ping.c revision 112531
1/*
2 * Copyright (c) 1989, 1993
3 *	The Regents of the University of California.  All rights reserved.
4 *
5 * This code is derived from software contributed to Berkeley by
6 * Mike Muuss.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 * 1. Redistributions of source code must retain the above copyright
12 *    notice, this list of conditions and the following disclaimer.
13 * 2. Redistributions in binary form must reproduce the above copyright
14 *    notice, this list of conditions and the following disclaimer in the
15 *    documentation and/or other materials provided with the distribution.
16 * 3. All advertising materials mentioning features or use of this software
17 *    must display the following acknowledgement:
18 *	This product includes software developed by the University of
19 *	California, Berkeley and its contributors.
20 * 4. Neither the name of the University nor the names of its contributors
21 *    may be used to endorse or promote products derived from this software
22 *    without specific prior written permission.
23 *
24 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
25 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
26 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
27 * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
28 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
29 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
30 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
31 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
32 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
33 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
34 * SUCH DAMAGE.
35 */
36
37#ifndef lint
38static const char copyright[] =
39"@(#) Copyright (c) 1989, 1993\n\
40	The Regents of the University of California.  All rights reserved.\n";
41#endif /* not lint */
42
43#ifndef lint
44#if 0
45static char sccsid[] = "@(#)ping.c	8.1 (Berkeley) 6/5/93";
46#endif
47static const char rcsid[] =
48  "$FreeBSD: head/sbin/ping/ping.c 112531 2003-03-24 11:26:08Z bde $";
49#endif /* not lint */
50
51/*
52 *			P I N G . C
53 *
54 * Using the Internet Control Message Protocol (ICMP) "ECHO" facility,
55 * measure round-trip-delays and packet loss across network paths.
56 *
57 * Author -
58 *	Mike Muuss
59 *	U. S. Army Ballistic Research Laboratory
60 *	December, 1983
61 *
62 * Status -
63 *	Public Domain.  Distribution Unlimited.
64 * Bugs -
65 *	More statistics could always be gathered.
66 *	This program has to run SUID to ROOT to access the ICMP socket.
67 */
68
69#include <sys/param.h>		/* NB: we rely on this for <sys/types.h> */
70#include <sys/socket.h>
71#include <sys/sysctl.h>
72#include <sys/time.h>
73#include <sys/uio.h>
74
75#include <netinet/in.h>
76#include <netinet/in_systm.h>
77#include <netinet/ip.h>
78#include <netinet/ip_icmp.h>
79#include <netinet/ip_var.h>
80#include <arpa/inet.h>
81
82#ifdef IPSEC
83#include <netinet6/ipsec.h>
84#endif /*IPSEC*/
85
86#include <ctype.h>
87#include <err.h>
88#include <errno.h>
89#include <math.h>
90#include <netdb.h>
91#include <signal.h>
92#include <stdio.h>
93#include <stdlib.h>
94#include <string.h>
95#include <sysexits.h>
96#include <termios.h>
97#include <unistd.h>
98
99#define	INADDR_LEN	((int)sizeof(in_addr_t))
100#define	TIMEVAL_LEN	((int)sizeof(struct timeval))
101#define	MASK_LEN	(ICMP_MASKLEN - ICMP_MINLEN)
102#define	TS_LEN		(ICMP_TSLEN - ICMP_MINLEN)
103#define	DEFDATALEN	64		/* default data length */
104#define	FLOOD_BACKOFF	20000		/* usecs to back off if F_FLOOD mode */
105					/* runs out of buffer space */
106#define	MAXIPLEN	(sizeof(struct ip) + MAX_IPOPTLEN)
107#define	MAXICMPLEN	(ICMP_ADVLENMIN + MAX_IPOPTLEN)
108#define	MINICMPLEN	ICMP_MINLEN
109#define	MAXWAIT		10		/* max seconds to wait for response */
110#define	MAXALARM	(60 * 60)	/* max seconds for alarm timeout */
111#define	MAXTOS		255
112
113#define	A(bit)		rcvd_tbl[(bit)>>3]	/* identify byte in array */
114#define	B(bit)		(1 << ((bit) & 0x07))	/* identify bit in byte */
115#define	SET(bit)	(A(bit) |= B(bit))
116#define	CLR(bit)	(A(bit) &= (~B(bit)))
117#define	TST(bit)	(A(bit) & B(bit))
118
119/* various options */
120int options;
121#define	F_FLOOD		0x0001
122#define	F_INTERVAL	0x0002
123#define	F_NUMERIC	0x0004
124#define	F_PINGFILLED	0x0008
125#define	F_QUIET		0x0010
126#define	F_RROUTE	0x0020
127#define	F_SO_DEBUG	0x0040
128#define	F_SO_DONTROUTE	0x0080
129#define	F_VERBOSE	0x0100
130#define	F_QUIET2	0x0200
131#define	F_NOLOOP	0x0400
132#define	F_MTTL		0x0800
133#define	F_MIF		0x1000
134#define	F_AUDIBLE	0x2000
135#ifdef IPSEC
136#ifdef IPSEC_POLICY_IPSEC
137#define F_POLICY	0x4000
138#endif /*IPSEC_POLICY_IPSEC*/
139#endif /*IPSEC*/
140#define	F_TTL		0x8000
141#define	F_MISSED	0x10000
142#define	F_ONCE		0x20000
143#define	F_HDRINCL	0x40000
144#define	F_MASK		0x80000
145#define	F_TIME		0x100000
146
147/*
148 * MAX_DUP_CHK is the number of bits in received table, i.e. the maximum
149 * number of received sequence numbers we can keep track of.  Change 128
150 * to 8192 for complete accuracy...
151 */
152#define	MAX_DUP_CHK	(8 * 128)
153int mx_dup_ck = MAX_DUP_CHK;
154char rcvd_tbl[MAX_DUP_CHK / 8];
155
156struct sockaddr_in whereto;	/* who to ping */
157int datalen = DEFDATALEN;
158int maxpayload;
159int s;				/* socket file descriptor */
160u_char outpackhdr[IP_MAXPACKET], *outpack;
161char BBELL = '\a';		/* characters written for MISSED and AUDIBLE */
162char BSPACE = '\b';		/* characters written for flood */
163char DOT = '.';
164char *hostname;
165char *shostname;
166int ident;			/* process id to identify our packets */
167int uid;			/* cached uid for micro-optimization */
168u_char icmp_type = ICMP_ECHO;
169u_char icmp_type_rsp = ICMP_ECHOREPLY;
170int timeoffset = 0;
171int phdr_len = 0;
172
173/* counters */
174long nmissedmax;		/* max value of ntransmitted - nreceived - 1 */
175long npackets;			/* max packets to transmit */
176long nreceived;			/* # of packets we got back */
177long nrepeats;			/* number of duplicates */
178long ntransmitted;		/* sequence # for outbound packets = #sent */
179int interval = 1000;		/* interval between packets, ms */
180
181/* timing */
182int timing;			/* flag to do timing */
183double tmin = 999999999.0;	/* minimum round trip time */
184double tmax = 0.0;		/* maximum round trip time */
185double tsum = 0.0;		/* sum of all times, for doing average */
186double tsumsq = 0.0;		/* sum of all times squared, for std. dev. */
187
188volatile sig_atomic_t finish_up;  /* nonzero if we've been told to finish up */
189int reset_kerninfo;
190volatile sig_atomic_t siginfo_p;
191
192static void fill(char *, char *);
193static u_short in_cksum(u_short *, int);
194static void check_status(void);
195static void finish(void) __dead2;
196static void pinger(void);
197static char *pr_addr(struct in_addr);
198static char *pr_ntime(n_time);
199static void pr_icmph(struct icmp *);
200static void pr_iph(struct ip *);
201static void pr_pack(char *, int, struct sockaddr_in *, struct timeval *);
202static void pr_retip(struct ip *);
203static void status(int);
204static void stopit(int);
205static void tvsub(struct timeval *, struct timeval *);
206static void usage(void) __dead2;
207
208int
209main(argc, argv)
210	int argc;
211	char *const *argv;
212{
213	struct sockaddr_in from, sock_in;
214	struct in_addr ifaddr;
215	struct timeval last, intvl;
216	struct iovec iov;
217	struct ip *ip;
218	struct msghdr msg;
219	struct sigaction si_sa;
220	struct termios ts;
221	size_t sz;
222	u_char *datap, packet[IP_MAXPACKET];
223	char *ep, *source, *target, *payload;
224	struct hostent *hp;
225#ifdef IPSEC_POLICY_IPSEC
226	char *policy_in, *policy_out;
227#endif
228	struct sockaddr_in *to;
229	double t;
230	u_long alarmtimeout, ultmp;
231	int almost_done, ch, df, hold, i, mib[4], packlen, preload, sockerrno,
232	    tos, ttl;
233	char ctrl[CMSG_SPACE(sizeof(struct timeval))];
234	char hnamebuf[MAXHOSTNAMELEN], snamebuf[MAXHOSTNAMELEN];
235#ifdef IP_OPTIONS
236	char rspace[MAX_IPOPTLEN];	/* record route space */
237#endif
238	unsigned char loop, mttl;
239
240	payload = source = NULL;
241#ifdef IPSEC_POLICY_IPSEC
242	policy_in = policy_out = NULL;
243#endif
244
245	/*
246	 * Do the stuff that we need root priv's for *first*, and
247	 * then drop our setuid bit.  Save error reporting for
248	 * after arg parsing.
249	 */
250	s = socket(AF_INET, SOCK_RAW, IPPROTO_ICMP);
251	sockerrno = errno;
252
253	setuid(getuid());
254	uid = getuid();
255
256	alarmtimeout = df = preload = tos = 0;
257
258	outpack = outpackhdr + sizeof(struct ip);
259	while ((ch = getopt(argc, argv,
260		"Aac:DdfI:i:Ll:M:m:nop:QqRrS:s:T:t:vz:"
261#ifdef IPSEC
262#ifdef IPSEC_POLICY_IPSEC
263		"P:"
264#endif /*IPSEC_POLICY_IPSEC*/
265#endif /*IPSEC*/
266		)) != -1)
267	{
268		switch(ch) {
269		case 'A':
270			options |= F_MISSED;
271			break;
272		case 'a':
273			options |= F_AUDIBLE;
274			break;
275		case 'c':
276			ultmp = strtoul(optarg, &ep, 0);
277			if (*ep || ep == optarg || ultmp > LONG_MAX || !ultmp)
278				errx(EX_USAGE,
279				    "invalid count of packets to transmit: `%s'",
280				    optarg);
281			npackets = ultmp;
282			break;
283		case 'D':
284			options |= F_HDRINCL;
285			df = 1;
286			break;
287		case 'd':
288			options |= F_SO_DEBUG;
289			break;
290		case 'f':
291			if (uid) {
292				errno = EPERM;
293				err(EX_NOPERM, "-f flag");
294			}
295			options |= F_FLOOD;
296			setbuf(stdout, (char *)NULL);
297			break;
298		case 'I':		/* multicast interface */
299			if (inet_aton(optarg, &ifaddr) == 0)
300				errx(EX_USAGE,
301				    "invalid multicast interface: `%s'",
302				    optarg);
303			options |= F_MIF;
304			break;
305		case 'i':		/* wait between sending packets */
306			t = strtod(optarg, &ep) * 1000.0;
307			if (*ep || ep == optarg || t > (double)INT_MAX)
308				errx(EX_USAGE, "invalid timing interval: `%s'",
309				    optarg);
310			options |= F_INTERVAL;
311			interval = (int)t;
312			if (uid && interval < 1000) {
313				errno = EPERM;
314				err(EX_NOPERM, "-i interval too short");
315			}
316			break;
317		case 'L':
318			options |= F_NOLOOP;
319			loop = 0;
320			break;
321		case 'l':
322			ultmp = strtoul(optarg, &ep, 0);
323			if (*ep || ep == optarg || ultmp > INT_MAX)
324				errx(EX_USAGE,
325				    "invalid preload value: `%s'", optarg);
326			if (uid) {
327				errno = EPERM;
328				err(EX_NOPERM, "-l flag");
329			}
330			preload = ultmp;
331			break;
332		case 'M':
333			switch(optarg[0]) {
334			case 'M':
335			case 'm':
336				options |= F_MASK;
337				break;
338			case 'T':
339			case 't':
340				options |= F_TIME;
341				break;
342			default:
343				errx(EX_USAGE, "invalid message: `%c'", optarg[0]);
344				break;
345			}
346			break;
347		case 'm':		/* TTL */
348			ultmp = strtoul(optarg, &ep, 0);
349			if (*ep || ep == optarg || ultmp > MAXTTL)
350				errx(EX_USAGE, "invalid TTL: `%s'", optarg);
351			ttl = ultmp;
352			options |= F_TTL;
353			break;
354		case 'n':
355			options |= F_NUMERIC;
356			break;
357		case 'o':
358			options |= F_ONCE;
359			break;
360#ifdef IPSEC
361#ifdef IPSEC_POLICY_IPSEC
362		case 'P':
363			options |= F_POLICY;
364			if (!strncmp("in", optarg, 2))
365				policy_in = strdup(optarg);
366			else if (!strncmp("out", optarg, 3))
367				policy_out = strdup(optarg);
368			else
369				errx(1, "invalid security policy");
370			break;
371#endif /*IPSEC_POLICY_IPSEC*/
372#endif /*IPSEC*/
373		case 'p':		/* fill buffer with user pattern */
374			options |= F_PINGFILLED;
375			payload = optarg;
376			break;
377		case 'Q':
378			options |= F_QUIET2;
379			break;
380		case 'q':
381			options |= F_QUIET;
382			break;
383		case 'R':
384			options |= F_RROUTE;
385			break;
386		case 'r':
387			options |= F_SO_DONTROUTE;
388			break;
389		case 'S':
390			source = optarg;
391			break;
392		case 's':		/* size of packet to send */
393			ultmp = strtoul(optarg, &ep, 0);
394			if (*ep || ep == optarg)
395				errx(EX_USAGE, "invalid packet size: `%s'",
396				    optarg);
397			if (uid != 0 && ultmp > DEFDATALEN) {
398				errno = EPERM;
399				err(EX_NOPERM,
400				    "packet size too large: %lu > %u",
401				    ultmp, DEFDATALEN);
402			}
403			datalen = ultmp;
404			break;
405		case 'T':		/* multicast TTL */
406			ultmp = strtoul(optarg, &ep, 0);
407			if (*ep || ep == optarg || ultmp > MAXTTL)
408				errx(EX_USAGE, "invalid multicast TTL: `%s'",
409				    optarg);
410			mttl = ultmp;
411			options |= F_MTTL;
412			break;
413		case 't':
414			alarmtimeout = strtoul(optarg, &ep, 0);
415			if ((alarmtimeout < 1) || (alarmtimeout == ULONG_MAX))
416				errx(EX_USAGE, "invalid timeout: `%s'",
417				    optarg);
418			if (alarmtimeout > MAXALARM)
419				errx(EX_USAGE, "invalid timeout: `%s' > %d",
420				    optarg, MAXALARM);
421			alarm((int)alarmtimeout);
422			break;
423		case 'v':
424			options |= F_VERBOSE;
425			break;
426		case 'z':
427			options |= F_HDRINCL;
428			ultmp = strtoul(optarg, &ep, 0);
429			if (*ep || ep == optarg || ultmp > MAXTOS)
430				errx(EX_USAGE, "invalid TOS: `%s'", optarg);
431			tos = ultmp;
432			break;
433		default:
434			usage();
435		}
436	}
437
438	if (argc - optind != 1)
439		usage();
440	target = argv[optind];
441
442	maxpayload = IP_MAXPACKET - sizeof(struct ip) - MINICMPLEN;
443	if (options & F_MASK) {
444		icmp_type = ICMP_MASKREQ;
445		icmp_type_rsp = ICMP_MASKREPLY;
446		timeoffset = MASK_LEN;
447		datalen -= MASK_LEN;
448		phdr_len += MASK_LEN;
449		if (!(options & F_QUIET))
450			(void)printf("ICMP_MASKREQ\n");
451	}
452	if (options & F_TIME) {
453		icmp_type = ICMP_TSTAMP;
454		icmp_type_rsp = ICMP_TSTAMPREPLY;
455		timeoffset = TS_LEN;
456		datalen -= TS_LEN;
457		phdr_len += TS_LEN;
458		if (!(options & F_QUIET))
459			(void)printf("ICMP_TSTAMP\n");
460	}
461	if (options & F_RROUTE)
462		maxpayload -= MAX_IPOPTLEN;
463	if (datalen > maxpayload)
464		errx(EX_USAGE, "packet size too large: %d > %d", datalen,
465		    maxpayload);
466	datap = &outpack[MINICMPLEN + phdr_len];
467	if (options & F_PINGFILLED) {
468		fill((char *)datap, payload);
469	}
470	if (source) {
471		bzero((char *)&sock_in, sizeof(sock_in));
472		sock_in.sin_family = AF_INET;
473		if (inet_aton(source, &sock_in.sin_addr) != 0) {
474			shostname = source;
475		} else {
476			hp = gethostbyname2(source, AF_INET);
477			if (!hp)
478				errx(EX_NOHOST, "cannot resolve %s: %s",
479				    source, hstrerror(h_errno));
480
481			sock_in.sin_len = sizeof sock_in;
482			if ((unsigned)hp->h_length > sizeof(sock_in.sin_addr) ||
483			    hp->h_length < 0)
484				errx(1, "gethostbyname2: illegal address");
485			memcpy(&sock_in.sin_addr, hp->h_addr_list[0],
486			    sizeof(sock_in.sin_addr));
487			(void)strncpy(snamebuf, hp->h_name,
488			    sizeof(snamebuf) - 1);
489			snamebuf[sizeof(snamebuf) - 1] = '\0';
490			shostname = snamebuf;
491		}
492		if (bind(s, (struct sockaddr *)&sock_in, sizeof sock_in) == -1)
493			err(1, "bind");
494	}
495
496	bzero(&whereto, sizeof(whereto));
497	to = &whereto;
498	to->sin_family = AF_INET;
499	to->sin_len = sizeof *to;
500	if (inet_aton(target, &to->sin_addr) != 0) {
501		hostname = target;
502	} else {
503		hp = gethostbyname2(target, AF_INET);
504		if (!hp)
505			errx(EX_NOHOST, "cannot resolve %s: %s",
506			    target, hstrerror(h_errno));
507
508		if ((unsigned)hp->h_length > sizeof(to->sin_addr))
509			errx(1, "gethostbyname2 returned an illegal address");
510		memcpy(&to->sin_addr, hp->h_addr_list[0], sizeof to->sin_addr);
511		(void)strncpy(hnamebuf, hp->h_name, sizeof(hnamebuf) - 1);
512		hnamebuf[sizeof(hnamebuf) - 1] = '\0';
513		hostname = hnamebuf;
514	}
515
516	if (options & F_FLOOD && options & F_INTERVAL)
517		errx(EX_USAGE, "-f and -i: incompatible options");
518
519	if (options & F_FLOOD && IN_MULTICAST(ntohl(to->sin_addr.s_addr)))
520		errx(EX_USAGE,
521		    "-f flag cannot be used with multicast destination");
522	if (options & (F_MIF | F_NOLOOP | F_MTTL)
523	    && !IN_MULTICAST(ntohl(to->sin_addr.s_addr)))
524		errx(EX_USAGE,
525		    "-I, -L, -T flags cannot be used with unicast destination");
526
527	if (datalen - TIMEVAL_LEN >= TIMEVAL_LEN) {	/* can we time transfer */
528		datalen -= TIMEVAL_LEN;
529		phdr_len += TIMEVAL_LEN;
530		timing = 1;
531	}
532	packlen = MAXIPLEN + MAXICMPLEN + datalen;
533	packlen = packlen > IP_MAXPACKET ? IP_MAXPACKET : packlen;
534
535	if (!(options & F_PINGFILLED))
536		for (i = phdr_len; i < datalen; ++i)
537			*datap++ = i;
538
539	ident = getpid() & 0xFFFF;
540
541	if (s < 0) {
542		errno = sockerrno;
543		err(EX_OSERR, "socket");
544	}
545	hold = 1;
546	if (options & F_SO_DEBUG)
547		(void)setsockopt(s, SOL_SOCKET, SO_DEBUG, (char *)&hold,
548		    sizeof(hold));
549	if (options & F_SO_DONTROUTE)
550		(void)setsockopt(s, SOL_SOCKET, SO_DONTROUTE, (char *)&hold,
551		    sizeof(hold));
552#ifdef IPSEC
553#ifdef IPSEC_POLICY_IPSEC
554	if (options & F_POLICY) {
555		char *buf;
556		if (policy_in != NULL) {
557			buf = ipsec_set_policy(policy_in, strlen(policy_in));
558			if (buf == NULL)
559				errx(EX_CONFIG, "%s", ipsec_strerror());
560			if (setsockopt(s, IPPROTO_IP, IP_IPSEC_POLICY,
561					buf, ipsec_get_policylen(buf)) < 0)
562				err(EX_CONFIG,
563				    "ipsec policy cannot be configured");
564			free(buf);
565		}
566
567		if (policy_out != NULL) {
568			buf = ipsec_set_policy(policy_out, strlen(policy_out));
569			if (buf == NULL)
570				errx(EX_CONFIG, "%s", ipsec_strerror());
571			if (setsockopt(s, IPPROTO_IP, IP_IPSEC_POLICY,
572					buf, ipsec_get_policylen(buf)) < 0)
573				err(EX_CONFIG,
574				    "ipsec policy cannot be configured");
575			free(buf);
576		}
577	}
578#endif /*IPSEC_POLICY_IPSEC*/
579#endif /*IPSEC*/
580
581	if (options & F_HDRINCL) {
582		ip = (struct ip*)outpackhdr;
583		if (!(options & (F_TTL | F_MTTL))) {
584			mib[0] = CTL_NET;
585			mib[1] = PF_INET;
586			mib[2] = IPPROTO_IP;
587			mib[3] = IPCTL_DEFTTL;
588			sz = sizeof(ttl);
589			if (sysctl(mib, 4, &ttl, &sz, NULL, 0) == -1)
590				err(1, "sysctl(net.inet.ip.ttl)");
591		}
592		setsockopt(s, IPPROTO_IP, IP_HDRINCL, &hold, sizeof(hold));
593		ip->ip_v = IPVERSION;
594		ip->ip_hl = sizeof(struct ip) >> 2;
595		ip->ip_tos = tos;
596		ip->ip_id = 0;
597		ip->ip_off = df ? IP_DF : 0;
598		ip->ip_ttl = ttl;
599		ip->ip_p = IPPROTO_ICMP;
600		ip->ip_src.s_addr = source ? sock_in.sin_addr.s_addr : INADDR_ANY;
601		ip->ip_dst = to->sin_addr;
602        }
603	/* record route option */
604	if (options & F_RROUTE) {
605#ifdef IP_OPTIONS
606		bzero(rspace, sizeof(rspace));
607		rspace[IPOPT_OPTVAL] = IPOPT_RR;
608		rspace[IPOPT_OLEN] = sizeof(rspace) - 1;
609		rspace[IPOPT_OFFSET] = IPOPT_MINOFF;
610		rspace[sizeof(rspace) - 1] = IPOPT_EOL;
611		if (setsockopt(s, IPPROTO_IP, IP_OPTIONS, rspace,
612		    sizeof(rspace)) < 0)
613			err(EX_OSERR, "setsockopt IP_OPTIONS");
614#else
615		errx(EX_UNAVAILABLE,
616		    "record route not available in this implementation");
617#endif /* IP_OPTIONS */
618	}
619
620	if (options & F_TTL) {
621		if (setsockopt(s, IPPROTO_IP, IP_TTL, &ttl,
622		    sizeof(ttl)) < 0) {
623			err(EX_OSERR, "setsockopt IP_TTL");
624		}
625	}
626	if (options & F_NOLOOP) {
627		if (setsockopt(s, IPPROTO_IP, IP_MULTICAST_LOOP, &loop,
628		    sizeof(loop)) < 0) {
629			err(EX_OSERR, "setsockopt IP_MULTICAST_LOOP");
630		}
631	}
632	if (options & F_MTTL) {
633		if (setsockopt(s, IPPROTO_IP, IP_MULTICAST_TTL, &mttl,
634		    sizeof(mttl)) < 0) {
635			err(EX_OSERR, "setsockopt IP_MULTICAST_TTL");
636		}
637	}
638	if (options & F_MIF) {
639		if (setsockopt(s, IPPROTO_IP, IP_MULTICAST_IF, &ifaddr,
640		    sizeof(ifaddr)) < 0) {
641			err(EX_OSERR, "setsockopt IP_MULTICAST_IF");
642		}
643	}
644#ifdef SO_TIMESTAMP
645	{ int on = 1;
646	if (setsockopt(s, SOL_SOCKET, SO_TIMESTAMP, &on, sizeof(on)) < 0)
647		err(EX_OSERR, "setsockopt SO_TIMESTAMP");
648	}
649#endif
650
651	/*
652	 * When pinging the broadcast address, you can get a lot of answers.
653	 * Doing something so evil is useful if you are trying to stress the
654	 * ethernet, or just want to fill the arp cache to get some stuff for
655	 * /etc/ethers.  But beware: RFC 1122 allows hosts to ignore broadcast
656	 * or multicast pings if they wish.
657	 */
658
659	/*
660	 * XXX receive buffer needs undetermined space for mbuf overhead
661	 * as well.
662	 */
663	hold = IP_MAXPACKET + 128;
664	(void)setsockopt(s, SOL_SOCKET, SO_RCVBUF, (char *)&hold,
665	    sizeof(hold));
666	if (uid == 0)
667		(void)setsockopt(s, SOL_SOCKET, SO_SNDBUF, (char *)&hold,
668		    sizeof(hold));
669
670	if (to->sin_family == AF_INET) {
671		(void)printf("PING %s (%s)", hostname,
672		    inet_ntoa(to->sin_addr));
673		if (source)
674			(void)printf(" from %s", shostname);
675		(void)printf(": %d data bytes\n", datalen);
676	} else
677		(void)printf("PING %s: %d data bytes\n", hostname, datalen);
678
679	/*
680	 * Use sigaction() instead of signal() to get unambiguous semantics,
681	 * in particular with SA_RESTART not set.
682	 */
683
684	sigemptyset(&si_sa.sa_mask);
685	si_sa.sa_flags = 0;
686
687	si_sa.sa_handler = stopit;
688	if (sigaction(SIGINT, &si_sa, 0) == -1) {
689		err(EX_OSERR, "sigaction SIGINT");
690	}
691
692	si_sa.sa_handler = status;
693	if (sigaction(SIGINFO, &si_sa, 0) == -1) {
694		err(EX_OSERR, "sigaction");
695	}
696
697        if (alarmtimeout > 0) {
698		si_sa.sa_handler = stopit;
699		if (sigaction(SIGALRM, &si_sa, 0) == -1)
700			err(EX_OSERR, "sigaction SIGALRM");
701        }
702
703	bzero(&msg, sizeof(msg));
704	msg.msg_name = (caddr_t)&from;
705	msg.msg_iov = &iov;
706	msg.msg_iovlen = 1;
707#ifdef SO_TIMESTAMP
708	msg.msg_control = (caddr_t)ctrl;
709#endif
710	iov.iov_base = packet;
711	iov.iov_len = packlen;
712
713	if (tcgetattr(STDOUT_FILENO, &ts) != -1) {
714		reset_kerninfo = !(ts.c_lflag & NOKERNINFO);
715		ts.c_lflag |= NOKERNINFO;
716		tcsetattr(STDOUT_FILENO, TCSANOW, &ts);
717	}
718
719	if (preload == 0)
720		pinger();		/* send the first ping */
721	else {
722		if (npackets != 0 && preload > npackets)
723			preload = npackets;
724		while (preload--)	/* fire off them quickies */
725			pinger();
726	}
727	(void)gettimeofday(&last, NULL);
728
729	if (options & F_FLOOD) {
730		intvl.tv_sec = 0;
731		intvl.tv_usec = 10000;
732	} else {
733		intvl.tv_sec = interval / 1000;
734		intvl.tv_usec = interval % 1000 * 1000;
735	}
736
737	almost_done = 0;
738	while (!finish_up) {
739		struct timeval now, timeout;
740		fd_set rfds;
741		int cc, n;
742
743		check_status();
744		if ((unsigned)s >= FD_SETSIZE)
745			errx(EX_OSERR, "descriptor too large");
746		FD_ZERO(&rfds);
747		FD_SET(s, &rfds);
748		(void)gettimeofday(&now, NULL);
749		timeout.tv_sec = last.tv_sec + intvl.tv_sec - now.tv_sec;
750		timeout.tv_usec = last.tv_usec + intvl.tv_usec - now.tv_usec;
751		while (timeout.tv_usec < 0) {
752			timeout.tv_usec += 1000000;
753			timeout.tv_sec--;
754		}
755		while (timeout.tv_usec >= 1000000) {
756			timeout.tv_usec -= 1000000;
757			timeout.tv_sec++;
758		}
759		if (timeout.tv_sec < 0)
760			timeout.tv_sec = timeout.tv_usec = 0;
761		n = select(s + 1, &rfds, NULL, NULL, &timeout);
762		if (n < 0)
763			continue;	/* Must be EINTR. */
764		if (n == 1) {
765			struct timeval *tv = NULL;
766#ifdef SO_TIMESTAMP
767			struct cmsghdr *cmsg = (struct cmsghdr *)&ctrl;
768
769			msg.msg_controllen = sizeof(ctrl);
770#endif
771			msg.msg_namelen = sizeof(from);
772			if ((cc = recvmsg(s, &msg, 0)) < 0) {
773				if (errno == EINTR)
774					continue;
775				warn("recvmsg");
776				continue;
777			}
778#ifdef SO_TIMESTAMP
779			if (cmsg->cmsg_level == SOL_SOCKET &&
780			    cmsg->cmsg_type == SCM_TIMESTAMP &&
781			    cmsg->cmsg_len == CMSG_LEN(sizeof *tv)) {
782				/* Copy to avoid alignment problems: */
783				memcpy(&now, CMSG_DATA(cmsg), sizeof(now));
784				tv = &now;
785			}
786#endif
787			if (tv == NULL) {
788				(void)gettimeofday(&now, NULL);
789				tv = &now;
790			}
791			pr_pack((char *)packet, cc, &from, tv);
792			if ((options & F_ONCE && nreceived) ||
793			    (npackets && nreceived >= npackets))
794				break;
795		}
796		if (n == 0 || options & F_FLOOD) {
797			if (!npackets || ntransmitted < npackets)
798				pinger();
799			else {
800				if (almost_done)
801					break;
802				almost_done = 1;
803				intvl.tv_usec = 0;
804				if (nreceived) {
805					intvl.tv_sec = 2 * tmax / 1000;
806					if (!intvl.tv_sec)
807						intvl.tv_sec = 1;
808				} else
809					intvl.tv_sec = MAXWAIT;
810			}
811			(void)gettimeofday(&last, NULL);
812			if (ntransmitted - nreceived - 1 > nmissedmax) {
813				nmissedmax = ntransmitted - nreceived - 1;
814				if (options & F_MISSED)
815					(void)write(STDOUT_FILENO, &BBELL, 1);
816			}
817		}
818	}
819	finish();
820	/* NOTREACHED */
821	exit(0);	/* Make the compiler happy */
822}
823
824/*
825 * stopit --
826 *	Set the global bit that causes the main loop to quit.
827 * Do NOT call finish() from here, since finish() does far too much
828 * to be called from a signal handler.
829 */
830void
831stopit(sig)
832	int sig __unused;
833{
834
835	finish_up = 1;
836}
837
838/*
839 * pinger --
840 *	Compose and transmit an ICMP ECHO REQUEST packet.  The IP packet
841 * will be added on by the kernel.  The ID field is our UNIX process ID,
842 * and the sequence number is an ascending integer.  The first TIMEVAL_LEN
843 * bytes of the data portion are used to hold a UNIX "timeval" struct in
844 * host byte-order, to compute the round-trip time.
845 */
846static void
847pinger(void)
848{
849	struct timeval now;
850	struct ip *ip;
851	struct icmp *icp;
852	int cc, i;
853	u_char *packet;
854
855	packet = outpack;
856	icp = (struct icmp *)outpack;
857	icp->icmp_type = icmp_type;
858	icp->icmp_code = 0;
859	icp->icmp_cksum = 0;
860	icp->icmp_seq = htons(ntransmitted);
861	icp->icmp_id = ident;			/* ID */
862
863	CLR(ntransmitted % mx_dup_ck);
864
865	if ((options & F_TIME) || timing) {
866		(void)gettimeofday(&now, NULL);
867
868		if (options & F_TIME)
869			icp->icmp_otime = htonl((now.tv_sec % (24*60*60))
870				* 1000 + now.tv_usec / 1000);
871		if (timing)
872			bcopy((void *)&now, (void *)&outpack[MINICMPLEN + timeoffset],
873				sizeof(struct timeval));
874	}
875
876	cc = MINICMPLEN + datalen + timeoffset;
877
878	/* compute ICMP checksum here */
879	icp->icmp_cksum = in_cksum((u_short *)icp, cc);
880
881	if (options & F_HDRINCL) {
882		cc += sizeof(struct ip);
883		ip = (struct ip *)outpackhdr;
884		ip->ip_len = cc;
885		ip->ip_sum = in_cksum((u_short *)outpackhdr, cc);
886		packet = outpackhdr;
887	}
888	i = sendto(s, (char *)packet, cc, 0, (struct sockaddr *)&whereto,
889	    sizeof(whereto));
890
891	if (i < 0 || i != cc)  {
892		if (i < 0) {
893			if (options & F_FLOOD && errno == ENOBUFS) {
894				usleep(FLOOD_BACKOFF);
895				return;
896			}
897			warn("sendto");
898		} else {
899			warn("%s: partial write: %d of %d bytes",
900			     hostname, i, cc);
901		}
902	}
903	ntransmitted++;
904	if (!(options & F_QUIET) && options & F_FLOOD)
905		(void)write(STDOUT_FILENO, &DOT, 1);
906}
907
908/*
909 * pr_pack --
910 *	Print out the packet, if it came from us.  This logic is necessary
911 * because ALL readers of the ICMP socket get a copy of ALL ICMP packets
912 * which arrive ('tis only fair).  This permits multiple copies of this
913 * program to be run without having intermingled output (or statistics!).
914 */
915static void
916pr_pack(buf, cc, from, tv)
917	char *buf;
918	int cc;
919	struct sockaddr_in *from;
920	struct timeval *tv;
921{
922	struct in_addr ina;
923	u_char *cp, *dp;
924	struct icmp *icp;
925	struct ip *ip;
926	const void *tp;
927	double triptime;
928	int dupflag, hlen, i, j, seq;
929	static int old_rrlen;
930	static char old_rr[MAX_IPOPTLEN];
931
932	/* Check the IP header */
933	ip = (struct ip *)buf;
934	hlen = ip->ip_hl << 2;
935	if (cc < hlen + ICMP_MINLEN) {
936		if (options & F_VERBOSE)
937			warn("packet too short (%d bytes) from %s", cc,
938			     inet_ntoa(from->sin_addr));
939		return;
940	}
941
942	/* Now the ICMP part */
943	cc -= hlen;
944	icp = (struct icmp *)(buf + hlen);
945	if (icp->icmp_type == icmp_type_rsp) {
946		if (icp->icmp_id != ident)
947			return;			/* 'Twas not our ECHO */
948		++nreceived;
949		triptime = 0.0;
950		if (timing) {
951			struct timeval tv1;
952#ifndef icmp_data
953			tp = &icp->icmp_ip;
954#else
955			tp = icp->icmp_data;
956#endif
957			tp+=timeoffset;
958
959			/* Copy to avoid alignment problems: */
960			memcpy(&tv1, tp, sizeof(tv1));
961			tvsub(tv, &tv1);
962 			triptime = ((double)tv->tv_sec) * 1000.0 +
963 			    ((double)tv->tv_usec) / 1000.0;
964			tsum += triptime;
965			tsumsq += triptime * triptime;
966			if (triptime < tmin)
967				tmin = triptime;
968			if (triptime > tmax)
969				tmax = triptime;
970		}
971
972		seq = ntohs(icp->icmp_seq);
973
974		if (TST(seq % mx_dup_ck)) {
975			++nrepeats;
976			--nreceived;
977			dupflag = 1;
978		} else {
979			SET(seq % mx_dup_ck);
980			dupflag = 0;
981		}
982
983		if (options & F_QUIET)
984			return;
985
986		if (options & F_FLOOD)
987			(void)write(STDOUT_FILENO, &BSPACE, 1);
988		else {
989			(void)printf("%d bytes from %s: icmp_seq=%u", cc,
990			   inet_ntoa(*(struct in_addr *)&from->sin_addr.s_addr),
991			   seq);
992			(void)printf(" ttl=%d", ip->ip_ttl);
993			if (timing)
994				(void)printf(" time=%.3f ms", triptime);
995			if (dupflag)
996				(void)printf(" (DUP!)");
997			if (options & F_AUDIBLE)
998				(void)write(STDOUT_FILENO, &BBELL, 1);
999			if (options & F_MASK) {
1000				/* Just prentend this cast isn't ugly */
1001				(void)printf(" mask=%s",
1002					pr_addr(*(struct in_addr *)&(icp->icmp_mask)));
1003			}
1004			if (options & F_TIME) {
1005				(void)printf(" tso=%s", pr_ntime(icp->icmp_otime));
1006				(void)printf(" tsr=%s", pr_ntime(icp->icmp_rtime));
1007				(void)printf(" tst=%s", pr_ntime(icp->icmp_ttime));
1008			}
1009			/* check the data */
1010			cp = (u_char*)&icp->icmp_data[phdr_len];
1011			dp = &outpack[MINICMPLEN + phdr_len];
1012			for (i = phdr_len; i < datalen; ++i, ++cp, ++dp) {
1013				if (*cp != *dp) {
1014	(void)printf("\nwrong data byte #%d should be 0x%x but was 0x%x",
1015	    i, *dp, *cp);
1016					(void)printf("\ncp:");
1017					cp = (u_char*)&icp->icmp_data[0];
1018					for (i = 0; i < datalen; ++i, ++cp) {
1019						if ((i % 32) == 8)
1020							(void)printf("\n\t");
1021						(void)printf("%x ", *cp);
1022					}
1023					(void)printf("\ndp:");
1024					cp = &outpack[MINICMPLEN];
1025					for (i = 0; i < datalen; ++i, ++cp) {
1026						if ((i % 32) == 8)
1027							(void)printf("\n\t");
1028						(void)printf("%x ", *cp);
1029					}
1030					break;
1031				}
1032			}
1033		}
1034	} else {
1035		/*
1036		 * We've got something other than an ECHOREPLY.
1037		 * See if it's a reply to something that we sent.
1038		 * We can compare IP destination, protocol,
1039		 * and ICMP type and ID.
1040		 *
1041		 * Only print all the error messages if we are running
1042		 * as root to avoid leaking information not normally
1043		 * available to those not running as root.
1044		 */
1045#ifndef icmp_data
1046		struct ip *oip = &icp->icmp_ip;
1047#else
1048		struct ip *oip = (struct ip *)icp->icmp_data;
1049#endif
1050		struct icmp *oicmp = (struct icmp *)(oip + 1);
1051
1052		if (((options & F_VERBOSE) && uid == 0) ||
1053		    (!(options & F_QUIET2) &&
1054		     (oip->ip_dst.s_addr == whereto.sin_addr.s_addr) &&
1055		     (oip->ip_p == IPPROTO_ICMP) &&
1056		     (oicmp->icmp_type == ICMP_ECHO) &&
1057		     (oicmp->icmp_id == ident))) {
1058		    (void)printf("%d bytes from %s: ", cc,
1059			pr_addr(from->sin_addr));
1060		    pr_icmph(icp);
1061		} else
1062		    return;
1063	}
1064
1065	/* Display any IP options */
1066	cp = (u_char *)buf + sizeof(struct ip);
1067
1068	for (; hlen > (int)sizeof(struct ip); --hlen, ++cp)
1069		switch (*cp) {
1070		case IPOPT_EOL:
1071			hlen = 0;
1072			break;
1073		case IPOPT_LSRR:
1074		case IPOPT_SSRR:
1075			(void)printf(*cp == IPOPT_LSRR ?
1076			    "\nLSRR: " : "\nSSRR: ");
1077			j = cp[IPOPT_OLEN] - IPOPT_MINOFF + 1;
1078			hlen -= 2;
1079			cp += 2;
1080			if (j >= INADDR_LEN &&
1081			    j <= hlen - (int)sizeof(struct ip)) {
1082				for (;;) {
1083					bcopy(++cp, &ina.s_addr, INADDR_LEN);
1084					if (ina.s_addr == 0)
1085						(void)printf("\t0.0.0.0");
1086					else
1087						(void)printf("\t%s",
1088						     pr_addr(ina));
1089					hlen -= INADDR_LEN;
1090					cp += INADDR_LEN - 1;
1091					j -= INADDR_LEN;
1092					if (j < INADDR_LEN)
1093						break;
1094					(void)putchar('\n');
1095				}
1096			} else
1097				(void)printf("\t(truncated route)\n");
1098			break;
1099		case IPOPT_RR:
1100			j = cp[IPOPT_OLEN];		/* get length */
1101			i = cp[IPOPT_OFFSET];		/* and pointer */
1102			hlen -= 2;
1103			cp += 2;
1104			if (i > j)
1105				i = j;
1106			i = i - IPOPT_MINOFF + 1;
1107			if (i < 0 || i > (hlen - (int)sizeof(struct ip))) {
1108				old_rrlen = 0;
1109				continue;
1110			}
1111			if (i == old_rrlen
1112			    && !bcmp((char *)cp, old_rr, i)
1113			    && !(options & F_FLOOD)) {
1114				(void)printf("\t(same route)");
1115				hlen -= i;
1116				cp += i;
1117				break;
1118			}
1119			old_rrlen = i;
1120			bcopy((char *)cp, old_rr, i);
1121			(void)printf("\nRR: ");
1122			if (i >= INADDR_LEN &&
1123			    i <= hlen - (int)sizeof(struct ip)) {
1124				for (;;) {
1125					bcopy(++cp, &ina.s_addr, INADDR_LEN);
1126					if (ina.s_addr == 0)
1127						(void)printf("\t0.0.0.0");
1128					else
1129						(void)printf("\t%s",
1130						     pr_addr(ina));
1131					hlen -= INADDR_LEN;
1132					cp += INADDR_LEN - 1;
1133					i -= INADDR_LEN;
1134					if (i < INADDR_LEN)
1135						break;
1136					(void)putchar('\n');
1137				}
1138			} else
1139				(void)printf("\t(truncated route)");
1140			break;
1141		case IPOPT_NOP:
1142			(void)printf("\nNOP");
1143			break;
1144		default:
1145			(void)printf("\nunknown option %x", *cp);
1146			break;
1147		}
1148	if (!(options & F_FLOOD)) {
1149		(void)putchar('\n');
1150		(void)fflush(stdout);
1151	}
1152}
1153
1154/*
1155 * in_cksum --
1156 *	Checksum routine for Internet Protocol family headers (C Version)
1157 */
1158u_short
1159in_cksum(addr, len)
1160	u_short *addr;
1161	int len;
1162{
1163	int nleft, sum;
1164	u_short *w;
1165	union {
1166		u_short	us;
1167		u_char	uc[2];
1168	} last;
1169	u_short answer;
1170
1171	nleft = len;
1172	sum = 0;
1173	w = addr;
1174
1175	/*
1176	 * Our algorithm is simple, using a 32 bit accumulator (sum), we add
1177	 * sequential 16 bit words to it, and at the end, fold back all the
1178	 * carry bits from the top 16 bits into the lower 16 bits.
1179	 */
1180	while (nleft > 1)  {
1181		sum += *w++;
1182		nleft -= 2;
1183	}
1184
1185	/* mop up an odd byte, if necessary */
1186	if (nleft == 1) {
1187		last.uc[0] = *(u_char *)w;
1188		last.uc[1] = 0;
1189		sum += last.us;
1190	}
1191
1192	/* add back carry outs from top 16 bits to low 16 bits */
1193	sum = (sum >> 16) + (sum & 0xffff);	/* add hi 16 to low 16 */
1194	sum += (sum >> 16);			/* add carry */
1195	answer = ~sum;				/* truncate to 16 bits */
1196	return(answer);
1197}
1198
1199/*
1200 * tvsub --
1201 *	Subtract 2 timeval structs:  out = out - in.  Out is assumed to
1202 * be >= in.
1203 */
1204static void
1205tvsub(out, in)
1206	struct timeval *out, *in;
1207{
1208
1209	if ((out->tv_usec -= in->tv_usec) < 0) {
1210		--out->tv_sec;
1211		out->tv_usec += 1000000;
1212	}
1213	out->tv_sec -= in->tv_sec;
1214}
1215
1216/*
1217 * status --
1218 *	Print out statistics when SIGINFO is received.
1219 */
1220
1221static void
1222status(sig)
1223	int sig __unused;
1224{
1225
1226	siginfo_p = 1;
1227}
1228
1229static void
1230check_status()
1231{
1232
1233	if (siginfo_p) {
1234		siginfo_p = 0;
1235		(void)fprintf(stderr,
1236	"\r%ld/%ld packets received (%.0f%%) %.3f min / %.3f avg / %.3f max\n",
1237		    nreceived, ntransmitted,
1238		    ntransmitted ? nreceived * 100.0 / ntransmitted : 0.0,
1239		    nreceived ? tmin : 0.0,
1240		    nreceived + nrepeats ? tsum / (nreceived + nrepeats) : tsum,
1241		    tmax);
1242	}
1243}
1244
1245/*
1246 * finish --
1247 *	Print out statistics, and give up.
1248 */
1249static void
1250finish()
1251{
1252	struct termios ts;
1253
1254	(void)signal(SIGINT, SIG_IGN);
1255	(void)signal(SIGALRM, SIG_IGN);
1256	(void)putchar('\n');
1257	(void)fflush(stdout);
1258	(void)printf("--- %s ping statistics ---\n", hostname);
1259	(void)printf("%ld packets transmitted, ", ntransmitted);
1260	(void)printf("%ld packets received, ", nreceived);
1261	if (nrepeats)
1262		(void)printf("+%ld duplicates, ", nrepeats);
1263	if (ntransmitted) {
1264		if (nreceived > ntransmitted)
1265			(void)printf("-- somebody's printing up packets!");
1266		else
1267			(void)printf("%d%% packet loss",
1268			    (int)(((ntransmitted - nreceived) * 100) /
1269			    ntransmitted));
1270	}
1271	(void)putchar('\n');
1272	if (nreceived && timing) {
1273		double n = nreceived + nrepeats;
1274		double avg = tsum / n;
1275		double vari = tsumsq / n - avg * avg;
1276		(void)printf(
1277		    "round-trip min/avg/max/stddev = %.3f/%.3f/%.3f/%.3f ms\n",
1278		    tmin, avg, tmax, sqrt(vari));
1279	}
1280	if (reset_kerninfo && tcgetattr(STDOUT_FILENO, &ts) != -1) {
1281		ts.c_lflag &= ~NOKERNINFO;
1282		tcsetattr(STDOUT_FILENO, TCSANOW, &ts);
1283	}
1284
1285	if (nreceived)
1286		exit(0);
1287	else
1288		exit(2);
1289}
1290
1291#ifdef notdef
1292static char *ttab[] = {
1293	"Echo Reply",		/* ip + seq + udata */
1294	"Dest Unreachable",	/* net, host, proto, port, frag, sr + IP */
1295	"Source Quench",	/* IP */
1296	"Redirect",		/* redirect type, gateway, + IP  */
1297	"Echo",
1298	"Time Exceeded",	/* transit, frag reassem + IP */
1299	"Parameter Problem",	/* pointer + IP */
1300	"Timestamp",		/* id + seq + three timestamps */
1301	"Timestamp Reply",	/* " */
1302	"Info Request",		/* id + sq */
1303	"Info Reply"		/* " */
1304};
1305#endif
1306
1307/*
1308 * pr_icmph --
1309 *	Print a descriptive string about an ICMP header.
1310 */
1311static void
1312pr_icmph(icp)
1313	struct icmp *icp;
1314{
1315
1316	switch(icp->icmp_type) {
1317	case ICMP_ECHOREPLY:
1318		(void)printf("Echo Reply\n");
1319		/* XXX ID + Seq + Data */
1320		break;
1321	case ICMP_UNREACH:
1322		switch(icp->icmp_code) {
1323		case ICMP_UNREACH_NET:
1324			(void)printf("Destination Net Unreachable\n");
1325			break;
1326		case ICMP_UNREACH_HOST:
1327			(void)printf("Destination Host Unreachable\n");
1328			break;
1329		case ICMP_UNREACH_PROTOCOL:
1330			(void)printf("Destination Protocol Unreachable\n");
1331			break;
1332		case ICMP_UNREACH_PORT:
1333			(void)printf("Destination Port Unreachable\n");
1334			break;
1335		case ICMP_UNREACH_NEEDFRAG:
1336			(void)printf("frag needed and DF set (MTU %d)\n",
1337					ntohs(icp->icmp_nextmtu));
1338			break;
1339		case ICMP_UNREACH_SRCFAIL:
1340			(void)printf("Source Route Failed\n");
1341			break;
1342		case ICMP_UNREACH_FILTER_PROHIB:
1343			(void)printf("Communication prohibited by filter\n");
1344			break;
1345		default:
1346			(void)printf("Dest Unreachable, Bad Code: %d\n",
1347			    icp->icmp_code);
1348			break;
1349		}
1350		/* Print returned IP header information */
1351#ifndef icmp_data
1352		pr_retip(&icp->icmp_ip);
1353#else
1354		pr_retip((struct ip *)icp->icmp_data);
1355#endif
1356		break;
1357	case ICMP_SOURCEQUENCH:
1358		(void)printf("Source Quench\n");
1359#ifndef icmp_data
1360		pr_retip(&icp->icmp_ip);
1361#else
1362		pr_retip((struct ip *)icp->icmp_data);
1363#endif
1364		break;
1365	case ICMP_REDIRECT:
1366		switch(icp->icmp_code) {
1367		case ICMP_REDIRECT_NET:
1368			(void)printf("Redirect Network");
1369			break;
1370		case ICMP_REDIRECT_HOST:
1371			(void)printf("Redirect Host");
1372			break;
1373		case ICMP_REDIRECT_TOSNET:
1374			(void)printf("Redirect Type of Service and Network");
1375			break;
1376		case ICMP_REDIRECT_TOSHOST:
1377			(void)printf("Redirect Type of Service and Host");
1378			break;
1379		default:
1380			(void)printf("Redirect, Bad Code: %d", icp->icmp_code);
1381			break;
1382		}
1383		(void)printf("(New addr: %s)\n", inet_ntoa(icp->icmp_gwaddr));
1384#ifndef icmp_data
1385		pr_retip(&icp->icmp_ip);
1386#else
1387		pr_retip((struct ip *)icp->icmp_data);
1388#endif
1389		break;
1390	case ICMP_ECHO:
1391		(void)printf("Echo Request\n");
1392		/* XXX ID + Seq + Data */
1393		break;
1394	case ICMP_TIMXCEED:
1395		switch(icp->icmp_code) {
1396		case ICMP_TIMXCEED_INTRANS:
1397			(void)printf("Time to live exceeded\n");
1398			break;
1399		case ICMP_TIMXCEED_REASS:
1400			(void)printf("Frag reassembly time exceeded\n");
1401			break;
1402		default:
1403			(void)printf("Time exceeded, Bad Code: %d\n",
1404			    icp->icmp_code);
1405			break;
1406		}
1407#ifndef icmp_data
1408		pr_retip(&icp->icmp_ip);
1409#else
1410		pr_retip((struct ip *)icp->icmp_data);
1411#endif
1412		break;
1413	case ICMP_PARAMPROB:
1414		(void)printf("Parameter problem: pointer = 0x%02x\n",
1415		    icp->icmp_hun.ih_pptr);
1416#ifndef icmp_data
1417		pr_retip(&icp->icmp_ip);
1418#else
1419		pr_retip((struct ip *)icp->icmp_data);
1420#endif
1421		break;
1422	case ICMP_TSTAMP:
1423		(void)printf("Timestamp\n");
1424		/* XXX ID + Seq + 3 timestamps */
1425		break;
1426	case ICMP_TSTAMPREPLY:
1427		(void)printf("Timestamp Reply\n");
1428		/* XXX ID + Seq + 3 timestamps */
1429		break;
1430	case ICMP_IREQ:
1431		(void)printf("Information Request\n");
1432		/* XXX ID + Seq */
1433		break;
1434	case ICMP_IREQREPLY:
1435		(void)printf("Information Reply\n");
1436		/* XXX ID + Seq */
1437		break;
1438	case ICMP_MASKREQ:
1439		(void)printf("Address Mask Request\n");
1440		break;
1441	case ICMP_MASKREPLY:
1442		(void)printf("Address Mask Reply\n");
1443		break;
1444	case ICMP_ROUTERADVERT:
1445		(void)printf("Router Advertisement\n");
1446		break;
1447	case ICMP_ROUTERSOLICIT:
1448		(void)printf("Router Solicitation\n");
1449		break;
1450	default:
1451		(void)printf("Bad ICMP type: %d\n", icp->icmp_type);
1452	}
1453}
1454
1455/*
1456 * pr_iph --
1457 *	Print an IP header with options.
1458 */
1459static void
1460pr_iph(ip)
1461	struct ip *ip;
1462{
1463	u_char *cp;
1464	int hlen;
1465
1466	hlen = ip->ip_hl << 2;
1467	cp = (u_char *)ip + 20;		/* point to options */
1468
1469	(void)printf("Vr HL TOS  Len   ID Flg  off TTL Pro  cks      Src      Dst\n");
1470	(void)printf(" %1x  %1x  %02x %04x %04x",
1471	    ip->ip_v, ip->ip_hl, ip->ip_tos, ntohs(ip->ip_len),
1472	    ntohs(ip->ip_id));
1473	(void)printf("   %1lx %04lx",
1474	    (u_long) (ntohl(ip->ip_off) & 0xe000) >> 13,
1475	    (u_long) ntohl(ip->ip_off) & 0x1fff);
1476	(void)printf("  %02x  %02x %04x", ip->ip_ttl, ip->ip_p,
1477							    ntohs(ip->ip_sum));
1478	(void)printf(" %s ", inet_ntoa(*(struct in_addr *)&ip->ip_src.s_addr));
1479	(void)printf(" %s ", inet_ntoa(*(struct in_addr *)&ip->ip_dst.s_addr));
1480	/* dump any option bytes */
1481	while (hlen-- > 20) {
1482		(void)printf("%02x", *cp++);
1483	}
1484	(void)putchar('\n');
1485}
1486
1487/*
1488 * pr_addr --
1489 *	Return an ascii host address as a dotted quad and optionally with
1490 * a hostname.
1491 */
1492static char *
1493pr_addr(ina)
1494	struct in_addr ina;
1495{
1496	struct hostent *hp;
1497	static char buf[16 + 3 + MAXHOSTNAMELEN];
1498
1499	if ((options & F_NUMERIC) ||
1500	    !(hp = gethostbyaddr((char *)&ina, 4, AF_INET)))
1501		return inet_ntoa(ina);
1502	else
1503		(void)snprintf(buf, sizeof(buf), "%s (%s)", hp->h_name,
1504		    inet_ntoa(ina));
1505	return(buf);
1506}
1507
1508/*
1509 * pr_retip --
1510 *	Dump some info on a returned (via ICMP) IP packet.
1511 */
1512static void
1513pr_retip(ip)
1514	struct ip *ip;
1515{
1516	u_char *cp;
1517	int hlen;
1518
1519	pr_iph(ip);
1520	hlen = ip->ip_hl << 2;
1521	cp = (u_char *)ip + hlen;
1522
1523	if (ip->ip_p == 6)
1524		(void)printf("TCP: from port %u, to port %u (decimal)\n",
1525		    (*cp * 256 + *(cp + 1)), (*(cp + 2) * 256 + *(cp + 3)));
1526	else if (ip->ip_p == 17)
1527		(void)printf("UDP: from port %u, to port %u (decimal)\n",
1528			(*cp * 256 + *(cp + 1)), (*(cp + 2) * 256 + *(cp + 3)));
1529}
1530
1531static char *
1532pr_ntime (n_time time)
1533{
1534	static char buf[10];
1535	int h, m, s;
1536
1537	s = ntohl(time) / 1000;
1538	h = s / 60 / 60;
1539	m = (s % (60 * 60)) / 60;
1540	s = (s % (60 * 60)) % 60;
1541
1542	(void)snprintf(buf, sizeof(buf), "%02d:%02d:%02d", h, m, s);
1543
1544	return (buf);
1545}
1546
1547static void
1548fill(bp, patp)
1549	char *bp, *patp;
1550{
1551	char *cp;
1552	int pat[16];
1553	u_int ii, jj, kk;
1554
1555	for (cp = patp; *cp; cp++) {
1556		if (!isxdigit(*cp))
1557			errx(EX_USAGE,
1558			    "patterns must be specified as hex digits");
1559
1560	}
1561	ii = sscanf(patp,
1562	    "%2x%2x%2x%2x%2x%2x%2x%2x%2x%2x%2x%2x%2x%2x%2x%2x",
1563	    &pat[0], &pat[1], &pat[2], &pat[3], &pat[4], &pat[5], &pat[6],
1564	    &pat[7], &pat[8], &pat[9], &pat[10], &pat[11], &pat[12],
1565	    &pat[13], &pat[14], &pat[15]);
1566
1567	if (ii > 0)
1568		for (kk = 0; kk <= maxpayload - (phdr_len + ii); kk += ii)
1569			for (jj = 0; jj < ii; ++jj)
1570				bp[jj + kk] = pat[jj];
1571	if (!(options & F_QUIET)) {
1572		(void)printf("PATTERN: 0x");
1573		for (jj = 0; jj < ii; ++jj)
1574			(void)printf("%02x", bp[jj] & 0xFF);
1575		(void)printf("\n");
1576	}
1577}
1578
1579#if defined(IPSEC) && defined(IPSEC_POLICY_IPSEC)
1580#define	SECOPT		" [-P policy]"
1581#else
1582#define	SECOPT		""
1583#endif
1584static void
1585usage()
1586{
1587
1588	(void)fprintf(stderr, "%s\n%s\n%s\n%s\n%s\n%s\n",
1589"usage: ping [-AaDdfnoQqRrv] [-c count] [-i wait] [-l preload] [-M mask | time]",
1590"            [-m ttl]" SECOPT " [-p pattern] [-S src_addr] [-s packetsize]",
1591"            [-t timeout] [-z tos] host",
1592"       ping [-AaDdfLnoQqRrv] [-c count] [-I iface] [-i wait] [-l preload]",
1593"            [-M mask | time] [-m ttl]" SECOPT " [-p pattern] [-S src_addr]",
1594"            [-s packetsize] [-T ttl] [-t timeout] [-z tos] mcast-group");
1595	exit(EX_USAGE);
1596}
1597