The Design and Implementation of the FreeBSD Operating System, Second Edition
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FreeBSD/Linux Kernel Cross Reference
sys/netinet/tcp_var.h

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    1 /*-
    2  * Copyright (c) 1982, 1986, 1993, 1994, 1995
    3  *      The Regents of the University of California.  All rights reserved.
    4  *
    5  * Redistribution and use in source and binary forms, with or without
    6  * modification, are permitted provided that the following conditions
    7  * are met:
    8  * 1. Redistributions of source code must retain the above copyright
    9  *    notice, this list of conditions and the following disclaimer.
   10  * 2. Redistributions in binary form must reproduce the above copyright
   11  *    notice, this list of conditions and the following disclaimer in the
   12  *    documentation and/or other materials provided with the distribution.
   13  * 4. Neither the name of the University nor the names of its contributors
   14  *    may be used to endorse or promote products derived from this software
   15  *    without specific prior written permission.
   16  *
   17  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
   18  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
   19  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
   20  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
   21  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
   22  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
   23  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
   24  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
   25  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
   26  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
   27  * SUCH DAMAGE.
   28  *
   29  *      @(#)tcp_var.h   8.4 (Berkeley) 5/24/95
   30  * $FreeBSD$
   31  */
   32 
   33 #ifndef _NETINET_TCP_VAR_H_
   34 #define _NETINET_TCP_VAR_H_
   35 
   36 #include <netinet/tcp.h>
   37 #include <netinet/tcp_fsm.h>
   38 
   39 #ifdef _KERNEL
   40 #include <net/vnet.h>
   41 #include <sys/mbuf.h>
   42 
   43 /*
   44  * Kernel variables for tcp.
   45  */
   46 VNET_DECLARE(int, tcp_do_rfc1323);
   47 #define V_tcp_do_rfc1323        VNET(tcp_do_rfc1323)
   48 
   49 #endif /* _KERNEL */
   50 
   51 /* TCP segment queue entry */
   52 struct tseg_qent {
   53         TAILQ_ENTRY(tseg_qent) tqe_q;
   54         struct  mbuf   *tqe_m;          /* mbuf contains packet */
   55         struct  mbuf   *tqe_last;       /* last mbuf in chain */
   56         tcp_seq tqe_start;              /* TCP Sequence number start */
   57         int     tqe_len;                /* TCP segment data length */
   58         uint32_t tqe_flags;             /* The flags from the th->th_flags */
   59         uint32_t tqe_mbuf_cnt;          /* Count of mbuf overhead */
   60 };
   61 TAILQ_HEAD(tsegqe_head, tseg_qent);
   62 
   63 struct sackblk {
   64         tcp_seq start;          /* start seq no. of sack block */
   65         tcp_seq end;            /* end seq no. */
   66 };
   67 
   68 struct sackhole {
   69         tcp_seq start;          /* start seq no. of hole */
   70         tcp_seq end;            /* end seq no. */
   71         tcp_seq rxmit;          /* next seq. no in hole to be retransmitted */
   72         TAILQ_ENTRY(sackhole) scblink;  /* scoreboard linkage */
   73 };
   74 
   75 struct sackhint {
   76         struct sackhole *nexthole;
   77         int             sack_bytes_rexmit;
   78         tcp_seq         last_sack_ack;  /* Most recent/largest sacked ack */
   79 
   80         int             ispare;         /* explicit pad for 64bit alignment */
   81         int             sacked_bytes;   /*
   82                                          * Total sacked bytes reported by the
   83                                          * receiver via sack option
   84                                          */
   85         uint32_t        _pad1[1];       /* TBD */
   86         uint64_t        _pad[1];        /* TBD */
   87 };
   88 
   89 struct tcptemp {
   90         u_char  tt_ipgen[40]; /* the size must be of max ip header, now IPv6 */
   91         struct  tcphdr tt_t;
   92 };
   93 
   94 #define SEGQ_EMPTY(tp) TAILQ_EMPTY(&(tp)->t_segq)
   95 
   96 #define tcp6cb          tcpcb  /* for KAME src sync over BSD*'s */
   97 
   98 /* 
   99  * TODO: We yet need to brave plowing in
  100  * to tcp_input() and the pru_usrreq() block.
  101  * Right now these go to the old standards which
  102  * are somewhat ok, but in the long term may
  103  * need to be changed. If we do tackle tcp_input()
  104  * then we need to get rid of the tcp_do_segment()
  105  * function below.
  106  */
  107 /* Flags for tcp functions */
  108 #define TCP_FUNC_BEING_REMOVED 0x01     /* Can no longer be referenced */
  109 struct tcpcb;
  110 struct inpcb;
  111 struct sockopt;
  112 struct socket;
  113 
  114 /*
  115  * If defining the optional tcp_timers, in the
  116  * tfb_tcp_timer_stop call you must use the
  117  * callout_async_drain() function with the
  118  * tcp_timer_discard callback. You should check
  119  * the return of callout_async_drain() and if 0
  120  * increment tt_draincnt. Since the timer sub-system
  121  * does not know your callbacks you must provide a
  122  * stop_all function that loops through and calls
  123  * tcp_timer_stop() with each of your defined timers.
  124  */
  125 struct tcp_function_block {
  126         char tfb_tcp_block_name[TCP_FUNCTION_NAME_LEN_MAX];
  127         int     (*tfb_tcp_output)(struct tcpcb *);
  128         void    (*tfb_tcp_do_segment)(struct mbuf *, struct tcphdr *,
  129                             struct socket *, struct tcpcb *,
  130                             int, int, uint8_t,
  131                             int);
  132         int     (*tfb_tcp_ctloutput)(struct socket *so, struct sockopt *sopt,
  133                             struct inpcb *inp, struct tcpcb *tp);
  134         /* Optional memory allocation/free routine */
  135         void    (*tfb_tcp_fb_init)(struct tcpcb *);
  136         void    (*tfb_tcp_fb_fini)(struct tcpcb *);
  137         /* Optional timers, must define all if you define one */
  138         int     (*tfb_tcp_timer_stop_all)(struct tcpcb *);
  139         void    (*tfb_tcp_timer_activate)(struct tcpcb *,
  140                             uint32_t, u_int);
  141         int     (*tfb_tcp_timer_active)(struct tcpcb *, uint32_t);
  142         void    (*tfb_tcp_timer_stop)(struct tcpcb *, uint32_t);
  143         void    (*tfb_tcp_rexmit_tmr)(struct tcpcb *);
  144         volatile uint32_t tfb_refcnt;
  145         uint32_t  tfb_flags;
  146 };
  147 
  148 struct tcp_function {
  149         TAILQ_ENTRY(tcp_function) tf_next;
  150         struct tcp_function_block *tf_fb;
  151 };
  152 
  153 TAILQ_HEAD(tcp_funchead, tcp_function);
  154 
  155 /*
  156  * Tcp control block, one per tcp; fields:
  157  * Organized for 16 byte cacheline efficiency.
  158  */
  159 struct tcpcb {
  160         struct  tsegqe_head t_segq;     /* segment reassembly queue */
  161         void    *t_pspare[2];           /* new reassembly queue */
  162         int     t_segqlen;              /* segment reassembly queue length */
  163         int     t_dupacks;              /* consecutive dup acks recd */
  164 
  165         struct tcp_timer *t_timers;     /* All the TCP timers in one struct */
  166 
  167         struct  inpcb *t_inpcb;         /* back pointer to internet pcb */
  168         int     t_state;                /* state of this connection */
  169         u_int   t_flags;
  170 
  171         struct  vnet *t_vnet;           /* back pointer to parent vnet */
  172 
  173         tcp_seq snd_una;                /* sent but unacknowledged */
  174         tcp_seq snd_max;                /* highest sequence number sent;
  175                                          * used to recognize retransmits
  176                                          */
  177         tcp_seq snd_nxt;                /* send next */
  178         tcp_seq snd_up;                 /* send urgent pointer */
  179 
  180         tcp_seq snd_wl1;                /* window update seg seq number */
  181         tcp_seq snd_wl2;                /* window update seg ack number */
  182         tcp_seq iss;                    /* initial send sequence number */
  183         tcp_seq irs;                    /* initial receive sequence number */
  184 
  185         tcp_seq rcv_nxt;                /* receive next */
  186         tcp_seq rcv_adv;                /* advertised window */
  187         u_long  rcv_wnd;                /* receive window */
  188         tcp_seq rcv_up;                 /* receive urgent pointer */
  189 
  190         u_long  snd_wnd;                /* send window */
  191         u_long  snd_cwnd;               /* congestion-controlled window */
  192         u_long  snd_spare1;             /* unused */
  193         u_long  snd_ssthresh;           /* snd_cwnd size threshold for
  194                                          * for slow start exponential to
  195                                          * linear switch
  196                                          */
  197         u_long  snd_spare2;             /* unused */
  198         tcp_seq snd_recover;            /* for use in NewReno Fast Recovery */
  199 
  200         u_int   t_rcvtime;              /* inactivity time */
  201         u_int   t_starttime;            /* time connection was established */
  202         u_int   t_rtttime;              /* RTT measurement start time */
  203         tcp_seq t_rtseq;                /* sequence number being timed */
  204 
  205         u_int   t_bw_spare1;            /* unused */
  206         tcp_seq t_bw_spare2;            /* unused */
  207 
  208         int     t_rxtcur;               /* current retransmit value (ticks) */
  209         u_int   t_maxseg;               /* maximum segment size */
  210         u_int   t_pmtud_saved_maxseg;   /* pre-blackhole MSS */
  211         int     t_srtt;                 /* smoothed round-trip time */
  212         int     t_rttvar;               /* variance in round-trip time */
  213 
  214         int     t_rxtshift;             /* log(2) of rexmt exp. backoff */
  215         u_int   t_rttmin;               /* minimum rtt allowed */
  216         u_int   t_rttbest;              /* best rtt we've seen */
  217         u_long  t_rttupdated;           /* number of times rtt sampled */
  218         u_long  max_sndwnd;             /* largest window peer has offered */
  219 
  220         int     t_softerror;            /* possible error not yet reported */
  221 /* out-of-band data */
  222         char    t_oobflags;             /* have some */
  223         char    t_iobc;                 /* input character */
  224 /* RFC 1323 variables */
  225         u_char  snd_scale;              /* window scaling for send window */
  226         u_char  rcv_scale;              /* window scaling for recv window */
  227         u_char  request_r_scale;        /* pending window scaling */
  228         u_int32_t  ts_recent;           /* timestamp echo data */
  229         u_int   ts_recent_age;          /* when last updated */
  230         u_int32_t  ts_offset;           /* our timestamp offset */
  231 
  232         tcp_seq last_ack_sent;
  233 /* experimental */
  234         u_long  snd_cwnd_prev;          /* cwnd prior to retransmit */
  235         u_long  snd_ssthresh_prev;      /* ssthresh prior to retransmit */
  236         tcp_seq snd_recover_prev;       /* snd_recover prior to retransmit */
  237         int     t_sndzerowin;           /* zero-window updates sent */
  238         u_int   t_badrxtwin;            /* window for retransmit recovery */
  239         u_char  snd_limited;            /* segments limited transmitted */
  240 /* SACK related state */
  241         int     snd_numholes;           /* number of holes seen by sender */
  242         TAILQ_HEAD(sackhole_head, sackhole) snd_holes;
  243                                         /* SACK scoreboard (sorted) */
  244         tcp_seq snd_fack;               /* last seq number(+1) sack'd by rcv'r*/
  245         int     rcv_numsacks;           /* # distinct sack blks present */
  246         struct sackblk sackblks[MAX_SACK_BLKS]; /* seq nos. of sack blocks */
  247         tcp_seq sack_newdata;           /* New data xmitted in this recovery
  248                                            episode starts at this seq number */
  249         struct sackhint sackhint;       /* SACK scoreboard hint */
  250         int     t_rttlow;               /* smallest observerved RTT */
  251         u_int32_t       rfbuf_ts;       /* recv buffer autoscaling timestamp */
  252         int     rfbuf_cnt;              /* recv buffer autoscaling byte count */
  253         struct toedev   *tod;           /* toedev handling this connection */
  254         int     t_sndrexmitpack;        /* retransmit packets sent */
  255         int     t_rcvoopack;            /* out-of-order packets received */
  256         void    *t_toe;                 /* TOE pcb pointer */
  257         int     t_bytes_acked;          /* # bytes acked during current RTT */
  258         struct cc_algo  *cc_algo;       /* congestion control algorithm */
  259         struct cc_var   *ccv;           /* congestion control specific vars */
  260         struct osd      *osd;           /* storage for Khelp module data */
  261 
  262         u_int   t_keepinit;             /* time to establish connection */
  263         u_int   t_keepidle;             /* time before keepalive probes begin */
  264         u_int   t_keepintvl;            /* interval between keepalives */
  265         u_int   t_keepcnt;              /* number of keepalives before close */
  266 
  267         u_int   t_tsomax;               /* TSO total burst length limit in bytes */
  268         u_int   t_tsomaxsegcount;       /* TSO maximum segment count */
  269         u_int   t_tsomaxsegsize;        /* TSO maximum segment size in bytes */
  270         u_int   t_flags2;               /* More tcpcb flags storage */
  271         uint32_t t_segqmbuflen;         /* Count of bytes mbufs on all entries */
  272 #if defined(_KERNEL) && defined(TCP_RFC7413)
  273         uint32_t t_ispare[5];           /* 5 UTO, 0 TBD */
  274         uint64_t t_tfo_cookie;          /* TCP Fast Open cookie */
  275 #else
  276         uint32_t t_ispare[7];           /* 5 UTO, 2 TBD */
  277 #endif
  278         struct tcp_function_block *t_fb;/* TCP function call block */
  279         void    *t_fb_ptr;              /* Pointer to t_fb specific data */
  280 #if defined(_KERNEL) && defined(TCP_RFC7413)
  281         unsigned int *t_tfo_pending;    /* TCP Fast Open pending counter */
  282         void    *t_pspare2[1];          /* 1 TCP_SIGNATURE */
  283 #else
  284         void    *t_pspare2[2];          /* 1 TCP_SIGNATURE, 1 TBD */
  285 #endif
  286 #if defined(_KERNEL) && defined(TCPPCAP)
  287         struct mbufq t_inpkts;          /* List of saved input packets. */
  288         struct mbufq t_outpkts;         /* List of saved output packets. */
  289 #ifdef _LP64
  290         uint64_t _pad[0];               /* all used! */
  291 #else
  292         uint64_t _pad[2];               /* 2 are available */
  293 #endif /* _LP64 */
  294 #else
  295         uint64_t _pad[6];
  296 #endif /* defined(_KERNEL) && defined(TCPPCAP) */
  297 };
  298 
  299 /*
  300  * Flags and utility macros for the t_flags field.
  301  */
  302 #define TF_ACKNOW       0x000001        /* ack peer immediately */
  303 #define TF_DELACK       0x000002        /* ack, but try to delay it */
  304 #define TF_NODELAY      0x000004        /* don't delay packets to coalesce */
  305 #define TF_NOOPT        0x000008        /* don't use tcp options */
  306 #define TF_SENTFIN      0x000010        /* have sent FIN */
  307 #define TF_REQ_SCALE    0x000020        /* have/will request window scaling */
  308 #define TF_RCVD_SCALE   0x000040        /* other side has requested scaling */
  309 #define TF_REQ_TSTMP    0x000080        /* have/will request timestamps */
  310 #define TF_RCVD_TSTMP   0x000100        /* a timestamp was received in SYN */
  311 #define TF_SACK_PERMIT  0x000200        /* other side said I could SACK */
  312 #define TF_NEEDSYN      0x000400        /* send SYN (implicit state) */
  313 #define TF_NEEDFIN      0x000800        /* send FIN (implicit state) */
  314 #define TF_NOPUSH       0x001000        /* don't push */
  315 #define TF_PREVVALID    0x002000        /* saved values for bad rxmit valid */
  316 #define TF_MORETOCOME   0x010000        /* More data to be appended to sock */
  317 #define TF_LQ_OVERFLOW  0x020000        /* listen queue overflow */
  318 #define TF_LASTIDLE     0x040000        /* connection was previously idle */
  319 #define TF_RXWIN0SENT   0x080000        /* sent a receiver win 0 in response */
  320 #define TF_FASTRECOVERY 0x100000        /* in NewReno Fast Recovery */
  321 #define TF_WASFRECOVERY 0x200000        /* was in NewReno Fast Recovery */
  322 #define TF_SIGNATURE    0x400000        /* require MD5 digests (RFC2385) */
  323 #define TF_FORCEDATA    0x800000        /* force out a byte */
  324 #define TF_TSO          0x1000000       /* TSO enabled on this connection */
  325 #define TF_TOE          0x2000000       /* this connection is offloaded */
  326 #define TF_ECN_PERMIT   0x4000000       /* connection ECN-ready */
  327 #define TF_ECN_SND_CWR  0x8000000       /* ECN CWR in queue */
  328 #define TF_ECN_SND_ECE  0x10000000      /* ECN ECE in queue */
  329 #define TF_CONGRECOVERY 0x20000000      /* congestion recovery mode */
  330 #define TF_WASCRECOVERY 0x40000000      /* was in congestion recovery */
  331 #define TF_FASTOPEN     0x80000000      /* TCP Fast Open indication */
  332 
  333 #define IN_FASTRECOVERY(t_flags)        (t_flags & TF_FASTRECOVERY)
  334 #define ENTER_FASTRECOVERY(t_flags)     t_flags |= TF_FASTRECOVERY
  335 #define EXIT_FASTRECOVERY(t_flags)      t_flags &= ~TF_FASTRECOVERY
  336 
  337 #define IN_CONGRECOVERY(t_flags)        (t_flags & TF_CONGRECOVERY)
  338 #define ENTER_CONGRECOVERY(t_flags)     t_flags |= TF_CONGRECOVERY
  339 #define EXIT_CONGRECOVERY(t_flags)      t_flags &= ~TF_CONGRECOVERY
  340 
  341 #define IN_RECOVERY(t_flags) (t_flags & (TF_CONGRECOVERY | TF_FASTRECOVERY))
  342 #define ENTER_RECOVERY(t_flags) t_flags |= (TF_CONGRECOVERY | TF_FASTRECOVERY)
  343 #define EXIT_RECOVERY(t_flags) t_flags &= ~(TF_CONGRECOVERY | TF_FASTRECOVERY)
  344 
  345 #define BYTES_THIS_ACK(tp, th)  (th->th_ack - tp->snd_una)
  346 
  347 /*
  348  * Flags for the t_oobflags field.
  349  */
  350 #define TCPOOB_HAVEDATA 0x01
  351 #define TCPOOB_HADDATA  0x02
  352 
  353 /*
  354  * Flags for PLPMTU handling, t_flags2
  355  */
  356 #define TF2_PLPMTU_BLACKHOLE    0x00000001 /* Possible PLPMTUD Black Hole. */
  357 #define TF2_PLPMTU_PMTUD        0x00000002 /* Allowed to attempt PLPMTUD. */
  358 #define TF2_PLPMTU_MAXSEGSNT    0x00000004 /* Last seg sent was full seg. */
  359 
  360 /*
  361  * Structure to hold TCP options that are only used during segment
  362  * processing (in tcp_input), but not held in the tcpcb.
  363  * It's basically used to reduce the number of parameters
  364  * to tcp_dooptions and tcp_addoptions.
  365  * The binary order of the to_flags is relevant for packing of the
  366  * options in tcp_addoptions.
  367  */
  368 struct tcpopt {
  369         u_int32_t       to_flags;       /* which options are present */
  370 #define TOF_MSS         0x0001          /* maximum segment size */
  371 #define TOF_SCALE       0x0002          /* window scaling */
  372 #define TOF_SACKPERM    0x0004          /* SACK permitted */
  373 #define TOF_TS          0x0010          /* timestamp */
  374 #define TOF_SIGNATURE   0x0040          /* TCP-MD5 signature option (RFC2385) */
  375 #define TOF_SACK        0x0080          /* Peer sent SACK option */
  376 #define TOF_FASTOPEN    0x0100          /* TCP Fast Open (TFO) cookie */
  377 #define TOF_MAXOPT      0x0200
  378         u_int32_t       to_tsval;       /* new timestamp */
  379         u_int32_t       to_tsecr;       /* reflected timestamp */
  380         u_char          *to_sacks;      /* pointer to the first SACK blocks */
  381         u_char          *to_signature;  /* pointer to the TCP-MD5 signature */
  382         u_char          *to_tfo_cookie; /* pointer to the TFO cookie */
  383         u_int16_t       to_mss;         /* maximum segment size */
  384         u_int8_t        to_wscale;      /* window scaling */
  385         u_int8_t        to_nsacks;      /* number of SACK blocks */
  386         u_int8_t        to_tfo_len;     /* TFO cookie length */
  387         u_int32_t       to_spare;       /* UTO */
  388 };
  389 
  390 /*
  391  * Flags for tcp_dooptions.
  392  */
  393 #define TO_SYN          0x01            /* parse SYN-only options */
  394 
  395 struct hc_metrics_lite {        /* must stay in sync with hc_metrics */
  396         u_long  rmx_mtu;        /* MTU for this path */
  397         u_long  rmx_ssthresh;   /* outbound gateway buffer limit */
  398         u_long  rmx_rtt;        /* estimated round trip time */
  399         u_long  rmx_rttvar;     /* estimated rtt variance */
  400         u_long  rmx_cwnd;       /* congestion window */
  401         u_long  rmx_sendpipe;   /* outbound delay-bandwidth product */
  402         u_long  rmx_recvpipe;   /* inbound delay-bandwidth product */
  403 };
  404 
  405 /*
  406  * Used by tcp_maxmtu() to communicate interface specific features
  407  * and limits at the time of connection setup.
  408  */
  409 struct tcp_ifcap {
  410         int     ifcap;
  411         u_int   tsomax;
  412         u_int   tsomaxsegcount;
  413         u_int   tsomaxsegsize;
  414 };
  415 
  416 #ifndef _NETINET_IN_PCB_H_
  417 struct in_conninfo;
  418 #endif /* _NETINET_IN_PCB_H_ */
  419 
  420 struct tcptw {
  421         struct inpcb    *tw_inpcb;      /* XXX back pointer to internet pcb */
  422         tcp_seq         snd_nxt;
  423         tcp_seq         rcv_nxt;
  424         tcp_seq         iss;
  425         tcp_seq         irs;
  426         u_short         last_win;       /* cached window value */
  427         u_short         tw_so_options;  /* copy of so_options */
  428         struct ucred    *tw_cred;       /* user credentials */
  429         u_int32_t       t_recent;
  430         u_int32_t       ts_offset;      /* our timestamp offset */
  431         u_int           t_starttime;
  432         int             tw_time;
  433         TAILQ_ENTRY(tcptw) tw_2msl;
  434         void            *tw_pspare;     /* TCP_SIGNATURE */
  435         u_int           *tw_spare;      /* TCP_SIGNATURE */
  436 };
  437 
  438 #define intotcpcb(ip)   ((struct tcpcb *)(ip)->inp_ppcb)
  439 #define intotw(ip)      ((struct tcptw *)(ip)->inp_ppcb)
  440 #define sototcpcb(so)   (intotcpcb(sotoinpcb(so)))
  441 
  442 /*
  443  * The smoothed round-trip time and estimated variance
  444  * are stored as fixed point numbers scaled by the values below.
  445  * For convenience, these scales are also used in smoothing the average
  446  * (smoothed = (1/scale)sample + ((scale-1)/scale)smoothed).
  447  * With these scales, srtt has 3 bits to the right of the binary point,
  448  * and thus an "ALPHA" of 0.875.  rttvar has 2 bits to the right of the
  449  * binary point, and is smoothed with an ALPHA of 0.75.
  450  */
  451 #define TCP_RTT_SCALE           32      /* multiplier for srtt; 3 bits frac. */
  452 #define TCP_RTT_SHIFT           5       /* shift for srtt; 3 bits frac. */
  453 #define TCP_RTTVAR_SCALE        16      /* multiplier for rttvar; 2 bits */
  454 #define TCP_RTTVAR_SHIFT        4       /* shift for rttvar; 2 bits */
  455 #define TCP_DELTA_SHIFT         2       /* see tcp_input.c */
  456 
  457 /*
  458  * The initial retransmission should happen at rtt + 4 * rttvar.
  459  * Because of the way we do the smoothing, srtt and rttvar
  460  * will each average +1/2 tick of bias.  When we compute
  461  * the retransmit timer, we want 1/2 tick of rounding and
  462  * 1 extra tick because of +-1/2 tick uncertainty in the
  463  * firing of the timer.  The bias will give us exactly the
  464  * 1.5 tick we need.  But, because the bias is
  465  * statistical, we have to test that we don't drop below
  466  * the minimum feasible timer (which is 2 ticks).
  467  * This version of the macro adapted from a paper by Lawrence
  468  * Brakmo and Larry Peterson which outlines a problem caused
  469  * by insufficient precision in the original implementation,
  470  * which results in inappropriately large RTO values for very
  471  * fast networks.
  472  */
  473 #define TCP_REXMTVAL(tp) \
  474         max((tp)->t_rttmin, (((tp)->t_srtt >> (TCP_RTT_SHIFT - TCP_DELTA_SHIFT))  \
  475           + (tp)->t_rttvar) >> TCP_DELTA_SHIFT)
  476 
  477 /*
  478  * TCP statistics.
  479  * Many of these should be kept per connection,
  480  * but that's inconvenient at the moment.
  481  */
  482 struct  tcpstat {
  483         uint64_t tcps_connattempt;      /* connections initiated */
  484         uint64_t tcps_accepts;          /* connections accepted */
  485         uint64_t tcps_connects;         /* connections established */
  486         uint64_t tcps_drops;            /* connections dropped */
  487         uint64_t tcps_conndrops;        /* embryonic connections dropped */
  488         uint64_t tcps_minmssdrops;      /* average minmss too low drops */
  489         uint64_t tcps_closed;           /* conn. closed (includes drops) */
  490         uint64_t tcps_segstimed;        /* segs where we tried to get rtt */
  491         uint64_t tcps_rttupdated;       /* times we succeeded */
  492         uint64_t tcps_delack;           /* delayed acks sent */
  493         uint64_t tcps_timeoutdrop;      /* conn. dropped in rxmt timeout */
  494         uint64_t tcps_rexmttimeo;       /* retransmit timeouts */
  495         uint64_t tcps_persisttimeo;     /* persist timeouts */
  496         uint64_t tcps_keeptimeo;        /* keepalive timeouts */
  497         uint64_t tcps_keepprobe;        /* keepalive probes sent */
  498         uint64_t tcps_keepdrops;        /* connections dropped in keepalive */
  499 
  500         uint64_t tcps_sndtotal;         /* total packets sent */
  501         uint64_t tcps_sndpack;          /* data packets sent */
  502         uint64_t tcps_sndbyte;          /* data bytes sent */
  503         uint64_t tcps_sndrexmitpack;    /* data packets retransmitted */
  504         uint64_t tcps_sndrexmitbyte;    /* data bytes retransmitted */
  505         uint64_t tcps_sndrexmitbad;     /* unnecessary packet retransmissions */
  506         uint64_t tcps_sndacks;          /* ack-only packets sent */
  507         uint64_t tcps_sndprobe;         /* window probes sent */
  508         uint64_t tcps_sndurg;           /* packets sent with URG only */
  509         uint64_t tcps_sndwinup;         /* window update-only packets sent */
  510         uint64_t tcps_sndctrl;          /* control (SYN|FIN|RST) packets sent */
  511 
  512         uint64_t tcps_rcvtotal;         /* total packets received */
  513         uint64_t tcps_rcvpack;          /* packets received in sequence */
  514         uint64_t tcps_rcvbyte;          /* bytes received in sequence */
  515         uint64_t tcps_rcvbadsum;        /* packets received with ccksum errs */
  516         uint64_t tcps_rcvbadoff;        /* packets received with bad offset */
  517         uint64_t tcps_rcvreassfull;     /* packets dropped for no reass space */
  518         uint64_t tcps_rcvshort;         /* packets received too short */
  519         uint64_t tcps_rcvduppack;       /* duplicate-only packets received */
  520         uint64_t tcps_rcvdupbyte;       /* duplicate-only bytes received */
  521         uint64_t tcps_rcvpartduppack;   /* packets with some duplicate data */
  522         uint64_t tcps_rcvpartdupbyte;   /* dup. bytes in part-dup. packets */
  523         uint64_t tcps_rcvoopack;        /* out-of-order packets received */
  524         uint64_t tcps_rcvoobyte;        /* out-of-order bytes received */
  525         uint64_t tcps_rcvpackafterwin;  /* packets with data after window */
  526         uint64_t tcps_rcvbyteafterwin;  /* bytes rcvd after window */
  527         uint64_t tcps_rcvafterclose;    /* packets rcvd after "close" */
  528         uint64_t tcps_rcvwinprobe;      /* rcvd window probe packets */
  529         uint64_t tcps_rcvdupack;        /* rcvd duplicate acks */
  530         uint64_t tcps_rcvacktoomuch;    /* rcvd acks for unsent data */
  531         uint64_t tcps_rcvackpack;       /* rcvd ack packets */
  532         uint64_t tcps_rcvackbyte;       /* bytes acked by rcvd acks */
  533         uint64_t tcps_rcvwinupd;        /* rcvd window update packets */
  534         uint64_t tcps_pawsdrop;         /* segments dropped due to PAWS */
  535         uint64_t tcps_predack;          /* times hdr predict ok for acks */
  536         uint64_t tcps_preddat;          /* times hdr predict ok for data pkts */
  537         uint64_t tcps_pcbcachemiss;
  538         uint64_t tcps_cachedrtt;        /* times cached RTT in route updated */
  539         uint64_t tcps_cachedrttvar;     /* times cached rttvar updated */
  540         uint64_t tcps_cachedssthresh;   /* times cached ssthresh updated */
  541         uint64_t tcps_usedrtt;          /* times RTT initialized from route */
  542         uint64_t tcps_usedrttvar;       /* times RTTVAR initialized from rt */
  543         uint64_t tcps_usedssthresh;     /* times ssthresh initialized from rt*/
  544         uint64_t tcps_persistdrop;      /* timeout in persist state */
  545         uint64_t tcps_badsyn;           /* bogus SYN, e.g. premature ACK */
  546         uint64_t tcps_mturesent;        /* resends due to MTU discovery */
  547         uint64_t tcps_listendrop;       /* listen queue overflows */
  548         uint64_t tcps_badrst;           /* ignored RSTs in the window */
  549 
  550         uint64_t tcps_sc_added;         /* entry added to syncache */
  551         uint64_t tcps_sc_retransmitted; /* syncache entry was retransmitted */
  552         uint64_t tcps_sc_dupsyn;        /* duplicate SYN packet */
  553         uint64_t tcps_sc_dropped;       /* could not reply to packet */
  554         uint64_t tcps_sc_completed;     /* successful extraction of entry */
  555         uint64_t tcps_sc_bucketoverflow;/* syncache per-bucket limit hit */
  556         uint64_t tcps_sc_cacheoverflow; /* syncache cache limit hit */
  557         uint64_t tcps_sc_reset;         /* RST removed entry from syncache */
  558         uint64_t tcps_sc_stale;         /* timed out or listen socket gone */
  559         uint64_t tcps_sc_aborted;       /* syncache entry aborted */
  560         uint64_t tcps_sc_badack;        /* removed due to bad ACK */
  561         uint64_t tcps_sc_unreach;       /* ICMP unreachable received */
  562         uint64_t tcps_sc_zonefail;      /* zalloc() failed */
  563         uint64_t tcps_sc_sendcookie;    /* SYN cookie sent */
  564         uint64_t tcps_sc_recvcookie;    /* SYN cookie received */
  565 
  566         uint64_t tcps_hc_added;         /* entry added to hostcache */
  567         uint64_t tcps_hc_bucketoverflow;/* hostcache per bucket limit hit */
  568 
  569         uint64_t tcps_finwait2_drops;    /* Drop FIN_WAIT_2 connection after time limit */
  570 
  571         /* SACK related stats */
  572         uint64_t tcps_sack_recovery_episode; /* SACK recovery episodes */
  573         uint64_t tcps_sack_rexmits;         /* SACK rexmit segments   */
  574         uint64_t tcps_sack_rexmit_bytes;    /* SACK rexmit bytes      */
  575         uint64_t tcps_sack_rcv_blocks;      /* SACK blocks (options) received */
  576         uint64_t tcps_sack_send_blocks;     /* SACK blocks (options) sent     */
  577         uint64_t tcps_sack_sboverflow;      /* times scoreboard overflowed */
  578         
  579         /* ECN related stats */
  580         uint64_t tcps_ecn_ce;           /* ECN Congestion Experienced */
  581         uint64_t tcps_ecn_ect0;         /* ECN Capable Transport */
  582         uint64_t tcps_ecn_ect1;         /* ECN Capable Transport */
  583         uint64_t tcps_ecn_shs;          /* ECN successful handshakes */
  584         uint64_t tcps_ecn_rcwnd;        /* # times ECN reduced the cwnd */
  585 
  586         /* TCP_SIGNATURE related stats */
  587         uint64_t tcps_sig_rcvgoodsig;   /* Total matching signature received */
  588         uint64_t tcps_sig_rcvbadsig;    /* Total bad signature received */
  589         uint64_t tcps_sig_err_buildsig; /* Failed to make signature */
  590         uint64_t tcps_sig_err_sigopt;   /* No signature expected by socket */
  591         uint64_t tcps_sig_err_nosigopt; /* No signature provided by segment */
  592 
  593         uint64_t _pad[12];              /* 6 UTO, 6 TBD */
  594 };
  595 
  596 #define tcps_rcvmemdrop tcps_rcvreassfull       /* compat */
  597 
  598 #ifdef _KERNEL
  599 #define TI_UNLOCKED     1
  600 #define TI_RLOCKED      2
  601 #include <sys/counter.h>
  602 
  603 VNET_PCPUSTAT_DECLARE(struct tcpstat, tcpstat); /* tcp statistics */
  604 /*
  605  * In-kernel consumers can use these accessor macros directly to update
  606  * stats.
  607  */
  608 #define TCPSTAT_ADD(name, val)  \
  609     VNET_PCPUSTAT_ADD(struct tcpstat, tcpstat, name, (val))
  610 #define TCPSTAT_INC(name)       TCPSTAT_ADD(name, 1)
  611 
  612 /*
  613  * Kernel module consumers must use this accessor macro.
  614  */
  615 void    kmod_tcpstat_inc(int statnum);
  616 #define KMOD_TCPSTAT_INC(name)                                          \
  617     kmod_tcpstat_inc(offsetof(struct tcpstat, name) / sizeof(uint64_t))
  618 
  619 /*
  620  * Running TCP connection count by state.
  621  */
  622 VNET_DECLARE(counter_u64_t, tcps_states[TCP_NSTATES]);
  623 #define V_tcps_states   VNET(tcps_states)
  624 #define TCPSTATES_INC(state)    counter_u64_add(V_tcps_states[state], 1)
  625 #define TCPSTATES_DEC(state)    counter_u64_add(V_tcps_states[state], -1)
  626 
  627 /*
  628  * TCP specific helper hook point identifiers.
  629  */
  630 #define HHOOK_TCP_EST_IN                0
  631 #define HHOOK_TCP_EST_OUT               1
  632 #define HHOOK_TCP_LAST                  HHOOK_TCP_EST_OUT
  633 
  634 struct tcp_hhook_data {
  635         struct tcpcb    *tp;
  636         struct tcphdr   *th;
  637         struct tcpopt   *to;
  638         long            len;
  639         int             tso;
  640         tcp_seq         curack;
  641 };
  642 #endif
  643 
  644 /*
  645  * TCB structure exported to user-land via sysctl(3).
  646  * Evil hack: declare only if in_pcb.h and sys/socketvar.h have been
  647  * included.  Not all of our clients do.
  648  */
  649 #if defined(_NETINET_IN_PCB_H_) && defined(_SYS_SOCKETVAR_H_)
  650 struct xtcp_timer {
  651         int tt_rexmt;   /* retransmit timer */
  652         int tt_persist; /* retransmit persistence */
  653         int tt_keep;    /* keepalive */
  654         int tt_2msl;    /* 2*msl TIME_WAIT timer */
  655         int tt_delack;  /* delayed ACK timer */
  656         int t_rcvtime;  /* Time since last packet received */
  657 };
  658 struct  xtcpcb {
  659         size_t  xt_len;
  660         struct  inpcb   xt_inp;
  661         struct  tcpcb   xt_tp;
  662         struct  xsocket xt_socket;
  663         struct  xtcp_timer xt_timer;
  664         u_quad_t        xt_alignment_hack;
  665 };
  666 #endif
  667 
  668 /*
  669  * Identifiers for TCP sysctl nodes
  670  */
  671 #define TCPCTL_DO_RFC1323       1       /* use RFC-1323 extensions */
  672 #define TCPCTL_MSSDFLT          3       /* MSS default */
  673 #define TCPCTL_STATS            4       /* statistics */
  674 #define TCPCTL_RTTDFLT          5       /* default RTT estimate */
  675 #define TCPCTL_KEEPIDLE         6       /* keepalive idle timer */
  676 #define TCPCTL_KEEPINTVL        7       /* interval to send keepalives */
  677 #define TCPCTL_SENDSPACE        8       /* send buffer space */
  678 #define TCPCTL_RECVSPACE        9       /* receive buffer space */
  679 #define TCPCTL_KEEPINIT         10      /* timeout for establishing syn */
  680 #define TCPCTL_PCBLIST          11      /* list of all outstanding PCBs */
  681 #define TCPCTL_DELACKTIME       12      /* time before sending delayed ACK */
  682 #define TCPCTL_V6MSSDFLT        13      /* MSS default for IPv6 */
  683 #define TCPCTL_SACK             14      /* Selective Acknowledgement,rfc 2018 */
  684 #define TCPCTL_DROP             15      /* drop tcp connection */
  685 #define TCPCTL_STATES           16      /* connection counts by TCP state */
  686 
  687 #ifdef _KERNEL
  688 #ifdef SYSCTL_DECL
  689 SYSCTL_DECL(_net_inet_tcp);
  690 SYSCTL_DECL(_net_inet_tcp_sack);
  691 MALLOC_DECLARE(M_TCPLOG);
  692 #endif
  693 
  694 VNET_DECLARE(struct inpcbhead, tcb);            /* queue of active tcpcb's */
  695 VNET_DECLARE(struct inpcbinfo, tcbinfo);
  696 extern  int tcp_log_in_vain;
  697 VNET_DECLARE(int, tcp_mssdflt); /* XXX */
  698 VNET_DECLARE(int, tcp_minmss);
  699 VNET_DECLARE(int, tcp_delack_enabled);
  700 VNET_DECLARE(int, tcp_do_rfc3390);
  701 VNET_DECLARE(int, tcp_initcwnd_segments);
  702 VNET_DECLARE(int, tcp_sendspace);
  703 VNET_DECLARE(int, tcp_recvspace);
  704 VNET_DECLARE(int, path_mtu_discovery);
  705 VNET_DECLARE(int, tcp_do_rfc3465);
  706 VNET_DECLARE(int, tcp_abc_l_var);
  707 #define V_tcb                   VNET(tcb)
  708 #define V_tcbinfo               VNET(tcbinfo)
  709 #define V_tcp_mssdflt           VNET(tcp_mssdflt)
  710 #define V_tcp_minmss            VNET(tcp_minmss)
  711 #define V_tcp_delack_enabled    VNET(tcp_delack_enabled)
  712 #define V_tcp_do_rfc3390        VNET(tcp_do_rfc3390)
  713 #define V_tcp_initcwnd_segments VNET(tcp_initcwnd_segments)
  714 #define V_tcp_sendspace         VNET(tcp_sendspace)
  715 #define V_tcp_recvspace         VNET(tcp_recvspace)
  716 #define V_path_mtu_discovery    VNET(path_mtu_discovery)
  717 #define V_tcp_do_rfc3465        VNET(tcp_do_rfc3465)
  718 #define V_tcp_abc_l_var         VNET(tcp_abc_l_var)
  719 
  720 VNET_DECLARE(int, tcp_do_sack);                 /* SACK enabled/disabled */
  721 VNET_DECLARE(int, tcp_sc_rst_sock_fail);        /* RST on sock alloc failure */
  722 #define V_tcp_do_sack           VNET(tcp_do_sack)
  723 #define V_tcp_sc_rst_sock_fail  VNET(tcp_sc_rst_sock_fail)
  724 
  725 VNET_DECLARE(int, tcp_do_ecn);                  /* TCP ECN enabled/disabled */
  726 VNET_DECLARE(int, tcp_ecn_maxretries);
  727 #define V_tcp_do_ecn            VNET(tcp_do_ecn)
  728 #define V_tcp_ecn_maxretries    VNET(tcp_ecn_maxretries)
  729 
  730 VNET_DECLARE(struct hhook_head *, tcp_hhh[HHOOK_TCP_LAST + 1]);
  731 #define V_tcp_hhh               VNET(tcp_hhh)
  732 
  733 VNET_DECLARE(int, tcp_do_rfc6675_pipe);
  734 #define V_tcp_do_rfc6675_pipe   VNET(tcp_do_rfc6675_pipe)
  735 
  736 int      tcp_addoptions(struct tcpopt *, u_char *);
  737 int      tcp_ccalgounload(struct cc_algo *unload_algo);
  738 struct tcpcb *
  739          tcp_close(struct tcpcb *);
  740 void     tcp_discardcb(struct tcpcb *);
  741 void     tcp_twstart(struct tcpcb *);
  742 void     tcp_twclose(struct tcptw *, int);
  743 void     tcp_ctlinput(int, struct sockaddr *, void *);
  744 int      tcp_ctloutput(struct socket *, struct sockopt *);
  745 struct tcpcb *
  746          tcp_drop(struct tcpcb *, int);
  747 void     tcp_drain(void);
  748 void     tcp_init(void);
  749 void     tcp_fini(void *);
  750 char    *tcp_log_addrs(struct in_conninfo *, struct tcphdr *, void *,
  751             const void *);
  752 char    *tcp_log_vain(struct in_conninfo *, struct tcphdr *, void *,
  753             const void *);
  754 int      tcp_reass(struct tcpcb *, struct tcphdr *, tcp_seq *, int *, struct mbuf *);
  755 void     tcp_reass_global_init(void);
  756 void     tcp_reass_flush(struct tcpcb *);
  757 void     tcp_dooptions(struct tcpopt *, u_char *, int, int);
  758 void    tcp_dropwithreset(struct mbuf *, struct tcphdr *,
  759                      struct tcpcb *, int, int);
  760 void    tcp_pulloutofband(struct socket *,
  761                      struct tcphdr *, struct mbuf *, int);
  762 void    tcp_xmit_timer(struct tcpcb *, int);
  763 void    tcp_newreno_partial_ack(struct tcpcb *, struct tcphdr *);
  764 void    cc_ack_received(struct tcpcb *tp, struct tcphdr *th,
  765                             uint16_t type);
  766 void    cc_conn_init(struct tcpcb *tp);
  767 void    cc_post_recovery(struct tcpcb *tp, struct tcphdr *th);
  768 void    cc_cong_signal(struct tcpcb *tp, struct tcphdr *th, uint32_t type);
  769 void    hhook_run_tcp_est_in(struct tcpcb *tp,
  770                             struct tcphdr *th, struct tcpopt *to);
  771 
  772 int      tcp_input(struct mbuf **, int *, int);
  773 int      tcp_autorcvbuf(struct mbuf *, struct tcphdr *, struct socket *,
  774             struct tcpcb *, int);
  775 void     tcp_do_segment(struct mbuf *, struct tcphdr *,
  776                         struct socket *, struct tcpcb *, int, int, uint8_t,
  777                         int);
  778 
  779 int register_tcp_functions(struct tcp_function_block *blk, int wait);
  780 int deregister_tcp_functions(struct tcp_function_block *blk);
  781 struct tcp_function_block *find_and_ref_tcp_functions(struct tcp_function_set *fs);
  782 struct tcp_function_block *find_and_ref_tcp_fb(struct tcp_function_block *blk);
  783 int tcp_default_ctloutput(struct socket *so, struct sockopt *sopt, struct inpcb *inp, struct tcpcb *tp);
  784 
  785 u_long   tcp_maxmtu(struct in_conninfo *, struct tcp_ifcap *);
  786 u_long   tcp_maxmtu6(struct in_conninfo *, struct tcp_ifcap *);
  787 u_int    tcp_maxseg(const struct tcpcb *);
  788 void     tcp_mss_update(struct tcpcb *, int, int, struct hc_metrics_lite *,
  789             struct tcp_ifcap *);
  790 void     tcp_mss(struct tcpcb *, int);
  791 int      tcp_mssopt(struct in_conninfo *);
  792 struct inpcb *
  793          tcp_drop_syn_sent(struct inpcb *, int);
  794 struct tcpcb *
  795          tcp_newtcpcb(struct inpcb *);
  796 int      tcp_output(struct tcpcb *);
  797 void     tcp_state_change(struct tcpcb *, int);
  798 void     tcp_respond(struct tcpcb *, void *,
  799             struct tcphdr *, struct mbuf *, tcp_seq, tcp_seq, int);
  800 void     tcp_tw_init(void);
  801 #ifdef VIMAGE
  802 void     tcp_tw_destroy(void);
  803 #endif
  804 void     tcp_tw_zone_change(void);
  805 int      tcp_twcheck(struct inpcb *, struct tcpopt *, struct tcphdr *,
  806             struct mbuf *, int);
  807 void     tcp_setpersist(struct tcpcb *);
  808 void     tcp_slowtimo(void);
  809 struct tcptemp *
  810          tcpip_maketemplate(struct inpcb *);
  811 void     tcpip_fillheaders(struct inpcb *, void *, void *);
  812 void     tcp_timer_activate(struct tcpcb *, uint32_t, u_int);
  813 int      tcp_timer_active(struct tcpcb *, uint32_t);
  814 void     tcp_timer_stop(struct tcpcb *, uint32_t);
  815 void     tcp_trace(short, short, struct tcpcb *, void *, struct tcphdr *, int);
  816 /*
  817  * All tcp_hc_* functions are IPv4 and IPv6 (via in_conninfo)
  818  */
  819 void     tcp_hc_init(void);
  820 #ifdef VIMAGE
  821 void     tcp_hc_destroy(void);
  822 #endif
  823 void     tcp_hc_get(struct in_conninfo *, struct hc_metrics_lite *);
  824 u_long   tcp_hc_getmtu(struct in_conninfo *);
  825 void     tcp_hc_updatemtu(struct in_conninfo *, u_long);
  826 void     tcp_hc_update(struct in_conninfo *, struct hc_metrics_lite *);
  827 
  828 extern  struct pr_usrreqs tcp_usrreqs;
  829 
  830 uint32_t tcp_new_ts_offset(struct in_conninfo *);
  831 tcp_seq  tcp_new_isn(struct in_conninfo *);
  832 
  833 int      tcp_sack_doack(struct tcpcb *, struct tcpopt *, tcp_seq);
  834 void     tcp_update_dsack_list(struct tcpcb *, tcp_seq, tcp_seq);
  835 void     tcp_update_sack_list(struct tcpcb *tp, tcp_seq rcv_laststart, tcp_seq rcv_lastend);
  836 void     tcp_clean_dsack_blocks(struct tcpcb *tp);
  837 void     tcp_clean_sackreport(struct tcpcb *tp);
  838 void     tcp_sack_adjust(struct tcpcb *tp);
  839 struct sackhole *tcp_sack_output(struct tcpcb *tp, int *sack_bytes_rexmt);
  840 void     tcp_sack_partialack(struct tcpcb *, struct tcphdr *);
  841 void     tcp_free_sackholes(struct tcpcb *tp);
  842 int      tcp_newreno(struct tcpcb *, struct tcphdr *);
  843 int      tcp_compute_pipe(struct tcpcb *);
  844 
  845 static inline void
  846 tcp_fields_to_host(struct tcphdr *th)
  847 {
  848 
  849         th->th_seq = ntohl(th->th_seq);
  850         th->th_ack = ntohl(th->th_ack);
  851         th->th_win = ntohs(th->th_win);
  852         th->th_urp = ntohs(th->th_urp);
  853 }
  854 
  855 static inline void
  856 tcp_fields_to_net(struct tcphdr *th)
  857 {
  858 
  859         th->th_seq = htonl(th->th_seq);
  860         th->th_ack = htonl(th->th_ack);
  861         th->th_win = htons(th->th_win);
  862         th->th_urp = htons(th->th_urp);
  863 }
  864 #endif /* _KERNEL */
  865 
  866 #endif /* _NETINET_TCP_VAR_H_ */

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