1 /* 2 * Copyright (c) 1998 Michael Smith <msmith@freebsd.org> 3 * All rights reserved. 4 * 5 * Redistribution and use in source and binary forms, with or without 6 * modification, are permitted provided that the following conditions 7 * are met: 8 * 1. Redistributions of source code must retain the above copyright 9 * notice, this list of conditions and the following disclaimer. 10 * 2. Redistributions in binary form must reproduce the above copyright 11 * notice, this list of conditions and the following disclaimer in the 12 * documentation and/or other materials provided with the distribution. 13 * 14 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 15 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 16 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 17 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 18 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 19 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 20 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 21 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 22 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 23 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 24 * SUCH DAMAGE. 25 */ 26 27 #include <sys/cdefs.h> 28 29 /* 30 * file/module function dispatcher, support, etc. 31 */ 32 33 #include <stand.h> 34 #include <string.h> 35 #include <sys/param.h> 36 #include <sys/linker.h> 37 #include <sys/module.h> 38 #include <sys/queue.h> 39 #include <sys/stdint.h> 40 #include <sys/tem_impl.h> 41 #include <sys/font.h> 42 #include <sys/sha1.h> 43 #include <libcrypto.h> 44 45 #include "bootstrap.h" 46 47 #if defined(EFI) 48 #define PTOV(pa) ((void *)pa) 49 #else 50 #include "../i386/btx/lib/btxv86.h" 51 #endif 52 53 #define MDIR_REMOVED 0x0001 54 #define MDIR_NOHINTS 0x0002 55 56 struct moduledir { 57 char *d_path; /* path of modules directory */ 58 uchar_t *d_hints; /* content of linker.hints file */ 59 int d_hintsz; /* size of hints data */ 60 int d_flags; 61 STAILQ_ENTRY(moduledir) d_link; 62 }; 63 64 static int file_load(char *, vm_offset_t, struct preloaded_file **); 65 static int file_load_dependencies(struct preloaded_file *); 66 static char *file_search(const char *, const char **); 67 static struct kernel_module *file_findmodule(struct preloaded_file *, char *, 68 struct mod_depend *); 69 static int file_havepath(const char *); 70 static char *mod_searchmodule(char *, struct mod_depend *); 71 static void file_insert_tail(struct preloaded_file *); 72 static void file_remove(struct preloaded_file *); 73 struct file_metadata *metadata_next(struct file_metadata *, int); 74 static void moduledir_readhints(struct moduledir *); 75 static void moduledir_rebuild(void); 76 77 /* load address should be tweaked by first module loaded (kernel) */ 78 static vm_offset_t loadaddr = 0; 79 80 #if defined(LOADER_FDT_SUPPORT) 81 static const char *default_searchpath = "/boot/kernel;/boot/modules;/boot/dtb"; 82 #else 83 static const char *default_searchpath = "/platform/i86pc"; 84 #endif 85 86 static STAILQ_HEAD(, moduledir) moduledir_list = 87 STAILQ_HEAD_INITIALIZER(moduledir_list); 88 89 struct preloaded_file *preloaded_files = NULL; 90 91 static const char *kld_ext_list[] = { 92 ".ko", 93 "", 94 ".debug", 95 NULL 96 }; 97 98 99 /* 100 * load an object, either a disk file or code module. 101 * 102 * To load a file, the syntax is: 103 * 104 * load -t <type> <path> 105 * 106 * code modules are loaded as: 107 * 108 * load <path> <options> 109 */ 110 111 COMMAND_SET(load, "load", "load a kernel or module", command_load); 112 113 static int 114 command_load(int argc, char *argv[]) 115 { 116 char *typestr; 117 int dofile, dokld, ch, error; 118 119 dokld = dofile = 0; 120 optind = 1; 121 optreset = 1; 122 typestr = NULL; 123 if (argc == 1) { 124 command_errmsg = "no filename specified"; 125 return (CMD_CRIT); 126 } 127 while ((ch = getopt(argc, argv, "kt:")) != -1) { 128 switch (ch) { 129 case 'k': 130 dokld = 1; 131 break; 132 case 't': 133 typestr = optarg; 134 dofile = 1; 135 break; 136 case '?': 137 default: 138 /* getopt has already reported an error */ 139 return (CMD_OK); 140 } 141 } 142 argv += (optind - 1); 143 argc -= (optind - 1); 144 145 printf("Loading %s...\n", argv[1]); 146 /* 147 * Request to load a raw file? 148 */ 149 if (dofile) { 150 struct preloaded_file *fp; 151 152 if ((typestr == NULL) || (*typestr == 0)) { 153 command_errmsg = "invalid load type"; 154 return (CMD_CRIT); 155 } 156 157 if (file_findfile(argv[1], typestr) != NULL) { 158 (void) snprintf(command_errbuf, sizeof (command_errbuf), 159 "warning: file '%s' already loaded", argv[1]); 160 return (CMD_WARN); 161 } 162 163 fp = file_loadraw(argv[1], typestr, argc - 2, argv + 2, 1); 164 if (fp != NULL) 165 return (CMD_OK); 166 167 /* Failing to load mfs_root is never going to end well! */ 168 if (strcmp("mfs_root", typestr) == 0) 169 return (CMD_FATAL); 170 171 return (CMD_ERROR); 172 } 173 /* 174 * Do we have explicit KLD load ? 175 */ 176 if (dokld || file_havepath(argv[1])) { 177 error = mod_loadkld(argv[1], argc - 2, argv + 2); 178 if (error == EEXIST) { 179 (void) snprintf(command_errbuf, sizeof (command_errbuf), 180 "warning: KLD '%s' already loaded", argv[1]); 181 return (CMD_WARN); 182 } 183 184 return (error == 0 ? CMD_OK : CMD_CRIT); 185 } 186 /* 187 * Looks like a request for a module. 188 */ 189 error = mod_load(argv[1], NULL, argc - 2, argv + 2); 190 if (error == EEXIST) { 191 (void) snprintf(command_errbuf, sizeof (command_errbuf), 192 "warning: module '%s' already loaded", argv[1]); 193 return (CMD_WARN); 194 } 195 196 return (error == 0 ? CMD_OK : CMD_CRIT); 197 } 198 199 void 200 unload(void) 201 { 202 struct preloaded_file *fp; 203 204 while (preloaded_files != NULL) { 205 fp = preloaded_files; 206 preloaded_files = preloaded_files->f_next; 207 file_discard(fp); 208 } 209 loadaddr = 0; 210 (void) unsetenv("kernelname"); 211 } 212 213 COMMAND_SET(unload, "unload", "unload all modules", command_unload); 214 215 static int 216 command_unload(int argc __unused, char *argv[] __unused) 217 { 218 unload(); 219 return (CMD_OK); 220 } 221 222 COMMAND_SET(lsmod, "lsmod", "list loaded modules", command_lsmod); 223 224 static int 225 command_lsmod(int argc, char *argv[]) 226 { 227 struct preloaded_file *fp; 228 struct kernel_module *mp; 229 struct file_metadata *md; 230 char lbuf[80]; 231 int ch, verbose, hash, ret = 0; 232 233 verbose = 0; 234 hash = 0; 235 optind = 1; 236 optreset = 1; 237 while ((ch = getopt(argc, argv, "vs")) != -1) { 238 switch (ch) { 239 case 'v': 240 verbose = 1; 241 break; 242 case 's': 243 hash = 1; 244 break; 245 case '?': 246 default: 247 /* getopt has already reported an error */ 248 return (CMD_OK); 249 } 250 } 251 252 pager_open(); 253 for (fp = preloaded_files; fp; fp = fp->f_next) { 254 (void) snprintf(lbuf, sizeof (lbuf), " %p: ", 255 (void *) fp->f_addr); 256 (void) pager_output(lbuf); 257 (void) pager_output(fp->f_name); 258 (void) snprintf(lbuf, sizeof (lbuf), " (%s, 0x%lx)\n", 259 fp->f_type, (long)fp->f_size); 260 if (pager_output(lbuf)) 261 break; 262 if (fp->f_args != NULL) { 263 (void) pager_output(" args: "); 264 (void) pager_output(fp->f_args); 265 if (pager_output("\n")) 266 break; 267 if (strcmp(fp->f_type, "hash") == 0) { 268 size_t dsize; 269 270 (void) pager_output(" contents: "); 271 dsize = fp->f_size + 1; 272 if (sizeof (lbuf) < dsize) 273 dsize = sizeof (lbuf); 274 (void) strlcpy(lbuf, ptov(fp->f_addr), dsize); 275 if (pager_output(lbuf)) 276 break; 277 } 278 } 279 280 if (hash == 1) { 281 void *ptr = PTOV(fp->f_addr); 282 283 (void) pager_output(" hash: "); 284 sha1(ptr, fp->f_size, (uint8_t *)lbuf); 285 for (int i = 0; i < SHA1_DIGEST_LENGTH; i++) 286 printf("%02x", (int)(lbuf[i] & 0xff)); 287 if (pager_output("\n")) 288 break; 289 } 290 291 if (fp->f_modules) { 292 (void) pager_output(" modules: "); 293 for (mp = fp->f_modules; mp; mp = mp->m_next) { 294 (void) snprintf(lbuf, sizeof (lbuf), "%s.%d ", 295 mp->m_name, mp->m_version); 296 (void) pager_output(lbuf); 297 } 298 if (pager_output("\n")) 299 break; 300 } 301 if (verbose) { 302 /* 303 * XXX could add some formatting smarts here to 304 * display some better 305 */ 306 for (md = fp->f_metadata; md != NULL; 307 md = md->md_next) { 308 (void) snprintf(lbuf, sizeof (lbuf), 309 " 0x%04x, 0x%lx\n", 310 md->md_type, (long)md->md_size); 311 if ((ret = pager_output(lbuf))) 312 break; 313 } 314 } 315 if (ret != 0) 316 break; 317 } 318 pager_close(); 319 return (CMD_OK); 320 } 321 322 /* 323 * File level interface, functions file_* 324 */ 325 int 326 file_load(char *filename, vm_offset_t dest, struct preloaded_file **result) 327 { 328 static int last_file_format = 0; 329 struct preloaded_file *fp; 330 int error; 331 int i; 332 333 if (preloaded_files == NULL) 334 last_file_format = 0; 335 336 if (archsw.arch_loadaddr != NULL) 337 dest = archsw.arch_loadaddr(LOAD_RAW, filename, dest); 338 339 error = EFTYPE; 340 for (i = last_file_format, fp = NULL; 341 file_formats[i] && fp == NULL; i++) { 342 error = (file_formats[i]->l_load)(filename, dest, &fp); 343 if (error == 0) { 344 /* remember the loader */ 345 fp->f_loader = last_file_format = i; 346 *result = fp; 347 break; 348 } else if (last_file_format == i && i != 0) { 349 /* Restart from the beginning */ 350 i = -1; 351 last_file_format = 0; 352 fp = NULL; 353 continue; 354 } 355 if (error == EFTYPE) 356 continue; /* Unknown to this handler? */ 357 if (error) { 358 (void) snprintf(command_errbuf, sizeof (command_errbuf), 359 "can't load file '%s': %s", filename, 360 strerror(error)); 361 break; 362 } 363 } 364 return (error); 365 } 366 367 static int 368 file_load_dependencies(struct preloaded_file *base_file) 369 { 370 struct file_metadata *md; 371 struct preloaded_file *fp; 372 struct mod_depend *verinfo; 373 struct kernel_module *mp; 374 char *dmodname; 375 int error; 376 377 md = file_findmetadata(base_file, MODINFOMD_DEPLIST); 378 if (md == NULL) 379 return (0); 380 error = 0; 381 do { 382 verinfo = (struct mod_depend *)md->md_data; 383 dmodname = (char *)(verinfo + 1); 384 if (file_findmodule(NULL, dmodname, verinfo) == NULL) { 385 printf("loading required module '%s'\n", dmodname); 386 error = mod_load(dmodname, verinfo, 0, NULL); 387 if (error) 388 break; 389 /* 390 * If module loaded via kld name which isn't listed 391 * in the linker.hints file, we should check if it have 392 * required version. 393 */ 394 mp = file_findmodule(NULL, dmodname, verinfo); 395 if (mp == NULL) { 396 (void) snprintf(command_errbuf, 397 sizeof (command_errbuf), 398 "module '%s' exists but with wrong version", 399 dmodname); 400 error = ENOENT; 401 break; 402 } 403 } 404 md = metadata_next(md, MODINFOMD_DEPLIST); 405 } while (md); 406 if (!error) 407 return (0); 408 /* Load failed; discard everything */ 409 while (base_file != NULL) { 410 fp = base_file; 411 base_file = base_file->f_next; 412 file_discard(fp); 413 } 414 return (error); 415 } 416 417 /* 418 * Calculate the size of the environment module. 419 * The environment is list of name=value C strings, ending with a '\0' byte. 420 */ 421 static size_t 422 env_get_size(void) 423 { 424 size_t size = 0; 425 struct env_var *ep; 426 427 /* Traverse the environment. */ 428 for (ep = environ; ep != NULL; ep = ep->ev_next) { 429 size += strlen(ep->ev_name); 430 size++; /* "=" */ 431 if (ep->ev_value != NULL) 432 size += strlen(ep->ev_value); 433 size++; /* nul byte */ 434 } 435 size++; /* nul byte */ 436 return (size); 437 } 438 439 static void 440 module_hash(struct preloaded_file *fp, void *addr, size_t size) 441 { 442 uint8_t hash[SHA1_DIGEST_LENGTH]; 443 char ascii[2 * SHA1_DIGEST_LENGTH + 1]; 444 int i; 445 446 sha1(addr, size, hash); 447 for (i = 0; i < SHA1_DIGEST_LENGTH; i++) { 448 (void) snprintf(ascii + 2 * i, sizeof (ascii) - 2 * i, "%02x", 449 hash[i] & 0xff); 450 } 451 /* Out of memory here is not fatal issue. */ 452 (void) asprintf(&fp->f_args, "hash=%s", ascii); 453 } 454 455 /* 456 * Create virtual module for environment variables. 457 * This module should be created as late as possible before executing 458 * the OS kernel, or we may miss some environment variable updates. 459 */ 460 void 461 build_environment_module(void) 462 { 463 struct preloaded_file *fp; 464 size_t size; 465 char *name = "environment"; 466 vm_offset_t laddr; 467 468 /* We can't load first */ 469 if (file_findfile(NULL, NULL) == NULL) { 470 printf("Can not load environment module: %s\n", 471 "the kernel is not loaded"); 472 return; 473 } 474 475 if (file_findfile(name, name) != NULL) { 476 printf("warning: '%s' is already loaded\n", name); 477 return; 478 } 479 480 tem_save_state(); /* Ask tem to save it's state in env. */ 481 size = env_get_size(); 482 483 fp = file_alloc(); 484 if (fp != NULL) { 485 fp->f_name = strdup(name); 486 fp->f_type = strdup(name); 487 } 488 489 if (fp == NULL || fp->f_name == NULL || fp->f_type == NULL) { 490 printf("Can not load environment module: %s\n", 491 "out of memory"); 492 file_discard(fp); 493 return; 494 } 495 496 497 if (archsw.arch_loadaddr != NULL) 498 loadaddr = archsw.arch_loadaddr(LOAD_MEM, &size, loadaddr); 499 500 if (loadaddr == 0) { 501 printf("Can not load environment module: %s\n", 502 "out of memory"); 503 file_discard(fp); 504 return; 505 } 506 507 laddr = bi_copyenv(loadaddr); 508 /* Looks OK so far; populate control structure */ 509 module_hash(fp, PTOV(loadaddr), laddr - loadaddr); 510 fp->f_loader = -1; 511 fp->f_addr = loadaddr; 512 fp->f_size = laddr - loadaddr; 513 514 /* recognise space consumption */ 515 loadaddr = laddr; 516 517 file_insert_tail(fp); 518 } 519 520 void 521 build_font_module(void) 522 { 523 bitmap_data_t *bd; 524 struct font *fd; 525 struct preloaded_file *fp; 526 size_t size; 527 uint32_t checksum; 528 int i; 529 char *name = "console-font"; 530 vm_offset_t laddr; 531 struct font_info fi; 532 struct fontlist *fl; 533 534 if (STAILQ_EMPTY(&fonts)) 535 return; 536 537 /* We can't load first */ 538 if (file_findfile(NULL, NULL) == NULL) { 539 printf("Can not load font module: %s\n", 540 "the kernel is not loaded"); 541 return; 542 } 543 544 if (file_findfile(name, name) != NULL) { 545 printf("warning: '%s' is already loaded\n", name); 546 return; 547 } 548 549 /* helper pointers */ 550 bd = NULL; 551 STAILQ_FOREACH(fl, &fonts, font_next) { 552 if (tems.ts_font.vf_width == fl->font_data->width && 553 tems.ts_font.vf_height == fl->font_data->height) { 554 /* 555 * Kernel does have better built in font. 556 */ 557 if (fl->font_flags == FONT_BUILTIN) 558 return; 559 560 bd = fl->font_data; 561 break; 562 } 563 } 564 if (bd == NULL) 565 return; 566 fd = bd->font; 567 568 fi.fi_width = fd->vf_width; 569 checksum = fi.fi_width; 570 fi.fi_height = fd->vf_height; 571 checksum += fi.fi_height; 572 fi.fi_bitmap_size = bd->uncompressed_size; 573 checksum += fi.fi_bitmap_size; 574 575 size = roundup2(sizeof (struct font_info), 8); 576 for (i = 0; i < VFNT_MAPS; i++) { 577 fi.fi_map_count[i] = fd->vf_map_count[i]; 578 checksum += fi.fi_map_count[i]; 579 size += fd->vf_map_count[i] * sizeof (struct font_map); 580 size += roundup2(size, 8); 581 } 582 size += bd->uncompressed_size; 583 584 fi.fi_checksum = -checksum; 585 586 fp = file_alloc(); 587 if (fp != NULL) { 588 fp->f_name = strdup(name); 589 fp->f_type = strdup(name); 590 } 591 592 if (fp == NULL || fp->f_name == NULL || fp->f_type == NULL) { 593 printf("Can not load font module: %s\n", 594 "out of memory"); 595 file_discard(fp); 596 return; 597 } 598 599 if (archsw.arch_loadaddr != NULL) 600 loadaddr = archsw.arch_loadaddr(LOAD_MEM, &size, loadaddr); 601 602 if (loadaddr == 0) { 603 printf("Can not load font module: %s\n", 604 "out of memory"); 605 file_discard(fp); 606 return; 607 } 608 609 laddr = loadaddr; 610 laddr += archsw.arch_copyin(&fi, laddr, sizeof (struct font_info)); 611 laddr = roundup2(laddr, 8); 612 613 /* Copy maps. */ 614 for (i = 0; i < VFNT_MAPS; i++) { 615 if (fd->vf_map_count[i] != 0) { 616 laddr += archsw.arch_copyin(fd->vf_map[i], laddr, 617 fd->vf_map_count[i] * sizeof (struct font_map)); 618 laddr = roundup2(laddr, 8); 619 } 620 } 621 622 /* Copy the bitmap. */ 623 laddr += archsw.arch_copyin(fd->vf_bytes, laddr, fi.fi_bitmap_size); 624 625 /* Looks OK so far; populate control structure */ 626 module_hash(fp, PTOV(loadaddr), laddr - loadaddr); 627 fp->f_loader = -1; 628 fp->f_addr = loadaddr; 629 fp->f_size = laddr - loadaddr; 630 631 /* recognise space consumption */ 632 loadaddr = laddr; 633 634 file_insert_tail(fp); 635 } 636 637 /* 638 * We've been asked to load (fname) as (type), so just suck it in, 639 * no arguments or anything. 640 */ 641 struct preloaded_file * 642 file_loadraw(const char *fname, char *type, int argc, char **argv, int insert) 643 { 644 struct preloaded_file *fp; 645 char *name; 646 int fd, got; 647 vm_offset_t laddr; 648 struct stat st; 649 650 /* We can't load first */ 651 if ((file_findfile(NULL, NULL)) == NULL) { 652 command_errmsg = "can't load file before kernel"; 653 return (NULL); 654 } 655 656 /* locate the file on the load path */ 657 name = file_search(fname, NULL); 658 if (name == NULL) { 659 (void) snprintf(command_errbuf, sizeof (command_errbuf), 660 "can't find '%s'", fname); 661 return (NULL); 662 } 663 664 if ((fd = open(name, O_RDONLY)) < 0) { 665 (void) snprintf(command_errbuf, sizeof (command_errbuf), 666 "can't open '%s': %s", name, strerror(errno)); 667 free(name); 668 return (NULL); 669 } 670 if (fstat(fd, &st) < 0) { 671 (void) close(fd); 672 (void) snprintf(command_errbuf, sizeof (command_errbuf), 673 "stat error '%s': %s", name, strerror(errno)); 674 free(name); 675 return (NULL); 676 } 677 678 if (archsw.arch_loadaddr != NULL) 679 loadaddr = archsw.arch_loadaddr(LOAD_RAW, name, loadaddr); 680 if (loadaddr == 0) { 681 (void) close(fd); 682 (void) snprintf(command_errbuf, sizeof (command_errbuf), 683 "no memory to load %s", name); 684 free(name); 685 return (NULL); 686 } 687 688 laddr = loadaddr; 689 for (;;) { 690 /* read in 4k chunks; size is not really important */ 691 got = archsw.arch_readin(fd, laddr, 4096); 692 if (got == 0) /* end of file */ 693 break; 694 if (got < 0) { /* error */ 695 (void) snprintf(command_errbuf, sizeof (command_errbuf), 696 "error reading '%s': %s", name, strerror(errno)); 697 free(name); 698 (void) close(fd); 699 if (archsw.arch_free_loadaddr != NULL && 700 st.st_size != 0) { 701 archsw.arch_free_loadaddr(loadaddr, 702 (uint64_t) 703 (roundup2(st.st_size, PAGE_SIZE) >> 12)); 704 } 705 return (NULL); 706 } 707 laddr += got; 708 } 709 710 /* Looks OK so far; create & populate control structure */ 711 fp = file_alloc(); 712 if (fp == NULL) { 713 if (archsw.arch_free_loadaddr != NULL && st.st_size != 0) 714 archsw.arch_free_loadaddr(loadaddr, 715 (uint64_t)(roundup2(st.st_size, PAGE_SIZE) >> 12)); 716 (void) snprintf(command_errbuf, sizeof (command_errbuf), 717 "no memory to load %s", name); 718 free(name); 719 (void) close(fd); 720 return (NULL); 721 } 722 723 fp->f_name = name; 724 fp->f_args = unargv(argc, argv); 725 fp->f_type = strdup(type); 726 fp->f_metadata = NULL; 727 fp->f_loader = -1; 728 fp->f_addr = loadaddr; 729 fp->f_size = laddr - loadaddr; 730 731 if (fp->f_type == NULL || 732 (argc != 0 && fp->f_args == NULL)) { 733 (void) close(fd); 734 (void) snprintf(command_errbuf, sizeof (command_errbuf), 735 "no memory to load %s", name); 736 file_discard(fp); 737 return (NULL); 738 } 739 /* recognise space consumption */ 740 loadaddr = laddr; 741 742 /* Add to the list of loaded files */ 743 if (insert != 0) 744 file_insert_tail(fp); 745 (void) close(fd); 746 return (fp); 747 } 748 749 /* 750 * Load the module (name), pass it (argc),(argv), add container file 751 * to the list of loaded files. 752 * If module is already loaded just assign new argc/argv. 753 */ 754 int 755 mod_load(char *modname, struct mod_depend *verinfo, int argc, char *argv[]) 756 { 757 struct kernel_module *mp; 758 int err; 759 char *filename; 760 761 if (file_havepath(modname)) { 762 printf("Warning: mod_load() called instead of mod_loadkld() " 763 "for module '%s'\n", modname); 764 return (mod_loadkld(modname, argc, argv)); 765 } 766 /* see if module is already loaded */ 767 mp = file_findmodule(NULL, modname, verinfo); 768 if (mp != NULL) { 769 free(mp->m_args); 770 mp->m_args = unargv(argc, argv); 771 (void) snprintf(command_errbuf, sizeof (command_errbuf), 772 "warning: module '%s' already loaded", mp->m_name); 773 return (0); 774 } 775 /* locate file with the module on the search path */ 776 filename = mod_searchmodule(modname, verinfo); 777 if (filename == NULL) { 778 (void) snprintf(command_errbuf, sizeof (command_errbuf), 779 "can't find '%s'", modname); 780 return (ENOENT); 781 } 782 err = mod_loadkld(filename, argc, argv); 783 free(filename); 784 return (err); 785 } 786 787 /* 788 * Load specified KLD. If path is omitted, then try to locate it via 789 * search path. 790 */ 791 int 792 mod_loadkld(const char *kldname, int argc, char *argv[]) 793 { 794 struct preloaded_file *fp; 795 int err; 796 char *filename; 797 vm_offset_t loadaddr_saved; 798 799 /* 800 * Get fully qualified KLD name 801 */ 802 filename = file_search(kldname, kld_ext_list); 803 if (filename == NULL) { 804 (void) snprintf(command_errbuf, sizeof (command_errbuf), 805 "can't find '%s'", kldname); 806 return (ENOENT); 807 } 808 /* 809 * Check if KLD already loaded 810 */ 811 fp = file_findfile(filename, NULL); 812 if (fp != NULL) { 813 (void) snprintf(command_errbuf, sizeof (command_errbuf), 814 "warning: KLD '%s' already loaded", filename); 815 free(filename); 816 return (0); 817 } 818 819 do { 820 err = file_load(filename, loadaddr, &fp); 821 if (err) 822 break; 823 fp->f_args = unargv(argc, argv); 824 loadaddr_saved = loadaddr; 825 loadaddr = fp->f_addr + fp->f_size; 826 file_insert_tail(fp); /* Add to the list of loaded files */ 827 if (file_load_dependencies(fp) != 0) { 828 err = ENOENT; 829 file_remove(fp); 830 loadaddr = loadaddr_saved; 831 fp = NULL; 832 break; 833 } 834 } while (0); 835 if (err == EFTYPE) { 836 (void) snprintf(command_errbuf, sizeof (command_errbuf), 837 "don't know how to load module '%s'", filename); 838 } 839 if (err) 840 file_discard(fp); 841 free(filename); 842 return (err); 843 } 844 845 /* 846 * Find a file matching (name) and (type). 847 * NULL may be passed as a wildcard to either. 848 */ 849 struct preloaded_file * 850 file_findfile(const char *name, const char *type) 851 { 852 struct preloaded_file *fp; 853 854 for (fp = preloaded_files; fp != NULL; fp = fp->f_next) { 855 if (((name == NULL) || strcmp(name, fp->f_name) == 0) && 856 ((type == NULL) || strcmp(type, fp->f_type) == 0)) 857 break; 858 } 859 return (fp); 860 } 861 862 /* 863 * Find a module matching (name) inside of given file. 864 * NULL may be passed as a wildcard. 865 */ 866 struct kernel_module * 867 file_findmodule(struct preloaded_file *fp, char *modname, 868 struct mod_depend *verinfo) 869 { 870 struct kernel_module *mp, *best; 871 int bestver, mver; 872 873 if (fp == NULL) { 874 for (fp = preloaded_files; fp; fp = fp->f_next) { 875 mp = file_findmodule(fp, modname, verinfo); 876 if (mp != NULL) 877 return (mp); 878 } 879 return (NULL); 880 } 881 best = NULL; 882 bestver = 0; 883 for (mp = fp->f_modules; mp; mp = mp->m_next) { 884 if (strcmp(modname, mp->m_name) == 0) { 885 if (verinfo == NULL) 886 return (mp); 887 mver = mp->m_version; 888 if (mver == verinfo->md_ver_preferred) 889 return (mp); 890 if (mver >= verinfo->md_ver_minimum && 891 mver <= verinfo->md_ver_maximum && 892 mver > bestver) { 893 best = mp; 894 bestver = mver; 895 } 896 } 897 } 898 return (best); 899 } 900 /* 901 * Make a copy of (size) bytes of data from (p), and associate them as 902 * metadata of (type) to the module (mp). 903 */ 904 void 905 file_addmetadata(struct preloaded_file *fp, int type, size_t size, void *p) 906 { 907 struct file_metadata *md; 908 909 md = malloc(sizeof (struct file_metadata) - sizeof (md->md_data) + 910 size); 911 if (md != NULL) { 912 md->md_size = size; 913 md->md_type = type; 914 bcopy(p, md->md_data, size); 915 md->md_next = fp->f_metadata; 916 } 917 fp->f_metadata = md; 918 } 919 920 /* 921 * Find a metadata object of (type) associated with the file (fp) 922 */ 923 struct file_metadata * 924 file_findmetadata(struct preloaded_file *fp, int type) 925 { 926 struct file_metadata *md; 927 928 for (md = fp->f_metadata; md != NULL; md = md->md_next) 929 if (md->md_type == type) 930 break; 931 return (md); 932 } 933 934 struct file_metadata * 935 metadata_next(struct file_metadata *md, int type) 936 { 937 938 if (md == NULL) 939 return (NULL); 940 while ((md = md->md_next) != NULL) 941 if (md->md_type == type) 942 break; 943 return (md); 944 } 945 946 static const char *emptyextlist[] = { "", NULL }; 947 948 /* 949 * Check if the given file is in place and return full path to it. 950 */ 951 static char * 952 file_lookup(const char *path, const char *name, int namelen, 953 const char **extlist) 954 { 955 struct stat st; 956 char *result, *cp; 957 const char **cpp; 958 int pathlen, extlen, len; 959 960 pathlen = strlen(path); 961 extlen = 0; 962 if (extlist == NULL) 963 extlist = emptyextlist; 964 for (cpp = extlist; *cpp; cpp++) { 965 len = strlen(*cpp); 966 if (len > extlen) 967 extlen = len; 968 } 969 result = malloc(pathlen + namelen + extlen + 2); 970 if (result == NULL) 971 return (NULL); 972 bcopy(path, result, pathlen); 973 if (pathlen > 0 && result[pathlen - 1] != '/') 974 result[pathlen++] = '/'; 975 cp = result + pathlen; 976 bcopy(name, cp, namelen); 977 cp += namelen; 978 for (cpp = extlist; *cpp; cpp++) { 979 (void) strcpy(cp, *cpp); 980 if (stat(result, &st) == 0 && S_ISREG(st.st_mode)) 981 return (result); 982 } 983 free(result); 984 return (NULL); 985 } 986 987 /* 988 * Check if file name have any qualifiers 989 */ 990 static int 991 file_havepath(const char *name) 992 { 993 const char *cp; 994 995 (void) archsw.arch_getdev(NULL, name, &cp); 996 return (cp != name || strchr(name, '/') != NULL); 997 } 998 999 /* 1000 * Attempt to find the file (name) on the module searchpath. 1001 * If (name) is qualified in any way, we simply check it and 1002 * return it or NULL. If it is not qualified, then we attempt 1003 * to construct a path using entries in the environment variable 1004 * module_path. 1005 * 1006 * The path we return a pointer to need never be freed, as we manage 1007 * it internally. 1008 */ 1009 static char * 1010 file_search(const char *name, const char **extlist) 1011 { 1012 struct moduledir *mdp; 1013 struct stat sb; 1014 char *result; 1015 int namelen; 1016 1017 /* Don't look for nothing */ 1018 if (name == NULL) 1019 return (NULL); 1020 1021 if (*name == '\0') 1022 return (strdup(name)); 1023 1024 if (file_havepath(name)) { 1025 /* Qualified, so just see if it exists */ 1026 if (stat(name, &sb) == 0) 1027 return (strdup(name)); 1028 return (NULL); 1029 } 1030 moduledir_rebuild(); 1031 result = NULL; 1032 namelen = strlen(name); 1033 STAILQ_FOREACH(mdp, &moduledir_list, d_link) { 1034 result = file_lookup(mdp->d_path, name, namelen, extlist); 1035 if (result != NULL) 1036 break; 1037 } 1038 return (result); 1039 } 1040 1041 #define INT_ALIGN(base, ptr) ptr = \ 1042 (base) + (((ptr) - (base) + sizeof (int) - 1) & ~(sizeof (int) - 1)) 1043 1044 static char * 1045 mod_search_hints(struct moduledir *mdp, const char *modname, 1046 struct mod_depend *verinfo) 1047 { 1048 uchar_t *cp, *recptr, *bufend, *best; 1049 char *result; 1050 int *intp, bestver, blen, clen, ival, modnamelen, reclen; 1051 bool found; 1052 1053 moduledir_readhints(mdp); 1054 modnamelen = strlen(modname); 1055 found = false; 1056 result = NULL; 1057 bestver = 0; 1058 if (mdp->d_hints == NULL) 1059 goto bad; 1060 recptr = mdp->d_hints; 1061 bufend = recptr + mdp->d_hintsz; 1062 clen = blen = 0; 1063 best = cp = NULL; 1064 while (recptr < bufend && !found) { 1065 intp = (int *)recptr; 1066 reclen = *intp++; 1067 ival = *intp++; 1068 cp = (uchar_t *)intp; 1069 switch (ival) { 1070 case MDT_VERSION: 1071 clen = *cp++; 1072 if (clen != modnamelen || bcmp(cp, modname, clen) != 0) 1073 break; 1074 cp += clen; 1075 INT_ALIGN(mdp->d_hints, cp); 1076 ival = *(int *)cp; 1077 cp += sizeof (int); 1078 clen = *cp++; 1079 if (verinfo == NULL || 1080 ival == verinfo->md_ver_preferred) { 1081 found = true; 1082 break; 1083 } 1084 if (ival >= verinfo->md_ver_minimum && 1085 ival <= verinfo->md_ver_maximum && 1086 ival > bestver) { 1087 bestver = ival; 1088 best = cp; 1089 blen = clen; 1090 } 1091 break; 1092 default: 1093 break; 1094 } 1095 recptr += reclen + sizeof (int); 1096 } 1097 /* 1098 * Finally check if KLD is in the place 1099 */ 1100 if (found) 1101 result = file_lookup(mdp->d_path, (char *)cp, clen, NULL); 1102 else if (best) 1103 result = file_lookup(mdp->d_path, (char *)best, blen, NULL); 1104 bad: 1105 /* 1106 * If nothing found or hints is absent - fallback to the old way 1107 * by using "kldname[.ko]" as module name. 1108 */ 1109 if (!found && bestver == 0 && result == NULL) { 1110 result = file_lookup(mdp->d_path, modname, modnamelen, 1111 kld_ext_list); 1112 } 1113 return (result); 1114 } 1115 1116 /* 1117 * Attempt to locate the file containing the module (name) 1118 */ 1119 static char * 1120 mod_searchmodule(char *name, struct mod_depend *verinfo) 1121 { 1122 struct moduledir *mdp; 1123 char *result; 1124 1125 moduledir_rebuild(); 1126 /* 1127 * Now we ready to lookup module in the given directories 1128 */ 1129 result = NULL; 1130 STAILQ_FOREACH(mdp, &moduledir_list, d_link) { 1131 result = mod_search_hints(mdp, name, verinfo); 1132 if (result != NULL) 1133 break; 1134 } 1135 1136 return (result); 1137 } 1138 1139 int 1140 file_addmodule(struct preloaded_file *fp, char *modname, int version, 1141 struct kernel_module **newmp) 1142 { 1143 struct kernel_module *mp; 1144 struct mod_depend mdepend; 1145 1146 bzero(&mdepend, sizeof (mdepend)); 1147 mdepend.md_ver_preferred = version; 1148 mp = file_findmodule(fp, modname, &mdepend); 1149 if (mp != NULL) 1150 return (EEXIST); 1151 mp = calloc(1, sizeof (struct kernel_module)); 1152 if (mp == NULL) 1153 return (ENOMEM); 1154 mp->m_name = strdup(modname); 1155 if (mp->m_name == NULL) { 1156 free(mp); 1157 return (ENOMEM); 1158 } 1159 mp->m_version = version; 1160 mp->m_fp = fp; 1161 mp->m_next = fp->f_modules; 1162 fp->f_modules = mp; 1163 if (newmp) 1164 *newmp = mp; 1165 return (0); 1166 } 1167 1168 /* 1169 * Throw a file away 1170 */ 1171 void 1172 file_discard(struct preloaded_file *fp) 1173 { 1174 struct file_metadata *md, *md1; 1175 struct kernel_module *mp, *mp1; 1176 1177 if (fp == NULL) 1178 return; 1179 1180 if (archsw.arch_free_loadaddr != NULL && fp->f_addr && 1181 fp->f_size != 0) { 1182 archsw.arch_free_loadaddr(fp->f_addr, 1183 (uint64_t)(roundup2(fp->f_size, PAGE_SIZE) >> 12)); 1184 } 1185 1186 md = fp->f_metadata; 1187 while (md != NULL) { 1188 md1 = md; 1189 md = md->md_next; 1190 free(md1); 1191 } 1192 mp = fp->f_modules; 1193 while (mp != NULL) { 1194 free(mp->m_name); 1195 mp1 = mp; 1196 mp = mp->m_next; 1197 free(mp1); 1198 } 1199 free(fp->f_name); 1200 free(fp->f_type); 1201 free(fp->f_args); 1202 free(fp); 1203 } 1204 1205 /* 1206 * Allocate a new file; must be used instead of malloc() 1207 * to ensure safe initialisation. 1208 */ 1209 struct preloaded_file * 1210 file_alloc(void) 1211 { 1212 1213 return (calloc(1, sizeof (struct preloaded_file))); 1214 } 1215 1216 /* 1217 * Add a module to the chain 1218 */ 1219 static void 1220 file_insert_tail(struct preloaded_file *fp) 1221 { 1222 struct preloaded_file *cm; 1223 1224 /* Append to list of loaded file */ 1225 fp->f_next = NULL; 1226 if (preloaded_files == NULL) { 1227 preloaded_files = fp; 1228 } else { 1229 for (cm = preloaded_files; cm->f_next != NULL; cm = cm->f_next) 1230 ; 1231 cm->f_next = fp; 1232 } 1233 } 1234 1235 /* 1236 * Remove module from the chain 1237 */ 1238 static void 1239 file_remove(struct preloaded_file *fp) 1240 { 1241 struct preloaded_file *cm; 1242 1243 if (preloaded_files == NULL) 1244 return; 1245 1246 if (preloaded_files == fp) { 1247 preloaded_files = fp->f_next; 1248 return; 1249 } 1250 for (cm = preloaded_files; cm->f_next != NULL; cm = cm->f_next) { 1251 if (cm->f_next == fp) { 1252 cm->f_next = fp->f_next; 1253 return; 1254 } 1255 } 1256 } 1257 1258 static char * 1259 moduledir_fullpath(struct moduledir *mdp, const char *fname) 1260 { 1261 char *cp; 1262 1263 cp = malloc(strlen(mdp->d_path) + strlen(fname) + 2); 1264 if (cp == NULL) 1265 return (NULL); 1266 strcpy(cp, mdp->d_path); 1267 strcat(cp, "/"); 1268 strcat(cp, fname); 1269 return (cp); 1270 } 1271 1272 /* 1273 * Read linker.hints file into memory performing some sanity checks. 1274 */ 1275 static void 1276 moduledir_readhints(struct moduledir *mdp) 1277 { 1278 struct stat st; 1279 char *path; 1280 int fd, size, version; 1281 1282 if (mdp->d_hints != NULL || (mdp->d_flags & MDIR_NOHINTS)) 1283 return; 1284 path = moduledir_fullpath(mdp, "linker.hints"); 1285 if (stat(path, &st) != 0 || 1286 st.st_size < (ssize_t)(sizeof (version) + sizeof (int)) || 1287 st.st_size > LINKER_HINTS_MAX || 1288 (fd = open(path, O_RDONLY)) < 0) { 1289 free(path); 1290 mdp->d_flags |= MDIR_NOHINTS; 1291 return; 1292 } 1293 free(path); 1294 size = read(fd, &version, sizeof (version)); 1295 if (size != sizeof (version) || version != LINKER_HINTS_VERSION) 1296 goto bad; 1297 size = st.st_size - size; 1298 mdp->d_hints = malloc(size); 1299 if (mdp->d_hints == NULL) 1300 goto bad; 1301 if (read(fd, mdp->d_hints, size) != size) 1302 goto bad; 1303 mdp->d_hintsz = size; 1304 (void) close(fd); 1305 return; 1306 bad: 1307 (void) close(fd); 1308 free(mdp->d_hints); 1309 mdp->d_hints = NULL; 1310 mdp->d_flags |= MDIR_NOHINTS; 1311 } 1312 1313 /* 1314 * Extract directories from the ';' separated list, remove duplicates. 1315 */ 1316 static void 1317 moduledir_rebuild(void) 1318 { 1319 struct moduledir *mdp, *mtmp; 1320 const char *path, *cp, *ep; 1321 size_t cplen; 1322 1323 path = getenv("module_path"); 1324 if (path == NULL) 1325 path = default_searchpath; 1326 /* 1327 * Rebuild list of module directories if it changed 1328 */ 1329 STAILQ_FOREACH(mdp, &moduledir_list, d_link) 1330 mdp->d_flags |= MDIR_REMOVED; 1331 1332 for (ep = path; *ep != 0; ep++) { 1333 cp = ep; 1334 for (; *ep != 0 && *ep != ';'; ep++) 1335 ; 1336 /* 1337 * Ignore trailing slashes 1338 */ 1339 for (cplen = ep - cp; cplen > 1 && cp[cplen - 1] == '/'; 1340 cplen--) 1341 ; 1342 STAILQ_FOREACH(mdp, &moduledir_list, d_link) { 1343 if (strlen(mdp->d_path) != cplen || 1344 bcmp(cp, mdp->d_path, cplen) != 0) 1345 continue; 1346 mdp->d_flags &= ~MDIR_REMOVED; 1347 break; 1348 } 1349 if (mdp == NULL) { 1350 mdp = malloc(sizeof (*mdp) + cplen + 1); 1351 if (mdp == NULL) 1352 return; 1353 mdp->d_path = (char *)(mdp + 1); 1354 bcopy(cp, mdp->d_path, cplen); 1355 mdp->d_path[cplen] = 0; 1356 mdp->d_hints = NULL; 1357 mdp->d_flags = 0; 1358 STAILQ_INSERT_TAIL(&moduledir_list, mdp, d_link); 1359 } 1360 if (*ep == '\0') 1361 break; 1362 } 1363 /* 1364 * Delete unused directories if any 1365 */ 1366 mdp = STAILQ_FIRST(&moduledir_list); 1367 while (mdp) { 1368 if ((mdp->d_flags & MDIR_REMOVED) == 0) { 1369 mdp = STAILQ_NEXT(mdp, d_link); 1370 } else { 1371 free(mdp->d_hints); 1372 mtmp = mdp; 1373 mdp = STAILQ_NEXT(mdp, d_link); 1374 STAILQ_REMOVE(&moduledir_list, mtmp, moduledir, d_link); 1375 free(mtmp); 1376 } 1377 } 1378 } 1379