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 * Copyright 2006 Sun Microsystems, Inc. All rights reserved. 23 * Use is subject to license terms. 24 */ 25 26 /* Copyright (c) 1984, 1986, 1987, 1988, 1989 AT&T */ 27 /* All Rights Reserved */ 28 29 30 #pragma ident "%Z%%M% %I% %E% SMI" 31 32 #define _SYSCALL32 /* make 32-bit compat headers visible */ 33 34 #include <stdio.h> 35 #include <stdlib.h> 36 #include <unistd.h> 37 #include <string.h> 38 #include <signal.h> 39 #include <termio.h> 40 #include <stddef.h> 41 #include <limits.h> 42 #include <ctype.h> 43 #include <sys/types.h> 44 #include <sys/mman.h> 45 #include <sys/resource.h> 46 #include <sys/ulimit.h> 47 #include <sys/utsname.h> 48 #include <sys/kstat.h> 49 #include <sys/modctl.h> 50 #include <sys/acl.h> 51 #include <stropts.h> 52 #include <sys/isa_defs.h> 53 #include <sys/systeminfo.h> 54 #include <sys/cladm.h> 55 #include <sys/lwp.h> 56 #include <bsm/audit.h> 57 #include <libproc.h> 58 #include <priv.h> 59 #include <sys/aio.h> 60 #include <sys/aiocb.h> 61 #include <sys/corectl.h> 62 #include <sys/cpc_impl.h> 63 #include <sys/priocntl.h> 64 #include <sys/tspriocntl.h> 65 #include <sys/iapriocntl.h> 66 #include <sys/rtpriocntl.h> 67 #include <sys/fsspriocntl.h> 68 #include <sys/fxpriocntl.h> 69 #include <netdb.h> 70 #include <nss_dbdefs.h> 71 #include <sys/socketvar.h> 72 #include <netinet/in.h> 73 #include <netinet/tcp.h> 74 #include <netinet/udp.h> 75 #include <netinet/sctp.h> 76 #include <sys/utrap.h> 77 #include <sys/lgrp_user.h> 78 #include <sys/door.h> 79 #include <sys/tsol/tndb.h> 80 #include <sys/rctl.h> 81 #include <sys/rctl_impl.h> 82 #include "ramdata.h" 83 #include "print.h" 84 #include "proto.h" 85 #include "systable.h" 86 87 void grow(private_t *, int nbyte); 88 89 #define GROW(nb) if (pri->sys_leng + (nb) >= pri->sys_ssize) grow(pri, (nb)) 90 91 92 /*ARGSUSED*/ 93 void 94 prt_nov(private_t *pri, int raw, long val) /* print nothing */ 95 { 96 } 97 98 /*ARGSUSED*/ 99 void 100 prt_dec(private_t *pri, int raw, long val) /* print as decimal */ 101 { 102 GROW(24); 103 if (data_model == PR_MODEL_ILP32) 104 pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng, 105 "%d", (int)val); 106 else 107 pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng, 108 "%ld", val); 109 } 110 111 /*ARGSUSED*/ 112 void 113 prt_uns(private_t *pri, int raw, long val) /* print as unsigned decimal */ 114 { 115 GROW(24); 116 if (data_model == PR_MODEL_ILP32) 117 pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng, 118 "%u", (int)val); 119 else 120 pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng, 121 "%lu", val); 122 } 123 124 /*ARGSUSED*/ 125 void 126 prt_oct(private_t *pri, int raw, long val) /* print as octal */ 127 { 128 GROW(24); 129 if (data_model == PR_MODEL_ILP32) 130 pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng, 131 "%#o", (int)val); 132 else 133 pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng, 134 "%#lo", val); 135 } 136 137 /*ARGSUSED*/ 138 void 139 prt_hex(private_t *pri, int raw, long val) /* print as hexadecimal */ 140 { 141 GROW(20); 142 if (data_model == PR_MODEL_ILP32) 143 pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng, 144 "0x%.8X", (int)val); 145 else 146 pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng, 147 "0x%.8lX", val); 148 } 149 150 /* print as hexadecimal (half size) */ 151 /*ARGSUSED*/ 152 void 153 prt_hhx(private_t *pri, int raw, long val) 154 { 155 GROW(20); 156 if (data_model == PR_MODEL_ILP32) 157 pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng, 158 "0x%.4X", (int)val); 159 else 160 pri->sys_leng += sprintf(pri->sys_string + pri->sys_leng, 161 "0x%.4lX", val); 162 } 163 164 /* print as decimal if small, else hexadecimal */ 165 /*ARGSUSED*/ 166 void 167 prt_dex(private_t *pri, int raw, long val) 168 { 169 if (val & 0xff000000) 170 prt_hex(pri, 0, val); 171 else 172 prt_dec(pri, 0, val); 173 } 174 175 /* print long long offset */ 176 /*ARGSUSED*/ 177 void 178 prt_llo(private_t *pri, int raw, long val1, long val2) 179 { 180 int hival; 181 int loval; 182 183 #ifdef _LONG_LONG_LTOH 184 hival = (int)val2; 185 loval = (int)val1; 186 #else 187 hival = (int)val1; 188 loval = (int)val2; 189 #endif 190 191 if (hival == 0) 192 prt_dex(pri, 0, loval); 193 else { 194 GROW(18); 195 pri->sys_leng += 196 sprintf(pri->sys_string + pri->sys_leng, "0x%.8X%.8X", 197 hival, loval); 198 } 199 } 200 201 void 202 escape_string(private_t *pri, const char *s) 203 { 204 /* 205 * We want to avoid outputting unprintable characters that may 206 * destroy the user's terminal. So we do one pass to find any 207 * unprintable characters, size the array appropriately, and 208 * then walk each character by hand. Those that are unprintable 209 * are replaced by a hex escape (\xNN). We also escape quotes for 210 * completeness. 211 */ 212 int i, unprintable, quotes; 213 size_t len = strlen(s); 214 for (i = 0, unprintable = 0, quotes = 0; i < len; i++) { 215 if (!isprint(s[i])) 216 unprintable++; 217 if (s[i] == '"') 218 quotes++; 219 } 220 221 GROW(len + 3 * unprintable + quotes + 2); 222 223 pri->sys_string[pri->sys_leng++] = '"'; 224 for (i = 0; i < len; i++) { 225 if (s[i] == '"') 226 pri->sys_string[pri->sys_leng++] = '\\'; 227 228 if (isprint(s[i])) { 229 pri->sys_string[pri->sys_leng++] = s[i]; 230 } else { 231 pri->sys_leng += sprintf(pri->sys_string + 232 pri->sys_leng, "\\x%02x", s[i]); 233 } 234 } 235 pri->sys_string[pri->sys_leng++] = '"'; 236 } 237 238 void 239 prt_stg(private_t *pri, int raw, long val) /* print as string */ 240 { 241 char *s = raw? NULL : fetchstring(pri, (long)val, PATH_MAX); 242 243 if (s == NULL) 244 prt_hex(pri, 0, val); 245 else 246 escape_string(pri, s); 247 } 248 249 /* print as string returned from syscall */ 250 void 251 prt_rst(private_t *pri, int raw, long val) 252 { 253 char *s = (raw || pri->Errno)? NULL : 254 fetchstring(pri, (long)val, PATH_MAX); 255 256 if (s == NULL) 257 prt_hex(pri, 0, val); 258 else { 259 GROW((int)strlen(s) + 2); 260 pri->sys_leng += snprintf(pri->sys_string + pri->sys_leng, 261 pri->sys_ssize - pri->sys_leng, "\"%s\"", s); 262 } 263 } 264 265 /* print contents of readlink() buffer */ 266 void 267 prt_rlk(private_t *pri, int raw, long val) 268 { 269 char *s = (raw || pri->Errno || pri->Rval1 <= 0)? NULL : 270 fetchstring(pri, (long)val, 271 (pri->Rval1 > PATH_MAX)? PATH_MAX : (int)pri->Rval1); 272 273 if (s == NULL) 274 prt_hex(pri, 0, val); 275 else { 276 GROW((int)strlen(s) + 2); 277 pri->sys_leng += snprintf(pri->sys_string + pri->sys_leng, 278 pri->sys_ssize - pri->sys_leng, "\"%s\"", s); 279 } 280 } 281 282 void 283 prt_ioc(private_t *pri, int raw, long val) /* print ioctl code */ 284 { 285 const char *s = raw? NULL : ioctlname(pri, (int)val); 286 287 if (s == NULL) 288 prt_hex(pri, 0, val); 289 else 290 outstring(pri, s); 291 } 292 293 void 294 prt_ioa(private_t *pri, int raw, long val) /* print ioctl argument */ 295 { 296 const char *s; 297 298 /* cheating -- look at the ioctl() code */ 299 switch (pri->sys_args[1]) { 300 301 /* kstat ioctl()s */ 302 case KSTAT_IOC_READ: 303 case KSTAT_IOC_WRITE: 304 #ifdef _LP64 305 if (data_model == PR_MODEL_ILP32) 306 prt_stg(pri, raw, 307 val + offsetof(kstat32_t, ks_name[0])); 308 else 309 #endif 310 prt_stg(pri, raw, 311 val + offsetof(kstat_t, ks_name[0])); 312 break; 313 314 /* streams ioctl()s */ 315 case I_LOOK: 316 prt_rst(pri, raw, val); 317 break; 318 case I_PUSH: 319 case I_FIND: 320 prt_stg(pri, raw, val); 321 break; 322 case I_LINK: 323 case I_UNLINK: 324 case I_SENDFD: 325 prt_dec(pri, 0, val); 326 break; 327 case I_SRDOPT: 328 if (raw || (s = strrdopt(val)) == NULL) 329 prt_dec(pri, 0, val); 330 else 331 outstring(pri, s); 332 break; 333 case I_SETSIG: 334 if (raw || (s = strevents(pri, val)) == NULL) 335 prt_hex(pri, 0, val); 336 else 337 outstring(pri, s); 338 break; 339 case I_FLUSH: 340 if (raw || (s = strflush(val)) == NULL) 341 prt_dec(pri, 0, val); 342 else 343 outstring(pri, s); 344 break; 345 346 /* tty ioctl()s */ 347 case TCSBRK: 348 case TCXONC: 349 case TCFLSH: 350 case TCDSET: 351 prt_dec(pri, 0, val); 352 break; 353 354 default: 355 prt_hex(pri, 0, val); 356 break; 357 } 358 } 359 360 void 361 prt_fcn(private_t *pri, int raw, long val) /* print fcntl code */ 362 { 363 const char *s = raw? NULL : fcntlname(val); 364 365 if (s == NULL) 366 prt_dec(pri, 0, val); 367 else 368 outstring(pri, s); 369 } 370 371 void 372 prt_s86(private_t *pri, int raw, long val) /* print sysi86 code */ 373 { 374 375 const char *s = raw? NULL : si86name(val); 376 377 if (s == NULL) 378 prt_dec(pri, 0, val); 379 else 380 outstring(pri, s); 381 } 382 383 void 384 prt_uts(private_t *pri, int raw, long val) /* print utssys code */ 385 { 386 const char *s = raw? NULL : utscode(val); 387 388 if (s == NULL) 389 prt_dec(pri, 0, val); 390 else 391 outstring(pri, s); 392 } 393 394 void 395 prt_msc(private_t *pri, int raw, long val) /* print msgsys command */ 396 { 397 const char *s = raw? NULL : msgcmd(val); 398 399 if (s == NULL) 400 prt_dec(pri, 0, val); 401 else 402 outstring(pri, s); 403 } 404 405 void 406 prt_msf(private_t *pri, int raw, long val) /* print msgsys flags */ 407 { 408 const char *s = raw? NULL : msgflags(pri, (int)val); 409 410 if (s == NULL) 411 prt_oct(pri, 0, val); 412 else 413 outstring(pri, s); 414 } 415 416 void 417 prt_smc(private_t *pri, int raw, long val) /* print semsys command */ 418 { 419 const char *s = raw? NULL : semcmd(val); 420 421 if (s == NULL) 422 prt_dec(pri, 0, val); 423 else 424 outstring(pri, s); 425 } 426 427 void 428 prt_sef(private_t *pri, int raw, long val) /* print semsys flags */ 429 { 430 const char *s = raw? NULL : semflags(pri, (int)val); 431 432 if (s == NULL) 433 prt_oct(pri, 0, val); 434 else 435 outstring(pri, s); 436 } 437 438 void 439 prt_shc(private_t *pri, int raw, long val) /* print shmsys command */ 440 { 441 const char *s = raw? NULL : shmcmd(val); 442 443 if (s == NULL) 444 prt_dec(pri, 0, val); 445 else 446 outstring(pri, s); 447 } 448 449 void 450 prt_shf(private_t *pri, int raw, long val) /* print shmsys flags */ 451 { 452 const char *s = raw? NULL : shmflags(pri, (int)val); 453 454 if (s == NULL) 455 prt_oct(pri, 0, val); 456 else 457 outstring(pri, s); 458 } 459 460 void 461 prt_sfs(private_t *pri, int raw, long val) /* print sysfs code */ 462 { 463 const char *s = raw? NULL : sfsname(val); 464 465 if (s == NULL) 466 prt_dec(pri, 0, val); 467 else 468 outstring(pri, s); 469 } 470 471 void 472 prt_opn(private_t *pri, int raw, long val) /* print open code */ 473 { 474 const char *s = raw? NULL : openarg(pri, val); 475 476 if (s == NULL) 477 prt_oct(pri, 0, val); 478 else 479 outstring(pri, s); 480 } 481 482 void 483 prt_sig(private_t *pri, int raw, long val) /* print signal name plus flags */ 484 { 485 const char *s = raw? NULL : sigarg(pri, (int)val); 486 487 if (s == NULL) 488 prt_hex(pri, 0, val); 489 else 490 outstring(pri, s); 491 } 492 493 /* print signal name, masked with SIGNO_MASK */ 494 void 495 prt_six(private_t *pri, int raw, long val) 496 { 497 const char *s = raw? NULL : sigarg(pri, (int)val & SIGNO_MASK); 498 499 if (s == NULL) 500 prt_hex(pri, 0, val); 501 else 502 outstring(pri, s); 503 } 504 505 void 506 prt_act(private_t *pri, int raw, long val) /* print signal action value */ 507 { 508 const char *s; 509 510 if (raw) 511 s = NULL; 512 else if (val == (int)SIG_DFL) 513 s = "SIG_DFL"; 514 else if (val == (int)SIG_IGN) 515 s = "SIG_IGN"; 516 else if (val == (int)SIG_HOLD) 517 s = "SIG_HOLD"; 518 else 519 s = NULL; 520 521 if (s == NULL) 522 prt_hex(pri, 0, val); 523 else 524 outstring(pri, s); 525 } 526 527 void 528 prt_smf(private_t *pri, int raw, long val) /* print streams message flags */ 529 { 530 switch (val) { 531 case 0: 532 prt_dec(pri, 0, val); 533 break; 534 case RS_HIPRI: 535 if (raw) 536 prt_hhx(pri, 0, val); 537 else 538 outstring(pri, "RS_HIPRI"); 539 break; 540 default: 541 prt_hhx(pri, 0, val); 542 break; 543 } 544 } 545 546 void 547 prt_plk(private_t *pri, int raw, long val) /* print plock code */ 548 { 549 const char *s = raw? NULL : plockname(val); 550 551 if (s == NULL) 552 prt_dec(pri, 0, val); 553 else 554 outstring(pri, s); 555 } 556 557 void 558 prt_mtf(private_t *pri, int raw, long val) /* print mount flags */ 559 { 560 const char *s = raw? NULL : mountflags(pri, val); 561 562 if (s == NULL) 563 prt_hex(pri, 0, val); 564 else 565 outstring(pri, s); 566 } 567 568 void 569 prt_mft(private_t *pri, int raw, long val) /* print mount file system type */ 570 { 571 if (val >= 0 && val < 256) 572 prt_dec(pri, 0, val); 573 else if (raw) 574 prt_hex(pri, 0, val); 575 else 576 prt_stg(pri, raw, val); 577 } 578 579 #define ISREAD(code) \ 580 ((code) == SYS_read || (code) == SYS_pread || (code) == SYS_pread64 || \ 581 (code) == SYS_recv || (code) == SYS_recvfrom) 582 #define ISWRITE(code) \ 583 ((code) == SYS_write || (code) == SYS_pwrite || \ 584 (code) == SYS_pwrite64 || (code) == SYS_send || (code) == SYS_sendto) 585 586 /* print contents of read() or write() I/O buffer */ 587 void 588 prt_iob(private_t *pri, int raw, long val) 589 { 590 const lwpstatus_t *Lsp = pri->lwpstat; 591 int syscall = Lsp->pr_what; 592 int fdp1 = pri->sys_args[0] + 1; 593 ssize_t nbyte = ISWRITE(syscall)? pri->sys_args[2] : 594 (pri->Errno? 0 : pri->Rval1); 595 int elsewhere = FALSE; /* TRUE iff dumped elsewhere */ 596 char buffer[IOBSIZE]; 597 598 pri->iob_buf[0] = '\0'; 599 600 if (Lsp->pr_why == PR_SYSEXIT && nbyte > IOBSIZE) { 601 if (ISREAD(syscall)) 602 elsewhere = prismember(&readfd, fdp1); 603 else 604 elsewhere = prismember(&writefd, fdp1); 605 } 606 607 if (nbyte <= 0 || elsewhere) 608 prt_hex(pri, 0, val); 609 else { 610 int nb = nbyte > IOBSIZE? IOBSIZE : (int)nbyte; 611 612 if (Pread(Proc, buffer, (size_t)nb, (long)val) != nb) 613 prt_hex(pri, 0, val); 614 else { 615 pri->iob_buf[0] = '"'; 616 showbytes(buffer, nb, pri->iob_buf + 1); 617 (void) strlcat(pri->iob_buf, 618 (nb == nbyte)? 619 (const char *)"\"" : (const char *)"\"..", 620 sizeof (pri->iob_buf)); 621 if (raw) 622 prt_hex(pri, 0, val); 623 else 624 outstring(pri, pri->iob_buf); 625 } 626 } 627 } 628 #undef ISREAD 629 #undef ISWRITE 630 631 void 632 prt_idt(private_t *pri, int raw, long val) /* print idtype_t, waitid() arg */ 633 { 634 const char *s = raw? NULL : idtype_enum(pri, val); 635 636 if (s == NULL) 637 prt_dec(pri, 0, val); 638 else 639 outstring(pri, s); 640 } 641 642 void 643 prt_wop(private_t *pri, int raw, long val) /* print waitid() options */ 644 { 645 const char *s = raw? NULL : woptions(pri, (int)val); 646 647 if (s == NULL) 648 prt_oct(pri, 0, val); 649 else 650 outstring(pri, s); 651 } 652 653 void 654 prt_whn(private_t *pri, int raw, long val) /* print lseek() whence argument */ 655 { 656 const char *s = raw? NULL : whencearg(val); 657 658 if (s == NULL) 659 prt_dec(pri, 0, val); 660 else 661 outstring(pri, s); 662 } 663 664 /*ARGSUSED*/ 665 void 666 prt_spm(private_t *pri, int raw, long val) /* print sigprocmask argument */ 667 { 668 const char *s = NULL; 669 670 if (!raw) { 671 switch (val) { 672 case SIG_BLOCK: s = "SIG_BLOCK"; break; 673 case SIG_UNBLOCK: s = "SIG_UNBLOCK"; break; 674 case SIG_SETMASK: s = "SIG_SETMASK"; break; 675 } 676 } 677 678 if (s == NULL) 679 prt_dec(pri, 0, val); 680 else 681 outstring(pri, s); 682 } 683 684 const char * 685 mmap_protect(private_t *pri, long arg) 686 { 687 char *str = pri->code_buf; 688 689 if (arg & ~(PROT_READ|PROT_WRITE|PROT_EXEC)) 690 return ((char *)NULL); 691 692 if (arg == PROT_NONE) 693 return ("PROT_NONE"); 694 695 *str = '\0'; 696 if (arg & PROT_READ) 697 (void) strlcat(str, "|PROT_READ", sizeof (pri->code_buf)); 698 if (arg & PROT_WRITE) 699 (void) strlcat(str, "|PROT_WRITE", sizeof (pri->code_buf)); 700 if (arg & PROT_EXEC) 701 (void) strlcat(str, "|PROT_EXEC", sizeof (pri->code_buf)); 702 return ((const char *)(str + 1)); 703 } 704 705 const char * 706 mmap_type(private_t *pri, long arg) 707 { 708 char *str = pri->code_buf; 709 size_t used; 710 711 #define CBSIZE sizeof (pri->code_buf) 712 switch (arg & MAP_TYPE) { 713 case MAP_SHARED: 714 used = strlcpy(str, "MAP_SHARED", CBSIZE); 715 break; 716 case MAP_PRIVATE: 717 used = strlcpy(str, "MAP_PRIVATE", CBSIZE); 718 break; 719 default: 720 used = snprintf(str, CBSIZE, "%ld", arg&MAP_TYPE); 721 break; 722 } 723 724 arg &= ~(_MAP_NEW|MAP_TYPE); 725 726 if (arg & ~(MAP_FIXED|MAP_RENAME|MAP_NORESERVE|MAP_ANON|MAP_ALIGN| 727 MAP_TEXT|MAP_INITDATA)) 728 (void) snprintf(str + used, sizeof (pri->code_buf) - used, 729 "|0x%lX", arg); 730 else { 731 if (arg & MAP_FIXED) 732 (void) strlcat(str, "|MAP_FIXED", CBSIZE); 733 if (arg & MAP_RENAME) 734 (void) strlcat(str, "|MAP_RENAME", CBSIZE); 735 if (arg & MAP_NORESERVE) 736 (void) strlcat(str, "|MAP_NORESERVE", CBSIZE); 737 if (arg & MAP_ANON) 738 (void) strlcat(str, "|MAP_ANON", CBSIZE); 739 if (arg & MAP_ALIGN) 740 (void) strlcat(str, "|MAP_ALIGN", CBSIZE); 741 if (arg & MAP_TEXT) 742 (void) strlcat(str, "|MAP_TEXT", CBSIZE); 743 if (arg & MAP_INITDATA) 744 (void) strlcat(str, "|MAP_INITDATA", CBSIZE); 745 } 746 747 return ((const char *)str); 748 #undef CBSIZE 749 } 750 751 void 752 prt_mpr(private_t *pri, int raw, long val) /* print mmap()/mprotect() flags */ 753 { 754 const char *s = raw? NULL : mmap_protect(pri, val); 755 756 if (s == NULL) 757 prt_hhx(pri, 0, val); 758 else 759 outstring(pri, s); 760 } 761 762 void 763 prt_mty(private_t *pri, int raw, long val) /* print mmap() mapping type flags */ 764 { 765 const char *s = raw? NULL : mmap_type(pri, val); 766 767 if (s == NULL) 768 prt_hhx(pri, 0, val); 769 else 770 outstring(pri, s); 771 } 772 773 /*ARGSUSED*/ 774 void 775 prt_mcf(private_t *pri, int raw, long val) /* print memcntl() function */ 776 { 777 const char *s = NULL; 778 779 if (!raw) { 780 switch (val) { 781 case MC_SYNC: s = "MC_SYNC"; break; 782 case MC_LOCK: s = "MC_LOCK"; break; 783 case MC_UNLOCK: s = "MC_UNLOCK"; break; 784 case MC_ADVISE: s = "MC_ADVISE"; break; 785 case MC_LOCKAS: s = "MC_LOCKAS"; break; 786 case MC_UNLOCKAS: s = "MC_UNLOCKAS"; break; 787 case MC_HAT_ADVISE: s = "MC_HAT_ADVISE"; break; 788 } 789 } 790 791 if (s == NULL) 792 prt_dec(pri, 0, val); 793 else 794 outstring(pri, s); 795 } 796 797 void 798 prt_mad(private_t *pri, int raw, long val) /* print madvise() argument */ 799 { 800 const char *s = NULL; 801 802 if (!raw) { 803 switch (val) { 804 case MADV_NORMAL: s = "MADV_NORMAL"; break; 805 case MADV_RANDOM: s = "MADV_RANDOM"; break; 806 case MADV_SEQUENTIAL: s = "MADV_SEQUENTIAL"; break; 807 case MADV_WILLNEED: s = "MADV_WILLNEED"; break; 808 case MADV_DONTNEED: s = "MADV_DONTNEED"; break; 809 case MADV_FREE: s = "MADV_FREE"; break; 810 case MADV_ACCESS_DEFAULT: s = "MADV_ACCESS_DEFAULT"; break; 811 case MADV_ACCESS_LWP: s = "MADV_ACCESS_LWP"; break; 812 case MADV_ACCESS_MANY: s = "MADV_ACCESS_MANY"; break; 813 } 814 } 815 816 if (s == NULL) 817 prt_dec(pri, 0, val); 818 else 819 outstring(pri, s); 820 } 821 822 void 823 prt_mc4(private_t *pri, int raw, long val) /* print memcntl() (4th) argument */ 824 { 825 if (val == 0) 826 prt_dec(pri, 0, val); 827 else if (raw) 828 prt_hhx(pri, 0, val); 829 else { 830 char *s = NULL; 831 832 #define CBSIZE sizeof (pri->code_buf) 833 /* cheating -- look at memcntl func */ 834 switch (pri->sys_args[2]) { 835 case MC_ADVISE: 836 prt_mad(pri, 0, val); 837 return; 838 839 case MC_SYNC: 840 if ((val & ~(MS_SYNC|MS_ASYNC|MS_INVALIDATE)) == 0) { 841 *(s = pri->code_buf) = '\0'; 842 if (val & MS_SYNC) 843 (void) strlcat(s, "|MS_SYNC", CBSIZE); 844 if (val & MS_ASYNC) 845 (void) strlcat(s, "|MS_ASYNC", CBSIZE); 846 if (val & MS_INVALIDATE) 847 (void) strlcat(s, "|MS_INVALIDATE", 848 CBSIZE); 849 } 850 break; 851 852 case MC_LOCKAS: 853 case MC_UNLOCKAS: 854 if ((val & ~(MCL_CURRENT|MCL_FUTURE)) == 0) { 855 *(s = pri->code_buf) = '\0'; 856 if (val & MCL_CURRENT) 857 (void) strlcat(s, "|MCL_CURRENT", 858 CBSIZE); 859 if (val & MCL_FUTURE) 860 (void) strlcat(s, "|MCL_FUTURE", 861 CBSIZE); 862 } 863 break; 864 } 865 #undef CBSIZE 866 867 if (s == NULL || *s == '\0') 868 prt_hhx(pri, 0, val); 869 else 870 outstring(pri, ++s); 871 } 872 } 873 874 void 875 prt_mc5(private_t *pri, int raw, long val) /* print memcntl() (5th) argument */ 876 { 877 char *s; 878 879 #define CBSIZE sizeof (pri->code_buf) 880 if (val == 0) 881 prt_dec(pri, 0, val); 882 else if (raw || (val & ~VALID_ATTR)) 883 prt_hhx(pri, 0, val); 884 else { 885 s = pri->code_buf; 886 *s = '\0'; 887 if (val & SHARED) 888 (void) strlcat(s, "|SHARED", CBSIZE); 889 if (val & PRIVATE) 890 (void) strlcat(s, "|PRIVATE", CBSIZE); 891 if (val & PROT_READ) 892 (void) strlcat(s, "|PROT_READ", CBSIZE); 893 if (val & PROT_WRITE) 894 (void) strlcat(s, "|PROT_WRITE", CBSIZE); 895 if (val & PROT_EXEC) 896 (void) strlcat(s, "|PROT_EXEC", CBSIZE); 897 if (*s == '\0') 898 prt_hhx(pri, 0, val); 899 else 900 outstring(pri, ++s); 901 } 902 #undef CBSIZE 903 } 904 905 void 906 prt_ulm(private_t *pri, int raw, long val) /* print ulimit() argument */ 907 { 908 const char *s = NULL; 909 910 if (!raw) { 911 switch (val) { 912 case UL_GFILLIM: s = "UL_GFILLIM"; break; 913 case UL_SFILLIM: s = "UL_SFILLIM"; break; 914 case UL_GMEMLIM: s = "UL_GMEMLIM"; break; 915 case UL_GDESLIM: s = "UL_GDESLIM"; break; 916 } 917 } 918 919 if (s == NULL) 920 prt_dec(pri, 0, val); 921 else 922 outstring(pri, s); 923 } 924 925 void 926 prt_rlm(private_t *pri, int raw, long val) /* print get/setrlimit() argument */ 927 { 928 const char *s = NULL; 929 930 if (!raw) { 931 switch (val) { 932 case RLIMIT_CPU: s = "RLIMIT_CPU"; break; 933 case RLIMIT_FSIZE: s = "RLIMIT_FSIZE"; break; 934 case RLIMIT_DATA: s = "RLIMIT_DATA"; break; 935 case RLIMIT_STACK: s = "RLIMIT_STACK"; break; 936 case RLIMIT_CORE: s = "RLIMIT_CORE"; break; 937 case RLIMIT_NOFILE: s = "RLIMIT_NOFILE"; break; 938 case RLIMIT_VMEM: s = "RLIMIT_VMEM"; break; 939 } 940 } 941 942 if (s == NULL) 943 prt_dec(pri, 0, val); 944 else 945 outstring(pri, s); 946 } 947 948 void 949 prt_cnf(private_t *pri, int raw, long val) /* print sysconfig code */ 950 { 951 const char *s = raw? NULL : sconfname(val); 952 953 if (s == NULL) 954 prt_dec(pri, 0, val); 955 else 956 outstring(pri, s); 957 } 958 959 void 960 prt_inf(private_t *pri, int raw, long val) /* print sysinfo code */ 961 { 962 const char *s = NULL; 963 964 if (!raw) { 965 switch (val) { 966 case SI_SYSNAME: s = "SI_SYSNAME"; break; 967 case SI_HOSTNAME: s = "SI_HOSTNAME"; break; 968 case SI_RELEASE: s = "SI_RELEASE"; break; 969 case SI_VERSION: s = "SI_VERSION"; break; 970 case SI_MACHINE: s = "SI_MACHINE"; break; 971 case SI_ARCHITECTURE: s = "SI_ARCHITECTURE"; break; 972 case SI_ARCHITECTURE_32:s = "SI_ARCHITECTURE_32"; break; 973 case SI_ARCHITECTURE_64:s = "SI_ARCHITECTURE_64"; break; 974 case SI_ARCHITECTURE_K: s = "SI_ARCHITECTURE_K"; break; 975 case SI_HW_SERIAL: s = "SI_HW_SERIAL"; break; 976 case SI_HW_PROVIDER: s = "SI_HW_PROVIDER"; break; 977 case SI_SRPC_DOMAIN: s = "SI_SRPC_DOMAIN"; break; 978 case SI_SET_HOSTNAME: s = "SI_SET_HOSTNAME"; break; 979 case SI_SET_SRPC_DOMAIN: s = "SI_SET_SRPC_DOMAIN"; break; 980 case SI_PLATFORM: s = "SI_PLATFORM"; break; 981 case SI_ISALIST: s = "SI_ISALIST"; break; 982 case SI_DHCP_CACHE: s = "SI_DHCP_CACHE"; break; 983 } 984 } 985 986 if (s == NULL) 987 prt_dec(pri, 0, val); 988 else 989 outstring(pri, s); 990 } 991 992 void 993 prt_ptc(private_t *pri, int raw, long val) /* print pathconf code */ 994 { 995 const char *s = raw? NULL : pathconfname(val); 996 997 if (s == NULL) 998 prt_dec(pri, 0, val); 999 else 1000 outstring(pri, s); 1001 } 1002 1003 void 1004 prt_fui(private_t *pri, int raw, long val) /* print fusers() input argument */ 1005 { 1006 const char *s = raw? NULL : fuiname(val); 1007 1008 if (s == NULL) 1009 prt_hhx(pri, 0, val); 1010 else 1011 outstring(pri, s); 1012 } 1013 1014 void 1015 prt_lwf(private_t *pri, int raw, long val) /* print lwp_create() flags */ 1016 { 1017 char *s; 1018 1019 if (val == 0) 1020 prt_dec(pri, 0, val); 1021 else if (raw || 1022 (val & ~(LWP_DAEMON|LWP_DETACHED|LWP_SUSPENDED))) 1023 prt_hhx(pri, 0, val); 1024 else { 1025 #define CBSIZE sizeof (pri->code_buf) 1026 s = pri->code_buf; 1027 *s = '\0'; 1028 if (val & LWP_DAEMON) 1029 (void) strlcat(s, "|LWP_DAEMON", CBSIZE); 1030 if (val & LWP_DETACHED) 1031 (void) strlcat(s, "|LWP_DETACHED", CBSIZE); 1032 if (val & LWP_SUSPENDED) 1033 (void) strlcat(s, "|LWP_SUSPENDED", CBSIZE); 1034 outstring(pri, ++s); 1035 #undef CBSIZE 1036 } 1037 } 1038 1039 void 1040 prt_itm(private_t *pri, int raw, long val) /* print [get|set]itimer() arg */ 1041 { 1042 const char *s = NULL; 1043 1044 if (!raw) { 1045 switch (val) { 1046 case ITIMER_REAL: s = "ITIMER_REAL"; break; 1047 case ITIMER_VIRTUAL: s = "ITIMER_VIRTUAL"; break; 1048 case ITIMER_PROF: s = "ITIMER_PROF"; break; 1049 #ifdef ITIMER_REALPROF 1050 case ITIMER_REALPROF: s = "ITIMER_REALPROF"; break; 1051 #endif 1052 } 1053 } 1054 1055 if (s == NULL) 1056 prt_dec(pri, 0, val); 1057 else 1058 outstring(pri, s); 1059 } 1060 1061 void 1062 prt_mod(private_t *pri, int raw, long val) /* print modctl() code */ 1063 { 1064 const char *s = NULL; 1065 1066 if (!raw) { 1067 switch (val) { 1068 case MODLOAD: s = "MODLOAD"; break; 1069 case MODUNLOAD: s = "MODUNLOAD"; break; 1070 case MODINFO: s = "MODINFO"; break; 1071 case MODRESERVED: s = "MODRESERVED"; break; 1072 case MODSETMINIROOT: s = "MODSETMINIROOT"; break; 1073 case MODADDMAJBIND: s = "MODADDMAJBIND"; break; 1074 case MODGETPATH: s = "MODGETPATH"; break; 1075 case MODGETPATHLEN: s = "MODGETPATHLEN"; break; 1076 case MODREADSYSBIND: s = "MODREADSYSBIND"; break; 1077 case MODGETMAJBIND: s = "MODGETMAJBIND"; break; 1078 case MODGETNAME: s = "MODGETNAME"; break; 1079 case MODSIZEOF_DEVID: s = "MODSIZEOF_DEVID"; break; 1080 case MODGETDEVID: s = "MODGETDEVID"; break; 1081 case MODSIZEOF_MINORNAME: s = "MODSIZEOF_MINORNAME"; break; 1082 case MODGETMINORNAME: s = "MODGETMINORNAME"; break; 1083 case MODGETFBNAME: s = "MODGETFBNAME"; break; 1084 case MODEVENTS: s = "MODEVENTS"; break; 1085 case MODREREADDACF: s = "MODREREADDACF"; break; 1086 case MODLOADDRVCONF: s = "MODLOADDRVCONF"; break; 1087 case MODUNLOADDRVCONF: s = "MODUNLOADDRVCONF"; break; 1088 case MODREMMAJBIND: s = "MODREMMAJBIND"; break; 1089 case MODDEVT2INSTANCE: s = "MODDEVT2INSTANCE"; break; 1090 case MODGETDEVFSPATH_LEN: s = "MODGETDEVFSPATH_LEN"; break; 1091 case MODGETDEVFSPATH: s = "MODGETDEVFSPATH"; break; 1092 case MODDEVID2PATHS: s = "MODDEVID2PATHS"; break; 1093 case MODSETDEVPOLICY: s = "MODSETDEVPOLICY"; break; 1094 case MODGETDEVPOLICY: s = "MODGETDEVPOLICY"; break; 1095 case MODALLOCPRIV: s = "MODALLOCPRIV"; break; 1096 case MODGETDEVPOLICYBYNAME: 1097 s = "MODGETDEVPOLICYBYNAME"; break; 1098 case MODLOADMINORPERM: s = "MODLOADMINORPERM"; break; 1099 case MODADDMINORPERM: s = "MODADDMINORPERM"; break; 1100 case MODREMMINORPERM: s = "MODREMMINORPERM"; break; 1101 case MODREMDRVCLEANUP: s = "MODREMDRVCLEANUP"; break; 1102 case MODDEVEXISTS: s = "MODDEVEXISTS"; break; 1103 case MODDEVREADDIR: s = "MODDEVREADDIR"; break; 1104 case MODDEVNAME: s = "MODDEVNAME"; break; 1105 case MODGETDEVFSPATH_MI_LEN: 1106 s = "MODGETDEVFSPATH_MI_LEN"; break; 1107 case MODGETDEVFSPATH_MI: 1108 s = "MODGETDEVFSPATH_MI"; break; 1109 } 1110 } 1111 1112 if (s == NULL) 1113 prt_dec(pri, 0, val); 1114 else 1115 outstring(pri, s); 1116 } 1117 1118 void 1119 prt_acl(private_t *pri, int raw, long val) /* print acl() code */ 1120 { 1121 const char *s = NULL; 1122 1123 if (!raw) { 1124 switch (val) { 1125 case GETACL: s = "GETACL"; break; 1126 case SETACL: s = "SETACL"; break; 1127 case GETACLCNT: s = "GETACLCNT"; break; 1128 case ACE_GETACL: s = "ACE_GETACL"; break; 1129 case ACE_SETACL: s = "ACE_SETACL"; break; 1130 case ACE_GETACLCNT: s = "ACE_GETACLCNT"; break; 1131 } 1132 } 1133 1134 if (s == NULL) 1135 prt_dec(pri, 0, val); 1136 else 1137 outstring(pri, s); 1138 } 1139 1140 void 1141 prt_aio(private_t *pri, int raw, long val) /* print kaio() code */ 1142 { 1143 const char *s = NULL; 1144 char buf[32]; 1145 1146 if (!raw) { 1147 switch (val & ~AIO_POLL_BIT) { 1148 case AIOREAD: s = "AIOREAD"; break; 1149 case AIOWRITE: s = "AIOWRITE"; break; 1150 case AIOWAIT: s = "AIOWAIT"; break; 1151 case AIOCANCEL: s = "AIOCANCEL"; break; 1152 case AIONOTIFY: s = "AIONOTIFY"; break; 1153 case AIOINIT: s = "AIOINIT"; break; 1154 case AIOSTART: s = "AIOSTART"; break; 1155 case AIOLIO: s = "AIOLIO"; break; 1156 case AIOSUSPEND: s = "AIOSUSPEND"; break; 1157 case AIOERROR: s = "AIOERROR"; break; 1158 case AIOLIOWAIT: s = "AIOLIOWAIT"; break; 1159 case AIOAREAD: s = "AIOAREAD"; break; 1160 case AIOAWRITE: s = "AIOAWRITE"; break; 1161 /* 1162 * We have to hardcode the values for the 64-bit versions of 1163 * these calls, because <sys/aio.h> defines them to be identical 1164 * when compiled 64-bit. If our target is 32-bit, we still need 1165 * to decode them correctly. 1166 */ 1167 case 13: s = "AIOLIO64"; break; 1168 case 14: s = "AIOSUSPEND64"; break; 1169 case 15: s = "AUIOERROR64"; break; 1170 case 16: s = "AIOLIOWAIT64"; break; 1171 case 17: s = "AIOAREAD64"; break; 1172 case 18: s = "AIOAWRITE64"; break; 1173 case 19: s = "AIOCANCEL64"; break; 1174 1175 /* 1176 * AIOFSYNC doesn't correspond to a syscall. 1177 */ 1178 case AIOWAITN: s = "AIOWAITN"; break; 1179 } 1180 if (s != NULL && (val & AIO_POLL_BIT)) { 1181 (void) strlcpy(buf, s, sizeof (buf)); 1182 (void) strlcat(buf, "|AIO_POLL_BIT", sizeof (buf)); 1183 s = (const char *)buf; 1184 } 1185 } 1186 1187 if (s == NULL) 1188 prt_dec(pri, 0, val); 1189 else 1190 outstring(pri, s); 1191 } 1192 1193 void 1194 prt_aud(private_t *pri, int raw, long val) /* print auditsys() code */ 1195 { 1196 const char *s = NULL; 1197 1198 if (!raw) { 1199 switch (val) { 1200 case BSM_GETAUID: s = "BSM_GETAUID"; break; 1201 case BSM_SETAUID: s = "BSM_SETAUID"; break; 1202 case BSM_GETAUDIT: s = "BSM_GETAUDIT"; break; 1203 case BSM_SETAUDIT: s = "BSM_SETAUDIT"; break; 1204 case BSM_GETUSERAUDIT: s = "BSM_GETUSERAUDIT"; break; 1205 case BSM_SETUSERAUDIT: s = "BSM_SETUSERAUDIT"; break; 1206 case BSM_AUDIT: s = "BSM_AUDIT"; break; 1207 case BSM_AUDITUSER: s = "BSM_AUDITUSER"; break; 1208 case BSM_AUDITSVC: s = "BSM_AUDITSVC"; break; 1209 case BSM_AUDITON: s = "BSM_AUDITON"; break; 1210 case BSM_AUDITCTL: s = "BSM_AUDITCTL"; break; 1211 case BSM_GETKERNSTATE: s = "BSM_GETKERNSTATE"; break; 1212 case BSM_SETKERNSTATE: s = "BSM_SETKERNSTATE"; break; 1213 case BSM_GETPORTAUDIT: s = "BSM_GETPORTAUDIT"; break; 1214 case BSM_REVOKE: s = "BSM_REVOKE"; break; 1215 case BSM_AUDITSTAT: s = "BSM_AUDITSTAT"; break; 1216 case BSM_GETAUDIT_ADDR: s = "BSM_GETAUDIT_ADDR"; break; 1217 case BSM_SETAUDIT_ADDR: s = "BSM_SETAUDIT_ADDR"; break; 1218 } 1219 } 1220 1221 if (s == NULL) 1222 prt_dec(pri, 0, val); 1223 else 1224 outstring(pri, s); 1225 } 1226 1227 void 1228 prt_cor(private_t *pri, int raw, long val) /* print corectl() subcode */ 1229 { 1230 const char *s = NULL; 1231 1232 if (!raw) { 1233 switch (val) { 1234 case CC_SET_OPTIONS: 1235 s = "CC_SET_OPTIONS"; break; 1236 case CC_GET_OPTIONS: 1237 s = "CC_GET_OPTIONS"; break; 1238 case CC_SET_GLOBAL_PATH: 1239 s = "CC_SET_GLOBAL_PATH"; break; 1240 case CC_GET_GLOBAL_PATH: 1241 s = "CC_GET_GLOBAL_PATH"; break; 1242 case CC_SET_PROCESS_PATH: 1243 s = "CC_SET_PROCESS_PATH"; break; 1244 case CC_GET_PROCESS_PATH: 1245 s = "CC_GET_PROCESS_PATH"; break; 1246 case CC_SET_GLOBAL_CONTENT: 1247 s = "CC_SET_GLOBAL_CONTENT"; break; 1248 case CC_GET_GLOBAL_CONTENT: 1249 s = "CC_GET_GLOBAL_CONTENT"; break; 1250 case CC_SET_PROCESS_CONTENT: 1251 s = "CC_SET_PROCESS_CONTENT"; break; 1252 case CC_GET_PROCESS_CONTENT: 1253 s = "CC_GET_PROCESS_CONTENT"; break; 1254 case CC_SET_DEFAULT_PATH: 1255 s = "CC_SET_DEFAULT_PATH"; break; 1256 case CC_GET_DEFAULT_PATH: 1257 s = "CC_GET_DEFAULT_PATH"; break; 1258 case CC_SET_DEFAULT_CONTENT: 1259 s = "CC_SET_DEFAULT_CONTENT"; break; 1260 case CC_GET_DEFAULT_CONTENT: 1261 s = "CC_GET_DEFAULT_CONTENT"; break; 1262 } 1263 } 1264 1265 if (s == NULL) 1266 prt_dec(pri, 0, val); 1267 else 1268 outstring(pri, s); 1269 } 1270 1271 void 1272 prt_cco(private_t *pri, int raw, long val) /* print corectl() options */ 1273 { 1274 char *s; 1275 1276 if (val == 0) 1277 prt_dec(pri, 0, val); 1278 else if (raw || (val & ~CC_OPTIONS)) 1279 prt_hhx(pri, 0, val); 1280 else { 1281 #define CBSIZE sizeof (pri->code_buf) 1282 s = pri->code_buf; 1283 *s = '\0'; 1284 if (val & CC_GLOBAL_PATH) 1285 (void) strlcat(s, "|CC_GLOBAL_PATH", CBSIZE); 1286 if (val & CC_PROCESS_PATH) 1287 (void) strlcat(s, "|CC_PROCESS_PATH", CBSIZE); 1288 if (val & CC_GLOBAL_SETID) 1289 (void) strlcat(s, "|CC_GLOBAL_SETID", CBSIZE); 1290 if (val & CC_PROCESS_SETID) 1291 (void) strlcat(s, "|CC_PROCESS_SETID", CBSIZE); 1292 if (val & CC_GLOBAL_LOG) 1293 (void) strlcat(s, "|CC_GLOBAL_LOG", CBSIZE); 1294 if (*s == '\0') 1295 prt_hhx(pri, 0, val); 1296 else 1297 outstring(pri, ++s); 1298 #undef CBSIZE 1299 } 1300 } 1301 1302 void 1303 prt_ccc(private_t *pri, int raw, long val) /* print corectl() content */ 1304 { 1305 core_content_t ccc; 1306 1307 if (Pread(Proc, &ccc, sizeof (ccc), val) != sizeof (ccc)) 1308 prt_hex(pri, 0, val); 1309 else if (!raw && proc_content2str(ccc, pri->code_buf, 1310 sizeof (pri->code_buf)) >= 0) 1311 outstring(pri, pri->code_buf); 1312 else 1313 prt_hhx(pri, 0, (long)ccc); 1314 } 1315 1316 void 1317 prt_rcc(private_t *pri, int raw, long val) /* print corectl() ret. cont. */ 1318 { 1319 core_content_t ccc; 1320 1321 if (pri->Errno || Pread(Proc, &ccc, sizeof (ccc), val) != sizeof (ccc)) 1322 prt_hex(pri, 0, val); 1323 else if (!raw && proc_content2str(ccc, pri->code_buf, 1324 sizeof (pri->code_buf)) >= 0) 1325 outstring(pri, pri->code_buf); 1326 else 1327 prt_hhx(pri, 0, (long)ccc); 1328 } 1329 1330 void 1331 prt_cpc(private_t *pri, int raw, long val) /* print cpc() subcode */ 1332 { 1333 const char *s = NULL; 1334 1335 if (!raw) { 1336 switch (val) { 1337 case CPC_BIND: s = "CPC_BIND"; break; 1338 case CPC_SAMPLE: s = "CPC_SAMPLE"; break; 1339 case CPC_INVALIDATE: s = "CPC_INVALIDATE"; break; 1340 case CPC_RELE: s = "CPC_RELE"; break; 1341 case CPC_EVLIST_SIZE: s = "CPC_EVLIST_SIZE"; break; 1342 case CPC_LIST_EVENTS: s = "CPC_LIST_EVENTS"; break; 1343 case CPC_ATTRLIST_SIZE: s = "CPC_ATTRLIST_SIZE"; break; 1344 case CPC_LIST_ATTRS: s = "CPC_LIST_ATTRS"; break; 1345 case CPC_IMPL_NAME: s = "CPC_IMPL_NAME"; break; 1346 case CPC_CPUREF: s = "CPC_CPUREF"; break; 1347 case CPC_USR_EVENTS: s = "CPC_USR_EVENTS"; break; 1348 case CPC_SYS_EVENTS: s = "CPC_SYS_EVENTS"; break; 1349 case CPC_NPIC: s = "CPC_NPIC"; break; 1350 case CPC_CAPS: s = "CPC_CAPS"; break; 1351 case CPC_ENABLE: s = "CPC_ENABLE"; break; 1352 case CPC_DISABLE: s = "CPC_DISABLE"; break; 1353 } 1354 } 1355 1356 if (s == NULL) 1357 prt_dec(pri, 0, val); 1358 else 1359 outstring(pri, s); 1360 } 1361 1362 void 1363 outstring(private_t *pri, const char *s) 1364 { 1365 int len = strlen(s); 1366 1367 GROW(len); 1368 (void) strcpy(pri->sys_string + pri->sys_leng, s); 1369 pri->sys_leng += len; 1370 } 1371 1372 void 1373 grow(private_t *pri, int nbyte) /* reallocate format buffer if necessary */ 1374 { 1375 while (pri->sys_leng + nbyte >= pri->sys_ssize) 1376 pri->sys_string = my_realloc(pri->sys_string, 1377 pri->sys_ssize *= 2, "format buffer"); 1378 } 1379 1380 void 1381 prt_clc(private_t *pri, int raw, long val) 1382 { 1383 const char *s = NULL; 1384 1385 if (!raw) { 1386 switch (val) { 1387 case CL_INITIALIZE: s = "CL_INITIALIZE"; break; 1388 case CL_CONFIG: s = "CL_CONFIG"; break; 1389 } 1390 } 1391 1392 if (s == NULL) 1393 prt_dec(pri, 0, val); 1394 else 1395 outstring(pri, s); 1396 } 1397 1398 void 1399 prt_clf(private_t *pri, int raw, long val) 1400 { 1401 const char *s = NULL; 1402 1403 if (!raw) { 1404 switch (pri->sys_args[0]) { 1405 case CL_CONFIG: 1406 switch (pri->sys_args[1]) { 1407 case CL_NODEID: 1408 s = "CL_NODEID"; break; 1409 case CL_HIGHEST_NODEID: 1410 s = "CL_HIGHEST_NODEID"; break; 1411 } 1412 break; 1413 case CL_INITIALIZE: 1414 switch (pri->sys_args[1]) { 1415 case CL_GET_BOOTFLAG: 1416 s = "CL_GET_BOOTFLAG"; break; 1417 } 1418 break; 1419 } 1420 } 1421 1422 if (s == NULL) 1423 prt_dec(pri, 0, val); 1424 else 1425 outstring(pri, s); 1426 } 1427 1428 void 1429 prt_sqc(private_t *pri, int raw, long val) /* print sigqueue() si_code */ 1430 { 1431 const char *s = NULL; 1432 1433 if (!raw) { 1434 switch ((int)val) { 1435 case SI_QUEUE: s = "SI_QUEUE"; break; 1436 case SI_TIMER: s = "SI_TIMER"; break; 1437 case SI_ASYNCIO: s = "SI_ASYNCIO"; break; 1438 case SI_MESGQ: s = "SI_MESGQ"; break; 1439 } 1440 } 1441 1442 if (s == NULL) 1443 prt_dec(pri, 0, val); 1444 else 1445 outstring(pri, s); 1446 } 1447 1448 /* 1449 * print priocntlsys() (key, value) pair key. 1450 */ 1451 void 1452 print_pck(private_t *pri, int raw, long val) 1453 { 1454 const char *s = NULL; 1455 char clname[PC_CLNMSZ]; 1456 1457 if ((pri->sys_args[2] != PC_GETXPARMS && 1458 pri->sys_args[2] != PC_SETXPARMS) || val == 0 || raw) { 1459 prt_dec(pri, 0, val); 1460 return; 1461 } 1462 1463 if (pri->sys_args[3] == NULL) { 1464 if (val == PC_KY_CLNAME) { 1465 s = "PC_KY_CLNAME"; 1466 outstring(pri, s); 1467 } else 1468 prt_dec(pri, 0, val); 1469 return; 1470 } 1471 1472 if (Pread(Proc, &clname, PC_CLNMSZ, pri->sys_args[3]) != PC_CLNMSZ) { 1473 prt_dec(pri, 0, val); 1474 return; 1475 } 1476 1477 if (strcmp(clname, "TS") == 0) { 1478 switch (val) { 1479 case TS_KY_UPRILIM: s = "TS_KY_UPRILIM"; break; 1480 case TS_KY_UPRI: s = "TS_KY_UPRI"; break; 1481 default: break; 1482 } 1483 } else if (strcmp(clname, "IA") == 0) { 1484 switch (val) { 1485 case IA_KY_UPRILIM: s = "IA_KY_UPRILIM"; break; 1486 case IA_KY_UPRI: s = "IA_KY_UPRI"; break; 1487 case IA_KY_MODE: s = "IA_KY_MODE"; break; 1488 default: break; 1489 } 1490 } else if (strcmp(clname, "RT") == 0) { 1491 switch (val) { 1492 case RT_KY_PRI: s = "RT_KY_PRI"; break; 1493 case RT_KY_TQSECS: s = "RT_KY_TQSECS"; break; 1494 case RT_KY_TQNSECS: s = "RT_KY_TQNSECS"; break; 1495 case RT_KY_TQSIG: s = "RT_KY_TQSIG"; break; 1496 default: break; 1497 } 1498 } else if (strcmp(clname, "FSS") == 0) { 1499 switch (val) { 1500 case FSS_KY_UPRILIM: s = "FSS_KY_UPRILIM"; break; 1501 case FSS_KY_UPRI: s = "FSS_KY_UPRI"; break; 1502 default: break; 1503 } 1504 } else if (strcmp(clname, "FX") == 0) { 1505 switch (val) { 1506 case FX_KY_UPRILIM: s = "FX_KY_UPRILIM"; break; 1507 case FX_KY_UPRI: s = "FX_KY_UPRI"; break; 1508 case FX_KY_TQSECS: s = "FX_KY_TQSECS"; break; 1509 case FX_KY_TQNSECS: s = "FX_KY_TQNSECS"; break; 1510 default: break; 1511 } 1512 } 1513 1514 if (s == NULL) 1515 prt_dec(pri, 0, val); 1516 else 1517 outstring(pri, s); 1518 } 1519 1520 /* 1521 * print priocntlsys() fourth argument. 1522 */ 1523 /*ARGSUSED*/ 1524 void 1525 prt_pc4(private_t *pri, int raw, long val) 1526 { 1527 /* look at pricntlsys function */ 1528 if ((pri->sys_args[2] != PC_GETXPARMS && 1529 pri->sys_args[2] != PC_SETXPARMS)) 1530 prt_hex(pri, 0, val); 1531 else if (val) 1532 prt_stg(pri, 0, val); 1533 else 1534 prt_dec(pri, 0, val); 1535 } 1536 1537 /* 1538 * print priocntlsys() (key, value) pairs (5th argument). 1539 */ 1540 /*ARGSUSED*/ 1541 void 1542 prt_pc5(private_t *pri, int raw, long val) 1543 { 1544 pc_vaparms_t prms; 1545 pc_vaparm_t *vpp = &prms.pc_parms[0]; 1546 uint_t cnt; 1547 1548 1549 /* look at pricntlsys function */ 1550 if ((pri->sys_args[2] != PC_GETXPARMS && 1551 pri->sys_args[2] != PC_SETXPARMS) || val == 0) { 1552 prt_dec(pri, 0, 0); 1553 return; 1554 } 1555 1556 if (Pread(Proc, &prms, sizeof (prms), val) != sizeof (prms)) { 1557 prt_hex(pri, 0, val); 1558 return; 1559 } 1560 1561 if ((cnt = prms.pc_vaparmscnt) > PC_VAPARMCNT) 1562 return; 1563 1564 for (; cnt--; vpp++) { 1565 print_pck(pri, 0, vpp->pc_key); 1566 outstring(pri, ", "); 1567 prt_hex(pri, 0, (long)vpp->pc_parm); 1568 outstring(pri, ", "); 1569 } 1570 1571 prt_dec(pri, 0, PC_KY_NULL); 1572 } 1573 1574 /* 1575 * Print processor set id, including logical expansion of "special" ids. 1576 */ 1577 void 1578 prt_pst(private_t *pri, int raw, long val) 1579 { 1580 const char *s = NULL; 1581 1582 if (!raw) { 1583 switch ((psetid_t)val) { 1584 case PS_NONE: s = "PS_NONE"; break; 1585 case PS_QUERY: s = "PS_QUERY"; break; 1586 case PS_MYID: s = "PS_MYID"; break; 1587 } 1588 } 1589 1590 if (s == NULL) 1591 prt_dec(pri, 0, val); 1592 else 1593 outstring(pri, s); 1594 } 1595 1596 /* 1597 * Print meminfo() argument. 1598 */ 1599 /*ARGSUSED*/ 1600 void 1601 prt_mif(private_t *pri, int raw, long val) 1602 { 1603 struct meminfo minfo; 1604 1605 #ifdef _LP64 1606 if (data_model == PR_MODEL_ILP32) { 1607 struct meminfo32 minfo32; 1608 1609 if (Pread(Proc, &minfo32, sizeof (struct meminfo32), val) != 1610 sizeof (struct meminfo32)) { 1611 prt_dec(pri, 0, pri->sys_args[1]); /* addr_count */ 1612 outstring(pri, ", "); 1613 prt_hex(pri, 0, val); 1614 return; 1615 } 1616 /* 1617 * arrange the arguments in the order that user calls with 1618 */ 1619 prt_hex(pri, 0, minfo32.mi_inaddr); 1620 outstring(pri, ", "); 1621 prt_dec(pri, 0, pri->sys_args[1]); /* addr_count */ 1622 outstring(pri, ", "); 1623 prt_hex(pri, 0, minfo32.mi_info_req); 1624 outstring(pri, ", "); 1625 prt_dec(pri, 0, minfo32.mi_info_count); 1626 outstring(pri, ", "); 1627 prt_hex(pri, 0, minfo32.mi_outdata); 1628 outstring(pri, ", "); 1629 prt_hex(pri, 0, minfo32.mi_validity); 1630 return; 1631 } 1632 #endif 1633 if (Pread(Proc, &minfo, sizeof (struct meminfo), val) != 1634 sizeof (struct meminfo)) { 1635 prt_dec(pri, 0, pri->sys_args[1]); /* addr_count */ 1636 outstring(pri, ", "); 1637 prt_hex(pri, 0, val); 1638 return; 1639 } 1640 /* 1641 * arrange the arguments in the order that user calls with 1642 */ 1643 prt_hex(pri, 0, (long)minfo.mi_inaddr); 1644 outstring(pri, ", "); 1645 prt_dec(pri, 0, pri->sys_args[1]); /* addr_count */ 1646 outstring(pri, ", "); 1647 prt_hex(pri, 0, (long)minfo.mi_info_req); 1648 outstring(pri, ", "); 1649 prt_dec(pri, 0, minfo.mi_info_count); 1650 outstring(pri, ", "); 1651 prt_hex(pri, 0, (long)minfo.mi_outdata); 1652 outstring(pri, ", "); 1653 prt_hex(pri, 0, (long)minfo.mi_validity); 1654 } 1655 1656 1657 /* 1658 * Print so_socket() 1st argument. 1659 */ 1660 /*ARGSUSED*/ 1661 void 1662 prt_pfm(private_t *pri, int raw, long val) 1663 { 1664 /* Protocol Families have same names as Address Families */ 1665 if ((ulong_t)val < MAX_AFCODES) { 1666 outstring(pri, "PF_"); 1667 outstring(pri, afcodes[val]); 1668 } else { 1669 prt_dec(pri, 0, val); 1670 } 1671 } 1672 1673 1674 /* 1675 * Print so_socket() 2nd argument. 1676 */ 1677 /*ARGSUSED*/ 1678 void 1679 prt_skt(private_t *pri, int raw, long val) 1680 { 1681 const char *s; 1682 1683 if ((ulong_t)val <= MAX_SOCKTYPES && (s = socktype_codes[val]) != NULL) 1684 outstring(pri, s); 1685 else 1686 prt_dec(pri, 0, val); 1687 } 1688 1689 1690 /* 1691 * Print so_socket() 3rd argument. 1692 */ 1693 /*ARGSUSED*/ 1694 void 1695 prt_skp(private_t *pri, int raw, long val) 1696 { 1697 const char *s; 1698 1699 /* cheating -- look at the protocol-family */ 1700 switch (pri->sys_args[0]) { 1701 case PF_INET6: 1702 case PF_INET: 1703 case PF_NCA: if ((s = ipprotos((int)val)) != NULL) { 1704 outstring(pri, s); 1705 break; 1706 } 1707 /* FALLTHROUGH */ 1708 default: prt_dec(pri, 0, val); 1709 break; 1710 } 1711 } 1712 1713 1714 /* 1715 * Print so_socket() 5th argument. 1716 */ 1717 /*ARGSUSED*/ 1718 void 1719 prt_skv(private_t *pri, int raw, long val) 1720 { 1721 switch (val) { 1722 case SOV_STREAM: outstring(pri, "SOV_STREAM"); break; 1723 case SOV_DEFAULT: outstring(pri, "SOV_DEFAULT"); break; 1724 case SOV_SOCKSTREAM: outstring(pri, "SOV_SOCKSTREAM"); break; 1725 case SOV_SOCKBSD: outstring(pri, "SOV_SOCKBSD"); break; 1726 case SOV_XPG4_2: outstring(pri, "SOV_XPG4_2"); break; 1727 default: prt_dec(pri, 0, val); break; 1728 } 1729 } 1730 1731 1732 /* 1733 * Print setsockopt()/getsockopt() 2nd argument. 1734 */ 1735 /*ARGSUSED*/ 1736 void 1737 prt_sol(private_t *pri, int raw, long val) 1738 { 1739 if (val == SOL_SOCKET) { 1740 outstring(pri, "SOL_SOCKET"); 1741 } else { 1742 const struct protoent *p; 1743 struct protoent res; 1744 char buf[NSS_BUFLEN_PROTOCOLS]; 1745 1746 if ((p = getprotobynumber_r(val, &res, 1747 (char *)buf, sizeof (buf))) != NULL) 1748 outstring(pri, p->p_name); 1749 else 1750 prt_dec(pri, 0, val); 1751 } 1752 } 1753 1754 1755 const char * 1756 sol_optname(private_t *pri, long val) 1757 { 1758 #define CBSIZE sizeof (pri->code_buf) 1759 if (val >= SO_SNDBUF) { 1760 switch (val) { 1761 case SO_SNDBUF: return ("SO_SNDBUF"); 1762 case SO_RCVBUF: return ("SO_RCVBUF"); 1763 case SO_SNDLOWAT: return ("SO_SNDLOWAT"); 1764 case SO_RCVLOWAT: return ("SO_RCVLOWAT"); 1765 case SO_SNDTIMEO: return ("SO_SNDTIMEO"); 1766 case SO_RCVTIMEO: return ("SO_RCVTIMEO"); 1767 case SO_ERROR: return ("SO_ERROR"); 1768 case SO_TYPE: return ("SO_TYPE"); 1769 case SO_PROTOTYPE: return ("SO_PROTOTYPE"); 1770 case SO_ALLZONES: return ("SO_ALLZONES"); 1771 case SO_EXCLBIND: return ("SO_EXCLBIND"); 1772 1773 default: (void) snprintf(pri->code_buf, CBSIZE, 1774 "0x%lx", val); 1775 return (pri->code_buf); 1776 } 1777 } else { 1778 char *s = pri->code_buf; 1779 size_t used = 1; 1780 long val2; 1781 1782 *s = '\0'; 1783 val2 = val & ~(SO_DEBUG|SO_ACCEPTCONN|SO_REUSEADDR|SO_KEEPALIVE| 1784 SO_DONTROUTE|SO_BROADCAST|SO_USELOOPBACK|SO_LINGER| 1785 SO_OOBINLINE|SO_DGRAM_ERRIND|SO_RECVUCRED); 1786 if (val2) 1787 used = snprintf(s, CBSIZE, "|0x%lx", val2); 1788 if (val & SO_DEBUG) 1789 used = strlcat(s, "|SO_DEBUG", CBSIZE); 1790 if (val & SO_ACCEPTCONN) 1791 used = strlcat(s, "|SO_ACCEPTCONN", CBSIZE); 1792 if (val & SO_REUSEADDR) 1793 used = strlcat(s, "|SO_REUSEADDR", CBSIZE); 1794 if (val & SO_KEEPALIVE) 1795 used = strlcat(s, "|SO_KEEPALIVE", CBSIZE); 1796 if (val & SO_DONTROUTE) 1797 used = strlcat(s, "|SO_DONTROUTE", CBSIZE); 1798 if (val & SO_BROADCAST) 1799 used = strlcat(s, "|SO_BROADCAST", CBSIZE); 1800 if (val & SO_USELOOPBACK) 1801 used = strlcat(s, "|SO_USELOOPBACK", CBSIZE); 1802 if (val & SO_LINGER) 1803 used = strlcat(s, "|SO_LINGER", CBSIZE); 1804 if (val & SO_OOBINLINE) 1805 used = strlcat(s, "|SO_OOBINLINE", CBSIZE); 1806 if (val & SO_DGRAM_ERRIND) 1807 used = strlcat(s, "|SO_DGRAM_ERRIND", CBSIZE); 1808 if (val & SO_RECVUCRED) 1809 used = strlcat(s, "|SO_RECVUCRED", CBSIZE); 1810 if (used >= CBSIZE || val == 0) 1811 (void) snprintf(s + 1, CBSIZE-1, "0x%lx", val); 1812 return ((const char *)(s + 1)); 1813 } 1814 #undef CBSIZE 1815 } 1816 1817 1818 const char * 1819 tcp_optname(private_t *pri, long val) 1820 { 1821 switch (val) { 1822 case TCP_NODELAY: return ("TCP_NODELAY"); 1823 case TCP_MAXSEG: return ("TCP_MAXSEG"); 1824 case TCP_KEEPALIVE: return ("TCP_KEEPALIVE"); 1825 case TCP_NOTIFY_THRESHOLD: return ("TCP_NOTIFY_THRESHOLD"); 1826 case TCP_ABORT_THRESHOLD: return ("TCP_ABORT_THRESHOLD"); 1827 case TCP_CONN_NOTIFY_THRESHOLD: return ("TCP_CONN_NOTIFY_THRESHOLD"); 1828 case TCP_CONN_ABORT_THRESHOLD: return ("TCP_CONN_ABORT_THRESHOLD"); 1829 case TCP_RECVDSTADDR: return ("TCP_RECVDSTADDR"); 1830 case TCP_ANONPRIVBIND: return ("TCP_ANONPRIVBIND"); 1831 case TCP_EXCLBIND: return ("TCP_EXCLBIND"); 1832 case TCP_INIT_CWND: return ("TCP_INIT_CWND"); 1833 case TCP_KEEPALIVE_THRESHOLD: return ("TCP_KEEPALIVE_THRESHOLD"); 1834 case TCP_KEEPALIVE_ABORT_THRESHOLD: 1835 return ("TCP_KEEPALIVE_ABORT_THRESHOLD"); 1836 case TCP_CORK: return ("TCP_CORK"); 1837 1838 default: (void) snprintf(pri->code_buf, 1839 sizeof (pri->code_buf), 1840 "0x%lx", val); 1841 return (pri->code_buf); 1842 } 1843 } 1844 1845 1846 const char * 1847 sctp_optname(private_t *pri, long val) 1848 { 1849 switch (val) { 1850 case SCTP_RTOINFO: return ("SCTP_RTOINFO"); 1851 case SCTP_ASSOCINFO: return ("SCTP_ASSOCINFO"); 1852 case SCTP_INITMSG: return ("SCTP_INITMSG"); 1853 case SCTP_NODELAY: return ("SCTP_NODELAY"); 1854 case SCTP_AUTOCLOSE: return ("SCTP_AUTOCLOSE"); 1855 case SCTP_SET_PEER_PRIMARY_ADDR: 1856 return ("SCTP_SET_PEER_PRIMARY_ADDR"); 1857 case SCTP_PRIMARY_ADDR: return ("SCTP_PRIMARY_ADDR"); 1858 case SCTP_ADAPTION_LAYER: return ("SCTP_ADAPTION_LAYER"); 1859 case SCTP_DISABLE_FRAGMENTS: return ("SCTP_DISABLE_FRAGMENTS"); 1860 case SCTP_PEER_ADDR_PARAMS: return ("SCTP_PEER_ADDR_PARAMS"); 1861 case SCTP_DEFAULT_SEND_PARAM: return ("SCTP_DEFAULT_SEND_PARAM"); 1862 case SCTP_EVENTS: return ("SCTP_EVENTS"); 1863 case SCTP_I_WANT_MAPPED_V4_ADDR: 1864 return ("SCTP_I_WANT_MAPPED_V4_ADDR"); 1865 case SCTP_MAXSEG: return ("SCTP_MAXSEG"); 1866 case SCTP_STATUS: return ("SCTP_STATUS"); 1867 case SCTP_GET_PEER_ADDR_INFO: return ("SCTP_GET_PEER_ADDR_INFO"); 1868 1869 case SCTP_ADD_ADDR: return ("SCTP_ADD_ADDR"); 1870 case SCTP_REM_ADDR: return ("SCTP_REM_ADDR"); 1871 1872 default: (void) snprintf(pri->code_buf, 1873 sizeof (pri->code_buf), 1874 "0x%lx", val); 1875 return (pri->code_buf); 1876 } 1877 } 1878 1879 1880 const char * 1881 udp_optname(private_t *pri, long val) 1882 { 1883 switch (val) { 1884 case UDP_CHECKSUM: return ("UDP_CHECKSUM"); 1885 case UDP_ANONPRIVBIND: return ("UDP_ANONPRIVBIND"); 1886 case UDP_EXCLBIND: return ("UDP_EXCLBIND"); 1887 case UDP_RCVHDR: return ("UDP_RCVHDR"); 1888 1889 default: (void) snprintf(pri->code_buf, 1890 sizeof (pri->code_buf), "0x%lx", 1891 val); 1892 return (pri->code_buf); 1893 } 1894 } 1895 1896 1897 /* 1898 * Print setsockopt()/getsockopt() 3rd argument. 1899 */ 1900 /*ARGSUSED*/ 1901 void 1902 prt_son(private_t *pri, int raw, long val) 1903 { 1904 /* cheating -- look at the level */ 1905 switch (pri->sys_args[1]) { 1906 case SOL_SOCKET: outstring(pri, sol_optname(pri, val)); 1907 break; 1908 case IPPROTO_TCP: outstring(pri, tcp_optname(pri, val)); 1909 break; 1910 case IPPROTO_UDP: outstring(pri, udp_optname(pri, val)); 1911 break; 1912 case IPPROTO_SCTP: outstring(pri, sctp_optname(pri, val)); 1913 break; 1914 default: prt_dec(pri, 0, val); 1915 break; 1916 } 1917 } 1918 1919 1920 /* 1921 * Print utrap type 1922 */ 1923 /*ARGSUSED*/ 1924 void 1925 prt_utt(private_t *pri, int raw, long val) 1926 { 1927 const char *s = NULL; 1928 1929 #ifdef __sparc 1930 if (!raw) { 1931 switch (val) { 1932 case UT_INSTRUCTION_DISABLED: 1933 s = "UT_INSTRUCTION_DISABLED"; break; 1934 case UT_INSTRUCTION_ERROR: 1935 s = "UT_INSTRUCTION_ERROR"; break; 1936 case UT_INSTRUCTION_PROTECTION: 1937 s = "UT_INSTRUCTION_PROTECTION"; break; 1938 case UT_ILLTRAP_INSTRUCTION: 1939 s = "UT_ILLTRAP_INSTRUCTION"; break; 1940 case UT_ILLEGAL_INSTRUCTION: 1941 s = "UT_ILLEGAL_INSTRUCTION"; break; 1942 case UT_PRIVILEGED_OPCODE: 1943 s = "UT_PRIVILEGED_OPCODE"; break; 1944 case UT_FP_DISABLED: 1945 s = "UT_FP_DISABLED"; break; 1946 case UT_FP_EXCEPTION_IEEE_754: 1947 s = "UT_FP_EXCEPTION_IEEE_754"; break; 1948 case UT_FP_EXCEPTION_OTHER: 1949 s = "UT_FP_EXCEPTION_OTHER"; break; 1950 case UT_TAG_OVERFLOW: 1951 s = "UT_TAG_OVERFLOW"; break; 1952 case UT_DIVISION_BY_ZERO: 1953 s = "UT_DIVISION_BY_ZERO"; break; 1954 case UT_DATA_EXCEPTION: 1955 s = "UT_DATA_EXCEPTION"; break; 1956 case UT_DATA_ERROR: 1957 s = "UT_DATA_ERROR"; break; 1958 case UT_DATA_PROTECTION: 1959 s = "UT_DATA_PROTECTION"; break; 1960 case UT_MEM_ADDRESS_NOT_ALIGNED: 1961 s = "UT_MEM_ADDRESS_NOT_ALIGNED"; break; 1962 case UT_PRIVILEGED_ACTION: 1963 s = "UT_PRIVILEGED_ACTION"; break; 1964 case UT_ASYNC_DATA_ERROR: 1965 s = "UT_ASYNC_DATA_ERROR"; break; 1966 case UT_TRAP_INSTRUCTION_16: 1967 s = "UT_TRAP_INSTRUCTION_16"; break; 1968 case UT_TRAP_INSTRUCTION_17: 1969 s = "UT_TRAP_INSTRUCTION_17"; break; 1970 case UT_TRAP_INSTRUCTION_18: 1971 s = "UT_TRAP_INSTRUCTION_18"; break; 1972 case UT_TRAP_INSTRUCTION_19: 1973 s = "UT_TRAP_INSTRUCTION_19"; break; 1974 case UT_TRAP_INSTRUCTION_20: 1975 s = "UT_TRAP_INSTRUCTION_20"; break; 1976 case UT_TRAP_INSTRUCTION_21: 1977 s = "UT_TRAP_INSTRUCTION_21"; break; 1978 case UT_TRAP_INSTRUCTION_22: 1979 s = "UT_TRAP_INSTRUCTION_22"; break; 1980 case UT_TRAP_INSTRUCTION_23: 1981 s = "UT_TRAP_INSTRUCTION_23"; break; 1982 case UT_TRAP_INSTRUCTION_24: 1983 s = "UT_TRAP_INSTRUCTION_24"; break; 1984 case UT_TRAP_INSTRUCTION_25: 1985 s = "UT_TRAP_INSTRUCTION_25"; break; 1986 case UT_TRAP_INSTRUCTION_26: 1987 s = "UT_TRAP_INSTRUCTION_26"; break; 1988 case UT_TRAP_INSTRUCTION_27: 1989 s = "UT_TRAP_INSTRUCTION_27"; break; 1990 case UT_TRAP_INSTRUCTION_28: 1991 s = "UT_TRAP_INSTRUCTION_28"; break; 1992 case UT_TRAP_INSTRUCTION_29: 1993 s = "UT_TRAP_INSTRUCTION_29"; break; 1994 case UT_TRAP_INSTRUCTION_30: 1995 s = "UT_TRAP_INSTRUCTION_30"; break; 1996 case UT_TRAP_INSTRUCTION_31: 1997 s = "UT_TRAP_INSTRUCTION_31"; break; 1998 } 1999 } 2000 #endif /* __sparc */ 2001 2002 if (s == NULL) 2003 prt_dec(pri, 0, val); 2004 else 2005 outstring(pri, s); 2006 } 2007 2008 2009 /* 2010 * Print utrap handler 2011 */ 2012 void 2013 prt_uth(private_t *pri, int raw, long val) 2014 { 2015 const char *s = NULL; 2016 2017 if (!raw) { 2018 switch (val) { 2019 case (long)UTH_NOCHANGE: s = "UTH_NOCHANGE"; break; 2020 } 2021 } 2022 2023 if (s == NULL) 2024 prt_hex(pri, 0, val); 2025 else 2026 outstring(pri, s); 2027 } 2028 2029 const char * 2030 access_flags(private_t *pri, long arg) 2031 { 2032 #define E_OK 010 2033 char *str = pri->code_buf; 2034 2035 if (arg & ~(R_OK|W_OK|X_OK|E_OK)) 2036 return (NULL); 2037 2038 /* NB: F_OK == 0 */ 2039 if (arg == F_OK) 2040 return ("F_OK"); 2041 if (arg == E_OK) 2042 return ("F_OK|E_OK"); 2043 2044 *str = '\0'; 2045 if (arg & R_OK) 2046 (void) strlcat(str, "|R_OK", sizeof (pri->code_buf)); 2047 if (arg & W_OK) 2048 (void) strlcat(str, "|W_OK", sizeof (pri->code_buf)); 2049 if (arg & X_OK) 2050 (void) strlcat(str, "|X_OK", sizeof (pri->code_buf)); 2051 if (arg & E_OK) 2052 (void) strlcat(str, "|E_OK", sizeof (pri->code_buf)); 2053 return ((const char *)(str + 1)); 2054 #undef E_OK 2055 } 2056 2057 /* 2058 * Print access() flags. 2059 */ 2060 void 2061 prt_acc(private_t *pri, int raw, long val) 2062 { 2063 const char *s = raw? NULL : access_flags(pri, val); 2064 2065 if (s == NULL) 2066 prt_dex(pri, 0, val); 2067 else 2068 outstring(pri, s); 2069 } 2070 2071 /* 2072 * Print shutdown() "how" (2nd) argument 2073 */ 2074 void 2075 prt_sht(private_t *pri, int raw, long val) 2076 { 2077 if (raw) { 2078 prt_dex(pri, 0, val); 2079 return; 2080 } 2081 switch (val) { 2082 case SHUT_RD: outstring(pri, "SHUT_RD"); break; 2083 case SHUT_WR: outstring(pri, "SHUT_WR"); break; 2084 case SHUT_RDWR: outstring(pri, "SHUT_RDWR"); break; 2085 default: prt_dec(pri, 0, val); break; 2086 } 2087 } 2088 2089 /* 2090 * Print fcntl() F_SETFL flags (3rd) argument or fdsync flag (2nd arg) 2091 */ 2092 static struct fcntl_flags { 2093 long val; 2094 const char *name; 2095 } fcntl_flags[] = { 2096 #define FC_FL(flag) { (long)flag, "|" # flag } 2097 #ifdef C2_AUDIT 2098 FC_FL(FREVOKED), 2099 #endif 2100 FC_FL(FREAD), 2101 FC_FL(FWRITE), 2102 FC_FL(FNDELAY), 2103 FC_FL(FAPPEND), 2104 FC_FL(FSYNC), 2105 FC_FL(FDSYNC), 2106 FC_FL(FRSYNC), 2107 FC_FL(FOFFMAX), 2108 FC_FL(FNONBLOCK), 2109 FC_FL(FCREAT), 2110 FC_FL(FTRUNC), 2111 FC_FL(FEXCL), 2112 FC_FL(FNOCTTY), 2113 FC_FL(FXATTR), 2114 FC_FL(FASYNC), 2115 FC_FL(FNODSYNC) 2116 #undef FC_FL 2117 }; 2118 2119 void 2120 prt_ffg(private_t *pri, int raw, long val) 2121 { 2122 #define CBSIZE sizeof (pri->code_buf) 2123 char *s = pri->code_buf; 2124 size_t used = 1; 2125 struct fcntl_flags *fp; 2126 2127 if (raw) { 2128 (void) snprintf(s, CBSIZE, "0x%lx", val); 2129 outstring(pri, s); 2130 return; 2131 } 2132 if (val == 0) { 2133 outstring(pri, "(no flags)"); 2134 return; 2135 } 2136 2137 *s = '\0'; 2138 for (fp = fcntl_flags; 2139 fp < &fcntl_flags[sizeof (fcntl_flags) / sizeof (*fp)]; fp++) { 2140 if (val & fp->val) { 2141 used = strlcat(s, fp->name, CBSIZE); 2142 val &= ~fp->val; 2143 } 2144 } 2145 2146 if (val != 0 && used <= CBSIZE) 2147 used += snprintf(s + used, CBSIZE - used, "|0x%lx", val); 2148 2149 if (used >= CBSIZE) 2150 (void) snprintf(s + 1, CBSIZE-1, "0x%lx", val); 2151 outstring(pri, s + 1); 2152 #undef CBSIZE 2153 } 2154 2155 void 2156 prt_prs(private_t *pri, int raw, long val) 2157 { 2158 static size_t setsize; 2159 priv_set_t *set = priv_allocset(); 2160 2161 if (setsize == 0) { 2162 const priv_impl_info_t *info = getprivimplinfo(); 2163 if (info != NULL) 2164 setsize = info->priv_setsize * sizeof (priv_chunk_t); 2165 } 2166 2167 if (setsize != 0 && !raw && set != NULL && 2168 Pread(Proc, set, setsize, val) == setsize) { 2169 int i; 2170 2171 outstring(pri, "{"); 2172 for (i = 0; i < setsize / sizeof (priv_chunk_t); i++) { 2173 char buf[9]; /* 8 hex digits + '\0' */ 2174 (void) snprintf(buf, sizeof (buf), "%08x", 2175 ((priv_chunk_t *)set)[i]); 2176 outstring(pri, buf); 2177 } 2178 2179 outstring(pri, "}"); 2180 } else { 2181 prt_hex(pri, 0, val); 2182 } 2183 2184 if (set != NULL) 2185 priv_freeset(set); 2186 } 2187 2188 /* 2189 * Print privilege set operation. 2190 */ 2191 void 2192 prt_pro(private_t *pri, int raw, long val) 2193 { 2194 const char *s = NULL; 2195 2196 if (!raw) { 2197 switch ((priv_op_t)val) { 2198 case PRIV_ON: s = "PRIV_ON"; break; 2199 case PRIV_OFF: s = "PRIV_OFF"; break; 2200 case PRIV_SET: s = "PRIV_SET"; break; 2201 } 2202 } 2203 2204 if (s == NULL) 2205 prt_dec(pri, 0, val); 2206 else 2207 outstring(pri, s); 2208 } 2209 2210 /* 2211 * Print privilege set name 2212 */ 2213 void 2214 prt_prn(private_t *pri, int raw, long val) 2215 { 2216 const char *s = NULL; 2217 2218 if (!raw) 2219 s = priv_getsetbynum((int)val); 2220 2221 if (s == NULL) 2222 prt_dec(pri, 0, val); 2223 else { 2224 char *dup = strdup(s); 2225 char *q; 2226 2227 /* Do the best we can in this case */ 2228 if (dup == NULL) { 2229 outstring(pri, s); 2230 return; 2231 } 2232 2233 outstring(pri, "PRIV_"); 2234 2235 q = dup; 2236 2237 while (*q != '\0') { 2238 *q = toupper(*q); 2239 q++; 2240 } 2241 outstring(pri, dup); 2242 free(dup); 2243 } 2244 } 2245 2246 /* 2247 * Print process flag names. 2248 */ 2249 void 2250 prt_pfl(private_t *pri, int raw, long val) 2251 { 2252 const char *s = NULL; 2253 2254 if (!raw) { 2255 switch ((int)val) { 2256 case PRIV_DEBUG: s = "PRIV_DEBUG"; break; 2257 case PRIV_AWARE: s = "PRIV_AWARE"; break; 2258 } 2259 } 2260 2261 if (s == NULL) 2262 prt_dec(pri, 0, val); 2263 else 2264 outstring(pri, s); 2265 } 2266 2267 /* 2268 * Print lgrp_affinity_{get,set}() arguments. 2269 */ 2270 /*ARGSUSED*/ 2271 void 2272 prt_laf(private_t *pri, int raw, long val) 2273 { 2274 lgrp_affinity_args_t laff; 2275 2276 if (Pread(Proc, &laff, sizeof (lgrp_affinity_args_t), val) != 2277 sizeof (lgrp_affinity_args_t)) { 2278 prt_hex(pri, 0, val); 2279 return; 2280 } 2281 /* 2282 * arrange the arguments in the order that user calls with 2283 */ 2284 prt_dec(pri, 0, laff.idtype); 2285 outstring(pri, ", "); 2286 prt_dec(pri, 0, laff.id); 2287 outstring(pri, ", "); 2288 prt_dec(pri, 0, laff.lgrp); 2289 outstring(pri, ", "); 2290 if (pri->sys_args[0] == LGRP_SYS_AFFINITY_SET) 2291 prt_dec(pri, 0, laff.aff); 2292 } 2293 2294 /* 2295 * Print a key_t as IPC_PRIVATE if it is 0. 2296 */ 2297 void 2298 prt_key(private_t *pri, int raw, long val) 2299 { 2300 if (!raw && val == 0) 2301 outstring(pri, "IPC_PRIVATE"); 2302 else 2303 prt_dec(pri, 0, val); 2304 } 2305 2306 2307 /* 2308 * Print zone_getattr() attribute types. 2309 */ 2310 void 2311 prt_zga(private_t *pri, int raw, long val) 2312 { 2313 const char *s = NULL; 2314 2315 if (!raw) { 2316 switch ((int)val) { 2317 case ZONE_ATTR_NAME: s = "ZONE_ATTR_NAME"; break; 2318 case ZONE_ATTR_ROOT: s = "ZONE_ATTR_ROOT"; break; 2319 case ZONE_ATTR_STATUS: s = "ZONE_ATTR_STATUS"; break; 2320 case ZONE_ATTR_PRIVSET: s = "ZONE_ATTR_PRIVSET"; break; 2321 case ZONE_ATTR_UNIQID: s = "ZONE_ATTR_UNIQID"; break; 2322 case ZONE_ATTR_POOLID: s = "ZONE_ATTR_POOLID"; break; 2323 case ZONE_ATTR_INITPID: s = "ZONE_ATTR_INITPID"; break; 2324 case ZONE_ATTR_SLBL: s = "ZONE_ATTR_SLBL"; break; 2325 case ZONE_ATTR_INITNAME: s = "ZONE_ATTR_INITNAME"; break; 2326 case ZONE_ATTR_BOOTARGS: s = "ZONE_ATTR_BOOTARGS"; break; 2327 } 2328 } 2329 2330 if (s == NULL) 2331 prt_dec(pri, 0, val); 2332 else 2333 outstring(pri, s); 2334 } 2335 2336 /* 2337 * Print a file descriptor as AT_FDCWD if necessary 2338 */ 2339 void 2340 prt_atc(private_t *pri, int raw, long val) 2341 { 2342 if (!raw && val == AT_FDCWD) 2343 outstring(pri, "AT_FDCWD"); 2344 else 2345 prt_dec(pri, 0, val); 2346 } 2347 2348 /* 2349 * Print Trusted Networking database operation codes (labelsys; tn*) 2350 */ 2351 static void 2352 prt_tnd(private_t *pri, int raw, long val) 2353 { 2354 const char *s = NULL; 2355 2356 if (!raw) { 2357 switch ((tsol_dbops_t)val) { 2358 case TNDB_NOOP: s = "TNDB_NOOP"; break; 2359 case TNDB_LOAD: s = "TNDB_LOAD"; break; 2360 case TNDB_DELETE: s = "TNDB_DELETE"; break; 2361 case TNDB_FLUSH: s = "TNDB_FLUSH"; break; 2362 case TNDB_GET: s = "TNDB_GET"; break; 2363 } 2364 } 2365 2366 if (s == NULL) 2367 prt_dec(pri, 0, val); 2368 else 2369 outstring(pri, s); 2370 } 2371 2372 /* 2373 * Print LIO_XX flags 2374 */ 2375 void 2376 prt_lio(private_t *pri, int raw, long val) 2377 { 2378 if (raw) 2379 prt_dec(pri, 0, val); 2380 else if (val == LIO_WAIT) 2381 outstring(pri, "LIO_WAIT"); 2382 else if (val == LIO_NOWAIT) 2383 outstring(pri, "LIO_NOWAIT"); 2384 else 2385 prt_dec(pri, 0, val); 2386 } 2387 2388 const char * 2389 door_flags(private_t *pri, long val) 2390 { 2391 door_attr_t attr = (door_attr_t)val; 2392 char *str = pri->code_buf; 2393 2394 *str = '\0'; 2395 #define PROCESS_FLAG(flg) \ 2396 if (attr & flg) { \ 2397 (void) strlcat(str, "|" #flg, sizeof (pri->code_buf)); \ 2398 attr &= ~flg; \ 2399 } 2400 2401 PROCESS_FLAG(DOOR_UNREF); 2402 PROCESS_FLAG(DOOR_UNREF_MULTI); 2403 PROCESS_FLAG(DOOR_PRIVATE); 2404 PROCESS_FLAG(DOOR_REFUSE_DESC); 2405 PROCESS_FLAG(DOOR_NO_CANCEL); 2406 PROCESS_FLAG(DOOR_LOCAL); 2407 PROCESS_FLAG(DOOR_REVOKED); 2408 PROCESS_FLAG(DOOR_IS_UNREF); 2409 #undef PROCESS_FLAG 2410 2411 if (attr != 0 || *str == '\0') { 2412 size_t len = strlen(str); 2413 (void) snprintf(str + len, sizeof (pri->code_buf) - len, 2414 "|0x%X", attr); 2415 } 2416 2417 return (str + 1); 2418 } 2419 2420 /* 2421 * Print door_create() flags 2422 */ 2423 void 2424 prt_dfl(private_t *pri, int raw, long val) 2425 { 2426 if (raw) 2427 prt_hex(pri, 0, val); 2428 else 2429 outstring(pri, door_flags(pri, val)); 2430 } 2431 2432 /* 2433 * Print door_*param() param argument 2434 */ 2435 void 2436 prt_dpm(private_t *pri, int raw, long val) 2437 { 2438 if (raw) 2439 prt_hex(pri, 0, val); 2440 else if (val == DOOR_PARAM_DESC_MAX) 2441 outstring(pri, "DOOR_PARAM_DESC_MAX"); 2442 else if (val == DOOR_PARAM_DATA_MIN) 2443 outstring(pri, "DOOR_PARAM_DATA_MIN"); 2444 else if (val == DOOR_PARAM_DATA_MAX) 2445 outstring(pri, "DOOR_PARAM_DATA_MAX"); 2446 else 2447 prt_hex(pri, 0, val); 2448 } 2449 2450 /* 2451 * Print rctlsys subcodes 2452 */ 2453 void 2454 prt_rsc(private_t *pri, int raw, long val) /* print utssys code */ 2455 { 2456 const char *s = raw? NULL : rctlsyscode(val); 2457 2458 if (s == NULL) 2459 prt_dec(pri, 0, val); 2460 else 2461 outstring(pri, s); 2462 } 2463 2464 /* 2465 * Print getrctl flags 2466 */ 2467 void 2468 prt_rgf(private_t *pri, int raw, long val) 2469 { 2470 long action = val & (~RCTLSYS_ACTION_MASK); 2471 2472 if (raw) 2473 prt_hex(pri, 0, val); 2474 else if (action == RCTL_FIRST) 2475 outstring(pri, "RCTL_FIRST"); 2476 else if (action == RCTL_NEXT) 2477 outstring(pri, "RCTL_NEXT"); 2478 else if (action == RCTL_USAGE) 2479 outstring(pri, "RCTL_USAGE"); 2480 else 2481 prt_hex(pri, 0, val); 2482 } 2483 2484 /* 2485 * Print setrctl flags 2486 */ 2487 void 2488 prt_rsf(private_t *pri, int raw, long val) 2489 { 2490 long action = val & (~RCTLSYS_ACTION_MASK); 2491 long pval = val & RCTL_LOCAL_ACTION_MASK; 2492 char *s = pri->code_buf; 2493 2494 if (raw) { 2495 prt_hex(pri, 0, val); 2496 return; 2497 } else if (action == RCTL_INSERT) 2498 (void) strcpy(s, "RCTL_INSERT"); 2499 else if (action == RCTL_DELETE) 2500 (void) strcpy(s, "RCTL_DELETE"); 2501 else if (action == RCTL_REPLACE) 2502 (void) strcpy(s, "RCTL_REPLACE"); 2503 else { 2504 prt_hex(pri, 0, val); 2505 return; 2506 } 2507 2508 if (pval & RCTL_USE_RECIPIENT_PID) { 2509 pval ^= RCTL_USE_RECIPIENT_PID; 2510 (void) strlcat(s, "|RCTL_USE_RECIPIENT_PID", 2511 sizeof (pri->code_buf)); 2512 } 2513 2514 if ((pval & RCTLSYS_ACTION_MASK) != 0) 2515 prt_hex(pri, 0, val); 2516 else if (*s != '\0') 2517 outstring(pri, s); 2518 else 2519 prt_hex(pri, 0, val); 2520 } 2521 2522 /* 2523 * Print rctlctl flags 2524 */ 2525 void 2526 prt_rcf(private_t *pri, int raw, long val) 2527 { 2528 long action = val & (~RCTLSYS_ACTION_MASK); 2529 2530 if (raw) 2531 prt_hex(pri, 0, val); 2532 else if (action == RCTLCTL_GET) 2533 outstring(pri, "RCTLCTL_GET"); 2534 else if (action == RCTLCTL_SET) 2535 outstring(pri, "RCTLCTL_SET"); 2536 else 2537 prt_hex(pri, 0, val); 2538 } 2539 2540 2541 /* 2542 * Array of pointers to print functions, one for each format. 2543 */ 2544 void (* const Print[])() = { 2545 prt_nov, /* NOV -- no value */ 2546 prt_dec, /* DEC -- print value in decimal */ 2547 prt_oct, /* OCT -- print value in octal */ 2548 prt_hex, /* HEX -- print value in hexadecimal */ 2549 prt_dex, /* DEX -- print value in hexadecimal if big enough */ 2550 prt_stg, /* STG -- print value as string */ 2551 prt_ioc, /* IOC -- print ioctl code */ 2552 prt_fcn, /* FCN -- print fcntl code */ 2553 prt_s86, /* S86 -- print sysi86 code */ 2554 prt_uts, /* UTS -- print utssys code */ 2555 prt_opn, /* OPN -- print open code */ 2556 prt_sig, /* SIG -- print signal name plus flags */ 2557 prt_act, /* ACT -- print signal action value */ 2558 prt_msc, /* MSC -- print msgsys command */ 2559 prt_msf, /* MSF -- print msgsys flags */ 2560 prt_smc, /* SMC -- print semsys command */ 2561 prt_sef, /* SEF -- print semsys flags */ 2562 prt_shc, /* SHC -- print shmsys command */ 2563 prt_shf, /* SHF -- print shmsys flags */ 2564 prt_plk, /* PLK -- print plock code */ 2565 prt_sfs, /* SFS -- print sysfs code */ 2566 prt_rst, /* RST -- print string returned by syscall */ 2567 prt_smf, /* SMF -- print streams message flags */ 2568 prt_ioa, /* IOA -- print ioctl argument */ 2569 prt_six, /* SIX -- print signal, masked with SIGNO_MASK */ 2570 prt_mtf, /* MTF -- print mount flags */ 2571 prt_mft, /* MFT -- print mount file system type */ 2572 prt_iob, /* IOB -- print contents of I/O buffer */ 2573 prt_hhx, /* HHX -- print value in hexadecimal (half size) */ 2574 prt_wop, /* WOP -- print waitsys() options */ 2575 prt_spm, /* SPM -- print sigprocmask argument */ 2576 prt_rlk, /* RLK -- print readlink buffer */ 2577 prt_mpr, /* MPR -- print mmap()/mprotect() flags */ 2578 prt_mty, /* MTY -- print mmap() mapping type flags */ 2579 prt_mcf, /* MCF -- print memcntl() function */ 2580 prt_mc4, /* MC4 -- print memcntl() (fourth) argument */ 2581 prt_mc5, /* MC5 -- print memcntl() (fifth) argument */ 2582 prt_mad, /* MAD -- print madvise() argument */ 2583 prt_ulm, /* ULM -- print ulimit() argument */ 2584 prt_rlm, /* RLM -- print get/setrlimit() argument */ 2585 prt_cnf, /* CNF -- print sysconfig() argument */ 2586 prt_inf, /* INF -- print sysinfo() argument */ 2587 prt_ptc, /* PTC -- print pathconf/fpathconf() argument */ 2588 prt_fui, /* FUI -- print fusers() input argument */ 2589 prt_idt, /* IDT -- print idtype_t, waitid() argument */ 2590 prt_lwf, /* LWF -- print lwp_create() flags */ 2591 prt_itm, /* ITM -- print [get|set]itimer() arg */ 2592 prt_llo, /* LLO -- print long long offset arg */ 2593 prt_mod, /* MOD -- print modctl() subcode */ 2594 prt_whn, /* WHN -- print lseek() whence arguiment */ 2595 prt_acl, /* ACL -- print acl() code */ 2596 prt_aio, /* AIO -- print kaio() code */ 2597 prt_aud, /* AUD -- print auditsys() code */ 2598 prt_uns, /* DEC -- print value in unsigned decimal */ 2599 prt_clc, /* CLC -- print cladm command argument */ 2600 prt_clf, /* CLF -- print cladm flag argument */ 2601 prt_cor, /* COR -- print corectl() subcode */ 2602 prt_cco, /* CCO -- print corectl() options */ 2603 prt_ccc, /* CCC -- print corectl() content */ 2604 prt_rcc, /* RCC -- print corectl() returned content */ 2605 prt_cpc, /* CPC -- print cpc() subcode */ 2606 prt_sqc, /* SQC -- print sigqueue() si_code argument */ 2607 prt_pc4, /* PC4 -- print priocntlsys() (fourth) argument */ 2608 prt_pc5, /* PC5 -- print priocntlsys() (key, value) pairs */ 2609 prt_pst, /* PST -- print processor set id */ 2610 prt_mif, /* MIF -- print meminfo() arguments */ 2611 prt_pfm, /* PFM -- print so_socket() proto-family (1st) arg */ 2612 prt_skt, /* SKT -- print so_socket() socket-type (2nd) arg */ 2613 prt_skp, /* SKP -- print so_socket() protocol (3rd) arg */ 2614 prt_skv, /* SKV -- print socket version arg */ 2615 prt_sol, /* SOL -- print [sg]etsockopt() level (2nd) arg */ 2616 prt_son, /* SON -- print [sg]etsockopt() opt-name (3rd) arg */ 2617 prt_utt, /* UTT -- print utrap type */ 2618 prt_uth, /* UTH -- print utrap handler */ 2619 prt_acc, /* ACC -- print access() flags */ 2620 prt_sht, /* SHT -- print shutdown() how (2nd) argument */ 2621 prt_ffg, /* FFG -- print fcntl() flags (3rd) argument */ 2622 prt_prs, /* PRS -- print privilege set */ 2623 prt_pro, /* PRO -- print privilege set operation */ 2624 prt_prn, /* PRN -- print privilege set name */ 2625 prt_pfl, /* PFL -- print privilege/process flag name */ 2626 prt_laf, /* LAF -- print lgrp_affinity arguments */ 2627 prt_key, /* KEY -- print key_t 0 as IPC_PRIVATE */ 2628 prt_zga, /* ZGA -- print zone_getattr attribute types */ 2629 prt_atc, /* ATC -- print AT_FDCWD or file descriptor */ 2630 prt_lio, /* LIO -- print LIO_XX flags */ 2631 prt_dfl, /* DFL -- print door_create() flags */ 2632 prt_dpm, /* DPM -- print DOOR_PARAM_XX flags */ 2633 prt_tnd, /* TND -- print trusted network data base opcode */ 2634 prt_rsc, /* RSC -- print rctlsys() subcodes */ 2635 prt_rgf, /* RGF -- print getrctl() flags */ 2636 prt_rsf, /* RSF -- print setrctl() flags */ 2637 prt_rcf, /* RCF -- print rctlsys_ctl() flags */ 2638 prt_dec, /* HID -- hidden argument, make this the last one */ 2639 }; 2640