kern_module.c revision 1.28 1 1.28 ad /* $NetBSD: kern_module.c,v 1.28 2008/11/18 11:56:09 ad Exp $ */
2 1.1 ad
3 1.1 ad /*-
4 1.1 ad * Copyright (c) 2008 The NetBSD Foundation, Inc.
5 1.1 ad * All rights reserved.
6 1.1 ad *
7 1.25 ad * This code is derived from software developed for The NetBSD Foundation
8 1.25 ad * by Andrew Doran.
9 1.25 ad *
10 1.1 ad * Redistribution and use in source and binary forms, with or without
11 1.1 ad * modification, are permitted provided that the following conditions
12 1.1 ad * are met:
13 1.1 ad * 1. Redistributions of source code must retain the above copyright
14 1.1 ad * notice, this list of conditions and the following disclaimer.
15 1.1 ad * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 ad * notice, this list of conditions and the following disclaimer in the
17 1.1 ad * documentation and/or other materials provided with the distribution.
18 1.1 ad *
19 1.1 ad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 ad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 ad * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 ad * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 ad * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 ad * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 ad * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 ad * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 ad * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 ad * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 ad * POSSIBILITY OF SUCH DAMAGE.
30 1.1 ad */
31 1.1 ad
32 1.1 ad /*
33 1.2 ad * Kernel module support.
34 1.1 ad */
35 1.1 ad
36 1.1 ad #include <sys/cdefs.h>
37 1.28 ad __KERNEL_RCSID(0, "$NetBSD: kern_module.c,v 1.28 2008/11/18 11:56:09 ad Exp $");
38 1.1 ad
39 1.1 ad #include <sys/param.h>
40 1.1 ad #include <sys/systm.h>
41 1.26 ad #include <sys/kernel.h>
42 1.1 ad #include <sys/fcntl.h>
43 1.1 ad #include <sys/proc.h>
44 1.1 ad #include <sys/kauth.h>
45 1.1 ad #include <sys/kobj.h>
46 1.1 ad #include <sys/kmem.h>
47 1.1 ad #include <sys/module.h>
48 1.18 ad #include <sys/kauth.h>
49 1.26 ad #include <sys/kthread.h>
50 1.1 ad
51 1.1 ad #include <uvm/uvm_extern.h>
52 1.1 ad
53 1.1 ad #include <machine/stdarg.h>
54 1.1 ad
55 1.25 ad struct vm_map *module_map;
56 1.2 ad
57 1.1 ad struct modlist module_list = TAILQ_HEAD_INITIALIZER(module_list);
58 1.1 ad struct modlist module_bootlist = TAILQ_HEAD_INITIALIZER(module_bootlist);
59 1.12 ad static module_t *module_active;
60 1.16 ad static char module_base[64];
61 1.1 ad u_int module_count;
62 1.1 ad kmutex_t module_lock;
63 1.26 ad u_int module_autotime = 10;
64 1.26 ad u_int module_gen = 1;
65 1.26 ad static kcondvar_t module_thread_cv;
66 1.26 ad static kmutex_t module_thread_lock;
67 1.26 ad static int module_thread_ticks;
68 1.1 ad
69 1.1 ad /* Ensure that the kernel's link set isn't empty. */
70 1.1 ad static modinfo_t module_dummy;
71 1.1 ad __link_set_add_rodata(modules, module_dummy);
72 1.1 ad
73 1.1 ad static module_t *module_lookup(const char *);
74 1.9 jmmv static int module_do_load(const char *, bool, int, prop_dictionary_t,
75 1.20 ad module_t **, modclass_t class, bool);
76 1.1 ad static int module_do_unload(const char *);
77 1.1 ad static void module_error(const char *, ...);
78 1.1 ad static int module_do_builtin(const char *, module_t **);
79 1.11 ad static int module_fetch_info(module_t *);
80 1.26 ad static void module_thread(void *);
81 1.1 ad
82 1.1 ad /*
83 1.1 ad * module_error:
84 1.1 ad *
85 1.1 ad * Utility function: log an error.
86 1.1 ad */
87 1.1 ad static void
88 1.1 ad module_error(const char *fmt, ...)
89 1.1 ad {
90 1.1 ad va_list ap;
91 1.1 ad
92 1.1 ad va_start(ap, fmt);
93 1.1 ad printf("WARNING: module error: ");
94 1.1 ad vprintf(fmt, ap);
95 1.1 ad printf("\n");
96 1.1 ad va_end(ap);
97 1.1 ad }
98 1.1 ad
99 1.1 ad /*
100 1.1 ad * module_init:
101 1.1 ad *
102 1.1 ad * Initialize the module subsystem.
103 1.1 ad */
104 1.1 ad void
105 1.1 ad module_init(void)
106 1.1 ad {
107 1.25 ad extern struct vm_map *module_map;
108 1.26 ad int error;
109 1.1 ad
110 1.25 ad if (module_map == NULL) {
111 1.25 ad module_map = kernel_map;
112 1.25 ad }
113 1.1 ad mutex_init(&module_lock, MUTEX_DEFAULT, IPL_NONE);
114 1.26 ad cv_init(&module_thread_cv, "modunload");
115 1.26 ad mutex_init(&module_thread_lock, MUTEX_DEFAULT, IPL_NONE);
116 1.13 ad #ifdef MODULAR /* XXX */
117 1.11 ad module_init_md();
118 1.12 ad #endif
119 1.16 ad
120 1.16 ad #if __NetBSD_Version__ / 1000000 % 100 == 99 /* -current */
121 1.17 ad snprintf(module_base, sizeof(module_base), "/stand/%s/%s/modules",
122 1.17 ad machine, osrelease);
123 1.16 ad #else /* release */
124 1.17 ad snprintf(module_base, sizeof(module_base), "/stand/%s/%d.%d/modules",
125 1.17 ad machine, __NetBSD_Version__ / 100000000,
126 1.16 ad __NetBSD_Version__ / 1000000 % 100);
127 1.16 ad #endif
128 1.26 ad
129 1.26 ad error = kthread_create(PRI_VM, KTHREAD_MPSAFE, NULL, module_thread,
130 1.26 ad NULL, NULL, "modunload");
131 1.26 ad if (error != 0)
132 1.26 ad panic("module_init: %d", error);
133 1.1 ad }
134 1.1 ad
135 1.1 ad /*
136 1.1 ad * module_init_class:
137 1.1 ad *
138 1.1 ad * Initialize all built-in and pre-loaded modules of the
139 1.1 ad * specified class.
140 1.1 ad */
141 1.1 ad void
142 1.1 ad module_init_class(modclass_t class)
143 1.1 ad {
144 1.1 ad __link_set_decl(modules, modinfo_t);
145 1.1 ad modinfo_t *const *mip, *mi;
146 1.1 ad module_t *mod;
147 1.1 ad
148 1.1 ad mutex_enter(&module_lock);
149 1.1 ad /*
150 1.1 ad * Builtins first. These can't depend on pre-loaded modules.
151 1.1 ad */
152 1.1 ad __link_set_foreach(mip, modules) {
153 1.1 ad mi = *mip;
154 1.1 ad if (mi == &module_dummy) {
155 1.1 ad continue;
156 1.1 ad }
157 1.1 ad if (class != MODULE_CLASS_ANY && class != mi->mi_class) {
158 1.1 ad continue;
159 1.1 ad }
160 1.1 ad (void)module_do_builtin(mi->mi_name, NULL);
161 1.1 ad }
162 1.1 ad /*
163 1.1 ad * Now preloaded modules. These will be pulled off the
164 1.1 ad * list as we call module_do_load();
165 1.1 ad */
166 1.11 ad do {
167 1.11 ad TAILQ_FOREACH(mod, &module_bootlist, mod_chain) {
168 1.11 ad mi = mod->mod_info;
169 1.11 ad if (class != MODULE_CLASS_ANY &&
170 1.11 ad class != mi->mi_class)
171 1.11 ad continue;
172 1.18 ad module_do_load(mi->mi_name, false, 0, NULL, NULL,
173 1.20 ad class, true);
174 1.11 ad break;
175 1.11 ad }
176 1.11 ad } while (mod != NULL);
177 1.1 ad mutex_exit(&module_lock);
178 1.1 ad }
179 1.1 ad
180 1.1 ad /*
181 1.21 ad * module_compatible:
182 1.1 ad *
183 1.21 ad * Return true if the two supplied kernel versions are said to
184 1.21 ad * have the same binary interface for kernel code. The entire
185 1.21 ad * version is signficant for the development tree (-current),
186 1.21 ad * major and minor versions are significant for official
187 1.21 ad * releases of the system.
188 1.1 ad */
189 1.22 pooka bool
190 1.21 ad module_compatible(int v1, int v2)
191 1.1 ad {
192 1.1 ad
193 1.21 ad #if __NetBSD_Version__ / 1000000 % 100 == 99 /* -current */
194 1.21 ad return v1 == v2;
195 1.21 ad #else /* release */
196 1.21 ad return abs(v1 - v2) < 10000;
197 1.21 ad #endif
198 1.1 ad }
199 1.1 ad
200 1.1 ad /*
201 1.1 ad * module_load:
202 1.1 ad *
203 1.9 jmmv * Load a single module from the file system.
204 1.1 ad */
205 1.1 ad int
206 1.18 ad module_load(const char *filename, int flags, prop_dictionary_t props,
207 1.23 ad modclass_t class)
208 1.1 ad {
209 1.1 ad int error;
210 1.1 ad
211 1.18 ad /* Authorize. */
212 1.18 ad error = kauth_authorize_system(kauth_cred_get(), KAUTH_SYSTEM_MODULE,
213 1.18 ad 0, (void *)(uintptr_t)MODCTL_LOAD, NULL, NULL);
214 1.18 ad if (error != 0) {
215 1.18 ad return error;
216 1.18 ad }
217 1.18 ad
218 1.1 ad mutex_enter(&module_lock);
219 1.20 ad error = module_do_load(filename, false, flags, props, NULL, class,
220 1.23 ad false);
221 1.1 ad mutex_exit(&module_lock);
222 1.1 ad
223 1.1 ad return error;
224 1.1 ad }
225 1.1 ad
226 1.1 ad /*
227 1.23 ad * module_autoload:
228 1.23 ad *
229 1.23 ad * Load a single module from the file system, system initiated.
230 1.23 ad */
231 1.23 ad int
232 1.23 ad module_autoload(const char *filename, modclass_t class)
233 1.23 ad {
234 1.23 ad int error;
235 1.23 ad
236 1.23 ad KASSERT(mutex_owned(&module_lock));
237 1.23 ad
238 1.23 ad /* Authorize. */
239 1.23 ad error = kauth_authorize_system(kauth_cred_get(), KAUTH_SYSTEM_MODULE,
240 1.23 ad 0, (void *)(uintptr_t)MODCTL_LOAD, (void *)(uintptr_t)1, NULL);
241 1.23 ad if (error != 0) {
242 1.23 ad return error;
243 1.23 ad }
244 1.23 ad
245 1.23 ad return module_do_load(filename, false, 0, NULL, NULL, class, true);
246 1.23 ad }
247 1.23 ad
248 1.23 ad /*
249 1.1 ad * module_unload:
250 1.1 ad *
251 1.1 ad * Find and unload a module by name.
252 1.1 ad */
253 1.1 ad int
254 1.1 ad module_unload(const char *name)
255 1.1 ad {
256 1.1 ad int error;
257 1.1 ad
258 1.18 ad /* Authorize. */
259 1.18 ad error = kauth_authorize_system(kauth_cred_get(), KAUTH_SYSTEM_MODULE,
260 1.18 ad 0, (void *)(uintptr_t)MODCTL_UNLOAD, NULL, NULL);
261 1.18 ad if (error != 0) {
262 1.18 ad return error;
263 1.18 ad }
264 1.18 ad
265 1.1 ad mutex_enter(&module_lock);
266 1.1 ad error = module_do_unload(name);
267 1.1 ad mutex_exit(&module_lock);
268 1.1 ad
269 1.1 ad return error;
270 1.1 ad }
271 1.1 ad
272 1.1 ad /*
273 1.1 ad * module_lookup:
274 1.1 ad *
275 1.1 ad * Look up a module by name.
276 1.1 ad */
277 1.1 ad module_t *
278 1.1 ad module_lookup(const char *name)
279 1.1 ad {
280 1.1 ad module_t *mod;
281 1.1 ad
282 1.1 ad KASSERT(mutex_owned(&module_lock));
283 1.1 ad
284 1.1 ad TAILQ_FOREACH(mod, &module_list, mod_chain) {
285 1.1 ad if (strcmp(mod->mod_info->mi_name, name) == 0) {
286 1.1 ad break;
287 1.1 ad }
288 1.1 ad }
289 1.1 ad
290 1.1 ad return mod;
291 1.1 ad }
292 1.1 ad
293 1.1 ad /*
294 1.1 ad * module_hold:
295 1.1 ad *
296 1.1 ad * Add a single reference to a module. It's the caller's
297 1.1 ad * responsibility to ensure that the reference is dropped
298 1.1 ad * later.
299 1.1 ad */
300 1.1 ad int
301 1.1 ad module_hold(const char *name)
302 1.1 ad {
303 1.1 ad module_t *mod;
304 1.1 ad
305 1.1 ad mutex_enter(&module_lock);
306 1.1 ad mod = module_lookup(name);
307 1.1 ad if (mod == NULL) {
308 1.1 ad mutex_exit(&module_lock);
309 1.1 ad return ENOENT;
310 1.1 ad }
311 1.1 ad mod->mod_refcnt++;
312 1.1 ad mutex_exit(&module_lock);
313 1.1 ad
314 1.1 ad return 0;
315 1.1 ad }
316 1.1 ad
317 1.1 ad /*
318 1.1 ad * module_rele:
319 1.1 ad *
320 1.1 ad * Release a reference acquired with module_hold().
321 1.1 ad */
322 1.1 ad void
323 1.1 ad module_rele(const char *name)
324 1.1 ad {
325 1.1 ad module_t *mod;
326 1.1 ad
327 1.1 ad mutex_enter(&module_lock);
328 1.1 ad mod = module_lookup(name);
329 1.1 ad if (mod == NULL) {
330 1.1 ad mutex_exit(&module_lock);
331 1.1 ad panic("module_rele: gone");
332 1.1 ad }
333 1.1 ad mod->mod_refcnt--;
334 1.1 ad mutex_exit(&module_lock);
335 1.1 ad }
336 1.1 ad
337 1.1 ad /*
338 1.27 ad * module_enqueue:
339 1.27 ad *
340 1.27 ad * Put a module onto the global list and update counters.
341 1.27 ad */
342 1.27 ad static void
343 1.27 ad module_enqueue(module_t *mod)
344 1.27 ad {
345 1.27 ad int i;
346 1.27 ad
347 1.27 ad /*
348 1.27 ad * If there are requisite modules, put at the head of the queue.
349 1.27 ad * This is so that autounload can unload requisite modules with
350 1.27 ad * only one pass through the queue.
351 1.27 ad */
352 1.27 ad if (mod->mod_nrequired) {
353 1.27 ad TAILQ_INSERT_HEAD(&module_list, mod, mod_chain);
354 1.27 ad
355 1.27 ad /* Add references to the requisite modules. */
356 1.27 ad for (i = 0; i < mod->mod_nrequired; i++) {
357 1.27 ad KASSERT(mod->mod_required[i] != NULL);
358 1.27 ad mod->mod_required[i]->mod_refcnt++;
359 1.27 ad }
360 1.27 ad } else {
361 1.27 ad TAILQ_INSERT_TAIL(&module_list, mod, mod_chain);
362 1.27 ad }
363 1.27 ad module_count++;
364 1.27 ad module_gen++;
365 1.27 ad }
366 1.27 ad
367 1.27 ad /*
368 1.1 ad * module_do_builtin:
369 1.1 ad *
370 1.1 ad * Initialize a single module from the list of modules that are
371 1.1 ad * built into the kernel (linked into the kernel image).
372 1.1 ad */
373 1.1 ad static int
374 1.1 ad module_do_builtin(const char *name, module_t **modp)
375 1.1 ad {
376 1.1 ad __link_set_decl(modules, modinfo_t);
377 1.1 ad modinfo_t *const *mip;
378 1.1 ad const char *p, *s;
379 1.1 ad char buf[MAXMODNAME];
380 1.1 ad modinfo_t *mi;
381 1.1 ad module_t *mod, *mod2;
382 1.1 ad size_t len;
383 1.27 ad int error;
384 1.1 ad
385 1.1 ad KASSERT(mutex_owned(&module_lock));
386 1.1 ad
387 1.1 ad /*
388 1.1 ad * Check to see if already loaded.
389 1.1 ad */
390 1.1 ad if ((mod = module_lookup(name)) != NULL) {
391 1.1 ad if (modp != NULL) {
392 1.1 ad *modp = mod;
393 1.1 ad }
394 1.1 ad return 0;
395 1.1 ad }
396 1.1 ad
397 1.1 ad /*
398 1.1 ad * Search the list to see if we have a module by this name.
399 1.1 ad */
400 1.1 ad error = ENOENT;
401 1.1 ad __link_set_foreach(mip, modules) {
402 1.1 ad mi = *mip;
403 1.1 ad if (mi == &module_dummy) {
404 1.1 ad continue;
405 1.1 ad }
406 1.1 ad if (strcmp(mi->mi_name, name) == 0) {
407 1.1 ad error = 0;
408 1.1 ad break;
409 1.1 ad }
410 1.1 ad }
411 1.1 ad if (error != 0) {
412 1.1 ad return error;
413 1.1 ad }
414 1.1 ad
415 1.1 ad /*
416 1.1 ad * Initialize pre-requisites.
417 1.1 ad */
418 1.1 ad mod = kmem_zalloc(sizeof(*mod), KM_SLEEP);
419 1.1 ad if (mod == NULL) {
420 1.1 ad return ENOMEM;
421 1.1 ad }
422 1.1 ad if (modp != NULL) {
423 1.1 ad *modp = mod;
424 1.1 ad }
425 1.1 ad if (mi->mi_required != NULL) {
426 1.1 ad for (s = mi->mi_required; *s != '\0'; s = p) {
427 1.1 ad if (*s == ',')
428 1.1 ad s++;
429 1.1 ad p = s;
430 1.1 ad while (*p != '\0' && *p != ',')
431 1.1 ad p++;
432 1.1 ad len = min(p - s + 1, sizeof(buf));
433 1.1 ad strlcpy(buf, s, len);
434 1.1 ad if (buf[0] == '\0')
435 1.1 ad break;
436 1.1 ad if (mod->mod_nrequired == MAXMODDEPS - 1) {
437 1.1 ad module_error("too many required modules");
438 1.1 ad kmem_free(mod, sizeof(*mod));
439 1.1 ad return EINVAL;
440 1.1 ad }
441 1.1 ad error = module_do_builtin(buf, &mod2);
442 1.1 ad if (error != 0) {
443 1.1 ad kmem_free(mod, sizeof(*mod));
444 1.1 ad return error;
445 1.1 ad }
446 1.1 ad mod->mod_required[mod->mod_nrequired++] = mod2;
447 1.1 ad }
448 1.1 ad }
449 1.1 ad
450 1.1 ad /*
451 1.1 ad * Try to initialize the module.
452 1.1 ad */
453 1.12 ad KASSERT(module_active == NULL);
454 1.12 ad module_active = mod;
455 1.1 ad error = (*mi->mi_modcmd)(MODULE_CMD_INIT, NULL);
456 1.12 ad module_active = NULL;
457 1.1 ad if (error != 0) {
458 1.1 ad module_error("builtin module `%s' "
459 1.1 ad "failed to init", mi->mi_name);
460 1.1 ad kmem_free(mod, sizeof(*mod));
461 1.1 ad return error;
462 1.1 ad }
463 1.1 ad mod->mod_info = mi;
464 1.1 ad mod->mod_source = MODULE_SOURCE_KERNEL;
465 1.27 ad module_enqueue(mod);
466 1.1 ad return 0;
467 1.1 ad }
468 1.1 ad
469 1.1 ad /*
470 1.1 ad * module_do_load:
471 1.1 ad *
472 1.1 ad * Helper routine: load a module from the file system, or one
473 1.1 ad * pushed by the boot loader.
474 1.1 ad */
475 1.1 ad static int
476 1.27 ad module_do_load(const char *name, bool isdep, int flags,
477 1.20 ad prop_dictionary_t props, module_t **modp, modclass_t class,
478 1.20 ad bool autoload)
479 1.1 ad {
480 1.1 ad static TAILQ_HEAD(,module) pending = TAILQ_HEAD_INITIALIZER(pending);
481 1.1 ad static int depth;
482 1.1 ad const int maxdepth = 6;
483 1.1 ad modinfo_t *mi;
484 1.1 ad module_t *mod, *mod2;
485 1.1 ad char buf[MAXMODNAME];
486 1.1 ad const char *s, *p;
487 1.1 ad int error;
488 1.1 ad size_t len;
489 1.1 ad
490 1.1 ad KASSERT(mutex_owned(&module_lock));
491 1.1 ad
492 1.1 ad error = 0;
493 1.1 ad
494 1.1 ad /*
495 1.1 ad * Avoid recursing too far.
496 1.1 ad */
497 1.1 ad if (++depth > maxdepth) {
498 1.1 ad module_error("too many required modules");
499 1.1 ad depth--;
500 1.1 ad return EMLINK;
501 1.1 ad }
502 1.1 ad
503 1.1 ad /*
504 1.1 ad * Load the module and link. Before going to the file system,
505 1.1 ad * scan the list of modules loaded by the boot loader. Just
506 1.1 ad * before init is started the list of modules loaded at boot
507 1.1 ad * will be purged. Before init is started we can assume that
508 1.27 ad * `name' is a module name and not a path name.
509 1.1 ad */
510 1.1 ad TAILQ_FOREACH(mod, &module_bootlist, mod_chain) {
511 1.27 ad if (strcmp(mod->mod_info->mi_name, name) == 0) {
512 1.1 ad TAILQ_REMOVE(&module_bootlist, mod, mod_chain);
513 1.1 ad break;
514 1.1 ad }
515 1.1 ad }
516 1.14 rumble if (mod != NULL) {
517 1.14 rumble TAILQ_INSERT_TAIL(&pending, mod, mod_chain);
518 1.14 rumble } else {
519 1.27 ad /*
520 1.27 ad * If a requisite module, check to see if it is
521 1.27 ad * already present.
522 1.27 ad */
523 1.27 ad if (isdep) {
524 1.27 ad TAILQ_FOREACH(mod, &module_list, mod_chain) {
525 1.27 ad if (strcmp(mod->mod_info->mi_name, name) == 0) {
526 1.27 ad break;
527 1.27 ad }
528 1.27 ad }
529 1.27 ad if (mod != NULL) {
530 1.27 ad if (modp != NULL) {
531 1.27 ad *modp = mod;
532 1.27 ad }
533 1.27 ad depth--;
534 1.27 ad return 0;
535 1.27 ad }
536 1.27 ad }
537 1.1 ad mod = kmem_zalloc(sizeof(*mod), KM_SLEEP);
538 1.1 ad if (mod == NULL) {
539 1.1 ad depth--;
540 1.1 ad return ENOMEM;
541 1.1 ad }
542 1.27 ad error = kobj_load_file(&mod->mod_kobj, name, module_base,
543 1.20 ad autoload);
544 1.1 ad if (error != 0) {
545 1.1 ad kmem_free(mod, sizeof(*mod));
546 1.1 ad depth--;
547 1.26 ad if (!autoload) {
548 1.26 ad module_error("unable to load kernel object");
549 1.26 ad }
550 1.8 rumble return error;
551 1.7 rumble }
552 1.14 rumble TAILQ_INSERT_TAIL(&pending, mod, mod_chain);
553 1.1 ad mod->mod_source = MODULE_SOURCE_FILESYS;
554 1.11 ad error = module_fetch_info(mod);
555 1.11 ad if (error != 0) {
556 1.11 ad goto fail;
557 1.11 ad }
558 1.1 ad }
559 1.1 ad
560 1.1 ad /*
561 1.11 ad * Check compatibility.
562 1.1 ad */
563 1.1 ad mi = mod->mod_info;
564 1.3 rumble if (strlen(mi->mi_name) >= MAXMODNAME) {
565 1.3 rumble error = EINVAL;
566 1.3 rumble module_error("module name too long");
567 1.3 rumble goto fail;
568 1.3 rumble }
569 1.21 ad if (!module_compatible(mi->mi_version, __NetBSD_Version__)) {
570 1.21 ad module_error("module built for different version of system");
571 1.24 ad if ((flags & MODCTL_LOAD_FORCE) != 0) {
572 1.24 ad module_error("forced load, system may be unstable");
573 1.24 ad } else {
574 1.24 ad error = EPROGMISMATCH;
575 1.24 ad goto fail;
576 1.24 ad }
577 1.21 ad }
578 1.3 rumble
579 1.1 ad /*
580 1.18 ad * If a specific kind of module was requested, ensure that we have
581 1.18 ad * a match.
582 1.18 ad */
583 1.18 ad if (class != MODULE_CLASS_ANY && class != mi->mi_class) {
584 1.18 ad error = ENOENT;
585 1.18 ad goto fail;
586 1.18 ad }
587 1.18 ad
588 1.18 ad /*
589 1.27 ad * If loading a dependency, `name' is a plain module name.
590 1.1 ad * The name must match.
591 1.1 ad */
592 1.27 ad if (isdep && strcmp(mi->mi_name, name) != 0) {
593 1.1 ad error = ENOENT;
594 1.1 ad goto fail;
595 1.1 ad }
596 1.1 ad
597 1.1 ad /*
598 1.3 rumble * Check to see if the module is already loaded. If so, we may
599 1.3 rumble * have been recursively called to handle a dependency, so be sure
600 1.3 rumble * to set modp.
601 1.1 ad */
602 1.3 rumble if ((mod2 = module_lookup(mi->mi_name)) != NULL) {
603 1.5 rumble if (modp != NULL)
604 1.5 rumble *modp = mod2;
605 1.1 ad error = EEXIST;
606 1.1 ad goto fail;
607 1.1 ad }
608 1.3 rumble
609 1.3 rumble /*
610 1.3 rumble * Block circular dependencies.
611 1.3 rumble */
612 1.1 ad TAILQ_FOREACH(mod2, &pending, mod_chain) {
613 1.1 ad if (mod == mod2) {
614 1.1 ad continue;
615 1.1 ad }
616 1.1 ad if (strcmp(mod2->mod_info->mi_name, mi->mi_name) == 0) {
617 1.1 ad error = EDEADLK;
618 1.1 ad module_error("circular dependency detected");
619 1.1 ad goto fail;
620 1.1 ad }
621 1.1 ad }
622 1.1 ad
623 1.1 ad /*
624 1.1 ad * Now try to load any requisite modules.
625 1.1 ad */
626 1.1 ad if (mi->mi_required != NULL) {
627 1.1 ad for (s = mi->mi_required; *s != '\0'; s = p) {
628 1.1 ad if (*s == ',')
629 1.1 ad s++;
630 1.1 ad p = s;
631 1.1 ad while (*p != '\0' && *p != ',')
632 1.1 ad p++;
633 1.3 rumble len = p - s + 1;
634 1.3 rumble if (len >= MAXMODNAME) {
635 1.3 rumble error = EINVAL;
636 1.3 rumble module_error("required module name too long");
637 1.3 rumble goto fail;
638 1.3 rumble }
639 1.1 ad strlcpy(buf, s, len);
640 1.1 ad if (buf[0] == '\0')
641 1.1 ad break;
642 1.1 ad if (mod->mod_nrequired == MAXMODDEPS - 1) {
643 1.1 ad error = EINVAL;
644 1.1 ad module_error("too many required modules");
645 1.1 ad goto fail;
646 1.1 ad }
647 1.6 rumble if (strcmp(buf, mi->mi_name) == 0) {
648 1.6 rumble error = EDEADLK;
649 1.6 rumble module_error("self-dependency detected");
650 1.6 rumble goto fail;
651 1.6 rumble }
652 1.9 jmmv error = module_do_load(buf, true, flags, NULL,
653 1.18 ad &mod->mod_required[mod->mod_nrequired++],
654 1.20 ad MODULE_CLASS_ANY, true);
655 1.27 ad if (error != 0)
656 1.1 ad goto fail;
657 1.1 ad }
658 1.1 ad }
659 1.1 ad
660 1.1 ad /*
661 1.15 ad * We loaded all needed modules successfully: perform global
662 1.15 ad * relocations and initialize.
663 1.1 ad */
664 1.15 ad error = kobj_affix(mod->mod_kobj, mi->mi_name);
665 1.15 ad if (error != 0) {
666 1.15 ad module_error("unable to affix module");
667 1.15 ad goto fail2;
668 1.15 ad }
669 1.15 ad
670 1.12 ad KASSERT(module_active == NULL);
671 1.12 ad module_active = mod;
672 1.9 jmmv error = (*mi->mi_modcmd)(MODULE_CMD_INIT, props);
673 1.12 ad module_active = NULL;
674 1.1 ad if (error != 0) {
675 1.1 ad module_error("modctl function returned error %d", error);
676 1.1 ad goto fail;
677 1.1 ad }
678 1.1 ad
679 1.1 ad /*
680 1.1 ad * Good, the module loaded successfully. Put it onto the
681 1.1 ad * list and add references to its requisite modules.
682 1.1 ad */
683 1.1 ad TAILQ_REMOVE(&pending, mod, mod_chain);
684 1.27 ad module_enqueue(mod);
685 1.1 ad if (modp != NULL) {
686 1.1 ad *modp = mod;
687 1.1 ad }
688 1.26 ad if (autoload) {
689 1.26 ad /*
690 1.26 ad * Arrange to try unloading the module after
691 1.26 ad * a short delay.
692 1.26 ad */
693 1.26 ad mod->mod_autotime = time_second + module_autotime;
694 1.26 ad module_thread_kick();
695 1.26 ad }
696 1.1 ad depth--;
697 1.1 ad return 0;
698 1.7 rumble
699 1.1 ad fail:
700 1.15 ad kobj_unload(mod->mod_kobj);
701 1.15 ad fail2:
702 1.1 ad TAILQ_REMOVE(&pending, mod, mod_chain);
703 1.1 ad kmem_free(mod, sizeof(*mod));
704 1.1 ad depth--;
705 1.1 ad return error;
706 1.1 ad }
707 1.1 ad
708 1.1 ad /*
709 1.1 ad * module_do_unload:
710 1.1 ad *
711 1.1 ad * Helper routine: do the dirty work of unloading a module.
712 1.1 ad */
713 1.1 ad static int
714 1.1 ad module_do_unload(const char *name)
715 1.1 ad {
716 1.1 ad module_t *mod;
717 1.1 ad int error;
718 1.1 ad u_int i;
719 1.1 ad
720 1.1 ad KASSERT(mutex_owned(&module_lock));
721 1.1 ad
722 1.1 ad mod = module_lookup(name);
723 1.1 ad if (mod == NULL) {
724 1.1 ad return ENOENT;
725 1.1 ad }
726 1.1 ad if (mod->mod_refcnt != 0 || mod->mod_source == MODULE_SOURCE_KERNEL) {
727 1.1 ad return EBUSY;
728 1.1 ad }
729 1.12 ad KASSERT(module_active == NULL);
730 1.12 ad module_active = mod;
731 1.1 ad error = (*mod->mod_info->mi_modcmd)(MODULE_CMD_FINI, NULL);
732 1.12 ad module_active = NULL;
733 1.1 ad if (error != 0) {
734 1.1 ad return error;
735 1.1 ad }
736 1.1 ad module_count--;
737 1.1 ad TAILQ_REMOVE(&module_list, mod, mod_chain);
738 1.1 ad for (i = 0; i < mod->mod_nrequired; i++) {
739 1.1 ad mod->mod_required[i]->mod_refcnt--;
740 1.1 ad }
741 1.1 ad if (mod->mod_kobj != NULL) {
742 1.1 ad kobj_unload(mod->mod_kobj);
743 1.1 ad }
744 1.1 ad kmem_free(mod, sizeof(*mod));
745 1.26 ad module_gen++;
746 1.1 ad
747 1.1 ad return 0;
748 1.1 ad }
749 1.1 ad
750 1.1 ad /*
751 1.1 ad * module_prime:
752 1.1 ad *
753 1.1 ad * Push a module loaded by the bootloader onto our internal
754 1.1 ad * list.
755 1.1 ad */
756 1.1 ad int
757 1.1 ad module_prime(void *base, size_t size)
758 1.1 ad {
759 1.1 ad module_t *mod;
760 1.1 ad int error;
761 1.1 ad
762 1.1 ad mod = kmem_zalloc(sizeof(*mod), KM_SLEEP);
763 1.1 ad if (mod == NULL) {
764 1.1 ad return ENOMEM;
765 1.1 ad }
766 1.1 ad mod->mod_source = MODULE_SOURCE_BOOT;
767 1.1 ad
768 1.15 ad error = kobj_load_mem(&mod->mod_kobj, base, size);
769 1.1 ad if (error != 0) {
770 1.11 ad kmem_free(mod, sizeof(*mod));
771 1.11 ad module_error("unable to load object pushed by boot loader");
772 1.11 ad return error;
773 1.11 ad }
774 1.11 ad error = module_fetch_info(mod);
775 1.11 ad if (error != 0) {
776 1.11 ad kobj_unload(mod->mod_kobj);
777 1.1 ad kmem_free(mod, sizeof(*mod));
778 1.11 ad module_error("unable to load object pushed by boot loader");
779 1.1 ad return error;
780 1.1 ad }
781 1.11 ad
782 1.1 ad TAILQ_INSERT_TAIL(&module_bootlist, mod, mod_chain);
783 1.1 ad
784 1.1 ad return 0;
785 1.1 ad }
786 1.11 ad
787 1.11 ad /*
788 1.11 ad * module_fetch_into:
789 1.11 ad *
790 1.11 ad * Fetch modinfo record from a loaded module.
791 1.11 ad */
792 1.11 ad static int
793 1.11 ad module_fetch_info(module_t *mod)
794 1.11 ad {
795 1.11 ad int error;
796 1.11 ad void *addr;
797 1.11 ad size_t size;
798 1.11 ad
799 1.11 ad /*
800 1.11 ad * Find module info record and check compatibility.
801 1.11 ad */
802 1.11 ad error = kobj_find_section(mod->mod_kobj, "link_set_modules",
803 1.11 ad &addr, &size);
804 1.11 ad if (error != 0) {
805 1.11 ad module_error("`link_set_modules' section not present");
806 1.11 ad return error;
807 1.11 ad }
808 1.11 ad if (size != sizeof(modinfo_t **)) {
809 1.11 ad module_error("`link_set_modules' section wrong size");
810 1.11 ad return error;
811 1.11 ad }
812 1.11 ad mod->mod_info = *(modinfo_t **)addr;
813 1.11 ad
814 1.11 ad return 0;
815 1.11 ad }
816 1.12 ad
817 1.12 ad /*
818 1.12 ad * module_find_section:
819 1.12 ad *
820 1.12 ad * Allows a module that is being initialized to look up a section
821 1.12 ad * within its ELF object.
822 1.12 ad */
823 1.12 ad int
824 1.12 ad module_find_section(const char *name, void **addr, size_t *size)
825 1.12 ad {
826 1.12 ad
827 1.12 ad KASSERT(mutex_owned(&module_lock));
828 1.12 ad KASSERT(module_active != NULL);
829 1.12 ad
830 1.12 ad return kobj_find_section(module_active->mod_kobj, name, addr, size);
831 1.12 ad }
832 1.26 ad
833 1.26 ad /*
834 1.26 ad * module_thread:
835 1.26 ad *
836 1.26 ad * Automatically unload modules. We try once to unload autoloaded
837 1.26 ad * modules after module_autotime seconds. If the system is under
838 1.26 ad * severe memory pressure, we'll try unloading all modules.
839 1.26 ad */
840 1.26 ad static void
841 1.26 ad module_thread(void *cookie)
842 1.26 ad {
843 1.26 ad module_t *mod, *next;
844 1.28 ad modinfo_t *mi;
845 1.28 ad int error;
846 1.26 ad
847 1.26 ad for (;;) {
848 1.26 ad mutex_enter(&module_lock);
849 1.26 ad for (mod = TAILQ_FIRST(&module_list); mod != NULL; mod = next) {
850 1.26 ad next = TAILQ_NEXT(mod, mod_chain);
851 1.26 ad if (uvmexp.free < uvmexp.freemin) {
852 1.26 ad module_thread_ticks = hz;
853 1.26 ad } else if (mod->mod_autotime == 0) {
854 1.26 ad continue;
855 1.26 ad } else if (time_second < mod->mod_autotime) {
856 1.26 ad module_thread_ticks = hz;
857 1.26 ad continue;
858 1.26 ad } else {
859 1.26 ad mod->mod_autotime = 0;
860 1.26 ad }
861 1.28 ad /*
862 1.28 ad * If this module wants to avoid autounload then
863 1.28 ad * skip it. Some modules can ping-pong in and out
864 1.28 ad * because their use is transient but often.
865 1.28 ad * Example: exec_script.
866 1.28 ad */
867 1.28 ad mi = mod->mod_info;
868 1.28 ad error = (*mi->mi_modcmd)(MODULE_CMD_AUTOUNLOAD, NULL);
869 1.28 ad if (error == 0 || error == ENOTTY) {
870 1.28 ad (void)module_do_unload(mi->mi_name);
871 1.28 ad }
872 1.26 ad }
873 1.26 ad mutex_exit(&module_lock);
874 1.26 ad
875 1.26 ad mutex_enter(&module_thread_lock);
876 1.26 ad (void)cv_timedwait(&module_thread_cv, &module_thread_lock,
877 1.26 ad module_thread_ticks);
878 1.26 ad module_thread_ticks = 0;
879 1.26 ad mutex_exit(&module_thread_lock);
880 1.26 ad }
881 1.26 ad }
882 1.26 ad
883 1.26 ad /*
884 1.26 ad * module_thread:
885 1.26 ad *
886 1.26 ad * Kick the module thread into action, perhaps because the
887 1.26 ad * system is low on memory.
888 1.26 ad */
889 1.26 ad void
890 1.26 ad module_thread_kick(void)
891 1.26 ad {
892 1.26 ad
893 1.26 ad mutex_enter(&module_thread_lock);
894 1.26 ad module_thread_ticks = hz;
895 1.26 ad cv_broadcast(&module_thread_cv);
896 1.26 ad mutex_exit(&module_thread_lock);
897 1.26 ad }
898