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tcp_subr.c revision 1.1
      1  1.1  cgd /*
      2  1.1  cgd  * Copyright (c) 1982, 1986, 1988, 1990 Regents of the University of California.
      3  1.1  cgd  * All rights reserved.
      4  1.1  cgd  *
      5  1.1  cgd  * Redistribution and use in source and binary forms, with or without
      6  1.1  cgd  * modification, are permitted provided that the following conditions
      7  1.1  cgd  * are met:
      8  1.1  cgd  * 1. Redistributions of source code must retain the above copyright
      9  1.1  cgd  *    notice, this list of conditions and the following disclaimer.
     10  1.1  cgd  * 2. Redistributions in binary form must reproduce the above copyright
     11  1.1  cgd  *    notice, this list of conditions and the following disclaimer in the
     12  1.1  cgd  *    documentation and/or other materials provided with the distribution.
     13  1.1  cgd  * 3. All advertising materials mentioning features or use of this software
     14  1.1  cgd  *    must display the following acknowledgement:
     15  1.1  cgd  *	This product includes software developed by the University of
     16  1.1  cgd  *	California, Berkeley and its contributors.
     17  1.1  cgd  * 4. Neither the name of the University nor the names of its contributors
     18  1.1  cgd  *    may be used to endorse or promote products derived from this software
     19  1.1  cgd  *    without specific prior written permission.
     20  1.1  cgd  *
     21  1.1  cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     22  1.1  cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     23  1.1  cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     24  1.1  cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     25  1.1  cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     26  1.1  cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     27  1.1  cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     28  1.1  cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     29  1.1  cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     30  1.1  cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     31  1.1  cgd  * SUCH DAMAGE.
     32  1.1  cgd  *
     33  1.1  cgd  *	@(#)tcp_subr.c	7.20 (Berkeley) 12/1/90
     34  1.1  cgd  */
     35  1.1  cgd 
     36  1.1  cgd #include "param.h"
     37  1.1  cgd #include "systm.h"
     38  1.1  cgd #include "malloc.h"
     39  1.1  cgd #include "mbuf.h"
     40  1.1  cgd #include "socket.h"
     41  1.1  cgd #include "socketvar.h"
     42  1.1  cgd #include "protosw.h"
     43  1.1  cgd #include "errno.h"
     44  1.1  cgd 
     45  1.1  cgd #include "../net/route.h"
     46  1.1  cgd #include "../net/if.h"
     47  1.1  cgd 
     48  1.1  cgd #include "in.h"
     49  1.1  cgd #include "in_systm.h"
     50  1.1  cgd #include "ip.h"
     51  1.1  cgd #include "in_pcb.h"
     52  1.1  cgd #include "ip_var.h"
     53  1.1  cgd #include "ip_icmp.h"
     54  1.1  cgd #include "tcp.h"
     55  1.1  cgd #include "tcp_fsm.h"
     56  1.1  cgd #include "tcp_seq.h"
     57  1.1  cgd #include "tcp_timer.h"
     58  1.1  cgd #include "tcp_var.h"
     59  1.1  cgd #include "tcpip.h"
     60  1.1  cgd 
     61  1.1  cgd /* patchable/settable parameters for tcp */
     62  1.1  cgd int	tcp_ttl = TCP_TTL;
     63  1.1  cgd int 	tcp_mssdflt = TCP_MSS;
     64  1.1  cgd int 	tcp_rttdflt = TCPTV_SRTTDFLT / PR_SLOWHZ;
     65  1.1  cgd 
     66  1.1  cgd extern	struct inpcb *tcp_last_inpcb;
     67  1.1  cgd 
     68  1.1  cgd /*
     69  1.1  cgd  * Tcp initialization
     70  1.1  cgd  */
     71  1.1  cgd tcp_init()
     72  1.1  cgd {
     73  1.1  cgd 
     74  1.1  cgd 	tcp_iss = 1;		/* wrong */
     75  1.1  cgd 	tcb.inp_next = tcb.inp_prev = &tcb;
     76  1.1  cgd 	if (max_protohdr < sizeof(struct tcpiphdr))
     77  1.1  cgd 		max_protohdr = sizeof(struct tcpiphdr);
     78  1.1  cgd 	if (max_linkhdr + sizeof(struct tcpiphdr) > MHLEN)
     79  1.1  cgd 		panic("tcp_init");
     80  1.1  cgd }
     81  1.1  cgd 
     82  1.1  cgd /*
     83  1.1  cgd  * Create template to be used to send tcp packets on a connection.
     84  1.1  cgd  * Call after host entry created, allocates an mbuf and fills
     85  1.1  cgd  * in a skeletal tcp/ip header, minimizing the amount of work
     86  1.1  cgd  * necessary when the connection is used.
     87  1.1  cgd  */
     88  1.1  cgd struct tcpiphdr *
     89  1.1  cgd tcp_template(tp)
     90  1.1  cgd 	struct tcpcb *tp;
     91  1.1  cgd {
     92  1.1  cgd 	register struct inpcb *inp = tp->t_inpcb;
     93  1.1  cgd 	register struct mbuf *m;
     94  1.1  cgd 	register struct tcpiphdr *n;
     95  1.1  cgd 
     96  1.1  cgd 	if ((n = tp->t_template) == 0) {
     97  1.1  cgd 		m = m_get(M_DONTWAIT, MT_HEADER);
     98  1.1  cgd 		if (m == NULL)
     99  1.1  cgd 			return (0);
    100  1.1  cgd 		m->m_len = sizeof (struct tcpiphdr);
    101  1.1  cgd 		n = mtod(m, struct tcpiphdr *);
    102  1.1  cgd 	}
    103  1.1  cgd 	n->ti_next = n->ti_prev = 0;
    104  1.1  cgd 	n->ti_x1 = 0;
    105  1.1  cgd 	n->ti_pr = IPPROTO_TCP;
    106  1.1  cgd 	n->ti_len = htons(sizeof (struct tcpiphdr) - sizeof (struct ip));
    107  1.1  cgd 	n->ti_src = inp->inp_laddr;
    108  1.1  cgd 	n->ti_dst = inp->inp_faddr;
    109  1.1  cgd 	n->ti_sport = inp->inp_lport;
    110  1.1  cgd 	n->ti_dport = inp->inp_fport;
    111  1.1  cgd 	n->ti_seq = 0;
    112  1.1  cgd 	n->ti_ack = 0;
    113  1.1  cgd 	n->ti_x2 = 0;
    114  1.1  cgd 	n->ti_off = 5;
    115  1.1  cgd 	n->ti_flags = 0;
    116  1.1  cgd 	n->ti_win = 0;
    117  1.1  cgd 	n->ti_sum = 0;
    118  1.1  cgd 	n->ti_urp = 0;
    119  1.1  cgd 	return (n);
    120  1.1  cgd }
    121  1.1  cgd 
    122  1.1  cgd /*
    123  1.1  cgd  * Send a single message to the TCP at address specified by
    124  1.1  cgd  * the given TCP/IP header.  If m == 0, then we make a copy
    125  1.1  cgd  * of the tcpiphdr at ti and send directly to the addressed host.
    126  1.1  cgd  * This is used to force keep alive messages out using the TCP
    127  1.1  cgd  * template for a connection tp->t_template.  If flags are given
    128  1.1  cgd  * then we send a message back to the TCP which originated the
    129  1.1  cgd  * segment ti, and discard the mbuf containing it and any other
    130  1.1  cgd  * attached mbufs.
    131  1.1  cgd  *
    132  1.1  cgd  * In any case the ack and sequence number of the transmitted
    133  1.1  cgd  * segment are as specified by the parameters.
    134  1.1  cgd  */
    135  1.1  cgd tcp_respond(tp, ti, m, ack, seq, flags)
    136  1.1  cgd 	struct tcpcb *tp;
    137  1.1  cgd 	register struct tcpiphdr *ti;
    138  1.1  cgd 	register struct mbuf *m;
    139  1.1  cgd 	tcp_seq ack, seq;
    140  1.1  cgd 	int flags;
    141  1.1  cgd {
    142  1.1  cgd 	register int tlen;
    143  1.1  cgd 	int win = 0;
    144  1.1  cgd 	struct route *ro = 0;
    145  1.1  cgd 
    146  1.1  cgd 	if (tp) {
    147  1.1  cgd 		win = sbspace(&tp->t_inpcb->inp_socket->so_rcv);
    148  1.1  cgd 		ro = &tp->t_inpcb->inp_route;
    149  1.1  cgd 	}
    150  1.1  cgd 	if (m == 0) {
    151  1.1  cgd 		m = m_gethdr(M_DONTWAIT, MT_HEADER);
    152  1.1  cgd 		if (m == NULL)
    153  1.1  cgd 			return;
    154  1.1  cgd #ifdef TCP_COMPAT_42
    155  1.1  cgd 		tlen = 1;
    156  1.1  cgd #else
    157  1.1  cgd 		tlen = 0;
    158  1.1  cgd #endif
    159  1.1  cgd 		m->m_data += max_linkhdr;
    160  1.1  cgd 		*mtod(m, struct tcpiphdr *) = *ti;
    161  1.1  cgd 		ti = mtod(m, struct tcpiphdr *);
    162  1.1  cgd 		flags = TH_ACK;
    163  1.1  cgd 	} else {
    164  1.1  cgd 		m_freem(m->m_next);
    165  1.1  cgd 		m->m_next = 0;
    166  1.1  cgd 		m->m_data = (caddr_t)ti;
    167  1.1  cgd 		m->m_len = sizeof (struct tcpiphdr);
    168  1.1  cgd 		tlen = 0;
    169  1.1  cgd #define xchg(a,b,type) { type t; t=a; a=b; b=t; }
    170  1.1  cgd 		xchg(ti->ti_dst.s_addr, ti->ti_src.s_addr, u_long);
    171  1.1  cgd 		xchg(ti->ti_dport, ti->ti_sport, u_short);
    172  1.1  cgd #undef xchg
    173  1.1  cgd 	}
    174  1.1  cgd 	ti->ti_len = htons((u_short)(sizeof (struct tcphdr) + tlen));
    175  1.1  cgd 	tlen += sizeof (struct tcpiphdr);
    176  1.1  cgd 	m->m_len = tlen;
    177  1.1  cgd 	m->m_pkthdr.len = tlen;
    178  1.1  cgd 	m->m_pkthdr.rcvif = (struct ifnet *) 0;
    179  1.1  cgd 	ti->ti_next = ti->ti_prev = 0;
    180  1.1  cgd 	ti->ti_x1 = 0;
    181  1.1  cgd 	ti->ti_seq = htonl(seq);
    182  1.1  cgd 	ti->ti_ack = htonl(ack);
    183  1.1  cgd 	ti->ti_x2 = 0;
    184  1.1  cgd 	ti->ti_off = sizeof (struct tcphdr) >> 2;
    185  1.1  cgd 	ti->ti_flags = flags;
    186  1.1  cgd 	ti->ti_win = htons((u_short)win);
    187  1.1  cgd 	ti->ti_urp = 0;
    188  1.1  cgd 	ti->ti_sum = in_cksum(m, tlen);
    189  1.1  cgd 	((struct ip *)ti)->ip_len = tlen;
    190  1.1  cgd 	((struct ip *)ti)->ip_ttl = tcp_ttl;
    191  1.1  cgd 	(void) ip_output(m, (struct mbuf *)0, ro, 0);
    192  1.1  cgd }
    193  1.1  cgd 
    194  1.1  cgd /*
    195  1.1  cgd  * Create a new TCP control block, making an
    196  1.1  cgd  * empty reassembly queue and hooking it to the argument
    197  1.1  cgd  * protocol control block.
    198  1.1  cgd  */
    199  1.1  cgd struct tcpcb *
    200  1.1  cgd tcp_newtcpcb(inp)
    201  1.1  cgd 	struct inpcb *inp;
    202  1.1  cgd {
    203  1.1  cgd 	struct mbuf *m = m_getclr(M_DONTWAIT, MT_PCB);
    204  1.1  cgd 	register struct tcpcb *tp;
    205  1.1  cgd 
    206  1.1  cgd 	if (m == NULL)
    207  1.1  cgd 		return ((struct tcpcb *)0);
    208  1.1  cgd 	tp = mtod(m, struct tcpcb *);
    209  1.1  cgd 	tp->seg_next = tp->seg_prev = (struct tcpiphdr *)tp;
    210  1.1  cgd 	tp->t_maxseg = tcp_mssdflt;
    211  1.1  cgd 
    212  1.1  cgd 	tp->t_flags = 0;		/* sends options! */
    213  1.1  cgd 	tp->t_inpcb = inp;
    214  1.1  cgd 	/*
    215  1.1  cgd 	 * Init srtt to TCPTV_SRTTBASE (0), so we can tell that we have no
    216  1.1  cgd 	 * rtt estimate.  Set rttvar so that srtt + 2 * rttvar gives
    217  1.1  cgd 	 * reasonable initial retransmit time.
    218  1.1  cgd 	 */
    219  1.1  cgd 	tp->t_srtt = TCPTV_SRTTBASE;
    220  1.1  cgd 	tp->t_rttvar = tcp_rttdflt * PR_SLOWHZ << 2;
    221  1.1  cgd 	tp->t_rttmin = TCPTV_MIN;
    222  1.1  cgd 	TCPT_RANGESET(tp->t_rxtcur,
    223  1.1  cgd 	    ((TCPTV_SRTTBASE >> 2) + (TCPTV_SRTTDFLT << 2)) >> 1,
    224  1.1  cgd 	    TCPTV_MIN, TCPTV_REXMTMAX);
    225  1.1  cgd 	tp->snd_cwnd = TCP_MAXWIN;
    226  1.1  cgd 	tp->snd_ssthresh = TCP_MAXWIN;
    227  1.1  cgd 	inp->inp_ip.ip_ttl = tcp_ttl;
    228  1.1  cgd 	inp->inp_ppcb = (caddr_t)tp;
    229  1.1  cgd 	return (tp);
    230  1.1  cgd }
    231  1.1  cgd 
    232  1.1  cgd /*
    233  1.1  cgd  * Drop a TCP connection, reporting
    234  1.1  cgd  * the specified error.  If connection is synchronized,
    235  1.1  cgd  * then send a RST to peer.
    236  1.1  cgd  */
    237  1.1  cgd struct tcpcb *
    238  1.1  cgd tcp_drop(tp, errno)
    239  1.1  cgd 	register struct tcpcb *tp;
    240  1.1  cgd 	int errno;
    241  1.1  cgd {
    242  1.1  cgd 	struct socket *so = tp->t_inpcb->inp_socket;
    243  1.1  cgd 
    244  1.1  cgd 	if (TCPS_HAVERCVDSYN(tp->t_state)) {
    245  1.1  cgd 		tp->t_state = TCPS_CLOSED;
    246  1.1  cgd 		(void) tcp_output(tp);
    247  1.1  cgd 		tcpstat.tcps_drops++;
    248  1.1  cgd 	} else
    249  1.1  cgd 		tcpstat.tcps_conndrops++;
    250  1.1  cgd 	if (errno == ETIMEDOUT && tp->t_softerror)
    251  1.1  cgd 		errno = tp->t_softerror;
    252  1.1  cgd 	so->so_error = errno;
    253  1.1  cgd 	return (tcp_close(tp));
    254  1.1  cgd }
    255  1.1  cgd 
    256  1.1  cgd /*
    257  1.1  cgd  * Close a TCP control block:
    258  1.1  cgd  *	discard all space held by the tcp
    259  1.1  cgd  *	discard internet protocol block
    260  1.1  cgd  *	wake up any sleepers
    261  1.1  cgd  */
    262  1.1  cgd struct tcpcb *
    263  1.1  cgd tcp_close(tp)
    264  1.1  cgd 	register struct tcpcb *tp;
    265  1.1  cgd {
    266  1.1  cgd 	register struct tcpiphdr *t;
    267  1.1  cgd 	struct inpcb *inp = tp->t_inpcb;
    268  1.1  cgd 	struct socket *so = inp->inp_socket;
    269  1.1  cgd 	register struct mbuf *m;
    270  1.1  cgd #ifdef RTV_RTT
    271  1.1  cgd 	register struct rtentry *rt;
    272  1.1  cgd 
    273  1.1  cgd 	/*
    274  1.1  cgd 	 * If we sent enough data to get some meaningful characteristics,
    275  1.1  cgd 	 * save them in the routing entry.  'Enough' is arbitrarily
    276  1.1  cgd 	 * defined as the sendpipesize (default 4K) * 16.  This would
    277  1.1  cgd 	 * give us 16 rtt samples assuming we only get one sample per
    278  1.1  cgd 	 * window (the usual case on a long haul net).  16 samples is
    279  1.1  cgd 	 * enough for the srtt filter to converge to within 5% of the correct
    280  1.1  cgd 	 * value; fewer samples and we could save a very bogus rtt.
    281  1.1  cgd 	 *
    282  1.1  cgd 	 * Don't update the default route's characteristics and don't
    283  1.1  cgd 	 * update anything that the user "locked".
    284  1.1  cgd 	 */
    285  1.1  cgd 	if (SEQ_LT(tp->iss + so->so_snd.sb_hiwat * 16, tp->snd_max) &&
    286  1.1  cgd 	    (rt = inp->inp_route.ro_rt) &&
    287  1.1  cgd 	    ((struct sockaddr_in *)rt_key(rt))->sin_addr.s_addr != INADDR_ANY) {
    288  1.1  cgd 		register u_long i;
    289  1.1  cgd 
    290  1.1  cgd 		if ((rt->rt_rmx.rmx_locks & RTV_RTT) == 0) {
    291  1.1  cgd 			i = tp->t_srtt *
    292  1.1  cgd 			    (RTM_RTTUNIT / (PR_SLOWHZ * TCP_RTT_SCALE));
    293  1.1  cgd 			if (rt->rt_rmx.rmx_rtt && i)
    294  1.1  cgd 				/*
    295  1.1  cgd 				 * filter this update to half the old & half
    296  1.1  cgd 				 * the new values, converting scale.
    297  1.1  cgd 				 * See route.h and tcp_var.h for a
    298  1.1  cgd 				 * description of the scaling constants.
    299  1.1  cgd 				 */
    300  1.1  cgd 				rt->rt_rmx.rmx_rtt =
    301  1.1  cgd 				    (rt->rt_rmx.rmx_rtt + i) / 2;
    302  1.1  cgd 			else
    303  1.1  cgd 				rt->rt_rmx.rmx_rtt = i;
    304  1.1  cgd 		}
    305  1.1  cgd 		if ((rt->rt_rmx.rmx_locks & RTV_RTTVAR) == 0) {
    306  1.1  cgd 			i = tp->t_rttvar *
    307  1.1  cgd 			    (RTM_RTTUNIT / (PR_SLOWHZ * TCP_RTTVAR_SCALE));
    308  1.1  cgd 			if (rt->rt_rmx.rmx_rttvar && i)
    309  1.1  cgd 				rt->rt_rmx.rmx_rttvar =
    310  1.1  cgd 				    (rt->rt_rmx.rmx_rttvar + i) / 2;
    311  1.1  cgd 			else
    312  1.1  cgd 				rt->rt_rmx.rmx_rttvar = i;
    313  1.1  cgd 		}
    314  1.1  cgd 		/*
    315  1.1  cgd 		 * update the pipelimit (ssthresh) if it has been updated
    316  1.1  cgd 		 * already or if a pipesize was specified & the threshhold
    317  1.1  cgd 		 * got below half the pipesize.  I.e., wait for bad news
    318  1.1  cgd 		 * before we start updating, then update on both good
    319  1.1  cgd 		 * and bad news.
    320  1.1  cgd 		 */
    321  1.1  cgd 		if ((rt->rt_rmx.rmx_locks & RTV_SSTHRESH) == 0 &&
    322  1.1  cgd 		    (i = tp->snd_ssthresh) && rt->rt_rmx.rmx_ssthresh ||
    323  1.1  cgd 		    i < (rt->rt_rmx.rmx_sendpipe / 2)) {
    324  1.1  cgd 			/*
    325  1.1  cgd 			 * convert the limit from user data bytes to
    326  1.1  cgd 			 * packets then to packet data bytes.
    327  1.1  cgd 			 */
    328  1.1  cgd 			i = (i + tp->t_maxseg / 2) / tp->t_maxseg;
    329  1.1  cgd 			if (i < 2)
    330  1.1  cgd 				i = 2;
    331  1.1  cgd 			i *= (u_long)(tp->t_maxseg + sizeof (struct tcpiphdr));
    332  1.1  cgd 			if (rt->rt_rmx.rmx_ssthresh)
    333  1.1  cgd 				rt->rt_rmx.rmx_ssthresh =
    334  1.1  cgd 				    (rt->rt_rmx.rmx_ssthresh + i) / 2;
    335  1.1  cgd 			else
    336  1.1  cgd 				rt->rt_rmx.rmx_ssthresh = i;
    337  1.1  cgd 		}
    338  1.1  cgd 	}
    339  1.1  cgd #endif RTV_RTT
    340  1.1  cgd 	/* free the reassembly queue, if any */
    341  1.1  cgd 	t = tp->seg_next;
    342  1.1  cgd 	while (t != (struct tcpiphdr *)tp) {
    343  1.1  cgd 		t = (struct tcpiphdr *)t->ti_next;
    344  1.1  cgd 		m = REASS_MBUF((struct tcpiphdr *)t->ti_prev);
    345  1.1  cgd 		remque(t->ti_prev);
    346  1.1  cgd 		m_freem(m);
    347  1.1  cgd 	}
    348  1.1  cgd 	if (tp->t_template)
    349  1.1  cgd 		(void) m_free(dtom(tp->t_template));
    350  1.1  cgd 	(void) m_free(dtom(tp));
    351  1.1  cgd 	inp->inp_ppcb = 0;
    352  1.1  cgd 	soisdisconnected(so);
    353  1.1  cgd 	/* clobber input pcb cache if we're closing the cached connection */
    354  1.1  cgd 	if (inp == tcp_last_inpcb)
    355  1.1  cgd 		tcp_last_inpcb = &tcb;
    356  1.1  cgd 	in_pcbdetach(inp);
    357  1.1  cgd 	tcpstat.tcps_closed++;
    358  1.1  cgd 	return ((struct tcpcb *)0);
    359  1.1  cgd }
    360  1.1  cgd 
    361  1.1  cgd tcp_drain()
    362  1.1  cgd {
    363  1.1  cgd 
    364  1.1  cgd }
    365  1.1  cgd 
    366  1.1  cgd /*
    367  1.1  cgd  * Notify a tcp user of an asynchronous error;
    368  1.1  cgd  * store error as soft error, but wake up user
    369  1.1  cgd  * (for now, won't do anything until can select for soft error).
    370  1.1  cgd  */
    371  1.1  cgd tcp_notify(inp, error)
    372  1.1  cgd 	register struct inpcb *inp;
    373  1.1  cgd 	int error;
    374  1.1  cgd {
    375  1.1  cgd 
    376  1.1  cgd 	((struct tcpcb *)inp->inp_ppcb)->t_softerror = error;
    377  1.1  cgd 	wakeup((caddr_t) &inp->inp_socket->so_timeo);
    378  1.1  cgd 	sorwakeup(inp->inp_socket);
    379  1.1  cgd 	sowwakeup(inp->inp_socket);
    380  1.1  cgd }
    381  1.1  cgd 
    382  1.1  cgd tcp_ctlinput(cmd, sa, ip)
    383  1.1  cgd 	int cmd;
    384  1.1  cgd 	struct sockaddr *sa;
    385  1.1  cgd 	register struct ip *ip;
    386  1.1  cgd {
    387  1.1  cgd 	register struct tcphdr *th;
    388  1.1  cgd 	extern struct in_addr zeroin_addr;
    389  1.1  cgd 	extern u_char inetctlerrmap[];
    390  1.1  cgd 	int (*notify)() = tcp_notify, tcp_quench();
    391  1.1  cgd 
    392  1.1  cgd 	if (cmd == PRC_QUENCH)
    393  1.1  cgd 		notify = tcp_quench;
    394  1.1  cgd 	else if ((unsigned)cmd > PRC_NCMDS || inetctlerrmap[cmd] == 0)
    395  1.1  cgd 		return;
    396  1.1  cgd 	if (ip) {
    397  1.1  cgd 		th = (struct tcphdr *)((caddr_t)ip + (ip->ip_hl << 2));
    398  1.1  cgd 		in_pcbnotify(&tcb, sa, th->th_dport, ip->ip_src, th->th_sport,
    399  1.1  cgd 			cmd, notify);
    400  1.1  cgd 	} else
    401  1.1  cgd 		in_pcbnotify(&tcb, sa, 0, zeroin_addr, 0, cmd, notify);
    402  1.1  cgd }
    403  1.1  cgd 
    404  1.1  cgd /*
    405  1.1  cgd  * When a source quench is received, close congestion window
    406  1.1  cgd  * to one segment.  We will gradually open it again as we proceed.
    407  1.1  cgd  */
    408  1.1  cgd tcp_quench(inp)
    409  1.1  cgd 	struct inpcb *inp;
    410  1.1  cgd {
    411  1.1  cgd 	struct tcpcb *tp = intotcpcb(inp);
    412  1.1  cgd 
    413  1.1  cgd 	if (tp)
    414  1.1  cgd 		tp->snd_cwnd = tp->t_maxseg;
    415  1.1  cgd }
    416