void tcp_pulloutofband(struct socket *, 1098 struct tcphdr *, struct mbuf *, int); 1099 void tcp_xmit_timer(struct tcpcb *, int); 1100 void tcp_newreno_partial_ack(struct tcpcb *, struct tcphdr *); 1101 void cc_ack_received(struct tcpcb *tp, struct tcphdr *th, 1102 uint16_t nsegs, uint16_t type); 1103 void cc_conn_init(struct tcpcb *tp); 1104 void cc_post_recovery(struct tcpcb *tp, struct tcphdr *th); 1105 void cc_ecnpkt_handler(struct tcpcb *tp, struct tcphdr *th, uint8_t iptos); 1106 void cc_ecnpkt_handler_flags(struct tcpcb *tp, uint16_t flags, uint8_t iptos); 1107 void cc_cong_signal(struct tcpcb *tp, struct tcphdr *th, uint32_t type); 1108 #ifdef TCP_HHOOK 1109 void hhook_run_tcp_est_in(struct tcpcb *tp, 1110 struct tcphdr *th, struct tcpopt *to); 1111 #endif 1112 1113 int tcp_input(struct mbuf **, int *, int); 1114 int tcp_autorcvbuf(struct mbuf *, struct tcphdr *, struct socket *, 1115 struct tcpcb *, int); 1116 int tcp_input_with_port(struct mbuf **, int *, int, uint16_t); 1117 void tcp_do_segment(struct mbuf *, struct tcphdr *, 1118 struct socket *, struct tcpcb *, int, int, uint8_t); 1119 1120 int register_tcp_functions(struct tcp_function_block *blk, int wait); 1121 int register_tcp_functions_as_names(struct tcp_function_block *blk, 1122 int wait, const char *names[], int *num_names); 1123 int register_tcp_functions_as_name(struct tcp_function_block *blk, 1124 const char *name, int wait); 1125 int deregister_tcp_functions(struct tcp_function_block *blk, bool quiesce, 1126 bool force); 1127 struct tcp_function_block *find_and_ref_tcp_functions(struct tcp_function_set *fs); 1128 int find_tcp_function_alias(struct tcp_function_block *blk, struct tcp_function_set *fs); 1129 void tcp_switch_back_to_default(struct tcpcb *tp); 1130 struct tcp_function_block * 1131 find_and_ref_tcp_fb(struct tcp_function_block *fs); 1132 int tcp_default_ctloutput(struct inpcb *inp, struct sockopt *sopt); 1133 int tcp_ctloutput_set(struct inpcb *inp, struct sockopt *sopt); 1134 1135 extern counter_u64_t tcp_inp_lro_direct_queue; 1136 extern counter_u64_t tcp_inp_lro_wokeup_queue; 1137 extern counter_u64_t tcp_inp_lro_compressed; 1138 extern counter_u64_t tcp_inp_lro_locks_taken; 1139 extern counter_u64_t tcp_extra_mbuf; 1140 extern counter_u64_t tcp_would_have_but; 1141 extern counter_u64_t tcp_comp_total; 1142 extern counter_u64_t tcp_uncomp_total; 1143 extern counter_u64_t tcp_bad_csums; 1144 1145 #ifdef NETFLIX_EXP_DETECTION 1146 /* Various SACK attack thresholds */ 1147 extern int32_t tcp_force_detection; 1148 extern int32_t tcp_sack_to_ack_thresh; 1149 extern int32_t tcp_sack_to_move_thresh; 1150 extern int32_t tcp_restoral_thresh; 1151 extern int32_t tcp_sad_decay_val; 1152 extern int32_t tcp_sad_pacing_interval; 1153 extern int32_t tcp_sad_low_pps; 1154 extern int32_t tcp_map_minimum; 1155 extern int32_t tcp_attack_on_turns_on_logging; 1156 #endif 1157 extern uint32_t tcp_ack_war_time_window; 1158 extern uint32_t tcp_ack_war_cnt; 1159 1160 uint32_t tcp_maxmtu(struct in_conninfo *, struct tcp_ifcap *); 1161 uint32_t tcp_maxmtu6(struct in_conninfo *, struct tcp_ifcap *); 1162 void tcp6_use_min_mtu(struct tcpcb *); 1163 u_int tcp_maxseg(const struct tcpcb *); 1164 u_int tcp_fixed_maxseg(const struct tcpcb *); 1165 void tcp_mss_update(struct tcpcb *, int, int, struct hc_metrics_lite *, 1166 struct tcp_ifcap *); 1167 void tcp_mss(struct tcpcb *, int); 1168 int tcp_mssopt(struct in_conninfo *); 1169 struct tcpcb * 1170 tcp_newtcpcb(struct inpcb *); 1171 int tcp_default_output(struct tcpcb *); 1172 void tcp_state_change(struct tcpcb *, int); 1173 void tcp_respond(struct tcpcb *, void *, 1174 struct tcphdr *, struct mbuf *, tcp_seq, tcp_seq, uint16_t); 1175 bool tcp_twcheck(struct inpcb *, struct tcpopt *, struct tcphdr *, 1176 struct mbuf *, int); 1177 void tcp_setpersist(struct tcpcb *); 1178 void tcp_record_dsack(struct tcpcb *tp, tcp_seq start, tcp_seq end, int tlp); 1179 struct tcptemp * 1180 tcpip_maketemplate(struct inpcb *); 1181 void tcpip_fillheaders(struct inpcb *, uint16_t, void *, void *); 1182 void tcp_timer_activate(struct tcpcb *, uint32_t, u_int); 1183 int tcp_timer_suspend(struct tcpcb *, uint32_t); 1184 void tcp_timers_unsuspend(struct tcpcb *, uint32_t); 1185 int tcp_timer_active(struct tcpcb *, uint32_t); 1186 void tcp_timer_stop(struct tcpcb *, uint32_t); 1187 void tcp_trace(short, short, struct tcpcb *, void *, struct tcphdr *, int); 1188 int inp_to_cpuid(struct inpcb *inp); 1189 /* 1190 * All tcp_hc_* functions are IPv4 and IPv6 (via in_conninfo) 1191 */ 1192 void tcp_hc_init(void); 1193 #ifdef VIMAGE 1194 void tcp_hc_destroy(void); 1195 #endif 1196 void tcp_hc_get(struct in_conninfo *, struct hc_metrics_lite *); 1197 uint32_t tcp_hc_getmtu(struct in_conninfo *); 1198 void tcp_hc_updatemtu(struct in_conninfo *, uint32_t); 1199 void tcp_hc_update(struct in_conninfo *, struct hc_metrics_lite *); 1200 void cc_after_idle(struct tcpcb *tp); 1201 1202 extern struct protosw tcp_protosw; /* shared for TOE */ 1203 extern struct protosw tcp6_protosw; /* shared for TOE */ 1204 1205 uint32_t tcp_new_ts_offset(struct in_conninfo *); 1206 tcp_seq tcp_new_isn(struct in_conninfo *); 1207 1208 int tcp_sack_doack(struct tcpcb *, struct tcpopt *, tcp_seq); 1209 int tcp_dsack_block_exists(struct tcpcb *); 1210 void tcp_update_dsack_list(struct tcpcb *, tcp_seq, tcp_seq); 1211 void tcp_update_sack_list(struct tcpcb *tp, tcp_seq rcv_laststart, tcp_seq rcv_lastend); 1212 void tcp_clean_dsack_blocks(struct tcpcb *tp); 1213 void tcp_clean_sackreport(struct tcpcb *tp); 1214 void tcp_sack_adjust(struct tcpcb *tp); 1215 struct sackhole *tcp_sack_output(struct tcpcb *tp, int *sack_bytes_rexmt); 1216 void tcp_do_prr_ack(struct tcpcb *, struct tcphdr *, struct tcpopt *); 1217 void tcp_lost_retransmission(struct tcpcb *, struct tcphdr *); 1218 void tcp_sack_partialack(struct tcpcb *, struct tcphdr *); 1219 void tcp_free_sackholes(struct tcpcb *tp); 1220 void tcp_sack_lost_retransmission(struct tcpcb *, struct tcphdr *); 1221 int tcp_newreno(struct tcpcb *, struct tcphdr *); 1222 int tcp_compute_pipe(struct tcpcb *); 1223 uint32_t tcp_compute_initwnd(uint32_t); 1224 void tcp_sndbuf_autoscale(struct tcpcb *, struct socket *, uint32_t); 1225 int tcp_stats_sample_rollthedice(struct tcpcb *tp, void *seed_bytes, 1226 size_t seed_len); 1227 int tcp_can_enable_pacing(void); 1228 void tcp_decrement_paced_conn(void); 1229 1230 struct mbuf * 1231 tcp_m_copym(struct mbuf *m, int32_t off0, int32_t *plen, 1232 int32_t seglimit, int32_t segsize, struct sockbuf *sb, bool hw_tls); 1233 1234 int tcp_stats_init(void); 1235 void tcp_log_end_status(struct tcpcb *tp, uint8_t status); 1236 1237 static inline void 1238 tcp_fields_to_host(struct tcphdr *th) 1239 { 1240 1241 th->th_seq = ntohl(th->th_seq); 1242 th->th_ack = ntohl(th->th_ack); 1243 th->th_win = ntohs(th->th_win); 1244 th->th_urp = ntohs(th->th_urp); 1245 } 1246 1247 static inline void 1248 tcp_fields_to_net(struct tcphdr *th) 1249 { 1250 1251 th->th_seq = htonl(th->th_seq); 1252 th->th_ack = htonl(th->th_ack); 1253 th->th_win = htons(th->th_win); 1254 th->th_urp = htons(th->th_urp); 1255 } 1256 1257 static inline uint16_t 1258 tcp_get_flags(const struct tcphdr *th) 1259 { 1260 return (((uint16_t)th->th_x2 << 8) | th->th_flags); 1261 } 1262 1263 static inline void 1264 tcp_set_flags(struct tcphdr *th, uint16_t flags) 1265 { 1266 th->th_x2 = (flags >> 8) & 0x0f; 1267 th->th_flags = flags & 0xff; 1268 } 1269 1270 static inline void 1271 tcp_account_for_send(struct tcpcb *tp, uint32_t len, uint8_t is_rxt, 1272 uint8_t is_tlp, int hw_tls) 1273 { 1274 if (is_tlp) { 1275 tp->t_sndtlppack++; 1276 tp->t_sndtlpbyte += len; 1277 } 1278 /* To get total bytes sent you must add t_snd_rxt_bytes to t_sndbytes */ 1279 if (is_rxt) 1280 tp->t_snd_rxt_bytes += len; 1281 else 1282 tp->t_sndbytes += len; 1283 1284 #ifdef KERN_TLS 1285 if (hw_tls && is_rxt && len != 0) { 1286 uint64_t rexmit_percent = (1000ULL * tp->t_snd_rxt_bytes) / (10ULL * (tp->t_snd_rxt_bytes + tp->t_sndbytes)); 1287 if (rexmit_percent > ktls_ifnet_max_rexmit_pct) 1288 ktls_disable_ifnet(tp); 1289 } 1290 #endif 1291 1292 } 1293 #endif /* _KERNEL */ 1294 1295 #endif /* _NETINET_TCP_VAR_H_ */ 1296