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 2009 Sun Microsystems, Inc. All rights reserved. 24 * Use is subject to license terms. 25 */ 26 27 /* Copyright (c) 1984, 1986, 1987, 1988, 1989 AT&T */ 28 /* All Rights Reserved */ 29 30 /* 31 * ps -- print things about processes. 32 */ 33 #include <stdio.h> 34 #include <ctype.h> 35 #include <string.h> 36 #include <errno.h> 37 #include <fcntl.h> 38 #include <pwd.h> 39 #include <grp.h> 40 #include <sys/types.h> 41 #include <sys/stat.h> 42 #include <sys/mkdev.h> 43 #include <unistd.h> 44 #include <stdlib.h> 45 #include <limits.h> 46 #include <dirent.h> 47 #include <sys/signal.h> 48 #include <sys/fault.h> 49 #include <sys/syscall.h> 50 #include <sys/time.h> 51 #include <procfs.h> 52 #include <locale.h> 53 #include <wctype.h> 54 #include <wchar.h> 55 #include <libw.h> 56 #include <stdarg.h> 57 #include <sys/proc.h> 58 #include <sys/pset.h> 59 #include <project.h> 60 #include <zone.h> 61 62 #define min(a, b) ((a) > (b) ? (b) : (a)) 63 #define max(a, b) ((a) < (b) ? (b) : (a)) 64 65 #define NTTYS 20 /* initial size of table for -t option */ 66 #define SIZ 30 /* initial size of tables for -p, -s, -g, -h and -z */ 67 68 /* 69 * Size of buffer holding args for t, p, s, g, u, U, G, z options. 70 * Set to ZONENAME_MAX, the minimum value needed to allow any 71 * zone to be specified. 72 */ 73 #define ARGSIZ ZONENAME_MAX 74 75 #define MAXUGNAME 10 /* max chars in a user/group name or printed u/g id */ 76 77 /* Structure for storing user or group info */ 78 struct ugdata { 79 id_t id; /* numeric user-id or group-id */ 80 char name[MAXUGNAME+1]; /* user/group name, null terminated */ 81 }; 82 83 struct ughead { 84 size_t size; /* number of ugdata structs allocated */ 85 size_t nent; /* number of active entries */ 86 struct ugdata *ent; /* pointer to array of actual entries */ 87 }; 88 89 enum fname { /* enumeration of field names */ 90 F_USER, /* effective user of the process */ 91 F_RUSER, /* real user of the process */ 92 F_GROUP, /* effective group of the process */ 93 F_RGROUP, /* real group of the process */ 94 F_UID, /* numeric effective uid of the process */ 95 F_RUID, /* numeric real uid of the process */ 96 F_GID, /* numeric effective gid of the process */ 97 F_RGID, /* numeric real gid of the process */ 98 F_PID, /* process id */ 99 F_PPID, /* parent process id */ 100 F_PGID, /* process group id */ 101 F_SID, /* session id */ 102 F_PSR, /* bound processor */ 103 F_LWP, /* lwp-id */ 104 F_NLWP, /* number of lwps */ 105 F_OPRI, /* old priority (obsolete) */ 106 F_PRI, /* new priority */ 107 F_F, /* process flags */ 108 F_S, /* letter indicating the state */ 109 F_C, /* processor utilization (obsolete) */ 110 F_PCPU, /* percent of recently used cpu time */ 111 F_PMEM, /* percent of physical memory used (rss) */ 112 F_OSZ, /* virtual size of the process in pages */ 113 F_VSZ, /* virtual size of the process in kilobytes */ 114 F_RSS, /* resident set size of the process in kilobytes */ 115 F_NICE, /* "nice" value of the process */ 116 F_CLASS, /* scheduler class */ 117 F_STIME, /* start time of the process, hh:mm:ss or Month Day */ 118 F_ETIME, /* elapsed time of the process, [[dd-]hh:]mm:ss */ 119 F_TIME, /* cpu time of the process, [[dd-]hh:]mm:ss */ 120 F_TTY, /* name of the controlling terminal */ 121 F_ADDR, /* address of the process (obsolete) */ 122 F_WCHAN, /* wait channel (sleep condition variable) */ 123 F_FNAME, /* file name of command */ 124 F_COMM, /* name of command (argv[0] value) */ 125 F_ARGS, /* name of command plus all its arguments */ 126 F_TASKID, /* task id */ 127 F_PROJID, /* project id */ 128 F_PROJECT, /* project name of the process */ 129 F_PSET, /* bound processor set */ 130 F_ZONE, /* zone name */ 131 F_ZONEID, /* zone id */ 132 F_CTID, /* process contract id */ 133 F_LGRP /* process home lgroup */ 134 }; 135 136 struct field { 137 struct field *next; /* linked list */ 138 int fname; /* field index */ 139 const char *header; /* header to use */ 140 int width; /* width of field */ 141 }; 142 143 static struct field *fields = NULL; /* fields selected via -o */ 144 static struct field *last_field = NULL; 145 static int do_header = 0; 146 static struct timeval now; 147 148 /* array of defined fields, in fname order */ 149 struct def_field { 150 const char *fname; 151 const char *header; 152 int width; 153 int minwidth; 154 }; 155 156 static struct def_field fname[] = { 157 /* fname header width minwidth */ 158 { "user", "USER", 8, 8 }, 159 { "ruser", "RUSER", 8, 8 }, 160 { "group", "GROUP", 8, 8 }, 161 { "rgroup", "RGROUP", 8, 8 }, 162 { "uid", "UID", 5, 5 }, 163 { "ruid", "RUID", 5, 5 }, 164 { "gid", "GID", 5, 5 }, 165 { "rgid", "RGID", 5, 5 }, 166 { "pid", "PID", 5, 5 }, 167 { "ppid", "PPID", 5, 5 }, 168 { "pgid", "PGID", 5, 5 }, 169 { "sid", "SID", 5, 5 }, 170 { "psr", "PSR", 3, 2 }, 171 { "lwp", "LWP", 6, 2 }, 172 { "nlwp", "NLWP", 4, 2 }, 173 { "opri", "PRI", 3, 2 }, 174 { "pri", "PRI", 3, 2 }, 175 { "f", "F", 2, 2 }, 176 { "s", "S", 1, 1 }, 177 { "c", "C", 2, 2 }, 178 { "pcpu", "%CPU", 4, 4 }, 179 { "pmem", "%MEM", 4, 4 }, 180 { "osz", "SZ", 4, 4 }, 181 { "vsz", "VSZ", 4, 4 }, 182 { "rss", "RSS", 4, 4 }, 183 { "nice", "NI", 2, 2 }, 184 { "class", "CLS", 4, 2 }, 185 { "stime", "STIME", 8, 8 }, 186 { "etime", "ELAPSED", 11, 7 }, 187 { "time", "TIME", 11, 5 }, 188 { "tty", "TT", 7, 7 }, 189 #ifdef _LP64 190 { "addr", "ADDR", 16, 8 }, 191 { "wchan", "WCHAN", 16, 8 }, 192 #else 193 { "addr", "ADDR", 8, 8 }, 194 { "wchan", "WCHAN", 8, 8 }, 195 #endif 196 { "fname", "COMMAND", 8, 8 }, 197 { "comm", "COMMAND", 80, 8 }, 198 { "args", "COMMAND", 80, 80 }, 199 { "taskid", "TASKID", 5, 5 }, 200 { "projid", "PROJID", 5, 5 }, 201 { "project", "PROJECT", 8, 8 }, 202 { "pset", "PSET", 3, 3 }, 203 { "zone", "ZONE", 8, 8 }, 204 { "zoneid", "ZONEID", 5, 5 }, 205 { "ctid", "CTID", 5, 5 }, 206 { "lgrp", "LGRP", 4, 2 }, 207 }; 208 209 #define NFIELDS (sizeof (fname) / sizeof (fname[0])) 210 211 static int retcode = 1; 212 static int lflg; 213 static int Aflg; 214 static int uflg; 215 static int Uflg; 216 static int Gflg; 217 static int aflg; 218 static int dflg; 219 static int Lflg; 220 static int Pflg; 221 static int yflg; 222 static int pflg; 223 static int fflg; 224 static int cflg; 225 static int jflg; 226 static int gflg; 227 static int sflg; 228 static int tflg; 229 static int zflg; 230 static int Zflg; 231 static int hflg; 232 static int Hflg; 233 static uid_t tuid = (uid_t)-1; 234 static int errflg; 235 236 static int ndev; /* number of devices */ 237 static int maxdev; /* number of devl structures allocated */ 238 239 #define DNINCR 100 240 #define DNSIZE 14 241 static struct devl { /* device list */ 242 char dname[DNSIZE]; /* device name */ 243 dev_t ddev; /* device number */ 244 } *devl; 245 246 static struct tty { 247 char *tname; 248 dev_t tdev; 249 } *tty = NULL; /* for t option */ 250 static size_t ttysz = 0; 251 static int ntty = 0; 252 253 static pid_t *pid = NULL; /* for p option */ 254 static size_t pidsz = 0; 255 static size_t npid = 0; 256 257 static int *lgrps = NULL; /* list of lgroup IDs for for h option */ 258 static size_t lgrps_size = 0; /* size of the lgrps list */ 259 static size_t nlgrps = 0; /* number elements in the list */ 260 261 /* Maximum possible lgroup ID value */ 262 #define MAX_LGRP_ID 256 263 264 static pid_t *grpid = NULL; /* for g option */ 265 static size_t grpidsz = 0; 266 static int ngrpid = 0; 267 268 static pid_t *sessid = NULL; /* for s option */ 269 static size_t sessidsz = 0; 270 static int nsessid = 0; 271 272 static zoneid_t *zoneid = NULL; /* for z option */ 273 static size_t zoneidsz = 0; 274 static int nzoneid = 0; 275 276 static int kbytes_per_page; 277 static int pidwidth; 278 279 static char *procdir = "/proc"; /* standard /proc directory */ 280 281 static struct ughead euid_tbl; /* table to store selected euid's */ 282 static struct ughead ruid_tbl; /* table to store selected real uid's */ 283 static struct ughead egid_tbl; /* table to store selected egid's */ 284 static struct ughead rgid_tbl; /* table to store selected real gid's */ 285 static prheader_t *lpsinfobuf; /* buffer to contain lpsinfo */ 286 static size_t lpbufsize; 287 288 /* 289 * This constant defines the sentinal number of process IDs below which we 290 * only examine individual entries in /proc rather than scanning through 291 * /proc. This optimization is a huge win in the common case. 292 */ 293 #define PTHRESHOLD 40 294 295 #define UCB_OPTS "-aceglnrtuvwxSU" 296 297 static void usage(void); 298 static char *getarg(char **); 299 static char *parse_format(char *); 300 static char *gettty(psinfo_t *); 301 static int prfind(int, psinfo_t *, char **); 302 static void prcom(psinfo_t *, char *); 303 static void prtpct(ushort_t, int); 304 static void print_time(time_t, int); 305 static void print_field(psinfo_t *, struct field *, const char *); 306 static void print_zombie_field(psinfo_t *, struct field *, const char *); 307 static void pr_fields(psinfo_t *, const char *, 308 void (*print_fld)(psinfo_t *, struct field *, const char *)); 309 static int search(pid_t *, int, pid_t); 310 static void add_ugentry(struct ughead *, char *); 311 static int uconv(struct ughead *); 312 static int gconv(struct ughead *); 313 static int ugfind(id_t, struct ughead *); 314 static void prtime(timestruc_t, int, int); 315 static void przom(psinfo_t *); 316 static int namencnt(char *, int, int); 317 static char *err_string(int); 318 static int print_proc(char *pname); 319 static time_t delta_secs(const timestruc_t *); 320 static int str2id(const char *, pid_t *, long, long); 321 static int str2uid(const char *, uid_t *, unsigned long, unsigned long); 322 static void *Realloc(void *, size_t); 323 static int pidcmp(const void *p1, const void *p2); 324 325 extern int ucbmain(int, char **); 326 static int stdmain(int, char **); 327 328 int 329 main(int argc, char **argv) 330 { 331 const char *me; 332 333 /* 334 * The original two ps'es are linked in a single binary; 335 * their main()s are renamed to stdmain for /usr/bin/ps and 336 * ucbmain for /usr/ucb/ps. 337 * We try to figure out which instance of ps the user wants to run. 338 * Traditionally, the UCB variant doesn't require the flag argument 339 * start with a "-". If the first argument doesn't start with a 340 * "-", we call "ucbmain". 341 * If there's a first argument and it starts with a "-", we check 342 * whether any of the options isn't acceptable to "ucbmain"; in that 343 * case we run "stdmain". 344 * If we can't tell from the options which main to call, we check 345 * the binary we are running. We default to "stdmain" but 346 * any mention in the executable name of "ucb" causes us to call 347 * ucbmain. 348 */ 349 if (argv[1] != NULL) { 350 if (argv[1][0] != '-') 351 return (ucbmain(argc, argv)); 352 else if (argv[1][strspn(argv[1], UCB_OPTS)] != '\0') 353 return (stdmain(argc, argv)); 354 } 355 356 me = getexecname(); 357 358 if (me != NULL && strstr(me, "ucb") != NULL) 359 return (ucbmain(argc, argv)); 360 else 361 return (stdmain(argc, argv)); 362 } 363 364 static int 365 stdmain(int argc, char **argv) 366 { 367 char *p; 368 char *p1; 369 char *parg; 370 int c; 371 int i; 372 int pgerrflg = 0; /* err flg: non-numeric arg w/p & g options */ 373 size_t size, len; 374 DIR *dirp; 375 struct dirent *dentp; 376 pid_t maxpid; 377 pid_t id; 378 int ret; 379 char loc_stime_str[32]; 380 381 (void) setlocale(LC_ALL, ""); 382 #if !defined(TEXT_DOMAIN) /* Should be defined by cc -D */ 383 #define TEXT_DOMAIN "SYS_TEST" /* Use this only if it weren't */ 384 #endif 385 (void) textdomain(TEXT_DOMAIN); 386 387 (void) memset(&euid_tbl, 0, sizeof (euid_tbl)); 388 (void) memset(&ruid_tbl, 0, sizeof (ruid_tbl)); 389 (void) memset(&egid_tbl, 0, sizeof (egid_tbl)); 390 (void) memset(&rgid_tbl, 0, sizeof (rgid_tbl)); 391 392 kbytes_per_page = sysconf(_SC_PAGESIZE) / 1024; 393 394 (void) gettimeofday(&now, NULL); 395 396 /* 397 * calculate width of pid fields based on configured MAXPID 398 * (must be at least 5 to retain output format compatibility) 399 */ 400 id = maxpid = (pid_t)sysconf(_SC_MAXPID); 401 pidwidth = 1; 402 while ((id /= 10) > 0) 403 ++pidwidth; 404 pidwidth = pidwidth < 5 ? 5 : pidwidth; 405 406 fname[F_PID].width = fname[F_PPID].width = pidwidth; 407 fname[F_PGID].width = fname[F_SID].width = pidwidth; 408 409 /* 410 * TRANSLATION_NOTE 411 * Specify the printf format with width and precision for 412 * the STIME field. 413 */ 414 len = snprintf(loc_stime_str, sizeof (loc_stime_str), 415 dcgettext(NULL, "%8.8s", LC_TIME), "STIME"); 416 if (len >= sizeof (loc_stime_str)) 417 len = sizeof (loc_stime_str) - 1; 418 419 fname[F_STIME].width = fname[F_STIME].minwidth = len; 420 421 while ((c = getopt(argc, argv, "jlfceAadLPyZHh:t:p:g:u:U:G:n:s:o:z:")) 422 != EOF) 423 switch (c) { 424 case 'H': /* Show home lgroups */ 425 Hflg++; 426 break; 427 case 'h': 428 /* 429 * Show processes/threads with given home lgroups 430 */ 431 hflg++; 432 p1 = optarg; 433 do { 434 int id; 435 436 /* 437 * Get all IDs in the list, verify for 438 * correctness and place in lgrps array. 439 */ 440 parg = getarg(&p1); 441 /* Convert string to integer */ 442 ret = str2id(parg, (pid_t *)&id, 0, 443 MAX_LGRP_ID); 444 /* Complain if ID didn't parse correctly */ 445 if (ret != 0) { 446 pgerrflg++; 447 (void) fprintf(stderr, 448 gettext("ps: %s "), parg); 449 if (ret == EINVAL) 450 (void) fprintf(stderr, 451 gettext("is an invalid " 452 "non-numeric argument")); 453 else 454 (void) fprintf(stderr, 455 gettext("exceeds valid " 456 "range")); 457 (void) fprintf(stderr, 458 gettext(" for -h option\n")); 459 continue; 460 } 461 462 /* Extend lgrps array if needed */ 463 if (nlgrps == lgrps_size) { 464 /* Double the size of the lgrps array */ 465 if (lgrps_size == 0) 466 lgrps_size = SIZ; 467 lgrps_size *= 2; 468 lgrps = Realloc(lgrps, 469 lgrps_size * sizeof (int)); 470 } 471 /* place the id in the lgrps table */ 472 lgrps[nlgrps++] = id; 473 } while (*p1); 474 break; 475 case 'l': /* long listing */ 476 lflg++; 477 break; 478 case 'f': /* full listing */ 479 fflg++; 480 break; 481 case 'j': 482 jflg++; 483 break; 484 case 'c': 485 /* 486 * Format output to reflect scheduler changes: 487 * high numbers for high priorities and don't 488 * print nice or p_cpu values. 'c' option only 489 * effective when used with 'l' or 'f' options. 490 */ 491 cflg++; 492 break; 493 case 'A': /* list every process */ 494 case 'e': /* (obsolete) list every process */ 495 Aflg++; 496 tflg = Gflg = Uflg = uflg = pflg = gflg = sflg = 0; 497 zflg = hflg = 0; 498 break; 499 case 'a': 500 /* 501 * Same as 'e' except no session group leaders 502 * and no non-terminal processes. 503 */ 504 aflg++; 505 break; 506 case 'd': /* same as e except no session leaders */ 507 dflg++; 508 break; 509 case 'L': /* show lwps */ 510 Lflg++; 511 break; 512 case 'P': /* show bound processor */ 513 Pflg++; 514 break; 515 case 'y': /* omit F & ADDR, report RSS & SZ in Kby */ 516 yflg++; 517 break; 518 case 'n': /* no longer needed; retain as no-op */ 519 (void) fprintf(stderr, 520 gettext("ps: warning: -n option ignored\n")); 521 break; 522 case 't': /* terminals */ 523 #define TSZ 30 524 tflg++; 525 p1 = optarg; 526 do { 527 char nambuf[TSZ+6]; /* for "/dev/" + '\0' */ 528 struct stat64 s; 529 parg = getarg(&p1); 530 p = Realloc(NULL, TSZ+1); /* for '\0' */ 531 /* zero the buffer before using it */ 532 p[0] = '\0'; 533 size = TSZ; 534 if (isdigit(*parg)) { 535 (void) strcpy(p, "tty"); 536 size -= 3; 537 } 538 (void) strncat(p, parg, size); 539 if (ntty == ttysz) { 540 if ((ttysz *= 2) == 0) 541 ttysz = NTTYS; 542 tty = Realloc(tty, 543 (ttysz + 1) * sizeof (struct tty)); 544 } 545 tty[ntty].tdev = PRNODEV; 546 (void) strcpy(nambuf, "/dev/"); 547 (void) strcat(nambuf, p); 548 if (stat64(nambuf, &s) == 0) 549 tty[ntty].tdev = s.st_rdev; 550 tty[ntty++].tname = p; 551 } while (*p1); 552 break; 553 case 'p': /* proc ids */ 554 pflg++; 555 p1 = optarg; 556 do { 557 pid_t id; 558 559 parg = getarg(&p1); 560 if ((ret = str2id(parg, &id, 0, maxpid)) != 0) { 561 pgerrflg++; 562 (void) fprintf(stderr, 563 gettext("ps: %s "), parg); 564 if (ret == EINVAL) 565 (void) fprintf(stderr, 566 gettext("is an invalid " 567 "non-numeric argument")); 568 else 569 (void) fprintf(stderr, 570 gettext("exceeds valid " 571 "range")); 572 (void) fprintf(stderr, 573 gettext(" for -p option\n")); 574 continue; 575 } 576 577 if (npid == pidsz) { 578 if ((pidsz *= 2) == 0) 579 pidsz = SIZ; 580 pid = Realloc(pid, 581 pidsz * sizeof (pid_t)); 582 } 583 pid[npid++] = id; 584 } while (*p1); 585 break; 586 case 's': /* session */ 587 sflg++; 588 p1 = optarg; 589 do { 590 pid_t id; 591 592 parg = getarg(&p1); 593 if ((ret = str2id(parg, &id, 0, maxpid)) != 0) { 594 pgerrflg++; 595 (void) fprintf(stderr, 596 gettext("ps: %s "), parg); 597 if (ret == EINVAL) 598 (void) fprintf(stderr, 599 gettext("is an invalid " 600 "non-numeric argument")); 601 else 602 (void) fprintf(stderr, 603 gettext("exceeds valid " 604 "range")); 605 (void) fprintf(stderr, 606 gettext(" for -s option\n")); 607 continue; 608 } 609 610 if (nsessid == sessidsz) { 611 if ((sessidsz *= 2) == 0) 612 sessidsz = SIZ; 613 sessid = Realloc(sessid, 614 sessidsz * sizeof (pid_t)); 615 } 616 sessid[nsessid++] = id; 617 } while (*p1); 618 break; 619 case 'g': /* proc group */ 620 gflg++; 621 p1 = optarg; 622 do { 623 pid_t id; 624 625 parg = getarg(&p1); 626 if ((ret = str2id(parg, &id, 0, maxpid)) != 0) { 627 pgerrflg++; 628 (void) fprintf(stderr, 629 gettext("ps: %s "), parg); 630 if (ret == EINVAL) 631 (void) fprintf(stderr, 632 gettext("is an invalid " 633 "non-numeric argument")); 634 else 635 (void) fprintf(stderr, 636 gettext("exceeds valid " 637 "range")); 638 (void) fprintf(stderr, 639 gettext(" for -g option\n")); 640 continue; 641 } 642 643 if (ngrpid == grpidsz) { 644 if ((grpidsz *= 2) == 0) 645 grpidsz = SIZ; 646 grpid = Realloc(grpid, 647 grpidsz * sizeof (pid_t)); 648 } 649 grpid[ngrpid++] = id; 650 } while (*p1); 651 break; 652 case 'u': /* effective user name or number */ 653 uflg++; 654 p1 = optarg; 655 do { 656 parg = getarg(&p1); 657 add_ugentry(&euid_tbl, parg); 658 } while (*p1); 659 break; 660 case 'U': /* real user name or number */ 661 Uflg++; 662 p1 = optarg; 663 do { 664 parg = getarg(&p1); 665 add_ugentry(&ruid_tbl, parg); 666 } while (*p1); 667 break; 668 case 'G': /* real group name or number */ 669 Gflg++; 670 p1 = optarg; 671 do { 672 parg = getarg(&p1); 673 add_ugentry(&rgid_tbl, parg); 674 } while (*p1); 675 break; 676 case 'o': /* output format */ 677 p = optarg; 678 while ((p = parse_format(p)) != NULL) 679 ; 680 break; 681 case 'z': /* zone name or number */ 682 zflg++; 683 p1 = optarg; 684 do { 685 zoneid_t id; 686 687 parg = getarg(&p1); 688 if (zone_get_id(parg, &id) != 0) { 689 pgerrflg++; 690 (void) fprintf(stderr, 691 gettext("ps: unknown zone %s\n"), 692 parg); 693 continue; 694 } 695 696 if (nzoneid == zoneidsz) { 697 if ((zoneidsz *= 2) == 0) 698 zoneidsz = SIZ; 699 zoneid = Realloc(zoneid, 700 zoneidsz * sizeof (zoneid_t)); 701 } 702 zoneid[nzoneid++] = id; 703 } while (*p1); 704 break; 705 case 'Z': /* show zone name */ 706 Zflg++; 707 break; 708 default: /* error on ? */ 709 errflg++; 710 break; 711 } 712 713 if (errflg || optind < argc || pgerrflg) 714 usage(); 715 716 if (tflg) 717 tty[ntty].tname = NULL; 718 /* 719 * If an appropriate option has not been specified, use the 720 * current terminal and effective uid as the default. 721 */ 722 if (!(aflg|Aflg|dflg|Gflg|hflg|Uflg|uflg|tflg|pflg|gflg|sflg|zflg)) { 723 psinfo_t info; 724 int procfd; 725 char *name; 726 char pname[100]; 727 728 /* get our own controlling tty name using /proc */ 729 (void) snprintf(pname, sizeof (pname), 730 "%s/self/psinfo", procdir); 731 if ((procfd = open(pname, O_RDONLY)) < 0 || 732 read(procfd, (char *)&info, sizeof (info)) < 0 || 733 info.pr_ttydev == PRNODEV) { 734 (void) fprintf(stderr, 735 gettext("ps: no controlling terminal\n")); 736 exit(1); 737 } 738 (void) close(procfd); 739 740 i = 0; 741 name = gettty(&info); 742 if (*name == '?') { 743 (void) fprintf(stderr, 744 gettext("ps: can't find controlling terminal\n")); 745 exit(1); 746 } 747 if (ntty == ttysz) { 748 if ((ttysz *= 2) == 0) 749 ttysz = NTTYS; 750 tty = Realloc(tty, (ttysz + 1) * sizeof (struct tty)); 751 } 752 tty[ntty].tdev = info.pr_ttydev; 753 tty[ntty++].tname = name; 754 tty[ntty].tname = NULL; 755 tflg++; 756 tuid = getuid(); 757 } 758 if (Aflg) { 759 Gflg = Uflg = uflg = pflg = sflg = gflg = aflg = dflg = 0; 760 zflg = hflg = 0; 761 } 762 if (Aflg | aflg | dflg) 763 tflg = 0; 764 765 i = 0; /* prepare to exit on name lookup errors */ 766 i += uconv(&euid_tbl); 767 i += uconv(&ruid_tbl); 768 i += gconv(&egid_tbl); 769 i += gconv(&rgid_tbl); 770 if (i) 771 exit(1); 772 773 /* allocate a buffer for lwpsinfo structures */ 774 lpbufsize = 4096; 775 if (Lflg && (lpsinfobuf = malloc(lpbufsize)) == NULL) { 776 (void) fprintf(stderr, 777 gettext("ps: no memory\n")); 778 exit(1); 779 } 780 781 if (fields) { /* print user-specified header */ 782 if (do_header) { 783 struct field *f; 784 785 for (f = fields; f != NULL; f = f->next) { 786 if (f != fields) 787 (void) printf(" "); 788 switch (f->fname) { 789 case F_TTY: 790 (void) printf("%-*s", 791 f->width, f->header); 792 break; 793 case F_FNAME: 794 case F_COMM: 795 case F_ARGS: 796 /* 797 * Print these headers full width 798 * unless they appear at the end. 799 */ 800 if (f->next != NULL) { 801 (void) printf("%-*s", 802 f->width, f->header); 803 } else { 804 (void) printf("%s", 805 f->header); 806 } 807 break; 808 default: 809 (void) printf("%*s", 810 f->width, f->header); 811 break; 812 } 813 } 814 (void) printf("\n"); 815 } 816 } else { /* print standard header */ 817 /* 818 * All fields before 'PID' are printed with a trailing space 819 * as a separator and that is how we print the headers too. 820 */ 821 if (lflg) { 822 if (yflg) 823 (void) printf("S "); 824 else 825 (void) printf(" F S "); 826 } 827 if (Zflg) 828 (void) printf(" ZONE "); 829 if (fflg) { 830 (void) printf(" UID "); 831 } else if (lflg) 832 (void) printf(" UID "); 833 834 (void) printf("%*s", pidwidth, "PID"); 835 if (lflg || fflg) 836 (void) printf(" %*s", pidwidth, "PPID"); 837 if (jflg) 838 (void) printf(" %*s %*s", pidwidth, "PGID", 839 pidwidth, "SID"); 840 if (Lflg) 841 (void) printf(" LWP"); 842 if (Pflg) 843 (void) printf(" PSR"); 844 if (Lflg && fflg) 845 (void) printf(" NLWP"); 846 if (cflg) 847 (void) printf(" CLS PRI"); 848 else if (lflg || fflg) { 849 (void) printf(" C"); 850 if (lflg) 851 (void) printf(" PRI NI"); 852 } 853 if (lflg) { 854 if (yflg) 855 (void) printf(" RSS SZ WCHAN"); 856 else 857 (void) printf(" ADDR SZ WCHAN"); 858 } 859 if (fflg) 860 (void) printf(" %s", loc_stime_str); 861 if (Hflg) 862 (void) printf(" LGRP"); 863 if (Lflg) 864 (void) printf(" TTY LTIME CMD\n"); 865 else 866 (void) printf(" TTY TIME CMD\n"); 867 } 868 869 870 if (pflg && !(aflg|Aflg|dflg|Gflg|Uflg|uflg|hflg|tflg|gflg|sflg|zflg) && 871 npid <= PTHRESHOLD) { 872 /* 873 * If we are looking at specific processes go straight 874 * to their /proc entries and don't scan /proc. 875 */ 876 int i; 877 878 (void) qsort(pid, npid, sizeof (pid_t), pidcmp); 879 for (i = 0; i < npid; i++) { 880 char pname[12]; 881 882 if (i >= 1 && pid[i] == pid[i - 1]) 883 continue; 884 (void) sprintf(pname, "%d", (int)pid[i]); 885 if (print_proc(pname) == 0) 886 retcode = 0; 887 } 888 } else { 889 /* 890 * Determine which processes to print info about by searching 891 * the /proc directory and looking at each process. 892 */ 893 if ((dirp = opendir(procdir)) == NULL) { 894 (void) fprintf(stderr, 895 gettext("ps: cannot open PROC directory %s\n"), 896 procdir); 897 exit(1); 898 } 899 900 /* for each active process --- */ 901 while (dentp = readdir(dirp)) { 902 if (dentp->d_name[0] == '.') /* skip . and .. */ 903 continue; 904 if (print_proc(dentp->d_name) == 0) 905 retcode = 0; 906 } 907 908 (void) closedir(dirp); 909 } 910 return (retcode); 911 } 912 913 914 int 915 print_proc(char *pid_name) 916 { 917 char pname[PATH_MAX]; 918 int pdlen; 919 int found; 920 int procfd; /* filedescriptor for /proc/nnnnn/psinfo */ 921 char *tp; /* ptr to ttyname, if any */ 922 psinfo_t info; /* process information from /proc */ 923 lwpsinfo_t *lwpsinfo; /* array of lwpsinfo structs */ 924 925 pdlen = snprintf(pname, sizeof (pname), "%s/%s/", procdir, pid_name); 926 if (pdlen >= sizeof (pname) - 10) 927 return (1); 928 retry: 929 (void) strcpy(&pname[pdlen], "psinfo"); 930 if ((procfd = open(pname, O_RDONLY)) == -1) { 931 /* Process may have exited meanwhile. */ 932 return (1); 933 } 934 /* 935 * Get the info structure for the process and close quickly. 936 */ 937 if (read(procfd, (char *)&info, sizeof (info)) < 0) { 938 int saverr = errno; 939 940 (void) close(procfd); 941 if (saverr == EAGAIN) 942 goto retry; 943 if (saverr != ENOENT) 944 (void) fprintf(stderr, 945 gettext("ps: read() on %s: %s\n"), 946 pname, err_string(saverr)); 947 return (1); 948 } 949 (void) close(procfd); 950 951 found = 0; 952 if (info.pr_lwp.pr_state == 0) /* can't happen? */ 953 return (1); 954 955 /* 956 * Omit session group leaders for 'a' and 'd' options. 957 */ 958 if ((info.pr_pid == info.pr_sid) && (dflg || aflg)) 959 return (1); 960 if (Aflg || dflg) 961 found++; 962 else if (pflg && search(pid, npid, info.pr_pid)) 963 found++; /* ppid in p option arg list */ 964 else if (uflg && ugfind((id_t)info.pr_euid, &euid_tbl)) 965 found++; /* puid in u option arg list */ 966 else if (Uflg && ugfind((id_t)info.pr_uid, &ruid_tbl)) 967 found++; /* puid in U option arg list */ 968 #ifdef NOT_YET 969 else if (gflg && ugfind((id_t)info.pr_egid, &egid_tbl)) 970 found++; /* pgid in g option arg list */ 971 #endif /* NOT_YET */ 972 else if (Gflg && ugfind((id_t)info.pr_gid, &rgid_tbl)) 973 found++; /* pgid in G option arg list */ 974 else if (gflg && search(grpid, ngrpid, info.pr_pgid)) 975 found++; /* grpid in g option arg list */ 976 else if (sflg && search(sessid, nsessid, info.pr_sid)) 977 found++; /* sessid in s option arg list */ 978 else if (zflg && search(zoneid, nzoneid, info.pr_zoneid)) 979 found++; /* zoneid in z option arg list */ 980 else if (hflg && search((pid_t *)lgrps, nlgrps, info.pr_lwp.pr_lgrp)) 981 found++; /* home lgroup in h option arg list */ 982 if (!found && !tflg && !aflg) 983 return (1); 984 if (!prfind(found, &info, &tp)) 985 return (1); 986 if (Lflg && (info.pr_nlwp + info.pr_nzomb) > 1) { 987 ssize_t prsz; 988 989 (void) strcpy(&pname[pdlen], "lpsinfo"); 990 if ((procfd = open(pname, O_RDONLY)) == -1) 991 return (1); 992 /* 993 * Get the info structures for the lwps. 994 */ 995 prsz = read(procfd, lpsinfobuf, lpbufsize); 996 if (prsz == -1) { 997 int saverr = errno; 998 999 (void) close(procfd); 1000 if (saverr == EAGAIN) 1001 goto retry; 1002 if (saverr != ENOENT) 1003 (void) fprintf(stderr, 1004 gettext("ps: read() on %s: %s\n"), 1005 pname, err_string(saverr)); 1006 return (1); 1007 } 1008 (void) close(procfd); 1009 if (prsz == lpbufsize) { 1010 /* 1011 * buffer overflow. Realloc new buffer. 1012 * Error handling is done in Realloc(). 1013 */ 1014 lpbufsize *= 2; 1015 lpsinfobuf = Realloc(lpsinfobuf, lpbufsize); 1016 goto retry; 1017 } 1018 if (lpsinfobuf->pr_nent != (info.pr_nlwp + info.pr_nzomb)) 1019 goto retry; 1020 lwpsinfo = (lwpsinfo_t *)(lpsinfobuf + 1); 1021 } 1022 if (!Lflg || (info.pr_nlwp + info.pr_nzomb) <= 1) { 1023 prcom(&info, tp); 1024 } else { 1025 int nlwp = 0; 1026 1027 do { 1028 info.pr_lwp = *lwpsinfo; 1029 prcom(&info, tp); 1030 /* LINTED improper alignment */ 1031 lwpsinfo = (lwpsinfo_t *)((char *)lwpsinfo + 1032 lpsinfobuf->pr_entsize); 1033 } while (++nlwp < lpsinfobuf->pr_nent); 1034 } 1035 return (0); 1036 } 1037 1038 1039 static void 1040 usage(void) /* print usage message and quit */ 1041 { 1042 static char usage1[] = 1043 "ps [ -aAdefHlcjLPyZ ] [ -o format ] [ -t termlist ]"; 1044 static char usage2[] = 1045 "\t[ -u userlist ] [ -U userlist ] [ -G grouplist ]"; 1046 static char usage3[] = 1047 "\t[ -p proclist ] [ -g pgrplist ] [ -s sidlist ] [ -z zonelist ] " 1048 "[-h lgrplist]"; 1049 static char usage4[] = 1050 " 'format' is one or more of:"; 1051 static char usage5[] = 1052 "\tuser ruser group rgroup uid ruid gid rgid pid ppid pgid " 1053 "sid taskid ctid"; 1054 static char usage6[] = 1055 "\tpri opri pcpu pmem vsz rss osz nice class time etime stime zone " 1056 "zoneid"; 1057 static char usage7[] = 1058 "\tf s c lwp nlwp psr tty addr wchan fname comm args " 1059 "projid project pset lgrp"; 1060 1061 (void) fprintf(stderr, 1062 gettext("usage: %s\n%s\n%s\n%s\n%s\n%s\n%s\n"), 1063 gettext(usage1), gettext(usage2), gettext(usage3), 1064 gettext(usage4), gettext(usage5), gettext(usage6), gettext(usage7)); 1065 exit(1); 1066 } 1067 1068 /* 1069 * getarg() finds the next argument in list and copies arg into argbuf. 1070 * p1 first pts to arg passed back from getopt routine. p1 is then 1071 * bumped to next character that is not a comma or blank -- p1 NULL 1072 * indicates end of list. 1073 */ 1074 static char * 1075 getarg(char **pp1) 1076 { 1077 static char argbuf[ARGSIZ]; 1078 char *p1 = *pp1; 1079 char *parga = argbuf; 1080 int c; 1081 1082 while ((c = *p1) != '\0' && (c == ',' || isspace(c))) 1083 p1++; 1084 1085 while ((c = *p1) != '\0' && c != ',' && !isspace(c)) { 1086 if (parga < argbuf + ARGSIZ - 1) 1087 *parga++ = c; 1088 p1++; 1089 } 1090 *parga = '\0'; 1091 1092 while ((c = *p1) != '\0' && (c == ',' || isspace(c))) 1093 p1++; 1094 1095 *pp1 = p1; 1096 1097 return (argbuf); 1098 } 1099 1100 /* 1101 * parse_format() takes the argument to the -o option, 1102 * sets up the next output field structure, and returns 1103 * a pointer to any further output field specifier(s). 1104 * As a side-effect, it increments errflg if encounters a format error. 1105 */ 1106 static char * 1107 parse_format(char *arg) 1108 { 1109 int c; 1110 char *name; 1111 char *header = NULL; 1112 int width = 0; 1113 struct def_field *df; 1114 struct field *f; 1115 1116 while ((c = *arg) != '\0' && (c == ',' || isspace(c))) 1117 arg++; 1118 if (c == '\0') 1119 return (NULL); 1120 name = arg; 1121 arg = strpbrk(arg, " \t\r\v\f\n,="); 1122 if (arg != NULL) { 1123 c = *arg; 1124 *arg++ = '\0'; 1125 if (c == '=') { 1126 char *s; 1127 1128 header = arg; 1129 arg = NULL; 1130 width = strlen(header); 1131 s = header + width; 1132 while (s > header && isspace(*--s)) 1133 *s = '\0'; 1134 while (isspace(*header)) 1135 header++; 1136 } 1137 } 1138 for (df = &fname[0]; df < &fname[NFIELDS]; df++) 1139 if (strcmp(name, df->fname) == 0) { 1140 if (strcmp(name, "lwp") == 0) 1141 Lflg++; 1142 break; 1143 } 1144 if (df >= &fname[NFIELDS]) { 1145 (void) fprintf(stderr, 1146 gettext("ps: unknown output format: -o %s\n"), 1147 name); 1148 errflg++; 1149 return (arg); 1150 } 1151 if ((f = malloc(sizeof (*f))) == NULL) { 1152 (void) fprintf(stderr, 1153 gettext("ps: malloc() for output format failed, %s\n"), 1154 err_string(errno)); 1155 exit(1); 1156 } 1157 f->next = NULL; 1158 f->fname = df - &fname[0]; 1159 f->header = header? header : df->header; 1160 if (width == 0) 1161 width = df->width; 1162 if (*f->header != '\0') 1163 do_header = 1; 1164 f->width = max(width, df->minwidth); 1165 1166 if (fields == NULL) 1167 fields = last_field = f; 1168 else { 1169 last_field->next = f; 1170 last_field = f; 1171 } 1172 1173 return (arg); 1174 } 1175 1176 static char * 1177 devlookup(dev_t ddev) 1178 { 1179 struct devl *dp; 1180 int i; 1181 1182 for (dp = devl, i = 0; i < ndev; dp++, i++) { 1183 if (dp->ddev == ddev) 1184 return (dp->dname); 1185 } 1186 return (NULL); 1187 } 1188 1189 static char * 1190 devadd(char *name, dev_t ddev) 1191 { 1192 struct devl *dp; 1193 int leng, start, i; 1194 1195 if (ndev == maxdev) { 1196 maxdev += DNINCR; 1197 devl = Realloc(devl, maxdev * sizeof (struct devl)); 1198 } 1199 dp = &devl[ndev++]; 1200 1201 dp->ddev = ddev; 1202 if (name == NULL) { 1203 (void) strcpy(dp->dname, "??"); 1204 return (dp->dname); 1205 } 1206 1207 leng = strlen(name); 1208 /* Strip off /dev/ */ 1209 if (leng < DNSIZE + 4) 1210 (void) strcpy(dp->dname, &name[5]); 1211 else { 1212 start = leng - DNSIZE - 1; 1213 1214 for (i = start; i < leng && name[i] != '/'; i++) 1215 ; 1216 if (i == leng) 1217 (void) strncpy(dp->dname, &name[start], DNSIZE); 1218 else 1219 (void) strncpy(dp->dname, &name[i+1], DNSIZE); 1220 } 1221 return (dp->dname); 1222 } 1223 1224 /* 1225 * gettty returns the user's tty number or ? if none. 1226 */ 1227 static char * 1228 gettty(psinfo_t *psinfo) 1229 { 1230 extern char *_ttyname_dev(dev_t, char *, size_t); 1231 char devname[TTYNAME_MAX]; 1232 char *retval; 1233 1234 if (psinfo->pr_ttydev == PRNODEV) 1235 return ("?"); 1236 1237 if ((retval = devlookup(psinfo->pr_ttydev)) != NULL) 1238 return (retval); 1239 1240 retval = _ttyname_dev(psinfo->pr_ttydev, devname, sizeof (devname)); 1241 1242 return (devadd(retval, psinfo->pr_ttydev)); 1243 } 1244 1245 /* 1246 * Find the process's tty and return 1 if process is to be printed. 1247 */ 1248 static int 1249 prfind(int found, psinfo_t *psinfo, char **tpp) 1250 { 1251 char *tp; 1252 struct tty *ttyp; 1253 1254 if (psinfo->pr_nlwp == 0) { 1255 /* process is a zombie */ 1256 *tpp = "?"; 1257 if (tflg && !found) 1258 return (0); 1259 return (1); 1260 } 1261 1262 /* 1263 * Get current terminal. If none ("?") and 'a' is set, don't print 1264 * info. If 't' is set, check if term is in list of desired terminals 1265 * and print it if it is. 1266 */ 1267 tp = gettty(psinfo); 1268 if (aflg && *tp == '?') { 1269 *tpp = tp; 1270 return (0); 1271 } 1272 if (tflg && !found) { 1273 int match = 0; 1274 char *other = NULL; 1275 for (ttyp = tty; ttyp->tname != NULL; ttyp++) { 1276 /* 1277 * Look for a name match 1278 */ 1279 if (strcmp(tp, ttyp->tname) == 0) { 1280 match = 1; 1281 break; 1282 } 1283 /* 1284 * Look for same device under different names. 1285 */ 1286 if ((other == NULL) && 1287 (ttyp->tdev != PRNODEV) && 1288 (psinfo->pr_ttydev == ttyp->tdev)) 1289 other = ttyp->tname; 1290 } 1291 if (!match && (other != NULL)) { 1292 /* 1293 * found under a different name 1294 */ 1295 match = 1; 1296 tp = other; 1297 } 1298 if (!match || (tuid != (uid_t)-1 && tuid != psinfo->pr_euid)) { 1299 /* 1300 * not found OR not matching euid 1301 */ 1302 *tpp = tp; 1303 return (0); 1304 } 1305 } 1306 *tpp = tp; 1307 return (1); 1308 } 1309 1310 /* 1311 * Print info about the process. 1312 */ 1313 static void 1314 prcom(psinfo_t *psinfo, char *ttyp) 1315 { 1316 char *cp; 1317 long tm; 1318 int bytesleft; 1319 int wcnt, length; 1320 wchar_t wchar; 1321 struct passwd *pwd; 1322 int zombie_lwp; 1323 char zonename[ZONENAME_MAX]; 1324 1325 /* 1326 * If process is zombie, call zombie print routine and return. 1327 */ 1328 if (psinfo->pr_nlwp == 0) { 1329 if (fields != NULL) 1330 pr_fields(psinfo, ttyp, print_zombie_field); 1331 else 1332 przom(psinfo); 1333 return; 1334 } 1335 1336 zombie_lwp = (Lflg && psinfo->pr_lwp.pr_sname == 'Z'); 1337 1338 /* 1339 * If user specified '-o format', print requested fields and return. 1340 */ 1341 if (fields != NULL) { 1342 pr_fields(psinfo, ttyp, print_field); 1343 return; 1344 } 1345 1346 /* 1347 * All fields before 'PID' are printed with a trailing space as a 1348 * separator, rather than keeping track of which column is first. All 1349 * other fields are printed with a leading space. 1350 */ 1351 if (lflg) { 1352 if (!yflg) 1353 (void) printf("%2x ", psinfo->pr_flag & 0377); /* F */ 1354 (void) printf("%c ", psinfo->pr_lwp.pr_sname); /* S */ 1355 } 1356 1357 if (Zflg) { /* ZONE */ 1358 if (getzonenamebyid(psinfo->pr_zoneid, zonename, 1359 sizeof (zonename)) < 0) { 1360 (void) printf(" %7.7d ", ((int)psinfo->pr_zoneid)); 1361 } else { 1362 (void) printf("%8.8s ", zonename); 1363 } 1364 } 1365 1366 if (fflg) { /* UID */ 1367 if ((pwd = getpwuid(psinfo->pr_euid)) != NULL) 1368 (void) printf("%8.8s ", pwd->pw_name); 1369 else 1370 (void) printf(" %7.7u ", psinfo->pr_euid); 1371 } else if (lflg) { 1372 (void) printf("%6u ", psinfo->pr_euid); 1373 } 1374 (void) printf("%*d", pidwidth, (int)psinfo->pr_pid); /* PID */ 1375 if (lflg || fflg) 1376 (void) printf(" %*d", pidwidth, 1377 (int)psinfo->pr_ppid); /* PPID */ 1378 if (jflg) { 1379 (void) printf(" %*d", pidwidth, 1380 (int)psinfo->pr_pgid); /* PGID */ 1381 (void) printf(" %*d", pidwidth, 1382 (int)psinfo->pr_sid); /* SID */ 1383 } 1384 if (Lflg) 1385 (void) printf(" %5d", (int)psinfo->pr_lwp.pr_lwpid); /* LWP */ 1386 if (Pflg) { 1387 if (psinfo->pr_lwp.pr_bindpro == PBIND_NONE) /* PSR */ 1388 (void) printf(" -"); 1389 else 1390 (void) printf(" %3d", psinfo->pr_lwp.pr_bindpro); 1391 } 1392 if (Lflg && fflg) /* NLWP */ 1393 (void) printf(" %5d", psinfo->pr_nlwp + psinfo->pr_nzomb); 1394 if (cflg) { 1395 if (zombie_lwp) /* CLS */ 1396 (void) printf(" "); 1397 else 1398 (void) printf(" %4s", psinfo->pr_lwp.pr_clname); 1399 (void) printf(" %3d", psinfo->pr_lwp.pr_pri); /* PRI */ 1400 } else if (lflg || fflg) { 1401 (void) printf(" %3d", psinfo->pr_lwp.pr_cpu & 0377); /* C */ 1402 if (lflg) { /* PRI NI */ 1403 /* 1404 * Print priorities the old way (lower numbers 1405 * mean higher priority) and print nice value 1406 * for time sharing procs. 1407 */ 1408 (void) printf(" %3d", psinfo->pr_lwp.pr_oldpri); 1409 if (psinfo->pr_lwp.pr_oldpri != 0) 1410 (void) printf(" %2d", psinfo->pr_lwp.pr_nice); 1411 else 1412 (void) printf(" %2.2s", 1413 psinfo->pr_lwp.pr_clname); 1414 } 1415 } 1416 if (lflg) { 1417 if (yflg) { 1418 if (psinfo->pr_flag & SSYS) /* RSS */ 1419 (void) printf(" 0"); 1420 else if (psinfo->pr_rssize) 1421 (void) printf(" %5lu", 1422 (ulong_t)psinfo->pr_rssize); 1423 else 1424 (void) printf(" ?"); 1425 if (psinfo->pr_flag & SSYS) /* SZ */ 1426 (void) printf(" 0"); 1427 else if (psinfo->pr_size) 1428 (void) printf(" %6lu", 1429 (ulong_t)psinfo->pr_size); 1430 else 1431 (void) printf(" ?"); 1432 } else { 1433 #ifndef _LP64 1434 if (psinfo->pr_addr) /* ADDR */ 1435 (void) printf(" %8lx", 1436 (ulong_t)psinfo->pr_addr); 1437 else 1438 #endif 1439 (void) printf(" ?"); 1440 if (psinfo->pr_flag & SSYS) /* SZ */ 1441 (void) printf(" 0"); 1442 else if (psinfo->pr_size) 1443 (void) printf(" %6lu", 1444 (ulong_t)psinfo->pr_size / kbytes_per_page); 1445 else 1446 (void) printf(" ?"); 1447 } 1448 if (psinfo->pr_lwp.pr_sname != 'S') /* WCHAN */ 1449 (void) printf(" "); 1450 #ifndef _LP64 1451 else if (psinfo->pr_lwp.pr_wchan) 1452 (void) printf(" %8lx", 1453 (ulong_t)psinfo->pr_lwp.pr_wchan); 1454 #endif 1455 else 1456 (void) printf(" ?"); 1457 } 1458 if (fflg) { /* STIME */ 1459 int width = fname[F_STIME].width; 1460 if (Lflg) 1461 prtime(psinfo->pr_lwp.pr_start, width + 1, 1); 1462 else 1463 prtime(psinfo->pr_start, width + 1, 1); 1464 } 1465 1466 if (Hflg) { 1467 /* Display home lgroup */ 1468 (void) printf(" %4d", (int)psinfo->pr_lwp.pr_lgrp); 1469 } 1470 1471 (void) printf(" %-8.14s", ttyp); /* TTY */ 1472 if (Lflg) { 1473 tm = psinfo->pr_lwp.pr_time.tv_sec; 1474 if (psinfo->pr_lwp.pr_time.tv_nsec > 500000000) 1475 tm++; 1476 } else { 1477 tm = psinfo->pr_time.tv_sec; 1478 if (psinfo->pr_time.tv_nsec > 500000000) 1479 tm++; 1480 } 1481 (void) printf(" %4ld:%.2ld", tm / 60, tm % 60); /* [L]TIME */ 1482 1483 if (zombie_lwp) { 1484 (void) printf(" <defunct>\n"); 1485 return; 1486 } 1487 1488 if (!fflg) { /* CMD */ 1489 wcnt = namencnt(psinfo->pr_fname, 16, 8); 1490 (void) printf(" %.*s\n", wcnt, psinfo->pr_fname); 1491 return; 1492 } 1493 1494 1495 /* 1496 * PRARGSZ == length of cmd arg string. 1497 */ 1498 psinfo->pr_psargs[PRARGSZ-1] = '\0'; 1499 bytesleft = PRARGSZ; 1500 for (cp = psinfo->pr_psargs; *cp != '\0'; cp += length) { 1501 length = mbtowc(&wchar, cp, MB_LEN_MAX); 1502 if (length == 0) 1503 break; 1504 if (length < 0 || !iswprint(wchar)) { 1505 if (length < 0) 1506 length = 1; 1507 if (bytesleft <= length) { 1508 *cp = '\0'; 1509 break; 1510 } 1511 /* omit the unprintable character */ 1512 (void) memmove(cp, cp+length, bytesleft-length); 1513 length = 0; 1514 } 1515 bytesleft -= length; 1516 } 1517 wcnt = namencnt(psinfo->pr_psargs, PRARGSZ, lflg ? 35 : PRARGSZ); 1518 (void) printf(" %.*s\n", wcnt, psinfo->pr_psargs); 1519 } 1520 1521 /* 1522 * Print percent from 16-bit binary fraction [0 .. 1] 1523 * Round up .01 to .1 to indicate some small percentage (the 0x7000 below). 1524 */ 1525 static void 1526 prtpct(ushort_t pct, int width) 1527 { 1528 uint_t value = pct; /* need 32 bits to compute with */ 1529 1530 value = ((value * 1000) + 0x7000) >> 15; /* [0 .. 1000] */ 1531 if (value >= 1000) 1532 value = 999; 1533 if ((width -= 2) < 2) 1534 width = 2; 1535 (void) printf("%*u.%u", width, value / 10, value % 10); 1536 } 1537 1538 static void 1539 print_time(time_t tim, int width) 1540 { 1541 char buf[30]; 1542 time_t seconds; 1543 time_t minutes; 1544 time_t hours; 1545 time_t days; 1546 1547 if (tim < 0) { 1548 (void) printf("%*s", width, "-"); 1549 return; 1550 } 1551 1552 seconds = tim % 60; 1553 tim /= 60; 1554 minutes = tim % 60; 1555 tim /= 60; 1556 hours = tim % 24; 1557 days = tim / 24; 1558 1559 if (days > 0) { 1560 (void) snprintf(buf, sizeof (buf), "%ld-%2.2ld:%2.2ld:%2.2ld", 1561 days, hours, minutes, seconds); 1562 } else if (hours > 0) { 1563 (void) snprintf(buf, sizeof (buf), "%2.2ld:%2.2ld:%2.2ld", 1564 hours, minutes, seconds); 1565 } else { 1566 (void) snprintf(buf, sizeof (buf), "%2.2ld:%2.2ld", 1567 minutes, seconds); 1568 } 1569 1570 (void) printf("%*s", width, buf); 1571 } 1572 1573 static void 1574 print_field(psinfo_t *psinfo, struct field *f, const char *ttyp) 1575 { 1576 int width = f->width; 1577 struct passwd *pwd; 1578 struct group *grp; 1579 time_t cputime; 1580 int bytesleft; 1581 int wcnt; 1582 wchar_t wchar; 1583 char *cp; 1584 int length; 1585 ulong_t mask; 1586 char c, *csave; 1587 int zombie_lwp; 1588 1589 zombie_lwp = (Lflg && psinfo->pr_lwp.pr_sname == 'Z'); 1590 1591 switch (f->fname) { 1592 case F_RUSER: 1593 if ((pwd = getpwuid(psinfo->pr_uid)) != NULL) 1594 (void) printf("%*s", width, pwd->pw_name); 1595 else 1596 (void) printf("%*u", width, psinfo->pr_uid); 1597 break; 1598 case F_USER: 1599 if ((pwd = getpwuid(psinfo->pr_euid)) != NULL) 1600 (void) printf("%*s", width, pwd->pw_name); 1601 else 1602 (void) printf("%*u", width, psinfo->pr_euid); 1603 break; 1604 case F_RGROUP: 1605 if ((grp = getgrgid(psinfo->pr_gid)) != NULL) 1606 (void) printf("%*s", width, grp->gr_name); 1607 else 1608 (void) printf("%*u", width, psinfo->pr_gid); 1609 break; 1610 case F_GROUP: 1611 if ((grp = getgrgid(psinfo->pr_egid)) != NULL) 1612 (void) printf("%*s", width, grp->gr_name); 1613 else 1614 (void) printf("%*u", width, psinfo->pr_egid); 1615 break; 1616 case F_RUID: 1617 (void) printf("%*u", width, psinfo->pr_uid); 1618 break; 1619 case F_UID: 1620 (void) printf("%*u", width, psinfo->pr_euid); 1621 break; 1622 case F_RGID: 1623 (void) printf("%*u", width, psinfo->pr_gid); 1624 break; 1625 case F_GID: 1626 (void) printf("%*u", width, psinfo->pr_egid); 1627 break; 1628 case F_PID: 1629 (void) printf("%*d", width, (int)psinfo->pr_pid); 1630 break; 1631 case F_PPID: 1632 (void) printf("%*d", width, (int)psinfo->pr_ppid); 1633 break; 1634 case F_PGID: 1635 (void) printf("%*d", width, (int)psinfo->pr_pgid); 1636 break; 1637 case F_SID: 1638 (void) printf("%*d", width, (int)psinfo->pr_sid); 1639 break; 1640 case F_PSR: 1641 if (zombie_lwp || psinfo->pr_lwp.pr_bindpro == PBIND_NONE) 1642 (void) printf("%*s", width, "-"); 1643 else 1644 (void) printf("%*d", width, psinfo->pr_lwp.pr_bindpro); 1645 break; 1646 case F_LWP: 1647 (void) printf("%*d", width, (int)psinfo->pr_lwp.pr_lwpid); 1648 break; 1649 case F_NLWP: 1650 (void) printf("%*d", width, psinfo->pr_nlwp + psinfo->pr_nzomb); 1651 break; 1652 case F_OPRI: 1653 if (zombie_lwp) 1654 (void) printf("%*s", width, "-"); 1655 else 1656 (void) printf("%*d", width, psinfo->pr_lwp.pr_oldpri); 1657 break; 1658 case F_PRI: 1659 if (zombie_lwp) 1660 (void) printf("%*s", width, "-"); 1661 else 1662 (void) printf("%*d", width, psinfo->pr_lwp.pr_pri); 1663 break; 1664 case F_F: 1665 mask = 0xffffffffUL; 1666 if (width < 8) 1667 mask >>= (8 - width) * 4; 1668 (void) printf("%*lx", width, psinfo->pr_flag & mask); 1669 break; 1670 case F_S: 1671 (void) printf("%*c", width, psinfo->pr_lwp.pr_sname); 1672 break; 1673 case F_C: 1674 if (zombie_lwp) 1675 (void) printf("%*s", width, "-"); 1676 else 1677 (void) printf("%*d", width, psinfo->pr_lwp.pr_cpu); 1678 break; 1679 case F_PCPU: 1680 if (zombie_lwp) 1681 (void) printf("%*s", width, "-"); 1682 else if (Lflg) 1683 prtpct(psinfo->pr_lwp.pr_pctcpu, width); 1684 else 1685 prtpct(psinfo->pr_pctcpu, width); 1686 break; 1687 case F_PMEM: 1688 prtpct(psinfo->pr_pctmem, width); 1689 break; 1690 case F_OSZ: 1691 (void) printf("%*lu", width, 1692 (ulong_t)psinfo->pr_size / kbytes_per_page); 1693 break; 1694 case F_VSZ: 1695 (void) printf("%*lu", width, (ulong_t)psinfo->pr_size); 1696 break; 1697 case F_RSS: 1698 (void) printf("%*lu", width, (ulong_t)psinfo->pr_rssize); 1699 break; 1700 case F_NICE: 1701 /* if pr_oldpri is zero, then this class has no nice */ 1702 if (zombie_lwp) 1703 (void) printf("%*s", width, "-"); 1704 else if (psinfo->pr_lwp.pr_oldpri != 0) 1705 (void) printf("%*d", width, psinfo->pr_lwp.pr_nice); 1706 else 1707 (void) printf("%*.*s", width, width, 1708 psinfo->pr_lwp.pr_clname); 1709 break; 1710 case F_CLASS: 1711 if (zombie_lwp) 1712 (void) printf("%*s", width, "-"); 1713 else 1714 (void) printf("%*.*s", width, width, 1715 psinfo->pr_lwp.pr_clname); 1716 break; 1717 case F_STIME: 1718 if (Lflg) 1719 prtime(psinfo->pr_lwp.pr_start, width, 0); 1720 else 1721 prtime(psinfo->pr_start, width, 0); 1722 break; 1723 case F_ETIME: 1724 if (Lflg) 1725 print_time(delta_secs(&psinfo->pr_lwp.pr_start), 1726 width); 1727 else 1728 print_time(delta_secs(&psinfo->pr_start), width); 1729 break; 1730 case F_TIME: 1731 if (Lflg) { 1732 cputime = psinfo->pr_lwp.pr_time.tv_sec; 1733 if (psinfo->pr_lwp.pr_time.tv_nsec > 500000000) 1734 cputime++; 1735 } else { 1736 cputime = psinfo->pr_time.tv_sec; 1737 if (psinfo->pr_time.tv_nsec > 500000000) 1738 cputime++; 1739 } 1740 print_time(cputime, width); 1741 break; 1742 case F_TTY: 1743 (void) printf("%-*s", width, ttyp); 1744 break; 1745 case F_ADDR: 1746 if (zombie_lwp) 1747 (void) printf("%*s", width, "-"); 1748 else if (Lflg) 1749 (void) printf("%*lx", width, 1750 (long)psinfo->pr_lwp.pr_addr); 1751 else 1752 (void) printf("%*lx", width, (long)psinfo->pr_addr); 1753 break; 1754 case F_WCHAN: 1755 if (!zombie_lwp && psinfo->pr_lwp.pr_wchan) 1756 (void) printf("%*lx", width, 1757 (long)psinfo->pr_lwp.pr_wchan); 1758 else 1759 (void) printf("%*.*s", width, width, "-"); 1760 break; 1761 case F_FNAME: 1762 /* 1763 * Print full width unless this is the last output format. 1764 */ 1765 if (zombie_lwp) { 1766 if (f->next != NULL) 1767 (void) printf("%-*s", width, "<defunct>"); 1768 else 1769 (void) printf("%s", "<defunct>"); 1770 break; 1771 } 1772 wcnt = namencnt(psinfo->pr_fname, 16, width); 1773 if (f->next != NULL) 1774 (void) printf("%-*.*s", width, wcnt, psinfo->pr_fname); 1775 else 1776 (void) printf("%-.*s", wcnt, psinfo->pr_fname); 1777 break; 1778 case F_COMM: 1779 if (zombie_lwp) { 1780 if (f->next != NULL) 1781 (void) printf("%-*s", width, "<defunct>"); 1782 else 1783 (void) printf("%s", "<defunct>"); 1784 break; 1785 } 1786 csave = strpbrk(psinfo->pr_psargs, " \t\r\v\f\n"); 1787 if (csave) { 1788 c = *csave; 1789 *csave = '\0'; 1790 } 1791 /* FALLTHROUGH */ 1792 case F_ARGS: 1793 /* 1794 * PRARGSZ == length of cmd arg string. 1795 */ 1796 if (zombie_lwp) { 1797 (void) printf("%-*s", width, "<defunct>"); 1798 break; 1799 } 1800 psinfo->pr_psargs[PRARGSZ-1] = '\0'; 1801 bytesleft = PRARGSZ; 1802 for (cp = psinfo->pr_psargs; *cp != '\0'; cp += length) { 1803 length = mbtowc(&wchar, cp, MB_LEN_MAX); 1804 if (length == 0) 1805 break; 1806 if (length < 0 || !iswprint(wchar)) { 1807 if (length < 0) 1808 length = 1; 1809 if (bytesleft <= length) { 1810 *cp = '\0'; 1811 break; 1812 } 1813 /* omit the unprintable character */ 1814 (void) memmove(cp, cp+length, bytesleft-length); 1815 length = 0; 1816 } 1817 bytesleft -= length; 1818 } 1819 wcnt = namencnt(psinfo->pr_psargs, PRARGSZ, width); 1820 /* 1821 * Print full width unless this is the last format. 1822 */ 1823 if (f->next != NULL) 1824 (void) printf("%-*.*s", width, wcnt, 1825 psinfo->pr_psargs); 1826 else 1827 (void) printf("%-.*s", wcnt, 1828 psinfo->pr_psargs); 1829 if (f->fname == F_COMM && csave) 1830 *csave = c; 1831 break; 1832 case F_TASKID: 1833 (void) printf("%*d", width, (int)psinfo->pr_taskid); 1834 break; 1835 case F_PROJID: 1836 (void) printf("%*d", width, (int)psinfo->pr_projid); 1837 break; 1838 case F_PROJECT: 1839 { 1840 struct project cproj; 1841 char proj_buf[PROJECT_BUFSZ]; 1842 1843 if ((getprojbyid(psinfo->pr_projid, &cproj, 1844 (void *)&proj_buf, PROJECT_BUFSZ)) == NULL) 1845 (void) printf("%*d", width, 1846 (int)psinfo->pr_projid); 1847 else 1848 (void) printf("%*s", width, 1849 (cproj.pj_name != NULL) ? 1850 cproj.pj_name : "---"); 1851 } 1852 break; 1853 case F_PSET: 1854 if (zombie_lwp || psinfo->pr_lwp.pr_bindpset == PS_NONE) 1855 (void) printf("%*s", width, "-"); 1856 else 1857 (void) printf("%*d", width, psinfo->pr_lwp.pr_bindpset); 1858 break; 1859 case F_ZONEID: 1860 (void) printf("%*d", width, (int)psinfo->pr_zoneid); 1861 break; 1862 case F_ZONE: 1863 { 1864 char zonename[ZONENAME_MAX]; 1865 1866 if (getzonenamebyid(psinfo->pr_zoneid, zonename, 1867 sizeof (zonename)) < 0) { 1868 (void) printf("%*d", width, 1869 ((int)psinfo->pr_zoneid)); 1870 } else { 1871 (void) printf("%*s", width, zonename); 1872 } 1873 } 1874 break; 1875 case F_CTID: 1876 if (psinfo->pr_contract == -1) 1877 (void) printf("%*s", width, "-"); 1878 else 1879 (void) printf("%*ld", width, (long)psinfo->pr_contract); 1880 break; 1881 case F_LGRP: 1882 /* Display home lgroup */ 1883 (void) printf("%*d", width, (int)psinfo->pr_lwp.pr_lgrp); 1884 break; 1885 } 1886 } 1887 1888 static void 1889 print_zombie_field(psinfo_t *psinfo, struct field *f, const char *ttyp) 1890 { 1891 int wcnt; 1892 int width = f->width; 1893 1894 switch (f->fname) { 1895 case F_FNAME: 1896 case F_COMM: 1897 case F_ARGS: 1898 /* 1899 * Print full width unless this is the last output format. 1900 */ 1901 wcnt = min(width, sizeof ("<defunct>")); 1902 if (f->next != NULL) 1903 (void) printf("%-*.*s", width, wcnt, "<defunct>"); 1904 else 1905 (void) printf("%-.*s", wcnt, "<defunct>"); 1906 break; 1907 1908 case F_PSR: 1909 case F_PCPU: 1910 case F_PMEM: 1911 case F_NICE: 1912 case F_CLASS: 1913 case F_STIME: 1914 case F_ETIME: 1915 case F_WCHAN: 1916 case F_PSET: 1917 (void) printf("%*s", width, "-"); 1918 break; 1919 1920 case F_OPRI: 1921 case F_PRI: 1922 case F_OSZ: 1923 case F_VSZ: 1924 case F_RSS: 1925 (void) printf("%*d", width, 0); 1926 break; 1927 1928 default: 1929 print_field(psinfo, f, ttyp); 1930 break; 1931 } 1932 } 1933 1934 static void 1935 pr_fields(psinfo_t *psinfo, const char *ttyp, 1936 void (*print_fld)(psinfo_t *, struct field *, const char *)) 1937 { 1938 struct field *f; 1939 1940 for (f = fields; f != NULL; f = f->next) { 1941 print_fld(psinfo, f, ttyp); 1942 if (f->next != NULL) 1943 (void) printf(" "); 1944 } 1945 (void) printf("\n"); 1946 } 1947 1948 /* 1949 * Returns 1 if arg is found in array arr, of length num; 0 otherwise. 1950 */ 1951 static int 1952 search(pid_t *arr, int number, pid_t arg) 1953 { 1954 int i; 1955 1956 for (i = 0; i < number; i++) 1957 if (arg == arr[i]) 1958 return (1); 1959 return (0); 1960 } 1961 1962 /* 1963 * Add an entry (user, group) to the specified table. 1964 */ 1965 static void 1966 add_ugentry(struct ughead *tbl, char *name) 1967 { 1968 struct ugdata *entp; 1969 1970 if (tbl->size == tbl->nent) { /* reallocate the table entries */ 1971 if ((tbl->size *= 2) == 0) 1972 tbl->size = 32; /* first time */ 1973 tbl->ent = Realloc(tbl->ent, tbl->size*sizeof (struct ugdata)); 1974 } 1975 entp = &tbl->ent[tbl->nent++]; 1976 entp->id = 0; 1977 (void) strncpy(entp->name, name, MAXUGNAME); 1978 entp->name[MAXUGNAME] = '\0'; 1979 } 1980 1981 static int 1982 uconv(struct ughead *uhead) 1983 { 1984 struct ugdata *utbl = uhead->ent; 1985 int n = uhead->nent; 1986 struct passwd *pwd; 1987 int i; 1988 int fnd = 0; 1989 uid_t uid; 1990 1991 /* 1992 * Ask the name service for names. 1993 */ 1994 for (i = 0; i < n; i++) { 1995 /* 1996 * If name is numeric, ask for numeric id 1997 */ 1998 if (str2uid(utbl[i].name, &uid, 0, MAXEPHUID) == 0) 1999 pwd = getpwuid(uid); 2000 else 2001 pwd = getpwnam(utbl[i].name); 2002 2003 /* 2004 * If found, enter found index into tbl array. 2005 */ 2006 if (pwd == NULL) { 2007 (void) fprintf(stderr, 2008 gettext("ps: unknown user %s\n"), utbl[i].name); 2009 continue; 2010 } 2011 2012 utbl[fnd].id = pwd->pw_uid; 2013 (void) strncpy(utbl[fnd].name, pwd->pw_name, MAXUGNAME); 2014 fnd++; 2015 } 2016 2017 uhead->nent = fnd; /* in case it changed */ 2018 return (n - fnd); 2019 } 2020 2021 static int 2022 gconv(struct ughead *ghead) 2023 { 2024 struct ugdata *gtbl = ghead->ent; 2025 int n = ghead->nent; 2026 struct group *grp; 2027 gid_t gid; 2028 int i; 2029 int fnd = 0; 2030 2031 /* 2032 * Ask the name service for names. 2033 */ 2034 for (i = 0; i < n; i++) { 2035 /* 2036 * If name is numeric, ask for numeric id 2037 */ 2038 if (str2uid(gtbl[i].name, (uid_t *)&gid, 0, MAXEPHUID) == 0) 2039 grp = getgrgid(gid); 2040 else 2041 grp = getgrnam(gtbl[i].name); 2042 /* 2043 * If found, enter found index into tbl array. 2044 */ 2045 if (grp == NULL) { 2046 (void) fprintf(stderr, 2047 gettext("ps: unknown group %s\n"), gtbl[i].name); 2048 continue; 2049 } 2050 2051 gtbl[fnd].id = grp->gr_gid; 2052 (void) strncpy(gtbl[fnd].name, grp->gr_name, MAXUGNAME); 2053 fnd++; 2054 } 2055 2056 ghead->nent = fnd; /* in case it changed */ 2057 return (n - fnd); 2058 } 2059 2060 /* 2061 * Return 1 if puid is in table, otherwise 0. 2062 */ 2063 static int 2064 ugfind(id_t id, struct ughead *ughead) 2065 { 2066 struct ugdata *utbl = ughead->ent; 2067 int n = ughead->nent; 2068 int i; 2069 2070 for (i = 0; i < n; i++) 2071 if (utbl[i].id == id) 2072 return (1); 2073 return (0); 2074 } 2075 2076 /* 2077 * Print starting time of process unless process started more than 24 hours 2078 * ago, in which case the date is printed. The date is printed in the form 2079 * "MMM dd" if old format, else the blank is replaced with an '_' so 2080 * it appears as a single word (for parseability). 2081 */ 2082 static void 2083 prtime(timestruc_t st, int width, int old) 2084 { 2085 char sttim[26]; 2086 time_t starttime; 2087 2088 starttime = st.tv_sec; 2089 if (st.tv_nsec > 500000000) 2090 starttime++; 2091 if ((now.tv_sec - starttime) >= 24*60*60) { 2092 (void) strftime(sttim, sizeof (sttim), old? 2093 /* 2094 * TRANSLATION_NOTE 2095 * This time format is used by STIME field when -f option 2096 * is specified. Used for processes that begun more than 2097 * 24 hours. 2098 */ 2099 dcgettext(NULL, "%b %d", LC_TIME) : 2100 /* 2101 * TRANSLATION_NOTE 2102 * This time format is used by STIME field when -o option 2103 * is specified. Used for processes that begun more than 2104 * 24 hours. 2105 */ 2106 dcgettext(NULL, "%b_%d", LC_TIME), localtime(&starttime)); 2107 } else { 2108 /* 2109 * TRANSLATION_NOTE 2110 * This time format is used by STIME field when -f or -o option 2111 * is specified. Used for processes that begun less than 2112 * 24 hours. 2113 */ 2114 (void) strftime(sttim, sizeof (sttim), 2115 dcgettext(NULL, "%H:%M:%S", LC_TIME), 2116 localtime(&starttime)); 2117 } 2118 (void) printf("%*.*s", width, width, sttim); 2119 } 2120 2121 static void 2122 przom(psinfo_t *psinfo) 2123 { 2124 long tm; 2125 struct passwd *pwd; 2126 char zonename[ZONENAME_MAX]; 2127 2128 /* 2129 * All fields before 'PID' are printed with a trailing space as a 2130 * spearator, rather than keeping track of which column is first. All 2131 * other fields are printed with a leading space. 2132 */ 2133 if (lflg) { /* F S */ 2134 if (!yflg) 2135 (void) printf("%2x ", psinfo->pr_flag & 0377); /* F */ 2136 (void) printf("%c ", psinfo->pr_lwp.pr_sname); /* S */ 2137 } 2138 if (Zflg) { 2139 if (getzonenamebyid(psinfo->pr_zoneid, zonename, 2140 sizeof (zonename)) < 0) { 2141 (void) printf(" %7.7d ", ((int)psinfo->pr_zoneid)); 2142 } else { 2143 (void) printf("%8.8s ", zonename); 2144 } 2145 } 2146 if (Hflg) { 2147 /* Display home lgroup */ 2148 (void) printf(" %6d", (int)psinfo->pr_lwp.pr_lgrp); /* LGRP */ 2149 } 2150 if (fflg) { 2151 if ((pwd = getpwuid(psinfo->pr_euid)) != NULL) 2152 (void) printf("%8.8s ", pwd->pw_name); 2153 else 2154 (void) printf(" %7.7u ", psinfo->pr_euid); 2155 } else if (lflg) 2156 (void) printf("%6u ", psinfo->pr_euid); 2157 2158 (void) printf("%*d", pidwidth, (int)psinfo->pr_pid); /* PID */ 2159 if (lflg || fflg) 2160 (void) printf(" %*d", pidwidth, 2161 (int)psinfo->pr_ppid); /* PPID */ 2162 2163 if (jflg) { 2164 (void) printf(" %*d", pidwidth, 2165 (int)psinfo->pr_pgid); /* PGID */ 2166 (void) printf(" %*d", pidwidth, 2167 (int)psinfo->pr_sid); /* SID */ 2168 } 2169 2170 if (Lflg) 2171 (void) printf(" %5d", 0); /* LWP */ 2172 if (Pflg) 2173 (void) printf(" -"); /* PSR */ 2174 if (Lflg && fflg) 2175 (void) printf(" %5d", 0); /* NLWP */ 2176 2177 if (cflg) { 2178 (void) printf(" %4s", "-"); /* zombies have no class */ 2179 (void) printf(" %3d", psinfo->pr_lwp.pr_pri); /* PRI */ 2180 } else if (lflg || fflg) { 2181 (void) printf(" %3d", psinfo->pr_lwp.pr_cpu & 0377); /* C */ 2182 if (lflg) 2183 (void) printf(" %3d %2s", 2184 psinfo->pr_lwp.pr_oldpri, "-"); /* PRI NI */ 2185 } 2186 if (lflg) { 2187 if (yflg) /* RSS SZ WCHAN */ 2188 (void) printf(" %5d %6d %8s", 0, 0, "-"); 2189 else /* ADDR SZ WCHAN */ 2190 (void) printf(" %8s %6d %8s", "-", 0, "-"); 2191 } 2192 if (fflg) { 2193 int width = fname[F_STIME].width; 2194 (void) printf(" %*.*s", width, width, "-"); /* STIME */ 2195 } 2196 (void) printf(" %-8.14s", "?"); /* TTY */ 2197 2198 tm = psinfo->pr_time.tv_sec; 2199 if (psinfo->pr_time.tv_nsec > 500000000) 2200 tm++; 2201 (void) printf(" %4ld:%.2ld", tm / 60, tm % 60); /* TIME */ 2202 (void) printf(" <defunct>\n"); 2203 } 2204 2205 /* 2206 * Function to compute the number of printable bytes in a multibyte 2207 * command string ("internationalization"). 2208 */ 2209 static int 2210 namencnt(char *cmd, int csisize, int scrsize) 2211 { 2212 int csiwcnt = 0, scrwcnt = 0; 2213 int ncsisz, nscrsz; 2214 wchar_t wchar; 2215 int len; 2216 2217 while (*cmd != '\0') { 2218 if ((len = csisize - csiwcnt) > (int)MB_CUR_MAX) 2219 len = MB_CUR_MAX; 2220 if ((ncsisz = mbtowc(&wchar, cmd, len)) < 0) 2221 return (8); /* default to use for illegal chars */ 2222 if ((nscrsz = wcwidth(wchar)) <= 0) 2223 return (8); 2224 if (csiwcnt + ncsisz > csisize || scrwcnt + nscrsz > scrsize) 2225 break; 2226 csiwcnt += ncsisz; 2227 scrwcnt += nscrsz; 2228 cmd += ncsisz; 2229 } 2230 return (csiwcnt); 2231 } 2232 2233 static char * 2234 err_string(int err) 2235 { 2236 static char buf[32]; 2237 char *str = strerror(err); 2238 2239 if (str == NULL) 2240 (void) snprintf(str = buf, sizeof (buf), "Errno #%d", err); 2241 2242 return (str); 2243 } 2244 2245 /* If allocation fails, die */ 2246 static void * 2247 Realloc(void *ptr, size_t size) 2248 { 2249 ptr = realloc(ptr, size); 2250 if (ptr == NULL) { 2251 (void) fprintf(stderr, gettext("ps: no memory\n")); 2252 exit(1); 2253 } 2254 return (ptr); 2255 } 2256 2257 static time_t 2258 delta_secs(const timestruc_t *start) 2259 { 2260 time_t seconds = now.tv_sec - start->tv_sec; 2261 long nanosecs = now.tv_usec * 1000 - start->tv_nsec; 2262 2263 if (nanosecs >= (NANOSEC / 2)) 2264 seconds++; 2265 else if (nanosecs < -(NANOSEC / 2)) 2266 seconds--; 2267 2268 return (seconds); 2269 } 2270 2271 /* 2272 * Returns the following: 2273 * 2274 * 0 No error 2275 * EINVAL Invalid number 2276 * ERANGE Value exceeds (min, max) range 2277 */ 2278 static int 2279 str2id(const char *p, pid_t *val, long min, long max) 2280 { 2281 char *q; 2282 long number; 2283 int error; 2284 2285 errno = 0; 2286 number = strtol(p, &q, 10); 2287 2288 if (errno != 0 || q == p || *q != '\0') { 2289 if ((error = errno) == 0) { 2290 /* 2291 * strtol() can fail without setting errno, or it can 2292 * set it to EINVAL or ERANGE. In the case errno is 2293 * still zero, return EINVAL. 2294 */ 2295 error = EINVAL; 2296 } 2297 } else if (number < min || number > max) { 2298 error = ERANGE; 2299 } else { 2300 error = 0; 2301 } 2302 2303 *val = number; 2304 2305 return (error); 2306 } 2307 2308 /* 2309 * Returns the following: 2310 * 2311 * 0 No error 2312 * EINVAL Invalid number 2313 * ERANGE Value exceeds (min, max) range 2314 */ 2315 static int 2316 str2uid(const char *p, uid_t *val, unsigned long min, unsigned long max) 2317 { 2318 char *q; 2319 unsigned long number; 2320 int error; 2321 2322 errno = 0; 2323 number = strtoul(p, &q, 10); 2324 2325 if (errno != 0 || q == p || *q != '\0') { 2326 if ((error = errno) == 0) { 2327 /* 2328 * strtoul() can fail without setting errno, or it can 2329 * set it to EINVAL or ERANGE. In the case errno is 2330 * still zero, return EINVAL. 2331 */ 2332 error = EINVAL; 2333 } 2334 } else if (number < min || number > max) { 2335 error = ERANGE; 2336 } else { 2337 error = 0; 2338 } 2339 2340 *val = number; 2341 2342 return (error); 2343 } 2344 2345 static int 2346 pidcmp(const void *p1, const void *p2) 2347 { 2348 pid_t i = *((pid_t *)p1); 2349 pid_t j = *((pid_t *)p2); 2350 2351 return (i - j); 2352 } 2353