xref: /illumos-gate/usr/src/cmd/truss/print.c (revision 8361acf58a302751348aac091ab09484f3ecfb8c)
1 /*
2  * CDDL HEADER START
3  *
4  * The contents of this file are subject to the terms of the
5  * Common Development and Distribution License (the "License").
6  * You may not use this file except in compliance with the License.
7  *
8  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9  * or http://www.opensolaris.org/os/licensing.
10  * See the License for the specific language governing permissions
11  * and limitations under the License.
12  *
13  * When distributing Covered Code, include this CDDL HEADER in each
14  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15  * If applicable, add the following below this CDDL HEADER, with the
16  * fields enclosed by brackets "[]" replaced with your own identifying
17  * information: Portions Copyright [yyyy] [name of copyright owner]
18  *
19  * CDDL HEADER END
20  */
21 
22 /*
23  * Copyright (c) 1989, 2010, Oracle and/or its affiliates. All rights reserved.
24  * Copyright 2020 Joyent, Inc.
25  * Copyright 2022 Garrett D'Amore
26  * Copyright 2022 Oxide Computer Company
27  */
28 
29 /*	Copyright (c) 1984, 1986, 1987, 1988, 1989 AT&T	*/
30 /*	  All Rights Reserved	*/
31 
32 /* Copyright (c) 2013, OmniTI Computer Consulting, Inc. All rights reserved. */
33 
34 #define	_SYSCALL32	/* make 32-bit compat headers visible */
35 
36 #include <stdio.h>
37 #include <stdlib.h>
38 #include <unistd.h>
39 #include <string.h>
40 #include <signal.h>
41 #include <termio.h>
42 #include <stddef.h>
43 #include <limits.h>
44 #include <fcntl.h>
45 #include <ctype.h>
46 #include <sys/types.h>
47 #include <sys/mman.h>
48 #include <sys/resource.h>
49 #include <sys/ulimit.h>
50 #include <sys/utsname.h>
51 #include <sys/kstat.h>
52 #include <sys/modctl.h>
53 #include <sys/acl.h>
54 #include <stropts.h>
55 #include <sys/isa_defs.h>
56 #include <sys/systeminfo.h>
57 #include <sys/cladm.h>
58 #include <sys/lwp.h>
59 #include <bsm/audit.h>
60 #include <libproc.h>
61 #include <priv.h>
62 #include <sys/aio.h>
63 #include <sys/aiocb.h>
64 #include <sys/corectl.h>
65 #include <sys/cpc_impl.h>
66 #include <sys/priocntl.h>
67 #include <sys/tspriocntl.h>
68 #include <sys/iapriocntl.h>
69 #include <sys/rtpriocntl.h>
70 #include <sys/fsspriocntl.h>
71 #include <sys/fxpriocntl.h>
72 #include <sys/proc.h>
73 #include <netdb.h>
74 #include <nss_dbdefs.h>
75 #include <sys/socketvar.h>
76 #include <netinet/in.h>
77 #include <netinet/tcp.h>
78 #include <netinet/udp.h>
79 #include <netinet/sctp.h>
80 #include <netinet/ip_mroute.h>
81 #include <netinet/icmp6.h>
82 #include <net/route.h>
83 #include <sys/utrap.h>
84 #include <sys/lgrp_user.h>
85 #include <sys/door.h>
86 #include <sys/tsol/tndb.h>
87 #include <sys/rctl.h>
88 #include <sys/rctl_impl.h>
89 #include <sys/fork.h>
90 #include <sys/task.h>
91 #include <sys/random.h>
92 #include "ramdata.h"
93 #include "print.h"
94 #include "proto.h"
95 #include "systable.h"
96 
97 void grow(private_t *, int nbyte);
98 
99 #define	GROW(nb) if (pri->sys_leng + (nb) >= pri->sys_ssize) grow(pri, (nb))
100 
101 
102 /*ARGSUSED*/
103 void
104 prt_nov(private_t *pri, int raw, long val)	/* print nothing */
105 {
106 }
107 
108 /*ARGSUSED*/
109 void
110 prt_dec(private_t *pri, int raw, long val)	/* print as decimal */
111 {
112 	GROW(24);
113 	if (data_model == PR_MODEL_ILP32)
114 		pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng,
115 		    "%d", (int)val);
116 	else
117 		pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng,
118 		    "%ld", val);
119 }
120 
121 /*ARGSUSED*/
122 void
123 prt_uns(private_t *pri, int raw, long val)	/* print as unsigned decimal */
124 {
125 	GROW(24);
126 	if (data_model == PR_MODEL_ILP32)
127 		pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng,
128 		    "%u", (int)val);
129 	else
130 		pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng,
131 		    "%lu", val);
132 }
133 
134 /* print as unsigned decimal, except for -1 */
135 void
136 prt_un1(private_t *pri, int raw, long val)
137 {
138 	if ((int)val == -1)
139 		prt_dec(pri, raw, val);
140 	else
141 		prt_uns(pri, raw, val);
142 }
143 
144 /*ARGSUSED*/
145 void
146 prt_oct(private_t *pri, int raw, long val)	/* print as octal */
147 {
148 	GROW(24);
149 	if (data_model == PR_MODEL_ILP32)
150 		pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng,
151 		    "%#o", (int)val);
152 	else
153 		pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng,
154 		    "%#lo", val);
155 }
156 
157 /*ARGSUSED*/
158 void
159 prt_hex(private_t *pri, int raw, long val)	/* print as hexadecimal */
160 {
161 	GROW(20);
162 	if (data_model == PR_MODEL_ILP32)
163 		pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng,
164 		    "0x%.8X", (int)val);
165 	else
166 		pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng,
167 		    "0x%.8lX", val);
168 }
169 
170 /* print as hexadecimal (half size) */
171 /*ARGSUSED*/
172 void
173 prt_hhx(private_t *pri, int raw, long val)
174 {
175 	GROW(20);
176 	if (data_model == PR_MODEL_ILP32)
177 		pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng,
178 		    "0x%.4X", (int)val);
179 	else
180 		pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng,
181 		    "0x%.4lX", val);
182 }
183 
184 /* print as decimal if small, else hexadecimal */
185 /*ARGSUSED*/
186 void
187 prt_dex(private_t *pri, int raw, long val)
188 {
189 	if (val & 0xff000000)
190 		prt_hex(pri, 0, val);
191 	else
192 		prt_dec(pri, 0, val);
193 }
194 
195 /* print long long offset */
196 /*ARGSUSED*/
197 void
198 prt_llo(private_t *pri, int raw, long val1, long val2)
199 {
200 	int hival;
201 	int loval;
202 
203 #ifdef	_LONG_LONG_LTOH
204 	hival = (int)val2;
205 	loval = (int)val1;
206 #else
207 	hival = (int)val1;
208 	loval = (int)val2;
209 #endif
210 
211 	if (hival == 0) {
212 		prt_dex(pri, 0, loval);
213 	} else {
214 		GROW(18);
215 		pri->sys_leng +=
216 		    sprintf(pri->sys_string + pri->sys_leng, "0x%.8X%.8X",
217 		    hival, loval);
218 	}
219 }
220 
221 void
222 escape_string(private_t *pri, const char *s)
223 {
224 	/*
225 	 * We want to avoid outputting unprintable characters that may
226 	 * destroy the user's terminal.  So we do one pass to find any
227 	 * unprintable characters, size the array appropriately, and
228 	 * then walk each character by hand.  Those that are unprintable
229 	 * are replaced by a hex escape (\xNN).  We also escape quotes for
230 	 * completeness.
231 	 */
232 	int i, unprintable, quotes;
233 	size_t len = strlen(s);
234 	for (i = 0, unprintable = 0, quotes = 0; i < len; i++) {
235 		if (!isprint(s[i]))
236 			unprintable++;
237 		if (s[i] == '"')
238 			quotes++;
239 	}
240 
241 	GROW(len + 3 * unprintable + quotes + 2);
242 
243 	pri->sys_string[pri->sys_leng++] = '"';
244 	for (i = 0; i < len; i++) {
245 		if (s[i] == '"')
246 			pri->sys_string[pri->sys_leng++] = '\\';
247 
248 		if (isprint(s[i])) {
249 			pri->sys_string[pri->sys_leng++] = s[i];
250 		} else {
251 			pri->sys_leng += sprintf(pri->sys_string +
252 			    pri->sys_leng, "\\x%02x", (uint8_t)s[i]);
253 		}
254 	}
255 	pri->sys_string[pri->sys_leng++] = '"';
256 }
257 
258 void
259 prt_stg(private_t *pri, int raw, long val)	/* print as string */
260 {
261 	char *s = raw? NULL : fetchstring(pri, (long)val, PATH_MAX);
262 
263 	if (s == NULL)
264 		prt_hex(pri, 0, val);
265 	else
266 		escape_string(pri, s);
267 }
268 
269 /* print as string returned from syscall */
270 void
271 prt_rst(private_t *pri, int raw, long val)
272 {
273 	char *s = (raw || pri->Errno)? NULL :
274 	    fetchstring(pri, (long)val, PATH_MAX);
275 
276 	if (s == NULL)
277 		prt_hex(pri, 0, val);
278 	else {
279 		GROW((int)strlen(s) + 2);
280 		pri->sys_leng += snprintf(pri->sys_string + pri->sys_leng,
281 		    pri->sys_ssize - pri->sys_leng, "\"%s\"", s);
282 	}
283 }
284 
285 /* print contents of readlink() buffer */
286 void
287 prt_rlk(private_t *pri, int raw, long val)
288 {
289 	char *s = (raw || pri->Errno || pri->Rval1 <= 0)? NULL :
290 	    fetchstring(pri, (long)val,
291 	    (pri->Rval1 > PATH_MAX)? PATH_MAX : (int)pri->Rval1);
292 
293 	if (s == NULL)
294 		prt_hex(pri, 0, val);
295 	else {
296 		GROW((int)strlen(s) + 2);
297 		pri->sys_leng += snprintf(pri->sys_string + pri->sys_leng,
298 		    pri->sys_ssize - pri->sys_leng, "\"%s\"", s);
299 	}
300 }
301 
302 void
303 prt_ioc(private_t *pri, int raw, long val)	/* print ioctl code */
304 {
305 	const char *s = raw? NULL : ioctlname(pri, (int)val);
306 
307 	if (s == NULL)
308 		prt_hex(pri, 0, val);
309 	else
310 		outstring(pri, s);
311 }
312 
313 void
314 prt_ioa(private_t *pri, int raw, long val)	/* print ioctl argument */
315 {
316 	const char *s;
317 
318 	/* cheating -- look at the ioctl() code */
319 	switch (pri->sys_args[1]) {
320 
321 	/* kstat ioctl()s */
322 	case KSTAT_IOC_READ:
323 	case KSTAT_IOC_WRITE:
324 		if (data_model == PR_MODEL_ILP32)
325 			prt_stg(pri, raw,
326 			    val + offsetof(kstat32_t, ks_name[0]));
327 		else
328 			prt_stg(pri, raw,
329 			    val + offsetof(kstat_t, ks_name[0]));
330 		break;
331 
332 	/* streams ioctl()s */
333 	case I_LOOK:
334 		prt_rst(pri, raw, val);
335 		break;
336 	case I_PUSH:
337 	case I_FIND:
338 		prt_stg(pri, raw, val);
339 		break;
340 	case I_LINK:
341 	case I_UNLINK:
342 	case I_SENDFD:
343 		prt_dec(pri, 0, val);
344 		break;
345 	case I_SRDOPT:
346 		if (raw || (s = strrdopt(val)) == NULL)
347 			prt_dec(pri, 0, val);
348 		else
349 			outstring(pri, s);
350 		break;
351 	case I_SETSIG:
352 		if (raw || (s = strevents(pri, val)) == NULL)
353 			prt_hex(pri, 0, val);
354 		else
355 			outstring(pri, s);
356 		break;
357 	case I_FLUSH:
358 		if (raw || (s = strflush(val)) == NULL)
359 			prt_dec(pri, 0, val);
360 		else
361 			outstring(pri, s);
362 		break;
363 
364 	/* tty ioctl()s */
365 	case TCSBRK:
366 	case TCXONC:
367 	case TCFLSH:
368 	case TCDSET:
369 		prt_dec(pri, 0, val);
370 		break;
371 
372 	default:
373 		prt_hex(pri, 0, val);
374 		break;
375 	}
376 }
377 
378 void
379 prt_pip(private_t *pri, int raw, long val)	/* print pipe code */
380 {
381 	const char *s = NULL;
382 
383 	if (!raw) {
384 		switch (val) {
385 		case O_CLOEXEC:
386 			s = "O_CLOEXEC";
387 			break;
388 		case O_NONBLOCK:
389 			s = "O_NONBLOCK";
390 			break;
391 		case O_CLOEXEC|O_NONBLOCK:
392 			s = "O_CLOEXEC|O_NONBLOCK";
393 			break;
394 		}
395 	}
396 
397 	if (s == NULL)
398 		prt_dex(pri, 0, val);
399 	else
400 		outstring(pri, s);
401 }
402 
403 void
404 prt_pfd(private_t *pri, int raw, long val)	/* print pipe code */
405 {
406 	int fds[2];
407 	char str[32];
408 
409 	/* the fds only have meaning if the return value is 0 */
410 	if (!raw &&
411 	    pri->Rval1 >= 0 &&
412 	    Pread(Proc, fds, sizeof (fds), (long)val) == sizeof (fds)) {
413 		(void) snprintf(str, sizeof (str), "[%d,%d]", fds[0], fds[1]);
414 		outstring(pri, str);
415 	} else {
416 		prt_hex(pri, 0, val);
417 	}
418 }
419 
420 void
421 prt_fcn(private_t *pri, int raw, long val)	/* print fcntl code */
422 {
423 	const char *s = raw? NULL : fcntlname(val);
424 
425 	if (s == NULL)
426 		prt_dec(pri, 0, val);
427 	else
428 		outstring(pri, s);
429 }
430 
431 void
432 prt_s86(private_t *pri, int raw, long val)	/* print sysi86 code */
433 {
434 
435 	const char *s = raw? NULL : si86name(val);
436 
437 	if (s == NULL)
438 		prt_dec(pri, 0, val);
439 	else
440 		outstring(pri, s);
441 }
442 
443 void
444 prt_uts(private_t *pri, int raw, long val)	/* print utssys code */
445 {
446 	const char *s = raw? NULL : utscode(val);
447 
448 	if (s == NULL)
449 		prt_dec(pri, 0, val);
450 	else
451 		outstring(pri, s);
452 }
453 
454 void
455 prt_msc(private_t *pri, int raw, long val)	/* print msgsys command */
456 {
457 	const char *s = raw? NULL : msgcmd(val);
458 
459 	if (s == NULL)
460 		prt_dec(pri, 0, val);
461 	else
462 		outstring(pri, s);
463 }
464 
465 void
466 prt_msf(private_t *pri, int raw, long val)	/* print msgsys flags */
467 {
468 	const char *s = raw? NULL : msgflags(pri, (int)val);
469 
470 	if (s == NULL)
471 		prt_oct(pri, 0, val);
472 	else
473 		outstring(pri, s);
474 }
475 
476 void
477 prt_smc(private_t *pri, int raw, long val)	/* print semsys command */
478 {
479 	const char *s = raw? NULL : semcmd(val);
480 
481 	if (s == NULL)
482 		prt_dec(pri, 0, val);
483 	else
484 		outstring(pri, s);
485 }
486 
487 void
488 prt_sef(private_t *pri, int raw, long val)	/* print semsys flags */
489 {
490 	const char *s = raw? NULL : semflags(pri, (int)val);
491 
492 	if (s == NULL)
493 		prt_oct(pri, 0, val);
494 	else
495 		outstring(pri, s);
496 }
497 
498 void
499 prt_shc(private_t *pri, int raw, long val)	/* print shmsys command */
500 {
501 	const char *s = raw? NULL : shmcmd(val);
502 
503 	if (s == NULL)
504 		prt_dec(pri, 0, val);
505 	else
506 		outstring(pri, s);
507 }
508 
509 void
510 prt_shf(private_t *pri, int raw, long val)	/* print shmsys flags */
511 {
512 	const char *s = raw? NULL : shmflags(pri, (int)val);
513 
514 	if (s == NULL)
515 		prt_oct(pri, 0, val);
516 	else
517 		outstring(pri, s);
518 }
519 
520 void
521 prt_sfs(private_t *pri, int raw, long val)	/* print sysfs code */
522 {
523 	const char *s = raw? NULL : sfsname(val);
524 
525 	if (s == NULL)
526 		prt_dec(pri, 0, val);
527 	else
528 		outstring(pri, s);
529 }
530 
531 void
532 prt_opn(private_t *pri, int raw, long val)	/* print open code */
533 {
534 	const char *s = raw? NULL : openarg(pri, val);
535 
536 	if (s == NULL)
537 		prt_oct(pri, 0, val);
538 	else
539 		outstring(pri, s);
540 }
541 
542 void
543 prt_sig(private_t *pri, int raw, long val)	/* print signal name */
544 {
545 	const char *s = raw? NULL : signame(pri, (int)val);
546 
547 	if (s == NULL)
548 		prt_hex(pri, 0, val);
549 	else
550 		outstring(pri, s);
551 }
552 
553 void
554 prt_smf(private_t *pri, int raw, long val) /* print streams message flags */
555 {
556 	switch (val) {
557 	case 0:
558 		prt_dec(pri, 0, val);
559 		break;
560 	case RS_HIPRI:
561 		if (raw)
562 			prt_hhx(pri, 0, val);
563 		else
564 			outstring(pri, "RS_HIPRI");
565 		break;
566 	default:
567 		prt_hhx(pri, 0, val);
568 		break;
569 	}
570 }
571 
572 void
573 prt_mtf(private_t *pri, int raw, long val)	/* print mount flags */
574 {
575 	const char *s = raw? NULL : mountflags(pri, val);
576 
577 	if (s == NULL)
578 		prt_hex(pri, 0, val);
579 	else
580 		outstring(pri, s);
581 }
582 
583 void
584 prt_mft(private_t *pri, int raw, long val) /* print mount file system type */
585 {
586 	if (val >= 0 && val < 256)
587 		prt_dec(pri, 0, val);
588 	else if (raw)
589 		prt_hex(pri, 0, val);
590 	else
591 		prt_stg(pri, raw, val);
592 }
593 
594 #define	ISREAD(code) \
595 	((code) == SYS_read || (code) == SYS_pread || (code) == SYS_pread64 || \
596 	(code) == SYS_recv || (code) == SYS_recvfrom)
597 #define	ISWRITE(code) \
598 	((code) == SYS_write || (code) == SYS_pwrite || \
599 	(code) == SYS_pwrite64 || (code) == SYS_send || (code) == SYS_sendto)
600 
601 /* print contents of read() or write() I/O buffer */
602 void
603 prt_iob(private_t *pri, int raw, long val)
604 {
605 	const lwpstatus_t *Lsp = pri->lwpstat;
606 	int syscall = Lsp->pr_what;
607 	int fdp1 = pri->sys_args[0] + 1;
608 	ssize_t nbyte = ISWRITE(syscall)? pri->sys_args[2] :
609 	    (pri->Errno? 0 : pri->Rval1);
610 	int elsewhere = FALSE;		/* TRUE iff dumped elsewhere */
611 	char buffer[IOBSIZE];
612 
613 	pri->iob_buf[0] = '\0';
614 
615 	if (Lsp->pr_why == PR_SYSEXIT && nbyte > IOBSIZE) {
616 		if (ISREAD(syscall))
617 			elsewhere = prismember(&readfd, fdp1);
618 		else
619 			elsewhere = prismember(&writefd, fdp1);
620 	}
621 
622 	if (nbyte <= 0 || elsewhere)
623 		prt_hex(pri, 0, val);
624 	else {
625 		int nb = nbyte > IOBSIZE? IOBSIZE : (int)nbyte;
626 
627 		if (Pread(Proc, buffer, (size_t)nb, (long)val) != nb)
628 			prt_hex(pri, 0, val);
629 		else {
630 			pri->iob_buf[0] = '"';
631 			showbytes(buffer, nb, pri->iob_buf + 1);
632 			(void) strlcat(pri->iob_buf,
633 			    (nb == nbyte)?
634 			    (const char *)"\"" : (const char *)"\"..",
635 			    sizeof (pri->iob_buf));
636 			if (raw)
637 				prt_hex(pri, 0, val);
638 			else
639 				outstring(pri, pri->iob_buf);
640 		}
641 	}
642 }
643 #undef	ISREAD
644 #undef	ISWRITE
645 
646 void
647 prt_idt(private_t *pri, int raw, long val) /* print idtype_t, waitid() arg */
648 {
649 	const char *s = raw? NULL : idtype_enum(pri, val);
650 
651 	if (s == NULL)
652 		prt_dec(pri, 0, val);
653 	else
654 		outstring(pri, s);
655 }
656 
657 void
658 prt_wop(private_t *pri, int raw, long val)	/* print waitid() options */
659 {
660 	const char *s = raw? NULL : woptions(pri, (int)val);
661 
662 	if (s == NULL)
663 		prt_oct(pri, 0, val);
664 	else
665 		outstring(pri, s);
666 }
667 
668 void
669 prt_whn(private_t *pri, int raw, long val) /* print lseek() whence argument */
670 {
671 	const char *s = raw? NULL : whencearg(val);
672 
673 	if (s == NULL)
674 		prt_dec(pri, 0, val);
675 	else
676 		outstring(pri, s);
677 }
678 
679 /*ARGSUSED*/
680 void
681 prt_spm(private_t *pri, int raw, long val)	/* print sigprocmask argument */
682 {
683 	const char *s = NULL;
684 
685 	if (!raw) {
686 		switch (val) {
687 		case SIG_BLOCK:		s = "SIG_BLOCK";	break;
688 		case SIG_UNBLOCK:	s = "SIG_UNBLOCK";	break;
689 		case SIG_SETMASK:	s = "SIG_SETMASK";	break;
690 		}
691 	}
692 
693 	if (s == NULL)
694 		prt_dec(pri, 0, val);
695 	else
696 		outstring(pri, s);
697 }
698 
699 const char *
700 mmap_protect(private_t *pri, long arg)
701 {
702 	char *str = pri->code_buf;
703 
704 	if (arg & ~(PROT_READ|PROT_WRITE|PROT_EXEC))
705 		return ((char *)NULL);
706 
707 	if (arg == PROT_NONE)
708 		return ("PROT_NONE");
709 
710 	*str = '\0';
711 	if (arg & PROT_READ)
712 		(void) strlcat(str, "|PROT_READ", sizeof (pri->code_buf));
713 	if (arg & PROT_WRITE)
714 		(void) strlcat(str, "|PROT_WRITE", sizeof (pri->code_buf));
715 	if (arg & PROT_EXEC)
716 		(void) strlcat(str, "|PROT_EXEC", sizeof (pri->code_buf));
717 	return ((const char *)(str + 1));
718 }
719 
720 const char *
721 mmap_type(private_t *pri, long arg)
722 {
723 	char *str = pri->code_buf;
724 	size_t used;
725 
726 #define	CBSIZE	sizeof (pri->code_buf)
727 	switch (arg & MAP_TYPE) {
728 	case MAP_SHARED:
729 		used = strlcpy(str, "MAP_SHARED", CBSIZE);
730 		break;
731 	case MAP_PRIVATE:
732 		used = strlcpy(str, "MAP_PRIVATE", CBSIZE);
733 		break;
734 	default:
735 		used = snprintf(str, CBSIZE, "%ld", arg&MAP_TYPE);
736 		break;
737 	}
738 
739 	arg &= ~(_MAP_NEW|MAP_TYPE);
740 
741 	if (arg & ~(MAP_FIXED|MAP_RENAME|MAP_NORESERVE|MAP_ANON|MAP_ALIGN|
742 	    MAP_TEXT|MAP_INITDATA|MAP_32BIT))
743 		(void) snprintf(str + used, sizeof (pri->code_buf) - used,
744 		    "|0x%lX", arg);
745 	else {
746 		if (arg & MAP_FIXED)
747 			(void) strlcat(str, "|MAP_FIXED", CBSIZE);
748 		if (arg & MAP_RENAME)
749 			(void) strlcat(str, "|MAP_RENAME", CBSIZE);
750 		if (arg & MAP_NORESERVE)
751 			(void) strlcat(str, "|MAP_NORESERVE", CBSIZE);
752 		if (arg & MAP_ANON)
753 			(void) strlcat(str, "|MAP_ANON", CBSIZE);
754 		if (arg & MAP_ALIGN)
755 			(void) strlcat(str, "|MAP_ALIGN", CBSIZE);
756 		if (arg & MAP_TEXT)
757 			(void) strlcat(str, "|MAP_TEXT", CBSIZE);
758 		if (arg & MAP_INITDATA)
759 			(void) strlcat(str, "|MAP_INITDATA", CBSIZE);
760 		if (arg & MAP_32BIT)
761 			(void) strlcat(str, "|MAP_32BIT", CBSIZE);
762 	}
763 
764 	return ((const char *)str);
765 #undef CBSIZE
766 }
767 
768 void
769 prt_mpr(private_t *pri, int raw, long val) /* print mmap()/mprotect() flags */
770 {
771 	const char *s = raw? NULL : mmap_protect(pri, val);
772 
773 	if (s == NULL)
774 		prt_hhx(pri, 0, val);
775 	else
776 		outstring(pri, s);
777 }
778 
779 void
780 prt_mty(private_t *pri, int raw, long val) /* print mmap() mapping type flags */
781 {
782 	const char *s = raw? NULL : mmap_type(pri, val);
783 
784 	if (s == NULL)
785 		prt_hhx(pri, 0, val);
786 	else
787 		outstring(pri, s);
788 }
789 
790 void
791 prt_mob(private_t *pri, int raw, long val) /* print mmapobj() flags */
792 {
793 	if (val == 0)
794 		prt_dec(pri, 0, val);
795 	else if (raw || (val & ~(MMOBJ_PADDING|MMOBJ_INTERPRET)) != 0)
796 		prt_hhx(pri, 0, val);
797 	else {
798 #define	CBSIZE	sizeof (pri->code_buf)
799 		char *s = pri->code_buf;
800 
801 		*s = '\0';
802 		if (val & MMOBJ_PADDING)
803 			(void) strlcat(s, "|MMOBJ_PADDING", CBSIZE);
804 		if (val & MMOBJ_INTERPRET)
805 			(void) strlcat(s, "|MMOBJ_INTERPRET", CBSIZE);
806 		outstring(pri, s + 1);
807 #undef CBSIZE
808 	}
809 }
810 
811 /*ARGSUSED*/
812 void
813 prt_mcf(private_t *pri, int raw, long val)	/* print memcntl() function */
814 {
815 	const char *s = NULL;
816 
817 	if (!raw) {
818 		switch (val) {
819 		case MC_SYNC:		s = "MC_SYNC";		break;
820 		case MC_LOCK:		s = "MC_LOCK";		break;
821 		case MC_UNLOCK:		s = "MC_UNLOCK";	break;
822 		case MC_ADVISE:		s = "MC_ADVISE";	break;
823 		case MC_LOCKAS:		s = "MC_LOCKAS";	break;
824 		case MC_UNLOCKAS:	s = "MC_UNLOCKAS";	break;
825 		case MC_HAT_ADVISE:	s = "MC_HAT_ADVISE";	break;
826 		}
827 	}
828 
829 	if (s == NULL)
830 		prt_dec(pri, 0, val);
831 	else
832 		outstring(pri, s);
833 }
834 
835 void
836 prt_mad(private_t *pri, int raw, long val)	/* print madvise() argument */
837 {
838 	const char *s = NULL;
839 
840 	if (!raw) {
841 		switch (val) {
842 		case MADV_NORMAL:	s = "MADV_NORMAL";	break;
843 		case MADV_RANDOM:	s = "MADV_RANDOM";	break;
844 		case MADV_SEQUENTIAL:	s = "MADV_SEQUENTIAL";	break;
845 		case MADV_WILLNEED:	s = "MADV_WILLNEED";	break;
846 		case MADV_DONTNEED:	s = "MADV_DONTNEED";	break;
847 		case MADV_FREE:		s = "MADV_FREE";	break;
848 		case MADV_ACCESS_DEFAULT: s = "MADV_ACCESS_DEFAULT";	break;
849 		case MADV_ACCESS_LWP:	s = "MADV_ACCESS_LWP";	break;
850 		case MADV_ACCESS_MANY:	s = "MADV_ACCESS_MANY";	break;
851 		case MADV_PURGE:	s = "MADV_PURGE";	break;
852 		}
853 	}
854 
855 	if (s == NULL)
856 		prt_dec(pri, 0, val);
857 	else
858 		outstring(pri, s);
859 }
860 
861 void
862 prt_mc4(private_t *pri, int raw, long val) /* print memcntl() (4th) argument */
863 {
864 	if (val == 0)
865 		prt_dec(pri, 0, val);
866 	else if (raw)
867 		prt_hhx(pri, 0, val);
868 	else {
869 		char *s = NULL;
870 
871 #define	CBSIZE	sizeof (pri->code_buf)
872 		/* cheating -- look at memcntl func */
873 		switch (pri->sys_args[2]) {
874 		case MC_ADVISE:
875 			prt_mad(pri, 0, val);
876 			return;
877 
878 		case MC_SYNC:
879 			if ((val & ~(MS_SYNC|MS_ASYNC|MS_INVALIDATE)) == 0) {
880 				*(s = pri->code_buf) = '\0';
881 				if (val & MS_SYNC)
882 					(void) strlcat(s, "|MS_SYNC", CBSIZE);
883 				if (val & MS_ASYNC)
884 					(void) strlcat(s, "|MS_ASYNC", CBSIZE);
885 				if (val & MS_INVALIDATE)
886 					(void) strlcat(s, "|MS_INVALIDATE",
887 					    CBSIZE);
888 			}
889 			break;
890 
891 		case MC_LOCKAS:
892 		case MC_UNLOCKAS:
893 			if ((val & ~(MCL_CURRENT|MCL_FUTURE)) == 0) {
894 				*(s = pri->code_buf) = '\0';
895 				if (val & MCL_CURRENT)
896 					(void) strlcat(s, "|MCL_CURRENT",
897 					    CBSIZE);
898 				if (val & MCL_FUTURE)
899 					(void) strlcat(s, "|MCL_FUTURE",
900 					    CBSIZE);
901 			}
902 			break;
903 		}
904 #undef CBSIZE
905 
906 		if (s == NULL || *s == '\0')
907 			prt_hhx(pri, 0, val);
908 		else
909 			outstring(pri, ++s);
910 	}
911 }
912 
913 void
914 prt_mc5(private_t *pri, int raw, long val) /* print memcntl() (5th) argument */
915 {
916 	char *s;
917 
918 #define	CBSIZE	sizeof (pri->code_buf)
919 	if (val == 0)
920 		prt_dec(pri, 0, val);
921 	else if (raw || (val & ~VALID_ATTR))
922 		prt_hhx(pri, 0, val);
923 	else {
924 		s = pri->code_buf;
925 		*s = '\0';
926 		if (val & SHARED)
927 			(void) strlcat(s, "|SHARED", CBSIZE);
928 		if (val & PRIVATE)
929 			(void) strlcat(s, "|PRIVATE", CBSIZE);
930 		if (val & PROT_READ)
931 			(void) strlcat(s, "|PROT_READ", CBSIZE);
932 		if (val & PROT_WRITE)
933 			(void) strlcat(s, "|PROT_WRITE", CBSIZE);
934 		if (val & PROT_EXEC)
935 			(void) strlcat(s, "|PROT_EXEC", CBSIZE);
936 		if (*s == '\0')
937 			prt_hhx(pri, 0, val);
938 		else
939 			outstring(pri, ++s);
940 	}
941 #undef CBSIZE
942 }
943 
944 void
945 prt_ulm(private_t *pri, int raw, long val)	/* print ulimit() argument */
946 {
947 	const char *s = NULL;
948 
949 	if (!raw) {
950 		switch (val) {
951 		case UL_GFILLIM:	s = "UL_GFILLIM";	break;
952 		case UL_SFILLIM:	s = "UL_SFILLIM";	break;
953 		case UL_GMEMLIM:	s = "UL_GMEMLIM";	break;
954 		case UL_GDESLIM:	s = "UL_GDESLIM";	break;
955 		}
956 	}
957 
958 	if (s == NULL)
959 		prt_dec(pri, 0, val);
960 	else
961 		outstring(pri, s);
962 }
963 
964 void
965 prt_rlm(private_t *pri, int raw, long val) /* print get/setrlimit() argument */
966 {
967 	const char *s = NULL;
968 
969 	if (!raw) {
970 		switch (val) {
971 		case RLIMIT_CPU:	s = "RLIMIT_CPU";	break;
972 		case RLIMIT_FSIZE:	s = "RLIMIT_FSIZE";	break;
973 		case RLIMIT_DATA:	s = "RLIMIT_DATA";	break;
974 		case RLIMIT_STACK:	s = "RLIMIT_STACK";	break;
975 		case RLIMIT_CORE:	s = "RLIMIT_CORE";	break;
976 		case RLIMIT_NOFILE:	s = "RLIMIT_NOFILE";	break;
977 		case RLIMIT_VMEM:	s = "RLIMIT_VMEM";	break;
978 		}
979 	}
980 
981 	if (s == NULL)
982 		prt_dec(pri, 0, val);
983 	else
984 		outstring(pri, s);
985 }
986 
987 void
988 prt_cnf(private_t *pri, int raw, long val)	/* print sysconfig code */
989 {
990 	const char *s = raw? NULL : sconfname(val);
991 
992 	if (s == NULL)
993 		prt_dec(pri, 0, val);
994 	else
995 		outstring(pri, s);
996 }
997 
998 void
999 prt_inf(private_t *pri, int raw, long val)	/* print sysinfo code */
1000 {
1001 	const char *s = NULL;
1002 
1003 	if (!raw) {
1004 		switch (val) {
1005 		case SI_SYSNAME:	s = "SI_SYSNAME";	break;
1006 		case SI_HOSTNAME:	s = "SI_HOSTNAME";	break;
1007 		case SI_RELEASE:	s = "SI_RELEASE";	break;
1008 		case SI_VERSION:	s = "SI_VERSION";	break;
1009 		case SI_MACHINE:	s = "SI_MACHINE";	break;
1010 		case SI_ARCHITECTURE:	s = "SI_ARCHITECTURE";	break;
1011 		case SI_ARCHITECTURE_32:s = "SI_ARCHITECTURE_32"; break;
1012 		case SI_ARCHITECTURE_64:s = "SI_ARCHITECTURE_64"; break;
1013 		case SI_ARCHITECTURE_K:	s = "SI_ARCHITECTURE_K"; break;
1014 		case SI_HW_SERIAL:	s = "SI_HW_SERIAL";	break;
1015 		case SI_HW_PROVIDER:	s = "SI_HW_PROVIDER";	break;
1016 		case SI_SRPC_DOMAIN:	s = "SI_SRPC_DOMAIN";	break;
1017 		case SI_SET_HOSTNAME:	s = "SI_SET_HOSTNAME";	break;
1018 		case SI_SET_SRPC_DOMAIN: s = "SI_SET_SRPC_DOMAIN"; break;
1019 		case SI_PLATFORM:	s = "SI_PLATFORM";	break;
1020 		case SI_ISALIST:	s = "SI_ISALIST";	break;
1021 		case SI_DHCP_CACHE:	s = "SI_DHCP_CACHE";	break;
1022 		}
1023 	}
1024 
1025 	if (s == NULL)
1026 		prt_dec(pri, 0, val);
1027 	else
1028 		outstring(pri, s);
1029 }
1030 
1031 void
1032 prt_ptc(private_t *pri, int raw, long val)	/* print pathconf code */
1033 {
1034 	const char *s = raw? NULL : pathconfname(val);
1035 
1036 	if (s == NULL)
1037 		prt_dec(pri, 0, val);
1038 	else
1039 		outstring(pri, s);
1040 }
1041 
1042 void
1043 prt_fui(private_t *pri, int raw, long val) /* print fusers() input argument */
1044 {
1045 	const char *s = raw? NULL : fuiname(val);
1046 
1047 	if (s == NULL)
1048 		prt_hhx(pri, 0, val);
1049 	else
1050 		outstring(pri, s);
1051 }
1052 
1053 void
1054 prt_lwf(private_t *pri, int raw, long val)	/* print lwp_create() flags */
1055 {
1056 	char *s;
1057 
1058 	if (val == 0)
1059 		prt_dec(pri, 0, val);
1060 	else if (raw ||
1061 	    (val & ~(LWP_DAEMON|LWP_DETACHED|LWP_SUSPENDED)))
1062 		prt_hhx(pri, 0, val);
1063 	else {
1064 #define	CBSIZE	sizeof (pri->code_buf)
1065 		s = pri->code_buf;
1066 		*s = '\0';
1067 		if (val & LWP_DAEMON)
1068 			(void) strlcat(s, "|LWP_DAEMON", CBSIZE);
1069 		if (val & LWP_DETACHED)
1070 			(void) strlcat(s, "|LWP_DETACHED", CBSIZE);
1071 		if (val & LWP_SUSPENDED)
1072 			(void) strlcat(s, "|LWP_SUSPENDED", CBSIZE);
1073 		outstring(pri, ++s);
1074 #undef CBSIZE
1075 	}
1076 }
1077 
1078 void
1079 prt_itm(private_t *pri, int raw, long val) /* print [get|set]itimer() arg */
1080 {
1081 	const char *s = NULL;
1082 
1083 	if (!raw) {
1084 		switch (val) {
1085 		case ITIMER_REAL:	s = "ITIMER_REAL";	break;
1086 		case ITIMER_VIRTUAL:	s = "ITIMER_VIRTUAL";	break;
1087 		case ITIMER_PROF:	s = "ITIMER_PROF";	break;
1088 #ifdef ITIMER_REALPROF
1089 		case ITIMER_REALPROF:	s = "ITIMER_REALPROF";	break;
1090 #endif
1091 		}
1092 	}
1093 
1094 	if (s == NULL)
1095 		prt_dec(pri, 0, val);
1096 	else
1097 		outstring(pri, s);
1098 }
1099 
1100 void
1101 prt_mod(private_t *pri, int raw, long val)	/* print modctl() code */
1102 {
1103 	const char *s = NULL;
1104 
1105 	if (!raw) {
1106 		switch (val) {
1107 		case MODLOAD:		s = "MODLOAD";		break;
1108 		case MODUNLOAD:		s = "MODUNLOAD";	break;
1109 		case MODINFO:		s = "MODINFO";		break;
1110 		case MODRESERVED:	s = "MODRESERVED";	break;
1111 		case MODSETMINIROOT:	s = "MODSETMINIROOT";	break;
1112 		case MODADDMAJBIND:	s = "MODADDMAJBIND";	break;
1113 		case MODGETPATH:	s = "MODGETPATH";	break;
1114 		case MODGETPATHLEN:	s = "MODGETPATHLEN";	break;
1115 		case MODREADSYSBIND:	s = "MODREADSYSBIND";	break;
1116 		case MODGETMAJBIND:	s = "MODGETMAJBIND";	break;
1117 		case MODGETNAME:	s = "MODGETNAME";	break;
1118 		case MODSIZEOF_DEVID:	s = "MODSIZEOF_DEVID";	break;
1119 		case MODGETDEVID:	s = "MODGETDEVID";	break;
1120 		case MODSIZEOF_MINORNAME: s = "MODSIZEOF_MINORNAME"; break;
1121 		case MODGETMINORNAME:	s = "MODGETMINORNAME";	break;
1122 		case MODGETFBNAME:	s = "MODGETFBNAME";	break;
1123 		case MODEVENTS:		s = "MODEVENTS";	break;
1124 		case MODREREADDACF:	s = "MODREREADDACF";	break;
1125 		case MODLOADDRVCONF:	s = "MODLOADDRVCONF";	break;
1126 		case MODUNLOADDRVCONF:	s = "MODUNLOADDRVCONF";	break;
1127 		case MODREMMAJBIND:	s = "MODREMMAJBIND";	break;
1128 		case MODDEVT2INSTANCE:	s = "MODDEVT2INSTANCE";	break;
1129 		case MODGETDEVFSPATH_LEN: s = "MODGETDEVFSPATH_LEN"; break;
1130 		case MODGETDEVFSPATH:	s = "MODGETDEVFSPATH";	break;
1131 		case MODDEVID2PATHS:	s = "MODDEVID2PATHS";	break;
1132 		case MODSETDEVPOLICY:	s = "MODSETDEVPOLICY";	break;
1133 		case MODGETDEVPOLICY:	s = "MODGETDEVPOLICY";	break;
1134 		case MODALLOCPRIV:	s = "MODALLOCPRIV";	break;
1135 		case MODGETDEVPOLICYBYNAME:
1136 					s = "MODGETDEVPOLICYBYNAME"; break;
1137 		case MODLOADMINORPERM:	s = "MODLOADMINORPERM"; break;
1138 		case MODADDMINORPERM:	s = "MODADDMINORPERM"; break;
1139 		case MODREMMINORPERM:	s = "MODREMMINORPERM"; break;
1140 		case MODREMDRVCLEANUP:	s = "MODREMDRVCLEANUP"; break;
1141 		case MODDEVEXISTS:	s = "MODDEVEXISTS"; break;
1142 		case MODDEVREADDIR:	s = "MODDEVREADDIR"; break;
1143 		case MODDEVEMPTYDIR:	s = "MODDEVEMPTYDIR"; break;
1144 		case MODDEVNAME:	s = "MODDEVNAME"; break;
1145 		case MODGETDEVFSPATH_MI_LEN:
1146 					s = "MODGETDEVFSPATH_MI_LEN"; break;
1147 		case MODGETDEVFSPATH_MI:
1148 					s = "MODGETDEVFSPATH_MI"; break;
1149 		case MODREMDRVALIAS:	s = "MODREMDRVALIAS"; break;
1150 		case MODHPOPS:	s = "MODHPOPS"; break;
1151 		}
1152 	}
1153 
1154 	if (s == NULL)
1155 		prt_dec(pri, 0, val);
1156 	else
1157 		outstring(pri, s);
1158 }
1159 
1160 void
1161 prt_acl(private_t *pri, int raw, long val)	/* print acl() code */
1162 {
1163 	const char *s = NULL;
1164 
1165 	if (!raw) {
1166 		switch (val) {
1167 		case GETACL:		s = "GETACL";		break;
1168 		case SETACL:		s = "SETACL";		break;
1169 		case GETACLCNT:		s = "GETACLCNT";	break;
1170 		case ACE_GETACL:	s = "ACE_GETACL";	break;
1171 		case ACE_SETACL:	s = "ACE_SETACL";	break;
1172 		case ACE_GETACLCNT:	s = "ACE_GETACLCNT";	break;
1173 		}
1174 	}
1175 
1176 	if (s == NULL)
1177 		prt_dec(pri, 0, val);
1178 	else
1179 		outstring(pri, s);
1180 }
1181 
1182 void
1183 prt_aio(private_t *pri, int raw, long val)	/* print kaio() code */
1184 {
1185 	const char *s = NULL;
1186 	char buf[32];
1187 
1188 	if (!raw) {
1189 		switch (val & ~AIO_POLL_BIT) {
1190 		case AIOREAD:		s = "AIOREAD";		break;
1191 		case AIOWRITE:		s = "AIOWRITE";		break;
1192 		case AIOWAIT:		s = "AIOWAIT";		break;
1193 		case AIOCANCEL:		s = "AIOCANCEL";	break;
1194 		case AIONOTIFY:		s = "AIONOTIFY";	break;
1195 		case AIOINIT:		s = "AIOINIT";		break;
1196 		case AIOSTART:		s = "AIOSTART";		break;
1197 		case AIOLIO:		s = "AIOLIO";		break;
1198 		case AIOSUSPEND:	s = "AIOSUSPEND";	break;
1199 		case AIOERROR:		s = "AIOERROR";		break;
1200 		case AIOLIOWAIT:	s = "AIOLIOWAIT";	break;
1201 		case AIOAREAD:		s = "AIOAREAD";		break;
1202 		case AIOAWRITE:		s = "AIOAWRITE";	break;
1203 		/*
1204 		 * We have to hardcode the values for the 64-bit versions of
1205 		 * these calls, because <sys/aio.h> defines them to be identical
1206 		 * when compiled 64-bit.  If our target is 32-bit, we still need
1207 		 * to decode them correctly.
1208 		 */
1209 		case 13:		s = "AIOLIO64";		break;
1210 		case 14:		s = "AIOSUSPEND64";	break;
1211 		case 15:		s = "AUIOERROR64";	break;
1212 		case 16:		s = "AIOLIOWAIT64";	break;
1213 		case 17:		s = "AIOAREAD64";	break;
1214 		case 18:		s = "AIOAWRITE64";	break;
1215 		case 19:		s = "AIOCANCEL64";	break;
1216 
1217 		/*
1218 		 * AIOFSYNC doesn't correspond to a syscall.
1219 		 */
1220 		case AIOWAITN:		s = "AIOWAITN";		break;
1221 		}
1222 		if (s != NULL && (val & AIO_POLL_BIT)) {
1223 			(void) strlcpy(buf, s, sizeof (buf));
1224 			(void) strlcat(buf, "|AIO_POLL_BIT", sizeof (buf));
1225 			s = (const char *)buf;
1226 		}
1227 	}
1228 
1229 	if (s == NULL)
1230 		prt_dec(pri, 0, val);
1231 	else
1232 		outstring(pri, s);
1233 }
1234 
1235 void
1236 prt_aud(private_t *pri, int raw, long val)	/* print auditsys() code */
1237 {
1238 	const char *s = NULL;
1239 
1240 	if (!raw) {
1241 		switch (val) {
1242 		case BSM_GETAUID:	s = "BSM_GETAUID";	break;
1243 		case BSM_SETAUID:	s = "BSM_SETAUID";	break;
1244 		case BSM_GETAUDIT:	s = "BSM_GETAUDIT";	break;
1245 		case BSM_SETAUDIT:	s = "BSM_SETAUDIT";	break;
1246 		case BSM_AUDIT:		s = "BSM_AUDIT";	break;
1247 		case BSM_AUDITCTL:	s = "BSM_AUDITCTL";	break;
1248 		case BSM_GETAUDIT_ADDR:	s = "BSM_GETAUDIT_ADDR"; break;
1249 		case BSM_SETAUDIT_ADDR:	s = "BSM_SETAUDIT_ADDR"; break;
1250 		}
1251 	}
1252 
1253 	if (s == NULL)
1254 		prt_dec(pri, 0, val);
1255 	else
1256 		outstring(pri, s);
1257 }
1258 
1259 void
1260 prt_cor(private_t *pri, int raw, long val)	/* print corectl() subcode */
1261 {
1262 	const char *s = NULL;
1263 
1264 	if (!raw) {
1265 		switch (val) {
1266 		case CC_SET_OPTIONS:
1267 			s = "CC_SET_OPTIONS";		break;
1268 		case CC_GET_OPTIONS:
1269 			s = "CC_GET_OPTIONS";		break;
1270 		case CC_SET_GLOBAL_PATH:
1271 			s = "CC_SET_GLOBAL_PATH";	break;
1272 		case CC_GET_GLOBAL_PATH:
1273 			s = "CC_GET_GLOBAL_PATH";	break;
1274 		case CC_SET_PROCESS_PATH:
1275 			s = "CC_SET_PROCESS_PATH";	break;
1276 		case CC_GET_PROCESS_PATH:
1277 			s = "CC_GET_PROCESS_PATH";	break;
1278 		case CC_SET_GLOBAL_CONTENT:
1279 			s = "CC_SET_GLOBAL_CONTENT";	break;
1280 		case CC_GET_GLOBAL_CONTENT:
1281 			s = "CC_GET_GLOBAL_CONTENT";	break;
1282 		case CC_SET_PROCESS_CONTENT:
1283 			s = "CC_SET_PROCESS_CONTENT";	break;
1284 		case CC_GET_PROCESS_CONTENT:
1285 			s = "CC_GET_PROCESS_CONTENT";	break;
1286 		case CC_SET_DEFAULT_PATH:
1287 			s = "CC_SET_DEFAULT_PATH";	break;
1288 		case CC_GET_DEFAULT_PATH:
1289 			s = "CC_GET_DEFAULT_PATH";	break;
1290 		case CC_SET_DEFAULT_CONTENT:
1291 			s = "CC_SET_DEFAULT_CONTENT";	break;
1292 		case CC_GET_DEFAULT_CONTENT:
1293 			s = "CC_GET_DEFAULT_CONTENT";	break;
1294 		}
1295 	}
1296 
1297 	if (s == NULL)
1298 		prt_dec(pri, 0, val);
1299 	else
1300 		outstring(pri, s);
1301 }
1302 
1303 void
1304 prt_cco(private_t *pri, int raw, long val)	/* print corectl() options */
1305 {
1306 	char *s;
1307 
1308 	if (val == 0)
1309 		prt_dec(pri, 0, val);
1310 	else if (raw || (val & ~CC_OPTIONS))
1311 		prt_hhx(pri, 0, val);
1312 	else {
1313 #define	CBSIZE	sizeof (pri->code_buf)
1314 		s = pri->code_buf;
1315 		*s = '\0';
1316 		if (val & CC_GLOBAL_PATH)
1317 			(void) strlcat(s, "|CC_GLOBAL_PATH", CBSIZE);
1318 		if (val & CC_PROCESS_PATH)
1319 			(void) strlcat(s, "|CC_PROCESS_PATH", CBSIZE);
1320 		if (val & CC_GLOBAL_SETID)
1321 			(void) strlcat(s, "|CC_GLOBAL_SETID", CBSIZE);
1322 		if (val & CC_PROCESS_SETID)
1323 			(void) strlcat(s, "|CC_PROCESS_SETID", CBSIZE);
1324 		if (val & CC_GLOBAL_LOG)
1325 			(void) strlcat(s, "|CC_GLOBAL_LOG", CBSIZE);
1326 		if (*s == '\0')
1327 			prt_hhx(pri, 0, val);
1328 		else
1329 			outstring(pri, ++s);
1330 #undef CBSIZE
1331 	}
1332 }
1333 
1334 void
1335 prt_ccc(private_t *pri, int raw, long val)	/* print corectl() content */
1336 {
1337 	core_content_t ccc;
1338 
1339 	if (Pread(Proc, &ccc, sizeof (ccc), val) != sizeof (ccc))
1340 		prt_hex(pri, 0, val);
1341 	else if (!raw && proc_content2str(ccc, pri->code_buf,
1342 	    sizeof (pri->code_buf)) >= 0)
1343 		outstring(pri, pri->code_buf);
1344 	else
1345 		prt_hhx(pri, 0, (long)ccc);
1346 }
1347 
1348 void
1349 prt_rcc(private_t *pri, int raw, long val)	/* print corectl() ret. cont. */
1350 {
1351 	core_content_t ccc;
1352 
1353 	if (pri->Errno || Pread(Proc, &ccc, sizeof (ccc), val) != sizeof (ccc))
1354 		prt_hex(pri, 0, val);
1355 	else if (!raw && proc_content2str(ccc, pri->code_buf,
1356 	    sizeof (pri->code_buf)) >= 0)
1357 		outstring(pri, pri->code_buf);
1358 	else
1359 		prt_hhx(pri, 0, (long)ccc);
1360 }
1361 
1362 void
1363 prt_cpc(private_t *pri, int raw, long val)	/* print cpc() subcode */
1364 {
1365 	const char *s = NULL;
1366 
1367 	if (!raw) {
1368 		switch (val) {
1369 		case CPC_BIND:		s = "CPC_BIND";		break;
1370 		case CPC_SAMPLE:	s = "CPC_SAMPLE";	break;
1371 		case CPC_INVALIDATE:	s = "CPC_INVALIDATE";	break;
1372 		case CPC_RELE:		s = "CPC_RELE";		break;
1373 		case CPC_EVLIST_SIZE:	s = "CPC_EVLIST_SIZE";	break;
1374 		case CPC_LIST_EVENTS:	s = "CPC_LIST_EVENTS";	break;
1375 		case CPC_ATTRLIST_SIZE:	s = "CPC_ATTRLIST_SIZE"; break;
1376 		case CPC_LIST_ATTRS:	s = "CPC_LIST_ATTRS";	break;
1377 		case CPC_IMPL_NAME:	s = "CPC_IMPL_NAME";	break;
1378 		case CPC_CPUREF:	s = "CPC_CPUREF";	break;
1379 		case CPC_USR_EVENTS:	s = "CPC_USR_EVENTS";	break;
1380 		case CPC_SYS_EVENTS:	s = "CPC_SYS_EVENTS";	break;
1381 		case CPC_NPIC:		s = "CPC_NPIC";		break;
1382 		case CPC_CAPS:		s = "CPC_CAPS";		break;
1383 		case CPC_ENABLE:	s = "CPC_ENABLE";	break;
1384 		case CPC_DISABLE:	s = "CPC_DISABLE";	break;
1385 		}
1386 	}
1387 
1388 	if (s == NULL)
1389 		prt_dec(pri, 0, val);
1390 	else
1391 		outstring(pri, s);
1392 }
1393 
1394 void
1395 outstring(private_t *pri, const char *s)
1396 {
1397 	int len = strlen(s);
1398 
1399 	GROW(len);
1400 	(void) strcpy(pri->sys_string + pri->sys_leng, s);
1401 	pri->sys_leng += len;
1402 }
1403 
1404 void
1405 grow(private_t *pri, int nbyte)	/* reallocate format buffer if necessary */
1406 {
1407 	while (pri->sys_leng + nbyte >= pri->sys_ssize)
1408 		pri->sys_string = my_realloc(pri->sys_string,
1409 		    pri->sys_ssize *= 2, "format buffer");
1410 }
1411 
1412 void
1413 prt_clc(private_t *pri, int raw, long val)
1414 {
1415 	const char *s = NULL;
1416 
1417 	if (!raw) {
1418 		switch (val) {
1419 		case CL_INITIALIZE:	s = "CL_INITIALIZE";	break;
1420 		case CL_CONFIG:		s = "CL_CONFIG";	break;
1421 		}
1422 	}
1423 
1424 	if (s == NULL)
1425 		prt_dec(pri, 0, val);
1426 	else
1427 		outstring(pri, s);
1428 }
1429 
1430 void
1431 prt_clf(private_t *pri, int raw, long val)
1432 {
1433 	const char *s = NULL;
1434 
1435 	if (!raw) {
1436 		switch (pri->sys_args[0]) {
1437 		case CL_CONFIG:
1438 			switch (pri->sys_args[1]) {
1439 			case CL_NODEID:
1440 				s = "CL_NODEID";		break;
1441 			case CL_HIGHEST_NODEID:
1442 				s = "CL_HIGHEST_NODEID";	break;
1443 			}
1444 			break;
1445 		case CL_INITIALIZE:
1446 			switch (pri->sys_args[1]) {
1447 			case CL_GET_BOOTFLAG:
1448 				s = "CL_GET_BOOTFLAG";		break;
1449 			}
1450 			break;
1451 		}
1452 	}
1453 
1454 	if (s == NULL)
1455 		prt_dec(pri, 0, val);
1456 	else
1457 		outstring(pri, s);
1458 }
1459 
1460 void
1461 prt_sqc(private_t *pri, int raw, long val)	/* print sigqueue() si_code */
1462 {
1463 	const char *s = NULL;
1464 
1465 	if (!raw) {
1466 		switch ((int)val) {
1467 		case SI_QUEUE:		s = "SI_QUEUE";		break;
1468 		case SI_TIMER:		s = "SI_TIMER";		break;
1469 		case SI_ASYNCIO:	s = "SI_ASYNCIO";	break;
1470 		case SI_MESGQ:		s = "SI_MESGQ";		break;
1471 		}
1472 	}
1473 
1474 	if (s == NULL)
1475 		prt_dec(pri, 0, val);
1476 	else
1477 		outstring(pri, s);
1478 }
1479 
1480 /*
1481  * print priocntlsys() (key, value) pair key.
1482  */
1483 void
1484 print_pck(private_t *pri, int raw, long val)
1485 {
1486 	const char	*s = NULL;
1487 	char		clname[PC_CLNMSZ];
1488 
1489 	if ((pri->sys_args[2] != PC_GETXPARMS &&
1490 	    pri->sys_args[2] != PC_SETXPARMS) || val == 0 || raw) {
1491 		prt_dec(pri, 0, val);
1492 		return;
1493 	}
1494 
1495 	if (pri->sys_args[3] == 0) {
1496 		if (val == PC_KY_CLNAME) {
1497 			s = "PC_KY_CLNAME";
1498 			outstring(pri, s);
1499 		} else
1500 			prt_dec(pri, 0, val);
1501 		return;
1502 	}
1503 
1504 	if (Pread(Proc, &clname, PC_CLNMSZ, pri->sys_args[3]) != PC_CLNMSZ) {
1505 		prt_dec(pri, 0, val);
1506 		return;
1507 	}
1508 
1509 	if (strcmp(clname, "TS") == 0) {
1510 		switch (val) {
1511 		case TS_KY_UPRILIM:	s = "TS_KY_UPRILIM";	break;
1512 		case TS_KY_UPRI:	s = "TS_KY_UPRI";	break;
1513 		default:					break;
1514 		}
1515 	} else if (strcmp(clname, "IA") == 0) {
1516 		switch (val) {
1517 		case IA_KY_UPRILIM:	s = "IA_KY_UPRILIM";	break;
1518 		case IA_KY_UPRI:	s = "IA_KY_UPRI";	break;
1519 		case IA_KY_MODE:	s = "IA_KY_MODE";	break;
1520 		default:					break;
1521 		}
1522 	} else if (strcmp(clname, "RT") == 0) {
1523 		switch (val) {
1524 		case RT_KY_PRI:		s = "RT_KY_PRI";	break;
1525 		case RT_KY_TQSECS:	s = "RT_KY_TQSECS";	break;
1526 		case RT_KY_TQNSECS:	s = "RT_KY_TQNSECS";	break;
1527 		case RT_KY_TQSIG:	s = "RT_KY_TQSIG";	break;
1528 		default:					break;
1529 		}
1530 	} else if (strcmp(clname, "FSS") == 0) {
1531 		switch (val) {
1532 		case FSS_KY_UPRILIM:	s = "FSS_KY_UPRILIM";	break;
1533 		case FSS_KY_UPRI:	s = "FSS_KY_UPRI";	break;
1534 		default:					break;
1535 		}
1536 	} else if (strcmp(clname, "FX") == 0) {
1537 		switch (val) {
1538 		case FX_KY_UPRILIM:	s = "FX_KY_UPRILIM";	break;
1539 		case FX_KY_UPRI:	s = "FX_KY_UPRI";	break;
1540 		case FX_KY_TQSECS:	s = "FX_KY_TQSECS";	break;
1541 		case FX_KY_TQNSECS:	s = "FX_KY_TQNSECS";	break;
1542 		default:					break;
1543 		}
1544 	}
1545 
1546 	if (s == NULL)
1547 		prt_dec(pri, 0, val);
1548 	else
1549 		outstring(pri, s);
1550 }
1551 
1552 /*
1553  * print priocntlsys() fourth argument.
1554  */
1555 /*ARGSUSED*/
1556 void
1557 prt_pc4(private_t *pri, int raw, long val)
1558 {
1559 	/* look at pricntlsys function */
1560 	if ((pri->sys_args[2] != PC_GETXPARMS &&
1561 	    pri->sys_args[2] != PC_SETXPARMS))
1562 		prt_hex(pri, 0, val);
1563 	else if (val)
1564 		prt_stg(pri, 0, val);
1565 	else
1566 		prt_dec(pri, 0, val);
1567 }
1568 
1569 /*
1570  * print priocntlsys() (key, value) pairs (5th argument).
1571  */
1572 /*ARGSUSED*/
1573 void
1574 prt_pc5(private_t *pri, int raw, long val)
1575 {
1576 	pc_vaparms_t	prms;
1577 	pc_vaparm_t	*vpp = &prms.pc_parms[0];
1578 	uint_t		cnt;
1579 
1580 
1581 	/* look at pricntlsys function */
1582 	if ((pri->sys_args[2] != PC_GETXPARMS &&
1583 	    pri->sys_args[2] != PC_SETXPARMS) || val == 0) {
1584 		prt_dec(pri, 0, 0);
1585 		return;
1586 	}
1587 
1588 	if (Pread(Proc, &prms, sizeof (prms), val) != sizeof (prms)) {
1589 		prt_hex(pri, 0, val);
1590 		return;
1591 	}
1592 
1593 	if ((cnt = prms.pc_vaparmscnt) > PC_VAPARMCNT)
1594 		return;
1595 
1596 	for (; cnt--; vpp++) {
1597 		print_pck(pri, 0, vpp->pc_key);
1598 		outstring(pri, ", ");
1599 		prt_hex(pri, 0, (long)vpp->pc_parm);
1600 		outstring(pri, ", ");
1601 	}
1602 
1603 	prt_dec(pri, 0, PC_KY_NULL);
1604 }
1605 
1606 
1607 void
1608 prt_psflags(private_t *pri, secflagset_t val)
1609 {
1610 	size_t len;
1611 	char *ptr;
1612 	char str[1024];
1613 
1614 	if (val == 0) {
1615 		outstring(pri, "0x0");
1616 		return;
1617 	}
1618 
1619 	*str = '\0';
1620 	if (secflag_isset(val, PROC_SEC_ASLR)) {
1621 		(void) strlcat(str, "|PROC_SEC_ASLR", sizeof (str));
1622 		secflag_clear(&val, PROC_SEC_ASLR);
1623 	}
1624 	if (secflag_isset(val, PROC_SEC_FORBIDNULLMAP)) {
1625 		(void) strlcat(str, "|PROC_SEC_FORBIDNULLMAP",
1626 		    sizeof (str));
1627 		secflag_clear(&val, PROC_SEC_FORBIDNULLMAP);
1628 	}
1629 	if (secflag_isset(val, PROC_SEC_NOEXECSTACK)) {
1630 		(void) strlcat(str, "|PROC_SEC_NOEXECSTACK",
1631 		    sizeof (str));
1632 		secflag_clear(&val, PROC_SEC_NOEXECSTACK);
1633 	}
1634 
1635 	if (val != 0) {
1636 		len = strlen(str);
1637 		ptr = str + len;
1638 		(void) snprintf(ptr, sizeof (str) - len, "|%#x", val);
1639 	}
1640 
1641 	outstring(pri, str + 1);
1642 }
1643 
1644 /*
1645  * Print a psecflags(2) delta
1646  */
1647 void
1648 prt_psdelta(private_t *pri, int raw, long value)
1649 {
1650 	secflagdelta_t psd;
1651 
1652 	if ((raw != 0) ||
1653 	    (Pread(Proc, &psd, sizeof (psd), value) != sizeof (psd))) {
1654 		prt_hex(pri, 0, value);
1655 		return;
1656 	}
1657 	outstring(pri, "{ ");
1658 	prt_psflags(pri, psd.psd_add);
1659 	outstring(pri, ", ");
1660 	prt_psflags(pri, psd.psd_rem);
1661 	outstring(pri, ", ");
1662 	prt_psflags(pri, psd.psd_assign);
1663 	outstring(pri, ", ");
1664 	outstring(pri, psd.psd_ass_active ? "B_TRUE" : "B_FALSE");
1665 	outstring(pri, " }");
1666 }
1667 
1668 /*
1669  * Print a psecflagswhich_t
1670  */
1671 void
1672 prt_psfw(private_t *pri, int raw, long value)
1673 {
1674 	psecflagwhich_t which = (psecflagwhich_t)value;
1675 	char *s;
1676 
1677 	if (raw != 0) {
1678 		prt_dec(pri, 0, value);
1679 		return;
1680 	}
1681 
1682 	switch (which) {
1683 	case PSF_EFFECTIVE:
1684 		s = "PSF_EFFECTIVE";
1685 		break;
1686 	case PSF_INHERIT:
1687 		s = "PSF_INHERIT";
1688 		break;
1689 	case PSF_LOWER:
1690 		s = "PSF_LOWER";
1691 		break;
1692 	case PSF_UPPER:
1693 		s = "PSF_UPPER";
1694 		break;
1695 	}
1696 
1697 	if (s == NULL)
1698 		prt_dec(pri, 0, value);
1699 	else
1700 		outstring(pri, s);
1701 }
1702 
1703 /*
1704  * Print processor set id, including logical expansion of "special" ids.
1705  */
1706 void
1707 prt_pst(private_t *pri, int raw, long val)
1708 {
1709 	const char *s = NULL;
1710 
1711 	if (!raw) {
1712 		switch ((psetid_t)val) {
1713 		case PS_NONE:		s = "PS_NONE";		break;
1714 		case PS_QUERY:		s = "PS_QUERY";		break;
1715 		case PS_MYID:		s = "PS_MYID";		break;
1716 		}
1717 	}
1718 
1719 	if (s == NULL)
1720 		prt_dec(pri, 0, val);
1721 	else
1722 		outstring(pri, s);
1723 }
1724 
1725 /*
1726  * Print meminfo() argument.
1727  */
1728 /*ARGSUSED*/
1729 void
1730 prt_mif(private_t *pri, int raw, long val)
1731 {
1732 	struct meminfo	minfo;
1733 
1734 	if (data_model == PR_MODEL_ILP32) {
1735 		struct meminfo32 minfo32;
1736 
1737 		if (Pread(Proc, &minfo32, sizeof (struct meminfo32), val) !=
1738 			sizeof (struct meminfo32)) {
1739 			prt_dec(pri, 0, pri->sys_args[1]);	/* addr_count */
1740 			outstring(pri, ", ");
1741 			prt_hex(pri, 0, val);
1742 			return;
1743 		}
1744 		/*
1745 		 * arrange the arguments in the order that user calls with
1746 		 */
1747 		prt_hex(pri, 0, minfo32.mi_inaddr);
1748 		outstring(pri, ", ");
1749 		prt_dec(pri, 0, pri->sys_args[1]);	/* addr_count */
1750 		outstring(pri, ", ");
1751 		prt_hex(pri, 0, minfo32.mi_info_req);
1752 		outstring(pri, ", ");
1753 		prt_dec(pri, 0, minfo32.mi_info_count);
1754 		outstring(pri, ", ");
1755 		prt_hex(pri, 0, minfo32.mi_outdata);
1756 		outstring(pri, ", ");
1757 		prt_hex(pri, 0, minfo32.mi_validity);
1758 		return;
1759 	}
1760 	if (Pread(Proc, &minfo, sizeof (struct meminfo), val) !=
1761 		sizeof (struct meminfo)) {
1762 		prt_dec(pri, 0, pri->sys_args[1]);	/* addr_count */
1763 		outstring(pri, ", ");
1764 		prt_hex(pri, 0, val);
1765 		return;
1766 	}
1767 	/*
1768 	 * arrange the arguments in the order that user calls with
1769 	 */
1770 	prt_hex(pri, 0, (long)minfo.mi_inaddr);
1771 	outstring(pri, ", ");
1772 	prt_dec(pri, 0, pri->sys_args[1]);	/* addr_count */
1773 	outstring(pri, ", ");
1774 	prt_hex(pri, 0, (long)minfo.mi_info_req);
1775 	outstring(pri, ", ");
1776 	prt_dec(pri, 0, minfo.mi_info_count);
1777 	outstring(pri, ", ");
1778 	prt_hex(pri, 0, (long)minfo.mi_outdata);
1779 	outstring(pri, ", ");
1780 	prt_hex(pri, 0, (long)minfo.mi_validity);
1781 }
1782 
1783 
1784 /*
1785  * Print so_socket() 1st argument.
1786  */
1787 /*ARGSUSED*/
1788 void
1789 prt_pfm(private_t *pri, int raw, long val)
1790 {
1791 	/* Protocol Families have same names as Address Families */
1792 	if ((ulong_t)val < MAX_AFCODES) {
1793 		outstring(pri, "PF_");
1794 		outstring(pri, afcodes[val]);
1795 	} else {
1796 		prt_dec(pri, 0, val);
1797 	}
1798 }
1799 
1800 /*
1801  * Print sockconfig() subcode.
1802  */
1803 /*ARGSUSED*/
1804 void
1805 prt_skc(private_t *pri, int raw, long val)
1806 {
1807 	const char *s = NULL;
1808 
1809 	if (!raw) {
1810 		switch (val) {
1811 		case SOCKCONFIG_ADD_SOCK:
1812 			s = "SOCKCONFIG_ADD_SOCK"; break;
1813 		case SOCKCONFIG_REMOVE_SOCK:
1814 			s = "SOCKCONFIG_REMOVE_SOCK"; break;
1815 		case SOCKCONFIG_ADD_FILTER:
1816 			s = "SOCKCONFIG_ADD_FILTER"; break;
1817 		case SOCKCONFIG_REMOVE_FILTER:
1818 			s = "SOCKCONFIG_REMOVE_FILTER"; break;
1819 		}
1820 	}
1821 	if (s == NULL)
1822 		prt_dec(pri, 0, val);
1823 	else
1824 		outstring(pri, s);
1825 }
1826 /*
1827  * Print so_socket() 2nd argument.
1828  */
1829 /*ARGSUSED*/
1830 void
1831 prt_skt(private_t *pri, int raw, long val)
1832 {
1833 	const char *s;
1834 	long type = val & SOCK_TYPE_MASK;
1835 
1836 	if ((ulong_t)type <= MAX_SOCKTYPES &&
1837 	    (s = socktype_codes[type]) != NULL) {
1838 		outstring(pri, s);
1839 		if ((val & SOCK_CLOEXEC) != 0) {
1840 			outstring(pri, "|SOCK_CLOEXEC");
1841 		}
1842 	} else {
1843 		prt_dec(pri, 0, val);
1844 	}
1845 }
1846 
1847 
1848 /*
1849  * Print so_socket() 3rd argument.
1850  */
1851 /*ARGSUSED*/
1852 void
1853 prt_skp(private_t *pri, int raw, long val)
1854 {
1855 	const char *s;
1856 
1857 	/* cheating -- look at the protocol-family */
1858 	switch (pri->sys_args[0]) {
1859 	case PF_INET6:
1860 	case PF_INET:
1861 		if ((s = ipprotos((int)val)) != NULL) {
1862 			outstring(pri, s);
1863 			break;
1864 		}
1865 		/* FALLTHROUGH */
1866 	default:
1867 		prt_dec(pri, 0, val);
1868 		break;
1869 	}
1870 }
1871 
1872 
1873 /*
1874  * Print so_socket() 5th argument.
1875  */
1876 /*ARGSUSED*/
1877 void
1878 prt_skv(private_t *pri, int raw, long val)
1879 {
1880 	switch (val) {
1881 	case SOV_STREAM:	outstring(pri, "SOV_STREAM");	break;
1882 	case SOV_DEFAULT:	outstring(pri, "SOV_DEFAULT");	break;
1883 	case SOV_SOCKSTREAM:	outstring(pri, "SOV_SOCKSTREAM");	break;
1884 	case SOV_SOCKBSD:	outstring(pri, "SOV_SOCKBSD");	break;
1885 	case SOV_XPG4_2:	outstring(pri, "SOV_XPG4_2");	break;
1886 	default:		prt_dec(pri, 0, val);		break;
1887 	}
1888 }
1889 
1890 /*
1891  * Print accept4() flags argument.
1892  */
1893 void
1894 prt_acf(private_t *pri, int raw, long val)
1895 {
1896 	int first = 1;
1897 	if (raw || !val ||
1898 	    (val & ~(SOCK_CLOEXEC|SOCK_NDELAY|SOCK_NONBLOCK))) {
1899 		prt_dex(pri, 0, val);
1900 		return;
1901 	}
1902 
1903 	if (val & SOCK_CLOEXEC) {
1904 		outstring(pri, "|SOCK_CLOEXEC" + first);
1905 		first = 0;
1906 	}
1907 	if (val & SOCK_NDELAY) {
1908 		outstring(pri, "|SOCK_NDELAY" + first);
1909 		first = 0;
1910 	}
1911 	if (val & SOCK_NONBLOCK) {
1912 		outstring(pri, "|SOCK_NONBLOCK" + first);
1913 	}
1914 }
1915 
1916 
1917 /*
1918  * Print setsockopt()/getsockopt() 2nd argument.
1919  */
1920 /*ARGSUSED*/
1921 void
1922 prt_sol(private_t *pri, int raw, long val)
1923 {
1924 	if (val == SOL_SOCKET) {
1925 		outstring(pri, "SOL_SOCKET");
1926 	} else if (val == SOL_ROUTE) {
1927 		outstring(pri, "SOL_ROUTE");
1928 	} else {
1929 		const struct protoent *p;
1930 		struct protoent res;
1931 		char buf[NSS_BUFLEN_PROTOCOLS];
1932 
1933 		if ((p = getprotobynumber_r(val, &res,
1934 		    (char *)buf, sizeof (buf))) != NULL)
1935 			outstring(pri, p->p_name);
1936 		else
1937 			prt_dec(pri, 0, val);
1938 	}
1939 }
1940 
1941 
1942 const char *
1943 sol_optname(private_t *pri, long val)
1944 {
1945 #define	CBSIZE	sizeof (pri->code_buf)
1946 	if (val >= SO_SNDBUF) {
1947 		switch (val) {
1948 		case SO_SNDBUF:		return ("SO_SNDBUF");
1949 		case SO_RCVBUF:		return ("SO_RCVBUF");
1950 		case SO_SNDLOWAT:	return ("SO_SNDLOWAT");
1951 		case SO_RCVLOWAT:	return ("SO_RCVLOWAT");
1952 		case SO_SNDTIMEO:	return ("SO_SNDTIMEO");
1953 		case SO_RCVTIMEO:	return ("SO_RCVTIMEO");
1954 		case SO_ERROR:		return ("SO_ERROR");
1955 		case SO_TYPE:		return ("SO_TYPE");
1956 		case SO_PROTOTYPE:	return ("SO_PROTOTYPE");
1957 		case SO_ANON_MLP:	return ("SO_ANON_MLP");
1958 		case SO_MAC_EXEMPT:	return ("SO_MAC_EXEMPT");
1959 		case SO_ALLZONES:	return ("SO_ALLZONES");
1960 		case SO_MAC_IMPLICIT:	return ("SO_MAC_IMPLICIT");
1961 		case SO_VRRP:		return ("SO_VRRP");
1962 		case SO_EXCLBIND:	return ("SO_EXCLBIND");
1963 		case SO_DOMAIN:		return ("SO_DOMAIN");
1964 
1965 		default:		(void) snprintf(pri->code_buf, CBSIZE,
1966 					    "0x%lx", val);
1967 					return (pri->code_buf);
1968 		}
1969 	} else {
1970 		char *s = pri->code_buf;
1971 		size_t used = 1;
1972 		long val2;
1973 
1974 		*s = '\0';
1975 		val2 = val & ~(SO_DEBUG|SO_ACCEPTCONN|SO_REUSEADDR|SO_KEEPALIVE|
1976 		    SO_DONTROUTE|SO_BROADCAST|SO_USELOOPBACK|SO_LINGER|
1977 		    SO_OOBINLINE|SO_DGRAM_ERRIND|SO_RECVUCRED);
1978 		if (val2)
1979 			used = snprintf(s, CBSIZE, "|0x%lx", val2);
1980 		if (val & SO_DEBUG)
1981 			used = strlcat(s, "|SO_DEBUG", CBSIZE);
1982 		if (val & SO_ACCEPTCONN)
1983 			used = strlcat(s, "|SO_ACCEPTCONN", CBSIZE);
1984 		if (val & SO_REUSEADDR)
1985 			used = strlcat(s, "|SO_REUSEADDR", CBSIZE);
1986 		if (val & SO_KEEPALIVE)
1987 			used = strlcat(s, "|SO_KEEPALIVE", CBSIZE);
1988 		if (val & SO_DONTROUTE)
1989 			used = strlcat(s, "|SO_DONTROUTE", CBSIZE);
1990 		if (val & SO_BROADCAST)
1991 			used = strlcat(s, "|SO_BROADCAST", CBSIZE);
1992 		if (val & SO_USELOOPBACK)
1993 			used = strlcat(s, "|SO_USELOOPBACK", CBSIZE);
1994 		if (val & SO_LINGER)
1995 			used = strlcat(s, "|SO_LINGER", CBSIZE);
1996 		if (val & SO_OOBINLINE)
1997 			used = strlcat(s, "|SO_OOBINLINE", CBSIZE);
1998 		if (val & SO_DGRAM_ERRIND)
1999 			used = strlcat(s, "|SO_DGRAM_ERRIND", CBSIZE);
2000 		if (val & SO_RECVUCRED)
2001 			used = strlcat(s, "|SO_RECVUCRED", CBSIZE);
2002 		if (used >= CBSIZE || val == 0)
2003 			(void) snprintf(s + 1, CBSIZE-1, "0x%lx", val);
2004 		return ((const char *)(s + 1));
2005 	}
2006 #undef CBSIZE
2007 }
2008 
2009 const char *
2010 route_optname(private_t *pri, long val)
2011 {
2012 	switch (val) {
2013 	case RT_AWARE:
2014 		return ("RT_AWARE");
2015 	default:
2016 		(void) snprintf(pri->code_buf, sizeof (pri->code_buf),
2017 		    "0x%lx", val);
2018 		return (pri->code_buf);
2019 	}
2020 }
2021 
2022 const char *
2023 tcp_optname(private_t *pri, long val)
2024 {
2025 	switch (val) {
2026 	case TCP_NODELAY:		return ("TCP_NODELAY");
2027 	case TCP_MAXSEG:		return ("TCP_MAXSEG");
2028 	case TCP_KEEPALIVE:		return ("TCP_KEEPALIVE");
2029 	case TCP_NOTIFY_THRESHOLD:	return ("TCP_NOTIFY_THRESHOLD");
2030 	case TCP_ABORT_THRESHOLD:	return ("TCP_ABORT_THRESHOLD");
2031 	case TCP_CONN_NOTIFY_THRESHOLD:	return ("TCP_CONN_NOTIFY_THRESHOLD");
2032 	case TCP_CONN_ABORT_THRESHOLD:	return ("TCP_CONN_ABORT_THRESHOLD");
2033 	case TCP_RECVDSTADDR:		return ("TCP_RECVDSTADDR");
2034 	case TCP_ANONPRIVBIND:		return ("TCP_ANONPRIVBIND");
2035 	case TCP_EXCLBIND:		return ("TCP_EXCLBIND");
2036 	case TCP_INIT_CWND:		return ("TCP_INIT_CWND");
2037 	case TCP_KEEPALIVE_THRESHOLD:	return ("TCP_KEEPALIVE_THRESHOLD");
2038 	case TCP_KEEPALIVE_ABORT_THRESHOLD:
2039 		return ("TCP_KEEPALIVE_ABORT_THRESHOLD");
2040 	case TCP_CORK:			return ("TCP_CORK");
2041 	case TCP_RTO_INITIAL:		return ("TCP_RTO_INITIAL");
2042 	case TCP_RTO_MIN:		return ("TCP_RTO_MIN");
2043 	case TCP_RTO_MAX:		return ("TCP_RTO_MAX");
2044 	case TCP_LINGER2:		return ("TCP_LINGER2");
2045 	case TCP_KEEPIDLE:		return ("TCP_KEEPIDLE");
2046 	case TCP_KEEPCNT:		return ("TCP_KEEPCNT");
2047 	case TCP_KEEPINTVL:		return ("TCP_KEEPINTVL");
2048 	case TCP_CONGESTION:		return ("TCP_CONGESTION");
2049 
2050 	default:			(void) snprintf(pri->code_buf,
2051 					    sizeof (pri->code_buf),
2052 					    "0x%lx", val);
2053 					return (pri->code_buf);
2054 	}
2055 }
2056 
2057 
2058 const char *
2059 sctp_optname(private_t *pri, long val)
2060 {
2061 	switch (val) {
2062 	case SCTP_RTOINFO:		return ("SCTP_RTOINFO");
2063 	case SCTP_ASSOCINFO:		return ("SCTP_ASSOCINFO");
2064 	case SCTP_INITMSG:		return ("SCTP_INITMSG");
2065 	case SCTP_NODELAY:		return ("SCTP_NODELAY");
2066 	case SCTP_AUTOCLOSE:		return ("SCTP_AUTOCLOSE");
2067 	case SCTP_SET_PEER_PRIMARY_ADDR:
2068 		return ("SCTP_SET_PEER_PRIMARY_ADDR");
2069 	case SCTP_PRIMARY_ADDR:		return ("SCTP_PRIMARY_ADDR");
2070 	case SCTP_ADAPTATION_LAYER:	return ("SCTP_ADAPTATION_LAYER");
2071 	case SCTP_DISABLE_FRAGMENTS:	return ("SCTP_DISABLE_FRAGMENTS");
2072 	case SCTP_PEER_ADDR_PARAMS:	return ("SCTP_PEER_ADDR_PARAMS");
2073 	case SCTP_DEFAULT_SEND_PARAM:	return ("SCTP_DEFAULT_SEND_PARAM");
2074 	case SCTP_EVENTS:		return ("SCTP_EVENTS");
2075 	case SCTP_I_WANT_MAPPED_V4_ADDR:
2076 		return ("SCTP_I_WANT_MAPPED_V4_ADDR");
2077 	case SCTP_MAXSEG:		return ("SCTP_MAXSEG");
2078 	case SCTP_STATUS:		return ("SCTP_STATUS");
2079 	case SCTP_GET_PEER_ADDR_INFO:	return ("SCTP_GET_PEER_ADDR_INFO");
2080 
2081 	case SCTP_ADD_ADDR:		return ("SCTP_ADD_ADDR");
2082 	case SCTP_REM_ADDR:		return ("SCTP_REM_ADDR");
2083 
2084 	default:			(void) snprintf(pri->code_buf,
2085 					    sizeof (pri->code_buf),
2086 					    "0x%lx", val);
2087 					return (pri->code_buf);
2088 	}
2089 }
2090 
2091 
2092 const char *
2093 udp_optname(private_t *pri, long val)
2094 {
2095 	switch (val) {
2096 	case UDP_CHECKSUM:		return ("UDP_CHECKSUM");
2097 	case UDP_ANONPRIVBIND:		return ("UDP_ANONPRIVBIND");
2098 	case UDP_EXCLBIND:		return ("UDP_EXCLBIND");
2099 	case UDP_RCVHDR:		return ("UDP_RCVHDR");
2100 	case UDP_NAT_T_ENDPOINT:	return ("UDP_NAT_T_ENDPOINT");
2101 	case UDP_SRCPORT_HASH:		return ("UDP_SRCPORT_HASH");
2102 
2103 	default:			(void) snprintf(pri->code_buf,
2104 					    sizeof (pri->code_buf), "0x%lx",
2105 					    val);
2106 					return (pri->code_buf);
2107 	}
2108 }
2109 
2110 
2111 const char *
2112 ip_optname(private_t *pri, long val)
2113 {
2114 	switch (val) {
2115 	case IP_OPTIONS:		return ("IP_OPTIONS");
2116 	case IP_HDRINCL:		return ("IP_HDRINCL");
2117 	case IP_TOS:			return ("IP_TOS");
2118 	case IP_TTL:			return ("IP_TTL");
2119 	case IP_RECVOPTS:		return ("IP_RECVOPTS");
2120 	case IP_RECVRETOPTS:		return ("IP_RECVRETOPTS");
2121 	case IP_RECVDSTADDR:		return ("IP_RECVDSTADDR");
2122 	case IP_RETOPTS:		return ("IP_RETOPTS");
2123 	case IP_RECVIF:			return ("IP_RECVIF");
2124 	case IP_RECVSLLA:		return ("IP_RECVSLLA");
2125 	case IP_RECVTTL:		return ("IP_RECVTTL");
2126 	case IP_RECVTOS:		return ("IP_RECVTOS");
2127 	case IP_MULTICAST_IF:		return ("IP_MULTICAST_IF");
2128 	case IP_MULTICAST_TTL:		return ("IP_MULTICAST_TTL");
2129 	case IP_MULTICAST_LOOP:		return ("IP_MULTICAST_LOOP");
2130 	case IP_ADD_MEMBERSHIP:		return ("IP_ADD_MEMBERSHIP");
2131 	case IP_DROP_MEMBERSHIP:	return ("IP_DROP_MEMBERSHIP");
2132 	case IP_BLOCK_SOURCE:		return ("IP_BLOCK_SOURCE");
2133 	case IP_UNBLOCK_SOURCE:		return ("IP_UNBLOCK_SOURCE");
2134 	case IP_ADD_SOURCE_MEMBERSHIP:	return ("IP_ADD_SOURCE_MEMBERSHIP");
2135 	case IP_DROP_SOURCE_MEMBERSHIP:	return ("IP_DROP_SOURCE_MEMBERSHIP");
2136 	case IP_NEXTHOP:		return ("IP_NEXTHOP");
2137 	/* IP_PKTINFO and IP_RECVPKTINFO share the same code */
2138 	case IP_PKTINFO:		return ("IP_PKTINFO/IP_RECVPKTINFO");
2139 	case IP_DONTFRAG:		return ("IP_DONTFRAG");
2140 	case IP_SEC_OPT:		return ("IP_SEC_OPT");
2141 	case MCAST_JOIN_GROUP:		return ("MCAST_JOIN_GROUP");
2142 	case MCAST_LEAVE_GROUP:		return ("MCAST_LEAVE_GROUP");
2143 	case MCAST_BLOCK_SOURCE:	return ("MCAST_BLOCK_SOURCE");
2144 	case MCAST_UNBLOCK_SOURCE:	return ("MCAST_UNBLOCK_SOURCE");
2145 	case MCAST_JOIN_SOURCE_GROUP:	return ("MCAST_JOIN_SOURCE_GROUP");
2146 	case MCAST_LEAVE_SOURCE_GROUP:	return ("MCAST_LEAVE_SOURCE_GROUP");
2147 	case MRT_INIT:			return ("MRT_INIT");
2148 	case MRT_DONE:			return ("MRT_DONE");
2149 	case MRT_ADD_VIF:		return ("MRT_ADD_VIF");
2150 	case MRT_DEL_VIF:		return ("MRT_DEL_VIF");
2151 	case MRT_ADD_MFC:		return ("MRT_ADD_MFC");
2152 	case MRT_DEL_MFC:		return ("MRT_DEL_MFC");
2153 	case MRT_VERSION:		return ("MRT_VERSION");
2154 	case MRT_ASSERT:		return ("MRT_ASSERT");
2155 	case IP_BOUND_IF:		return ("IP_BOUND_IF");
2156 	case IP_UNSPEC_SRC:		return ("IP_UNSPEC_SRC");
2157 	case IP_BROADCAST_TTL:		return ("IP_BROADCAST_TTL");
2158 	case IP_DHCPINIT_IF:		return ("IP_DHCPINIT_IF");
2159 	case IP_REUSEADDR:		return ("IP_REUSEADDR");
2160 	case IP_DONTROUTE:		return ("IP_DONTROUTE");
2161 	case IP_BROADCAST:		return ("IP_BROADCAST");
2162 
2163 	default:			(void) snprintf(pri->code_buf,
2164 					    sizeof (pri->code_buf), "0x%lx",
2165 					    val);
2166 					return (pri->code_buf);
2167 	}
2168 }
2169 
2170 const char *
2171 ipv6_optname(private_t *pri, long val)
2172 {
2173 	switch (val) {
2174 	case IPV6_UNICAST_HOPS:		return ("IPV6_UNICAST_HOPS");
2175 	case IPV6_MULTICAST_IF:		return ("IPV6_MULTICAST_IF");
2176 	case IPV6_MULTICAST_HOPS:	return ("IPV6_MULTICAST_HOPS");
2177 	case IPV6_MULTICAST_LOOP:	return ("IPV6_MULTICAST_LOOP");
2178 	case IPV6_JOIN_GROUP:		return ("IPV6_JOIN_GROUP");
2179 	case IPV6_LEAVE_GROUP:		return ("IPV6_LEAVE_GROUP");
2180 	case IPV6_PKTINFO:		return ("IPV6_PKTINFO");
2181 	case IPV6_HOPLIMIT:		return ("IPV6_HOPLIMIT");
2182 	case IPV6_NEXTHOP:		return ("IPV6_NEXTHOP");
2183 	case IPV6_HOPOPTS:		return ("IPV6_HOPOPTS");
2184 	case IPV6_DSTOPTS:		return ("IPV6_DSTOPTS");
2185 	case IPV6_RTHDR:		return ("IPV6_RTHDR");
2186 	case IPV6_RTHDRDSTOPTS:		return ("IPV6_RTHDRDSTOPTS");
2187 	case IPV6_RECVPKTINFO:		return ("IPV6_RECVPKTINFO");
2188 	case IPV6_RECVHOPLIMIT:		return ("IPV6_RECVHOPLIMIT");
2189 	case IPV6_RECVHOPOPTS:		return ("IPV6_RECVHOPOPTS");
2190 	case _OLD_IPV6_RECVDSTOPTS:	return ("_OLD_IPV6_RECVDSTOPTS");
2191 	case IPV6_RECVRTHDR:		return ("IPV6_RECVRTHDR");
2192 	case IPV6_RECVRTHDRDSTOPTS:	return ("IPV6_RECVRTHDRDSTOPTS");
2193 	case IPV6_CHECKSUM:		return ("IPV6_CHECKSUM");
2194 	case IPV6_RECVTCLASS:		return ("IPV6_RECVTCLASS");
2195 	case IPV6_USE_MIN_MTU:		return ("IPV6_USE_MIN_MTU");
2196 	case IPV6_DONTFRAG:		return ("IPV6_DONTFRAG");
2197 	case IPV6_SEC_OPT:		return ("IPV6_SEC_OPT");
2198 	case IPV6_SRC_PREFERENCES:	return ("IPV6_SRC_PREFERENCES");
2199 	case IPV6_RECVPATHMTU:		return ("IPV6_RECVPATHMTU");
2200 	case IPV6_PATHMTU:		return ("IPV6_PATHMTU");
2201 	case IPV6_TCLASS:		return ("IPV6_TCLASS");
2202 	case IPV6_V6ONLY:		return ("IPV6_V6ONLY");
2203 	case IPV6_RECVDSTOPTS:		return ("IPV6_RECVDSTOPTS");
2204 	case MCAST_JOIN_GROUP:		return ("MCAST_JOIN_GROUP");
2205 	case MCAST_LEAVE_GROUP:		return ("MCAST_LEAVE_GROUP");
2206 	case MCAST_BLOCK_SOURCE:	return ("MCAST_BLOCK_SOURCE");
2207 	case MCAST_UNBLOCK_SOURCE:	return ("MCAST_UNBLOCK_SOURCE");
2208 	case MCAST_JOIN_SOURCE_GROUP:	return ("MCAST_JOIN_SOURCE_GROUP");
2209 	case MCAST_LEAVE_SOURCE_GROUP:	return ("MCAST_LEAVE_SOURCE_GROUP");
2210 
2211 	default:			(void) snprintf(pri->code_buf,
2212 					    sizeof (pri->code_buf), "0x%lx",
2213 					    val);
2214 					return (pri->code_buf);
2215 	}
2216 }
2217 
2218 
2219 const char *
2220 icmpv6_optname(private_t *pri, long val)
2221 {
2222 	switch (val) {
2223 	case ICMP6_FILTER:		return ("ICMP6_FILTER");
2224 	default:			(void) snprintf(pri->code_buf,
2225 					    sizeof (pri->code_buf), "0x%lx",
2226 					    val);
2227 					return (pri->code_buf);
2228 	}
2229 }
2230 
2231 
2232 /*
2233  * Print setsockopt()/getsockopt() 3rd argument.
2234  */
2235 /*ARGSUSED*/
2236 void
2237 prt_son(private_t *pri, int raw, long val)
2238 {
2239 	/* cheating -- look at the level */
2240 	switch (pri->sys_args[1]) {
2241 	case SOL_SOCKET:	outstring(pri, sol_optname(pri, val));
2242 				break;
2243 	case SOL_ROUTE:		outstring(pri, route_optname(pri, val));
2244 				break;
2245 	case IPPROTO_IP:	outstring(pri, ip_optname(pri, val));
2246 				break;
2247 	case IPPROTO_IPV6:	outstring(pri, ipv6_optname(pri, val));
2248 				break;
2249 	case IPPROTO_ICMPV6:	outstring(pri, icmpv6_optname(pri, val));
2250 				break;
2251 	case IPPROTO_TCP:	outstring(pri, tcp_optname(pri, val));
2252 				break;
2253 	case IPPROTO_UDP:	outstring(pri, udp_optname(pri, val));
2254 				break;
2255 	case IPPROTO_SCTP:	outstring(pri, sctp_optname(pri, val));
2256 				break;
2257 	default:		prt_dec(pri, 0, val);
2258 				break;
2259 	}
2260 }
2261 
2262 
2263 /*
2264  * Print utrap type
2265  */
2266 /*ARGSUSED*/
2267 void
2268 prt_utt(private_t *pri, int raw, long val)
2269 {
2270 	const char *s = NULL;
2271 
2272 #ifdef __sparc
2273 	if (!raw) {
2274 		switch (val) {
2275 		case UT_INSTRUCTION_DISABLED:
2276 			s = "UT_INSTRUCTION_DISABLED"; break;
2277 		case UT_INSTRUCTION_ERROR:
2278 			s = "UT_INSTRUCTION_ERROR"; break;
2279 		case UT_INSTRUCTION_PROTECTION:
2280 			s = "UT_INSTRUCTION_PROTECTION"; break;
2281 		case UT_ILLTRAP_INSTRUCTION:
2282 			s = "UT_ILLTRAP_INSTRUCTION"; break;
2283 		case UT_ILLEGAL_INSTRUCTION:
2284 			s = "UT_ILLEGAL_INSTRUCTION"; break;
2285 		case UT_PRIVILEGED_OPCODE:
2286 			s = "UT_PRIVILEGED_OPCODE"; break;
2287 		case UT_FP_DISABLED:
2288 			s = "UT_FP_DISABLED"; break;
2289 		case UT_FP_EXCEPTION_IEEE_754:
2290 			s = "UT_FP_EXCEPTION_IEEE_754"; break;
2291 		case UT_FP_EXCEPTION_OTHER:
2292 			s = "UT_FP_EXCEPTION_OTHER"; break;
2293 		case UT_TAG_OVERFLOW:
2294 			s = "UT_TAG_OVERFLOW"; break;
2295 		case UT_DIVISION_BY_ZERO:
2296 			s = "UT_DIVISION_BY_ZERO"; break;
2297 		case UT_DATA_EXCEPTION:
2298 			s = "UT_DATA_EXCEPTION"; break;
2299 		case UT_DATA_ERROR:
2300 			s = "UT_DATA_ERROR"; break;
2301 		case UT_DATA_PROTECTION:
2302 			s = "UT_DATA_PROTECTION"; break;
2303 		case UT_MEM_ADDRESS_NOT_ALIGNED:
2304 			s = "UT_MEM_ADDRESS_NOT_ALIGNED"; break;
2305 		case UT_PRIVILEGED_ACTION:
2306 			s = "UT_PRIVILEGED_ACTION"; break;
2307 		case UT_ASYNC_DATA_ERROR:
2308 			s = "UT_ASYNC_DATA_ERROR"; break;
2309 		case UT_TRAP_INSTRUCTION_16:
2310 			s = "UT_TRAP_INSTRUCTION_16"; break;
2311 		case UT_TRAP_INSTRUCTION_17:
2312 			s = "UT_TRAP_INSTRUCTION_17"; break;
2313 		case UT_TRAP_INSTRUCTION_18:
2314 			s = "UT_TRAP_INSTRUCTION_18"; break;
2315 		case UT_TRAP_INSTRUCTION_19:
2316 			s = "UT_TRAP_INSTRUCTION_19"; break;
2317 		case UT_TRAP_INSTRUCTION_20:
2318 			s = "UT_TRAP_INSTRUCTION_20"; break;
2319 		case UT_TRAP_INSTRUCTION_21:
2320 			s = "UT_TRAP_INSTRUCTION_21"; break;
2321 		case UT_TRAP_INSTRUCTION_22:
2322 			s = "UT_TRAP_INSTRUCTION_22"; break;
2323 		case UT_TRAP_INSTRUCTION_23:
2324 			s = "UT_TRAP_INSTRUCTION_23"; break;
2325 		case UT_TRAP_INSTRUCTION_24:
2326 			s = "UT_TRAP_INSTRUCTION_24"; break;
2327 		case UT_TRAP_INSTRUCTION_25:
2328 			s = "UT_TRAP_INSTRUCTION_25"; break;
2329 		case UT_TRAP_INSTRUCTION_26:
2330 			s = "UT_TRAP_INSTRUCTION_26"; break;
2331 		case UT_TRAP_INSTRUCTION_27:
2332 			s = "UT_TRAP_INSTRUCTION_27"; break;
2333 		case UT_TRAP_INSTRUCTION_28:
2334 			s = "UT_TRAP_INSTRUCTION_28"; break;
2335 		case UT_TRAP_INSTRUCTION_29:
2336 			s = "UT_TRAP_INSTRUCTION_29"; break;
2337 		case UT_TRAP_INSTRUCTION_30:
2338 			s = "UT_TRAP_INSTRUCTION_30"; break;
2339 		case UT_TRAP_INSTRUCTION_31:
2340 			s = "UT_TRAP_INSTRUCTION_31"; break;
2341 		}
2342 	}
2343 #endif /* __sparc */
2344 
2345 	if (s == NULL)
2346 		prt_dec(pri, 0, val);
2347 	else
2348 		outstring(pri, s);
2349 }
2350 
2351 
2352 /*
2353  * Print utrap handler
2354  */
2355 void
2356 prt_uth(private_t *pri, int raw, long val)
2357 {
2358 	const char *s = NULL;
2359 
2360 	if (!raw) {
2361 		switch (val) {
2362 		case (long)UTH_NOCHANGE:	s = "UTH_NOCHANGE"; break;
2363 		}
2364 	}
2365 
2366 	if (s == NULL)
2367 		prt_hex(pri, 0, val);
2368 	else
2369 		outstring(pri, s);
2370 }
2371 
2372 const char *
2373 access_flags(private_t *pri, long arg)
2374 {
2375 #define	E_OK 010
2376 	char *str = pri->code_buf;
2377 
2378 	if (arg & ~(R_OK|W_OK|X_OK|E_OK))
2379 		return (NULL);
2380 
2381 	/* NB: F_OK == 0 */
2382 	if (arg == F_OK)
2383 		return ("F_OK");
2384 	if (arg == E_OK)
2385 		return ("F_OK|E_OK");
2386 
2387 	*str = '\0';
2388 	if (arg & R_OK)
2389 		(void) strlcat(str, "|R_OK", sizeof (pri->code_buf));
2390 	if (arg & W_OK)
2391 		(void) strlcat(str, "|W_OK", sizeof (pri->code_buf));
2392 	if (arg & X_OK)
2393 		(void) strlcat(str, "|X_OK", sizeof (pri->code_buf));
2394 	if (arg & E_OK)
2395 		(void) strlcat(str, "|E_OK", sizeof (pri->code_buf));
2396 	return ((const char *)(str + 1));
2397 #undef E_OK
2398 }
2399 
2400 /*
2401  * Print access() flags.
2402  */
2403 void
2404 prt_acc(private_t *pri, int raw, long val)
2405 {
2406 	const char *s = raw? NULL : access_flags(pri, val);
2407 
2408 	if (s == NULL)
2409 		prt_dex(pri, 0, val);
2410 	else
2411 		outstring(pri, s);
2412 }
2413 
2414 /*
2415  * Print shutdown() "how" (2nd) argument
2416  */
2417 void
2418 prt_sht(private_t *pri, int raw, long val)
2419 {
2420 	if (raw) {
2421 		prt_dex(pri, 0, val);
2422 		return;
2423 	}
2424 	switch (val) {
2425 	case SHUT_RD:	outstring(pri, "SHUT_RD");	break;
2426 	case SHUT_WR:	outstring(pri, "SHUT_WR");	break;
2427 	case SHUT_RDWR:	outstring(pri, "SHUT_RDWR");	break;
2428 	default:	prt_dec(pri, 0, val);		break;
2429 	}
2430 }
2431 
2432 /*
2433  * Print fcntl() F_SETFL flags (3rd) argument or fdsync flag (2nd arg)
2434  */
2435 static struct fcntl_flags {
2436 	long		val;
2437 	const char	*name;
2438 } fcntl_flags[] = {
2439 #define	FC_FL(flag)	{ (long)flag, "|" # flag }
2440 	FC_FL(FREVOKED),
2441 	FC_FL(FREAD),
2442 	FC_FL(FWRITE),
2443 	FC_FL(FNDELAY),
2444 	FC_FL(FAPPEND),
2445 	FC_FL(FSYNC),
2446 	FC_FL(FDSYNC),
2447 	FC_FL(FRSYNC),
2448 	FC_FL(FOFFMAX),
2449 	FC_FL(FNONBLOCK),
2450 	FC_FL(FCREAT),
2451 	FC_FL(FTRUNC),
2452 	FC_FL(FEXCL),
2453 	FC_FL(FNOCTTY),
2454 	FC_FL(FXATTR),
2455 	FC_FL(FASYNC),
2456 	FC_FL(FNODSYNC)
2457 #undef FC_FL
2458 };
2459 
2460 void
2461 prt_ffg(private_t *pri, int raw, long val)
2462 {
2463 #define	CBSIZE	sizeof (pri->code_buf)
2464 	char *s = pri->code_buf;
2465 	size_t used = 1;
2466 	struct fcntl_flags *fp;
2467 
2468 	if (raw) {
2469 		(void) snprintf(s, CBSIZE, "0x%lx", val);
2470 		outstring(pri, s);
2471 		return;
2472 	}
2473 	if (val == 0) {
2474 		outstring(pri, "(no flags)");
2475 		return;
2476 	}
2477 
2478 	*s = '\0';
2479 	for (fp = fcntl_flags;
2480 	    fp < &fcntl_flags[sizeof (fcntl_flags) / sizeof (*fp)]; fp++) {
2481 		if (val & fp->val) {
2482 			used = strlcat(s, fp->name, CBSIZE);
2483 			val &= ~fp->val;
2484 		}
2485 	}
2486 
2487 	if (val != 0 && used <= CBSIZE)
2488 		used += snprintf(s + used, CBSIZE - used, "|0x%lx", val);
2489 
2490 	if (used >= CBSIZE)
2491 		(void) snprintf(s + 1, CBSIZE-1, "0x%lx", val);
2492 	outstring(pri, s + 1);
2493 #undef CBSIZE
2494 }
2495 
2496 void
2497 prt_prs(private_t *pri, int raw, long val)
2498 {
2499 	static size_t setsize;
2500 	priv_set_t *set = priv_allocset();
2501 
2502 	if (setsize == 0) {
2503 		const priv_impl_info_t *info = getprivimplinfo();
2504 		if (info != NULL)
2505 			setsize = info->priv_setsize * sizeof (priv_chunk_t);
2506 	}
2507 
2508 	if (setsize != 0 && !raw && set != NULL &&
2509 	    Pread(Proc, set, setsize, val) == setsize) {
2510 		int i;
2511 
2512 		outstring(pri, "{");
2513 		for (i = 0; i < setsize / sizeof (priv_chunk_t); i++) {
2514 			char buf[9];	/* 8 hex digits + '\0' */
2515 			(void) snprintf(buf, sizeof (buf), "%08x",
2516 			    ((priv_chunk_t *)set)[i]);
2517 			outstring(pri, buf);
2518 		}
2519 
2520 		outstring(pri, "}");
2521 	} else {
2522 		prt_hex(pri, 0, val);
2523 	}
2524 
2525 	if (set != NULL)
2526 		priv_freeset(set);
2527 }
2528 
2529 /*
2530  * Print privilege set operation.
2531  */
2532 void
2533 prt_pro(private_t *pri, int raw, long val)
2534 {
2535 	const char *s = NULL;
2536 
2537 	if (!raw) {
2538 		switch ((priv_op_t)val) {
2539 		case PRIV_ON:		s = "PRIV_ON";		break;
2540 		case PRIV_OFF:		s = "PRIV_OFF";		break;
2541 		case PRIV_SET:		s = "PRIV_SET";		break;
2542 		}
2543 	}
2544 
2545 	if (s == NULL)
2546 		prt_dec(pri, 0, val);
2547 	else
2548 		outstring(pri, s);
2549 }
2550 
2551 /*
2552  * Print privilege set name
2553  */
2554 void
2555 prt_prn(private_t *pri, int raw, long val)
2556 {
2557 	const char *s = NULL;
2558 
2559 	if (!raw)
2560 		s = priv_getsetbynum((int)val);
2561 
2562 	if (s == NULL)
2563 		prt_dec(pri, 0, val);
2564 	else {
2565 		char *dup = strdup(s);
2566 		char *q;
2567 
2568 		/* Do the best we can in this case */
2569 		if (dup == NULL) {
2570 			outstring(pri, s);
2571 			return;
2572 		}
2573 
2574 		outstring(pri, "PRIV_");
2575 
2576 		q = dup;
2577 
2578 		while (*q != '\0') {
2579 			*q = toupper(*q);
2580 			q++;
2581 		}
2582 		outstring(pri, dup);
2583 		free(dup);
2584 	}
2585 }
2586 
2587 /*
2588  * Print process flag names.
2589  */
2590 void
2591 prt_pfl(private_t *pri, int raw, long val)
2592 {
2593 	const char *s = NULL;
2594 
2595 	if (!raw) {
2596 		switch ((int)val) {
2597 		case PRIV_DEBUG:	s = "PRIV_DEBUG";	break;
2598 		case PRIV_AWARE:	s = "PRIV_AWARE";	break;
2599 		case PRIV_XPOLICY:	s = "PRIV_XPOLICY";	break;
2600 		case PRIV_AWARE_RESET:  s = "PRIV_AWARE_RESET"; break;
2601 		case PRIV_PFEXEC:	s = "PRIV_PFEXEC";	break;
2602 		case NET_MAC_AWARE:	s =  "NET_MAC_AWARE";	break;
2603 		case NET_MAC_AWARE_INHERIT:
2604 			s = "NET_MAC_AWARE_INHERIT";
2605 			break;
2606 		}
2607 	}
2608 
2609 	if (s == NULL)
2610 		prt_dec(pri, 0, val);
2611 	else
2612 		outstring(pri, s);
2613 }
2614 
2615 /*
2616  * Print lgrp_affinity_{get,set}() arguments.
2617  */
2618 /*ARGSUSED*/
2619 void
2620 prt_laf(private_t *pri, int raw, long val)
2621 {
2622 	lgrp_affinity_args_t	laff;
2623 
2624 	if (Pread(Proc, &laff, sizeof (lgrp_affinity_args_t), val) !=
2625 	    sizeof (lgrp_affinity_args_t)) {
2626 		prt_hex(pri, 0, val);
2627 		return;
2628 	}
2629 	/*
2630 	 * arrange the arguments in the order that user calls with
2631 	 */
2632 	prt_dec(pri, 0, laff.idtype);
2633 	outstring(pri, ", ");
2634 	prt_dec(pri, 0, laff.id);
2635 	outstring(pri, ", ");
2636 	prt_dec(pri, 0, laff.lgrp);
2637 	outstring(pri, ", ");
2638 	if (pri->sys_args[0] == LGRP_SYS_AFFINITY_SET)
2639 		prt_dec(pri, 0, laff.aff);
2640 }
2641 
2642 /*
2643  * Print a key_t as IPC_PRIVATE if it is 0.
2644  */
2645 void
2646 prt_key(private_t *pri, int raw, long val)
2647 {
2648 	if (!raw && val == 0)
2649 		outstring(pri, "IPC_PRIVATE");
2650 	else
2651 		prt_dec(pri, 0, val);
2652 }
2653 
2654 
2655 /*
2656  * Print zone_getattr() attribute types.
2657  */
2658 void
2659 prt_zga(private_t *pri, int raw, long val)
2660 {
2661 	const char *s = NULL;
2662 
2663 	if (!raw) {
2664 		switch ((int)val) {
2665 		case ZONE_ATTR_NAME:	s = "ZONE_ATTR_NAME";	break;
2666 		case ZONE_ATTR_ROOT:	s = "ZONE_ATTR_ROOT";	break;
2667 		case ZONE_ATTR_STATUS:	s = "ZONE_ATTR_STATUS";	break;
2668 		case ZONE_ATTR_PRIVSET:	s = "ZONE_ATTR_PRIVSET"; break;
2669 		case ZONE_ATTR_UNIQID:	s = "ZONE_ATTR_UNIQID"; break;
2670 		case ZONE_ATTR_POOLID:	s = "ZONE_ATTR_POOLID"; break;
2671 		case ZONE_ATTR_INITPID:	s = "ZONE_ATTR_INITPID"; break;
2672 		case ZONE_ATTR_SLBL:	s = "ZONE_ATTR_SLBL"; break;
2673 		case ZONE_ATTR_INITNAME:	s = "ZONE_ATTR_INITNAME"; break;
2674 		case ZONE_ATTR_BOOTARGS:	s = "ZONE_ATTR_BOOTARGS"; break;
2675 		case ZONE_ATTR_BRAND:	s = "ZONE_ATTR_BRAND"; break;
2676 		case ZONE_ATTR_FLAGS:	s = "ZONE_ATTR_FLAGS"; break;
2677 		case ZONE_ATTR_PHYS_MCAP: s = "ZONE_ATTR_PHYS_MCAP"; break;
2678 		}
2679 	}
2680 
2681 	if (s == NULL)
2682 		prt_dec(pri, 0, val);
2683 	else
2684 		outstring(pri, s);
2685 }
2686 
2687 /*
2688  * Print a file descriptor as AT_FDCWD if necessary
2689  */
2690 void
2691 prt_atc(private_t *pri, int raw, long val)
2692 {
2693 	if ((int)val == AT_FDCWD) {
2694 		if (raw)
2695 			prt_hex(pri, 0, (uint_t)AT_FDCWD);
2696 		else
2697 			outstring(pri, "AT_FDCWD");
2698 	} else {
2699 		prt_dec(pri, 0, val);
2700 	}
2701 }
2702 
2703 /*
2704  * Print Trusted Networking database operation codes (labelsys; tn*)
2705  */
2706 static void
2707 prt_tnd(private_t *pri, int raw, long val)
2708 {
2709 	const char *s = NULL;
2710 
2711 	if (!raw) {
2712 		switch ((tsol_dbops_t)val) {
2713 		case TNDB_NOOP:		s = "TNDB_NOOP";	break;
2714 		case TNDB_LOAD:		s = "TNDB_LOAD";	break;
2715 		case TNDB_DELETE:	s = "TNDB_DELETE";	break;
2716 		case TNDB_FLUSH:	s = "TNDB_FLUSH";	break;
2717 		case TNDB_GET:		s = "TNDB_GET";		break;
2718 		}
2719 	}
2720 
2721 	if (s == NULL)
2722 		prt_dec(pri, 0, val);
2723 	else
2724 		outstring(pri, s);
2725 }
2726 
2727 /*
2728  * Print LIO_XX flags
2729  */
2730 void
2731 prt_lio(private_t *pri, int raw, long val)
2732 {
2733 	if (raw)
2734 		prt_dec(pri, 0, val);
2735 	else if (val == LIO_WAIT)
2736 		outstring(pri, "LIO_WAIT");
2737 	else if (val == LIO_NOWAIT)
2738 		outstring(pri, "LIO_NOWAIT");
2739 	else
2740 		prt_dec(pri, 0, val);
2741 }
2742 
2743 const char *
2744 door_flags(private_t *pri, long val)
2745 {
2746 	door_attr_t attr = (door_attr_t)val;
2747 	char *str = pri->code_buf;
2748 
2749 	*str = '\0';
2750 #define	PROCESS_FLAG(flg)						\
2751 	if (attr & flg) {						\
2752 		(void) strlcat(str, "|" #flg, sizeof (pri->code_buf));	\
2753 		attr &= ~flg;						\
2754 	}
2755 
2756 	PROCESS_FLAG(DOOR_UNREF);
2757 	PROCESS_FLAG(DOOR_UNREF_MULTI);
2758 	PROCESS_FLAG(DOOR_PRIVATE);
2759 	PROCESS_FLAG(DOOR_REFUSE_DESC);
2760 	PROCESS_FLAG(DOOR_NO_CANCEL);
2761 	PROCESS_FLAG(DOOR_LOCAL);
2762 	PROCESS_FLAG(DOOR_REVOKED);
2763 	PROCESS_FLAG(DOOR_IS_UNREF);
2764 #undef PROCESS_FLAG
2765 
2766 	if (attr != 0 || *str == '\0') {
2767 		size_t len = strlen(str);
2768 		(void) snprintf(str + len, sizeof (pri->code_buf) - len,
2769 		    "|0x%X", attr);
2770 	}
2771 
2772 	return (str + 1);
2773 }
2774 
2775 /*
2776  * Print door_create() flags
2777  */
2778 void
2779 prt_dfl(private_t *pri, int raw, long val)
2780 {
2781 	if (raw)
2782 		prt_hex(pri, 0, val);
2783 	else
2784 		outstring(pri, door_flags(pri, val));
2785 }
2786 
2787 /*
2788  * Print door_*param() param argument
2789  */
2790 void
2791 prt_dpm(private_t *pri, int raw, long val)
2792 {
2793 	if (raw)
2794 		prt_hex(pri, 0, val);
2795 	else if (val == DOOR_PARAM_DESC_MAX)
2796 		outstring(pri, "DOOR_PARAM_DESC_MAX");
2797 	else if (val == DOOR_PARAM_DATA_MIN)
2798 		outstring(pri, "DOOR_PARAM_DATA_MIN");
2799 	else if (val == DOOR_PARAM_DATA_MAX)
2800 		outstring(pri, "DOOR_PARAM_DATA_MAX");
2801 	else
2802 		prt_hex(pri, 0, val);
2803 }
2804 
2805 /*
2806  * Print rctlsys subcodes
2807  */
2808 void
2809 prt_rsc(private_t *pri, int raw, long val)	/* print utssys code */
2810 {
2811 	const char *s = raw? NULL : rctlsyscode(val);
2812 
2813 	if (s == NULL)
2814 		prt_dec(pri, 0, val);
2815 	else
2816 		outstring(pri, s);
2817 }
2818 
2819 /*
2820  * Print getrctl flags
2821  */
2822 void
2823 prt_rgf(private_t *pri, int raw, long val)
2824 {
2825 	long action = val & (~RCTLSYS_ACTION_MASK);
2826 
2827 	if (raw)
2828 		prt_hex(pri, 0, val);
2829 	else if (action == RCTL_FIRST)
2830 		outstring(pri, "RCTL_FIRST");
2831 	else if (action == RCTL_NEXT)
2832 		outstring(pri, "RCTL_NEXT");
2833 	else if (action == RCTL_USAGE)
2834 		outstring(pri, "RCTL_USAGE");
2835 	else
2836 		prt_hex(pri, 0, val);
2837 }
2838 
2839 /*
2840  * Print setrctl flags
2841  */
2842 void
2843 prt_rsf(private_t *pri, int raw, long val)
2844 {
2845 	long action = val & (~RCTLSYS_ACTION_MASK);
2846 	long pval = val & RCTL_LOCAL_ACTION_MASK;
2847 	char *s = pri->code_buf;
2848 
2849 	if (raw) {
2850 		prt_hex(pri, 0, val);
2851 		return;
2852 	} else if (action == RCTL_INSERT)
2853 		(void) strcpy(s, "RCTL_INSERT");
2854 	else if (action == RCTL_DELETE)
2855 		(void) strcpy(s, "RCTL_DELETE");
2856 	else if (action == RCTL_REPLACE)
2857 		(void) strcpy(s, "RCTL_REPLACE");
2858 	else {
2859 		prt_hex(pri, 0, val);
2860 		return;
2861 	}
2862 
2863 	if (pval & RCTL_USE_RECIPIENT_PID) {
2864 		pval ^= RCTL_USE_RECIPIENT_PID;
2865 		(void) strlcat(s, "|RCTL_USE_RECIPIENT_PID",
2866 		    sizeof (pri->code_buf));
2867 	}
2868 
2869 	if ((pval & RCTLSYS_ACTION_MASK) != 0)
2870 		prt_hex(pri, 0, val);
2871 	else if (*s != '\0')
2872 		outstring(pri, s);
2873 	else
2874 		prt_hex(pri, 0, val);
2875 }
2876 
2877 /*
2878  * Print rctlctl flags
2879  */
2880 void
2881 prt_rcf(private_t *pri, int raw, long val)
2882 {
2883 	long action = val & (~RCTLSYS_ACTION_MASK);
2884 
2885 	if (raw)
2886 		prt_hex(pri, 0, val);
2887 	else if (action == RCTLCTL_GET)
2888 		outstring(pri, "RCTLCTL_GET");
2889 	else if (action == RCTLCTL_SET)
2890 		outstring(pri, "RCTLCTL_SET");
2891 	else
2892 		prt_hex(pri, 0, val);
2893 }
2894 
2895 /*
2896  * Print setprojrctl flags
2897  */
2898 void
2899 prt_spf(private_t *pri, int raw, long val)
2900 {
2901 	long action = val & TASK_PROJ_MASK;
2902 
2903 	if (!raw && (action == TASK_PROJ_PURGE))
2904 		outstring(pri, "TASK_PROJ_PURGE");
2905 	else
2906 		prt_hex(pri, 0, val);
2907 }
2908 
2909 /*
2910  * Print forkx() flags
2911  */
2912 void
2913 prt_fxf(private_t *pri, int raw, long val)
2914 {
2915 	char *str;
2916 
2917 	if (val == 0)
2918 		outstring(pri, "0");
2919 	else if (raw || (val & ~(FORK_NOSIGCHLD | FORK_WAITPID)))
2920 		prt_hhx(pri, 0, val);
2921 	else {
2922 		str = pri->code_buf;
2923 		*str = '\0';
2924 		if (val & FORK_NOSIGCHLD)
2925 			(void) strlcat(str, "|FORK_NOSIGCHLD",
2926 			    sizeof (pri->code_buf));
2927 		if (val & FORK_WAITPID)
2928 			(void) strlcat(str, "|FORK_WAITPID",
2929 			    sizeof (pri->code_buf));
2930 		outstring(pri, str + 1);
2931 	}
2932 }
2933 
2934 /*
2935  * Print faccessat() flag
2936  */
2937 void
2938 prt_fat(private_t *pri, int raw, long val)
2939 {
2940 	if (val == 0)
2941 		outstring(pri, "0");
2942 	else if (!raw && val == AT_EACCESS)
2943 		outstring(pri, "AT_EACCESS");
2944 	else
2945 		prt_hex(pri, 0, val);
2946 }
2947 
2948 /*
2949  * Print unlinkat() flag
2950  */
2951 void
2952 prt_uat(private_t *pri, int raw, long val)
2953 {
2954 	if (val == 0)
2955 		outstring(pri, "0");
2956 	else if (!raw && val == AT_REMOVEDIR)
2957 		outstring(pri, "AT_REMOVEDIR");
2958 	else
2959 		prt_hex(pri, 0, val);
2960 }
2961 
2962 /*
2963  * Print AT_SYMLINK_NOFOLLOW / AT_SYMLINK_FOLLOW flag
2964  */
2965 void
2966 prt_snf(private_t *pri, int raw, long val)
2967 {
2968 	if (val == 0)
2969 		outstring(pri, "0");
2970 	else if (!raw && val == AT_SYMLINK_NOFOLLOW)
2971 		outstring(pri, "AT_SYMLINK_NOFOLLOW");
2972 	else if (!raw && val == AT_SYMLINK_FOLLOW)
2973 		outstring(pri, "AT_SYMLINK_FOLLOW");
2974 	else
2975 		prt_hex(pri, 0, val);
2976 }
2977 
2978 void
2979 prt_grf(private_t *pri, int raw, long val)
2980 {
2981 	int first = 1;
2982 
2983 	if (raw != 0 || val == 0 ||
2984 	    (val & ~(GRND_NONBLOCK | GRND_RANDOM)) != 0) {
2985 		outstring(pri, "0");
2986 		return;
2987 	}
2988 
2989 	if (val & GRND_NONBLOCK) {
2990 		outstring(pri, "|GRND_NONBLOCK" + first);
2991 		first = 0;
2992 	}
2993 	if (val & GRND_RANDOM) {
2994 		outstring(pri, "|GRND_RANDOM" + first);
2995 		first = 0;
2996 	}
2997 }
2998 
2999 /*
3000  * Array of pointers to print functions, one for each format.
3001  */
3002 void (* const Print[])() = {
3003 	prt_nov,	/* NOV -- no value */
3004 	prt_dec,	/* DEC -- print value in decimal */
3005 	prt_oct,	/* OCT -- print value in octal */
3006 	prt_hex,	/* HEX -- print value in hexadecimal */
3007 	prt_dex,	/* DEX -- print value in hexadecimal if big enough */
3008 	prt_stg,	/* STG -- print value as string */
3009 	prt_ioc,	/* IOC -- print ioctl code */
3010 	prt_fcn,	/* FCN -- print fcntl code */
3011 	prt_s86,	/* S86 -- print sysi86 code */
3012 	prt_uts,	/* UTS -- print utssys code */
3013 	prt_opn,	/* OPN -- print open code */
3014 	prt_sig,	/* SIG -- print signal name plus flags */
3015 	prt_uat,	/* UAT -- print unlinkat() flag */
3016 	prt_msc,	/* MSC -- print msgsys command */
3017 	prt_msf,	/* MSF -- print msgsys flags */
3018 	prt_smc,	/* SMC -- print semsys command */
3019 	prt_sef,	/* SEF -- print semsys flags */
3020 	prt_shc,	/* SHC -- print shmsys command */
3021 	prt_shf,	/* SHF -- print shmsys flags */
3022 	prt_fat,	/* FAT -- print faccessat( flag */
3023 	prt_sfs,	/* SFS -- print sysfs code */
3024 	prt_rst,	/* RST -- print string returned by syscall */
3025 	prt_smf,	/* SMF -- print streams message flags */
3026 	prt_ioa,	/* IOA -- print ioctl argument */
3027 	prt_pip,	/* PIP -- print pipe flags */
3028 	prt_mtf,	/* MTF -- print mount flags */
3029 	prt_mft,	/* MFT -- print mount file system type */
3030 	prt_iob,	/* IOB -- print contents of I/O buffer */
3031 	prt_hhx,	/* HHX -- print value in hexadecimal (half size) */
3032 	prt_wop,	/* WOP -- print waitsys() options */
3033 	prt_spm,	/* SPM -- print sigprocmask argument */
3034 	prt_rlk,	/* RLK -- print readlink buffer */
3035 	prt_mpr,	/* MPR -- print mmap()/mprotect() flags */
3036 	prt_mty,	/* MTY -- print mmap() mapping type flags */
3037 	prt_mcf,	/* MCF -- print memcntl() function */
3038 	prt_mc4,	/* MC4 -- print memcntl() (fourth) argument */
3039 	prt_mc5,	/* MC5 -- print memcntl() (fifth) argument */
3040 	prt_mad,	/* MAD -- print madvise() argument */
3041 	prt_ulm,	/* ULM -- print ulimit() argument */
3042 	prt_rlm,	/* RLM -- print get/setrlimit() argument */
3043 	prt_cnf,	/* CNF -- print sysconfig() argument */
3044 	prt_inf,	/* INF -- print sysinfo() argument */
3045 	prt_ptc,	/* PTC -- print pathconf/fpathconf() argument */
3046 	prt_fui,	/* FUI -- print fusers() input argument */
3047 	prt_idt,	/* IDT -- print idtype_t, waitid() argument */
3048 	prt_lwf,	/* LWF -- print lwp_create() flags */
3049 	prt_itm,	/* ITM -- print [get|set]itimer() arg */
3050 	prt_llo,	/* LLO -- print long long offset arg */
3051 	prt_mod,	/* MOD -- print modctl() subcode */
3052 	prt_whn,	/* WHN -- print lseek() whence arguiment */
3053 	prt_acl,	/* ACL -- print acl() code */
3054 	prt_aio,	/* AIO -- print kaio() code */
3055 	prt_aud,	/* AUD -- print auditsys() code */
3056 	prt_uns,	/* DEC -- print value in unsigned decimal */
3057 	prt_clc,	/* CLC -- print cladm command argument */
3058 	prt_clf,	/* CLF -- print cladm flag argument */
3059 	prt_cor,	/* COR -- print corectl() subcode */
3060 	prt_cco,	/* CCO -- print corectl() options */
3061 	prt_ccc,	/* CCC -- print corectl() content */
3062 	prt_rcc,	/* RCC -- print corectl() returned content */
3063 	prt_cpc,	/* CPC -- print cpc() subcode */
3064 	prt_sqc,	/* SQC -- print sigqueue() si_code argument */
3065 	prt_pc4,	/* PC4 -- print priocntlsys() (fourth) argument */
3066 	prt_pc5,	/* PC5 -- print priocntlsys() (key, value) pairs */
3067 	prt_pst,	/* PST -- print processor set id */
3068 	prt_mif,	/* MIF -- print meminfo() arguments */
3069 	prt_pfm,	/* PFM -- print so_socket() proto-family (1st) arg */
3070 	prt_skt,	/* SKT -- print so_socket() socket-type (2nd) arg */
3071 	prt_skp,	/* SKP -- print so_socket() protocol (3rd) arg */
3072 	prt_skv,	/* SKV -- print socket version arg */
3073 	prt_sol,	/* SOL -- print [sg]etsockopt() level (2nd) arg */
3074 	prt_son,	/* SON -- print [sg]etsockopt() opt-name (3rd) arg */
3075 	prt_utt,	/* UTT -- print utrap type */
3076 	prt_uth,	/* UTH -- print utrap handler */
3077 	prt_acc,	/* ACC -- print access() flags */
3078 	prt_sht,	/* SHT -- print shutdown() how (2nd) argument */
3079 	prt_ffg,	/* FFG -- print fcntl() flags (3rd) argument */
3080 	prt_prs,	/* PRS -- print privilege set */
3081 	prt_pro,	/* PRO -- print privilege set operation */
3082 	prt_prn,	/* PRN -- print privilege set name */
3083 	prt_pfl,	/* PFL -- print privilege/process flag name */
3084 	prt_laf,	/* LAF -- print lgrp_affinity arguments */
3085 	prt_key,	/* KEY -- print key_t 0 as IPC_PRIVATE */
3086 	prt_zga,	/* ZGA -- print zone_getattr attribute types */
3087 	prt_atc,	/* ATC -- print AT_FDCWD or file descriptor */
3088 	prt_lio,	/* LIO -- print LIO_XX flags */
3089 	prt_dfl,	/* DFL -- print door_create() flags */
3090 	prt_dpm,	/* DPM -- print DOOR_PARAM_XX flags */
3091 	prt_tnd,	/* TND -- print trusted network data base opcode */
3092 	prt_rsc,	/* RSC -- print rctlsys() subcodes */
3093 	prt_rgf,	/* RGF -- print getrctl() flags */
3094 	prt_rsf,	/* RSF -- print setrctl() flags */
3095 	prt_rcf,	/* RCF -- print rctlsys_ctl() flags */
3096 	prt_fxf,	/* FXF -- print forkx() flags */
3097 	prt_spf,	/* SPF -- print rctlsys_projset() flags */
3098 	prt_un1,	/* UN1 -- as prt_uns except for -1 */
3099 	prt_mob,	/* MOB -- print mmapobj() flags */
3100 	prt_snf,	/* SNF -- print AT_SYMLINK_[NO]FOLLOW flag */
3101 	prt_skc,	/* SKC -- print sockconfig() subcode */
3102 	prt_acf,	/* ACF -- print accept4 flags */
3103 	prt_pfd,	/* PFD -- print pipe fds */
3104 	prt_grf,	/* GRF -- print getrandom flags */
3105 	prt_psdelta,	/* PSDLT -- print psecflags(2) delta */
3106 	prt_psfw,	/* PSFW -- print psecflags(2) set */
3107 	prt_dec,	/* HID -- hidden argument, make this the last one */
3108 };
3109