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