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, Version 1.0 only 6 * (the "License"). You may not use this file except in compliance 7 * with the License. 8 * 9 * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 10 * or http://www.opensolaris.org/os/licensing. 11 * See the License for the specific language governing permissions 12 * and limitations under the License. 13 * 14 * When distributing Covered Code, include this CDDL HEADER in each 15 * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 16 * If applicable, add the following below this CDDL HEADER, with the 17 * fields enclosed by brackets "[]" replaced with your own identifying 18 * information: Portions Copyright [yyyy] [name of copyright owner] 19 * 20 * CDDL HEADER END 21 */ 22 /* 23 * Copyright 2005 Sun Microsystems, Inc. All rights reserved. 24 * Use is subject to license terms. 25 */ 26 27 #pragma ident "%Z%%M% %I% %E% SMI" 28 29 #include <sys/types.h> 30 #include <sys/inttypes.h> 31 #include <sys/param.h> 32 #include <sys/systm.h> 33 #include <sys/user.h> 34 #include <sys/disp.h> 35 #include <sys/conf.h> 36 #include <sys/bootconf.h> 37 #include <sys/sysconf.h> 38 #include <sys/sunddi.h> 39 #include <sys/esunddi.h> 40 #include <sys/ddi_impldefs.h> 41 #include <sys/kmem.h> 42 #include <sys/vmem.h> 43 #include <sys/fs/ufs_fsdir.h> 44 #include <sys/hwconf.h> 45 #include <sys/modctl.h> 46 #include <sys/cmn_err.h> 47 #include <sys/kobj.h> 48 #include <sys/kobj_lex.h> 49 #include <sys/errno.h> 50 #include <sys/debug.h> 51 #include <sys/autoconf.h> 52 #include <sys/callb.h> 53 #include <sys/sysmacros.h> 54 #include <sys/dacf.h> 55 #include <vm/seg_kmem.h> 56 57 struct hwc_class *hcl_head; /* head of list of classes */ 58 static kmutex_t hcl_lock; /* for accessing list of classes */ 59 60 #define DAFILE "/etc/driver_aliases" 61 #define CLASSFILE "/etc/driver_classes" 62 #define DACFFILE "/etc/dacf.conf" 63 64 static char class_file[] = CLASSFILE; 65 static char dafile[] = DAFILE; 66 static char dacffile[] = DACFFILE; 67 68 char *systemfile = "etc/system"; /* name of ascii system file */ 69 70 static struct sysparam *sysparam_hd; /* head of parameters list */ 71 static struct sysparam *sysparam_tl; /* tail of parameters list */ 72 static vmem_t *mod_sysfile_arena; /* parser memory */ 73 74 char obp_bootpath[BO_MAXOBJNAME]; /* bootpath from obp */ 75 char svm_bootpath[BO_MAXOBJNAME]; /* bootpath redirected via rootdev */ 76 77 #if defined(_PSM_MODULES) 78 79 struct psm_mach { 80 struct psm_mach *m_next; 81 char *m_machname; 82 }; 83 84 static struct psm_mach *pmach_head; /* head of list of classes */ 85 86 #define MACHFILE "/etc/mach" 87 static char mach_file[] = MACHFILE; 88 89 #endif /* _PSM_MODULES */ 90 91 #if defined(_RTC_CONFIG) 92 static char rtc_config_file[] = "/etc/rtc_config"; 93 #endif 94 95 static void sys_set_var(int, struct sysparam *, void *); 96 97 static void setparams(void); 98 99 /* 100 * driver.conf parse thread control structure 101 */ 102 struct hwc_parse_mt { 103 ksema_t sema; 104 char *name; /* name of .conf files */ 105 struct par_list **pl; /* parsed parent list */ 106 ddi_prop_t **props; /* parsed properties */ 107 int rv; /* return value */ 108 }; 109 110 static int hwc_parse_now(char *, struct par_list **, ddi_prop_t **); 111 static void hwc_parse_thread(struct hwc_parse_mt *); 112 static struct hwc_parse_mt *hwc_parse_mtalloc(char *, struct par_list **, 113 ddi_prop_t **); 114 static void hwc_parse_mtfree(struct hwc_parse_mt *); 115 static void add_spec(struct hwc_spec *, struct par_list **); 116 static void add_props(struct hwc_spec *, ddi_prop_t **); 117 118 static void check_system_file(void); 119 static int sysparam_compare_entry(struct sysparam *, struct sysparam *); 120 static char *sysparam_type_to_str(int); 121 static void sysparam_count_entry(struct sysparam *, int *, u_longlong_t *); 122 static void sysparam_print_warning(struct sysparam *, u_longlong_t); 123 124 #ifdef DEBUG 125 static int parse_debug_on = 0; 126 127 /*VARARGS1*/ 128 static void 129 parse_debug(struct _buf *file, char *fmt, ...) 130 { 131 va_list adx; 132 133 if (parse_debug_on) { 134 va_start(adx, fmt); 135 vprintf(fmt, adx); 136 if (file) 137 printf(" on line %d of %s\n", kobj_linenum(file), 138 kobj_filename(file)); 139 va_end(adx); 140 } 141 } 142 #endif /* DEBUG */ 143 144 #define FE_BUFLEN 256 145 146 /*PRINTFLIKE3*/ 147 void 148 kobj_file_err(int type, struct _buf *file, char *fmt, ...) 149 { 150 va_list ap; 151 /* 152 * If we're in trouble, we might be short on stack... be paranoid 153 */ 154 char *buf = kmem_alloc(FE_BUFLEN, KM_SLEEP); 155 char *trailer = kmem_alloc(FE_BUFLEN, KM_SLEEP); 156 char *fmt_str = kmem_alloc(FE_BUFLEN, KM_SLEEP); 157 char prefix = '\0'; 158 159 va_start(ap, fmt); 160 if (strchr("^!?", fmt[0]) != NULL) { 161 prefix = fmt[0]; 162 fmt++; 163 } 164 (void) vsnprintf(buf, FE_BUFLEN, fmt, ap); 165 va_end(ap); 166 (void) snprintf(trailer, FE_BUFLEN, " on line %d of %s", 167 kobj_linenum(file), kobj_filename(file)); 168 169 /* 170 * If prefixed with !^?, prepend that character 171 */ 172 if (prefix != '\0') { 173 (void) snprintf(fmt_str, FE_BUFLEN, "%c%%s%%s", prefix); 174 } else { 175 (void) strncpy(fmt_str, "%s%s", FE_BUFLEN); 176 } 177 178 cmn_err(type, fmt_str, buf, trailer); 179 kmem_free(buf, FE_BUFLEN); 180 kmem_free(trailer, FE_BUFLEN); 181 kmem_free(fmt_str, FE_BUFLEN); 182 } 183 184 #ifdef DEBUG 185 char *tokennames[] = { 186 "UNEXPECTED", 187 "EQUALS", 188 "AMPERSAND", 189 "BIT_OR", 190 "STAR", 191 "POUND", 192 "COLON", 193 "SEMICOLON", 194 "COMMA", 195 "SLASH", 196 "WHITE_SPACE", 197 "NEWLINE", 198 "EOF", 199 "STRING", 200 "HEXVAL", 201 "DECVAL", 202 "NAME" 203 }; 204 #endif /* DEBUG */ 205 206 token_t 207 kobj_lex(struct _buf *file, char *val, size_t size) 208 { 209 char *cp; 210 int ch, oval, badquote; 211 size_t remain; 212 token_t token = UNEXPECTED; 213 214 if (size < 2) 215 return (token); /* this token is UNEXPECTED */ 216 217 cp = val; 218 while ((ch = kobj_getc(file)) == ' ' || ch == '\t') 219 ; 220 221 remain = size - 1; 222 *cp++ = (char)ch; 223 switch (ch) { 224 case '=': 225 token = EQUALS; 226 break; 227 case '&': 228 token = AMPERSAND; 229 break; 230 case '|': 231 token = BIT_OR; 232 break; 233 case '*': 234 token = STAR; 235 break; 236 case '#': 237 token = POUND; 238 break; 239 case ':': 240 token = COLON; 241 break; 242 case ';': 243 token = SEMICOLON; 244 break; 245 case ',': 246 token = COMMA; 247 break; 248 case '/': 249 token = SLASH; 250 break; 251 case ' ': 252 case '\t': 253 case '\f': 254 while ((ch = kobj_getc(file)) == ' ' || 255 ch == '\t' || ch == '\f') { 256 if (--remain == 0) { 257 token = UNEXPECTED; 258 goto out; 259 } 260 *cp++ = (char)ch; 261 } 262 (void) kobj_ungetc(file); 263 token = WHITE_SPACE; 264 break; 265 case '\n': 266 case '\r': 267 token = NEWLINE; 268 break; 269 case '"': 270 remain++; 271 cp--; 272 badquote = 0; 273 while (!badquote && (ch = kobj_getc(file)) != '"') { 274 switch (ch) { 275 case '\n': 276 case -1: 277 kobj_file_err(CE_WARN, file, "Missing \""); 278 remain = size - 1; 279 cp = val; 280 *cp++ = '\n'; 281 badquote = 1; 282 /* since we consumed the newline/EOF */ 283 (void) kobj_ungetc(file); 284 break; 285 286 case '\\': 287 if (--remain == 0) { 288 token = UNEXPECTED; 289 goto out; 290 } 291 ch = (char)kobj_getc(file); 292 if (!isdigit(ch)) { 293 /* escape the character */ 294 *cp++ = (char)ch; 295 break; 296 } 297 oval = 0; 298 while (ch >= '0' && ch <= '7') { 299 ch -= '0'; 300 oval = (oval << 3) + ch; 301 ch = (char)kobj_getc(file); 302 } 303 (void) kobj_ungetc(file); 304 /* check for character overflow? */ 305 if (oval > 127) { 306 cmn_err(CE_WARN, 307 "Character " 308 "overflow detected."); 309 } 310 *cp++ = (char)oval; 311 break; 312 default: 313 if (--remain == 0) { 314 token = UNEXPECTED; 315 goto out; 316 } 317 *cp++ = (char)ch; 318 break; 319 } 320 } 321 token = STRING; 322 break; 323 324 case -1: 325 token = EOF; 326 break; 327 328 default: 329 /* 330 * detect a lone '-' (including at the end of a line), and 331 * identify it as a 'name' 332 */ 333 if (ch == '-') { 334 if (--remain == 0) { 335 token = UNEXPECTED; 336 goto out; 337 } 338 *cp++ = (char)(ch = kobj_getc(file)); 339 if (iswhite(ch) || (ch == '\n')) { 340 (void) kobj_ungetc(file); 341 remain++; 342 cp--; 343 token = NAME; 344 break; 345 } 346 } else if (isunary(ch)) { 347 if (--remain == 0) { 348 token = UNEXPECTED; 349 goto out; 350 } 351 *cp++ = (char)(ch = kobj_getc(file)); 352 } 353 354 355 if (isdigit(ch)) { 356 if (ch == '0') { 357 if ((ch = kobj_getc(file)) == 'x') { 358 if (--remain == 0) { 359 token = UNEXPECTED; 360 goto out; 361 } 362 *cp++ = (char)ch; 363 ch = kobj_getc(file); 364 while (isxdigit(ch)) { 365 if (--remain == 0) { 366 token = UNEXPECTED; 367 goto out; 368 } 369 *cp++ = (char)ch; 370 ch = kobj_getc(file); 371 } 372 (void) kobj_ungetc(file); 373 token = HEXVAL; 374 } else { 375 goto digit; 376 } 377 } else { 378 ch = kobj_getc(file); 379 digit: 380 while (isdigit(ch)) { 381 if (--remain == 0) { 382 token = UNEXPECTED; 383 goto out; 384 } 385 *cp++ = (char)ch; 386 ch = kobj_getc(file); 387 } 388 (void) kobj_ungetc(file); 389 token = DECVAL; 390 } 391 } else if (isalpha(ch) || ch == '\\' || ch == '_') { 392 if (ch != '\\') { 393 ch = kobj_getc(file); 394 } else { 395 /* 396 * if the character was a backslash, 397 * back up so we can overwrite it with 398 * the next (i.e. escaped) character. 399 */ 400 remain++; 401 cp--; 402 } 403 while (isnamechar(ch) || ch == '\\') { 404 if (ch == '\\') 405 ch = kobj_getc(file); 406 if (--remain == 0) { 407 token = UNEXPECTED; 408 goto out; 409 } 410 *cp++ = (char)ch; 411 ch = kobj_getc(file); 412 } 413 (void) kobj_ungetc(file); 414 token = NAME; 415 } else { 416 token = UNEXPECTED; 417 } 418 break; 419 } 420 out: 421 *cp = '\0'; 422 423 #ifdef DEBUG 424 /* 425 * The UNEXPECTED token is the first element of the tokennames array, 426 * but its token value is -1. Adjust the value by adding one to it 427 * to change it to an index of the array. 428 */ 429 parse_debug(NULL, "kobj_lex: token %s value '%s'\n", 430 tokennames[token+1], val); 431 #endif 432 return (token); 433 } 434 435 /* 436 * Leave NEWLINE as the next character. 437 */ 438 439 void 440 kobj_find_eol(struct _buf *file) 441 { 442 int ch; 443 444 while ((ch = kobj_getc(file)) != -1) { 445 if (isnewline(ch)) { 446 (void) kobj_ungetc(file); 447 break; 448 } 449 } 450 } 451 452 /* 453 * The ascii system file is read and processed. 454 * 455 * The syntax of commands is as follows: 456 * 457 * '*' in column 1 is a comment line. 458 * <command> : <value> 459 * 460 * command is EXCLUDE, INCLUDE, FORCELOAD, ROOTDEV, ROOTFS, 461 * SWAPDEV, SWAPFS, MODDIR, SET 462 * 463 * value is an ascii string meaningful for the command. 464 */ 465 466 /* 467 * Table of commands 468 */ 469 static struct modcmd modcmd[] = { 470 { "EXCLUDE", MOD_EXCLUDE }, 471 { "exclude", MOD_EXCLUDE }, 472 { "INCLUDE", MOD_INCLUDE }, 473 { "include", MOD_INCLUDE }, 474 { "FORCELOAD", MOD_FORCELOAD }, 475 { "forceload", MOD_FORCELOAD }, 476 { "ROOTDEV", MOD_ROOTDEV }, 477 { "rootdev", MOD_ROOTDEV }, 478 { "ROOTFS", MOD_ROOTFS }, 479 { "rootfs", MOD_ROOTFS }, 480 { "SWAPDEV", MOD_SWAPDEV }, 481 { "swapdev", MOD_SWAPDEV }, 482 { "SWAPFS", MOD_SWAPFS }, 483 { "swapfs", MOD_SWAPFS }, 484 { "MODDIR", MOD_MODDIR }, 485 { "moddir", MOD_MODDIR }, 486 { "SET", MOD_SET }, 487 { "set", MOD_SET }, 488 { "SET32", MOD_SET32 }, 489 { "set32", MOD_SET32 }, 490 { "SET64", MOD_SET64 }, 491 { "set64", MOD_SET64 }, 492 { NULL, MOD_UNKNOWN } 493 }; 494 495 496 static char bad_op[] = "illegal operator '%s' used on a string"; 497 static char colon_err[] = "A colon (:) must follow the '%s' command"; 498 static char tok_err[] = "Unexpected token '%s'"; 499 static char extra_err[] = "extraneous input ignored starting at '%s'"; 500 static char oversize_err[] = "value too long"; 501 502 static struct sysparam * 503 do_sysfile_cmd(struct _buf *file, const char *cmd) 504 { 505 struct sysparam *sysp; 506 struct modcmd *mcp; 507 token_t token, op; 508 char *cp; 509 int ch; 510 char tok1[MOD_MAXPATH + 1]; /* used to read the path set by 'moddir' */ 511 char tok2[64]; 512 513 for (mcp = modcmd; mcp->mc_cmdname != NULL; mcp++) { 514 if (strcmp(mcp->mc_cmdname, cmd) == 0) 515 break; 516 } 517 sysp = vmem_alloc(mod_sysfile_arena, sizeof (struct sysparam), 518 VM_SLEEP); 519 bzero(sysp, sizeof (struct sysparam)); 520 sysp->sys_op = SETOP_NONE; /* set op to noop initially */ 521 522 switch (sysp->sys_type = mcp->mc_type) { 523 case MOD_INCLUDE: 524 case MOD_EXCLUDE: 525 case MOD_FORCELOAD: 526 /* 527 * Are followed by colon. 528 */ 529 case MOD_ROOTFS: 530 case MOD_SWAPFS: 531 if ((token = kobj_lex(file, tok1, sizeof (tok1))) == COLON) { 532 token = kobj_lex(file, tok1, sizeof (tok1)); 533 } else { 534 kobj_file_err(CE_WARN, file, colon_err, cmd); 535 } 536 if (token != NAME) { 537 kobj_file_err(CE_WARN, file, "value expected"); 538 goto bad; 539 } 540 541 cp = tok1 + strlen(tok1); 542 while ((ch = kobj_getc(file)) != -1 && !iswhite(ch) && 543 !isnewline(ch)) { 544 if (cp - tok1 >= sizeof (tok1) - 1) { 545 kobj_file_err(CE_WARN, file, oversize_err); 546 goto bad; 547 } 548 *cp++ = (char)ch; 549 } 550 *cp = '\0'; 551 552 if (ch != -1) 553 (void) kobj_ungetc(file); 554 if (sysp->sys_type == MOD_INCLUDE) 555 return (NULL); 556 sysp->sys_ptr = vmem_alloc(mod_sysfile_arena, strlen(tok1) + 1, 557 VM_SLEEP); 558 (void) strcpy(sysp->sys_ptr, tok1); 559 break; 560 case MOD_SET: 561 case MOD_SET64: 562 case MOD_SET32: 563 { 564 char *var; 565 token_t tok3; 566 567 if (kobj_lex(file, tok1, sizeof (tok1)) != NAME) { 568 kobj_file_err(CE_WARN, file, "value expected"); 569 goto bad; 570 } 571 572 /* 573 * If the next token is a colon (:), 574 * we have the <modname>:<variable> construct. 575 */ 576 if ((token = kobj_lex(file, tok2, sizeof (tok2))) == COLON) { 577 if ((token = kobj_lex(file, tok2, 578 sizeof (tok2))) == NAME) { 579 var = tok2; 580 /* 581 * Save the module name. 582 */ 583 sysp->sys_modnam = vmem_alloc(mod_sysfile_arena, 584 strlen(tok1) + 1, VM_SLEEP); 585 (void) strcpy(sysp->sys_modnam, tok1); 586 op = kobj_lex(file, tok1, sizeof (tok1)); 587 } else { 588 kobj_file_err(CE_WARN, file, "value expected"); 589 goto bad; 590 } 591 } else { 592 /* otherwise, it was the op */ 593 var = tok1; 594 op = token; 595 } 596 /* 597 * kernel param - place variable name in sys_ptr. 598 */ 599 sysp->sys_ptr = vmem_alloc(mod_sysfile_arena, strlen(var) + 1, 600 VM_SLEEP); 601 (void) strcpy(sysp->sys_ptr, var); 602 /* set operation */ 603 switch (op) { 604 case EQUALS: 605 /* simple assignment */ 606 sysp->sys_op = SETOP_ASSIGN; 607 break; 608 case AMPERSAND: 609 /* bitwise AND */ 610 sysp->sys_op = SETOP_AND; 611 break; 612 case BIT_OR: 613 /* bitwise OR */ 614 sysp->sys_op = SETOP_OR; 615 break; 616 default: 617 /* unsupported operation */ 618 kobj_file_err(CE_WARN, file, 619 "unsupported operator %s", tok2); 620 goto bad; 621 } 622 623 switch ((tok3 = kobj_lex(file, tok1, sizeof (tok1)))) { 624 case STRING: 625 /* string variable */ 626 if (sysp->sys_op != SETOP_ASSIGN) { 627 kobj_file_err(CE_WARN, file, bad_op, tok1); 628 goto bad; 629 } 630 if (kobj_get_string(&sysp->sys_info, tok1) == 0) { 631 kobj_file_err(CE_WARN, file, "string garbled"); 632 goto bad; 633 } 634 /* 635 * Set SYSPARAM_STR_TOKEN in sys_flags to notify 636 * sysparam_print_warning() that this is a string 637 * token. 638 */ 639 sysp->sys_flags |= SYSPARAM_STR_TOKEN; 640 break; 641 case HEXVAL: 642 case DECVAL: 643 if (kobj_getvalue(tok1, &sysp->sys_info) == -1) { 644 kobj_file_err(CE_WARN, file, 645 "invalid number '%s'", tok1); 646 goto bad; 647 } 648 649 /* 650 * Set the appropriate flag (hexadecimal or decimal) 651 * in sys_flags for sysparam_print_warning() to be 652 * able to print the number with the correct format. 653 */ 654 if (tok3 == HEXVAL) { 655 sysp->sys_flags |= SYSPARAM_HEX_TOKEN; 656 } else { 657 sysp->sys_flags |= SYSPARAM_DEC_TOKEN; 658 } 659 break; 660 default: 661 kobj_file_err(CE_WARN, file, "bad rvalue '%s'", tok1); 662 goto bad; 663 } /* end switch */ 664 665 /* 666 * Now that we've parsed it to check the syntax, consider 667 * discarding it (because it -doesn't- apply to this flavor 668 * of the kernel) 669 */ 670 #ifdef _LP64 671 if (sysp->sys_type == MOD_SET32) 672 return (NULL); 673 #else 674 if (sysp->sys_type == MOD_SET64) 675 return (NULL); 676 #endif 677 sysp->sys_type = MOD_SET; 678 break; 679 } 680 case MOD_MODDIR: 681 if ((token = kobj_lex(file, tok1, sizeof (tok1))) != COLON) { 682 kobj_file_err(CE_WARN, file, colon_err, cmd); 683 goto bad; 684 } 685 686 cp = tok1; 687 while ((token = kobj_lex(file, cp, 688 sizeof (tok1) - (cp - tok1))) != NEWLINE && token != EOF) { 689 if (token == -1) { 690 kobj_file_err(CE_WARN, file, oversize_err); 691 goto bad; 692 } 693 cp += strlen(cp); 694 while ((ch = kobj_getc(file)) != -1 && !iswhite(ch) && 695 !isnewline(ch) && ch != ':') { 696 if (cp - tok1 >= sizeof (tok1) - 1) { 697 kobj_file_err(CE_WARN, file, 698 oversize_err); 699 goto bad; 700 } 701 *cp++ = (char)ch; 702 } 703 *cp = ':'; 704 if (isnewline(ch)) 705 (void) kobj_ungetc(file); 706 } 707 (void) kobj_ungetc(file); 708 *cp = '\0'; 709 sysp->sys_ptr = vmem_alloc(mod_sysfile_arena, strlen(tok1) + 1, 710 VM_SLEEP); 711 (void) strcpy(sysp->sys_ptr, tok1); 712 break; 713 714 case MOD_SWAPDEV: 715 case MOD_ROOTDEV: 716 if ((token = kobj_lex(file, tok1, sizeof (tok1))) != COLON) { 717 kobj_file_err(CE_WARN, file, colon_err, cmd); 718 goto bad; 719 } 720 while ((ch = kobj_getc(file)) == ' ' || ch == '\t') 721 ; 722 cp = tok1; 723 while (!iswhite(ch) && !isnewline(ch) && ch != -1) { 724 if (cp - tok1 >= sizeof (tok1) - 1) { 725 kobj_file_err(CE_WARN, file, oversize_err); 726 goto bad; 727 } 728 729 *cp++ = (char)ch; 730 ch = kobj_getc(file); 731 } 732 if (ch != -1) 733 (void) kobj_ungetc(file); 734 *cp = '\0'; 735 736 sysp->sys_ptr = vmem_alloc(mod_sysfile_arena, strlen(tok1) + 1, 737 VM_SLEEP); 738 (void) strcpy(sysp->sys_ptr, tok1); 739 break; 740 741 case MOD_UNKNOWN: 742 default: 743 kobj_file_err(CE_WARN, file, "unknown command '%s'", cmd); 744 goto bad; 745 } 746 747 return (sysp); 748 749 bad: 750 kobj_find_eol(file); 751 return (NULL); 752 } 753 754 void 755 mod_read_system_file(int ask) 756 { 757 register struct sysparam *sp; 758 register struct _buf *file; 759 register token_t token, last_tok; 760 char tokval[MAXLINESIZE]; 761 762 mod_sysfile_arena = vmem_create("mod_sysfile", NULL, 0, 8, 763 segkmem_alloc, segkmem_free, heap_arena, 0, VM_SLEEP); 764 765 if (ask) 766 mod_askparams(); 767 768 if (systemfile != NULL) { 769 770 if ((file = kobj_open_file(systemfile)) == 771 (struct _buf *)-1) { 772 cmn_err(CE_WARN, "cannot open system file: %s", 773 systemfile); 774 } else { 775 sysparam_tl = (struct sysparam *)&sysparam_hd; 776 777 last_tok = NEWLINE; 778 while ((token = kobj_lex(file, tokval, 779 sizeof (tokval))) != EOF) { 780 switch (token) { 781 case STAR: 782 case POUND: 783 /* 784 * Skip comments. 785 */ 786 kobj_find_eol(file); 787 break; 788 case NEWLINE: 789 kobj_newline(file); 790 last_tok = NEWLINE; 791 break; 792 case NAME: 793 if (last_tok != NEWLINE) { 794 kobj_file_err(CE_WARN, file, 795 extra_err, tokval); 796 kobj_find_eol(file); 797 } else if ((sp = do_sysfile_cmd(file, 798 tokval)) != NULL) { 799 sp->sys_next = NULL; 800 sysparam_tl->sys_next = sp; 801 sysparam_tl = sp; 802 } 803 last_tok = NAME; 804 break; 805 default: 806 kobj_file_err(CE_WARN, 807 file, tok_err, tokval); 808 kobj_find_eol(file); 809 break; 810 } 811 } 812 kobj_close_file(file); 813 } 814 } 815 816 /* 817 * Sanity check of /etc/system. 818 */ 819 check_system_file(); 820 821 param_preset(); 822 (void) mod_sysctl(SYS_SET_KVAR, NULL); 823 824 if (ask == 0) 825 setparams(); 826 } 827 828 /* 829 * Search for a specific module variable assignment in /etc/system. If 830 * successful, 1 is returned and the value is stored in '*value'. 831 * Otherwise 0 is returned and '*value' isn't modified. If 'module' is 832 * NULL we look for global definitions. 833 * 834 * This is useful if the value of an assignment is needed before a 835 * module is loaded (e.g. to obtain a default privileged rctl limit). 836 */ 837 int 838 mod_sysvar(const char *module, const char *name, u_longlong_t *value) 839 { 840 struct sysparam *sysp; 841 int cnt = 0; /* dummy */ 842 843 ASSERT(name != NULL); 844 ASSERT(value != NULL); 845 for (sysp = sysparam_hd; sysp != NULL; sysp = sysp->sys_next) { 846 847 if ((sysp->sys_type == MOD_SET) && 848 (((module == NULL) && (sysp->sys_modnam == NULL)) || 849 ((module != NULL) && (sysp->sys_modnam != NULL) && 850 (strcmp(module, sysp->sys_modnam) == 0)))) { 851 852 ASSERT(sysp->sys_ptr != NULL); 853 854 if (strcmp(name, sysp->sys_ptr) == 0) { 855 sysparam_count_entry(sysp, &cnt, value); 856 if ((sysp->sys_flags & SYSPARAM_TERM) != 0) 857 return (1); 858 continue; 859 } 860 } 861 } 862 ASSERT(cnt == 0); 863 return (0); 864 } 865 866 /* 867 * This function scans sysparam records, which are created from the 868 * contents of /etc/system, for entries which are logical duplicates, 869 * and prints warning messages as appropriate. When multiple "set" 870 * commands are encountered, the pileup of values with "&", "|" 871 * and "=" operators results in the final value. 872 */ 873 static void 874 check_system_file(void) 875 { 876 struct sysparam *sysp; 877 878 for (sysp = sysparam_hd; sysp != NULL; sysp = sysp->sys_next) { 879 struct sysparam *entry, *final; 880 u_longlong_t value = 0; 881 int cnt = 1; 882 /* 883 * If the entry is already checked, skip it. 884 */ 885 if ((sysp->sys_flags & SYSPARAM_DUP) != 0) 886 continue; 887 /* 888 * Check if there is a duplicate entry by doing a linear 889 * search. 890 */ 891 final = sysp; 892 for (entry = sysp->sys_next; entry != NULL; 893 entry = entry->sys_next) { 894 /* 895 * Check the entry. if it's different, skip this. 896 */ 897 if (sysparam_compare_entry(sysp, entry) != 0) 898 continue; 899 /* 900 * Count the entry and put the mark. 901 */ 902 sysparam_count_entry(entry, &cnt, &value); 903 entry->sys_flags |= SYSPARAM_DUP; 904 final = entry; 905 } 906 final->sys_flags |= SYSPARAM_TERM; 907 /* 908 * Print the warning if it's duplicated. 909 */ 910 if (cnt >= 2) 911 sysparam_print_warning(final, value); 912 } 913 } 914 915 /* 916 * Compare the sysparam records. 917 * Return 0 if they are the same, return 1 if not. 918 */ 919 static int 920 sysparam_compare_entry(struct sysparam *sysp, struct sysparam *entry) 921 { 922 ASSERT(sysp->sys_ptr != NULL && entry->sys_ptr != NULL); 923 924 /* 925 * If the command is rootdev, rootfs, swapdev, swapfs or moddir, 926 * the record with the same type is treated as a duplicate record. 927 * In other cases, the record is treated as a duplicate record when 928 * its type, its module name (if it exists), and its variable name 929 * are the same. 930 */ 931 switch (sysp->sys_type) { 932 case MOD_ROOTDEV: 933 case MOD_ROOTFS: 934 case MOD_SWAPDEV: 935 case MOD_SWAPFS: 936 case MOD_MODDIR: 937 return (sysp->sys_type == entry->sys_type ? 0 : 1); 938 default: /* In other cases, just go through it. */ 939 break; 940 } 941 942 if (sysp->sys_type != entry->sys_type) 943 return (1); 944 945 if (sysp->sys_modnam != NULL && entry->sys_modnam == NULL) 946 return (1); 947 948 if (sysp->sys_modnam == NULL && entry->sys_modnam != NULL) 949 return (1); 950 951 if (sysp->sys_modnam != NULL && entry->sys_modnam != NULL && 952 strcmp(sysp->sys_modnam, entry->sys_modnam) != 0) 953 return (1); 954 955 return (strcmp(sysp->sys_ptr, entry->sys_ptr)); 956 } 957 958 /* 959 * Translate a sysparam type value to a string. 960 */ 961 static char * 962 sysparam_type_to_str(int type) 963 { 964 struct modcmd *mcp; 965 966 for (mcp = modcmd; mcp->mc_cmdname != NULL; mcp++) { 967 if (mcp->mc_type == type) 968 break; 969 } 970 ASSERT(mcp->mc_type == type); 971 972 if (type != MOD_UNKNOWN) 973 return ((++mcp)->mc_cmdname); /* lower case */ 974 else 975 return (""); /* MOD_UNKNOWN */ 976 } 977 978 /* 979 * Check the entry and accumulate the number of entries. 980 */ 981 static void 982 sysparam_count_entry(struct sysparam *sysp, int *cnt, u_longlong_t *value) 983 { 984 u_longlong_t ul = sysp->sys_info; 985 986 switch (sysp->sys_op) { 987 case SETOP_ASSIGN: 988 *value = ul; 989 (*cnt)++; 990 return; 991 case SETOP_AND: 992 *value &= ul; 993 return; 994 case SETOP_OR: 995 *value |= ul; 996 return; 997 default: /* Not MOD_SET */ 998 (*cnt)++; 999 return; 1000 } 1001 } 1002 1003 /* 1004 * Print out the warning if multiple entries are found in the system file. 1005 */ 1006 static void 1007 sysparam_print_warning(struct sysparam *sysp, u_longlong_t value) 1008 { 1009 char *modnam = sysp->sys_modnam; 1010 char *varnam = sysp->sys_ptr; 1011 int type = sysp->sys_type; 1012 char *typenam = sysparam_type_to_str(type); 1013 boolean_t str_token = ((sysp->sys_flags & SYSPARAM_STR_TOKEN) != 0); 1014 boolean_t hex_number = ((sysp->sys_flags & SYSPARAM_HEX_TOKEN) != 0); 1015 #define warn_format1 " is set more than once in /%s. " 1016 #define warn_format2 " applied as the current setting.\n" 1017 1018 ASSERT(varnam != NULL); 1019 1020 if (type == MOD_SET) { 1021 /* 1022 * If a string token is set, print out the string 1023 * instead of its pointer value. In other cases, 1024 * print out the value with the appropriate format 1025 * for a hexadecimal number or a decimal number. 1026 */ 1027 if (modnam == NULL) { 1028 if (str_token == B_TRUE) { 1029 cmn_err(CE_WARN, "%s" warn_format1 1030 "\"%s %s = %s\"" warn_format2, 1031 varnam, systemfile, typenam, 1032 varnam, (char *)(uintptr_t)value); 1033 } else if (hex_number == B_TRUE) { 1034 cmn_err(CE_WARN, "%s" warn_format1 1035 "\"%s %s = 0x%llx\"" warn_format2, 1036 varnam, systemfile, typenam, 1037 varnam, value); 1038 } else { 1039 cmn_err(CE_WARN, "%s" warn_format1 1040 "\"%s %s = %lld\"" warn_format2, 1041 varnam, systemfile, typenam, 1042 varnam, value); 1043 } 1044 } else { 1045 if (str_token == B_TRUE) { 1046 cmn_err(CE_WARN, "%s:%s" warn_format1 1047 "\"%s %s:%s = %s\"" warn_format2, 1048 modnam, varnam, systemfile, 1049 typenam, modnam, varnam, 1050 (char *)(uintptr_t)value); 1051 } else if (hex_number == B_TRUE) { 1052 cmn_err(CE_WARN, "%s:%s" warn_format1 1053 "\"%s %s:%s = 0x%llx\"" warn_format2, 1054 modnam, varnam, systemfile, 1055 typenam, modnam, varnam, value); 1056 } else { 1057 cmn_err(CE_WARN, "%s:%s" warn_format1 1058 "\"%s %s:%s = %lld\"" warn_format2, 1059 modnam, varnam, systemfile, 1060 typenam, modnam, varnam, value); 1061 } 1062 } 1063 } else { 1064 /* 1065 * If the type is MOD_ROOTDEV, MOD_ROOTFS, MOD_SWAPDEV, 1066 * MOD_SWAPFS or MOD_MODDIR, the entry is treated as 1067 * a duplicate one if it has the same type regardless 1068 * of its variable name. 1069 */ 1070 switch (type) { 1071 case MOD_ROOTDEV: 1072 case MOD_ROOTFS: 1073 case MOD_SWAPDEV: 1074 case MOD_SWAPFS: 1075 case MOD_MODDIR: 1076 cmn_err(CE_WARN, "\"%s\" appears more than once " 1077 "in /%s.", typenam, systemfile); 1078 break; 1079 default: 1080 cmn_err(CE_NOTE, "\"%s: %s\" appears more than once " 1081 "in /%s.", typenam, varnam, systemfile); 1082 break; 1083 } 1084 } 1085 } 1086 1087 /* 1088 * Process the system file commands. 1089 */ 1090 int 1091 mod_sysctl(int fcn, void *p) 1092 { 1093 static char wmesg[] = "forceload of %s failed"; 1094 struct sysparam *sysp; 1095 char *name; 1096 struct modctl *modp; 1097 1098 if (sysparam_hd == NULL) 1099 return (0); 1100 1101 for (sysp = sysparam_hd; sysp != NULL; sysp = sysp->sys_next) { 1102 1103 switch (fcn) { 1104 1105 case SYS_FORCELOAD: 1106 if (sysp->sys_type == MOD_FORCELOAD) { 1107 name = sysp->sys_ptr; 1108 if (modload(NULL, name) == -1) 1109 cmn_err(CE_WARN, wmesg, name); 1110 /* 1111 * The following works because it 1112 * runs before autounloading is started!! 1113 */ 1114 modp = mod_find_by_filename(NULL, name); 1115 if (modp != NULL) 1116 modp->mod_loadflags |= MOD_NOAUTOUNLOAD; 1117 /* 1118 * For drivers, attempt to install it. 1119 */ 1120 if (strncmp(sysp->sys_ptr, "drv", 3) == 0) { 1121 (void) ddi_install_driver(name + 4); 1122 } 1123 } 1124 break; 1125 1126 case SYS_SET_KVAR: 1127 case SYS_SET_MVAR: 1128 if (sysp->sys_type == MOD_SET) 1129 sys_set_var(fcn, sysp, p); 1130 break; 1131 1132 case SYS_CHECK_EXCLUDE: 1133 if (sysp->sys_type == MOD_EXCLUDE) { 1134 if (p == NULL || sysp->sys_ptr == NULL) 1135 return (0); 1136 if (strcmp((char *)p, sysp->sys_ptr) == 0) 1137 return (1); 1138 } 1139 } 1140 } 1141 param_check(); 1142 1143 return (0); 1144 } 1145 1146 /* 1147 * Process the system file commands, by type. 1148 */ 1149 int 1150 mod_sysctl_type(int type, int (*func)(struct sysparam *, void *), void *p) 1151 { 1152 struct sysparam *sysp; 1153 int err; 1154 1155 for (sysp = sysparam_hd; sysp != NULL; sysp = sysp->sys_next) 1156 if (sysp->sys_type == type) 1157 if (err = (*(func))(sysp, p)) 1158 return (err); 1159 return (0); 1160 } 1161 1162 1163 static char seterr[] = "Symbol %s has size of 0 in symbol table. %s"; 1164 static char assumption[] = "Assuming it is an 'int'"; 1165 static char defmsg[] = "Trying to set a variable that is of size %d"; 1166 1167 static void set_int8_var(uintptr_t, struct sysparam *); 1168 static void set_int16_var(uintptr_t, struct sysparam *); 1169 static void set_int32_var(uintptr_t, struct sysparam *); 1170 static void set_int64_var(uintptr_t, struct sysparam *); 1171 1172 static void 1173 sys_set_var(int fcn, struct sysparam *sysp, void *p) 1174 { 1175 uintptr_t symaddr; 1176 int size; 1177 1178 if (fcn == SYS_SET_KVAR && sysp->sys_modnam == NULL) { 1179 symaddr = kobj_getelfsym(sysp->sys_ptr, NULL, &size); 1180 } else if (fcn == SYS_SET_MVAR) { 1181 if (sysp->sys_modnam == (char *)NULL || 1182 strcmp(((struct modctl *)p)->mod_modname, 1183 sysp->sys_modnam) != 0) 1184 return; 1185 symaddr = kobj_getelfsym(sysp->sys_ptr, 1186 ((struct modctl *)p)->mod_mp, &size); 1187 } else 1188 return; 1189 1190 if (symaddr != NULL) { 1191 switch (size) { 1192 case 1: 1193 set_int8_var(symaddr, sysp); 1194 break; 1195 case 2: 1196 set_int16_var(symaddr, sysp); 1197 break; 1198 case 0: 1199 cmn_err(CE_WARN, seterr, sysp->sys_ptr, assumption); 1200 /*FALLTHROUGH*/ 1201 case 4: 1202 set_int32_var(symaddr, sysp); 1203 break; 1204 case 8: 1205 set_int64_var(symaddr, sysp); 1206 break; 1207 default: 1208 cmn_err(CE_WARN, defmsg, size); 1209 break; 1210 } 1211 } else { 1212 printf("sorry, variable '%s' is not defined in the '%s' ", 1213 sysp->sys_ptr, 1214 sysp->sys_modnam ? sysp->sys_modnam : "kernel"); 1215 if (sysp->sys_modnam) 1216 printf("module"); 1217 printf("\n"); 1218 } 1219 } 1220 1221 static void 1222 set_int8_var(uintptr_t symaddr, struct sysparam *sysp) 1223 { 1224 uint8_t uc = (uint8_t)sysp->sys_info; 1225 1226 if (moddebug & MODDEBUG_LOADMSG) 1227 printf("OP: %x: param '%s' was '0x%" PRIx8 1228 "' in module: '%s'.\n", sysp->sys_op, sysp->sys_ptr, 1229 *(uint8_t *)symaddr, sysp->sys_modnam); 1230 1231 switch (sysp->sys_op) { 1232 case SETOP_ASSIGN: 1233 *(uint8_t *)symaddr = uc; 1234 break; 1235 case SETOP_AND: 1236 *(uint8_t *)symaddr &= uc; 1237 break; 1238 case SETOP_OR: 1239 *(uint8_t *)symaddr |= uc; 1240 break; 1241 } 1242 1243 if (moddebug & MODDEBUG_LOADMSG) 1244 printf("now it is set to '0x%" PRIx8 "'.\n", 1245 *(uint8_t *)symaddr); 1246 } 1247 1248 static void 1249 set_int16_var(uintptr_t symaddr, struct sysparam *sysp) 1250 { 1251 uint16_t us = (uint16_t)sysp->sys_info; 1252 1253 if (moddebug & MODDEBUG_LOADMSG) 1254 printf("OP: %x: param '%s' was '0x%" PRIx16 1255 "' in module: '%s'.\n", sysp->sys_op, sysp->sys_ptr, 1256 *(uint16_t *)symaddr, sysp->sys_modnam); 1257 1258 switch (sysp->sys_op) { 1259 case SETOP_ASSIGN: 1260 *(uint16_t *)symaddr = us; 1261 break; 1262 case SETOP_AND: 1263 *(uint16_t *)symaddr &= us; 1264 break; 1265 case SETOP_OR: 1266 *(uint16_t *)symaddr |= us; 1267 break; 1268 } 1269 1270 if (moddebug & MODDEBUG_LOADMSG) 1271 printf("now it is set to '0x%" PRIx16 "'.\n", 1272 *(uint16_t *)symaddr); 1273 } 1274 1275 static void 1276 set_int32_var(uintptr_t symaddr, struct sysparam *sysp) 1277 { 1278 uint32_t ui = (uint32_t)sysp->sys_info; 1279 1280 if (moddebug & MODDEBUG_LOADMSG) 1281 printf("OP: %x: param '%s' was '0x%" PRIx32 1282 "' in module: '%s'.\n", sysp->sys_op, sysp->sys_ptr, 1283 *(uint32_t *)symaddr, sysp->sys_modnam); 1284 1285 switch (sysp->sys_op) { 1286 case SETOP_ASSIGN: 1287 *(uint32_t *)symaddr = ui; 1288 break; 1289 case SETOP_AND: 1290 *(uint32_t *)symaddr &= ui; 1291 break; 1292 case SETOP_OR: 1293 *(uint32_t *)symaddr |= ui; 1294 break; 1295 } 1296 1297 if (moddebug & MODDEBUG_LOADMSG) 1298 printf("now it is set to '0x%" PRIx32 "'.\n", 1299 *(uint32_t *)symaddr); 1300 } 1301 1302 static void 1303 set_int64_var(uintptr_t symaddr, struct sysparam *sysp) 1304 { 1305 uint64_t ul = sysp->sys_info; 1306 1307 if (moddebug & MODDEBUG_LOADMSG) 1308 printf("OP: %x: param '%s' was '0x%" PRIx64 1309 "' in module: '%s'.\n", sysp->sys_op, sysp->sys_ptr, 1310 *(uint64_t *)symaddr, sysp->sys_modnam); 1311 1312 switch (sysp->sys_op) { 1313 case SETOP_ASSIGN: 1314 *(uint64_t *)symaddr = ul; 1315 break; 1316 case SETOP_AND: 1317 *(uint64_t *)symaddr &= ul; 1318 break; 1319 case SETOP_OR: 1320 *(uint64_t *)symaddr |= ul; 1321 break; 1322 } 1323 1324 if (moddebug & MODDEBUG_LOADMSG) 1325 printf("now it is set to '0x%" PRIx64 "'.\n", 1326 *(uint64_t *)symaddr); 1327 } 1328 1329 /* 1330 * The next item on the line is a string value. Allocate memory for 1331 * it and copy the string. Return 1, and set arg ptr to newly allocated 1332 * and initialized buffer, or NULL if an error occurs. 1333 */ 1334 int 1335 kobj_get_string(u_longlong_t *llptr, char *tchar) 1336 { 1337 char *cp; 1338 char *start = (char *)0; 1339 int len = 0; 1340 1341 len = strlen(tchar); 1342 start = tchar; 1343 /* copy string */ 1344 cp = vmem_alloc(mod_sysfile_arena, len + 1, VM_SLEEP); 1345 bzero(cp, len + 1); 1346 *llptr = (u_longlong_t)(uintptr_t)cp; 1347 for (; len > 0; len--) { 1348 /* convert some common escape sequences */ 1349 if (*start == '\\') { 1350 switch (*(start + 1)) { 1351 case 't': 1352 /* tab */ 1353 *cp++ = '\t'; 1354 len--; 1355 start += 2; 1356 break; 1357 case 'n': 1358 /* new line */ 1359 *cp++ = '\n'; 1360 len--; 1361 start += 2; 1362 break; 1363 case 'b': 1364 /* back space */ 1365 *cp++ = '\b'; 1366 len--; 1367 start += 2; 1368 break; 1369 default: 1370 /* simply copy it */ 1371 *cp++ = *start++; 1372 break; 1373 } 1374 } else 1375 *cp++ = *start++; 1376 } 1377 *cp = '\0'; 1378 return (1); 1379 } 1380 1381 1382 /* 1383 * this function frees the memory allocated by kobj_get_string 1384 */ 1385 void 1386 kobj_free_string(void *ptr, int len) 1387 { 1388 vmem_free(mod_sysfile_arena, ptr, len); 1389 } 1390 1391 1392 /* 1393 * get a decimal octal or hex number. Handle '~' for one's complement. 1394 */ 1395 int 1396 kobj_getvalue(const char *token, u_longlong_t *valuep) 1397 { 1398 int radix; 1399 u_longlong_t retval = 0; 1400 int onescompl = 0; 1401 int negate = 0; 1402 char c; 1403 1404 if (*token == '~') { 1405 onescompl++; /* perform one's complement on result */ 1406 token++; 1407 } else if (*token == '-') { 1408 negate++; 1409 token++; 1410 } 1411 if (*token == '0') { 1412 token++; 1413 c = *token; 1414 1415 if (c == '\0') { 1416 *valuep = 0; /* value is 0 */ 1417 return (0); 1418 } 1419 1420 if (c == 'x' || c == 'X') { 1421 radix = 16; 1422 token++; 1423 } else 1424 radix = 8; 1425 } else 1426 radix = 10; 1427 1428 while ((c = *token++)) { 1429 switch (radix) { 1430 case 8: 1431 if (c >= '0' && c <= '7') 1432 c -= '0'; 1433 else 1434 return (-1); /* invalid number */ 1435 retval = (retval << 3) + c; 1436 break; 1437 case 10: 1438 if (c >= '0' && c <= '9') 1439 c -= '0'; 1440 else 1441 return (-1); /* invalid number */ 1442 retval = (retval * 10) + c; 1443 break; 1444 case 16: 1445 if (c >= 'a' && c <= 'f') 1446 c = c - 'a' + 10; 1447 else if (c >= 'A' && c <= 'F') 1448 c = c - 'A' + 10; 1449 else if (c >= '0' && c <= '9') 1450 c -= '0'; 1451 else 1452 return (-1); /* invalid number */ 1453 retval = (retval << 4) + c; 1454 break; 1455 } 1456 } 1457 if (onescompl) 1458 retval = ~retval; 1459 if (negate) 1460 retval = -retval; 1461 *valuep = retval; 1462 return (0); 1463 } 1464 1465 /* 1466 * Path to the root device and root filesystem type from 1467 * property information derived from the boot subsystem 1468 */ 1469 void 1470 setbootpath(char *path) 1471 { 1472 rootfs.bo_flags |= BO_VALID; 1473 (void) copystr(path, rootfs.bo_name, BO_MAXOBJNAME, NULL); 1474 BMDPRINTF(("rootfs bootpath: %s\n", rootfs.bo_name)); 1475 } 1476 1477 void 1478 setbootfstype(char *fstype) 1479 { 1480 (void) copystr(fstype, rootfs.bo_fstype, BO_MAXFSNAME, NULL); 1481 BMDPRINTF(("rootfs fstype: %s\n", rootfs.bo_fstype)); 1482 } 1483 1484 /* 1485 * set parameters that can be set early during initialization. 1486 */ 1487 static void 1488 setparams() 1489 { 1490 struct sysparam *sysp; 1491 struct bootobj *bootobjp; 1492 1493 for (sysp = sysparam_hd; sysp != NULL; sysp = sysp->sys_next) { 1494 1495 if (sysp->sys_type == MOD_MODDIR) { 1496 default_path = sysp->sys_ptr; 1497 continue; 1498 } 1499 1500 if (sysp->sys_type == MOD_SWAPDEV || 1501 sysp->sys_type == MOD_SWAPFS) 1502 bootobjp = &swapfile; 1503 else if (sysp->sys_type == MOD_ROOTFS) 1504 bootobjp = &rootfs; 1505 1506 switch (sysp->sys_type) { 1507 case MOD_ROOTDEV: 1508 root_is_svm = 1; 1509 (void) copystr(sysp->sys_ptr, svm_bootpath, 1510 BO_MAXOBJNAME, NULL); 1511 break; 1512 case MOD_SWAPDEV: 1513 bootobjp->bo_flags |= BO_VALID; 1514 (void) copystr(sysp->sys_ptr, bootobjp->bo_name, 1515 BO_MAXOBJNAME, NULL); 1516 break; 1517 case MOD_ROOTFS: 1518 case MOD_SWAPFS: 1519 bootobjp->bo_flags |= BO_VALID; 1520 (void) copystr(sysp->sys_ptr, bootobjp->bo_fstype, 1521 BO_MAXOBJNAME, NULL); 1522 break; 1523 1524 default: 1525 break; 1526 } 1527 } 1528 } 1529 1530 /* 1531 * clean up after an error. 1532 */ 1533 static void 1534 hwc_free(struct hwc_spec *hwcp) 1535 { 1536 char *name; 1537 1538 if ((name = hwcp->hwc_parent_name) != NULL) 1539 kmem_free(name, strlen(name) + 1); 1540 if ((name = hwcp->hwc_class_name) != NULL) 1541 kmem_free(name, strlen(name) + 1); 1542 if ((name = hwcp->hwc_devi_name) != NULL) 1543 kmem_free(name, strlen(name) + 1); 1544 i_ddi_prop_list_delete(hwcp->hwc_devi_sys_prop_ptr); 1545 kmem_free(hwcp, sizeof (struct hwc_spec)); 1546 } 1547 1548 /* 1549 * Free a list of specs 1550 */ 1551 void 1552 hwc_free_spec_list(struct hwc_spec *list) 1553 { 1554 while (list) { 1555 struct hwc_spec *tmp = list; 1556 list = tmp->hwc_next; 1557 hwc_free(tmp); 1558 } 1559 } 1560 1561 struct val_list { 1562 struct val_list *val_next; 1563 int val_type; 1564 int val_size; 1565 union { 1566 char *string; 1567 int integer; 1568 } val; 1569 }; 1570 1571 static void 1572 add_val(struct val_list **val_listp, int val_type, caddr_t val) 1573 { 1574 struct val_list *new_val, *listp = *val_listp; 1575 1576 new_val = kmem_alloc(sizeof (struct val_list), KM_SLEEP); 1577 new_val->val_next = NULL; 1578 if ((new_val->val_type = val_type) == 0) { 1579 new_val->val_size = strlen((char *)val) + 1; 1580 new_val->val.string = (char *)val; 1581 } else { 1582 new_val->val_size = sizeof (int); 1583 new_val->val.integer = (int)(uintptr_t)val; 1584 } 1585 1586 if (listp) { 1587 while (listp->val_next) { 1588 listp = listp->val_next; 1589 } 1590 listp->val_next = new_val; 1591 } else { 1592 *val_listp = new_val; 1593 } 1594 } 1595 1596 /* 1597 * make sure there are no reserved IEEE 1275 characters (except 1598 * for uppercase characters). 1599 */ 1600 static int 1601 valid_prop_name(char *name) 1602 { 1603 int i; 1604 int len = strlen(name); 1605 1606 for (i = 0; i < len; i++) { 1607 if (name[i] < 0x21 || 1608 name[i] == '/' || 1609 name[i] == '\\' || 1610 name[i] == ':' || 1611 name[i] == '[' || 1612 name[i] == ']' || 1613 name[i] == '@') 1614 return (0); 1615 } 1616 return (1); 1617 } 1618 1619 static void 1620 make_prop(struct _buf *file, dev_info_t *devi, char *name, struct val_list *val) 1621 { 1622 int propcnt = 0, val_type; 1623 struct val_list *vl, *tvl; 1624 caddr_t valbuf = NULL; 1625 char **valsp; 1626 int *valip; 1627 1628 if (name == NULL) 1629 return; 1630 1631 #ifdef DEBUG 1632 parse_debug(NULL, "%s", name); 1633 #endif 1634 if (!valid_prop_name(name)) { 1635 cmn_err(CE_WARN, "invalid property name '%s'", name); 1636 kmem_free(name, strlen(name) + 1); 1637 return; 1638 } 1639 if (val) { 1640 for (vl = val, val_type = vl->val_type; vl; vl = vl->val_next) { 1641 if (val_type != vl->val_type) { 1642 cmn_err(CE_WARN, "Mixed types in value list"); 1643 return; 1644 } 1645 propcnt++; 1646 } 1647 1648 vl = val; 1649 1650 if (val_type == 1) { 1651 valip = (int *)kmem_alloc( 1652 (propcnt * sizeof (int)), KM_SLEEP); 1653 valbuf = (caddr_t)valip; 1654 while (vl) { 1655 tvl = vl; 1656 vl = vl->val_next; 1657 #ifdef DEBUG 1658 parse_debug(NULL, " %x", tvl->val.integer); 1659 #endif 1660 *valip = tvl->val.integer; 1661 valip++; 1662 kmem_free(tvl, sizeof (struct val_list)); 1663 } 1664 /* restore valip */ 1665 valip = (int *)valbuf; 1666 1667 /* create the property */ 1668 if (e_ddi_prop_update_int_array(DDI_DEV_T_NONE, devi, 1669 name, valip, propcnt) != DDI_PROP_SUCCESS) { 1670 kobj_file_err(CE_WARN, file, 1671 "cannot create property %s", name); 1672 } 1673 /* cleanup */ 1674 kmem_free(valip, (propcnt * sizeof (int))); 1675 } else if (val_type == 0) { 1676 valsp = (char **)kmem_alloc( 1677 ((propcnt + 1) * sizeof (char *)), KM_SLEEP); 1678 valbuf = (caddr_t)valsp; 1679 while (vl) { 1680 tvl = vl; 1681 vl = vl->val_next; 1682 #ifdef DEBUG 1683 parse_debug(NULL, " %s", tvl->val.string); 1684 #endif 1685 *valsp = tvl->val.string; 1686 valsp++; 1687 } 1688 /* terminate array with NULL */ 1689 *valsp = NULL; 1690 1691 /* restore valsp */ 1692 valsp = (char **)valbuf; 1693 1694 /* create the property */ 1695 if (e_ddi_prop_update_string_array(DDI_DEV_T_NONE, 1696 devi, name, valsp, propcnt) 1697 != DDI_PROP_SUCCESS) { 1698 kobj_file_err(CE_WARN, file, 1699 "cannot create property %s", name); 1700 } 1701 /* Clean up */ 1702 vl = val; 1703 while (vl) { 1704 tvl = vl; 1705 vl = vl->val_next; 1706 kmem_free(tvl->val.string, tvl->val_size); 1707 kmem_free(tvl, sizeof (struct val_list)); 1708 } 1709 kmem_free(valsp, ((propcnt + 1) * sizeof (char *))); 1710 } else { 1711 cmn_err(CE_WARN, "Invalid property type"); 1712 return; 1713 } 1714 } else { 1715 /* 1716 * No value was passed in with property so we will assume 1717 * it is a "boolean" property and create an integer 1718 * property with 0 value. 1719 */ 1720 #ifdef DEBUG 1721 parse_debug(NULL, "\n"); 1722 #endif 1723 if (e_ddi_prop_update_int(DDI_DEV_T_NONE, devi, name, 0) 1724 != DDI_PROP_SUCCESS) { 1725 kobj_file_err(CE_WARN, file, 1726 "cannot create property %s", name); 1727 } 1728 } 1729 kmem_free(name, strlen(name) + 1); 1730 } 1731 1732 static char omit_err[] = "(the ';' may have been omitted on previous spec!)"; 1733 static char prnt_err[] = "'parent' property already specified"; 1734 static char nm_err[] = "'name' property already specified"; 1735 static char class_err[] = "'class' property already specified"; 1736 1737 typedef enum { 1738 hwc_begin, parent, drvname, drvclass, prop, 1739 parent_equals, name_equals, drvclass_equals, 1740 parent_equals_string, name_equals_string, 1741 drvclass_equals_string, 1742 prop_equals, prop_equals_string, prop_equals_integer, 1743 prop_equals_string_comma, prop_equals_integer_comma 1744 } hwc_state_t; 1745 1746 static struct hwc_spec * 1747 get_hwc_spec(struct _buf *file, char *tokbuf, size_t linesize) 1748 { 1749 char *prop_name, *string, *class_string; 1750 token_t token; 1751 struct hwc_spec *hwcp; 1752 struct dev_info *devi; 1753 struct val_list *val_list; 1754 hwc_state_t state; 1755 u_longlong_t ival; 1756 1757 hwcp = kmem_zalloc(sizeof (*hwcp), KM_SLEEP); 1758 devi = kmem_zalloc(sizeof (*devi), KM_SLEEP); 1759 1760 state = hwc_begin; 1761 token = NAME; 1762 prop_name = NULL; 1763 val_list = NULL; 1764 string = NULL; 1765 do { 1766 #ifdef DEBUG 1767 parse_debug(NULL, "state 0x%x\n", state); 1768 #endif 1769 switch (token) { 1770 case NAME: 1771 switch (state) { 1772 case prop: 1773 case prop_equals_string: 1774 case prop_equals_integer: 1775 make_prop(file, (dev_info_t *)devi, 1776 prop_name, val_list); 1777 prop_name = NULL; 1778 val_list = NULL; 1779 /*FALLTHROUGH*/ 1780 case hwc_begin: 1781 if (strcmp(tokbuf, "PARENT") == 0 || 1782 strcmp(tokbuf, "parent") == 0) { 1783 state = parent; 1784 } else if (strcmp(tokbuf, "NAME") == 0 || 1785 strcmp(tokbuf, "name") == 0) { 1786 state = drvname; 1787 } else if (strcmp(tokbuf, "CLASS") == 0 || 1788 strcmp(tokbuf, "class") == 0) { 1789 state = drvclass; 1790 prop_name = kmem_alloc(strlen(tokbuf) + 1791 1, KM_SLEEP); 1792 (void) strcpy(prop_name, tokbuf); 1793 } else { 1794 state = prop; 1795 prop_name = kmem_alloc(strlen(tokbuf) + 1796 1, KM_SLEEP); 1797 (void) strcpy(prop_name, tokbuf); 1798 } 1799 break; 1800 default: 1801 kobj_file_err(CE_WARN, file, tok_err, tokbuf); 1802 } 1803 break; 1804 case EQUALS: 1805 switch (state) { 1806 case drvname: 1807 state = name_equals; 1808 break; 1809 case parent: 1810 state = parent_equals; 1811 break; 1812 case drvclass: 1813 state = drvclass_equals; 1814 break; 1815 case prop: 1816 state = prop_equals; 1817 break; 1818 default: 1819 kobj_file_err(CE_WARN, file, tok_err, tokbuf); 1820 } 1821 break; 1822 case STRING: 1823 string = kmem_alloc(strlen(tokbuf) + 1, KM_SLEEP); 1824 (void) strcpy(string, tokbuf); 1825 switch (state) { 1826 case name_equals: 1827 if (ddi_get_name((dev_info_t *)devi)) { 1828 kobj_file_err(CE_WARN, file, "%s %s", 1829 nm_err, omit_err); 1830 goto bad; 1831 } 1832 devi->devi_name = string; 1833 string = NULL; 1834 state = hwc_begin; 1835 break; 1836 case parent_equals: 1837 if (hwcp->hwc_parent_name) { 1838 kobj_file_err(CE_WARN, file, "%s %s", 1839 prnt_err, omit_err); 1840 goto bad; 1841 } 1842 hwcp->hwc_parent_name = string; 1843 string = NULL; 1844 state = hwc_begin; 1845 break; 1846 case drvclass_equals: 1847 if (hwcp->hwc_class_name) { 1848 kobj_file_err(CE_WARN, file, class_err); 1849 goto bad; 1850 } 1851 class_string = kmem_alloc(strlen(string) + 1, 1852 KM_SLEEP); 1853 (void) strcpy(class_string, string); 1854 hwcp->hwc_class_name = class_string; 1855 /*FALLTHROUGH*/ 1856 case prop_equals: 1857 case prop_equals_string_comma: 1858 add_val(&val_list, 0, string); 1859 string = NULL; 1860 state = prop_equals_string; 1861 break; 1862 default: 1863 kobj_file_err(CE_WARN, file, tok_err, tokbuf); 1864 } 1865 break; 1866 case HEXVAL: 1867 case DECVAL: 1868 switch (state) { 1869 case prop_equals: 1870 case prop_equals_integer_comma: 1871 (void) kobj_getvalue(tokbuf, &ival); 1872 add_val(&val_list, 1, (caddr_t)(uintptr_t)ival); 1873 state = prop_equals_integer; 1874 break; 1875 default: 1876 kobj_file_err(CE_WARN, file, tok_err, tokbuf); 1877 } 1878 break; 1879 case COMMA: 1880 switch (state) { 1881 case prop_equals_string: 1882 state = prop_equals_string_comma; 1883 break; 1884 case prop_equals_integer: 1885 state = prop_equals_integer_comma; 1886 break; 1887 default: 1888 kobj_file_err(CE_WARN, file, tok_err, tokbuf); 1889 } 1890 break; 1891 case NEWLINE: 1892 kobj_newline(file); 1893 break; 1894 case POUND: 1895 kobj_find_eol(file); 1896 break; 1897 case EOF: 1898 kobj_file_err(CE_WARN, file, "Unexpected EOF"); 1899 goto bad; 1900 default: 1901 kobj_file_err(CE_WARN, file, tok_err, tokbuf); 1902 goto bad; 1903 } 1904 } while ((token = kobj_lex(file, tokbuf, linesize)) != SEMICOLON); 1905 1906 switch (state) { 1907 case prop: 1908 case prop_equals_string: 1909 case prop_equals_integer: 1910 make_prop(file, (dev_info_t *)devi, 1911 prop_name, val_list); 1912 break; 1913 1914 case hwc_begin: 1915 break; 1916 default: 1917 kobj_file_err(CE_WARN, file, "Unexpected end of line"); 1918 break; 1919 } 1920 1921 /* copy 2 relevant members of devi to hwcp */ 1922 hwcp->hwc_devi_sys_prop_ptr = devi->devi_sys_prop_ptr; 1923 hwcp->hwc_devi_name = devi->devi_name; 1924 1925 kmem_free(devi, sizeof (struct dev_info)); 1926 1927 return (hwcp); 1928 1929 bad: 1930 if (string) { 1931 kmem_free(string, strlen(string) + 1); 1932 } 1933 if (hwcp) { 1934 hwc_free(hwcp); 1935 } 1936 if (devi) { 1937 if (devi->devi_name) 1938 kmem_free(devi->devi_name, 1939 strlen(devi->devi_name) + 1); 1940 kmem_free(devi, sizeof (struct dev_info)); 1941 } 1942 return (NULL); 1943 } 1944 1945 /* 1946 * This is the primary kernel interface to parse driver.conf files. 1947 * 1948 * Yet another bigstk thread handoff due to deep kernel stacks when booting 1949 * cache-only-clients. 1950 */ 1951 int 1952 hwc_parse(char *fname, struct par_list **pl, ddi_prop_t **props) 1953 { 1954 int ret; 1955 struct hwc_parse_mt *pltp = hwc_parse_mtalloc(fname, pl, props); 1956 1957 if (curthread != &t0) { 1958 (void) thread_create(NULL, DEFAULTSTKSZ * 2, 1959 hwc_parse_thread, pltp, 0, &p0, TS_RUN, maxclsyspri); 1960 sema_p(&pltp->sema); 1961 } else { 1962 pltp->rv = hwc_parse_now(fname, pl, props); 1963 } 1964 ret = pltp->rv; 1965 hwc_parse_mtfree(pltp); 1966 return (ret); 1967 } 1968 1969 /* 1970 * Calls to hwc_parse() are handled off to this routine in a separate 1971 * thread. 1972 */ 1973 static void 1974 hwc_parse_thread(struct hwc_parse_mt *pltp) 1975 { 1976 kmutex_t cpr_lk; 1977 callb_cpr_t cpr_i; 1978 1979 mutex_init(&cpr_lk, NULL, MUTEX_DEFAULT, NULL); 1980 CALLB_CPR_INIT(&cpr_i, &cpr_lk, callb_generic_cpr, "hwc_parse"); 1981 1982 /* 1983 * load and parse the .conf file 1984 * return the hwc_spec list (if any) to the creator of this thread 1985 */ 1986 pltp->rv = hwc_parse_now(pltp->name, pltp->pl, pltp->props); 1987 sema_v(&pltp->sema); 1988 mutex_enter(&cpr_lk); 1989 CALLB_CPR_EXIT(&cpr_i); 1990 mutex_destroy(&cpr_lk); 1991 thread_exit(); 1992 } 1993 1994 /* 1995 * allocate and initialize a hwc_parse thread control structure 1996 */ 1997 static struct hwc_parse_mt * 1998 hwc_parse_mtalloc(char *name, struct par_list **pl, ddi_prop_t **props) 1999 { 2000 struct hwc_parse_mt *pltp = kmem_zalloc(sizeof (*pltp), KM_SLEEP); 2001 2002 ASSERT(name != NULL); 2003 2004 pltp->name = kmem_alloc(strlen(name) + 1, KM_SLEEP); 2005 bcopy(name, pltp->name, strlen(name) + 1); 2006 pltp->pl = pl; 2007 pltp->props = props; 2008 2009 sema_init(&pltp->sema, 0, NULL, SEMA_DEFAULT, NULL); 2010 return (pltp); 2011 } 2012 2013 /* 2014 * free a hwc_parse thread control structure 2015 */ 2016 static void 2017 hwc_parse_mtfree(struct hwc_parse_mt *pltp) 2018 { 2019 sema_destroy(&pltp->sema); 2020 2021 kmem_free(pltp->name, strlen(pltp->name) + 1); 2022 kmem_free(pltp, sizeof (*pltp)); 2023 } 2024 2025 /* 2026 * hwc_parse -- parse an hwconf file. Ignore error lines and parse 2027 * as much as possible. 2028 */ 2029 static int 2030 hwc_parse_now(char *fname, struct par_list **pl, ddi_prop_t **props) 2031 { 2032 struct _buf *file; 2033 struct hwc_spec *hwcp; 2034 char *tokval; 2035 token_t token; 2036 2037 /* 2038 * Don't use kobj_open_path's use_moddir_suffix option, we only 2039 * expect to find conf files in the base module directory, not 2040 * an ISA-specific subdirectory. 2041 */ 2042 if ((file = kobj_open_path(fname, 1, 0)) == (struct _buf *)-1) { 2043 if (moddebug & MODDEBUG_ERRMSG) 2044 cmn_err(CE_WARN, "Cannot open %s", fname); 2045 return (-1); 2046 } 2047 2048 /* 2049 * Initialize variables 2050 */ 2051 tokval = kmem_alloc(MAX_HWC_LINESIZE, KM_SLEEP); 2052 2053 while ((token = kobj_lex(file, tokval, MAX_HWC_LINESIZE)) != EOF) { 2054 switch (token) { 2055 case POUND: 2056 /* 2057 * Skip comments. 2058 */ 2059 kobj_find_eol(file); 2060 break; 2061 case NAME: 2062 hwcp = get_hwc_spec(file, tokval, MAX_HWC_LINESIZE); 2063 if (hwcp == NULL) 2064 break; 2065 /* 2066 * No devi_name indicates global property. 2067 * Make sure parent and class not NULL. 2068 */ 2069 if (hwcp->hwc_devi_name == NULL) { 2070 if (hwcp->hwc_parent_name || 2071 hwcp->hwc_class_name) { 2072 kobj_file_err(CE_WARN, file, 2073 "missing name attribute"); 2074 hwc_free(hwcp); 2075 continue; 2076 } 2077 /* Add to global property list */ 2078 add_props(hwcp, props); 2079 break; 2080 } 2081 2082 /* 2083 * This is a node spec, either parent or class 2084 * must be specified. 2085 */ 2086 if ((hwcp->hwc_parent_name == NULL) && 2087 (hwcp->hwc_class_name == NULL)) { 2088 kobj_file_err(CE_WARN, file, 2089 "missing parent or class attribute"); 2090 hwc_free(hwcp); 2091 continue; 2092 } 2093 2094 /* add to node spec list */ 2095 add_spec(hwcp, pl); 2096 break; 2097 case NEWLINE: 2098 kobj_newline(file); 2099 break; 2100 default: 2101 kobj_file_err(CE_WARN, file, tok_err, tokval); 2102 break; 2103 } 2104 } 2105 /* 2106 * XXX - Check for clean termination. 2107 */ 2108 kmem_free(tokval, MAX_HWC_LINESIZE); 2109 kobj_close_file(file); 2110 return (0); /* always return success */ 2111 } 2112 2113 void 2114 make_aliases(struct bind **bhash) 2115 { 2116 enum { 2117 AL_NEW, AL_DRVNAME, AL_DRVNAME_COMMA, AL_ALIAS, AL_ALIAS_COMMA 2118 } state; 2119 2120 struct _buf *file; 2121 char tokbuf[MAXNAMELEN]; 2122 char drvbuf[MAXNAMELEN]; 2123 token_t token; 2124 major_t major; 2125 int done = 0; 2126 static char dupwarn[] = "!Driver alias \"%s\" conflicts with " 2127 "an existing driver name or alias."; 2128 2129 if ((file = kobj_open_file(dafile)) == (struct _buf *)-1) 2130 return; 2131 2132 state = AL_NEW; 2133 major = (major_t)-1; 2134 while (!done) { 2135 token = kobj_lex(file, tokbuf, sizeof (tokbuf)); 2136 switch (token) { 2137 case POUND: 2138 state = AL_NEW; 2139 kobj_find_eol(file); 2140 break; 2141 case NAME: 2142 case STRING: 2143 switch (state) { 2144 case AL_NEW: 2145 (void) strcpy(drvbuf, tokbuf); 2146 state = AL_DRVNAME; 2147 break; 2148 case AL_DRVNAME_COMMA: 2149 (void) strcat(drvbuf, tokbuf); 2150 state = AL_DRVNAME; 2151 break; 2152 case AL_ALIAS_COMMA: 2153 (void) strcat(drvbuf, tokbuf); 2154 state = AL_ALIAS; 2155 break; 2156 case AL_DRVNAME: 2157 major = mod_name_to_major(drvbuf); 2158 if (major == (major_t)-1) { 2159 kobj_find_eol(file); 2160 state = AL_NEW; 2161 } else { 2162 (void) strcpy(drvbuf, tokbuf); 2163 state = AL_ALIAS; 2164 } 2165 break; 2166 case AL_ALIAS: 2167 if (make_mbind(drvbuf, major, NULL, bhash) 2168 != 0) { 2169 cmn_err(CE_WARN, dupwarn, drvbuf); 2170 } 2171 break; 2172 } 2173 break; 2174 case COMMA: 2175 (void) strcat(drvbuf, tokbuf); 2176 switch (state) { 2177 case AL_DRVNAME: 2178 state = AL_DRVNAME_COMMA; 2179 break; 2180 case AL_ALIAS: 2181 state = AL_ALIAS_COMMA; 2182 break; 2183 default: 2184 kobj_file_err(CE_WARN, file, tok_err, tokbuf); 2185 } 2186 break; 2187 case EOF: 2188 done = 1; 2189 /*FALLTHROUGH*/ 2190 case NEWLINE: 2191 if (state == AL_ALIAS) { 2192 if (make_mbind(drvbuf, major, NULL, bhash) 2193 != 0) { 2194 cmn_err(CE_WARN, dupwarn, drvbuf); 2195 } 2196 } else if (state != AL_NEW) { 2197 kobj_file_err(CE_WARN, file, 2198 "Missing alias for %s", drvbuf); 2199 } 2200 2201 kobj_newline(file); 2202 state = AL_NEW; 2203 major = (major_t)-1; 2204 break; 2205 default: 2206 kobj_file_err(CE_WARN, file, tok_err, tokbuf); 2207 } 2208 } 2209 2210 kobj_close_file(file); 2211 } 2212 2213 2214 /* 2215 * It is called for parsing these files: 2216 * - /etc/path_to_inst 2217 * - /etc/name_to_major 2218 * - /etc/name_to_sysnum 2219 * A callback "int (*line_parser)(char *, int, char *, struct bind **)" 2220 * is invoked for each line of the file. 2221 * The callback can inhash the entry into a hashtable by supplying 2222 * a pre-allocated hashtable in "struct bind **hashtab". 2223 */ 2224 int 2225 read_binding_file(char *bindfile, struct bind **hashtab, 2226 int (*line_parser)(char *, int, char *, struct bind **)) 2227 { 2228 enum { 2229 B_NEW, B_NAME, B_VAL, B_BIND_NAME 2230 } state; 2231 struct _buf *file; 2232 char tokbuf[MAXNAMELEN]; 2233 token_t token; 2234 int maxnum = 0; 2235 char *bind_name = NULL, *name = NULL, *bn = NULL; 2236 u_longlong_t val; 2237 int done = 0; 2238 2239 static char num_err[] = "Missing number on preceding line?"; 2240 static char dupwarn[] = "!The binding file entry \"%s %u\" conflicts " 2241 "with a previous entry"; 2242 2243 if (hashtab != NULL) { 2244 clear_binding_hash(hashtab); 2245 } 2246 2247 if ((file = kobj_open_file(bindfile)) == (struct _buf *)-1) 2248 panic("read_binding_file: %s file not found", bindfile); 2249 2250 state = B_NEW; 2251 2252 while (!done) { 2253 token = kobj_lex(file, tokbuf, sizeof (tokbuf)); 2254 2255 switch (token) { 2256 case POUND: 2257 state = B_NEW; 2258 kobj_find_eol(file); 2259 break; 2260 case NAME: 2261 case STRING: 2262 switch (state) { 2263 case B_NEW: 2264 /* 2265 * This case is for the first name and 2266 * possibly only name in an entry. 2267 */ 2268 ASSERT(name == NULL); 2269 name = kmem_alloc(strlen(tokbuf) + 1, KM_SLEEP); 2270 (void) strcpy(name, tokbuf); 2271 state = B_NAME; 2272 break; 2273 case B_VAL: 2274 /* 2275 * This case is for a second name, which 2276 * would be the binding name if the first 2277 * name was actually a generic name. 2278 */ 2279 ASSERT(bind_name == NULL); 2280 bind_name = kmem_alloc(strlen(tokbuf) + 1, 2281 KM_SLEEP); 2282 (void) strcpy(bind_name, tokbuf); 2283 state = B_BIND_NAME; 2284 break; 2285 default: 2286 kobj_file_err(CE_WARN, file, num_err); 2287 } 2288 break; 2289 case HEXVAL: 2290 case DECVAL: 2291 if (state != B_NAME) { 2292 kobj_file_err(CE_WARN, file, "Missing name?"); 2293 state = B_NEW; 2294 continue; 2295 } 2296 (void) kobj_getvalue(tokbuf, &val); 2297 if (val > (u_longlong_t)INT_MAX) { 2298 kobj_file_err(CE_WARN, file, 2299 "value %llu too large", val); 2300 state = B_NEW; 2301 continue; 2302 } 2303 state = B_VAL; 2304 break; 2305 case EOF: 2306 done = 1; 2307 /*FALLTHROUGH*/ 2308 case NEWLINE: 2309 if ((state == B_BIND_NAME) || (state == B_VAL)) { 2310 if (state == B_BIND_NAME) 2311 bn = bind_name; 2312 else 2313 bn = NULL; 2314 2315 if (line_parser != NULL) { 2316 if ((*line_parser)(name, (int)val, bn, 2317 hashtab) == 0) 2318 maxnum = MAX((int)val, maxnum); 2319 else 2320 kobj_file_err(CE_WARN, file, 2321 dupwarn, name, (uint_t)val); 2322 } 2323 } else if (state != B_NEW) 2324 kobj_file_err(CE_WARN, file, "Syntax error?"); 2325 2326 if (name) { 2327 kmem_free(name, strlen(name) + 1); 2328 name = NULL; 2329 } 2330 if (bind_name) { 2331 kmem_free(bind_name, strlen(bind_name) + 1); 2332 bind_name = NULL; 2333 } 2334 state = B_NEW; 2335 kobj_newline(file); 2336 break; 2337 default: 2338 kobj_file_err(CE_WARN, file, "Missing name/number?"); 2339 break; 2340 } 2341 } 2342 2343 ASSERT(name == NULL); /* any leaks? */ 2344 ASSERT(bind_name == NULL); 2345 2346 kobj_close_file(file); 2347 return (maxnum); 2348 } 2349 2350 /* 2351 * read_dacf_binding_file() 2352 * Read the /etc/dacf.conf file and build the dacf_rule_t database from it. 2353 * 2354 * The syntax of a line in the dacf.conf file is: 2355 * dev-spec [module:]op-set operation options [config-args]; 2356 * 2357 * Where: 2358 * 1. dev-spec is of the format: name="data" 2359 * 2. operation is the operation that this rule matches. (i.e. pre-detach) 2360 * 3. options is a comma delimited list of options (i.e. debug,foobar) 2361 * 4. config-data is a whitespace delimited list of the format: name="data" 2362 */ 2363 int 2364 read_dacf_binding_file(char *filename) 2365 { 2366 enum { 2367 DACF_BEGIN, 2368 /* minor_nodetype="ddi_mouse:serial" */ 2369 DACF_NT_SPEC, DACF_NT_EQUALS, DACF_NT_DATA, 2370 /* consconfig:mouseconfig */ 2371 DACF_MN_MODNAME, DACF_MN_COLON, DACF_MN_OPSET, 2372 /* op */ 2373 DACF_OP_NAME, 2374 /* [ option1, option2, option3... | - ] */ 2375 DACF_OPT_OPTION, DACF_OPT_COMMA, DACF_OPT_END, 2376 /* argname1="argval1" argname2="argval2" ... */ 2377 DACF_OPARG_SPEC, DACF_OPARG_EQUALS, DACF_OPARG_DATA, 2378 DACF_ERR, DACF_ERR_NEWLINE, DACF_COMMENT 2379 } state = DACF_BEGIN; 2380 2381 struct _buf *file; 2382 char *fname; 2383 token_t token; 2384 2385 char tokbuf[MAXNAMELEN]; 2386 char mn_modname_buf[MAXNAMELEN], *mn_modnamep = NULL; 2387 char mn_opset_buf[MAXNAMELEN], *mn_opsetp = NULL; 2388 char nt_data_buf[MAXNAMELEN], *nt_datap = NULL; 2389 char arg_spec_buf[MAXNAMELEN]; 2390 2391 uint_t opts = 0; 2392 dacf_devspec_t nt_spec_type = DACF_DS_ERROR; 2393 2394 dacf_arg_t *arg_list = NULL; 2395 dacf_opid_t opid = DACF_OPID_ERROR; 2396 int done = 0; 2397 2398 static char w_syntax[] = "'%s' unexpected"; 2399 static char w_equals[] = "'=' is illegal in the current context"; 2400 static char w_baddevspec[] = "device specification '%s' unrecognized"; 2401 static char w_badop[] = "operation '%s' unrecognized"; 2402 static char w_badopt[] = "option '%s' unrecognized, ignoring"; 2403 static char w_newline[] = "rule is incomplete"; 2404 static char w_insert[] = "failed to register rule"; 2405 static char w_comment[] = "'#' not allowed except at start of line"; 2406 static char w_dupargs[] = 2407 "argument '%s' duplicates a previous argument, skipping"; 2408 static char w_nt_empty[] = "empty device specification not allowed"; 2409 2410 if (filename == NULL) { 2411 fname = dacffile; /* default binding file */ 2412 } else { 2413 fname = filename; /* user specified */ 2414 } 2415 2416 if ((file = kobj_open_file(fname)) == (struct _buf *)-1) { 2417 return (ENOENT); 2418 } 2419 2420 if (dacfdebug & DACF_DBG_MSGS) { 2421 printf("dacf debug: clearing rules database\n"); 2422 } 2423 2424 mutex_enter(&dacf_lock); 2425 dacf_clear_rules(); 2426 2427 if (dacfdebug & DACF_DBG_MSGS) { 2428 printf("dacf debug: parsing %s\n", fname); 2429 } 2430 2431 while (!done) { 2432 token = kobj_lex(file, tokbuf, sizeof (tokbuf)); 2433 2434 switch (token) { 2435 case POUND: /* comment line */ 2436 if (state != DACF_BEGIN) { 2437 kobj_file_err(CE_WARN, file, w_comment); 2438 state = DACF_ERR; 2439 break; 2440 } 2441 state = DACF_COMMENT; 2442 kobj_find_eol(file); 2443 break; 2444 2445 case EQUALS: 2446 switch (state) { 2447 case DACF_NT_SPEC: 2448 state = DACF_NT_EQUALS; 2449 break; 2450 case DACF_OPARG_SPEC: 2451 state = DACF_OPARG_EQUALS; 2452 break; 2453 default: 2454 kobj_file_err(CE_WARN, file, w_equals); 2455 state = DACF_ERR; 2456 } 2457 break; 2458 2459 case NAME: 2460 switch (state) { 2461 case DACF_BEGIN: 2462 nt_spec_type = dacf_get_devspec(tokbuf); 2463 if (nt_spec_type == DACF_DS_ERROR) { 2464 kobj_file_err(CE_WARN, file, 2465 w_baddevspec, tokbuf); 2466 state = DACF_ERR; 2467 break; 2468 } 2469 state = DACF_NT_SPEC; 2470 break; 2471 case DACF_NT_DATA: 2472 (void) strncpy(mn_modname_buf, tokbuf, 2473 sizeof (mn_modname_buf)); 2474 mn_modnamep = mn_modname_buf; 2475 state = DACF_MN_MODNAME; 2476 break; 2477 case DACF_MN_MODNAME: 2478 /* 2479 * This handles the 'optional' modname. 2480 * What we thought was the modname is really 2481 * the op-set. So it is copied over. 2482 */ 2483 ASSERT(mn_modnamep); 2484 (void) strncpy(mn_opset_buf, mn_modnamep, 2485 sizeof (mn_opset_buf)); 2486 mn_opsetp = mn_opset_buf; 2487 mn_modnamep = NULL; 2488 /* 2489 * Now, the token we just read is the opset, 2490 * so look that up and fill in opid 2491 */ 2492 if ((opid = dacf_get_op(tokbuf)) == 2493 DACF_OPID_ERROR) { 2494 kobj_file_err(CE_WARN, file, w_badop, 2495 tokbuf); 2496 state = DACF_ERR; 2497 break; 2498 } 2499 state = DACF_OP_NAME; 2500 break; 2501 case DACF_MN_COLON: 2502 (void) strncpy(mn_opset_buf, tokbuf, 2503 sizeof (mn_opset_buf)); 2504 mn_opsetp = mn_opset_buf; 2505 state = DACF_MN_OPSET; 2506 break; 2507 case DACF_MN_OPSET: 2508 if ((opid = dacf_get_op(tokbuf)) == 2509 DACF_OPID_ERROR) { 2510 kobj_file_err(CE_WARN, file, w_badop, 2511 tokbuf); 2512 state = DACF_ERR; 2513 break; 2514 } 2515 state = DACF_OP_NAME; 2516 break; 2517 case DACF_OP_NAME: 2518 /* 2519 * This case is just like DACF_OPT_COMMA below, 2520 * but we check for the sole '-' argument 2521 */ 2522 if (strcmp(tokbuf, "-") == 0) { 2523 state = DACF_OPT_END; 2524 break; 2525 } 2526 /*FALLTHROUGH*/ 2527 case DACF_OPT_COMMA: 2528 /* 2529 * figure out what option was given, but don't 2530 * make a federal case if invalid, just skip it 2531 */ 2532 if (dacf_getopt(tokbuf, &opts) != 0) { 2533 kobj_file_err(CE_WARN, file, w_badopt, 2534 tokbuf); 2535 } 2536 state = DACF_OPT_OPTION; 2537 break; 2538 case DACF_OPT_END: 2539 case DACF_OPT_OPTION: 2540 case DACF_OPARG_DATA: 2541 (void) strncpy(arg_spec_buf, tokbuf, 2542 sizeof (arg_spec_buf)); 2543 state = DACF_OPARG_SPEC; 2544 break; 2545 case DACF_OPARG_EQUALS: 2546 /* 2547 * Add the arg. Warn if it's a duplicate 2548 */ 2549 if (dacf_arg_insert(&arg_list, arg_spec_buf, 2550 tokbuf) != 0) { 2551 kobj_file_err(CE_WARN, file, w_dupargs, 2552 arg_spec_buf); 2553 } 2554 state = DACF_OPARG_DATA; 2555 break; 2556 default: 2557 kobj_file_err(CE_WARN, file, w_syntax, tokbuf); 2558 state = DACF_ERR; 2559 break; 2560 } 2561 break; 2562 2563 case STRING: 2564 /* 2565 * We need to check to see if the string has a \n in it. 2566 * If so, we had an unmatched " mark error, and lex has 2567 * already emitted an error for us, so we need to enter 2568 * the error state. Stupid lex. 2569 */ 2570 if (strchr(tokbuf, '\n')) { 2571 state = DACF_ERR; 2572 break; 2573 } 2574 switch (state) { 2575 case DACF_NT_EQUALS: 2576 if (strlen(tokbuf) == 0) { 2577 kobj_file_err(CE_WARN, file, 2578 w_nt_empty); 2579 state = DACF_ERR; 2580 break; 2581 } 2582 state = DACF_NT_DATA; 2583 nt_datap = nt_data_buf; 2584 (void) strncpy(nt_datap, tokbuf, 2585 sizeof (nt_data_buf)); 2586 break; 2587 case DACF_OPARG_EQUALS: 2588 /* 2589 * Add the arg. Warn if it's a duplicate 2590 */ 2591 if (dacf_arg_insert(&arg_list, arg_spec_buf, 2592 tokbuf) != 0) { 2593 kobj_file_err(CE_WARN, file, w_dupargs, 2594 arg_spec_buf); 2595 } 2596 state = DACF_OPARG_DATA; 2597 break; 2598 default: 2599 kobj_file_err(CE_WARN, file, w_syntax, tokbuf); 2600 state = DACF_ERR; 2601 break; 2602 } 2603 break; 2604 2605 case COMMA: 2606 switch (state) { 2607 case DACF_OPT_OPTION: 2608 state = DACF_OPT_COMMA; 2609 break; 2610 default: 2611 kobj_file_err(CE_WARN, file, w_syntax, ","); 2612 state = DACF_ERR; 2613 break; 2614 } 2615 break; 2616 2617 case COLON: 2618 if (state == DACF_MN_MODNAME) 2619 state = DACF_MN_COLON; 2620 else { 2621 kobj_file_err(CE_WARN, file, w_syntax, ":"); 2622 state = DACF_ERR; 2623 } 2624 break; 2625 2626 case EOF: 2627 done = 1; 2628 /*FALLTHROUGH*/ 2629 case NEWLINE: 2630 if (state == DACF_COMMENT || state == DACF_BEGIN) { 2631 state = DACF_BEGIN; 2632 kobj_newline(file); 2633 break; 2634 } 2635 if ((state != DACF_OPT_OPTION) && 2636 (state != DACF_OPARG_DATA) && 2637 (state != DACF_OPT_END)) { 2638 kobj_file_err(CE_WARN, file, w_newline); 2639 /* 2640 * We can't just do DACF_ERR here, since we'll 2641 * wind up eating the _next_ newline if so. 2642 */ 2643 state = DACF_ERR_NEWLINE; 2644 kobj_newline(file); 2645 break; 2646 } 2647 2648 /* 2649 * insert the rule. 2650 */ 2651 if (dacf_rule_insert(nt_spec_type, nt_datap, 2652 mn_modnamep, mn_opsetp, opid, opts, arg_list) < 0) { 2653 /* 2654 * We can't just do DACF_ERR here, since we'll 2655 * wind up eating the _next_ newline if so. 2656 */ 2657 kobj_file_err(CE_WARN, file, w_insert); 2658 state = DACF_ERR_NEWLINE; 2659 kobj_newline(file); 2660 break; 2661 } 2662 2663 state = DACF_BEGIN; 2664 kobj_newline(file); 2665 break; 2666 2667 default: 2668 kobj_file_err(CE_WARN, file, w_syntax, tokbuf); 2669 break; 2670 } /* switch */ 2671 2672 /* 2673 * Clean up after ourselves, either after a line has terminated 2674 * successfully or because of a syntax error; or when we reach 2675 * EOF (remember, we may reach EOF without being 'done' with 2676 * handling a particular line). 2677 */ 2678 if (state == DACF_ERR) { 2679 kobj_find_eol(file); 2680 } 2681 if ((state == DACF_BEGIN) || (state == DACF_ERR) || 2682 (state == DACF_ERR_NEWLINE) || done) { 2683 nt_datap = NULL; 2684 mn_modnamep = mn_opsetp = NULL; 2685 opts = 0; 2686 opid = DACF_OPID_ERROR; 2687 nt_spec_type = DACF_DS_ERROR; 2688 dacf_arglist_delete(&arg_list); 2689 state = DACF_BEGIN; 2690 } 2691 } /* while */ 2692 2693 if (dacfdebug & DACF_DBG_MSGS) { 2694 printf("\ndacf debug: done!\n"); 2695 } 2696 2697 mutex_exit(&dacf_lock); 2698 2699 kobj_close_file(file); 2700 return (0); 2701 } 2702 2703 void 2704 lock_hw_class_list() 2705 { 2706 mutex_enter(&hcl_lock); 2707 } 2708 2709 void 2710 unlock_hw_class_list() 2711 { 2712 mutex_exit(&hcl_lock); 2713 } 2714 2715 void 2716 add_class(char *exporter, char *class) 2717 { 2718 struct hwc_class *hcl; 2719 2720 /* 2721 * If exporter's major is not registered in /etc/name_to_major, 2722 * don't update hwc_class, but just return here. 2723 */ 2724 if (ddi_name_to_major(exporter) >= devcnt) { 2725 cmn_err(CE_WARN, "No major number for driver %s" 2726 " in class %s", exporter, class); 2727 return; 2728 } 2729 hcl = kmem_zalloc(sizeof (struct hwc_class), KM_SLEEP); 2730 hcl->class_exporter = kmem_alloc(strlen(exporter) + 1, KM_SLEEP); 2731 hcl->class_name = kmem_alloc(strlen(class) + 1, KM_SLEEP); 2732 (void) strcpy(hcl->class_exporter, exporter); 2733 (void) strcpy(hcl->class_name, class); 2734 lock_hw_class_list(); 2735 hcl->class_next = hcl_head; 2736 hcl_head = hcl; 2737 unlock_hw_class_list(); 2738 } 2739 2740 /* 2741 * Return the number of classes exported. If buf is not NULL, fill in 2742 * the array of the class names as well. 2743 * 2744 * Caller must hold hcl_lock to ensure the class list unmodified while 2745 * it is accessed. A typical caller will get a count first and then 2746 * allocate buf. The lock should be held by the caller. 2747 */ 2748 int 2749 get_class(const char *exporter, char **buf) 2750 { 2751 int n = 0; 2752 struct hwc_class *hcl; 2753 2754 ASSERT(mutex_owned(&hcl_lock)); 2755 for (hcl = hcl_head; hcl != NULL; hcl = hcl->class_next) { 2756 if (strcmp(exporter, hcl->class_exporter) == 0) { 2757 if (buf) 2758 buf[n] = hcl->class_name; 2759 ++n; 2760 } 2761 } 2762 2763 return (n); 2764 } 2765 2766 void 2767 read_class_file(void) 2768 { 2769 struct _buf *file; 2770 struct hwc_class *hcl, *hcl1; 2771 char tokbuf[MAXNAMELEN]; 2772 enum { 2773 C_BEGIN, C_EXPORTER, C_END 2774 } state; 2775 token_t token; 2776 int done = 0; 2777 char *exporter = NULL, *class = NULL, *name = NULL; 2778 2779 if (hcl_head != NULL) { 2780 hcl = hcl_head; 2781 while (hcl != NULL) { 2782 kmem_free(hcl->class_exporter, 2783 strlen(hcl->class_exporter) + 1); 2784 hcl1 = hcl; 2785 hcl = hcl->class_next; 2786 kmem_free(hcl1, sizeof (struct hwc_class)); 2787 } 2788 hcl_head = NULL; 2789 } 2790 2791 if ((file = kobj_open_file(class_file)) == (struct _buf *)-1) 2792 return; 2793 2794 state = C_BEGIN; 2795 while (!done) { 2796 token = kobj_lex(file, tokbuf, sizeof (tokbuf)); 2797 2798 switch (token) { 2799 case POUND: 2800 kobj_find_eol(file); 2801 break; 2802 case NAME: 2803 case STRING: 2804 name = kmem_alloc(strlen(tokbuf) + 1, KM_SLEEP); 2805 (void) strcpy(name, tokbuf); 2806 switch (state) { 2807 case C_BEGIN: 2808 exporter = name; 2809 state = C_EXPORTER; 2810 break; 2811 case C_EXPORTER: 2812 class = name; 2813 add_class(exporter, class); 2814 state = C_END; 2815 break; 2816 case C_END: 2817 kobj_file_err(CE_WARN, file, 2818 "Extra noise after entry"); 2819 kmem_free(name, strlen(name) + 1); 2820 kobj_find_eol(file); 2821 break; 2822 } /* End Switch */ 2823 break; 2824 case EOF: 2825 done = 1; 2826 /*FALLTHROUGH*/ 2827 case NEWLINE: 2828 kobj_newline(file); 2829 if (state == C_EXPORTER) 2830 kobj_file_err(CE_WARN, file, 2831 "Partial entry ignored"); 2832 state = C_BEGIN; 2833 if (exporter) 2834 kmem_free(exporter, strlen(exporter) + 1); 2835 if (class) 2836 kmem_free(class, strlen(class) + 1); 2837 exporter = NULL; 2838 class = NULL; 2839 break; 2840 default: 2841 kobj_file_err(CE_WARN, file, tok_err, tokbuf); 2842 break; 2843 } 2844 } 2845 kobj_close_file(file); 2846 } 2847 2848 /* 2849 * Given par_list, get a list of parent major number 2850 */ 2851 int 2852 impl_parlist_to_major(struct par_list *pl, char parents[]) 2853 { 2854 struct hwc_spec *hwcp; 2855 struct hwc_class *hcl; 2856 major_t major; 2857 int nmajor = 0; 2858 extern int devcnt; 2859 2860 for (; pl != NULL; pl = pl->par_next) { 2861 if ((pl->par_major < devcnt) && (parents[pl->par_major] == 0)) { 2862 parents[pl->par_major] = 1; 2863 nmajor++; 2864 continue; 2865 } 2866 2867 /* parent specs cannot be mapped to a driver */ 2868 if (pl->par_major != (major_t)-1) 2869 continue; 2870 2871 /* class spec */ 2872 hwcp = pl->par_specs; 2873 ASSERT(hwcp->hwc_class_name); 2874 ASSERT(hwcp->hwc_parent_name == NULL); 2875 2876 for (hcl = hcl_head; hcl != NULL; hcl = hcl->class_next) { 2877 if (strcmp(hwcp->hwc_class_name, hcl->class_name) != 0) 2878 continue; 2879 major = ddi_name_to_major(hcl->class_exporter); 2880 ASSERT(major != (major_t)-1); 2881 if (parents[major] == 0) { 2882 parents[major] = 1; 2883 nmajor++; 2884 } 2885 } 2886 } 2887 return (nmajor); 2888 } 2889 2890 /* 2891 * delete a parent list and all its hwc specs 2892 */ 2893 void 2894 impl_delete_par_list(struct par_list *pl) 2895 { 2896 struct par_list *saved_pl; 2897 struct hwc_spec *hp, *hp1; 2898 2899 while (pl) { 2900 hp = pl->par_specs; 2901 while (hp) { 2902 hp1 = hp; 2903 hp = hp->hwc_next; 2904 hwc_free(hp1); 2905 } 2906 saved_pl = pl; 2907 pl = pl->par_next; 2908 kmem_free(saved_pl, sizeof (*saved_pl)); 2909 } 2910 } 2911 2912 #if defined(_PSM_MODULES) 2913 void 2914 open_mach_list(void) 2915 { 2916 struct _buf *file; 2917 char tokbuf[MAXNAMELEN]; 2918 token_t token; 2919 struct psm_mach *machp; 2920 2921 if ((file = kobj_open_file(mach_file)) == (struct _buf *)-1) 2922 return; 2923 2924 while ((token = kobj_lex(file, tokbuf, sizeof (tokbuf))) != EOF) { 2925 switch (token) { 2926 case POUND: 2927 kobj_find_eol(file); 2928 break; 2929 case NAME: 2930 case STRING: 2931 machp = kmem_alloc((sizeof (struct psm_mach) + 2932 strlen(tokbuf) + 1), KM_SLEEP); 2933 machp->m_next = pmach_head; 2934 machp->m_machname = (char *)(machp + 1); 2935 (void) strcpy(machp->m_machname, tokbuf); 2936 pmach_head = machp; 2937 break; 2938 case NEWLINE: 2939 kobj_newline(file); 2940 break; 2941 default: 2942 kobj_file_err(CE_WARN, file, tok_err, tokbuf); 2943 break; 2944 } 2945 } 2946 kobj_close_file(file); 2947 } 2948 2949 void * 2950 get_next_mach(void *handle, char *buf) 2951 { 2952 struct psm_mach *machp; 2953 2954 machp = (struct psm_mach *)handle; 2955 if (machp) 2956 machp = machp->m_next; 2957 else 2958 machp = pmach_head; 2959 if (machp) 2960 (void) strcpy(buf, machp->m_machname); 2961 return (machp); 2962 } 2963 2964 void 2965 close_mach_list(void) 2966 { 2967 struct psm_mach *machp; 2968 2969 while (pmach_head) { 2970 machp = pmach_head; 2971 pmach_head = machp->m_next; 2972 kmem_free(machp, sizeof (struct psm_mach) + 2973 strlen(machp->m_machname) + 1); 2974 } 2975 } 2976 #endif /* _PSM_MODULES */ 2977 2978 #if defined(_RTC_CONFIG) 2979 /* 2980 * Read in the 'zone_lag' value from the rtc configuration file, 2981 * and return the value to the caller. Note that there is other information 2982 * in this file (zone_info), so we ignore unknown values. We do spit out 2983 * warnings if the line doesn't begin with an identifier, or if we don't find 2984 * exactly "zone_lag=value". No one should be editing this file by hand 2985 * (use the rtc command instead), but it's better to be careful. 2986 */ 2987 long 2988 process_rtc_config_file(void) 2989 { 2990 enum { 2991 R_NEW, R_NAME, R_EQUALS, R_VALUE 2992 } state; 2993 struct _buf *file; 2994 char tokbuf[MAXNAMELEN]; 2995 token_t token; 2996 long zone_lag = 0; 2997 u_longlong_t tmp; 2998 int done = 0; 2999 3000 if ((file = kobj_open_file(rtc_config_file)) == (struct _buf *)-1) 3001 return (0); 3002 3003 state = R_NEW; 3004 3005 while (!done) { 3006 token = kobj_lex(file, tokbuf, sizeof (tokbuf)); 3007 3008 switch (token) { 3009 case POUND: 3010 kobj_find_eol(file); 3011 break; 3012 case NAME: 3013 case STRING: 3014 if (state == R_NEW) { 3015 if (strcmp(tokbuf, "zone_lag") == 0) 3016 state = R_NAME; 3017 else 3018 kobj_find_eol(file); /* Ignore */ 3019 } else 3020 kobj_file_err(CE_WARN, file, tok_err, tokbuf); 3021 break; 3022 case EQUALS: 3023 if (state == R_NAME) 3024 state = R_EQUALS; 3025 else 3026 kobj_file_err(CE_WARN, file, tok_err, tokbuf); 3027 break; 3028 case DECVAL: 3029 if (state == R_EQUALS) { 3030 if (kobj_getvalue(tokbuf, &tmp) != 0) 3031 kobj_file_err(CE_WARN, file, 3032 "Bad value %s for zone_lag", 3033 tokbuf); 3034 else 3035 zone_lag = (long)tmp; 3036 state = R_VALUE; 3037 } else 3038 kobj_file_err(CE_WARN, file, tok_err, tokbuf); 3039 break; 3040 case EOF: 3041 done = 1; 3042 /*FALLTHROUGH*/ 3043 case NEWLINE: 3044 if (state != R_NEW && state != R_VALUE) 3045 kobj_file_err(CE_WARN, file, 3046 "Partial zone_lag entry ignored"); 3047 kobj_newline(file); 3048 state = R_NEW; 3049 break; 3050 default: 3051 kobj_file_err(CE_WARN, file, tok_err, tokbuf); 3052 break; 3053 } 3054 } 3055 kobj_close_file(file); 3056 return (zone_lag); 3057 } 3058 #endif /* _RTC_CONFIG */ 3059 3060 3061 /* 3062 * Append node spec to the end of par_list 3063 */ 3064 static void 3065 append(struct hwc_spec *spec, struct par_list *par) 3066 { 3067 struct hwc_spec *hwc, *last; 3068 3069 ASSERT(par->par_specs); 3070 for (hwc = par->par_specs; hwc; hwc = hwc->hwc_next) 3071 last = hwc; 3072 last->hwc_next = spec; 3073 } 3074 3075 /* 3076 * Given a parent=/full-pathname, see if the platform 3077 * can resolve the pathname to driver, otherwise, try 3078 * the leaf node name. 3079 */ 3080 static major_t 3081 get_major(char *parent) 3082 { 3083 major_t major = (major_t)-1; 3084 char *tmp, *driver = NULL; 3085 3086 if (*parent == '/') 3087 major = path_to_major(parent); 3088 3089 if (major != (major_t)-1) 3090 return (major); 3091 3092 /* extract the name between '/' and '@' */ 3093 if (*parent == '/') 3094 driver = strrchr(parent, '/') + 1; 3095 else 3096 driver = parent; 3097 if ((tmp = strchr(driver, '@')) != NULL) 3098 *tmp = '\0'; 3099 major = ddi_name_to_major(driver); 3100 if (tmp) 3101 *tmp = '@'; 3102 return (major); 3103 } 3104 3105 /* 3106 * Chain together specs whose parent's module name is the same. 3107 */ 3108 static void 3109 add_spec(struct hwc_spec *spec, struct par_list **par) 3110 { 3111 major_t maj; 3112 struct par_list *pl, *par_last = NULL; 3113 char *parent = spec->hwc_parent_name; 3114 3115 ASSERT(parent || spec->hwc_class_name); 3116 3117 /* 3118 * If given a parent=/full-pathname, see if the platform 3119 * can resolve the pathname to driver, otherwise, try 3120 * the leaf node name. 3121 * 3122 * If parent=/full-pathname doesn't resolve to a driver, 3123 * this could be cause by DR removal of the device. 3124 * We put it on the major=-2 list in case the device 3125 * is brought back into the system by DR. 3126 */ 3127 if (parent) { 3128 maj = get_major(parent); 3129 if (maj == (major_t)-1) { 3130 if ((*parent == '/') && 3131 (strncmp(parent, "/pseudo", 7) != 0)) { 3132 maj = (major_t)-2; 3133 } else { 3134 cmn_err(CE_WARN, 3135 "add_spec: No major number for %s", 3136 parent); 3137 hwc_free(spec); 3138 return; 3139 } 3140 } 3141 } else 3142 maj = (major_t)-1; 3143 3144 /* 3145 * Scan the list looking for a matching parent. 3146 */ 3147 for (pl = *par; pl; pl = pl->par_next) { 3148 if (maj == pl->par_major) { 3149 append(spec, pl); 3150 return; 3151 } 3152 par_last = pl; 3153 } 3154 3155 /* 3156 * Didn't find a match on the list. Make a new parent list. 3157 */ 3158 pl = kmem_zalloc(sizeof (*pl), KM_SLEEP); 3159 pl->par_major = maj; 3160 pl->par_specs = spec; 3161 if (*par == NULL) { /* null par list */ 3162 *par = pl; 3163 return; 3164 } 3165 /* put "class=" entries last (lower pri if dups) */ 3166 if (maj == (major_t)-1) { 3167 par_last->par_next = pl; 3168 return; 3169 } 3170 3171 /* ensure unresolved "parent=/full-path" goes first */ 3172 if ((maj != (major_t)-2) && ((*par)->par_major == (major_t)-2)) 3173 par = &(*par)->par_next; 3174 pl->par_next = *par; 3175 *par = pl; 3176 } 3177 3178 /* 3179 * Add property spec to property list in original order 3180 */ 3181 static void 3182 add_props(struct hwc_spec *spec, ddi_prop_t **props) 3183 { 3184 ASSERT(spec->hwc_devi_name == NULL); 3185 3186 if (spec->hwc_devi_sys_prop_ptr) { 3187 while (*props) 3188 props = &(*props)->prop_next; 3189 *props = spec->hwc_devi_sys_prop_ptr; 3190 3191 /* remove these properties from the spec */ 3192 spec->hwc_devi_sys_prop_ptr = NULL; 3193 } 3194 hwc_free(spec); 3195 } 3196