source: mainline/uspace/srv/devman/driver.c@ 39330200

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 39330200 was 39330200, checked in by Jiří Zárevúcky <zarevucky.jiri@…>, 7 years ago

Rename struct stat and struct statfs to vfs_stat_t and vfs_statfs_t,
respectively. They are nonstandard vestiges of times when native file API
was modeled after POSIX API.

  • Property mode set to 100644
File size: 19.5 KB
Line 
1/*
2 * Copyright (c) 2010 Lenka Trochtova
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 *
9 * - Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * - Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * - The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
29/** @addtogroup devman
30 * @{
31 */
32
33#include <dirent.h>
34#include <errno.h>
35#include <io/log.h>
36#include <vfs/vfs.h>
37#include <loc.h>
38#include <str_error.h>
39#include <stdio.h>
40#include <task.h>
41
42#include "dev.h"
43#include "devman.h"
44#include "driver.h"
45#include "match.h"
46
47/**
48 * Initialize the list of device driver's.
49 *
50 * @param drv_list the list of device driver's.
51 *
52 */
53void init_driver_list(driver_list_t *drv_list)
54{
55 assert(drv_list != NULL);
56
57 list_initialize(&drv_list->drivers);
58 fibril_mutex_initialize(&drv_list->drivers_mutex);
59 drv_list->next_handle = 1;
60}
61
62/** Allocate and initialize a new driver structure.
63 *
64 * @return Driver structure.
65 */
66driver_t *create_driver(void)
67{
68 driver_t *res = malloc(sizeof(driver_t));
69 if (res != NULL)
70 init_driver(res);
71 return res;
72}
73
74/** Add a driver to the list of drivers.
75 *
76 * @param drivers_list List of drivers.
77 * @param drv Driver structure.
78 */
79void add_driver(driver_list_t *drivers_list, driver_t *drv)
80{
81 fibril_mutex_lock(&drivers_list->drivers_mutex);
82 list_append(&drv->drivers, &drivers_list->drivers);
83 drv->handle = drivers_list->next_handle++;
84 fibril_mutex_unlock(&drivers_list->drivers_mutex);
85
86 log_msg(LOG_DEFAULT, LVL_DEBUG, "Driver `%s' was added to the list of available "
87 "drivers.", drv->name);
88}
89
90/**
91 * Get information about a driver.
92 *
93 * Each driver has its own directory in the base directory.
94 * The name of the driver's directory is the same as the name of the driver.
95 * The driver's directory contains driver's binary (named as the driver without
96 * extension) and the configuration file with match ids for device-to-driver
97 * matching (named as the driver with a special extension).
98 *
99 * This function searches for the driver's directory and containing
100 * configuration files. If all the files needed are found, they are parsed and
101 * the information about the driver is stored in the driver's structure.
102 *
103 * @param base_path The base directory, in which we look for driver's
104 * subdirectory.
105 * @param name The name of the driver.
106 * @param drv The driver structure to fill information in.
107 *
108 * @return True on success, false otherwise.
109 */
110bool get_driver_info(const char *base_path, const char *name, driver_t *drv)
111{
112 log_msg(LOG_DEFAULT, LVL_DEBUG, "get_driver_info(base_path=\"%s\", name=\"%s\")",
113 base_path, name);
114
115 assert(base_path != NULL && name != NULL && drv != NULL);
116
117 bool suc = false;
118 char *match_path = NULL;
119 size_t name_size = 0;
120
121 /* Read the list of match ids from the driver's configuration file. */
122 match_path = get_abs_path(base_path, name, MATCH_EXT);
123 if (match_path == NULL)
124 goto cleanup;
125
126 if (!read_match_ids(match_path, &drv->match_ids))
127 goto cleanup;
128
129 /* Allocate and fill driver's name. */
130 name_size = str_size(name) + 1;
131 drv->name = malloc(name_size);
132 if (drv->name == NULL)
133 goto cleanup;
134 str_cpy(drv->name, name_size, name);
135
136 /* Initialize path with driver's binary. */
137 drv->binary_path = get_abs_path(base_path, name, "");
138 if (drv->binary_path == NULL)
139 goto cleanup;
140
141 /* Check whether the driver's binary exists. */
142 vfs_stat_t s;
143 if (vfs_stat_path(drv->binary_path, &s) != EOK) {
144 log_msg(LOG_DEFAULT, LVL_ERROR, "Driver not found at path `%s'.",
145 drv->binary_path);
146 goto cleanup;
147 }
148
149 suc = true;
150
151cleanup:
152 if (!suc) {
153 free(drv->binary_path);
154 free(drv->name);
155 /* Set the driver structure to the default state. */
156 init_driver(drv);
157 }
158
159 free(match_path);
160
161 return suc;
162}
163
164/** Lookup drivers in the directory.
165 *
166 * @param drivers_list The list of available drivers.
167 * @param dir_path The path to the directory where we search for drivers.
168 * @return Number of drivers which were found.
169 */
170int lookup_available_drivers(driver_list_t *drivers_list, const char *dir_path)
171{
172 log_msg(LOG_DEFAULT, LVL_DEBUG, "lookup_available_drivers(dir=\"%s\")", dir_path);
173
174 int drv_cnt = 0;
175 DIR *dir = NULL;
176 struct dirent *diren;
177
178 dir = opendir(dir_path);
179
180 if (dir != NULL) {
181 driver_t *drv = create_driver();
182 while ((diren = readdir(dir))) {
183 if (get_driver_info(dir_path, diren->d_name, drv)) {
184 add_driver(drivers_list, drv);
185 drv_cnt++;
186 drv = create_driver();
187 }
188 }
189 delete_driver(drv);
190 closedir(dir);
191 }
192
193 return drv_cnt;
194}
195
196/** Lookup the best matching driver for the specified device in the list of
197 * drivers.
198 *
199 * A match between a device and a driver is found if one of the driver's match
200 * ids match one of the device's match ids. The score of the match is the
201 * product of the driver's and device's score associated with the matching id.
202 * The best matching driver for a device is the driver with the highest score
203 * of the match between the device and the driver.
204 *
205 * @param drivers_list The list of drivers, where we look for the driver
206 * suitable for handling the device.
207 * @param node The device node structure of the device.
208 * @return The best matching driver or NULL if no matching driver
209 * is found.
210 */
211driver_t *find_best_match_driver(driver_list_t *drivers_list, dev_node_t *node)
212{
213 driver_t *best_drv = NULL;
214 int best_score = 0, score = 0;
215
216 fibril_mutex_lock(&drivers_list->drivers_mutex);
217
218 list_foreach(drivers_list->drivers, drivers, driver_t, drv) {
219 score = get_match_score(drv, node);
220 if (score > best_score) {
221 best_score = score;
222 best_drv = drv;
223 }
224 }
225
226 fibril_mutex_unlock(&drivers_list->drivers_mutex);
227
228 return best_drv;
229}
230
231/** Assign a driver to a device.
232 *
233 * @param tree Device tree
234 * @param node The device's node in the device tree.
235 * @param drv The driver.
236 */
237void attach_driver(dev_tree_t *tree, dev_node_t *dev, driver_t *drv)
238{
239 log_msg(LOG_DEFAULT, LVL_DEBUG, "attach_driver(dev=\"%s\",drv=\"%s\")",
240 dev->pfun->pathname, drv->name);
241
242 fibril_mutex_lock(&drv->driver_mutex);
243 fibril_rwlock_write_lock(&tree->rwlock);
244
245 dev->drv = drv;
246 list_append(&dev->driver_devices, &drv->devices);
247
248 fibril_rwlock_write_unlock(&tree->rwlock);
249 fibril_mutex_unlock(&drv->driver_mutex);
250}
251
252/** Detach driver from device.
253 *
254 * @param tree Device tree
255 * @param node The device's node in the device tree.
256 * @param drv The driver.
257 */
258void detach_driver(dev_tree_t *tree, dev_node_t *dev)
259{
260 driver_t *drv = dev->drv;
261
262 assert(drv != NULL);
263
264 log_msg(LOG_DEFAULT, LVL_DEBUG, "detach_driver(dev=\"%s\",drv=\"%s\")",
265 dev->pfun->pathname, drv->name);
266
267 fibril_mutex_lock(&drv->driver_mutex);
268 fibril_rwlock_write_lock(&tree->rwlock);
269
270 dev->drv = NULL;
271 list_remove(&dev->driver_devices);
272
273 fibril_rwlock_write_unlock(&tree->rwlock);
274 fibril_mutex_unlock(&drv->driver_mutex);
275}
276
277/** Start a driver
278 *
279 * @param drv The driver's structure.
280 * @return True if the driver's task is successfully spawned, false
281 * otherwise.
282 */
283bool start_driver(driver_t *drv)
284{
285 errno_t rc;
286
287 assert(fibril_mutex_is_locked(&drv->driver_mutex));
288
289 log_msg(LOG_DEFAULT, LVL_DEBUG, "start_driver(drv=\"%s\")", drv->name);
290
291 rc = task_spawnl(NULL, NULL, drv->binary_path, drv->binary_path, NULL);
292 if (rc != EOK) {
293 log_msg(LOG_DEFAULT, LVL_ERROR, "Spawning driver `%s' (%s) failed: %s.",
294 drv->name, drv->binary_path, str_error(rc));
295 return false;
296 }
297
298 drv->state = DRIVER_STARTING;
299 return true;
300}
301
302/** Stop a driver
303 *
304 * @param drv The driver's structure.
305 * @return True if the driver's task is successfully spawned, false
306 * otherwise.
307 */
308errno_t stop_driver(driver_t *drv)
309{
310 async_exch_t *exch;
311 errno_t retval;
312
313 log_msg(LOG_DEFAULT, LVL_DEBUG, "stop_driver(drv=\"%s\")", drv->name);
314
315 exch = async_exchange_begin(drv->sess);
316 retval = async_req_0_0(exch, DRIVER_STOP);
317 loc_exchange_end(exch);
318
319 if (retval != EOK)
320 return retval;
321
322 drv->state = DRIVER_NOT_STARTED;
323 async_hangup(drv->sess);
324 drv->sess = NULL;
325 return EOK;
326}
327
328/** Find device driver by handle.
329 *
330 * @param drv_list The list of device drivers
331 * @param handle Driver handle
332 * @return The device driver, if it is in the list,
333 * NULL otherwise.
334 */
335driver_t *driver_find(driver_list_t *drv_list, devman_handle_t handle)
336{
337 driver_t *res = NULL;
338
339 fibril_mutex_lock(&drv_list->drivers_mutex);
340
341 list_foreach(drv_list->drivers, drivers, driver_t, drv) {
342 if (drv->handle == handle) {
343 res = drv;
344 break;
345 }
346 }
347
348 fibril_mutex_unlock(&drv_list->drivers_mutex);
349
350 return res;
351}
352
353
354/** Find device driver by name.
355 *
356 * @param drv_list The list of device drivers.
357 * @param drv_name The name of the device driver which is searched.
358 * @return The device driver of the specified name, if it is in the
359 * list, NULL otherwise.
360 */
361driver_t *driver_find_by_name(driver_list_t *drv_list, const char *drv_name)
362{
363 driver_t *res = NULL;
364
365 fibril_mutex_lock(&drv_list->drivers_mutex);
366
367 list_foreach(drv_list->drivers, drivers, driver_t, drv) {
368 if (str_cmp(drv->name, drv_name) == 0) {
369 res = drv;
370 break;
371 }
372 }
373
374 fibril_mutex_unlock(&drv_list->drivers_mutex);
375
376 return res;
377}
378
379/** Notify driver about the devices to which it was assigned.
380 *
381 * @param driver The driver to which the devices are passed.
382 */
383static void pass_devices_to_driver(driver_t *driver, dev_tree_t *tree)
384{
385 dev_node_t *dev;
386 link_t *link;
387
388 log_msg(LOG_DEFAULT, LVL_DEBUG, "pass_devices_to_driver(driver=\"%s\")",
389 driver->name);
390
391 fibril_mutex_lock(&driver->driver_mutex);
392
393 /*
394 * Go through devices list as long as there is some device
395 * that has not been passed to the driver.
396 */
397 link = driver->devices.head.next;
398 while (link != &driver->devices.head) {
399 dev = list_get_instance(link, dev_node_t, driver_devices);
400 fibril_rwlock_write_lock(&tree->rwlock);
401
402 if (dev->passed_to_driver) {
403 fibril_rwlock_write_unlock(&tree->rwlock);
404 link = link->next;
405 continue;
406 }
407
408 log_msg(LOG_DEFAULT, LVL_DEBUG, "pass_devices_to_driver: dev->refcnt=%d\n",
409 (int)atomic_get(&dev->refcnt));
410 dev_add_ref(dev);
411
412 /*
413 * Unlock to avoid deadlock when adding device
414 * handled by itself.
415 */
416 fibril_mutex_unlock(&driver->driver_mutex);
417 fibril_rwlock_write_unlock(&tree->rwlock);
418
419 add_device(driver, dev, tree);
420
421 dev_del_ref(dev);
422
423 /*
424 * Lock again as we will work with driver's
425 * structure.
426 */
427 fibril_mutex_lock(&driver->driver_mutex);
428
429 /*
430 * Restart the cycle to go through all devices again.
431 */
432 link = driver->devices.head.next;
433 }
434
435 /*
436 * Once we passed all devices to the driver, we need to mark the
437 * driver as running.
438 * It is vital to do it here and inside critical section.
439 *
440 * If we would change the state earlier, other devices added to
441 * the driver would be added to the device list and started
442 * immediately and possibly started here as well.
443 */
444 log_msg(LOG_DEFAULT, LVL_DEBUG, "Driver `%s' enters running state.", driver->name);
445 driver->state = DRIVER_RUNNING;
446
447 fibril_mutex_unlock(&driver->driver_mutex);
448}
449
450/** Finish the initialization of a driver after it has succesfully started
451 * and after it has registered itself by the device manager.
452 *
453 * Pass devices formerly matched to the driver to the driver and remember the
454 * driver is running and fully functional now.
455 *
456 * @param driver The driver which registered itself as running by the
457 * device manager.
458 */
459void initialize_running_driver(driver_t *driver, dev_tree_t *tree)
460{
461 log_msg(LOG_DEFAULT, LVL_DEBUG, "initialize_running_driver(driver=\"%s\")",
462 driver->name);
463
464 /*
465 * Pass devices which have been already assigned to the driver to the
466 * driver.
467 */
468 pass_devices_to_driver(driver, tree);
469}
470
471/** Initialize device driver structure.
472 *
473 * @param drv The device driver structure.
474 */
475void init_driver(driver_t *drv)
476{
477 assert(drv != NULL);
478
479 memset(drv, 0, sizeof(driver_t));
480 list_initialize(&drv->match_ids.ids);
481 list_initialize(&drv->devices);
482 fibril_mutex_initialize(&drv->driver_mutex);
483 drv->sess = NULL;
484}
485
486/** Device driver structure clean-up.
487 *
488 * @param drv The device driver structure.
489 */
490void clean_driver(driver_t *drv)
491{
492 assert(drv != NULL);
493
494 free(drv->name);
495 free(drv->binary_path);
496
497 clean_match_ids(&drv->match_ids);
498
499 init_driver(drv);
500}
501
502/** Delete device driver structure.
503 *
504 * @param drv The device driver structure.
505 */
506void delete_driver(driver_t *drv)
507{
508 assert(drv != NULL);
509
510 clean_driver(drv);
511 free(drv);
512}
513
514/** Find suitable driver for a device and assign the driver to it.
515 *
516 * @param node The device node of the device in the device tree.
517 * @param drivers_list The list of available drivers.
518 * @return True if the suitable driver is found and
519 * successfully assigned to the device, false otherwise.
520 */
521bool assign_driver(dev_node_t *dev, driver_list_t *drivers_list,
522 dev_tree_t *tree)
523{
524 assert(dev != NULL);
525 assert(drivers_list != NULL);
526 assert(tree != NULL);
527
528 /*
529 * Find the driver which is the most suitable for handling this device.
530 */
531 driver_t *drv = find_best_match_driver(drivers_list, dev);
532 if (drv == NULL) {
533 log_msg(LOG_DEFAULT, LVL_ERROR, "No driver found for device `%s'.",
534 dev->pfun->pathname);
535 return false;
536 }
537
538 /* Attach the driver to the device. */
539 attach_driver(tree, dev, drv);
540
541 fibril_mutex_lock(&drv->driver_mutex);
542 if (drv->state == DRIVER_NOT_STARTED) {
543 /* Start the driver. */
544 start_driver(drv);
545 }
546 bool is_running = drv->state == DRIVER_RUNNING;
547 fibril_mutex_unlock(&drv->driver_mutex);
548
549 /* Notify the driver about the new device. */
550 if (is_running)
551 add_device(drv, dev, tree);
552
553 fibril_mutex_lock(&drv->driver_mutex);
554 fibril_mutex_unlock(&drv->driver_mutex);
555
556 fibril_rwlock_write_lock(&tree->rwlock);
557 if (dev->pfun != NULL) {
558 dev->pfun->state = FUN_ON_LINE;
559 }
560 fibril_rwlock_write_unlock(&tree->rwlock);
561 return true;
562}
563
564/** Pass a device to running driver.
565 *
566 * @param drv The driver's structure.
567 * @param node The device's node in the device tree.
568 */
569void add_device(driver_t *drv, dev_node_t *dev, dev_tree_t *tree)
570{
571 /*
572 * We do not expect to have driver's mutex locked as we do not
573 * access any structures that would affect driver_t.
574 */
575 log_msg(LOG_DEFAULT, LVL_DEBUG, "add_device(drv=\"%s\", dev=\"%s\")",
576 drv->name, dev->pfun->name);
577
578 /* Send the device to the driver. */
579 devman_handle_t parent_handle;
580 if (dev->pfun) {
581 parent_handle = dev->pfun->handle;
582 } else {
583 parent_handle = 0;
584 }
585
586 async_exch_t *exch = async_exchange_begin(drv->sess);
587
588 ipc_call_t answer;
589 aid_t req = async_send_2(exch, DRIVER_DEV_ADD, dev->handle,
590 parent_handle, &answer);
591
592 /* Send the device name to the driver. */
593 errno_t rc = async_data_write_start(exch, dev->pfun->name,
594 str_size(dev->pfun->name) + 1);
595
596 async_exchange_end(exch);
597
598 if (rc != EOK) {
599 async_forget(req);
600 } else {
601 /* Wait for answer from the driver. */
602 async_wait_for(req, &rc);
603 }
604
605 switch (rc) {
606 case EOK:
607 dev->state = DEVICE_USABLE;
608 break;
609 case ENOENT:
610 dev->state = DEVICE_NOT_PRESENT;
611 break;
612 default:
613 dev->state = DEVICE_INVALID;
614 break;
615 }
616
617 dev->passed_to_driver = true;
618}
619
620errno_t driver_dev_remove(dev_tree_t *tree, dev_node_t *dev)
621{
622 async_exch_t *exch;
623 errno_t retval;
624 driver_t *drv;
625 devman_handle_t handle;
626
627 assert(dev != NULL);
628
629 log_msg(LOG_DEFAULT, LVL_DEBUG, "driver_dev_remove(%p)", dev);
630
631 fibril_rwlock_read_lock(&tree->rwlock);
632 drv = dev->drv;
633 handle = dev->handle;
634 fibril_rwlock_read_unlock(&tree->rwlock);
635
636 exch = async_exchange_begin(drv->sess);
637 retval = async_req_1_0(exch, DRIVER_DEV_REMOVE, handle);
638 async_exchange_end(exch);
639
640 return retval;
641}
642
643errno_t driver_dev_gone(dev_tree_t *tree, dev_node_t *dev)
644{
645 async_exch_t *exch;
646 errno_t retval;
647 driver_t *drv;
648 devman_handle_t handle;
649
650 assert(dev != NULL);
651
652 log_msg(LOG_DEFAULT, LVL_DEBUG, "driver_dev_gone(%p)", dev);
653
654 fibril_rwlock_read_lock(&tree->rwlock);
655 drv = dev->drv;
656 handle = dev->handle;
657 fibril_rwlock_read_unlock(&tree->rwlock);
658
659 exch = async_exchange_begin(drv->sess);
660 retval = async_req_1_0(exch, DRIVER_DEV_GONE, handle);
661 async_exchange_end(exch);
662
663 return retval;
664}
665
666errno_t driver_fun_online(dev_tree_t *tree, fun_node_t *fun)
667{
668 async_exch_t *exch;
669 errno_t retval;
670 driver_t *drv;
671 devman_handle_t handle;
672
673 log_msg(LOG_DEFAULT, LVL_DEBUG, "driver_fun_online(%p)", fun);
674
675 fibril_rwlock_read_lock(&tree->rwlock);
676
677 if (fun->dev == NULL) {
678 /* XXX root function? */
679 fibril_rwlock_read_unlock(&tree->rwlock);
680 return EINVAL;
681 }
682
683 drv = fun->dev->drv;
684 handle = fun->handle;
685 fibril_rwlock_read_unlock(&tree->rwlock);
686
687 exch = async_exchange_begin(drv->sess);
688 retval = async_req_1_0(exch, DRIVER_FUN_ONLINE, handle);
689 loc_exchange_end(exch);
690
691 return retval;
692}
693
694errno_t driver_fun_offline(dev_tree_t *tree, fun_node_t *fun)
695{
696 async_exch_t *exch;
697 errno_t retval;
698 driver_t *drv;
699 devman_handle_t handle;
700
701 log_msg(LOG_DEFAULT, LVL_DEBUG, "driver_fun_offline(%p)", fun);
702
703 fibril_rwlock_read_lock(&tree->rwlock);
704 if (fun->dev == NULL) {
705 /* XXX root function? */
706 fibril_rwlock_read_unlock(&tree->rwlock);
707 return EINVAL;
708 }
709
710 drv = fun->dev->drv;
711 handle = fun->handle;
712 fibril_rwlock_read_unlock(&tree->rwlock);
713
714 exch = async_exchange_begin(drv->sess);
715 retval = async_req_1_0(exch, DRIVER_FUN_OFFLINE, handle);
716 loc_exchange_end(exch);
717
718 return retval;
719
720}
721
722/** Get list of registered drivers. */
723errno_t driver_get_list(driver_list_t *driver_list, devman_handle_t *hdl_buf,
724 size_t buf_size, size_t *act_size)
725{
726 size_t act_cnt;
727 size_t buf_cnt;
728
729 fibril_mutex_lock(&driver_list->drivers_mutex);
730
731 buf_cnt = buf_size / sizeof(devman_handle_t);
732
733 act_cnt = list_count(&driver_list->drivers);
734 *act_size = act_cnt * sizeof(devman_handle_t);
735
736 if (buf_size % sizeof(devman_handle_t) != 0) {
737 fibril_mutex_unlock(&driver_list->drivers_mutex);
738 return EINVAL;
739 }
740
741 size_t pos = 0;
742 list_foreach(driver_list->drivers, drivers, driver_t, drv) {
743 if (pos < buf_cnt) {
744 hdl_buf[pos] = drv->handle;
745 }
746
747 pos++;
748 }
749
750 fibril_mutex_unlock(&driver_list->drivers_mutex);
751 return EOK;
752}
753
754/** Get list of device functions. */
755errno_t driver_get_devices(driver_t *driver, devman_handle_t *hdl_buf,
756 size_t buf_size, size_t *act_size)
757{
758 size_t act_cnt;
759 size_t buf_cnt;
760
761 fibril_mutex_lock(&driver->driver_mutex);
762
763 buf_cnt = buf_size / sizeof(devman_handle_t);
764
765 act_cnt = list_count(&driver->devices);
766 *act_size = act_cnt * sizeof(devman_handle_t);
767
768 if (buf_size % sizeof(devman_handle_t) != 0) {
769 fibril_mutex_unlock(&driver->driver_mutex);
770 return EINVAL;
771 }
772
773 size_t pos = 0;
774 list_foreach(driver->devices, driver_devices, dev_node_t, dev) {
775 if (pos < buf_cnt) {
776 hdl_buf[pos] = dev->handle;
777 }
778
779 pos++;
780 }
781
782 fibril_mutex_unlock(&driver->driver_mutex);
783 return EOK;
784}
785
786/** @}
787 */
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