1 /*-
2 * SPDX-License-Identifier: BSD-2-Clause
3 *
4 * Copyright (c) 1997-2000 Doug Rabson
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 *
16 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26 * SUCH DAMAGE.
27 */
28
29 #include <sys/cdefs.h>
30 #include "opt_ddb.h"
31 #include "opt_kld.h"
32 #include "opt_hwpmc_hooks.h"
33 #include "opt_hwt_hooks.h"
34
35 #include <sys/param.h>
36 #include <sys/systm.h>
37 #include <sys/boottrace.h>
38 #include <sys/eventhandler.h>
39 #include <sys/fcntl.h>
40 #include <sys/jail.h>
41 #include <sys/kernel.h>
42 #include <sys/libkern.h>
43 #include <sys/linker.h>
44 #include <sys/lock.h>
45 #include <sys/malloc.h>
46 #include <sys/module.h>
47 #include <sys/mount.h>
48 #include <sys/mutex.h>
49 #include <sys/namei.h>
50 #include <sys/priv.h>
51 #include <sys/proc.h>
52 #include <sys/sx.h>
53 #include <sys/syscallsubr.h>
54 #include <sys/sysctl.h>
55 #include <sys/sysproto.h>
56 #include <sys/vnode.h>
57
58 #ifdef DDB
59 #include <ddb/ddb.h>
60 #endif
61
62 #include <net/vnet.h>
63
64 #include <security/mac/mac_framework.h>
65
66 #include "linker_if.h"
67
68 #if defined(HWPMC_HOOKS) || defined(HWT_HOOKS)
69 #include <sys/pmckern.h>
70 #endif
71
72 #ifdef KLD_DEBUG
73 int kld_debug = 0;
74 SYSCTL_INT(_debug, OID_AUTO, kld_debug, CTLFLAG_RWTUN,
75 &kld_debug, 0, "Set various levels of KLD debug");
76 #endif
77
78 /* These variables are used by kernel debuggers to enumerate loaded files. */
79 const int kld_off_address = offsetof(struct linker_file, address);
80 const int kld_off_filename = offsetof(struct linker_file, filename);
81 const int kld_off_pathname = offsetof(struct linker_file, pathname);
82 const int kld_off_next = offsetof(struct linker_file, link.tqe_next);
83
84 /*
85 * static char *linker_search_path(const char *name, struct mod_depend
86 * *verinfo);
87 */
88 static const char *linker_basename(const char *path);
89
90 /*
91 * Find a currently loaded file given its filename.
92 */
93 static linker_file_t linker_find_file_by_name(const char* _filename);
94
95 /*
96 * Find a currently loaded file given its file id.
97 */
98 static linker_file_t linker_find_file_by_id(int _fileid);
99
100 /* Metadata from the static kernel */
101 SET_DECLARE(modmetadata_set, struct mod_metadata);
102
103 MALLOC_DEFINE(M_LINKER, "linker", "kernel linker");
104
105 linker_file_t linker_kernel_file;
106
107 static struct sx kld_sx; /* kernel linker lock */
108 static u_int kld_busy;
109 static struct thread *kld_busy_owner;
110
111 /*
112 * Load counter used by clients to determine if a linker file has been
113 * re-loaded. This counter is incremented for each file load.
114 */
115 static int loadcnt;
116
117 static linker_class_list_t classes;
118 static linker_file_list_t linker_files;
119 static int next_file_id = 1;
120 static int linker_no_more_classes = 0;
121
122 #define LINKER_GET_NEXT_FILE_ID(a) do { \
123 linker_file_t lftmp; \
124 \
125 if (!cold) \
126 sx_assert(&kld_sx, SA_XLOCKED); \
127 retry: \
128 TAILQ_FOREACH(lftmp, &linker_files, link) { \
129 if (next_file_id == lftmp->id) { \
130 next_file_id++; \
131 goto retry; \
132 } \
133 } \
134 (a) = next_file_id; \
135 } while (0)
136
137 /* XXX wrong name; we're looking at version provision tags here, not modules */
138 typedef TAILQ_HEAD(, modlist) modlisthead_t;
139 struct modlist {
140 TAILQ_ENTRY(modlist) link; /* chain together all modules */
141 linker_file_t container;
142 const char *name;
143 int version;
144 };
145 typedef struct modlist *modlist_t;
146 static modlisthead_t found_modules;
147
148 static void linker_file_add_dependency(linker_file_t file,
149 linker_file_t dep);
150 static caddr_t linker_file_lookup_symbol_internal(linker_file_t file,
151 const char* name, int deps);
152 static int linker_load_module(const char *kldname,
153 const char *modname, struct linker_file *parent,
154 const struct mod_depend *verinfo, struct linker_file **lfpp);
155 static modlist_t modlist_lookup2(const char *name, const struct mod_depend *verinfo);
156
157 static void
linker_init(void * arg)158 linker_init(void *arg)
159 {
160
161 sx_init(&kld_sx, "kernel linker");
162 TAILQ_INIT(&classes);
163 TAILQ_INIT(&linker_files);
164 }
165
166 SYSINIT(linker, SI_SUB_KLD, SI_ORDER_FIRST, linker_init, NULL);
167
168 static void
linker_stop_class_add(void * arg)169 linker_stop_class_add(void *arg)
170 {
171
172 linker_no_more_classes = 1;
173 }
174
175 SYSINIT(linker_class, SI_SUB_KLD, SI_ORDER_ANY, linker_stop_class_add, NULL);
176
177 int
linker_add_class(linker_class_t lc)178 linker_add_class(linker_class_t lc)
179 {
180
181 /*
182 * We disallow any class registration past SI_ORDER_ANY
183 * of SI_SUB_KLD. We bump the reference count to keep the
184 * ops from being freed.
185 */
186 if (linker_no_more_classes == 1)
187 return (EPERM);
188 kobj_class_compile((kobj_class_t) lc);
189 ((kobj_class_t)lc)->refs++; /* XXX: kobj_mtx */
190 TAILQ_INSERT_TAIL(&classes, lc, link);
191 return (0);
192 }
193
194 static void
linker_file_sysinit(linker_file_t lf)195 linker_file_sysinit(linker_file_t lf)
196 {
197 struct sysinit **start, **stop, **sipp, **xipp, *save;
198 int last;
199
200 KLD_DPF(FILE, ("linker_file_sysinit: calling SYSINITs for %s\n",
201 lf->filename));
202
203 sx_assert(&kld_sx, SA_XLOCKED);
204
205 if (linker_file_lookup_set(lf, "sysinit_set", &start, &stop, NULL) != 0)
206 return;
207 /*
208 * Perform a bubble sort of the system initialization objects by
209 * their subsystem (primary key) and order (secondary key).
210 *
211 * Since some things care about execution order, this is the operation
212 * which ensures continued function.
213 */
214 for (sipp = start; sipp < stop; sipp++) {
215 for (xipp = sipp + 1; xipp < stop; xipp++) {
216 if ((*sipp)->subsystem < (*xipp)->subsystem ||
217 ((*sipp)->subsystem == (*xipp)->subsystem &&
218 (*sipp)->order <= (*xipp)->order))
219 continue; /* skip */
220 save = *sipp;
221 *sipp = *xipp;
222 *xipp = save;
223 }
224 }
225
226 /*
227 * Traverse the (now) ordered list of system initialization tasks.
228 * Perform each task, and continue on to the next task.
229 */
230 last = SI_SUB_DUMMY;
231 sx_xunlock(&kld_sx);
232 mtx_lock(&Giant);
233 for (sipp = start; sipp < stop; sipp++) {
234 if ((*sipp)->subsystem == SI_SUB_DUMMY)
235 continue; /* skip dummy task(s) */
236
237 if ((*sipp)->subsystem > last)
238 BOOTTRACE("%s: sysinit 0x%7x", lf->filename,
239 (*sipp)->subsystem);
240
241 /* Call function */
242 (*((*sipp)->func)) ((*sipp)->udata);
243 last = (*sipp)->subsystem;
244 }
245 mtx_unlock(&Giant);
246 sx_xlock(&kld_sx);
247 }
248
249 static void
linker_file_sysuninit(linker_file_t lf)250 linker_file_sysuninit(linker_file_t lf)
251 {
252 struct sysinit **start, **stop, **sipp, **xipp, *save;
253 int last;
254
255 KLD_DPF(FILE, ("linker_file_sysuninit: calling SYSUNINITs for %s\n",
256 lf->filename));
257
258 sx_assert(&kld_sx, SA_XLOCKED);
259
260 if (linker_file_lookup_set(lf, "sysuninit_set", &start, &stop,
261 NULL) != 0)
262 return;
263
264 /*
265 * Perform a reverse bubble sort of the system initialization objects
266 * by their subsystem (primary key) and order (secondary key).
267 *
268 * Since some things care about execution order, this is the operation
269 * which ensures continued function.
270 */
271 for (sipp = start; sipp < stop; sipp++) {
272 for (xipp = sipp + 1; xipp < stop; xipp++) {
273 if ((*sipp)->subsystem > (*xipp)->subsystem ||
274 ((*sipp)->subsystem == (*xipp)->subsystem &&
275 (*sipp)->order >= (*xipp)->order))
276 continue; /* skip */
277 save = *sipp;
278 *sipp = *xipp;
279 *xipp = save;
280 }
281 }
282
283 /*
284 * Traverse the (now) ordered list of system initialization tasks.
285 * Perform each task, and continue on to the next task.
286 */
287 sx_xunlock(&kld_sx);
288 mtx_lock(&Giant);
289 last = SI_SUB_DUMMY;
290 for (sipp = start; sipp < stop; sipp++) {
291 if ((*sipp)->subsystem == SI_SUB_DUMMY)
292 continue; /* skip dummy task(s) */
293
294 if ((*sipp)->subsystem > last)
295 BOOTTRACE("%s: sysuninit 0x%7x", lf->filename,
296 (*sipp)->subsystem);
297
298 /* Call function */
299 (*((*sipp)->func)) ((*sipp)->udata);
300 last = (*sipp)->subsystem;
301 }
302 mtx_unlock(&Giant);
303 sx_xlock(&kld_sx);
304 }
305
306 static void
linker_file_register_sysctls(linker_file_t lf,bool enable)307 linker_file_register_sysctls(linker_file_t lf, bool enable)
308 {
309 struct sysctl_oid **start, **stop, **oidp;
310
311 KLD_DPF(FILE,
312 ("linker_file_register_sysctls: registering SYSCTLs for %s\n",
313 lf->filename));
314
315 sx_assert(&kld_sx, SA_XLOCKED);
316
317 if (linker_file_lookup_set(lf, "sysctl_set", &start, &stop, NULL) != 0)
318 return;
319
320 sx_xunlock(&kld_sx);
321 sysctl_wlock();
322 for (oidp = start; oidp < stop; oidp++) {
323 if (enable)
324 sysctl_register_oid(*oidp);
325 else
326 sysctl_register_disabled_oid(*oidp);
327 }
328 sysctl_wunlock();
329 sx_xlock(&kld_sx);
330 }
331
332 /*
333 * Invoke the LINKER_CTF_GET implementation for this file. Existing
334 * implementations will load CTF info from the filesystem upon the first call
335 * and cache it in the kernel thereafter.
336 */
337 static void
linker_ctf_load_file(linker_file_t file)338 linker_ctf_load_file(linker_file_t file)
339 {
340 linker_ctf_t lc;
341 int error;
342
343 error = linker_ctf_get(file, &lc);
344 if (error == 0)
345 return;
346 if (bootverbose) {
347 printf("failed to load CTF for %s: %d\n", file->filename,
348 error);
349 }
350 }
351
352 static void
linker_file_enable_sysctls(linker_file_t lf)353 linker_file_enable_sysctls(linker_file_t lf)
354 {
355 struct sysctl_oid **start, **stop, **oidp;
356
357 KLD_DPF(FILE,
358 ("linker_file_enable_sysctls: enable SYSCTLs for %s\n",
359 lf->filename));
360
361 sx_assert(&kld_sx, SA_XLOCKED);
362
363 if (linker_file_lookup_set(lf, "sysctl_set", &start, &stop, NULL) != 0)
364 return;
365
366 sx_xunlock(&kld_sx);
367 sysctl_wlock();
368 for (oidp = start; oidp < stop; oidp++)
369 sysctl_enable_oid(*oidp);
370 sysctl_wunlock();
371 sx_xlock(&kld_sx);
372 }
373
374 static void
linker_file_unregister_sysctls(linker_file_t lf)375 linker_file_unregister_sysctls(linker_file_t lf)
376 {
377 struct sysctl_oid **start, **stop, **oidp;
378
379 KLD_DPF(FILE, ("linker_file_unregister_sysctls: unregistering SYSCTLs"
380 " for %s\n", lf->filename));
381
382 sx_assert(&kld_sx, SA_XLOCKED);
383
384 if (linker_file_lookup_set(lf, "sysctl_set", &start, &stop, NULL) != 0)
385 return;
386
387 sx_xunlock(&kld_sx);
388 sysctl_wlock();
389 for (oidp = start; oidp < stop; oidp++)
390 sysctl_unregister_oid(*oidp);
391 sysctl_wunlock();
392 sx_xlock(&kld_sx);
393 }
394
395 static int
linker_file_register_modules(linker_file_t lf)396 linker_file_register_modules(linker_file_t lf)
397 {
398 struct mod_metadata **start, **stop, **mdp;
399 const moduledata_t *moddata;
400 int first_error, error;
401
402 KLD_DPF(FILE, ("linker_file_register_modules: registering modules"
403 " in %s\n", lf->filename));
404
405 sx_assert(&kld_sx, SA_XLOCKED);
406
407 if (linker_file_lookup_set(lf, MDT_SETNAME, &start, &stop, NULL) != 0) {
408 /*
409 * This fallback should be unnecessary, but if we get booted
410 * from boot2 instead of loader and we are missing our
411 * metadata then we have to try the best we can.
412 */
413 if (lf == linker_kernel_file) {
414 start = SET_BEGIN(modmetadata_set);
415 stop = SET_LIMIT(modmetadata_set);
416 } else
417 return (0);
418 }
419 first_error = 0;
420 for (mdp = start; mdp < stop; mdp++) {
421 if ((*mdp)->md_type != MDT_MODULE)
422 continue;
423 moddata = (*mdp)->md_data;
424 KLD_DPF(FILE, ("Registering module %s in %s\n",
425 moddata->name, lf->filename));
426 error = module_register(moddata, lf);
427 if (error) {
428 printf("Module %s failed to register: %d\n",
429 moddata->name, error);
430 if (first_error == 0)
431 first_error = error;
432 }
433 }
434 return (first_error);
435 }
436
437 static void
linker_init_kernel_modules(void)438 linker_init_kernel_modules(void)
439 {
440
441 sx_xlock(&kld_sx);
442 linker_file_register_modules(linker_kernel_file);
443 sx_xunlock(&kld_sx);
444 }
445
446 SYSINIT(linker_kernel, SI_SUB_KLD, SI_ORDER_ANY, linker_init_kernel_modules,
447 NULL);
448
449 static int
linker_load_file(const char * filename,linker_file_t * result)450 linker_load_file(const char *filename, linker_file_t *result)
451 {
452 linker_class_t lc;
453 linker_file_t lf;
454 int foundfile, error, modules;
455
456 /* Refuse to load modules if securelevel raised */
457 if (prison0.pr_securelevel > 0)
458 return (EPERM);
459
460 sx_assert(&kld_sx, SA_XLOCKED);
461 lf = linker_find_file_by_name(filename);
462 if (lf) {
463 KLD_DPF(FILE, ("linker_load_file: file %s is already loaded,"
464 " incrementing refs\n", filename));
465 *result = lf;
466 lf->refs++;
467 return (0);
468 }
469 foundfile = 0;
470 error = 0;
471
472 /*
473 * We do not need to protect (lock) classes here because there is
474 * no class registration past startup (SI_SUB_KLD, SI_ORDER_ANY)
475 * and there is no class deregistration mechanism at this time.
476 */
477 TAILQ_FOREACH(lc, &classes, link) {
478 KLD_DPF(FILE, ("linker_load_file: trying to load %s\n",
479 filename));
480 error = LINKER_LOAD_FILE(lc, filename, &lf);
481 /*
482 * If we got something other than ENOENT, then it exists but
483 * we cannot load it for some other reason.
484 */
485 if (error != ENOENT) {
486 foundfile = 1;
487 if (error == EEXIST)
488 break;
489 }
490 if (lf) {
491 error = linker_file_register_modules(lf);
492 if (error == EEXIST) {
493 linker_file_unload(lf, LINKER_UNLOAD_FORCE);
494 return (error);
495 }
496 modules = !TAILQ_EMPTY(&lf->modules);
497 linker_file_register_sysctls(lf, false);
498 #ifdef VIMAGE
499 LINKER_PROPAGATE_VNETS(lf);
500 #endif
501 linker_file_sysinit(lf);
502 lf->flags |= LINKER_FILE_LINKED;
503
504 /*
505 * If all of the modules in this file failed
506 * to load, unload the file and return an
507 * error of ENOEXEC.
508 */
509 if (modules && TAILQ_EMPTY(&lf->modules)) {
510 linker_file_unload(lf, LINKER_UNLOAD_FORCE);
511 return (ENOEXEC);
512 }
513 linker_file_enable_sysctls(lf);
514
515 /*
516 * Ask the linker to load CTF data for this file.
517 */
518 linker_ctf_load_file(lf);
519 EVENTHANDLER_INVOKE(kld_load, lf);
520 *result = lf;
521 return (0);
522 }
523 }
524 /*
525 * Less than ideal, but tells the user whether it failed to load or
526 * the module was not found.
527 */
528 if (foundfile) {
529 /*
530 * If the file type has not been recognized by the last try
531 * printout a message before to fail.
532 */
533 if (error == ENOSYS)
534 printf("%s: %s - unsupported file type\n",
535 __func__, filename);
536
537 /*
538 * Format not recognized or otherwise unloadable.
539 * When loading a module that is statically built into
540 * the kernel EEXIST percolates back up as the return
541 * value. Preserve this so that apps like sysinstall
542 * can recognize this special case and not post bogus
543 * dialog boxes.
544 */
545 if (error != EEXIST)
546 error = ENOEXEC;
547 } else
548 error = ENOENT; /* Nothing found */
549 return (error);
550 }
551
552 int
linker_reference_module(const char * modname,struct mod_depend * verinfo,linker_file_t * result)553 linker_reference_module(const char *modname, struct mod_depend *verinfo,
554 linker_file_t *result)
555 {
556 modlist_t mod;
557 int error;
558
559 sx_xlock(&kld_sx);
560 if ((mod = modlist_lookup2(modname, verinfo)) != NULL) {
561 *result = mod->container;
562 (*result)->refs++;
563 sx_xunlock(&kld_sx);
564 return (0);
565 }
566
567 error = linker_load_module(NULL, modname, NULL, verinfo, result);
568 sx_xunlock(&kld_sx);
569 return (error);
570 }
571
572 int
linker_release_module(const char * modname,struct mod_depend * verinfo,linker_file_t lf)573 linker_release_module(const char *modname, struct mod_depend *verinfo,
574 linker_file_t lf)
575 {
576 modlist_t mod;
577 int error;
578
579 sx_xlock(&kld_sx);
580 if (lf == NULL) {
581 KASSERT(modname != NULL,
582 ("linker_release_module: no file or name"));
583 mod = modlist_lookup2(modname, verinfo);
584 if (mod == NULL) {
585 sx_xunlock(&kld_sx);
586 return (ESRCH);
587 }
588 lf = mod->container;
589 } else
590 KASSERT(modname == NULL && verinfo == NULL,
591 ("linker_release_module: both file and name"));
592 error = linker_file_unload(lf, LINKER_UNLOAD_NORMAL);
593 sx_xunlock(&kld_sx);
594 return (error);
595 }
596
597 static linker_file_t
linker_find_file_by_name(const char * filename)598 linker_find_file_by_name(const char *filename)
599 {
600 linker_file_t lf;
601 char *koname;
602
603 koname = malloc(strlen(filename) + 4, M_LINKER, M_WAITOK);
604 sprintf(koname, "%s.ko", filename);
605
606 sx_assert(&kld_sx, SA_XLOCKED);
607 TAILQ_FOREACH(lf, &linker_files, link) {
608 if (strcmp(lf->filename, koname) == 0)
609 break;
610 if (strcmp(lf->filename, filename) == 0)
611 break;
612 }
613 free(koname, M_LINKER);
614 return (lf);
615 }
616
617 static linker_file_t
linker_find_file_by_id(int fileid)618 linker_find_file_by_id(int fileid)
619 {
620 linker_file_t lf;
621
622 sx_assert(&kld_sx, SA_XLOCKED);
623 TAILQ_FOREACH(lf, &linker_files, link)
624 if (lf->id == fileid && lf->flags & LINKER_FILE_LINKED)
625 break;
626 return (lf);
627 }
628
629 int
linker_file_foreach(linker_predicate_t * predicate,void * context)630 linker_file_foreach(linker_predicate_t *predicate, void *context)
631 {
632 linker_file_t lf;
633 int retval = 0;
634
635 sx_xlock(&kld_sx);
636 TAILQ_FOREACH(lf, &linker_files, link) {
637 retval = predicate(lf, context);
638 if (retval != 0)
639 break;
640 }
641 sx_xunlock(&kld_sx);
642 return (retval);
643 }
644
645 linker_file_t
linker_make_file(const char * pathname,linker_class_t lc)646 linker_make_file(const char *pathname, linker_class_t lc)
647 {
648 linker_file_t lf;
649 const char *filename;
650
651 if (!cold)
652 sx_assert(&kld_sx, SA_XLOCKED);
653 filename = linker_basename(pathname);
654
655 KLD_DPF(FILE, ("linker_make_file: new file, filename='%s' for pathname='%s'\n", filename, pathname));
656 lf = (linker_file_t)kobj_create((kobj_class_t)lc, M_LINKER, M_WAITOK);
657 if (lf == NULL)
658 return (NULL);
659 lf->ctors_addr = 0;
660 lf->ctors_size = 0;
661 lf->ctors_invoked = LF_NONE;
662 lf->dtors_addr = 0;
663 lf->dtors_size = 0;
664 lf->refs = 1;
665 lf->userrefs = 0;
666 lf->flags = 0;
667 lf->filename = strdup(filename, M_LINKER);
668 lf->pathname = strdup(pathname, M_LINKER);
669 LINKER_GET_NEXT_FILE_ID(lf->id);
670 lf->ndeps = 0;
671 lf->deps = NULL;
672 lf->loadcnt = ++loadcnt;
673 #ifdef __arm__
674 lf->exidx_addr = 0;
675 lf->exidx_size = 0;
676 #endif
677 STAILQ_INIT(&lf->common);
678 TAILQ_INIT(&lf->modules);
679 TAILQ_INSERT_TAIL(&linker_files, lf, link);
680 return (lf);
681 }
682
683 int
linker_file_unload(linker_file_t file,int flags)684 linker_file_unload(linker_file_t file, int flags)
685 {
686 module_t mod, next;
687 modlist_t ml, nextml;
688 struct common_symbol *cp;
689 int error, i;
690
691 /* Refuse to unload modules if securelevel raised. */
692 if (prison0.pr_securelevel > 0)
693 return (EPERM);
694
695 sx_assert(&kld_sx, SA_XLOCKED);
696 KLD_DPF(FILE, ("linker_file_unload: lf->refs=%d\n", file->refs));
697
698 /* Easy case of just dropping a reference. */
699 if (file->refs > 1) {
700 file->refs--;
701 return (0);
702 }
703
704 /* Give eventhandlers a chance to prevent the unload. */
705 error = 0;
706 EVENTHANDLER_INVOKE(kld_unload_try, file, &error);
707 if (error != 0)
708 return (EBUSY);
709
710 KLD_DPF(FILE, ("linker_file_unload: file is unloading,"
711 " informing modules\n"));
712
713 /*
714 * Quiesce all the modules to give them a chance to veto the unload.
715 */
716 MOD_SLOCK;
717 for (mod = TAILQ_FIRST(&file->modules); mod;
718 mod = module_getfnext(mod)) {
719 error = module_quiesce(mod);
720 if (error != 0 && flags != LINKER_UNLOAD_FORCE) {
721 KLD_DPF(FILE, ("linker_file_unload: module %s"
722 " vetoed unload\n", module_getname(mod)));
723 /*
724 * XXX: Do we need to tell all the quiesced modules
725 * that they can resume work now via a new module
726 * event?
727 */
728 MOD_SUNLOCK;
729 return (error);
730 }
731 }
732 MOD_SUNLOCK;
733
734 /*
735 * Inform any modules associated with this file that they are
736 * being unloaded.
737 */
738 MOD_XLOCK;
739 for (mod = TAILQ_FIRST(&file->modules); mod; mod = next) {
740 next = module_getfnext(mod);
741 MOD_XUNLOCK;
742
743 /*
744 * Give the module a chance to veto the unload.
745 */
746 if ((error = module_unload(mod)) != 0) {
747 #ifdef KLD_DEBUG
748 MOD_SLOCK;
749 KLD_DPF(FILE, ("linker_file_unload: module %s"
750 " failed unload\n", module_getname(mod)));
751 MOD_SUNLOCK;
752 #endif
753 return (error);
754 }
755 MOD_XLOCK;
756 module_release(mod);
757 }
758 MOD_XUNLOCK;
759
760 TAILQ_FOREACH_SAFE(ml, &found_modules, link, nextml) {
761 if (ml->container == file) {
762 TAILQ_REMOVE(&found_modules, ml, link);
763 free(ml, M_LINKER);
764 }
765 }
766
767 /*
768 * Don't try to run SYSUNINITs if we are unloaded due to a
769 * link error.
770 */
771 if (file->flags & LINKER_FILE_LINKED) {
772 file->flags &= ~LINKER_FILE_LINKED;
773 linker_file_unregister_sysctls(file);
774 linker_file_sysuninit(file);
775 }
776 TAILQ_REMOVE(&linker_files, file, link);
777
778 if (file->deps) {
779 for (i = 0; i < file->ndeps; i++)
780 linker_file_unload(file->deps[i], flags);
781 free(file->deps, M_LINKER);
782 file->deps = NULL;
783 }
784 while ((cp = STAILQ_FIRST(&file->common)) != NULL) {
785 STAILQ_REMOVE_HEAD(&file->common, link);
786 free(cp, M_LINKER);
787 }
788
789 LINKER_UNLOAD(file);
790
791 EVENTHANDLER_INVOKE(kld_unload, file->filename, file->address,
792 file->size);
793
794 if (file->filename) {
795 free(file->filename, M_LINKER);
796 file->filename = NULL;
797 }
798 if (file->pathname) {
799 free(file->pathname, M_LINKER);
800 file->pathname = NULL;
801 }
802 kobj_delete((kobj_t) file, M_LINKER);
803 return (0);
804 }
805
806 int
linker_ctf_get(linker_file_t file,linker_ctf_t * lc)807 linker_ctf_get(linker_file_t file, linker_ctf_t *lc)
808 {
809 return (LINKER_CTF_GET(file, lc));
810 }
811
812 int
linker_ctf_lookup_typename_ddb(linker_ctf_t * lc,const char * typename)813 linker_ctf_lookup_typename_ddb(linker_ctf_t *lc, const char *typename)
814 {
815 #ifdef DDB
816 linker_file_t lf;
817
818 TAILQ_FOREACH (lf, &linker_files, link){
819 if (LINKER_CTF_LOOKUP_TYPENAME(lf, lc, typename) == 0)
820 return (0);
821 }
822 #endif
823 return (ENOENT);
824 }
825
826 int
linker_ctf_lookup_sym_ddb(const char * symname,c_linker_sym_t * sym,linker_ctf_t * lc)827 linker_ctf_lookup_sym_ddb(const char *symname, c_linker_sym_t *sym,
828 linker_ctf_t *lc)
829 {
830 #ifdef DDB
831 linker_file_t lf;
832
833 TAILQ_FOREACH (lf, &linker_files, link){
834 if (LINKER_LOOKUP_DEBUG_SYMBOL_CTF(lf, symname, sym, lc) == 0)
835 return (0);
836 }
837 #endif
838 return (ENOENT);
839 }
840
841 static void
linker_file_add_dependency(linker_file_t file,linker_file_t dep)842 linker_file_add_dependency(linker_file_t file, linker_file_t dep)
843 {
844 linker_file_t *newdeps;
845
846 sx_assert(&kld_sx, SA_XLOCKED);
847 file->deps = realloc(file->deps, (file->ndeps + 1) * sizeof(*newdeps),
848 M_LINKER, M_WAITOK | M_ZERO);
849 file->deps[file->ndeps] = dep;
850 file->ndeps++;
851 KLD_DPF(FILE, ("linker_file_add_dependency:"
852 " adding %s as dependency for %s\n",
853 dep->filename, file->filename));
854 }
855
856 /*
857 * Locate a linker set and its contents. This is a helper function to avoid
858 * linker_if.h exposure elsewhere. Note: firstp and lastp are really void **.
859 * This function is used in this file so we can avoid having lots of (void **)
860 * casts.
861 */
862 int
linker_file_lookup_set(linker_file_t file,const char * name,void * firstp,void * lastp,int * countp)863 linker_file_lookup_set(linker_file_t file, const char *name,
864 void *firstp, void *lastp, int *countp)
865 {
866
867 sx_assert(&kld_sx, SA_LOCKED);
868 return (LINKER_LOOKUP_SET(file, name, firstp, lastp, countp));
869 }
870
871 /*
872 * List all functions in a file.
873 */
874 int
linker_file_function_listall(linker_file_t lf,linker_function_nameval_callback_t callback_func,void * arg)875 linker_file_function_listall(linker_file_t lf,
876 linker_function_nameval_callback_t callback_func, void *arg)
877 {
878 return (LINKER_EACH_FUNCTION_NAMEVAL(lf, callback_func, arg));
879 }
880
881 caddr_t
linker_file_lookup_symbol(linker_file_t file,const char * name,int deps)882 linker_file_lookup_symbol(linker_file_t file, const char *name, int deps)
883 {
884 caddr_t sym;
885 int locked;
886
887 locked = sx_xlocked(&kld_sx);
888 if (!locked)
889 sx_xlock(&kld_sx);
890 sym = linker_file_lookup_symbol_internal(file, name, deps);
891 if (!locked)
892 sx_xunlock(&kld_sx);
893 return (sym);
894 }
895
896 static caddr_t
linker_file_lookup_symbol_internal(linker_file_t file,const char * name,int deps)897 linker_file_lookup_symbol_internal(linker_file_t file, const char *name,
898 int deps)
899 {
900 c_linker_sym_t sym;
901 linker_symval_t symval;
902 caddr_t address;
903 size_t common_size = 0;
904 int i;
905
906 sx_assert(&kld_sx, SA_XLOCKED);
907 KLD_DPF(SYM, ("linker_file_lookup_symbol: file=%p, name=%s, deps=%d\n",
908 file, name, deps));
909
910 /*
911 * Treat the __this_linker_file as a special symbol. This is a
912 * global that linuxkpi uses to populate the THIS_MODULE
913 * value. In this case we can simply return the linker_file_t.
914 *
915 * Modules compiled statically into the kernel are assigned NULL.
916 */
917 if (strcmp(name, "__this_linker_file") == 0) {
918 address = (file == linker_kernel_file) ? NULL : (caddr_t)file;
919 KLD_DPF(SYM, ("linker_file_lookup_symbol: resolving special "
920 "symbol __this_linker_file to %p\n", address));
921 return (address);
922 }
923
924 if (LINKER_LOOKUP_SYMBOL(file, name, &sym) == 0) {
925 LINKER_SYMBOL_VALUES(file, sym, &symval);
926 if (symval.value == 0)
927 /*
928 * For commons, first look them up in the
929 * dependencies and only allocate space if not found
930 * there.
931 */
932 common_size = symval.size;
933 else {
934 KLD_DPF(SYM, ("linker_file_lookup_symbol: symbol"
935 ".value=%p\n", symval.value));
936 return (symval.value);
937 }
938 }
939 if (deps) {
940 for (i = 0; i < file->ndeps; i++) {
941 address = linker_file_lookup_symbol_internal(
942 file->deps[i], name, 0);
943 if (address) {
944 KLD_DPF(SYM, ("linker_file_lookup_symbol:"
945 " deps value=%p\n", address));
946 return (address);
947 }
948 }
949 }
950 if (common_size > 0) {
951 /*
952 * This is a common symbol which was not found in the
953 * dependencies. We maintain a simple common symbol table in
954 * the file object.
955 */
956 struct common_symbol *cp;
957
958 STAILQ_FOREACH(cp, &file->common, link) {
959 if (strcmp(cp->name, name) == 0) {
960 KLD_DPF(SYM, ("linker_file_lookup_symbol:"
961 " old common value=%p\n", cp->address));
962 return (cp->address);
963 }
964 }
965 /*
966 * Round the symbol size up to align.
967 */
968 common_size = (common_size + sizeof(int) - 1) & -sizeof(int);
969 cp = malloc(sizeof(struct common_symbol)
970 + common_size + strlen(name) + 1, M_LINKER,
971 M_WAITOK | M_ZERO);
972 cp->address = (caddr_t)(cp + 1);
973 cp->name = cp->address + common_size;
974 strcpy(cp->name, name);
975 bzero(cp->address, common_size);
976 STAILQ_INSERT_TAIL(&file->common, cp, link);
977
978 KLD_DPF(SYM, ("linker_file_lookup_symbol: new common"
979 " value=%p\n", cp->address));
980 return (cp->address);
981 }
982 KLD_DPF(SYM, ("linker_file_lookup_symbol: fail\n"));
983 return (0);
984 }
985
986 /*
987 * Both DDB and stack(9) rely on the kernel linker to provide forward and
988 * backward lookup of symbols. However, DDB and sometimes stack(9) need to
989 * do this in a lockfree manner. We provide a set of internal helper
990 * routines to perform these operations without locks, and then wrappers that
991 * optionally lock.
992 *
993 * linker_debug_lookup() is ifdef DDB as currently it's only used by DDB.
994 */
995 #ifdef DDB
996 static int
linker_debug_lookup(const char * symstr,c_linker_sym_t * sym)997 linker_debug_lookup(const char *symstr, c_linker_sym_t *sym)
998 {
999 linker_file_t lf;
1000
1001 TAILQ_FOREACH(lf, &linker_files, link) {
1002 if (LINKER_LOOKUP_DEBUG_SYMBOL(lf, symstr, sym) == 0)
1003 return (0);
1004 }
1005 return (ENOENT);
1006 }
1007 #endif
1008
1009 static int
linker_debug_search_symbol(caddr_t value,c_linker_sym_t * sym,long * diffp)1010 linker_debug_search_symbol(caddr_t value, c_linker_sym_t *sym, long *diffp)
1011 {
1012 linker_file_t lf;
1013 c_linker_sym_t best, es;
1014 u_long diff, bestdiff, off;
1015
1016 best = 0;
1017 off = (uintptr_t)value;
1018 bestdiff = off;
1019 TAILQ_FOREACH(lf, &linker_files, link) {
1020 if (LINKER_SEARCH_SYMBOL(lf, value, &es, &diff) != 0)
1021 continue;
1022 if (es != 0 && diff < bestdiff) {
1023 best = es;
1024 bestdiff = diff;
1025 }
1026 if (bestdiff == 0)
1027 break;
1028 }
1029 if (best) {
1030 *sym = best;
1031 *diffp = bestdiff;
1032 return (0);
1033 } else {
1034 *sym = 0;
1035 *diffp = off;
1036 return (ENOENT);
1037 }
1038 }
1039
1040 static int
linker_debug_symbol_values(c_linker_sym_t sym,linker_symval_t * symval)1041 linker_debug_symbol_values(c_linker_sym_t sym, linker_symval_t *symval)
1042 {
1043 linker_file_t lf;
1044
1045 TAILQ_FOREACH(lf, &linker_files, link) {
1046 if (LINKER_DEBUG_SYMBOL_VALUES(lf, sym, symval) == 0)
1047 return (0);
1048 }
1049 return (ENOENT);
1050 }
1051
1052 static int
linker_debug_search_symbol_name(caddr_t value,char * buf,u_int buflen,long * offset)1053 linker_debug_search_symbol_name(caddr_t value, char *buf, u_int buflen,
1054 long *offset)
1055 {
1056 linker_symval_t symval;
1057 c_linker_sym_t sym;
1058 int error;
1059
1060 *offset = 0;
1061 error = linker_debug_search_symbol(value, &sym, offset);
1062 if (error)
1063 return (error);
1064 error = linker_debug_symbol_values(sym, &symval);
1065 if (error)
1066 return (error);
1067 strlcpy(buf, symval.name, buflen);
1068 return (0);
1069 }
1070
1071 /*
1072 * DDB Helpers. DDB has to look across multiple files with their own symbol
1073 * tables and string tables.
1074 *
1075 * Note that we do not obey list locking protocols here. We really don't need
1076 * DDB to hang because somebody's got the lock held. We'll take the chance
1077 * that the files list is inconsistent instead.
1078 */
1079 #ifdef DDB
1080 int
linker_ddb_lookup(const char * symstr,c_linker_sym_t * sym)1081 linker_ddb_lookup(const char *symstr, c_linker_sym_t *sym)
1082 {
1083
1084 return (linker_debug_lookup(symstr, sym));
1085 }
1086 #endif
1087
1088 int
linker_ddb_search_symbol(caddr_t value,c_linker_sym_t * sym,long * diffp)1089 linker_ddb_search_symbol(caddr_t value, c_linker_sym_t *sym, long *diffp)
1090 {
1091
1092 return (linker_debug_search_symbol(value, sym, diffp));
1093 }
1094
1095 int
linker_ddb_symbol_values(c_linker_sym_t sym,linker_symval_t * symval)1096 linker_ddb_symbol_values(c_linker_sym_t sym, linker_symval_t *symval)
1097 {
1098
1099 return (linker_debug_symbol_values(sym, symval));
1100 }
1101
1102 int
linker_ddb_search_symbol_name(caddr_t value,char * buf,u_int buflen,long * offset)1103 linker_ddb_search_symbol_name(caddr_t value, char *buf, u_int buflen,
1104 long *offset)
1105 {
1106
1107 return (linker_debug_search_symbol_name(value, buf, buflen, offset));
1108 }
1109
1110 /*
1111 * stack(9) helper for non-debugging environemnts. Unlike DDB helpers, we do
1112 * obey locking protocols, and offer a significantly less complex interface.
1113 */
1114 int
linker_search_symbol_name_flags(caddr_t value,char * buf,u_int buflen,long * offset,int flags)1115 linker_search_symbol_name_flags(caddr_t value, char *buf, u_int buflen,
1116 long *offset, int flags)
1117 {
1118 int error;
1119
1120 KASSERT((flags & (M_NOWAIT | M_WAITOK)) != 0 &&
1121 (flags & (M_NOWAIT | M_WAITOK)) != (M_NOWAIT | M_WAITOK),
1122 ("%s: bad flags: 0x%x", __func__, flags));
1123
1124 if (flags & M_NOWAIT) {
1125 if (!sx_try_slock(&kld_sx))
1126 return (EWOULDBLOCK);
1127 } else
1128 sx_slock(&kld_sx);
1129
1130 error = linker_debug_search_symbol_name(value, buf, buflen, offset);
1131 sx_sunlock(&kld_sx);
1132 return (error);
1133 }
1134
1135 int
linker_search_symbol_name(caddr_t value,char * buf,u_int buflen,long * offset)1136 linker_search_symbol_name(caddr_t value, char *buf, u_int buflen,
1137 long *offset)
1138 {
1139
1140 return (linker_search_symbol_name_flags(value, buf, buflen, offset,
1141 M_WAITOK));
1142 }
1143
1144 int
linker_kldload_busy(int flags)1145 linker_kldload_busy(int flags)
1146 {
1147 int error;
1148
1149 MPASS((flags & ~(LINKER_UB_UNLOCK | LINKER_UB_LOCKED |
1150 LINKER_UB_PCATCH)) == 0);
1151 if ((flags & LINKER_UB_LOCKED) != 0)
1152 sx_assert(&kld_sx, SA_XLOCKED);
1153
1154 if ((flags & LINKER_UB_LOCKED) == 0)
1155 sx_xlock(&kld_sx);
1156 while (kld_busy > 0) {
1157 if (kld_busy_owner == curthread)
1158 break;
1159 error = sx_sleep(&kld_busy, &kld_sx,
1160 (flags & LINKER_UB_PCATCH) != 0 ? PCATCH : 0,
1161 "kldbusy", 0);
1162 if (error != 0) {
1163 if ((flags & LINKER_UB_UNLOCK) != 0)
1164 sx_xunlock(&kld_sx);
1165 return (error);
1166 }
1167 }
1168 kld_busy++;
1169 kld_busy_owner = curthread;
1170 if ((flags & LINKER_UB_UNLOCK) != 0)
1171 sx_xunlock(&kld_sx);
1172 return (0);
1173 }
1174
1175 void
linker_kldload_unbusy(int flags)1176 linker_kldload_unbusy(int flags)
1177 {
1178 MPASS((flags & ~LINKER_UB_LOCKED) == 0);
1179 if ((flags & LINKER_UB_LOCKED) != 0)
1180 sx_assert(&kld_sx, SA_XLOCKED);
1181
1182 if ((flags & LINKER_UB_LOCKED) == 0)
1183 sx_xlock(&kld_sx);
1184 MPASS(kld_busy > 0);
1185 if (kld_busy_owner != curthread)
1186 panic("linker_kldload_unbusy done by not owning thread %p",
1187 kld_busy_owner);
1188 kld_busy--;
1189 if (kld_busy == 0) {
1190 kld_busy_owner = NULL;
1191 wakeup(&kld_busy);
1192 }
1193 sx_xunlock(&kld_sx);
1194 }
1195
1196 /*
1197 * Syscalls.
1198 */
1199 int
kern_kldload(struct thread * td,const char * file,int * fileid)1200 kern_kldload(struct thread *td, const char *file, int *fileid)
1201 {
1202 const char *kldname, *modname;
1203 linker_file_t lf;
1204 int error;
1205
1206 if ((error = securelevel_gt(td->td_ucred, 0)) != 0)
1207 return (error);
1208
1209 if ((error = priv_check(td, PRIV_KLD_LOAD)) != 0)
1210 return (error);
1211
1212 /*
1213 * If file does not contain a qualified name or any dot in it
1214 * (kldname.ko, or kldname.ver.ko) treat it as an interface
1215 * name.
1216 */
1217 if (strchr(file, '/') || strchr(file, '.')) {
1218 kldname = file;
1219 modname = NULL;
1220 } else {
1221 kldname = NULL;
1222 modname = file;
1223 }
1224
1225 error = linker_kldload_busy(LINKER_UB_PCATCH);
1226 if (error != 0) {
1227 sx_xunlock(&kld_sx);
1228 return (error);
1229 }
1230
1231 /*
1232 * It is possible that kldloaded module will attach a new ifnet,
1233 * so vnet context must be set when this ocurs.
1234 */
1235 CURVNET_SET(TD_TO_VNET(td));
1236
1237 error = linker_load_module(kldname, modname, NULL, NULL, &lf);
1238 CURVNET_RESTORE();
1239
1240 if (error == 0) {
1241 lf->userrefs++;
1242 if (fileid != NULL)
1243 *fileid = lf->id;
1244 }
1245 linker_kldload_unbusy(LINKER_UB_LOCKED);
1246 return (error);
1247 }
1248
1249 int
sys_kldload(struct thread * td,struct kldload_args * uap)1250 sys_kldload(struct thread *td, struct kldload_args *uap)
1251 {
1252 char *pathname = NULL;
1253 int error, fileid;
1254
1255 td->td_retval[0] = -1;
1256
1257 pathname = malloc(MAXPATHLEN, M_TEMP, M_WAITOK);
1258 error = copyinstr(uap->file, pathname, MAXPATHLEN, NULL);
1259 if (error == 0) {
1260 error = kern_kldload(td, pathname, &fileid);
1261 if (error == 0)
1262 td->td_retval[0] = fileid;
1263 }
1264 free(pathname, M_TEMP);
1265 return (error);
1266 }
1267
1268 int
kern_kldunload(struct thread * td,int fileid,int flags)1269 kern_kldunload(struct thread *td, int fileid, int flags)
1270 {
1271 linker_file_t lf;
1272 int error = 0;
1273
1274 if ((error = securelevel_gt(td->td_ucred, 0)) != 0)
1275 return (error);
1276
1277 if ((error = priv_check(td, PRIV_KLD_UNLOAD)) != 0)
1278 return (error);
1279
1280 error = linker_kldload_busy(LINKER_UB_PCATCH);
1281 if (error != 0) {
1282 sx_xunlock(&kld_sx);
1283 return (error);
1284 }
1285
1286 CURVNET_SET(TD_TO_VNET(td));
1287 lf = linker_find_file_by_id(fileid);
1288 if (lf) {
1289 KLD_DPF(FILE, ("kldunload: lf->userrefs=%d\n", lf->userrefs));
1290
1291 if (lf->userrefs == 0) {
1292 /*
1293 * XXX: maybe LINKER_UNLOAD_FORCE should override ?
1294 */
1295 printf("kldunload: attempt to unload file that was"
1296 " loaded by the kernel\n");
1297 error = EBUSY;
1298 } else if (lf->refs > 1) {
1299 error = EBUSY;
1300 } else {
1301 lf->userrefs--;
1302 error = linker_file_unload(lf, flags);
1303 if (error)
1304 lf->userrefs++;
1305 }
1306 } else
1307 error = ENOENT;
1308 CURVNET_RESTORE();
1309 linker_kldload_unbusy(LINKER_UB_LOCKED);
1310 return (error);
1311 }
1312
1313 int
sys_kldunload(struct thread * td,struct kldunload_args * uap)1314 sys_kldunload(struct thread *td, struct kldunload_args *uap)
1315 {
1316
1317 return (kern_kldunload(td, uap->fileid, LINKER_UNLOAD_NORMAL));
1318 }
1319
1320 int
sys_kldunloadf(struct thread * td,struct kldunloadf_args * uap)1321 sys_kldunloadf(struct thread *td, struct kldunloadf_args *uap)
1322 {
1323
1324 if (uap->flags != LINKER_UNLOAD_NORMAL &&
1325 uap->flags != LINKER_UNLOAD_FORCE)
1326 return (EINVAL);
1327 return (kern_kldunload(td, uap->fileid, uap->flags));
1328 }
1329
1330 int
sys_kldfind(struct thread * td,struct kldfind_args * uap)1331 sys_kldfind(struct thread *td, struct kldfind_args *uap)
1332 {
1333 char *pathname;
1334 const char *filename;
1335 linker_file_t lf;
1336 int error;
1337
1338 #ifdef MAC
1339 error = mac_kld_check_stat(td->td_ucred);
1340 if (error)
1341 return (error);
1342 #endif
1343
1344 td->td_retval[0] = -1;
1345
1346 pathname = malloc(MAXPATHLEN, M_TEMP, M_WAITOK);
1347 if ((error = copyinstr(uap->file, pathname, MAXPATHLEN, NULL)) != 0)
1348 goto out;
1349
1350 filename = linker_basename(pathname);
1351 sx_xlock(&kld_sx);
1352 lf = linker_find_file_by_name(filename);
1353 if (lf)
1354 td->td_retval[0] = lf->id;
1355 else
1356 error = ENOENT;
1357 sx_xunlock(&kld_sx);
1358 out:
1359 free(pathname, M_TEMP);
1360 return (error);
1361 }
1362
1363 int
sys_kldnext(struct thread * td,struct kldnext_args * uap)1364 sys_kldnext(struct thread *td, struct kldnext_args *uap)
1365 {
1366 linker_file_t lf;
1367 int error = 0;
1368
1369 #ifdef MAC
1370 error = mac_kld_check_stat(td->td_ucred);
1371 if (error)
1372 return (error);
1373 #endif
1374
1375 sx_xlock(&kld_sx);
1376 if (uap->fileid == 0)
1377 lf = TAILQ_FIRST(&linker_files);
1378 else {
1379 lf = linker_find_file_by_id(uap->fileid);
1380 if (lf == NULL) {
1381 error = ENOENT;
1382 goto out;
1383 }
1384 lf = TAILQ_NEXT(lf, link);
1385 }
1386
1387 /* Skip partially loaded files. */
1388 while (lf != NULL && !(lf->flags & LINKER_FILE_LINKED))
1389 lf = TAILQ_NEXT(lf, link);
1390
1391 if (lf)
1392 td->td_retval[0] = lf->id;
1393 else
1394 td->td_retval[0] = 0;
1395 out:
1396 sx_xunlock(&kld_sx);
1397 return (error);
1398 }
1399
1400 int
sys_kldstat(struct thread * td,struct kldstat_args * uap)1401 sys_kldstat(struct thread *td, struct kldstat_args *uap)
1402 {
1403 struct kld_file_stat *stat;
1404 int error, version;
1405
1406 /*
1407 * Check the version of the user's structure.
1408 */
1409 if ((error = copyin(&uap->stat->version, &version, sizeof(version)))
1410 != 0)
1411 return (error);
1412 if (version != sizeof(struct kld_file_stat_1) &&
1413 version != sizeof(struct kld_file_stat))
1414 return (EINVAL);
1415
1416 stat = malloc(sizeof(*stat), M_TEMP, M_WAITOK | M_ZERO);
1417 error = kern_kldstat(td, uap->fileid, stat);
1418 if (error == 0)
1419 error = copyout(stat, uap->stat, version);
1420 free(stat, M_TEMP);
1421 return (error);
1422 }
1423
1424 int
kern_kldstat(struct thread * td,int fileid,struct kld_file_stat * stat)1425 kern_kldstat(struct thread *td, int fileid, struct kld_file_stat *stat)
1426 {
1427 linker_file_t lf;
1428 int namelen;
1429 #ifdef MAC
1430 int error;
1431
1432 error = mac_kld_check_stat(td->td_ucred);
1433 if (error)
1434 return (error);
1435 #endif
1436
1437 sx_xlock(&kld_sx);
1438 lf = linker_find_file_by_id(fileid);
1439 if (lf == NULL) {
1440 sx_xunlock(&kld_sx);
1441 return (ENOENT);
1442 }
1443
1444 /* Version 1 fields: */
1445 namelen = strlen(lf->filename) + 1;
1446 if (namelen > sizeof(stat->name))
1447 namelen = sizeof(stat->name);
1448 bcopy(lf->filename, &stat->name[0], namelen);
1449 stat->refs = lf->refs;
1450 stat->id = lf->id;
1451 stat->address = lf->address;
1452 stat->size = lf->size;
1453 /* Version 2 fields: */
1454 namelen = strlen(lf->pathname) + 1;
1455 if (namelen > sizeof(stat->pathname))
1456 namelen = sizeof(stat->pathname);
1457 bcopy(lf->pathname, &stat->pathname[0], namelen);
1458 sx_xunlock(&kld_sx);
1459
1460 td->td_retval[0] = 0;
1461 return (0);
1462 }
1463
1464 #ifdef DDB
DB_COMMAND_FLAGS(kldstat,db_kldstat,DB_CMD_MEMSAFE)1465 DB_COMMAND_FLAGS(kldstat, db_kldstat, DB_CMD_MEMSAFE)
1466 {
1467 linker_file_t lf;
1468
1469 #define POINTER_WIDTH ((int)(sizeof(void *) * 2 + 2))
1470 db_printf("Id Refs Address%*c Size Name\n", POINTER_WIDTH - 7, ' ');
1471 #undef POINTER_WIDTH
1472 TAILQ_FOREACH(lf, &linker_files, link) {
1473 if (db_pager_quit)
1474 return;
1475 db_printf("%2d %4d %p %-8zx %s\n", lf->id, lf->refs,
1476 lf->address, lf->size, lf->filename);
1477 }
1478 }
1479 #endif /* DDB */
1480
1481 int
sys_kldfirstmod(struct thread * td,struct kldfirstmod_args * uap)1482 sys_kldfirstmod(struct thread *td, struct kldfirstmod_args *uap)
1483 {
1484 linker_file_t lf;
1485 module_t mp;
1486 int error = 0;
1487
1488 #ifdef MAC
1489 error = mac_kld_check_stat(td->td_ucred);
1490 if (error)
1491 return (error);
1492 #endif
1493
1494 sx_xlock(&kld_sx);
1495 lf = linker_find_file_by_id(uap->fileid);
1496 if (lf) {
1497 MOD_SLOCK;
1498 mp = TAILQ_FIRST(&lf->modules);
1499 if (mp != NULL)
1500 td->td_retval[0] = module_getid(mp);
1501 else
1502 td->td_retval[0] = 0;
1503 MOD_SUNLOCK;
1504 } else
1505 error = ENOENT;
1506 sx_xunlock(&kld_sx);
1507 return (error);
1508 }
1509
1510 int
sys_kldsym(struct thread * td,struct kldsym_args * uap)1511 sys_kldsym(struct thread *td, struct kldsym_args *uap)
1512 {
1513 char *symstr = NULL;
1514 c_linker_sym_t sym;
1515 linker_symval_t symval;
1516 linker_file_t lf;
1517 struct kld_sym_lookup lookup;
1518 int error = 0;
1519
1520 #ifdef MAC
1521 error = mac_kld_check_stat(td->td_ucred);
1522 if (error)
1523 return (error);
1524 #endif
1525
1526 if ((error = copyin(uap->data, &lookup, sizeof(lookup))) != 0)
1527 return (error);
1528 if (lookup.version != sizeof(lookup) ||
1529 uap->cmd != KLDSYM_LOOKUP)
1530 return (EINVAL);
1531 symstr = malloc(MAXPATHLEN, M_TEMP, M_WAITOK);
1532 if ((error = copyinstr(lookup.symname, symstr, MAXPATHLEN, NULL)) != 0)
1533 goto out;
1534 sx_xlock(&kld_sx);
1535 if (uap->fileid != 0) {
1536 lf = linker_find_file_by_id(uap->fileid);
1537 if (lf == NULL)
1538 error = ENOENT;
1539 else if (LINKER_LOOKUP_SYMBOL(lf, symstr, &sym) == 0 &&
1540 LINKER_SYMBOL_VALUES(lf, sym, &symval) == 0) {
1541 lookup.symvalue = (uintptr_t) symval.value;
1542 lookup.symsize = symval.size;
1543 error = copyout(&lookup, uap->data, sizeof(lookup));
1544 } else
1545 error = ENOENT;
1546 } else {
1547 TAILQ_FOREACH(lf, &linker_files, link) {
1548 if (LINKER_LOOKUP_SYMBOL(lf, symstr, &sym) == 0 &&
1549 LINKER_SYMBOL_VALUES(lf, sym, &symval) == 0) {
1550 lookup.symvalue = (uintptr_t)symval.value;
1551 lookup.symsize = symval.size;
1552 error = copyout(&lookup, uap->data,
1553 sizeof(lookup));
1554 break;
1555 }
1556 }
1557 if (lf == NULL)
1558 error = ENOENT;
1559 }
1560 sx_xunlock(&kld_sx);
1561 out:
1562 free(symstr, M_TEMP);
1563 return (error);
1564 }
1565
1566 /*
1567 * Preloaded module support
1568 */
1569
1570 static modlist_t
modlist_lookup(const char * name,int ver)1571 modlist_lookup(const char *name, int ver)
1572 {
1573 modlist_t mod;
1574
1575 TAILQ_FOREACH(mod, &found_modules, link) {
1576 if (strcmp(mod->name, name) == 0 &&
1577 (ver == 0 || mod->version == ver))
1578 return (mod);
1579 }
1580 return (NULL);
1581 }
1582
1583 static modlist_t
modlist_lookup2(const char * name,const struct mod_depend * verinfo)1584 modlist_lookup2(const char *name, const struct mod_depend *verinfo)
1585 {
1586 modlist_t mod, bestmod;
1587 int ver;
1588
1589 if (verinfo == NULL)
1590 return (modlist_lookup(name, 0));
1591 bestmod = NULL;
1592 TAILQ_FOREACH(mod, &found_modules, link) {
1593 if (strcmp(mod->name, name) != 0)
1594 continue;
1595 ver = mod->version;
1596 if (ver == verinfo->md_ver_preferred)
1597 return (mod);
1598 if (ver >= verinfo->md_ver_minimum &&
1599 ver <= verinfo->md_ver_maximum &&
1600 (bestmod == NULL || ver > bestmod->version))
1601 bestmod = mod;
1602 }
1603 return (bestmod);
1604 }
1605
1606 static modlist_t
modlist_newmodule(const char * modname,int version,linker_file_t container)1607 modlist_newmodule(const char *modname, int version, linker_file_t container)
1608 {
1609 modlist_t mod;
1610
1611 mod = malloc(sizeof(struct modlist), M_LINKER, M_NOWAIT | M_ZERO);
1612 if (mod == NULL)
1613 panic("no memory for module list");
1614 mod->container = container;
1615 mod->name = modname;
1616 mod->version = version;
1617 TAILQ_INSERT_TAIL(&found_modules, mod, link);
1618 return (mod);
1619 }
1620
1621 static void
linker_addmodules(linker_file_t lf,struct mod_metadata ** start,struct mod_metadata ** stop,int preload)1622 linker_addmodules(linker_file_t lf, struct mod_metadata **start,
1623 struct mod_metadata **stop, int preload)
1624 {
1625 struct mod_metadata *mp, **mdp;
1626 const char *modname;
1627 int ver;
1628
1629 for (mdp = start; mdp < stop; mdp++) {
1630 mp = *mdp;
1631 if (mp->md_type != MDT_VERSION)
1632 continue;
1633 modname = mp->md_cval;
1634 ver = ((const struct mod_version *)mp->md_data)->mv_version;
1635 if (modlist_lookup(modname, ver) != NULL) {
1636 printf("module %s already present!\n", modname);
1637 /* XXX what can we do? this is a build error. :-( */
1638 continue;
1639 }
1640 modlist_newmodule(modname, ver, lf);
1641 }
1642 }
1643
1644 static void
linker_preload(void * arg)1645 linker_preload(void *arg)
1646 {
1647 caddr_t modptr;
1648 const char *modname, *nmodname;
1649 char *modtype;
1650 linker_file_t lf, nlf;
1651 linker_class_t lc;
1652 int error;
1653 linker_file_list_t loaded_files;
1654 linker_file_list_t depended_files;
1655 struct mod_metadata *mp, *nmp;
1656 struct mod_metadata **start, **stop, **mdp, **nmdp;
1657 const struct mod_depend *verinfo;
1658 int nver;
1659 int resolves;
1660 modlist_t mod;
1661 struct sysinit **si_start, **si_stop;
1662
1663 TAILQ_INIT(&loaded_files);
1664 TAILQ_INIT(&depended_files);
1665 TAILQ_INIT(&found_modules);
1666 error = 0;
1667
1668 modptr = NULL;
1669 sx_xlock(&kld_sx);
1670 while ((modptr = preload_search_next_name(modptr)) != NULL) {
1671 modname = (char *)preload_search_info(modptr, MODINFO_NAME);
1672 modtype = (char *)preload_search_info(modptr, MODINFO_TYPE);
1673 if (modname == NULL) {
1674 printf("Preloaded module at %p does not have a"
1675 " name!\n", modptr);
1676 continue;
1677 }
1678 if (modtype == NULL) {
1679 printf("Preloaded module at %p does not have a type!\n",
1680 modptr);
1681 continue;
1682 }
1683 if (bootverbose)
1684 printf("Preloaded %s \"%s\" at %p.\n", modtype, modname,
1685 modptr);
1686 lf = NULL;
1687 TAILQ_FOREACH(lc, &classes, link) {
1688 error = LINKER_LINK_PRELOAD(lc, modname, &lf);
1689 if (!error)
1690 break;
1691 lf = NULL;
1692 }
1693 if (lf)
1694 TAILQ_INSERT_TAIL(&loaded_files, lf, loaded);
1695 }
1696
1697 /*
1698 * First get a list of stuff in the kernel.
1699 */
1700 if (linker_file_lookup_set(linker_kernel_file, MDT_SETNAME, &start,
1701 &stop, NULL) == 0)
1702 linker_addmodules(linker_kernel_file, start, stop, 1);
1703
1704 /*
1705 * This is a once-off kinky bubble sort to resolve relocation
1706 * dependency requirements.
1707 */
1708 restart:
1709 TAILQ_FOREACH(lf, &loaded_files, loaded) {
1710 error = linker_file_lookup_set(lf, MDT_SETNAME, &start,
1711 &stop, NULL);
1712 /*
1713 * First, look to see if we would successfully link with this
1714 * stuff.
1715 */
1716 resolves = 1; /* unless we know otherwise */
1717 if (!error) {
1718 for (mdp = start; mdp < stop; mdp++) {
1719 mp = *mdp;
1720 if (mp->md_type != MDT_DEPEND)
1721 continue;
1722 modname = mp->md_cval;
1723 verinfo = mp->md_data;
1724 for (nmdp = start; nmdp < stop; nmdp++) {
1725 nmp = *nmdp;
1726 if (nmp->md_type != MDT_VERSION)
1727 continue;
1728 nmodname = nmp->md_cval;
1729 if (strcmp(modname, nmodname) == 0)
1730 break;
1731 }
1732 if (nmdp < stop) /* it's a self reference */
1733 continue;
1734
1735 /*
1736 * ok, the module isn't here yet, we
1737 * are not finished
1738 */
1739 if (modlist_lookup2(modname, verinfo) == NULL)
1740 resolves = 0;
1741 }
1742 }
1743 /*
1744 * OK, if we found our modules, we can link. So, "provide"
1745 * the modules inside and add it to the end of the link order
1746 * list.
1747 */
1748 if (resolves) {
1749 if (!error) {
1750 for (mdp = start; mdp < stop; mdp++) {
1751 mp = *mdp;
1752 if (mp->md_type != MDT_VERSION)
1753 continue;
1754 modname = mp->md_cval;
1755 nver = ((const struct mod_version *)
1756 mp->md_data)->mv_version;
1757 if (modlist_lookup(modname,
1758 nver) != NULL) {
1759 printf("module %s already"
1760 " present!\n", modname);
1761 TAILQ_REMOVE(&loaded_files,
1762 lf, loaded);
1763 linker_file_unload(lf,
1764 LINKER_UNLOAD_FORCE);
1765 /* we changed tailq next ptr */
1766 goto restart;
1767 }
1768 modlist_newmodule(modname, nver, lf);
1769 }
1770 }
1771 TAILQ_REMOVE(&loaded_files, lf, loaded);
1772 TAILQ_INSERT_TAIL(&depended_files, lf, loaded);
1773 /*
1774 * Since we provided modules, we need to restart the
1775 * sort so that the previous files that depend on us
1776 * have a chance. Also, we've busted the tailq next
1777 * pointer with the REMOVE.
1778 */
1779 goto restart;
1780 }
1781 }
1782
1783 /*
1784 * At this point, we check to see what could not be resolved..
1785 */
1786 while ((lf = TAILQ_FIRST(&loaded_files)) != NULL) {
1787 TAILQ_REMOVE(&loaded_files, lf, loaded);
1788 printf("KLD file %s is missing dependencies\n", lf->filename);
1789 linker_file_unload(lf, LINKER_UNLOAD_FORCE);
1790 }
1791
1792 /*
1793 * We made it. Finish off the linking in the order we determined.
1794 */
1795 TAILQ_FOREACH_SAFE(lf, &depended_files, loaded, nlf) {
1796 if (linker_kernel_file) {
1797 linker_kernel_file->refs++;
1798 linker_file_add_dependency(lf, linker_kernel_file);
1799 }
1800 error = linker_file_lookup_set(lf, MDT_SETNAME, &start,
1801 &stop, NULL);
1802 if (!error) {
1803 for (mdp = start; mdp < stop; mdp++) {
1804 mp = *mdp;
1805 if (mp->md_type != MDT_DEPEND)
1806 continue;
1807 modname = mp->md_cval;
1808 verinfo = mp->md_data;
1809 mod = modlist_lookup2(modname, verinfo);
1810 if (mod == NULL) {
1811 printf("KLD file %s - cannot find "
1812 "dependency \"%s\"\n",
1813 lf->filename, modname);
1814 goto fail;
1815 }
1816 /* Don't count self-dependencies */
1817 if (lf == mod->container)
1818 continue;
1819 mod->container->refs++;
1820 linker_file_add_dependency(lf, mod->container);
1821 }
1822 }
1823 /*
1824 * Now do relocation etc using the symbol search paths
1825 * established by the dependencies
1826 */
1827 error = LINKER_LINK_PRELOAD_FINISH(lf);
1828 if (error) {
1829 printf("KLD file %s - could not finalize loading\n",
1830 lf->filename);
1831 goto fail;
1832 }
1833 linker_file_register_modules(lf);
1834 if (!TAILQ_EMPTY(&lf->modules))
1835 lf->flags |= LINKER_FILE_MODULES;
1836 if (linker_file_lookup_set(lf, "sysinit_set", &si_start,
1837 &si_stop, NULL) == 0)
1838 sysinit_add(si_start, si_stop);
1839 linker_file_register_sysctls(lf, true);
1840 lf->flags |= LINKER_FILE_LINKED;
1841 continue;
1842 fail:
1843 TAILQ_REMOVE(&depended_files, lf, loaded);
1844 linker_file_unload(lf, LINKER_UNLOAD_FORCE);
1845 }
1846 sx_xunlock(&kld_sx);
1847 /* woohoo! we made it! */
1848 }
1849 SYSINIT(preload, SI_SUB_KLD, SI_ORDER_MIDDLE, linker_preload, NULL);
1850
1851 static void
linker_mountroot(void * arg __unused)1852 linker_mountroot(void *arg __unused)
1853 {
1854 linker_file_t lf;
1855
1856 sx_xlock(&kld_sx);
1857 TAILQ_FOREACH (lf, &linker_files, link) {
1858 linker_ctf_load_file(lf);
1859 }
1860 sx_xunlock(&kld_sx);
1861 }
1862 EVENTHANDLER_DEFINE(mountroot, linker_mountroot, NULL, 0);
1863
1864 /*
1865 * Handle preload files that failed to load any modules.
1866 */
1867 static void
linker_preload_finish(void * arg)1868 linker_preload_finish(void *arg)
1869 {
1870 linker_file_t lf, nlf;
1871
1872 sx_xlock(&kld_sx);
1873 TAILQ_FOREACH_SAFE(lf, &linker_files, link, nlf) {
1874 if (lf == linker_kernel_file)
1875 continue;
1876
1877 /*
1878 * If all of the modules in this file failed to load, unload
1879 * the file and return an error of ENOEXEC. (Parity with
1880 * linker_load_file.)
1881 */
1882 if ((lf->flags & LINKER_FILE_MODULES) != 0 &&
1883 TAILQ_EMPTY(&lf->modules)) {
1884 linker_file_unload(lf, LINKER_UNLOAD_FORCE);
1885 continue;
1886 }
1887
1888 lf->flags &= ~LINKER_FILE_MODULES;
1889 lf->userrefs++; /* so we can (try to) kldunload it */
1890 }
1891 sx_xunlock(&kld_sx);
1892 }
1893
1894 /*
1895 * Attempt to run after all DECLARE_MODULE SYSINITs. Unfortunately they can be
1896 * scheduled at any subsystem and order, so run this as late as possible. init
1897 * becomes runnable in SI_SUB_KTHREAD_INIT, so go slightly before that.
1898 */
1899 SYSINIT(preload_finish, SI_SUB_KTHREAD_INIT - 100, SI_ORDER_MIDDLE,
1900 linker_preload_finish, NULL);
1901
1902 /*
1903 * Search for a not-loaded module by name.
1904 *
1905 * Modules may be found in the following locations:
1906 *
1907 * - preloaded (result is just the module name) - on disk (result is full path
1908 * to module)
1909 *
1910 * If the module name is qualified in any way (contains path, etc.) the we
1911 * simply return a copy of it.
1912 *
1913 * The search path can be manipulated via sysctl. Note that we use the ';'
1914 * character as a separator to be consistent with the bootloader.
1915 */
1916
1917 static char linker_hintfile[] = "linker.hints";
1918 static char linker_path[MAXPATHLEN] = "/boot/kernel;/boot/modules";
1919
1920 SYSCTL_STRING(_kern, OID_AUTO, module_path, CTLFLAG_RWTUN, linker_path,
1921 sizeof(linker_path), "module load search path");
1922
1923 TUNABLE_STR("module_path", linker_path, sizeof(linker_path));
1924
1925 static const char * const linker_ext_list[] = {
1926 "",
1927 ".ko",
1928 NULL
1929 };
1930
1931 /*
1932 * Check if file actually exists either with or without extension listed in
1933 * the linker_ext_list. (probably should be generic for the rest of the
1934 * kernel)
1935 */
1936 static char *
linker_lookup_file(const char * path,int pathlen,const char * name,int namelen,struct vattr * vap)1937 linker_lookup_file(const char *path, int pathlen, const char *name,
1938 int namelen, struct vattr *vap)
1939 {
1940 struct nameidata nd;
1941 struct thread *td = curthread; /* XXX */
1942 const char * const *cpp, *sep;
1943 char *result;
1944 int error, len, extlen, reclen, flags;
1945 __enum_uint8(vtype) type;
1946
1947 extlen = 0;
1948 for (cpp = linker_ext_list; *cpp; cpp++) {
1949 len = strlen(*cpp);
1950 if (len > extlen)
1951 extlen = len;
1952 }
1953 extlen++; /* trailing '\0' */
1954 sep = (path[pathlen - 1] != '/') ? "/" : "";
1955
1956 reclen = pathlen + strlen(sep) + namelen + extlen + 1;
1957 result = malloc(reclen, M_LINKER, M_WAITOK);
1958 for (cpp = linker_ext_list; *cpp; cpp++) {
1959 snprintf(result, reclen, "%.*s%s%.*s%s", pathlen, path, sep,
1960 namelen, name, *cpp);
1961 /*
1962 * Attempt to open the file, and return the path if
1963 * we succeed and it's a regular file.
1964 */
1965 NDINIT(&nd, LOOKUP, FOLLOW, UIO_SYSSPACE, result);
1966 flags = FREAD;
1967 error = vn_open(&nd, &flags, 0, NULL);
1968 if (error == 0) {
1969 NDFREE_PNBUF(&nd);
1970 type = nd.ni_vp->v_type;
1971 if (vap)
1972 VOP_GETATTR(nd.ni_vp, vap, td->td_ucred);
1973 VOP_UNLOCK(nd.ni_vp);
1974 vn_close(nd.ni_vp, FREAD, td->td_ucred, td);
1975 if (type == VREG)
1976 return (result);
1977 }
1978 }
1979 free(result, M_LINKER);
1980 return (NULL);
1981 }
1982
1983 #define INT_ALIGN(base, ptr) ptr = \
1984 (base) + roundup2((ptr) - (base), sizeof(int))
1985
1986 /*
1987 * Lookup KLD which contains requested module in the "linker.hints" file. If
1988 * version specification is available, then try to find the best KLD.
1989 * Otherwise just find the latest one.
1990 */
1991 static char *
linker_hints_lookup(const char * path,int pathlen,const char * modname,int modnamelen,const struct mod_depend * verinfo)1992 linker_hints_lookup(const char *path, int pathlen, const char *modname,
1993 int modnamelen, const struct mod_depend *verinfo)
1994 {
1995 struct thread *td = curthread; /* XXX */
1996 struct ucred *cred = td ? td->td_ucred : NULL;
1997 struct nameidata nd;
1998 struct vattr vattr, mattr;
1999 const char *best, *sep;
2000 u_char *hints = NULL;
2001 u_char *cp, *recptr, *bufend, *result, *pathbuf;
2002 int error, ival, bestver, *intp, found, flags, clen, blen;
2003 ssize_t reclen;
2004
2005 result = NULL;
2006 bestver = found = 0;
2007
2008 sep = (path[pathlen - 1] != '/') ? "/" : "";
2009 reclen = imax(modnamelen, strlen(linker_hintfile)) + pathlen +
2010 strlen(sep) + 1;
2011 pathbuf = malloc(reclen, M_LINKER, M_WAITOK);
2012 snprintf(pathbuf, reclen, "%.*s%s%s", pathlen, path, sep,
2013 linker_hintfile);
2014
2015 NDINIT(&nd, LOOKUP, NOFOLLOW, UIO_SYSSPACE, pathbuf);
2016 flags = FREAD;
2017 error = vn_open(&nd, &flags, 0, NULL);
2018 if (error)
2019 goto bad;
2020 NDFREE_PNBUF(&nd);
2021 if (nd.ni_vp->v_type != VREG)
2022 goto bad;
2023 best = cp = NULL;
2024 error = VOP_GETATTR(nd.ni_vp, &vattr, cred);
2025 if (error)
2026 goto bad;
2027 /*
2028 * XXX: we need to limit this number to some reasonable value
2029 */
2030 if (vattr.va_size > LINKER_HINTS_MAX) {
2031 printf("linker.hints file too large %ld\n", (long)vattr.va_size);
2032 goto bad;
2033 }
2034 if (vattr.va_size < sizeof(ival)) {
2035 printf("linker.hints file truncated\n");
2036 goto bad;
2037 }
2038 hints = malloc(vattr.va_size, M_TEMP, M_WAITOK);
2039 error = vn_rdwr(UIO_READ, nd.ni_vp, (caddr_t)hints, vattr.va_size, 0,
2040 UIO_SYSSPACE, IO_NODELOCKED, cred, NOCRED, &reclen, td);
2041 if (error)
2042 goto bad;
2043 VOP_UNLOCK(nd.ni_vp);
2044 vn_close(nd.ni_vp, FREAD, cred, td);
2045 nd.ni_vp = NULL;
2046 if (reclen != 0) {
2047 printf("can't read %zd\n", reclen);
2048 goto bad;
2049 }
2050 intp = (int *)hints;
2051 ival = *intp++;
2052 if (ival != LINKER_HINTS_VERSION) {
2053 printf("linker.hints file version mismatch %d\n", ival);
2054 goto bad;
2055 }
2056 bufend = hints + vattr.va_size;
2057 recptr = (u_char *)intp;
2058 clen = blen = 0;
2059 while (recptr < bufend && !found) {
2060 intp = (int *)recptr;
2061 reclen = *intp++;
2062 ival = *intp++;
2063 cp = (char *)intp;
2064 switch (ival) {
2065 case MDT_VERSION:
2066 clen = *cp++;
2067 if (clen != modnamelen || bcmp(cp, modname, clen) != 0)
2068 break;
2069 cp += clen;
2070 INT_ALIGN(hints, cp);
2071 ival = *(int *)cp;
2072 cp += sizeof(int);
2073 clen = *cp++;
2074 if (verinfo == NULL ||
2075 ival == verinfo->md_ver_preferred) {
2076 found = 1;
2077 break;
2078 }
2079 if (ival >= verinfo->md_ver_minimum &&
2080 ival <= verinfo->md_ver_maximum &&
2081 ival > bestver) {
2082 bestver = ival;
2083 best = cp;
2084 blen = clen;
2085 }
2086 break;
2087 default:
2088 break;
2089 }
2090 recptr += reclen + sizeof(int);
2091 }
2092 /*
2093 * Finally check if KLD is in the place
2094 */
2095 if (found)
2096 result = linker_lookup_file(path, pathlen, cp, clen, &mattr);
2097 else if (best)
2098 result = linker_lookup_file(path, pathlen, best, blen, &mattr);
2099
2100 /*
2101 * KLD is newer than hints file. What we should do now?
2102 */
2103 if (result && timespeccmp(&mattr.va_mtime, &vattr.va_mtime, >))
2104 printf("warning: KLD '%s' is newer than the linker.hints"
2105 " file\n", result);
2106 bad:
2107 free(pathbuf, M_LINKER);
2108 if (hints)
2109 free(hints, M_TEMP);
2110 if (nd.ni_vp != NULL) {
2111 VOP_UNLOCK(nd.ni_vp);
2112 vn_close(nd.ni_vp, FREAD, cred, td);
2113 }
2114 /*
2115 * If nothing found or hints is absent - fallback to the old
2116 * way by using "kldname[.ko]" as module name.
2117 */
2118 if (!found && !bestver && result == NULL)
2119 result = linker_lookup_file(path, pathlen, modname,
2120 modnamelen, NULL);
2121 return (result);
2122 }
2123
2124 /*
2125 * Lookup KLD which contains requested module in the all directories.
2126 */
2127 static char *
linker_search_module(const char * modname,int modnamelen,const struct mod_depend * verinfo)2128 linker_search_module(const char *modname, int modnamelen,
2129 const struct mod_depend *verinfo)
2130 {
2131 char *cp, *ep, *result;
2132
2133 /*
2134 * traverse the linker path
2135 */
2136 for (cp = linker_path; *cp; cp = ep + 1) {
2137 /* find the end of this component */
2138 for (ep = cp; (*ep != 0) && (*ep != ';'); ep++);
2139 result = linker_hints_lookup(cp, ep - cp, modname,
2140 modnamelen, verinfo);
2141 if (result != NULL)
2142 return (result);
2143 if (*ep == 0)
2144 break;
2145 }
2146 return (NULL);
2147 }
2148
2149 /*
2150 * Search for module in all directories listed in the linker_path.
2151 */
2152 static char *
linker_search_kld(const char * name)2153 linker_search_kld(const char *name)
2154 {
2155 char *cp, *ep, *result;
2156 int len;
2157
2158 /* qualified at all? */
2159 if (strchr(name, '/'))
2160 return (strdup(name, M_LINKER));
2161
2162 /* traverse the linker path */
2163 len = strlen(name);
2164 for (ep = linker_path; *ep; ep++) {
2165 cp = ep;
2166 /* find the end of this component */
2167 for (; *ep != 0 && *ep != ';'; ep++);
2168 result = linker_lookup_file(cp, ep - cp, name, len, NULL);
2169 if (result != NULL)
2170 return (result);
2171 }
2172 return (NULL);
2173 }
2174
2175 static const char *
linker_basename(const char * path)2176 linker_basename(const char *path)
2177 {
2178 const char *filename;
2179
2180 filename = strrchr(path, '/');
2181 if (filename == NULL)
2182 return path;
2183 if (filename[1])
2184 filename++;
2185 return (filename);
2186 }
2187
2188 #if defined(HWPMC_HOOKS) || defined(HWT_HOOKS)
2189 /*
2190 * Inform hwpmc about the set of kernel modules currently loaded.
2191 */
2192 void *
linker_hwpmc_list_objects(void)2193 linker_hwpmc_list_objects(void)
2194 {
2195 linker_file_t lf;
2196 struct pmckern_map_in *kobase;
2197 int i, nmappings;
2198
2199 nmappings = 0;
2200 sx_slock(&kld_sx);
2201 TAILQ_FOREACH(lf, &linker_files, link)
2202 nmappings++;
2203
2204 /* Allocate nmappings + 1 entries. */
2205 kobase = malloc((nmappings + 1) * sizeof(struct pmckern_map_in),
2206 M_LINKER, M_WAITOK | M_ZERO);
2207 i = 0;
2208 TAILQ_FOREACH(lf, &linker_files, link) {
2209 /* Save the info for this linker file. */
2210 kobase[i].pm_file = lf->pathname;
2211 kobase[i].pm_address = (uintptr_t)lf->address;
2212 i++;
2213 }
2214 sx_sunlock(&kld_sx);
2215
2216 KASSERT(i > 0, ("linker_hpwmc_list_objects: no kernel objects?"));
2217
2218 /* The last entry of the malloced area comprises of all zeros. */
2219 KASSERT(kobase[i].pm_file == NULL,
2220 ("linker_hwpmc_list_objects: last object not NULL"));
2221
2222 return ((void *)kobase);
2223 }
2224 #endif
2225
2226 /* check if root file system is not mounted */
2227 static bool
linker_root_mounted(void)2228 linker_root_mounted(void)
2229 {
2230 struct pwd *pwd;
2231 bool ret;
2232
2233 if (rootvnode == NULL)
2234 return (false);
2235
2236 pwd = pwd_hold(curthread);
2237 ret = pwd->pwd_rdir != NULL;
2238 pwd_drop(pwd);
2239 return (ret);
2240 }
2241
2242 /*
2243 * Find a file which contains given module and load it, if "parent" is not
2244 * NULL, register a reference to it.
2245 */
2246 static int
linker_load_module(const char * kldname,const char * modname,struct linker_file * parent,const struct mod_depend * verinfo,struct linker_file ** lfpp)2247 linker_load_module(const char *kldname, const char *modname,
2248 struct linker_file *parent, const struct mod_depend *verinfo,
2249 struct linker_file **lfpp)
2250 {
2251 linker_file_t lfdep;
2252 const char *filename;
2253 char *pathname;
2254 int error;
2255
2256 sx_assert(&kld_sx, SA_XLOCKED);
2257 if (modname == NULL) {
2258 /*
2259 * We have to load KLD
2260 */
2261 KASSERT(verinfo == NULL, ("linker_load_module: verinfo"
2262 " is not NULL"));
2263 if (!linker_root_mounted())
2264 return (ENXIO);
2265 pathname = linker_search_kld(kldname);
2266 } else {
2267 if (modlist_lookup2(modname, verinfo) != NULL)
2268 return (EEXIST);
2269 if (!linker_root_mounted())
2270 return (ENXIO);
2271 if (kldname != NULL)
2272 pathname = strdup(kldname, M_LINKER);
2273 else
2274 /*
2275 * Need to find a KLD with required module
2276 */
2277 pathname = linker_search_module(modname,
2278 strlen(modname), verinfo);
2279 }
2280 if (pathname == NULL)
2281 return (ENOENT);
2282
2283 /*
2284 * Can't load more than one file with the same basename XXX:
2285 * Actually it should be possible to have multiple KLDs with
2286 * the same basename but different path because they can
2287 * provide different versions of the same modules.
2288 */
2289 filename = linker_basename(pathname);
2290 if (linker_find_file_by_name(filename))
2291 error = EEXIST;
2292 else do {
2293 error = linker_load_file(pathname, &lfdep);
2294 if (error)
2295 break;
2296 if (modname && verinfo &&
2297 modlist_lookup2(modname, verinfo) == NULL) {
2298 linker_file_unload(lfdep, LINKER_UNLOAD_FORCE);
2299 error = ENOENT;
2300 break;
2301 }
2302 if (parent)
2303 linker_file_add_dependency(parent, lfdep);
2304 if (lfpp)
2305 *lfpp = lfdep;
2306 } while (0);
2307 free(pathname, M_LINKER);
2308 return (error);
2309 }
2310
2311 /*
2312 * This routine is responsible for finding dependencies of userland initiated
2313 * kldload(2)'s of files.
2314 */
2315 int
linker_load_dependencies(linker_file_t lf)2316 linker_load_dependencies(linker_file_t lf)
2317 {
2318 linker_file_t lfdep;
2319 struct mod_metadata **start, **stop, **mdp, **nmdp;
2320 struct mod_metadata *mp, *nmp;
2321 const struct mod_depend *verinfo;
2322 modlist_t mod;
2323 const char *modname, *nmodname;
2324 int ver, error = 0;
2325
2326 /*
2327 * All files are dependent on /kernel.
2328 */
2329 sx_assert(&kld_sx, SA_XLOCKED);
2330 if (linker_kernel_file) {
2331 linker_kernel_file->refs++;
2332 linker_file_add_dependency(lf, linker_kernel_file);
2333 }
2334 if (linker_file_lookup_set(lf, MDT_SETNAME, &start, &stop,
2335 NULL) != 0)
2336 return (0);
2337 for (mdp = start; mdp < stop; mdp++) {
2338 mp = *mdp;
2339 if (mp->md_type != MDT_VERSION)
2340 continue;
2341 modname = mp->md_cval;
2342 ver = ((const struct mod_version *)mp->md_data)->mv_version;
2343 mod = modlist_lookup(modname, ver);
2344 if (mod != NULL) {
2345 printf("interface %s.%d already present in the KLD"
2346 " '%s'!\n", modname, ver,
2347 mod->container->filename);
2348 return (EEXIST);
2349 }
2350 }
2351
2352 for (mdp = start; mdp < stop; mdp++) {
2353 mp = *mdp;
2354 if (mp->md_type != MDT_DEPEND)
2355 continue;
2356 modname = mp->md_cval;
2357 verinfo = mp->md_data;
2358 nmodname = NULL;
2359 for (nmdp = start; nmdp < stop; nmdp++) {
2360 nmp = *nmdp;
2361 if (nmp->md_type != MDT_VERSION)
2362 continue;
2363 nmodname = nmp->md_cval;
2364 if (strcmp(modname, nmodname) == 0)
2365 break;
2366 }
2367 if (nmdp < stop)/* early exit, it's a self reference */
2368 continue;
2369 mod = modlist_lookup2(modname, verinfo);
2370 if (mod) { /* woohoo, it's loaded already */
2371 lfdep = mod->container;
2372 lfdep->refs++;
2373 linker_file_add_dependency(lf, lfdep);
2374 continue;
2375 }
2376 error = linker_load_module(NULL, modname, lf, verinfo, NULL);
2377 if (error) {
2378 printf("KLD %s: depends on %s - not available or"
2379 " version mismatch\n", lf->filename, modname);
2380 break;
2381 }
2382 }
2383
2384 if (error)
2385 return (error);
2386 linker_addmodules(lf, start, stop, 0);
2387 return (error);
2388 }
2389
2390 static int
sysctl_kern_function_list_iterate(const char * name,void * opaque)2391 sysctl_kern_function_list_iterate(const char *name, void *opaque)
2392 {
2393 struct sysctl_req *req;
2394
2395 req = opaque;
2396 return (SYSCTL_OUT(req, name, strlen(name) + 1));
2397 }
2398
2399 /*
2400 * Export a nul-separated, double-nul-terminated list of all function names
2401 * in the kernel.
2402 */
2403 static int
sysctl_kern_function_list(SYSCTL_HANDLER_ARGS)2404 sysctl_kern_function_list(SYSCTL_HANDLER_ARGS)
2405 {
2406 linker_file_t lf;
2407 int error;
2408
2409 #ifdef MAC
2410 error = mac_kld_check_stat(req->td->td_ucred);
2411 if (error)
2412 return (error);
2413 #endif
2414 error = sysctl_wire_old_buffer(req, 0);
2415 if (error != 0)
2416 return (error);
2417 sx_xlock(&kld_sx);
2418 TAILQ_FOREACH(lf, &linker_files, link) {
2419 error = LINKER_EACH_FUNCTION_NAME(lf,
2420 sysctl_kern_function_list_iterate, req);
2421 if (error) {
2422 sx_xunlock(&kld_sx);
2423 return (error);
2424 }
2425 }
2426 sx_xunlock(&kld_sx);
2427 return (SYSCTL_OUT(req, "", 1));
2428 }
2429
2430 SYSCTL_PROC(_kern, OID_AUTO, function_list,
2431 CTLTYPE_OPAQUE | CTLFLAG_RD | CTLFLAG_MPSAFE, NULL, 0,
2432 sysctl_kern_function_list, "",
2433 "kernel function list");
2434