inet.c revision 1.104 1 /* $NetBSD: inet.c,v 1.104 2013/11/23 22:01:12 christos Exp $ */
2
3 /*
4 * Copyright (c) 1983, 1988, 1993
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
32 #include <sys/cdefs.h>
33 #ifndef lint
34 #if 0
35 static char sccsid[] = "from: @(#)inet.c 8.4 (Berkeley) 4/20/94";
36 #else
37 __RCSID("$NetBSD: inet.c,v 1.104 2013/11/23 22:01:12 christos Exp $");
38 #endif
39 #endif /* not lint */
40
41 #define _CALLOUT_PRIVATE /* for defs in sys/callout.h */
42
43 #include <sys/param.h>
44 #include <sys/queue.h>
45 #include <sys/socket.h>
46 #include <sys/socketvar.h>
47 #include <sys/mbuf.h>
48 #include <sys/protosw.h>
49 #include <sys/sysctl.h>
50
51 #include <net/if_arp.h>
52 #include <net/route.h>
53 #include <netinet/in.h>
54 #include <netinet/in_systm.h>
55 #include <netinet/ip.h>
56 #include <netinet/in_pcb.h>
57 #define ICMP_STRINGS
58 #include <netinet/ip_icmp.h>
59
60 #ifdef INET6
61 #include <netinet/ip6.h>
62 #endif
63
64 #include <netinet/icmp_var.h>
65 #include <netinet/igmp_var.h>
66 #include <netinet/ip_var.h>
67 #include <netinet/pim_var.h>
68 #include <netinet/tcp.h>
69 #include <netinet/tcpip.h>
70 #include <netinet/tcp_seq.h>
71 #define TCPSTATES
72 #include <netinet/tcp_fsm.h>
73 #define TCPTIMERS
74 #include <netinet/tcp_timer.h>
75 #include <netinet/tcp_var.h>
76 #include <netinet/tcp_debug.h>
77 #include <netinet/udp.h>
78 #include <netinet/ip_carp.h>
79 #include <netinet/udp_var.h>
80 #include <netinet/tcp_vtw.h>
81
82 #include <arpa/inet.h>
83 #include <kvm.h>
84 #include <netdb.h>
85 #include <stdio.h>
86 #include <string.h>
87 #include <unistd.h>
88 #include <stdlib.h>
89 #include <err.h>
90 #include "netstat.h"
91 #include "vtw.h"
92 #include "prog_ops.h"
93
94 char *inetname(struct in_addr *);
95 void inetprint(struct in_addr *, u_int16_t, const char *, int);
96
97 void print_vtw_v4(const vtw_t *);
98
99 /*
100 * Print a summary of connections related to an Internet
101 * protocol. For TCP, also give state of connection.
102 * Listening processes (aflag) are suppressed unless the
103 * -a (all) flag is specified.
104 */
105 static int width;
106 static int compact;
107
108 /* VTW-related variables. */
109 static struct timeval now;
110
111 static void
112 protoprhdr(void)
113 {
114 printf("Active Internet connections");
115 if (aflag)
116 printf(" (including servers)");
117 putchar('\n');
118 if (Aflag)
119 printf("%-8.8s ", "PCB");
120 printf(
121 Vflag ? "%-5.5s %-6.6s %-6.6s %s%-*.*s %-*.*s %-13.13s Expires\n"
122 : "%-5.5s %-6.6s %-6.6s %s%-*.*s %-*.*s %s\n",
123 "Proto", "Recv-Q", "Send-Q", compact ? "" : " ",
124 width, width, "Local Address",
125 width, width, "Foreign Address",
126 "State");
127 }
128
129 static void
130 protopr0(intptr_t ppcb, u_long rcv_sb_cc, u_long snd_sb_cc,
131 struct in_addr *laddr, u_int16_t lport,
132 struct in_addr *faddr, u_int16_t fport,
133 short t_state, const char *name, int inp_flags,
134 const struct timeval *expires)
135 {
136 static const char *shorttcpstates[] = {
137 "CLOSED", "LISTEN", "SYNSEN", "SYSRCV",
138 "ESTABL", "CLWAIT", "FWAIT1", "CLOSNG",
139 "LASTAK", "FWAIT2", "TMWAIT",
140 };
141 int istcp;
142
143 istcp = strcmp(name, "tcp") == 0;
144
145 if (Aflag) {
146 printf("%8" PRIxPTR " ", ppcb);
147 }
148 printf("%-5.5s %6ld %6ld%s", name, rcv_sb_cc, snd_sb_cc,
149 compact ? "" : " ");
150 if (numeric_port) {
151 inetprint(laddr, lport, name, 1);
152 inetprint(faddr, fport, name, 1);
153 } else if (inp_flags & INP_ANONPORT) {
154 inetprint(laddr, lport, name, 1);
155 inetprint(faddr, fport, name, 0);
156 } else {
157 inetprint(laddr, lport, name, 0);
158 inetprint(faddr, fport, name, 0);
159 }
160 if (istcp) {
161 if (t_state < 0 || t_state >= TCP_NSTATES)
162 printf(" %d", t_state);
163 else
164 printf(" %s", compact ? shorttcpstates[t_state] :
165 tcpstates[t_state]);
166 }
167 if (Vflag && expires != NULL) {
168 if (expires->tv_sec == 0 && expires->tv_usec == -1)
169 printf(" reclaimed");
170 else {
171 struct timeval delta;
172
173 timersub(expires, &now, &delta);
174 printf(" %.3fms",
175 delta.tv_sec * 1000.0 + delta.tv_usec / 1000.0);
176 }
177 }
178 putchar('\n');
179 }
180
181 static void
182 dbg_printf(const char *fmt, ...)
183 {
184 return;
185 }
186
187 void
188 print_vtw_v4(const vtw_t *vtw)
189 {
190 const vtw_v4_t *v4 = (const vtw_v4_t *)vtw;
191 struct timeval delta;
192 struct in_addr la, fa;
193 char buf[2][32];
194 static const struct timeval zero = {.tv_sec = 0, .tv_usec = 0};
195
196 la.s_addr = v4->laddr;
197 fa.s_addr = v4->faddr;
198
199 snprintf(&buf[0][0], 32, "%s", inet_ntoa(la));
200 snprintf(&buf[1][0], 32, "%s", inet_ntoa(fa));
201
202 timersub(&vtw->expire, &now, &delta);
203
204 if (vtw->expire.tv_sec == 0 && vtw->expire.tv_usec == -1) {
205 dbg_printf("%15.15s:%d %15.15s:%d reclaimed\n"
206 ,buf[0], ntohs(v4->lport)
207 ,buf[1], ntohs(v4->fport));
208 if (!(Vflag && vflag))
209 return;
210 } else if (vtw->expire.tv_sec == 0)
211 return;
212 else if (timercmp(&delta, &zero, <) && !(Vflag && vflag)) {
213 dbg_printf("%15.15s:%d %15.15s:%d expired\n"
214 ,buf[0], ntohs(v4->lport)
215 ,buf[1], ntohs(v4->fport));
216 return;
217 } else {
218 dbg_printf("%15.15s:%d %15.15s:%d expires in %.3fms\n"
219 ,buf[0], ntohs(v4->lport)
220 ,buf[1], ntohs(v4->fport)
221 ,delta.tv_sec * 1000.0 + delta.tv_usec / 1000.0);
222 }
223 protopr0(0, 0, 0,
224 &la, v4->lport,
225 &fa, v4->fport,
226 TCPS_TIME_WAIT, "tcp", 0, &vtw->expire);
227 }
228
229 struct kinfo_pcb *
230 getpcblist_sysctl(const char *name, size_t *len) {
231 int mib[8];
232 size_t namelen = 0, size = 0;
233 char *mibname = NULL;
234 struct kinfo_pcb *pcblist;
235
236 memset(mib, 0, sizeof(mib));
237
238 if (asprintf(&mibname, "net.inet%s.%s.pcblist", name + 3, name) == -1)
239 err(1, "asprintf");
240
241 /* get dynamic pcblist node */
242 if (sysctlnametomib(mibname, mib, &namelen) == -1)
243 err(1, "sysctlnametomib: %s", mibname);
244
245 free(mibname);
246
247 if (prog_sysctl(mib, __arraycount(mib), NULL, &size, NULL, 0) == -1)
248 err(1, "sysctl (query)");
249
250 if ((pcblist = malloc(size)) == NULL)
251 err(1, "malloc");
252 memset(pcblist, 0, size);
253
254 mib[6] = sizeof(*pcblist);
255 mib[7] = size / sizeof(*pcblist);
256
257 if (prog_sysctl(mib, __arraycount(mib), pcblist, &size, NULL, 0) == -1)
258 err(1, "sysctl (copy)");
259
260 *len = size / sizeof(*pcblist);
261 return pcblist;
262
263 }
264
265 static struct kinfo_pcb *
266 getpcblist_kmem(u_long off, const char *name, size_t *len) {
267 struct inpcbtable table;
268 struct inpcb_hdr *next, *prev;
269 struct inpcb inpcb;
270 struct tcpcb tcpcb;
271 struct socket sockb;
272 int istcp = strcmp(name, "tcp") == 0;
273 struct kinfo_pcb *pcblist;
274 size_t size = 100, i;
275 struct sockaddr_in sin;
276 struct inpcbqueue *head;
277
278 if (off == 0) {
279 *len = 0;
280 return NULL;
281 }
282
283 kread(off, (char *)&table, sizeof table);
284 head = &table.inpt_queue;
285 next = TAILQ_FIRST(head);
286 prev = TAILQ_END(head);
287
288 if ((pcblist = malloc(size)) == NULL)
289 err(1, "malloc");
290
291 i = 0;
292 while (next != TAILQ_END(head)) {
293 kread((u_long)next, (char *)&inpcb, sizeof inpcb);
294 prev = next;
295 next = TAILQ_NEXT(&inpcb, inp_queue);
296
297 if (inpcb.inp_af != AF_INET)
298 continue;
299
300 kread((u_long)inpcb.inp_socket, (char *)&sockb, sizeof(sockb));
301 if (istcp) {
302 kread((u_long)inpcb.inp_ppcb,
303 (char *)&tcpcb, sizeof (tcpcb));
304 }
305 pcblist[i].ki_ppcbaddr =
306 istcp ? (uintptr_t) inpcb.inp_ppcb : (uintptr_t) prev;
307 pcblist[i].ki_rcvq = (uint64_t)sockb.so_rcv.sb_cc;
308 pcblist[i].ki_sndq = (uint64_t)sockb.so_snd.sb_cc;
309
310 sin.sin_addr = inpcb.inp_laddr;
311 sin.sin_port = inpcb.inp_lport;
312 memcpy(&pcblist[i].ki_s, &sin, sizeof(sin));
313 sin.sin_addr = inpcb.inp_faddr;
314 sin.sin_port = inpcb.inp_fport;
315 memcpy(&pcblist[i].ki_d, &sin, sizeof(sin));
316 pcblist[i].ki_tstate = tcpcb.t_state;
317 pcblist[i].ki_pflags = inpcb.inp_flags;
318 if (i++ == size) {
319 struct kinfo_pcb *n = realloc(pcblist, size += 100);
320 if (n == NULL)
321 err(1, "realloc");
322 pcblist = n;
323 }
324 }
325 *len = i;
326 return pcblist;
327 }
328
329 void
330 protopr(u_long off, const char *name)
331 {
332 static int first = 1;
333 struct kinfo_pcb *pcblist;
334 size_t i, len;
335
336 compact = 0;
337 if (Aflag) {
338 if (!numeric_addr)
339 width = 18;
340 else {
341 width = 21;
342 compact = 1;
343 }
344 } else
345 width = 22;
346
347 if (use_sysctl)
348 pcblist = getpcblist_sysctl(name, &len);
349 else
350 pcblist = getpcblist_kmem(off, name, &len);
351
352 for (i = 0; i < len; i++) {
353 struct sockaddr_in src, dst;
354
355 memcpy(&src, &pcblist[i].ki_s, sizeof(src));
356 memcpy(&dst, &pcblist[i].ki_d, sizeof(dst));
357
358 if (!aflag &&
359 inet_lnaof(dst.sin_addr) == INADDR_ANY)
360 continue;
361
362 if (first) {
363 protoprhdr();
364 first = 0;
365 }
366 protopr0((intptr_t) pcblist[i].ki_ppcbaddr,
367 pcblist[i].ki_rcvq, pcblist[i].ki_sndq,
368 &src.sin_addr, src.sin_port,
369 &dst.sin_addr, dst.sin_port,
370 pcblist[i].ki_tstate, name,
371 pcblist[i].ki_pflags, NULL);
372 }
373
374 free(pcblist);
375
376 if (strcmp(name, "tcp") == 0) {
377 struct timeval t;
378 timebase(&t);
379 gettimeofday(&now, NULL);
380 timersub(&now, &t, &now);
381 show_vtw_v4(print_vtw_v4);
382 }
383 }
384
385 /*
386 * Dump TCP statistics structure.
387 */
388 void
389 tcp_stats(u_long off, const char *name)
390 {
391 uint64_t tcpstat[TCP_NSTATS];
392
393 if (use_sysctl) {
394 size_t size = sizeof(tcpstat);
395
396 if (sysctlbyname("net.inet.tcp.stats", tcpstat, &size,
397 NULL, 0) == -1)
398 return;
399 } else {
400 warnx("%s stats not available via KVM.", name);
401 return;
402 }
403
404 printf ("%s:\n", name);
405
406 #define ps(f, m) if (tcpstat[f] || sflag <= 1) \
407 printf(m, tcpstat[f])
408 #define p(f, m) if (tcpstat[f] || sflag <= 1) \
409 printf(m, tcpstat[f], plural(tcpstat[f]))
410 #define p2(f1, f2, m) if (tcpstat[f1] || tcpstat[f2] || sflag <= 1) \
411 printf(m, tcpstat[f1], plural(tcpstat[f1]), \
412 tcpstat[f2], plural(tcpstat[f2]))
413 #define p2s(f1, f2, m) if (tcpstat[f1] || tcpstat[f2] || sflag <= 1) \
414 printf(m, tcpstat[f1], plural(tcpstat[f1]), \
415 tcpstat[f2])
416 #define p3(f, m) if (tcpstat[f] || sflag <= 1) \
417 printf(m, tcpstat[f], plurales(tcpstat[f]))
418
419 p(TCP_STAT_SNDTOTAL, "\t%" PRIu64 " packet%s sent\n");
420 p2(TCP_STAT_SNDPACK,TCP_STAT_SNDBYTE,
421 "\t\t%" PRIu64 " data packet%s (%" PRIu64 " byte%s)\n");
422 p2(TCP_STAT_SNDREXMITPACK, TCP_STAT_SNDREXMITBYTE,
423 "\t\t%" PRIu64 " data packet%s (%" PRIu64 " byte%s) retransmitted\n");
424 p2s(TCP_STAT_SNDACKS, TCP_STAT_DELACK,
425 "\t\t%" PRIu64 " ack-only packet%s (%" PRIu64 " delayed)\n");
426 p(TCP_STAT_SNDURG, "\t\t%" PRIu64 " URG only packet%s\n");
427 p(TCP_STAT_SNDPROBE, "\t\t%" PRIu64 " window probe packet%s\n");
428 p(TCP_STAT_SNDWINUP, "\t\t%" PRIu64 " window update packet%s\n");
429 p(TCP_STAT_SNDCTRL, "\t\t%" PRIu64 " control packet%s\n");
430 p(TCP_STAT_SELFQUENCH,
431 "\t\t%" PRIu64 " send attempt%s resulted in self-quench\n");
432 p(TCP_STAT_RCVTOTAL, "\t%" PRIu64 " packet%s received\n");
433 p2(TCP_STAT_RCVACKPACK, TCP_STAT_RCVACKBYTE,
434 "\t\t%" PRIu64 " ack%s (for %" PRIu64 " byte%s)\n");
435 p(TCP_STAT_RCVDUPACK, "\t\t%" PRIu64 " duplicate ack%s\n");
436 p(TCP_STAT_RCVACKTOOMUCH, "\t\t%" PRIu64 " ack%s for unsent data\n");
437 p2(TCP_STAT_RCVPACK, TCP_STAT_RCVBYTE,
438 "\t\t%" PRIu64 " packet%s (%" PRIu64 " byte%s) received in-sequence\n");
439 p2(TCP_STAT_RCVDUPPACK, TCP_STAT_RCVDUPBYTE,
440 "\t\t%" PRIu64 " completely duplicate packet%s (%" PRIu64 " byte%s)\n");
441 p(TCP_STAT_PAWSDROP, "\t\t%" PRIu64 " old duplicate packet%s\n");
442 p2(TCP_STAT_RCVPARTDUPPACK, TCP_STAT_RCVPARTDUPBYTE,
443 "\t\t%" PRIu64 " packet%s with some dup. data (%" PRIu64 " byte%s duped)\n");
444 p2(TCP_STAT_RCVOOPACK, TCP_STAT_RCVOOBYTE,
445 "\t\t%" PRIu64 " out-of-order packet%s (%" PRIu64 " byte%s)\n");
446 p2(TCP_STAT_RCVPACKAFTERWIN, TCP_STAT_RCVBYTEAFTERWIN,
447 "\t\t%" PRIu64 " packet%s (%" PRIu64 " byte%s) of data after window\n");
448 p(TCP_STAT_RCVWINPROBE, "\t\t%" PRIu64 " window probe%s\n");
449 p(TCP_STAT_RCVWINUPD, "\t\t%" PRIu64 " window update packet%s\n");
450 p(TCP_STAT_RCVAFTERCLOSE, "\t\t%" PRIu64 " packet%s received after close\n");
451 p(TCP_STAT_RCVBADSUM, "\t\t%" PRIu64 " discarded for bad checksum%s\n");
452 p(TCP_STAT_RCVBADOFF, "\t\t%" PRIu64 " discarded for bad header offset field%s\n");
453 ps(TCP_STAT_RCVSHORT, "\t\t%" PRIu64 " discarded because packet too short\n");
454 p(TCP_STAT_CONNATTEMPT, "\t%" PRIu64 " connection request%s\n");
455 p(TCP_STAT_ACCEPTS, "\t%" PRIu64 " connection accept%s\n");
456 p(TCP_STAT_CONNECTS,
457 "\t%" PRIu64 " connection%s established (including accepts)\n");
458 p2(TCP_STAT_CLOSED, TCP_STAT_DROPS,
459 "\t%" PRIu64 " connection%s closed (including %" PRIu64 " drop%s)\n");
460 p(TCP_STAT_CONNDROPS, "\t%" PRIu64 " embryonic connection%s dropped\n");
461 p(TCP_STAT_DELAYED_FREE, "\t%" PRIu64 " delayed free%s of tcpcb\n");
462 p2(TCP_STAT_RTTUPDATED, TCP_STAT_SEGSTIMED,
463 "\t%" PRIu64 " segment%s updated rtt (of %" PRIu64 " attempt%s)\n");
464 p(TCP_STAT_REXMTTIMEO, "\t%" PRIu64 " retransmit timeout%s\n");
465 p(TCP_STAT_TIMEOUTDROP,
466 "\t\t%" PRIu64 " connection%s dropped by rexmit timeout\n");
467 p2(TCP_STAT_PERSISTTIMEO, TCP_STAT_PERSISTDROPS,
468 "\t%" PRIu64 " persist timeout%s (resulting in %" PRIu64 " dropped "
469 "connection%s)\n");
470 p(TCP_STAT_KEEPTIMEO, "\t%" PRIu64 " keepalive timeout%s\n");
471 p(TCP_STAT_KEEPPROBE, "\t\t%" PRIu64 " keepalive probe%s sent\n");
472 p(TCP_STAT_KEEPDROPS, "\t\t%" PRIu64 " connection%s dropped by keepalive\n");
473 p(TCP_STAT_PREDACK, "\t%" PRIu64 " correct ACK header prediction%s\n");
474 p(TCP_STAT_PREDDAT, "\t%" PRIu64 " correct data packet header prediction%s\n");
475 p3(TCP_STAT_PCBHASHMISS, "\t%" PRIu64 " PCB hash miss%s\n");
476 ps(TCP_STAT_NOPORT, "\t%" PRIu64 " dropped due to no socket\n");
477 p(TCP_STAT_CONNSDRAINED, "\t%" PRIu64 " connection%s drained due to memory "
478 "shortage\n");
479 p(TCP_STAT_PMTUBLACKHOLE, "\t%" PRIu64 " PMTUD blackhole%s detected\n");
480
481 p(TCP_STAT_BADSYN, "\t%" PRIu64 " bad connection attempt%s\n");
482 ps(TCP_STAT_SC_ADDED, "\t%" PRIu64 " SYN cache entries added\n");
483 p(TCP_STAT_SC_COLLISIONS, "\t\t%" PRIu64 " hash collision%s\n");
484 ps(TCP_STAT_SC_COMPLETED, "\t\t%" PRIu64 " completed\n");
485 ps(TCP_STAT_SC_ABORTED, "\t\t%" PRIu64 " aborted (no space to build PCB)\n");
486 ps(TCP_STAT_SC_TIMED_OUT, "\t\t%" PRIu64 " timed out\n");
487 ps(TCP_STAT_SC_OVERFLOWED, "\t\t%" PRIu64 " dropped due to overflow\n");
488 ps(TCP_STAT_SC_BUCKETOVERFLOW, "\t\t%" PRIu64 " dropped due to bucket overflow\n");
489 ps(TCP_STAT_SC_RESET, "\t\t%" PRIu64 " dropped due to RST\n");
490 ps(TCP_STAT_SC_UNREACH, "\t\t%" PRIu64 " dropped due to ICMP unreachable\n");
491 ps(TCP_STAT_SC_DELAYED_FREE, "\t\t%" PRIu64 " delayed free of SYN cache "
492 "entries\n");
493 p(TCP_STAT_SC_RETRANSMITTED, "\t%" PRIu64 " SYN,ACK%s retransmitted\n");
494 p(TCP_STAT_SC_DUPESYN, "\t%" PRIu64 " duplicate SYN%s received for entries "
495 "already in the cache\n");
496 p(TCP_STAT_SC_DROPPED, "\t%" PRIu64 " SYN%s dropped (no route or no space)\n");
497 p(TCP_STAT_BADSIG, "\t%" PRIu64 " packet%s with bad signature\n");
498 p(TCP_STAT_GOODSIG, "\t%" PRIu64 " packet%s with good signature\n");
499
500 p(TCP_STAT_ECN_SHS, "\t%" PRIu64 " successful ECN handshake%s\n");
501 p(TCP_STAT_ECN_CE, "\t%" PRIu64 " packet%s with ECN CE bit\n");
502 p(TCP_STAT_ECN_ECT, "\t%" PRIu64 " packet%s ECN ECT(0) bit\n");
503 #undef p
504 #undef ps
505 #undef p2
506 #undef p2s
507 #undef p3
508 show_vtw_stats();
509 }
510
511 /*
512 * Dump UDP statistics structure.
513 */
514 void
515 udp_stats(u_long off, const char *name)
516 {
517 uint64_t udpstat[UDP_NSTATS];
518 u_quad_t delivered;
519
520 if (use_sysctl) {
521 size_t size = sizeof(udpstat);
522
523 if (sysctlbyname("net.inet.udp.stats", udpstat, &size,
524 NULL, 0) == -1)
525 return;
526 } else {
527 warnx("%s stats not available via KVM.", name);
528 return;
529 }
530
531 printf ("%s:\n", name);
532
533 #define ps(f, m) if (udpstat[f] || sflag <= 1) \
534 printf(m, udpstat[f])
535 #define p(f, m) if (udpstat[f] || sflag <= 1) \
536 printf(m, udpstat[f], plural(udpstat[f]))
537 #define p3(f, m) if (udpstat[f] || sflag <= 1) \
538 printf(m, udpstat[f], plurales(udpstat[f]))
539
540 p(UDP_STAT_IPACKETS, "\t%" PRIu64 " datagram%s received\n");
541 ps(UDP_STAT_HDROPS, "\t%" PRIu64 " with incomplete header\n");
542 ps(UDP_STAT_BADLEN, "\t%" PRIu64 " with bad data length field\n");
543 ps(UDP_STAT_BADSUM, "\t%" PRIu64 " with bad checksum\n");
544 ps(UDP_STAT_NOPORT, "\t%" PRIu64 " dropped due to no socket\n");
545 p(UDP_STAT_NOPORTBCAST,
546 "\t%" PRIu64 " broadcast/multicast datagram%s dropped due to no socket\n");
547 ps(UDP_STAT_FULLSOCK, "\t%" PRIu64 " dropped due to full socket buffers\n");
548 delivered = udpstat[UDP_STAT_IPACKETS] -
549 udpstat[UDP_STAT_HDROPS] -
550 udpstat[UDP_STAT_BADLEN] -
551 udpstat[UDP_STAT_BADSUM] -
552 udpstat[UDP_STAT_NOPORT] -
553 udpstat[UDP_STAT_NOPORTBCAST] -
554 udpstat[UDP_STAT_FULLSOCK];
555 if (delivered || sflag <= 1)
556 printf("\t%" PRIu64 " delivered\n", delivered);
557 p3(UDP_STAT_PCBHASHMISS, "\t%" PRIu64 " PCB hash miss%s\n");
558 p(UDP_STAT_OPACKETS, "\t%" PRIu64 " datagram%s output\n");
559
560 #undef ps
561 #undef p
562 #undef p3
563 }
564
565 /*
566 * Dump IP statistics structure.
567 */
568 void
569 ip_stats(u_long off, const char *name)
570 {
571 uint64_t ipstat[IP_NSTATS];
572
573 if (use_sysctl) {
574 size_t size = sizeof(ipstat);
575
576 if (sysctlbyname("net.inet.ip.stats", ipstat, &size,
577 NULL, 0) == -1)
578 return;
579 } else {
580 warnx("%s stats not available via KVM.", name);
581 return;
582 }
583
584 printf("%s:\n", name);
585
586 #define ps(f, m) if (ipstat[f] || sflag <= 1) \
587 printf(m, ipstat[f])
588 #define p(f, m) if (ipstat[f] || sflag <= 1) \
589 printf(m, ipstat[f], plural(ipstat[f]))
590
591 p(IP_STAT_TOTAL, "\t%" PRIu64 " total packet%s received\n");
592 p(IP_STAT_BADSUM, "\t%" PRIu64 " bad header checksum%s\n");
593 ps(IP_STAT_TOOSMALL, "\t%" PRIu64 " with size smaller than minimum\n");
594 ps(IP_STAT_TOOSHORT, "\t%" PRIu64 " with data size < data length\n");
595 ps(IP_STAT_TOOLONG, "\t%" PRIu64 " with length > max ip packet size\n");
596 ps(IP_STAT_BADHLEN, "\t%" PRIu64 " with header length < data size\n");
597 ps(IP_STAT_BADLEN, "\t%" PRIu64 " with data length < header length\n");
598 ps(IP_STAT_BADOPTIONS, "\t%" PRIu64 " with bad options\n");
599 ps(IP_STAT_BADVERS, "\t%" PRIu64 " with incorrect version number\n");
600 p(IP_STAT_FRAGMENTS, "\t%" PRIu64 " fragment%s received\n");
601 p(IP_STAT_FRAGDROPPED, "\t%" PRIu64 " fragment%s dropped (dup or out of space)\n");
602 p(IP_STAT_RCVMEMDROP, "\t%" PRIu64 " fragment%s dropped (out of ipqent)\n");
603 p(IP_STAT_BADFRAGS, "\t%" PRIu64 " malformed fragment%s dropped\n");
604 p(IP_STAT_FRAGTIMEOUT, "\t%" PRIu64 " fragment%s dropped after timeout\n");
605 p(IP_STAT_REASSEMBLED, "\t%" PRIu64 " packet%s reassembled ok\n");
606 p(IP_STAT_DELIVERED, "\t%" PRIu64 " packet%s for this host\n");
607 p(IP_STAT_NOPROTO, "\t%" PRIu64 " packet%s for unknown/unsupported protocol\n");
608 p(IP_STAT_FORWARD, "\t%" PRIu64 " packet%s forwarded");
609 p(IP_STAT_FASTFORWARD, " (%" PRIu64 " packet%s fast forwarded)");
610 if (ipstat[IP_STAT_FORWARD] || sflag <= 1)
611 putchar('\n');
612 p(IP_STAT_CANTFORWARD, "\t%" PRIu64 " packet%s not forwardable\n");
613 p(IP_STAT_REDIRECTSENT, "\t%" PRIu64 " redirect%s sent\n");
614 p(IP_STAT_NOGIF, "\t%" PRIu64 " packet%s no matching gif found\n");
615 p(IP_STAT_LOCALOUT, "\t%" PRIu64 " packet%s sent from this host\n");
616 p(IP_STAT_RAWOUT, "\t%" PRIu64 " packet%s sent with fabricated ip header\n");
617 p(IP_STAT_ODROPPED, "\t%" PRIu64 " output packet%s dropped due to no bufs, etc.\n");
618 p(IP_STAT_NOROUTE, "\t%" PRIu64 " output packet%s discarded due to no route\n");
619 p(IP_STAT_FRAGMENTED, "\t%" PRIu64 " output datagram%s fragmented\n");
620 p(IP_STAT_OFRAGMENTS, "\t%" PRIu64 " fragment%s created\n");
621 p(IP_STAT_CANTFRAG, "\t%" PRIu64 " datagram%s that can't be fragmented\n");
622 p(IP_STAT_BADADDR, "\t%" PRIu64 " datagram%s with bad address in header\n");
623 #undef ps
624 #undef p
625 }
626
627 /*
628 * Dump ICMP statistics.
629 */
630 void
631 icmp_stats(u_long off, const char *name)
632 {
633 uint64_t icmpstat[ICMP_NSTATS];
634 int i, first;
635
636 if (use_sysctl) {
637 size_t size = sizeof(icmpstat);
638
639 if (sysctlbyname("net.inet.icmp.stats", icmpstat, &size,
640 NULL, 0) == -1)
641 return;
642 } else {
643 warnx("%s stats not available via KVM.", name);
644 return;
645 }
646
647 printf("%s:\n", name);
648
649 #define p(f, m) if (icmpstat[f] || sflag <= 1) \
650 printf(m, icmpstat[f], plural(icmpstat[f]))
651
652 p(ICMP_STAT_ERROR, "\t%" PRIu64 " call%s to icmp_error\n");
653 p(ICMP_STAT_OLDICMP,
654 "\t%" PRIu64 " error%s not generated because old message was icmp\n");
655 for (first = 1, i = 0; i < ICMP_MAXTYPE + 1; i++)
656 if (icmpstat[ICMP_STAT_OUTHIST + i] != 0) {
657 if (first) {
658 printf("\tOutput histogram:\n");
659 first = 0;
660 }
661 printf("\t\t%s: %" PRIu64 "\n", icmp_type[i],
662 icmpstat[ICMP_STAT_OUTHIST + i]);
663 }
664 p(ICMP_STAT_BADCODE, "\t%" PRIu64 " message%s with bad code fields\n");
665 p(ICMP_STAT_TOOSHORT, "\t%" PRIu64 " message%s < minimum length\n");
666 p(ICMP_STAT_CHECKSUM, "\t%" PRIu64 " bad checksum%s\n");
667 p(ICMP_STAT_BADLEN, "\t%" PRIu64 " message%s with bad length\n");
668 p(ICMP_STAT_BMCASTECHO, "\t%" PRIu64 " multicast echo request%s ignored\n");
669 p(ICMP_STAT_BMCASTTSTAMP, "\t%" PRIu64 " multicast timestamp request%s ignored\n");
670 for (first = 1, i = 0; i < ICMP_MAXTYPE + 1; i++)
671 if (icmpstat[ICMP_STAT_INHIST + i] != 0) {
672 if (first) {
673 printf("\tInput histogram:\n");
674 first = 0;
675 }
676 printf("\t\t%s: %" PRIu64 "\n", icmp_type[i],
677 icmpstat[ICMP_STAT_INHIST + i]);
678 }
679 p(ICMP_STAT_REFLECT, "\t%" PRIu64 " message response%s generated\n");
680 p(ICMP_STAT_PMTUCHG, "\t%" PRIu64 " path MTU change%s\n");
681 #undef p
682 }
683
684 /*
685 * Dump IGMP statistics structure.
686 */
687 void
688 igmp_stats(u_long off, const char *name)
689 {
690 uint64_t igmpstat[IGMP_NSTATS];
691
692 if (use_sysctl) {
693 size_t size = sizeof(igmpstat);
694
695 if (sysctlbyname("net.inet.igmp.stats", igmpstat, &size,
696 NULL, 0) == -1)
697 return;
698 } else {
699 warnx("%s stats not available via KVM.", name);
700 return;
701 }
702
703 printf("%s:\n", name);
704
705 #define p(f, m) if (igmpstat[f] || sflag <= 1) \
706 printf(m, igmpstat[f], plural(igmpstat[f]))
707 #define py(f, m) if (igmpstat[f] || sflag <= 1) \
708 printf(m, igmpstat[f], igmpstat[f] != 1 ? "ies" : "y")
709 p(IGMP_STAT_RCV_TOTAL, "\t%" PRIu64 " message%s received\n");
710 p(IGMP_STAT_RCV_TOOSHORT, "\t%" PRIu64 " message%s received with too few bytes\n");
711 p(IGMP_STAT_RCV_BADSUM, "\t%" PRIu64 " message%s received with bad checksum\n");
712 py(IGMP_STAT_RCV_QUERIES, "\t%" PRIu64 " membership quer%s received\n");
713 py(IGMP_STAT_RCV_BADQUERIES, "\t%" PRIu64 " membership quer%s received with invalid field(s)\n");
714 p(IGMP_STAT_RCV_REPORTS, "\t%" PRIu64 " membership report%s received\n");
715 p(IGMP_STAT_RCV_BADREPORTS, "\t%" PRIu64 " membership report%s received with invalid field(s)\n");
716 p(IGMP_STAT_RCV_OURREPORTS, "\t%" PRIu64 " membership report%s received for groups to which we belong\n");
717 p(IGMP_STAT_SND_REPORTS, "\t%" PRIu64 " membership report%s sent\n");
718 #undef p
719 #undef py
720 }
721
722 /*
723 * Dump CARP statistics structure.
724 */
725 void
726 carp_stats(u_long off, const char *name)
727 {
728 uint64_t carpstat[CARP_NSTATS];
729
730 if (use_sysctl) {
731 size_t size = sizeof(carpstat);
732
733 if (sysctlbyname("net.inet.carp.stats", carpstat, &size,
734 NULL, 0) == -1)
735 return;
736 } else {
737 warnx("%s stats not available via KVM.", name);
738 return;
739 }
740
741 printf("%s:\n", name);
742
743 #define p(f, m) if (carpstat[f] || sflag <= 1) \
744 printf(m, carpstat[f], plural(carpstat[f]))
745 #define p2(f, m) if (carpstat[f] || sflag <= 1) \
746 printf(m, carpstat[f])
747
748 p(CARP_STAT_IPACKETS, "\t%" PRIu64 " packet%s received (IPv4)\n");
749 p(CARP_STAT_IPACKETS6, "\t%" PRIu64 " packet%s received (IPv6)\n");
750 p(CARP_STAT_BADIF,
751 "\t\t%" PRIu64 " packet%s discarded for bad interface\n");
752 p(CARP_STAT_BADTTL,
753 "\t\t%" PRIu64 " packet%s discarded for wrong TTL\n");
754 p(CARP_STAT_HDROPS, "\t\t%" PRIu64 " packet%s shorter than header\n");
755 p(CARP_STAT_BADSUM, "\t\t%" PRIu64
756 " packet%s discarded for bad checksum\n");
757 p(CARP_STAT_BADVER,
758 "\t\t%" PRIu64 " packet%s discarded with a bad version\n");
759 p2(CARP_STAT_BADLEN,
760 "\t\t%" PRIu64 " discarded because packet was too short\n");
761 p(CARP_STAT_BADAUTH,
762 "\t\t%" PRIu64 " packet%s discarded for bad authentication\n");
763 p(CARP_STAT_BADVHID, "\t\t%" PRIu64 " packet%s discarded for bad vhid\n");
764 p(CARP_STAT_BADADDRS, "\t\t%" PRIu64
765 " packet%s discarded because of a bad address list\n");
766 p(CARP_STAT_OPACKETS, "\t%" PRIu64 " packet%s sent (IPv4)\n");
767 p(CARP_STAT_OPACKETS6, "\t%" PRIu64 " packet%s sent (IPv6)\n");
768 p2(CARP_STAT_ONOMEM,
769 "\t\t%" PRIu64 " send failed due to mbuf memory error\n");
770 #undef p
771 #undef p2
772 }
773
774 /*
775 * Dump PIM statistics structure.
776 */
777 void
778 pim_stats(u_long off, const char *name)
779 {
780 struct pimstat pimstat;
781
782 if (off == 0)
783 return;
784 if (kread(off, (char *)&pimstat, sizeof (pimstat)) != 0) {
785 /* XXX: PIM is probably not enabled in the kernel */
786 return;
787 }
788
789 printf("%s:\n", name);
790
791 #define p(f, m) if (pimstat.f || sflag <= 1) \
792 printf(m, pimstat.f, plural(pimstat.f))
793
794 p(pims_rcv_total_msgs, "\t%" PRIu64 " message%s received\n");
795 p(pims_rcv_total_bytes, "\t%" PRIu64 " byte%s received\n");
796 p(pims_rcv_tooshort, "\t%" PRIu64 " message%s received with too few bytes\n");
797 p(pims_rcv_badsum, "\t%" PRIu64 " message%s received with bad checksum\n");
798 p(pims_rcv_badversion, "\t%" PRIu64 " message%s received with bad version\n");
799 p(pims_rcv_registers_msgs, "\t%" PRIu64 " data register message%s received\n");
800 p(pims_rcv_registers_bytes, "\t%" PRIu64 " data register byte%s received\n");
801 p(pims_rcv_registers_wrongiif, "\t%" PRIu64 " data register message%s received on wrong iif\n");
802 p(pims_rcv_badregisters, "\t%" PRIu64 " bad register%s received\n");
803 p(pims_snd_registers_msgs, "\t%" PRIu64 " data register message%s sent\n");
804 p(pims_snd_registers_bytes, "\t%" PRIu64 " data register byte%s sent\n");
805 #undef p
806 }
807
808 /*
809 * Dump the ARP statistics structure.
810 */
811 void
812 arp_stats(u_long off, const char *name)
813 {
814 uint64_t arpstat[ARP_NSTATS];
815
816 if (use_sysctl) {
817 size_t size = sizeof(arpstat);
818
819 if (sysctlbyname("net.inet.arp.stats", arpstat, &size,
820 NULL, 0) == -1)
821 return;
822 } else {
823 warnx("%s stats not available via KVM.", name);
824 return;
825 }
826
827 printf("%s:\n", name);
828
829 #define ps(f, m) if (arpstat[f] || sflag <= 1) \
830 printf(m, arpstat[f])
831 #define p(f, m) if (arpstat[f] || sflag <= 1) \
832 printf(m, arpstat[f], plural(arpstat[f]))
833
834 p(ARP_STAT_SNDTOTAL, "\t%" PRIu64 " packet%s sent\n");
835 p(ARP_STAT_SNDREPLY, "\t\t%" PRIu64 " reply packet%s\n");
836 p(ARP_STAT_SENDREQUEST, "\t\t%" PRIu64 " request packet%s\n");
837
838 p(ARP_STAT_RCVTOTAL, "\t%" PRIu64 " packet%s received\n");
839 p(ARP_STAT_RCVREPLY, "\t\t%" PRIu64 " reply packet%s\n");
840 p(ARP_STAT_RCVREQUEST, "\t\t%" PRIu64 " valid request packet%s\n");
841 p(ARP_STAT_RCVMCAST, "\t\t%" PRIu64 " broadcast/multicast packet%s\n");
842 p(ARP_STAT_RCVBADPROTO, "\t\t%" PRIu64 " packet%s with unknown protocol type\n");
843 p(ARP_STAT_RCVBADLEN, "\t\t%" PRIu64 " packet%s with bad (short) length\n");
844 p(ARP_STAT_RCVZEROTPA, "\t\t%" PRIu64 " packet%s with null target IP address\n");
845 p(ARP_STAT_RCVZEROSPA, "\t\t%" PRIu64 " packet%s with null source IP address\n");
846 ps(ARP_STAT_RCVNOINT, "\t\t%" PRIu64 " could not be mapped to an interface\n");
847 p(ARP_STAT_RCVLOCALSHA, "\t\t%" PRIu64 " packet%s sourced from a local hardware "
848 "address\n");
849 p(ARP_STAT_RCVBCASTSHA, "\t\t%" PRIu64 " packet%s with a broadcast "
850 "source hardware address\n");
851 p(ARP_STAT_RCVLOCALSPA, "\t\t%" PRIu64 " duplicate%s for a local IP address\n");
852 p(ARP_STAT_RCVOVERPERM, "\t\t%" PRIu64 " attempt%s to overwrite a static entry\n");
853 p(ARP_STAT_RCVOVERINT, "\t\t%" PRIu64 " packet%s received on wrong interface\n");
854 p(ARP_STAT_RCVOVER, "\t\t%" PRIu64 " entry%s overwritten\n");
855 p(ARP_STAT_RCVLENCHG, "\t\t%" PRIu64 " change%s in hardware address length\n");
856
857 p(ARP_STAT_DFRTOTAL, "\t%" PRIu64 " packet%s deferred pending ARP resolution\n");
858 ps(ARP_STAT_DFRSENT, "\t\t%" PRIu64 " sent\n");
859 ps(ARP_STAT_DFRDROPPED, "\t\t%" PRIu64 " dropped\n");
860
861 p(ARP_STAT_ALLOCFAIL, "\t%" PRIu64 " failure%s to allocate llinfo\n");
862
863 #undef ps
864 #undef p
865 }
866
867 /*
868 * Pretty print an Internet address (net address + port).
869 * Take numeric_addr and numeric_port into consideration.
870 */
871 void
872 inetprint(struct in_addr *in, uint16_t port, const char *proto,
873 int port_numeric)
874 {
875 struct servent *sp = 0;
876 char line[80], *cp;
877 size_t space;
878
879 (void)snprintf(line, sizeof line, "%.*s.",
880 (Aflag && !numeric_addr) ? 12 : 16, inetname(in));
881 cp = strchr(line, '\0');
882 if (!port_numeric && port)
883 sp = getservbyport((int)port, proto);
884 space = sizeof line - (cp-line);
885 if (sp || port == 0)
886 (void)snprintf(cp, space, "%s", sp ? sp->s_name : "*");
887 else
888 (void)snprintf(cp, space, "%u", ntohs(port));
889 (void)printf(" %-*.*s", width, width, line);
890 }
891
892 /*
893 * Construct an Internet address representation.
894 * If numeric_addr has been supplied, give
895 * numeric value, otherwise try for symbolic name.
896 */
897 char *
898 inetname(struct in_addr *inp)
899 {
900 char *cp;
901 static char line[50];
902 struct hostent *hp;
903 struct netent *np;
904 static char domain[MAXHOSTNAMELEN + 1];
905 static int first = 1;
906
907 if (first && !numeric_addr) {
908 first = 0;
909 if (gethostname(domain, sizeof domain) == 0) {
910 domain[sizeof(domain) - 1] = '\0';
911 if ((cp = strchr(domain, '.')))
912 (void) strlcpy(domain, cp + 1, sizeof(domain));
913 else
914 domain[0] = 0;
915 } else
916 domain[0] = 0;
917 }
918 cp = 0;
919 if (!numeric_addr && inp->s_addr != INADDR_ANY) {
920 int net = inet_netof(*inp);
921 int lna = inet_lnaof(*inp);
922
923 if (lna == INADDR_ANY) {
924 np = getnetbyaddr(net, AF_INET);
925 if (np)
926 cp = np->n_name;
927 }
928 if (cp == 0) {
929 hp = gethostbyaddr((char *)inp, sizeof (*inp), AF_INET);
930 if (hp) {
931 if ((cp = strchr(hp->h_name, '.')) &&
932 !strcmp(cp + 1, domain))
933 *cp = 0;
934 cp = hp->h_name;
935 }
936 }
937 }
938 if (inp->s_addr == INADDR_ANY)
939 strlcpy(line, "*", sizeof line);
940 else if (cp)
941 strlcpy(line, cp, sizeof line);
942 else {
943 inp->s_addr = ntohl(inp->s_addr);
944 #define C(x) ((x) & 0xff)
945 (void)snprintf(line, sizeof line, "%u.%u.%u.%u",
946 C(inp->s_addr >> 24), C(inp->s_addr >> 16),
947 C(inp->s_addr >> 8), C(inp->s_addr));
948 #undef C
949 }
950 return (line);
951 }
952
953 /*
954 * Dump the contents of a TCP PCB.
955 */
956 void
957 tcp_dump(u_long off, const char *name, u_long pcbaddr)
958 {
959 callout_impl_t *ci;
960 struct tcpcb tcpcb;
961 int i, hardticks;
962 struct kinfo_pcb *pcblist;
963 size_t j, len;
964
965 if (use_sysctl)
966 pcblist = getpcblist_sysctl(name, &len);
967 else
968 pcblist = getpcblist_kmem(off, name, &len);
969
970 for (j = 0; j < len; j++)
971 if (pcblist[j].ki_ppcbaddr == pcbaddr)
972 break;
973 free(pcblist);
974
975 if (j == len)
976 errx(1, "0x%lx is not a valid pcb address", pcbaddr);
977
978 kread(pcbaddr, (char *)&tcpcb, sizeof(tcpcb));
979 hardticks = get_hardticks();
980
981 printf("TCP Protocol Control Block at 0x%08lx:\n\n", pcbaddr);
982
983 printf("Timers:\n");
984 for (i = 0; i < TCPT_NTIMERS; i++) {
985 ci = (callout_impl_t *)&tcpcb.t_timer[i];
986 printf("\t%s: %d", tcptimers[i],
987 (ci->c_flags & CALLOUT_PENDING) ?
988 ci->c_time - hardticks : 0);
989 }
990 printf("\n\n");
991
992 if (tcpcb.t_state < 0 || tcpcb.t_state >= TCP_NSTATES)
993 printf("State: %d", tcpcb.t_state);
994 else
995 printf("State: %s", tcpstates[tcpcb.t_state]);
996 printf(", flags 0x%x, inpcb 0x%lx, in6pcb 0x%lx\n\n", tcpcb.t_flags,
997 (u_long)tcpcb.t_inpcb, (u_long)tcpcb.t_in6pcb);
998
999 printf("rxtshift %d, rxtcur %d, dupacks %d\n", tcpcb.t_rxtshift,
1000 tcpcb.t_rxtcur, tcpcb.t_dupacks);
1001 printf("peermss %u, ourmss %u, segsz %u, segqlen %u\n\n",
1002 tcpcb.t_peermss, tcpcb.t_ourmss, tcpcb.t_segsz, tcpcb.t_segqlen);
1003
1004 printf("snd_una %u, snd_nxt %u, snd_up %u\n",
1005 tcpcb.snd_una, tcpcb.snd_nxt, tcpcb.snd_up);
1006 printf("snd_wl1 %u, snd_wl2 %u, iss %u, snd_wnd %lu\n\n",
1007 tcpcb.snd_wl1, tcpcb.snd_wl2, tcpcb.iss, tcpcb.snd_wnd);
1008
1009 printf("rcv_wnd %lu, rcv_nxt %u, rcv_up %u, irs %u\n\n",
1010 tcpcb.rcv_wnd, tcpcb.rcv_nxt, tcpcb.rcv_up, tcpcb.irs);
1011
1012 printf("rcv_adv %u, snd_max %u, snd_cwnd %lu, snd_ssthresh %lu\n",
1013 tcpcb.rcv_adv, tcpcb.snd_max, tcpcb.snd_cwnd, tcpcb.snd_ssthresh);
1014
1015 printf("rcvtime %u, rtttime %u, rtseq %u, srtt %d, rttvar %d, "
1016 "rttmin %d, max_sndwnd %lu\n\n", tcpcb.t_rcvtime, tcpcb.t_rtttime,
1017 tcpcb.t_rtseq, tcpcb.t_srtt, tcpcb.t_rttvar, tcpcb.t_rttmin,
1018 tcpcb.max_sndwnd);
1019
1020 printf("oobflags %d, iobc %d, softerror %d\n\n", tcpcb.t_oobflags,
1021 tcpcb.t_iobc, tcpcb.t_softerror);
1022
1023 printf("snd_scale %d, rcv_scale %d, req_r_scale %d, req_s_scale %d\n",
1024 tcpcb.snd_scale, tcpcb.rcv_scale, tcpcb.request_r_scale,
1025 tcpcb.requested_s_scale);
1026 printf("ts_recent %u, ts_regent_age %d, last_ack_sent %u\n",
1027 tcpcb.ts_recent, tcpcb.ts_recent_age, tcpcb.last_ack_sent);
1028 }
1029