1 /*
2 * Copyright (c) 2006 "David Kirchner" <dpk@dpk.net>. All rights reserved.
3 *
4 * Redistribution and use in source and binary forms, with or without
5 * modification, are permitted provided that the following conditions
6 * are met:
7 * 1. Redistributions of source code must retain the above copyright
8 * notice, this list of conditions and the following disclaimer.
9 * 2. Redistributions in binary form must reproduce the above copyright
10 * notice, this list of conditions and the following disclaimer in the
11 * documentation and/or other materials provided with the distribution.
12 *
13 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
14 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
15 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
16 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
17 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
18 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
19 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
20 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
21 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
22 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
23 * SUCH DAMAGE.
24 */
25
26 #define L2CAP_SOCKET_CHECKED
27
28 #include <sys/types.h>
29 #include <sys/acl.h>
30 #include <sys/capsicum.h>
31 #include <sys/event.h>
32 #include <sys/extattr.h>
33 #include <sys/inotify.h>
34 #include <sys/linker.h>
35 #include <sys/mman.h>
36 #include <sys/mount.h>
37 #include <sys/poll.h>
38 #include <sys/procctl.h>
39 #include <sys/ptrace.h>
40 #include <sys/reboot.h>
41 #include <sys/resource.h>
42 #include <sys/rtprio.h>
43 #include <sys/sem.h>
44 #include <sys/shm.h>
45 #include <sys/socket.h>
46 #include <sys/stat.h>
47 #include <sys/thr.h>
48 #include <sys/umtx.h>
49 #include <machine/sysarch.h>
50 #include <netinet/in.h>
51 #include <netinet/sctp.h>
52 #include <netinet/tcp.h>
53 #include <netinet/udp.h>
54 #include <netinet/udplite.h>
55 #include <nfsserver/nfs.h>
56 #include <ufs/ufs/quota.h>
57 #include <vm/vm.h>
58 #include <vm/vm_param.h>
59 #include <aio.h>
60 #include <fcntl.h>
61 #include <sched.h>
62 #include <stdbool.h>
63 #include <stdio.h>
64 #include <stdlib.h>
65 #include <strings.h>
66 #include <sysdecode.h>
67 #include <unistd.h>
68 #include <sys/bitstring.h>
69 #include <netgraph/bluetooth/include/ng_hci.h>
70 #include <netgraph/bluetooth/include/ng_l2cap.h>
71 #include <netgraph/bluetooth/include/ng_btsocket.h>
72
73 #include "support.h"
74
75 #define X(a) { a, #a },
76 #define XEND { 0, NULL }
77
78 #define TABLE_START(n) static struct name_table n[] = {
79 #define TABLE_ENTRY X
80 #define TABLE_END XEND };
81
82 #include "tables.h"
83
84 #undef TABLE_START
85 #undef TABLE_ENTRY
86 #undef TABLE_END
87
88 const char *
sysdecode_atfd(int fd)89 sysdecode_atfd(int fd)
90 {
91
92 if (fd == AT_FDCWD)
93 return ("AT_FDCWD");
94 return (NULL);
95 }
96
97 bool
sysdecode_atflags(FILE * fp,int flag,int * rem)98 sysdecode_atflags(FILE *fp, int flag, int *rem)
99 {
100
101 return (print_mask_int(fp, atflags, flag, rem));
102 }
103
104 static struct name_table semctlops[] = {
105 X(GETNCNT) X(GETPID) X(GETVAL) X(GETALL) X(GETZCNT) X(SETVAL) X(SETALL)
106 X(IPC_RMID) X(IPC_SET) X(IPC_STAT) XEND
107 };
108
109 const char *
sysdecode_semctl_cmd(int cmd)110 sysdecode_semctl_cmd(int cmd)
111 {
112
113 return (lookup_value(semctlops, cmd));
114 }
115
116 static struct name_table shmctlops[] = {
117 X(IPC_RMID) X(IPC_SET) X(IPC_STAT) XEND
118 };
119
120 const char *
sysdecode_shmctl_cmd(int cmd)121 sysdecode_shmctl_cmd(int cmd)
122 {
123
124 return (lookup_value(shmctlops, cmd));
125 }
126
127 const char *
sysdecode_msgctl_cmd(int cmd)128 sysdecode_msgctl_cmd(int cmd)
129 {
130
131 return (sysdecode_shmctl_cmd(cmd));
132 }
133
134 static struct name_table semgetflags[] = {
135 X(IPC_CREAT) X(IPC_EXCL) X(SEM_R) X(SEM_A) X((SEM_R>>3)) X((SEM_A>>3))
136 X((SEM_R>>6)) X((SEM_A>>6)) XEND
137 };
138
139 bool
sysdecode_semget_flags(FILE * fp,int flag,int * rem)140 sysdecode_semget_flags(FILE *fp, int flag, int *rem)
141 {
142
143 return (print_mask_int(fp, semgetflags, flag, rem));
144 }
145
146 static struct name_table idtypes[] = {
147 X(P_PID) X(P_PPID) X(P_PGID) X(P_SID) X(P_CID) X(P_UID) X(P_GID)
148 X(P_ALL) X(P_LWPID) X(P_TASKID) X(P_PROJID) X(P_POOLID) X(P_JAILID)
149 X(P_CTID) X(P_CPUID) X(P_PSETID) XEND
150 };
151
152 /* XXX: idtype is really an idtype_t */
153 const char *
sysdecode_idtype(int idtype)154 sysdecode_idtype(int idtype)
155 {
156
157 return (lookup_value(idtypes, idtype));
158 }
159
160 /*
161 * [g|s]etsockopt's level argument can either be SOL_SOCKET or a
162 * protocol-specific value.
163 */
164 const char *
sysdecode_sockopt_level(int level)165 sysdecode_sockopt_level(int level)
166 {
167 const char *str;
168
169 if (level == SOL_SOCKET)
170 return ("SOL_SOCKET");
171
172 /* SOL_* constants for Bluetooth sockets. */
173 str = lookup_value(ngbtsolevel, level);
174 if (str != NULL)
175 return (str);
176
177 /*
178 * IP and Infiniband sockets use IP protocols as levels. Not all
179 * protocols are valid but it is simpler to just allow all of them.
180 *
181 * XXX: IPPROTO_IP == 0, but UNIX domain sockets use a level of 0
182 * for private options.
183 */
184 str = sysdecode_ipproto(level);
185 if (str != NULL)
186 return (str);
187
188 return (NULL);
189 }
190
191 bool
sysdecode_vmprot(FILE * fp,int type,int * rem)192 sysdecode_vmprot(FILE *fp, int type, int *rem)
193 {
194
195 return (print_mask_int(fp, vmprot, type, rem));
196 }
197
198 static struct name_table sockflags[] = {
199 X(SOCK_CLOEXEC) X(SOCK_CLOFORK) X(SOCK_NONBLOCK) XEND
200 };
201
202 bool
sysdecode_socket_type(FILE * fp,int type,int * rem)203 sysdecode_socket_type(FILE *fp, int type, int *rem)
204 {
205 const char *str;
206 uintmax_t val;
207 bool printed;
208
209 str = lookup_value(socktype,
210 type & ~(SOCK_CLOEXEC | SOCK_CLOFORK | SOCK_NONBLOCK));
211 if (str != NULL) {
212 fputs(str, fp);
213 *rem = 0;
214 printed = true;
215 } else {
216 *rem = type & ~(SOCK_CLOEXEC | SOCK_CLOFORK | SOCK_NONBLOCK);
217 printed = false;
218 }
219 val = type & (SOCK_CLOEXEC | SOCK_CLOFORK | SOCK_NONBLOCK);
220 print_mask_part(fp, sockflags, &val, &printed);
221 return (printed);
222 }
223
224 bool
sysdecode_access_mode(FILE * fp,int mode,int * rem)225 sysdecode_access_mode(FILE *fp, int mode, int *rem)
226 {
227
228 return (print_mask_int(fp, accessmode, mode, rem));
229 }
230
231 /* XXX: 'type' is really an acl_type_t. */
232 const char *
sysdecode_acltype(int type)233 sysdecode_acltype(int type)
234 {
235
236 return (lookup_value(acltype, type));
237 }
238
239 bool
sysdecode_cap_fcntlrights(FILE * fp,uint32_t rights,uint32_t * rem)240 sysdecode_cap_fcntlrights(FILE *fp, uint32_t rights, uint32_t *rem)
241 {
242
243 return (print_mask_int(fp, capfcntl, rights, rem));
244 }
245
246 bool
sysdecode_close_range_flags(FILE * fp,int flags,int * rem)247 sysdecode_close_range_flags(FILE *fp, int flags, int *rem)
248 {
249
250 return (print_mask_int(fp, closerangeflags, flags, rem));
251 }
252
253 const char *
sysdecode_extattrnamespace(int namespace)254 sysdecode_extattrnamespace(int namespace)
255 {
256
257 return (lookup_value(extattrns, namespace));
258 }
259
260 const char *
sysdecode_fadvice(int advice)261 sysdecode_fadvice(int advice)
262 {
263
264 return (lookup_value(fadvisebehav, advice));
265 }
266
267 bool
sysdecode_open_flags(FILE * fp,int flags,int * rem)268 sysdecode_open_flags(FILE *fp, int flags, int *rem)
269 {
270 bool printed;
271 int mode;
272 uintmax_t val;
273
274 mode = flags & O_ACCMODE;
275 flags &= ~O_ACCMODE;
276 switch (mode) {
277 case O_RDONLY:
278 if (flags & O_EXEC) {
279 flags &= ~O_EXEC;
280 fputs("O_EXEC", fp);
281 } else
282 fputs("O_RDONLY", fp);
283 printed = true;
284 mode = 0;
285 break;
286 case O_WRONLY:
287 fputs("O_WRONLY", fp);
288 printed = true;
289 mode = 0;
290 break;
291 case O_RDWR:
292 fputs("O_RDWR", fp);
293 printed = true;
294 mode = 0;
295 break;
296 default:
297 printed = false;
298 }
299 val = (unsigned)flags;
300 print_mask_part(fp, openflags, &val, &printed);
301 if (rem != NULL)
302 *rem = val | mode;
303 return (printed);
304 }
305
306 bool
sysdecode_fcntl_fileflags(FILE * fp,int flags,int * rem)307 sysdecode_fcntl_fileflags(FILE *fp, int flags, int *rem)
308 {
309 bool printed;
310 int oflags;
311
312 /*
313 * The file flags used with F_GETFL/F_SETFL mostly match the
314 * flags passed to open(2). However, a few open-only flag
315 * bits have been repurposed for fcntl-only flags.
316 */
317 oflags = flags & ~(O_NOFOLLOW | FRDAHEAD);
318 printed = sysdecode_open_flags(fp, oflags, rem);
319 if (flags & O_NOFOLLOW) {
320 fprintf(fp, "%sFPOIXSHM", printed ? "|" : "");
321 printed = true;
322 }
323 if (flags & FRDAHEAD) {
324 fprintf(fp, "%sFRDAHEAD", printed ? "|" : "");
325 printed = true;
326 }
327 return (printed);
328 }
329
330 bool
sysdecode_flock_operation(FILE * fp,int operation,int * rem)331 sysdecode_flock_operation(FILE *fp, int operation, int *rem)
332 {
333
334 return (print_mask_int(fp, flockops, operation, rem));
335 }
336
337 static struct name_table getfsstatmode[] = {
338 X(MNT_WAIT) X(MNT_NOWAIT) XEND
339 };
340
341 const char *
sysdecode_getfsstat_mode(int mode)342 sysdecode_getfsstat_mode(int mode)
343 {
344
345 return (lookup_value(getfsstatmode, mode));
346 }
347
348 const char *
sysdecode_getrusage_who(int who)349 sysdecode_getrusage_who(int who)
350 {
351
352 return (lookup_value(rusage, who));
353 }
354
355 bool
sysdecode_inotifyflags(FILE * fp,int flag,int * rem)356 sysdecode_inotifyflags(FILE *fp, int flag, int *rem)
357 {
358
359 return (print_mask_int(fp, inotifyflags, flag, rem));
360 }
361
362 static struct name_table kevent_user_ffctrl[] = {
363 X(NOTE_FFNOP) X(NOTE_FFAND) X(NOTE_FFOR) X(NOTE_FFCOPY)
364 XEND
365 };
366
367 static struct name_table kevent_rdwr_fflags[] = {
368 X(NOTE_LOWAT) X(NOTE_FILE_POLL) XEND
369 };
370
371 static struct name_table kevent_vnode_fflags[] = {
372 X(NOTE_DELETE) X(NOTE_WRITE) X(NOTE_EXTEND) X(NOTE_ATTRIB)
373 X(NOTE_LINK) X(NOTE_RENAME) X(NOTE_REVOKE) X(NOTE_OPEN) X(NOTE_CLOSE)
374 X(NOTE_CLOSE_WRITE) X(NOTE_READ) XEND
375 };
376
377 static struct name_table kevent_proc_fflags[] = {
378 X(NOTE_EXIT) X(NOTE_FORK) X(NOTE_EXEC) X(NOTE_TRACK) X(NOTE_TRACKERR)
379 X(NOTE_CHILD) XEND
380 };
381
382 static struct name_table kevent_timer_fflags[] = {
383 X(NOTE_SECONDS) X(NOTE_MSECONDS) X(NOTE_USECONDS) X(NOTE_NSECONDS)
384 X(NOTE_ABSTIME) XEND
385 };
386
387 void
sysdecode_kevent_fflags(FILE * fp,short filter,int fflags,int base)388 sysdecode_kevent_fflags(FILE *fp, short filter, int fflags, int base)
389 {
390 int rem;
391
392 if (fflags == 0) {
393 fputs("0", fp);
394 return;
395 }
396
397 switch (filter) {
398 case EVFILT_READ:
399 case EVFILT_WRITE:
400 if (!print_mask_int(fp, kevent_rdwr_fflags, fflags, &rem))
401 fprintf(fp, "%#x", rem);
402 else if (rem != 0)
403 fprintf(fp, "|%#x", rem);
404 break;
405 case EVFILT_VNODE:
406 if (!print_mask_int(fp, kevent_vnode_fflags, fflags, &rem))
407 fprintf(fp, "%#x", rem);
408 else if (rem != 0)
409 fprintf(fp, "|%#x", rem);
410 break;
411 case EVFILT_PROC:
412 case EVFILT_PROCDESC:
413 if (!print_mask_int(fp, kevent_proc_fflags, fflags, &rem))
414 fprintf(fp, "%#x", rem);
415 else if (rem != 0)
416 fprintf(fp, "|%#x", rem);
417 break;
418 case EVFILT_TIMER:
419 if (!print_mask_int(fp, kevent_timer_fflags, fflags, &rem))
420 fprintf(fp, "%#x", rem);
421 else if (rem != 0)
422 fprintf(fp, "|%#x", rem);
423 break;
424 case EVFILT_USER: {
425 unsigned int ctrl, data;
426
427 ctrl = fflags & NOTE_FFCTRLMASK;
428 data = fflags & NOTE_FFLAGSMASK;
429
430 if (fflags & NOTE_TRIGGER) {
431 fputs("NOTE_TRIGGER", fp);
432 if (fflags == NOTE_TRIGGER)
433 return;
434 fputc('|', fp);
435 }
436
437 /*
438 * An event with 'ctrl' == NOTE_FFNOP is either a reported
439 * (output) event for which only 'data' should be output
440 * or a pointless input event. Assume that pointless
441 * input events don't occur in practice. An event with
442 * NOTE_TRIGGER is always an input event.
443 */
444 if (ctrl != NOTE_FFNOP || fflags & NOTE_TRIGGER) {
445 fprintf(fp, "%s|%#x",
446 lookup_value(kevent_user_ffctrl, ctrl), data);
447 } else {
448 print_integer(fp, data, base);
449 }
450 break;
451 }
452 default:
453 print_integer(fp, fflags, base);
454 break;
455 }
456 }
457
458 bool
sysdecode_kevent_flags(FILE * fp,int flags,int * rem)459 sysdecode_kevent_flags(FILE *fp, int flags, int *rem)
460 {
461
462 return (print_mask_int(fp, keventflags, flags, rem));
463 }
464
465 const char *
sysdecode_kevent_filter(int filter)466 sysdecode_kevent_filter(int filter)
467 {
468
469 return (lookup_value(keventfilters, filter));
470 }
471
472 const char *
sysdecode_kldsym_cmd(int cmd)473 sysdecode_kldsym_cmd(int cmd)
474 {
475
476 return (lookup_value(kldsymcmd, cmd));
477 }
478
479 const char *
sysdecode_kldunload_flags(int flags)480 sysdecode_kldunload_flags(int flags)
481 {
482
483 return (lookup_value(kldunloadfflags, flags));
484 }
485
486 const char *
sysdecode_lio_listio_mode(int mode)487 sysdecode_lio_listio_mode(int mode)
488 {
489
490 return (lookup_value(lio_listiomodes, mode));
491 }
492
493 const char *
sysdecode_madvice(int advice)494 sysdecode_madvice(int advice)
495 {
496
497 return (lookup_value(madvisebehav, advice));
498 }
499
500 const char *
sysdecode_minherit_inherit(int inherit)501 sysdecode_minherit_inherit(int inherit)
502 {
503
504 return (lookup_value(minheritflags, inherit));
505 }
506
507 bool
sysdecode_mlockall_flags(FILE * fp,int flags,int * rem)508 sysdecode_mlockall_flags(FILE *fp, int flags, int *rem)
509 {
510
511 return (print_mask_int(fp, mlockallflags, flags, rem));
512 }
513
514 bool
sysdecode_mmap_prot(FILE * fp,int prot,int * rem)515 sysdecode_mmap_prot(FILE *fp, int prot, int *rem)
516 {
517 int protm;
518 bool printed;
519
520 printed = false;
521 protm = PROT_MAX_EXTRACT(prot);
522 prot &= ~PROT_MAX(protm);
523 if (protm != 0) {
524 fputs("PROT_MAX(", fp);
525 printed = print_mask_int(fp, mmapprot, protm, rem);
526 fputs(")|", fp);
527 }
528 return (print_mask_int(fp, mmapprot, prot, rem) || printed);
529 }
530
531 bool
sysdecode_fileflags(FILE * fp,fflags_t flags,fflags_t * rem)532 sysdecode_fileflags(FILE *fp, fflags_t flags, fflags_t *rem)
533 {
534
535 return (print_mask_0(fp, fileflags, flags, rem));
536 }
537
538 bool
sysdecode_filemode(FILE * fp,int mode,int * rem)539 sysdecode_filemode(FILE *fp, int mode, int *rem)
540 {
541
542 return (print_mask_0(fp, filemode, mode, rem));
543 }
544
545 bool
sysdecode_mount_flags(FILE * fp,int flags,int * rem)546 sysdecode_mount_flags(FILE *fp, int flags, int *rem)
547 {
548
549 return (print_mask_int(fp, mountflags, flags, rem));
550 }
551
552 bool
sysdecode_msync_flags(FILE * fp,int flags,int * rem)553 sysdecode_msync_flags(FILE *fp, int flags, int *rem)
554 {
555
556 return (print_mask_int(fp, msyncflags, flags, rem));
557 }
558
559 const char *
sysdecode_nfssvc_flags(int flags)560 sysdecode_nfssvc_flags(int flags)
561 {
562
563 return (lookup_value(nfssvcflags, flags));
564 }
565
566 static struct name_table pipe2flags[] = {
567 X(O_CLOEXEC) X(O_CLOFORK) X(O_NONBLOCK) XEND
568 };
569
570 bool
sysdecode_pipe2_flags(FILE * fp,int flags,int * rem)571 sysdecode_pipe2_flags(FILE *fp, int flags, int *rem)
572 {
573
574 return (print_mask_0(fp, pipe2flags, flags, rem));
575 }
576
577 bool
sysdecode_pollfd_events(FILE * fp,int flags,int * rem)578 sysdecode_pollfd_events(FILE *fp, int flags, int *rem)
579 {
580
581 return (print_mask_int(fp, pollfdevents, flags, rem));
582 }
583
584 const char *
sysdecode_prio_which(int which)585 sysdecode_prio_which(int which)
586 {
587
588 return (lookup_value(prio, which));
589 }
590
591 const char *
sysdecode_procctl_cmd(int cmd)592 sysdecode_procctl_cmd(int cmd)
593 {
594
595 return (lookup_value(procctlcmd, cmd));
596 }
597
598 const char *
sysdecode_ptrace_request(int request)599 sysdecode_ptrace_request(int request)
600 {
601
602 return (lookup_value(ptraceop, request));
603 }
604
605 static struct name_table quotatypes[] = {
606 X(GRPQUOTA) X(USRQUOTA) XEND
607 };
608
609 bool
sysdecode_quotactl_cmd(FILE * fp,int cmd)610 sysdecode_quotactl_cmd(FILE *fp, int cmd)
611 {
612 const char *primary, *type;
613
614 primary = lookup_value(quotactlcmds, cmd >> SUBCMDSHIFT);
615 if (primary == NULL)
616 return (false);
617 fprintf(fp, "QCMD(%s,", primary);
618 type = lookup_value(quotatypes, cmd & SUBCMDMASK);
619 if (type != NULL)
620 fprintf(fp, "%s", type);
621 else
622 fprintf(fp, "%#x", cmd & SUBCMDMASK);
623 fprintf(fp, ")");
624 return (true);
625 }
626
627 bool
sysdecode_reboot_howto(FILE * fp,int howto,int * rem)628 sysdecode_reboot_howto(FILE *fp, int howto, int *rem)
629 {
630 bool printed;
631
632 /*
633 * RB_AUTOBOOT is special in that its value is zero, but it is
634 * also an implied argument if a different operation is not
635 * requested via RB_HALT, RB_POWERCYCLE, RB_POWEROFF, or
636 * RB_REROOT.
637 */
638 if (howto != 0 && (howto & (RB_HALT | RB_POWEROFF | RB_REROOT |
639 RB_POWERCYCLE)) == 0) {
640 fputs("RB_AUTOBOOT|", fp);
641 printed = true;
642 } else
643 printed = false;
644 return (print_mask_int(fp, rebootopt, howto, rem) || printed);
645 }
646
647 bool
sysdecode_rfork_flags(FILE * fp,int flags,int * rem)648 sysdecode_rfork_flags(FILE *fp, int flags, int *rem)
649 {
650
651 return (print_mask_int(fp, rforkflags, flags, rem));
652 }
653
654 const char *
sysdecode_rlimit(int resource)655 sysdecode_rlimit(int resource)
656 {
657
658 return (lookup_value(rlimit, resource));
659 }
660
661 const char *
sysdecode_scheduler_policy(int policy)662 sysdecode_scheduler_policy(int policy)
663 {
664
665 return (lookup_value(schedpolicy, policy));
666 }
667
668 bool
sysdecode_sendfile_flags(FILE * fp,int flags,int * rem)669 sysdecode_sendfile_flags(FILE *fp, int flags, int *rem)
670 {
671
672 return (print_mask_int(fp, sendfileflags, flags, rem));
673 }
674
675 bool
sysdecode_shmat_flags(FILE * fp,int flags,int * rem)676 sysdecode_shmat_flags(FILE *fp, int flags, int *rem)
677 {
678
679 return (print_mask_int(fp, shmatflags, flags, rem));
680 }
681
682 const char *
sysdecode_shutdown_how(int how)683 sysdecode_shutdown_how(int how)
684 {
685
686 return (lookup_value(shutdownhow, how));
687 }
688
689 const char *
sysdecode_sigbus_code(int si_code)690 sysdecode_sigbus_code(int si_code)
691 {
692
693 return (lookup_value(sigbuscode, si_code));
694 }
695
696 const char *
sysdecode_sigchld_code(int si_code)697 sysdecode_sigchld_code(int si_code)
698 {
699
700 return (lookup_value(sigchldcode, si_code));
701 }
702
703 const char *
sysdecode_sigfpe_code(int si_code)704 sysdecode_sigfpe_code(int si_code)
705 {
706
707 return (lookup_value(sigfpecode, si_code));
708 }
709
710 const char *
sysdecode_sigill_code(int si_code)711 sysdecode_sigill_code(int si_code)
712 {
713
714 return (lookup_value(sigillcode, si_code));
715 }
716
717 const char *
sysdecode_sigsegv_code(int si_code)718 sysdecode_sigsegv_code(int si_code)
719 {
720
721 return (lookup_value(sigsegvcode, si_code));
722 }
723
724 const char *
sysdecode_sigtrap_code(int si_code)725 sysdecode_sigtrap_code(int si_code)
726 {
727
728 return (lookup_value(sigtrapcode, si_code));
729 }
730
731 const char *
sysdecode_sigprocmask_how(int how)732 sysdecode_sigprocmask_how(int how)
733 {
734
735 return (lookup_value(sigprocmaskhow, how));
736 }
737
738 const char *
sysdecode_socketdomain(int domain)739 sysdecode_socketdomain(int domain)
740 {
741
742 return (lookup_value(sockdomain, domain));
743 }
744
745 const char *
sysdecode_socket_protocol(int domain,int protocol)746 sysdecode_socket_protocol(int domain, int protocol)
747 {
748
749 switch (domain) {
750 case PF_INET:
751 case PF_INET6:
752 return (lookup_value(sockipproto, protocol));
753 default:
754 return (NULL);
755 }
756 }
757
758 const char *
sysdecode_sockaddr_family(int sa_family)759 sysdecode_sockaddr_family(int sa_family)
760 {
761
762 return (lookup_value(sockfamily, sa_family));
763 }
764
765 const char *
sysdecode_ipproto(int protocol)766 sysdecode_ipproto(int protocol)
767 {
768
769 return (lookup_value(sockipproto, protocol));
770 }
771
772 const char *
sysdecode_sockopt_name(int level,int optname)773 sysdecode_sockopt_name(int level, int optname)
774 {
775
776 if (level == SOL_SOCKET)
777 return (lookup_value(sockopt, optname));
778 if (level == IPPROTO_IP)
779 /* XXX: UNIX domain socket options use a level of 0 also. */
780 return (lookup_value(sockoptip, optname));
781 if (level == IPPROTO_IPV6)
782 return (lookup_value(sockoptipv6, optname));
783 if (level == IPPROTO_SCTP)
784 return (lookup_value(sockoptsctp, optname));
785 if (level == IPPROTO_TCP)
786 return (lookup_value(sockopttcp, optname));
787 if (level == IPPROTO_UDP)
788 return (lookup_value(sockoptudp, optname));
789 if (level == IPPROTO_UDPLITE)
790 return (lookup_value(sockoptudplite, optname));
791 return (NULL);
792 }
793
794 bool
sysdecode_thr_create_flags(FILE * fp,int flags,int * rem)795 sysdecode_thr_create_flags(FILE *fp, int flags, int *rem)
796 {
797
798 return (print_mask_int(fp, thrcreateflags, flags, rem));
799 }
800
801 const char *
sysdecode_umtx_op(int op)802 sysdecode_umtx_op(int op)
803 {
804
805 return (lookup_value(umtxop, op));
806 }
807
808 bool
sysdecode_umtx_op_flags(FILE * fp,int op,int * rem)809 sysdecode_umtx_op_flags(FILE *fp, int op, int *rem)
810 {
811 uintmax_t val;
812 bool printed;
813
814 printed = false;
815 val = (unsigned)op;
816 print_mask_part(fp, umtxopflags, &val, &printed);
817 if (rem != NULL)
818 *rem = val;
819 return (printed);
820 }
821
822 const char *
sysdecode_vmresult(int result)823 sysdecode_vmresult(int result)
824 {
825
826 return (lookup_value(vmresult, result));
827 }
828
829 bool
sysdecode_wait4_options(FILE * fp,int options,int * rem)830 sysdecode_wait4_options(FILE *fp, int options, int *rem)
831 {
832 bool printed;
833 int opt6;
834
835 /* A flags value of 0 is normal. */
836 if (options == 0) {
837 fputs("0", fp);
838 if (rem != NULL)
839 *rem = 0;
840 return (true);
841 }
842
843 /*
844 * These flags are implicit and aren't valid flags for wait4()
845 * directly (though they don't fail with EINVAL).
846 */
847 opt6 = options & (WEXITED | WTRAPPED);
848 options &= ~opt6;
849 printed = print_mask_int(fp, wait6opt, options, rem);
850 if (rem != NULL)
851 *rem |= opt6;
852 return (printed);
853 }
854
855 bool
sysdecode_wait6_options(FILE * fp,int options,int * rem)856 sysdecode_wait6_options(FILE *fp, int options, int *rem)
857 {
858
859 return (print_mask_int(fp, wait6opt, options, rem));
860 }
861
862 const char *
sysdecode_whence(int whence)863 sysdecode_whence(int whence)
864 {
865
866 return (lookup_value(seekwhence, whence));
867 }
868
869 const char *
sysdecode_fcntl_cmd(int cmd)870 sysdecode_fcntl_cmd(int cmd)
871 {
872
873 return (lookup_value(fcntlcmd, cmd));
874 }
875
876 static struct name_table fcntl_fd_arg[] = {
877 X(FD_CLOEXEC) X(FD_CLOFORK) X(0) XEND
878 };
879
880 bool
sysdecode_fcntl_arg_p(int cmd)881 sysdecode_fcntl_arg_p(int cmd)
882 {
883
884 switch (cmd) {
885 case F_GETFD:
886 case F_GETFL:
887 case F_GETOWN:
888 return (false);
889 default:
890 return (true);
891 }
892 }
893
894 void
sysdecode_fcntl_arg(FILE * fp,int cmd,uintptr_t arg,int base)895 sysdecode_fcntl_arg(FILE *fp, int cmd, uintptr_t arg, int base)
896 {
897 int rem;
898
899 switch (cmd) {
900 case F_SETFD:
901 if (!print_value(fp, fcntl_fd_arg, arg))
902 print_integer(fp, arg, base);
903 break;
904 case F_SETFL:
905 if (!sysdecode_fcntl_fileflags(fp, arg, &rem))
906 fprintf(fp, "%#x", rem);
907 else if (rem != 0)
908 fprintf(fp, "|%#x", rem);
909 break;
910 case F_GETLK:
911 case F_SETLK:
912 case F_SETLKW:
913 fprintf(fp, "%p", (void *)arg);
914 break;
915 default:
916 print_integer(fp, arg, base);
917 break;
918 }
919 }
920
921 bool
sysdecode_mmap_flags(FILE * fp,int flags,int * rem)922 sysdecode_mmap_flags(FILE *fp, int flags, int *rem)
923 {
924 uintmax_t val;
925 bool printed;
926 int align;
927
928 /*
929 * MAP_ALIGNED can't be handled directly by print_mask_int().
930 */
931 printed = false;
932 align = flags & MAP_ALIGNMENT_MASK;
933 val = (unsigned)flags & ~MAP_ALIGNMENT_MASK;
934 print_mask_part(fp, mmapflags, &val, &printed);
935 if (align != 0) {
936 if (printed)
937 fputc('|', fp);
938 if (align == MAP_ALIGNED_SUPER)
939 fputs("MAP_ALIGNED_SUPER", fp);
940 else
941 fprintf(fp, "MAP_ALIGNED(%d)",
942 align >> MAP_ALIGNMENT_SHIFT);
943 printed = true;
944 }
945 if (rem != NULL)
946 *rem = val;
947 return (printed);
948 }
949
950 const char *
sysdecode_pathconf_name(int name)951 sysdecode_pathconf_name(int name)
952 {
953
954 return (lookup_value(pathconfname, name));
955 }
956
957 const char *
sysdecode_rtprio_function(int function)958 sysdecode_rtprio_function(int function)
959 {
960
961 return (lookup_value(rtpriofuncs, function));
962 }
963
964 bool
sysdecode_msg_flags(FILE * fp,int flags,int * rem)965 sysdecode_msg_flags(FILE *fp, int flags, int *rem)
966 {
967
968 return (print_mask_0(fp, msgflags, flags, rem));
969 }
970
971 const char *
sysdecode_sigcode(int sig,int si_code)972 sysdecode_sigcode(int sig, int si_code)
973 {
974 const char *str;
975
976 str = lookup_value(sigcode, si_code);
977 if (str != NULL)
978 return (str);
979
980 switch (sig) {
981 case SIGILL:
982 return (sysdecode_sigill_code(si_code));
983 case SIGBUS:
984 return (sysdecode_sigbus_code(si_code));
985 case SIGSEGV:
986 return (sysdecode_sigsegv_code(si_code));
987 case SIGFPE:
988 return (sysdecode_sigfpe_code(si_code));
989 case SIGTRAP:
990 return (sysdecode_sigtrap_code(si_code));
991 case SIGCHLD:
992 return (sysdecode_sigchld_code(si_code));
993 default:
994 return (NULL);
995 }
996 }
997
998 const char *
sysdecode_sysarch_number(int number)999 sysdecode_sysarch_number(int number)
1000 {
1001
1002 return (lookup_value(sysarchnum, number));
1003 }
1004
1005 bool
sysdecode_umtx_cvwait_flags(FILE * fp,u_long flags,u_long * rem)1006 sysdecode_umtx_cvwait_flags(FILE *fp, u_long flags, u_long *rem)
1007 {
1008
1009 return (print_mask_0ul(fp, umtxcvwaitflags, flags, rem));
1010 }
1011
1012 bool
sysdecode_umtx_rwlock_flags(FILE * fp,u_long flags,u_long * rem)1013 sysdecode_umtx_rwlock_flags(FILE *fp, u_long flags, u_long *rem)
1014 {
1015
1016 return (print_mask_0ul(fp, umtxrwlockflags, flags, rem));
1017 }
1018
1019 void
sysdecode_cap_rights(FILE * fp,cap_rights_t * rightsp)1020 sysdecode_cap_rights(FILE *fp, cap_rights_t *rightsp)
1021 {
1022 cap_rights_t diff, sum, zero;
1023 const struct name_table *t;
1024 int i;
1025 bool comma;
1026
1027 for (i = 0; i < CAPARSIZE(rightsp); i++) {
1028 if (CAPIDXBIT(rightsp->cr_rights[i]) != 1 << i) {
1029 fprintf(fp, "invalid cap_rights_t");
1030 return;
1031 }
1032 }
1033 cap_rights_init(&sum);
1034 diff = *rightsp;
1035 for (t = caprights, comma = false; t->str != NULL; t++) {
1036 if (cap_rights_is_set(rightsp, t->val)) {
1037 cap_rights_clear(&diff, t->val);
1038 if (cap_rights_is_set(&sum, t->val)) {
1039 /* Don't print redundant rights. */
1040 continue;
1041 }
1042 cap_rights_set(&sum, t->val);
1043
1044 fprintf(fp, "%s%s", comma ? "," : "", t->str);
1045 comma = true;
1046 }
1047 }
1048 if (!comma)
1049 fprintf(fp, "CAP_NONE");
1050
1051 /*
1052 * Provide a breadcrumb if some of the provided rights are not included
1053 * in the table, likely due to a bug in the mktables script.
1054 */
1055 CAP_NONE(&zero);
1056 if (!cap_rights_contains(&zero, &diff))
1057 fprintf(fp, ",unknown rights");
1058 }
1059
1060 /*
1061 * Pre-sort the set of rights, which has a partial ordering defined by the
1062 * subset relation. This lets sysdecode_cap_rights() print a list of minimal
1063 * length with a single pass over the "caprights" table.
1064 */
1065 static void __attribute__((constructor))
sysdecode_cap_rights_init(void)1066 sysdecode_cap_rights_init(void)
1067 {
1068 cap_rights_t tr, qr;
1069 struct name_table *t, *q, tmp;
1070 bool swapped;
1071
1072 do {
1073 for (t = caprights, swapped = false; t->str != NULL; t++) {
1074 cap_rights_init(&tr, t->val);
1075 for (q = t + 1; q->str != NULL; q++) {
1076 cap_rights_init(&qr, q->val);
1077 if (cap_rights_contains(&qr, &tr)) {
1078 tmp = *t;
1079 *t = *q;
1080 *q = tmp;
1081 swapped = true;
1082 }
1083 }
1084 }
1085 } while (swapped);
1086 }
1087
1088 static struct name_table cmsgtypeip[] = {
1089 X(IP_RECVDSTADDR) X(IP_RECVTTL) X(IP_RECVOPTS) X(IP_RECVRETOPTS)
1090 X(IP_RECVIF) X(IP_RECVTOS) X(IP_FLOWID) X(IP_FLOWTYPE)
1091 X(IP_RSSBUCKETID) XEND
1092 };
1093
1094 static struct name_table cmsgtypeipv6[] = {
1095 #if 0
1096 /* The RFC 2292 defines are kernel space only. */
1097 X(IPV6_2292PKTINFO) X(IPV6_2292HOPLIMIT) X(IPV6_2292HOPOPTS)
1098 X(IPV6_2292DSTOPTS) X(IPV6_2292RTHDR) X(IPV6_2292NEXTHOP)
1099 #endif
1100 X(IPV6_PKTINFO) X(IPV6_HOPLIMIT) X(IPV6_HOPOPTS)
1101 X(IPV6_DSTOPTS) X(IPV6_RTHDR) X(IPV6_NEXTHOP)
1102 X(IPV6_TCLASS) X(IPV6_FLOWID) X(IPV6_FLOWTYPE) X(IPV6_RSSBUCKETID)
1103 X(IPV6_PATHMTU) X(IPV6_RTHDRDSTOPTS) X(IPV6_USE_MIN_MTU)
1104 X(IPV6_DONTFRAG) X(IPV6_PREFER_TEMPADDR) XEND
1105 };
1106
1107 static struct name_table cmsgtypesctp[] = {
1108 X(SCTP_INIT) X(SCTP_SNDRCV) X(SCTP_EXTRCV) X(SCTP_SNDINFO)
1109 X(SCTP_RCVINFO) X(SCTP_NXTINFO) X(SCTP_PRINFO) X(SCTP_AUTHINFO)
1110 X(SCTP_DSTADDRV4) X(SCTP_DSTADDRV6) XEND
1111 };
1112
1113 const char *
sysdecode_cmsg_type(int cmsg_level,int cmsg_type)1114 sysdecode_cmsg_type(int cmsg_level, int cmsg_type)
1115 {
1116
1117 if (cmsg_level == SOL_SOCKET)
1118 return (lookup_value(cmsgtypesocket, cmsg_type));
1119 if (cmsg_level == IPPROTO_IP)
1120 return (lookup_value(cmsgtypeip, cmsg_type));
1121 if (cmsg_level == IPPROTO_IPV6)
1122 return (lookup_value(cmsgtypeipv6, cmsg_type));
1123 if (cmsg_level == IPPROTO_SCTP)
1124 return (lookup_value(cmsgtypesctp, cmsg_type));
1125 return (NULL);
1126 }
1127
1128 const char *
sysdecode_sctp_pr_policy(int policy)1129 sysdecode_sctp_pr_policy(int policy)
1130 {
1131
1132 return (lookup_value(sctpprpolicy, policy));
1133 }
1134
1135 static struct name_table sctpsndflags[] = {
1136 X(SCTP_EOF) X(SCTP_ABORT) X(SCTP_UNORDERED) X(SCTP_ADDR_OVER)
1137 X(SCTP_SENDALL) X(SCTP_EOR) X(SCTP_SACK_IMMEDIATELY) XEND
1138 };
1139
1140 bool
sysdecode_sctp_snd_flags(FILE * fp,int flags,int * rem)1141 sysdecode_sctp_snd_flags(FILE *fp, int flags, int *rem)
1142 {
1143
1144 return (print_mask_int(fp, sctpsndflags, flags, rem));
1145 }
1146
1147 static struct name_table sctprcvflags[] = {
1148 X(SCTP_UNORDERED) XEND
1149 };
1150
1151 bool
sysdecode_sctp_rcv_flags(FILE * fp,int flags,int * rem)1152 sysdecode_sctp_rcv_flags(FILE *fp, int flags, int *rem)
1153 {
1154
1155 return (print_mask_int(fp, sctprcvflags, flags, rem));
1156 }
1157
1158 static struct name_table sctpnxtflags[] = {
1159 X(SCTP_UNORDERED) X(SCTP_COMPLETE) X(SCTP_NOTIFICATION) XEND
1160 };
1161
1162 bool
sysdecode_sctp_nxt_flags(FILE * fp,int flags,int * rem)1163 sysdecode_sctp_nxt_flags(FILE *fp, int flags, int *rem)
1164 {
1165
1166 return (print_mask_int(fp, sctpnxtflags, flags, rem));
1167 }
1168
1169 static struct name_table sctpsinfoflags[] = {
1170 X(SCTP_EOF) X(SCTP_ABORT) X(SCTP_UNORDERED) X(SCTP_ADDR_OVER)
1171 X(SCTP_SENDALL) X(SCTP_EOR) X(SCTP_SACK_IMMEDIATELY) XEND
1172 };
1173
1174 void
sysdecode_sctp_sinfo_flags(FILE * fp,int sinfo_flags)1175 sysdecode_sctp_sinfo_flags(FILE *fp, int sinfo_flags)
1176 {
1177 const char *temp;
1178 int rem;
1179 bool printed;
1180
1181 printed = print_mask_0(fp, sctpsinfoflags, sinfo_flags, &rem);
1182 if (rem & ~SCTP_PR_SCTP_ALL) {
1183 fprintf(fp, "%s%#x", printed ? "|" : "", rem & ~SCTP_PR_SCTP_ALL);
1184 printed = true;
1185 rem &= ~SCTP_PR_SCTP_ALL;
1186 }
1187 if (rem != 0) {
1188 temp = sysdecode_sctp_pr_policy(rem);
1189 if (temp != NULL) {
1190 fprintf(fp, "%s%s", printed ? "|" : "", temp);
1191 } else {
1192 fprintf(fp, "%s%#x", printed ? "|" : "", rem);
1193 }
1194 }
1195 }
1196
1197 bool
sysdecode_shmflags(FILE * fp,int flags,int * rem)1198 sysdecode_shmflags(FILE *fp, int flags, int *rem)
1199 {
1200
1201 return (print_mask_0(fp, shmflags, flags, rem));
1202 }
1203
1204 const char *
sysdecode_itimer(int which)1205 sysdecode_itimer(int which)
1206 {
1207
1208 return (lookup_value(itimerwhich, which));
1209 }
1210