source: mainline/uspace/srv/devman/devman.c@ f456ab2

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since f456ab2 was 80a96d2, checked in by Jiri Svoboda <jiri@…>, 14 years ago

DDF support for surprise removal.

  • Property mode set to 100644
File size: 36.2 KB
RevLine 
[0358da0]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
[e2b9a993]29/** @addtogroup devman
[0358da0]30 * @{
31 */
[58cbb0c8]32/** @file Device Manager
33 *
34 * Locking order:
35 * (1) driver_t.driver_mutex
36 * (2) dev_tree_t.rwlock
37 *
38 * Synchronization:
39 * - device_tree.rwlock protects:
40 * - tree root, complete tree topology
41 * - complete contents of device and function nodes
42 * - dev_node_t.refcnt, fun_node_t.refcnt prevent nodes from
43 * being deallocated
44 * - find_xxx() functions increase reference count of returned object
45 * - find_xxx_no_lock() do not increase reference count
46 *
47 * TODO
48 * - Track all steady and transient device/function states
49 * - Check states, wait for steady state on certain operations
50 */
[0358da0]51
52#include <errno.h>
[e4c4247]53#include <fcntl.h>
[85e48a9]54#include <sys/stat.h>
[9b415c9]55#include <io/log.h>
[084ff99]56#include <ipc/driver.h>
57#include <ipc/devman.h>
[15f3c3f]58#include <loc.h>
[0485135]59#include <str_error.h>
[c7bbf029]60#include <stdio.h>
[0358da0]61
[e2b9a993]62#include "devman.h"
[0358da0]63
[58cbb0c8]64static fun_node_t *find_node_child(dev_tree_t *, fun_node_t *, const char *);
[ba38f72c]65
[38b3baf]66/* hash table operations */
[957cfa58]67
68static hash_index_t devices_hash(unsigned long key[])
69{
70 return key[0] % DEVICE_BUCKETS;
71}
72
[58b833c]73static int devman_devices_compare(unsigned long key[], hash_count_t keys,
74 link_t *item)
[957cfa58]75{
[ba38f72c]76 dev_node_t *dev = hash_table_get_instance(item, dev_node_t, devman_dev);
[0b5a4131]77 return (dev->handle == (devman_handle_t) key[0]);
[957cfa58]78}
79
[ba38f72c]80static int devman_functions_compare(unsigned long key[], hash_count_t keys,
[58b833c]81 link_t *item)
[957cfa58]82{
[ba38f72c]83 fun_node_t *fun = hash_table_get_instance(item, fun_node_t, devman_fun);
84 return (fun->handle == (devman_handle_t) key[0]);
85}
86
[15f3c3f]87static int loc_functions_compare(unsigned long key[], hash_count_t keys,
[ba38f72c]88 link_t *item)
89{
[15f3c3f]90 fun_node_t *fun = hash_table_get_instance(item, fun_node_t, loc_fun);
91 return (fun->service_id == (service_id_t) key[0]);
[957cfa58]92}
93
94static void devices_remove_callback(link_t *item)
95{
96}
97
98static hash_table_operations_t devman_devices_ops = {
99 .hash = devices_hash,
100 .compare = devman_devices_compare,
101 .remove_callback = devices_remove_callback
102};
103
[ba38f72c]104static hash_table_operations_t devman_functions_ops = {
105 .hash = devices_hash,
106 .compare = devman_functions_compare,
107 .remove_callback = devices_remove_callback
108};
109
[15f3c3f]110static hash_table_operations_t loc_devices_ops = {
[957cfa58]111 .hash = devices_hash,
[15f3c3f]112 .compare = loc_functions_compare,
[957cfa58]113 .remove_callback = devices_remove_callback
114};
115
[791f58c]116/**
117 * Initialize the list of device driver's.
118 *
119 * @param drv_list the list of device driver's.
120 *
121 */
122void init_driver_list(driver_list_t *drv_list)
123{
124 assert(drv_list != NULL);
125
126 list_initialize(&drv_list->drivers);
127 fibril_mutex_initialize(&drv_list->drivers_mutex);
128}
129
[0c3666d]130/** Allocate and initialize a new driver structure.
[38b3baf]131 *
[58b833c]132 * @return Driver structure.
[0c3666d]133 */
[38b3baf]134driver_t *create_driver(void)
[58b833c]135{
[e4c4247]136 driver_t *res = malloc(sizeof(driver_t));
[38b3baf]137 if (res != NULL)
[08d9c4e6]138 init_driver(res);
[e4c4247]139 return res;
140}
141
[0c3666d]142/** Add a driver to the list of drivers.
[38b3baf]143 *
[58b833c]144 * @param drivers_list List of drivers.
145 * @param drv Driver structure.
[0c3666d]146 */
147void add_driver(driver_list_t *drivers_list, driver_t *drv)
148{
149 fibril_mutex_lock(&drivers_list->drivers_mutex);
150 list_prepend(&drv->drivers, &drivers_list->drivers);
151 fibril_mutex_unlock(&drivers_list->drivers_mutex);
[58b833c]152
[9b415c9]153 log_msg(LVL_NOTE, "Driver `%s' was added to the list of available "
[ebcb05a]154 "drivers.", drv->name);
[0c3666d]155}
156
[38b3baf]157/** Read match id at the specified position of a string and set the position in
158 * the string to the first character following the id.
159 *
160 * @param buf The position in the input string.
161 * @return The match id.
[0c3666d]162 */
[38b3baf]163char *read_match_id(char **buf)
[e4c4247]164{
165 char *res = NULL;
[e2b9a993]166 size_t len = get_nonspace_len(*buf);
[38b3baf]167
[e4c4247]168 if (len > 0) {
169 res = malloc(len + 1);
170 if (res != NULL) {
[38b3baf]171 str_ncpy(res, len + 1, *buf, len);
[e4c4247]172 *buf += len;
173 }
174 }
[38b3baf]175
[e4c4247]176 return res;
177}
178
[0c3666d]179/**
180 * Read match ids and associated match scores from a string.
[38b3baf]181 *
182 * Each match score in the string is followed by its match id.
183 * The match ids and match scores are separated by whitespaces.
184 * Neither match ids nor match scores can contain whitespaces.
185 *
186 * @param buf The string from which the match ids are read.
187 * @param ids The list of match ids into which the match ids and
188 * scores are added.
189 * @return True if at least one match id and associated match score
190 * was successfully read, false otherwise.
[0c3666d]191 */
[c47e1a8]192bool parse_match_ids(char *buf, match_id_list_t *ids)
[e4c4247]193{
194 int score = 0;
195 char *id = NULL;
196 int ids_read = 0;
197
198 while (true) {
[38b3baf]199 /* skip spaces */
200 if (!skip_spaces(&buf))
[e4c4247]201 break;
[38b3baf]202
203 /* read score */
[e4c4247]204 score = strtoul(buf, &buf, 10);
205
[38b3baf]206 /* skip spaces */
207 if (!skip_spaces(&buf))
[e4c4247]208 break;
209
[38b3baf]210 /* read id */
211 id = read_match_id(&buf);
212 if (NULL == id)
213 break;
[e4c4247]214
[38b3baf]215 /* create new match_id structure */
[e4c4247]216 match_id_t *mid = create_match_id();
217 mid->id = id;
218 mid->score = score;
219
[38b3baf]220 /* add it to the list */
[e4c4247]221 add_match_id(ids, mid);
222
[38b3baf]223 ids_read++;
224 }
[e4c4247]225
226 return ids_read > 0;
227}
228
[0c3666d]229/**
230 * Read match ids and associated match scores from a file.
[38b3baf]231 *
232 * Each match score in the file is followed by its match id.
233 * The match ids and match scores are separated by whitespaces.
234 * Neither match ids nor match scores can contain whitespaces.
235 *
236 * @param buf The path to the file from which the match ids are read.
237 * @param ids The list of match ids into which the match ids and
238 * scores are added.
239 * @return True if at least one match id and associated match score
240 * was successfully read, false otherwise.
[0c3666d]241 */
[38b3baf]242bool read_match_ids(const char *conf_path, match_id_list_t *ids)
243{
[ebcb05a]244 log_msg(LVL_DEBUG, "read_match_ids(conf_path=\"%s\")", conf_path);
[08d9c4e6]245
[38b3baf]246 bool suc = false;
[e4c4247]247 char *buf = NULL;
248 bool opened = false;
[38b3baf]249 int fd;
[c47e1a8]250 size_t len = 0;
[e4c4247]251
252 fd = open(conf_path, O_RDONLY);
253 if (fd < 0) {
[ebcb05a]254 log_msg(LVL_ERROR, "Unable to open `%s' for reading: %s.",
[9b415c9]255 conf_path, str_error(fd));
[e4c4247]256 goto cleanup;
[38b3baf]257 }
258 opened = true;
[e4c4247]259
260 len = lseek(fd, 0, SEEK_END);
[38b3baf]261 lseek(fd, 0, SEEK_SET);
[e4c4247]262 if (len == 0) {
[ebcb05a]263 log_msg(LVL_ERROR, "Configuration file '%s' is empty.",
[9b415c9]264 conf_path);
[38b3baf]265 goto cleanup;
[e4c4247]266 }
267
268 buf = malloc(len + 1);
269 if (buf == NULL) {
[9b415c9]270 log_msg(LVL_ERROR, "Memory allocation failed when parsing file "
[ebcb05a]271 "'%s'.", conf_path);
[e4c4247]272 goto cleanup;
[58b833c]273 }
[e4c4247]274
[8fd04ba9]275 ssize_t read_bytes = read_all(fd, buf, len);
[dc87f3fd]276 if (read_bytes <= 0) {
[8fd04ba9]277 log_msg(LVL_ERROR, "Unable to read file '%s' (%zd).", conf_path,
278 read_bytes);
[e4c4247]279 goto cleanup;
280 }
[dc87f3fd]281 buf[read_bytes] = 0;
[e4c4247]282
283 suc = parse_match_ids(buf, ids);
284
285cleanup:
286 free(buf);
287
[58b833c]288 if (opened)
[38b3baf]289 close(fd);
[e4c4247]290
291 return suc;
292}
293
[0c3666d]294/**
295 * Get information about a driver.
[38b3baf]296 *
297 * Each driver has its own directory in the base directory.
[0c3666d]298 * The name of the driver's directory is the same as the name of the driver.
[38b3baf]299 * The driver's directory contains driver's binary (named as the driver without
300 * extension) and the configuration file with match ids for device-to-driver
301 * matching (named as the driver with a special extension).
302 *
303 * This function searches for the driver's directory and containing
304 * configuration files. If all the files needed are found, they are parsed and
305 * the information about the driver is stored in the driver's structure.
306 *
307 * @param base_path The base directory, in which we look for driver's
308 * subdirectory.
309 * @param name The name of the driver.
310 * @param drv The driver structure to fill information in.
311 *
312 * @return True on success, false otherwise.
[0c3666d]313 */
[e2b9a993]314bool get_driver_info(const char *base_path, const char *name, driver_t *drv)
[e4c4247]315{
[ebcb05a]316 log_msg(LVL_DEBUG, "get_driver_info(base_path=\"%s\", name=\"%s\")",
[38b3baf]317 base_path, name);
[08d9c4e6]318
[e4c4247]319 assert(base_path != NULL && name != NULL && drv != NULL);
320
321 bool suc = false;
[38b3baf]322 char *match_path = NULL;
[e4c4247]323 size_t name_size = 0;
324
[38b3baf]325 /* Read the list of match ids from the driver's configuration file. */
326 match_path = get_abs_path(base_path, name, MATCH_EXT);
[58b833c]327 if (match_path == NULL)
[e4c4247]328 goto cleanup;
329
[38b3baf]330 if (!read_match_ids(match_path, &drv->match_ids))
[e4c4247]331 goto cleanup;
332
[38b3baf]333 /* Allocate and fill driver's name. */
334 name_size = str_size(name) + 1;
[e4c4247]335 drv->name = malloc(name_size);
[58b833c]336 if (drv->name == NULL)
[e4c4247]337 goto cleanup;
338 str_cpy(drv->name, name_size, name);
339
[38b3baf]340 /* Initialize path with driver's binary. */
341 drv->binary_path = get_abs_path(base_path, name, "");
[58b833c]342 if (drv->binary_path == NULL)
[85e48a9]343 goto cleanup;
344
[38b3baf]345 /* Check whether the driver's binary exists. */
[85e48a9]346 struct stat s;
[58b833c]347 if (stat(drv->binary_path, &s) == ENOENT) { /* FIXME!! */
[9b415c9]348 log_msg(LVL_ERROR, "Driver not found at path `%s'.",
349 drv->binary_path);
[85e48a9]350 goto cleanup;
351 }
352
[e4c4247]353 suc = true;
354
355cleanup:
356 if (!suc) {
357 free(drv->binary_path);
358 free(drv->name);
[38b3baf]359 /* Set the driver structure to the default state. */
360 init_driver(drv);
[e4c4247]361 }
362
363 free(match_path);
364
365 return suc;
366}
367
368/** Lookup drivers in the directory.
[38b3baf]369 *
370 * @param drivers_list The list of available drivers.
371 * @param dir_path The path to the directory where we search for drivers.
372 * @return Number of drivers which were found.
373 */
[0c3666d]374int lookup_available_drivers(driver_list_t *drivers_list, const char *dir_path)
[e4c4247]375{
[ebcb05a]376 log_msg(LVL_DEBUG, "lookup_available_drivers(dir=\"%s\")", dir_path);
[08d9c4e6]377
[e4c4247]378 int drv_cnt = 0;
379 DIR *dir = NULL;
380 struct dirent *diren;
381
382 dir = opendir(dir_path);
[08d9c4e6]383
[e4c4247]384 if (dir != NULL) {
385 driver_t *drv = create_driver();
[38b3baf]386 while ((diren = readdir(dir))) {
[e4c4247]387 if (get_driver_info(dir_path, diren->d_name, drv)) {
[e2b9a993]388 add_driver(drivers_list, drv);
[08d9c4e6]389 drv_cnt++;
[e4c4247]390 drv = create_driver();
[38b3baf]391 }
[e4c4247]392 }
393 delete_driver(drv);
394 closedir(dir);
395 }
396
397 return drv_cnt;
398}
399
[ba38f72c]400/** Create root device and function node in the device tree.
[38b3baf]401 *
[58b833c]402 * @param tree The device tree.
403 * @return True on success, false otherwise.
[0c3666d]404 */
[ba38f72c]405bool create_root_nodes(dev_tree_t *tree)
[e4c4247]406{
[ba38f72c]407 fun_node_t *fun;
408 dev_node_t *dev;
409
[ebcb05a]410 log_msg(LVL_DEBUG, "create_root_nodes()");
[ba38f72c]411
[01b87dc5]412 fibril_rwlock_write_lock(&tree->rwlock);
[ba38f72c]413
414 /*
415 * Create root function. This is a pseudo function to which
416 * the root device node is attached. It allows us to match
417 * the root device driver in a standard manner, i.e. against
418 * the parent function.
419 */
420
421 fun = create_fun_node();
422 if (fun == NULL) {
423 fibril_rwlock_write_unlock(&tree->rwlock);
424 return false;
[85e48a9]425 }
[ba38f72c]426
[58cbb0c8]427 fun_add_ref(fun);
[4022513]428 insert_fun_node(tree, fun, str_dup(""), NULL);
[58cbb0c8]429
[ba38f72c]430 match_id_t *id = create_match_id();
[4022513]431 id->id = str_dup("root");
[ba38f72c]432 id->score = 100;
433 add_match_id(&fun->match_ids, id);
434 tree->root_node = fun;
435
436 /*
437 * Create root device node.
438 */
439 dev = create_dev_node();
440 if (dev == NULL) {
441 fibril_rwlock_write_unlock(&tree->rwlock);
442 return false;
443 }
444
[58cbb0c8]445 dev_add_ref(dev);
[ba38f72c]446 insert_dev_node(tree, dev, fun);
447
[01b87dc5]448 fibril_rwlock_write_unlock(&tree->rwlock);
[ba38f72c]449
450 return dev != NULL;
[85e48a9]451}
452
[38b3baf]453/** Lookup the best matching driver for the specified device in the list of
454 * drivers.
[0c3666d]455 *
[38b3baf]456 * A match between a device and a driver is found if one of the driver's match
457 * ids match one of the device's match ids. The score of the match is the
458 * product of the driver's and device's score associated with the matching id.
459 * The best matching driver for a device is the driver with the highest score
460 * of the match between the device and the driver.
461 *
462 * @param drivers_list The list of drivers, where we look for the driver
463 * suitable for handling the device.
464 * @param node The device node structure of the device.
465 * @return The best matching driver or NULL if no matching driver
466 * is found.
[0c3666d]467 */
[ba38f72c]468driver_t *find_best_match_driver(driver_list_t *drivers_list, dev_node_t *node)
[e4c4247]469{
[85e48a9]470 driver_t *best_drv = NULL, *drv = NULL;
471 int best_score = 0, score = 0;
472
[0c3666d]473 fibril_mutex_lock(&drivers_list->drivers_mutex);
[729fa2d6]474
[b72efe8]475 list_foreach(drivers_list->drivers, link) {
[85e48a9]476 drv = list_get_instance(link, driver_t, drivers);
477 score = get_match_score(drv, node);
478 if (score > best_score) {
479 best_score = score;
480 best_drv = drv;
[58b833c]481 }
[0c3666d]482 }
[729fa2d6]483
[0c3666d]484 fibril_mutex_unlock(&drivers_list->drivers_mutex);
[e4c4247]485
[38b3baf]486 return best_drv;
[85e48a9]487}
488
[38b3baf]489/** Assign a driver to a device.
490 *
[58cbb0c8]491 * @param tree Device tree
[38b3baf]492 * @param node The device's node in the device tree.
493 * @param drv The driver.
[0c3666d]494 */
[58cbb0c8]495void attach_driver(dev_tree_t *tree, dev_node_t *dev, driver_t *drv)
[85e48a9]496{
[ebcb05a]497 log_msg(LVL_DEBUG, "attach_driver(dev=\"%s\",drv=\"%s\")",
[9b415c9]498 dev->pfun->pathname, drv->name);
[2480e19]499
[0c3666d]500 fibril_mutex_lock(&drv->driver_mutex);
[58cbb0c8]501 fibril_rwlock_write_lock(&tree->rwlock);
[0c3666d]502
[ba38f72c]503 dev->drv = drv;
504 list_append(&dev->driver_devices, &drv->devices);
[0c3666d]505
[58cbb0c8]506 fibril_rwlock_write_unlock(&tree->rwlock);
[0c3666d]507 fibril_mutex_unlock(&drv->driver_mutex);
[85e48a9]508}
509
[1a5b252]510/** Detach driver from device.
511 *
[58cbb0c8]512 * @param tree Device tree
[1a5b252]513 * @param node The device's node in the device tree.
514 * @param drv The driver.
515 */
[58cbb0c8]516void detach_driver(dev_tree_t *tree, dev_node_t *dev)
[1a5b252]517{
518 driver_t *drv = dev->drv;
519
520 assert(drv != NULL);
[58cbb0c8]521
[1a5b252]522 log_msg(LVL_DEBUG, "detach_driver(dev=\"%s\",drv=\"%s\")",
523 dev->pfun->pathname, drv->name);
524
525 fibril_mutex_lock(&drv->driver_mutex);
[58cbb0c8]526 fibril_rwlock_write_lock(&tree->rwlock);
[1a5b252]527
528 dev->drv = NULL;
529 list_remove(&dev->driver_devices);
530
[58cbb0c8]531 fibril_rwlock_write_unlock(&tree->rwlock);
[1a5b252]532 fibril_mutex_unlock(&drv->driver_mutex);
533}
534
[38b3baf]535/** Start a driver
536 *
537 * @param drv The driver's structure.
538 * @return True if the driver's task is successfully spawned, false
539 * otherwise.
[0c3666d]540 */
[e2b9a993]541bool start_driver(driver_t *drv)
[85e48a9]542{
[0485135]543 int rc;
544
[01b87dc5]545 assert(fibril_mutex_is_locked(&drv->driver_mutex));
546
[ebcb05a]547 log_msg(LVL_DEBUG, "start_driver(drv=\"%s\")", drv->name);
[e85920d]548
[0485135]549 rc = task_spawnl(NULL, drv->binary_path, drv->binary_path, NULL);
550 if (rc != EOK) {
[ebcb05a]551 log_msg(LVL_ERROR, "Spawning driver `%s' (%s) failed: %s.",
[9b415c9]552 drv->name, drv->binary_path, str_error(rc));
[85e48a9]553 return false;
554 }
555
[e85920d]556 drv->state = DRIVER_STARTING;
[85e48a9]557 return true;
558}
559
[bda60d9]560/** Find device driver in the list of device drivers.
[38b3baf]561 *
562 * @param drv_list The list of device drivers.
563 * @param drv_name The name of the device driver which is searched.
564 * @return The device driver of the specified name, if it is in the
565 * list, NULL otherwise.
[bda60d9]566 */
[38b3baf]567driver_t *find_driver(driver_list_t *drv_list, const char *drv_name)
568{
[729fa2d6]569 driver_t *res = NULL;
[58b833c]570 driver_t *drv = NULL;
[729fa2d6]571
[38b3baf]572 fibril_mutex_lock(&drv_list->drivers_mutex);
[729fa2d6]573
[b72efe8]574 list_foreach(drv_list->drivers, link) {
[729fa2d6]575 drv = list_get_instance(link, driver_t, drivers);
[58b833c]576 if (str_cmp(drv->name, drv_name) == 0) {
[729fa2d6]577 res = drv;
578 break;
[58b833c]579 }
580 }
[729fa2d6]581
582 fibril_mutex_unlock(&drv_list->drivers_mutex);
583
584 return res;
585}
586
[38b3baf]587/** Notify driver about the devices to which it was assigned.
588 *
589 * @param driver The driver to which the devices are passed.
[c16cf62]590 */
[a32defa]591static void pass_devices_to_driver(driver_t *driver, dev_tree_t *tree)
[38b3baf]592{
[ba38f72c]593 dev_node_t *dev;
[c16cf62]594 link_t *link;
[58b833c]595
[ebcb05a]596 log_msg(LVL_DEBUG, "pass_devices_to_driver(driver=\"%s\")",
[9b415c9]597 driver->name);
[58b833c]598
[5bee897]599 fibril_mutex_lock(&driver->driver_mutex);
600
601 /*
602 * Go through devices list as long as there is some device
603 * that has not been passed to the driver.
604 */
[b72efe8]605 link = driver->devices.head.next;
606 while (link != &driver->devices.head) {
[ba38f72c]607 dev = list_get_instance(link, dev_node_t, driver_devices);
[58cbb0c8]608 fibril_rwlock_write_lock(&tree->rwlock);
609
[5bee897]610 if (dev->passed_to_driver) {
[58cbb0c8]611 fibril_rwlock_write_unlock(&tree->rwlock);
[084ff99]612 link = link->next;
[5bee897]613 continue;
[084ff99]614 }
[5bee897]615
[58cbb0c8]616 log_msg(LVL_DEBUG, "pass_devices_to_driver: dev->refcnt=%d\n",
617 (int)atomic_get(&dev->refcnt));
618 dev_add_ref(dev);
[2edcb63]619
[5bee897]620 /*
621 * Unlock to avoid deadlock when adding device
622 * handled by itself.
623 */
624 fibril_mutex_unlock(&driver->driver_mutex);
[58cbb0c8]625 fibril_rwlock_write_unlock(&tree->rwlock);
[5bee897]626
[45059d6b]627 add_device(driver, dev, tree);
[5bee897]628
[58cbb0c8]629 dev_del_ref(dev);
630
[5bee897]631 /*
632 * Lock again as we will work with driver's
633 * structure.
634 */
635 fibril_mutex_lock(&driver->driver_mutex);
636
637 /*
638 * Restart the cycle to go through all devices again.
639 */
[b72efe8]640 link = driver->devices.head.next;
[084ff99]641 }
[5bee897]642
643 /*
644 * Once we passed all devices to the driver, we need to mark the
645 * driver as running.
646 * It is vital to do it here and inside critical section.
647 *
648 * If we would change the state earlier, other devices added to
649 * the driver would be added to the device list and started
650 * immediately and possibly started here as well.
651 */
[ebcb05a]652 log_msg(LVL_DEBUG, "Driver `%s' enters running state.", driver->name);
[5bee897]653 driver->state = DRIVER_RUNNING;
654
655 fibril_mutex_unlock(&driver->driver_mutex);
[c16cf62]656}
657
[38b3baf]658/** Finish the initialization of a driver after it has succesfully started
[bda60d9]659 * and after it has registered itself by the device manager.
[38b3baf]660 *
661 * Pass devices formerly matched to the driver to the driver and remember the
662 * driver is running and fully functional now.
663 *
664 * @param driver The driver which registered itself as running by the
665 * device manager.
[c16cf62]666 */
[38b3baf]667void initialize_running_driver(driver_t *driver, dev_tree_t *tree)
668{
[ebcb05a]669 log_msg(LVL_DEBUG, "initialize_running_driver(driver=\"%s\")",
[9b415c9]670 driver->name);
[c16cf62]671
[38b3baf]672 /*
673 * Pass devices which have been already assigned to the driver to the
674 * driver.
675 */
676 pass_devices_to_driver(driver, tree);
[c16cf62]677}
678
[791f58c]679/** Initialize device driver structure.
680 *
681 * @param drv The device driver structure.
682 */
683void init_driver(driver_t *drv)
684{
685 assert(drv != NULL);
686
687 memset(drv, 0, sizeof(driver_t));
688 list_initialize(&drv->match_ids.ids);
689 list_initialize(&drv->devices);
690 fibril_mutex_initialize(&drv->driver_mutex);
[79ae36dd]691 drv->sess = NULL;
[791f58c]692}
693
694/** Device driver structure clean-up.
695 *
696 * @param drv The device driver structure.
697 */
698void clean_driver(driver_t *drv)
699{
700 assert(drv != NULL);
701
702 free_not_null(drv->name);
703 free_not_null(drv->binary_path);
704
705 clean_match_ids(&drv->match_ids);
706
707 init_driver(drv);
708}
709
710/** Delete device driver structure.
711 *
712 * @param drv The device driver structure.
713 */
714void delete_driver(driver_t *drv)
715{
716 assert(drv != NULL);
717
718 clean_driver(drv);
719 free(drv);
720}
[a32defa]721
[15f3c3f]722/** Create loc path and name for the function. */
723void loc_register_tree_function(fun_node_t *fun, dev_tree_t *tree)
[a32defa]724{
[15f3c3f]725 char *loc_pathname = NULL;
726 char *loc_name = NULL;
[a32defa]727
[58cbb0c8]728 assert(fibril_rwlock_is_locked(&tree->rwlock));
729
[15f3c3f]730 asprintf(&loc_name, "%s", fun->pathname);
731 if (loc_name == NULL)
[a32defa]732 return;
733
[15f3c3f]734 replace_char(loc_name, '/', LOC_SEPARATOR);
[a32defa]735
[15f3c3f]736 asprintf(&loc_pathname, "%s/%s", LOC_DEVICE_NAMESPACE,
737 loc_name);
738 if (loc_pathname == NULL) {
739 free(loc_name);
[a32defa]740 return;
[38b3baf]741 }
[a32defa]742
[15f3c3f]743 loc_service_register_with_iface(loc_pathname,
744 &fun->service_id, DEVMAN_CONNECT_FROM_LOC);
[a32defa]745
[15f3c3f]746 tree_add_loc_function(tree, fun);
[a32defa]747
[15f3c3f]748 free(loc_name);
749 free(loc_pathname);
[a32defa]750}
751
[0c3666d]752/** Pass a device to running driver.
[38b3baf]753 *
754 * @param drv The driver's structure.
755 * @param node The device's node in the device tree.
[0c3666d]756 */
[45059d6b]757void add_device(driver_t *drv, dev_node_t *dev, dev_tree_t *tree)
[85e48a9]758{
[5bee897]759 /*
760 * We do not expect to have driver's mutex locked as we do not
761 * access any structures that would affect driver_t.
762 */
[ebcb05a]763 log_msg(LVL_DEBUG, "add_device(drv=\"%s\", dev=\"%s\")",
[9b415c9]764 drv->name, dev->pfun->name);
[a78fa2a]765
[38b3baf]766 /* Send the device to the driver. */
[0d6915f]767 devman_handle_t parent_handle;
[ba38f72c]768 if (dev->pfun) {
769 parent_handle = dev->pfun->handle;
[0d6915f]770 } else {
771 parent_handle = 0;
772 }
[79ae36dd]773
[45059d6b]774 async_exch_t *exch = async_exchange_begin(drv->sess);
[79ae36dd]775
776 ipc_call_t answer;
[1a5b252]777 aid_t req = async_send_2(exch, DRIVER_DEV_ADD, dev->handle,
[0d6915f]778 parent_handle, &answer);
[a78fa2a]779
[79ae36dd]780 /* Send the device name to the driver. */
781 sysarg_t rc = async_data_write_start(exch, dev->pfun->name,
[ba38f72c]782 str_size(dev->pfun->name) + 1);
[79ae36dd]783
784 async_exchange_end(exch);
785
[38b3baf]786 if (rc != EOK) {
787 /* TODO handle error */
788 }
[398c4d7]789
[38b3baf]790 /* Wait for answer from the driver. */
[a78fa2a]791 async_wait_for(req, &rc);
[5bee897]792
[a78fa2a]793 switch(rc) {
794 case EOK:
[ba38f72c]795 dev->state = DEVICE_USABLE;
[df747b9c]796 break;
[a78fa2a]797 case ENOENT:
[ba38f72c]798 dev->state = DEVICE_NOT_PRESENT;
[a78fa2a]799 break;
[df747b9c]800 default:
[ba38f72c]801 dev->state = DEVICE_INVALID;
[084ff99]802 }
[e85920d]803
[ba38f72c]804 dev->passed_to_driver = true;
[5bee897]805
[5cd136ab]806 return;
[85e48a9]807}
808
[38b3baf]809/** Find suitable driver for a device and assign the driver to it.
810 *
811 * @param node The device node of the device in the device tree.
812 * @param drivers_list The list of available drivers.
813 * @return True if the suitable driver is found and
814 * successfully assigned to the device, false otherwise.
[0c3666d]815 */
[ba38f72c]816bool assign_driver(dev_node_t *dev, driver_list_t *drivers_list,
817 dev_tree_t *tree)
[85e48a9]818{
[ba38f72c]819 assert(dev != NULL);
820 assert(drivers_list != NULL);
821 assert(tree != NULL);
822
[38b3baf]823 /*
824 * Find the driver which is the most suitable for handling this device.
825 */
[ba38f72c]826 driver_t *drv = find_best_match_driver(drivers_list, dev);
[58b833c]827 if (drv == NULL) {
[ebcb05a]828 log_msg(LVL_ERROR, "No driver found for device `%s'.",
[ba38f72c]829 dev->pfun->pathname);
[38b3baf]830 return false;
[85e48a9]831 }
832
[38b3baf]833 /* Attach the driver to the device. */
[58cbb0c8]834 attach_driver(tree, dev, drv);
[85e48a9]835
[398c4d7]836 fibril_mutex_lock(&drv->driver_mutex);
[58b833c]837 if (drv->state == DRIVER_NOT_STARTED) {
[38b3baf]838 /* Start the driver. */
[85e48a9]839 start_driver(drv);
[38b3baf]840 }
[398c4d7]841 bool is_running = drv->state == DRIVER_RUNNING;
842 fibril_mutex_unlock(&drv->driver_mutex);
843
[45059d6b]844 /* Notify the driver about the new device. */
845 if (is_running)
846 add_device(drv, dev, tree);
[85e48a9]847
[c1a0488]848 fibril_mutex_lock(&drv->driver_mutex);
849 fibril_mutex_unlock(&drv->driver_mutex);
850
851 fibril_rwlock_write_lock(&tree->rwlock);
852 if (dev->pfun != NULL) {
853 dev->pfun->state = FUN_ON_LINE;
854 }
855 fibril_rwlock_write_unlock(&tree->rwlock);
[85e48a9]856 return true;
857}
858
[58cbb0c8]859int driver_dev_remove(dev_tree_t *tree, dev_node_t *dev)
[1a5b252]860{
861 async_exch_t *exch;
862 sysarg_t retval;
863 driver_t *drv;
[58cbb0c8]864 devman_handle_t handle;
[1a5b252]865
866 assert(dev != NULL);
[58cbb0c8]867
[1a5b252]868 log_msg(LVL_DEBUG, "driver_dev_remove(%p)", dev);
[58cbb0c8]869
870 fibril_rwlock_read_lock(&tree->rwlock);
[1a5b252]871 drv = dev->drv;
[58cbb0c8]872 handle = dev->handle;
873 fibril_rwlock_read_unlock(&tree->rwlock);
[1a5b252]874
875 exch = async_exchange_begin(drv->sess);
[58cbb0c8]876 retval = async_req_1_0(exch, DRIVER_DEV_REMOVE, handle);
[1a5b252]877 async_exchange_end(exch);
878
879 return retval;
[80a96d2]880}
[1a5b252]881
[80a96d2]882int driver_dev_gone(dev_tree_t *tree, dev_node_t *dev)
883{
884 async_exch_t *exch;
885 sysarg_t retval;
886 driver_t *drv;
887 devman_handle_t handle;
888
889 assert(dev != NULL);
890
891 log_msg(LVL_DEBUG, "driver_dev_gone(%p)", dev);
892
893 fibril_rwlock_read_lock(&tree->rwlock);
894 drv = dev->drv;
895 handle = dev->handle;
896 fibril_rwlock_read_unlock(&tree->rwlock);
897
898 exch = async_exchange_begin(drv->sess);
899 retval = async_req_1_0(exch, DRIVER_DEV_GONE, handle);
900 async_exchange_end(exch);
901
902 return retval;
[1a5b252]903}
904
[58cbb0c8]905int driver_fun_online(dev_tree_t *tree, fun_node_t *fun)
[1a5b252]906{
907 async_exch_t *exch;
908 sysarg_t retval;
909 driver_t *drv;
[58cbb0c8]910 devman_handle_t handle;
[1a5b252]911
912 log_msg(LVL_DEBUG, "driver_fun_online(%p)", fun);
[58cbb0c8]913
914 fibril_rwlock_read_lock(&tree->rwlock);
915
[1a5b252]916 if (fun->dev == NULL) {
917 /* XXX root function? */
[58cbb0c8]918 fibril_rwlock_read_unlock(&tree->rwlock);
[1a5b252]919 return EINVAL;
920 }
921
922 drv = fun->dev->drv;
[58cbb0c8]923 handle = fun->handle;
924 fibril_rwlock_read_unlock(&tree->rwlock);
[1a5b252]925
926 exch = async_exchange_begin(drv->sess);
[58cbb0c8]927 retval = async_req_1_0(exch, DRIVER_FUN_ONLINE, handle);
[1a5b252]928 loc_exchange_end(exch);
929
930 return retval;
931}
932
[58cbb0c8]933int driver_fun_offline(dev_tree_t *tree, fun_node_t *fun)
[1a5b252]934{
935 async_exch_t *exch;
936 sysarg_t retval;
937 driver_t *drv;
[58cbb0c8]938 devman_handle_t handle;
[1a5b252]939
940 log_msg(LVL_DEBUG, "driver_fun_offline(%p)", fun);
[58cbb0c8]941
942 fibril_rwlock_read_lock(&tree->rwlock);
[1a5b252]943 if (fun->dev == NULL) {
944 /* XXX root function? */
[58cbb0c8]945 fibril_rwlock_read_unlock(&tree->rwlock);
[1a5b252]946 return EINVAL;
947 }
948
949 drv = fun->dev->drv;
[58cbb0c8]950 handle = fun->handle;
951 fibril_rwlock_read_unlock(&tree->rwlock);
[1a5b252]952
953 exch = async_exchange_begin(drv->sess);
[58cbb0c8]954 retval = async_req_1_0(exch, DRIVER_FUN_OFFLINE, handle);
[1a5b252]955 loc_exchange_end(exch);
956
957 return retval;
958
959}
960
[38b3baf]961/** Initialize the device tree.
962 *
[0c3666d]963 * Create root device node of the tree and assign driver to it.
[38b3baf]964 *
965 * @param tree The device tree.
966 * @param drivers_list the list of available drivers.
967 * @return True on success, false otherwise.
[0c3666d]968 */
969bool init_device_tree(dev_tree_t *tree, driver_list_t *drivers_list)
[85e48a9]970{
[ebcb05a]971 log_msg(LVL_DEBUG, "init_device_tree()");
[0c3666d]972
[957cfa58]973 tree->current_handle = 0;
974
[38b3baf]975 hash_table_create(&tree->devman_devices, DEVICE_BUCKETS, 1,
976 &devman_devices_ops);
[ba38f72c]977 hash_table_create(&tree->devman_functions, DEVICE_BUCKETS, 1,
978 &devman_functions_ops);
[15f3c3f]979 hash_table_create(&tree->loc_functions, DEVICE_BUCKETS, 1,
980 &loc_devices_ops);
[bda60d9]981
[957cfa58]982 fibril_rwlock_initialize(&tree->rwlock);
[084ff99]983
[ba38f72c]984 /* Create root function and root device and add them to the device tree. */
985 if (!create_root_nodes(tree))
[85e48a9]986 return false;
[58cbb0c8]987
[38b3baf]988 /* Find suitable driver and start it. */
[58cbb0c8]989 dev_node_t *rdev = tree->root_node->child;
990 dev_add_ref(rdev);
991 int rc = assign_driver(rdev, drivers_list, tree);
992 dev_del_ref(rdev);
993
994 return rc;
[e4c4247]995}
996
[791f58c]997/* Device nodes */
998
999/** Create a new device node.
1000 *
1001 * @return A device node structure.
1002 */
[ba38f72c]1003dev_node_t *create_dev_node(void)
[791f58c]1004{
[58cbb0c8]1005 dev_node_t *dev;
[791f58c]1006
[58cbb0c8]1007 dev = calloc(1, sizeof(dev_node_t));
1008 if (dev == NULL)
1009 return NULL;
[791f58c]1010
[58cbb0c8]1011 atomic_set(&dev->refcnt, 0);
1012 list_initialize(&dev->functions);
1013 link_initialize(&dev->driver_devices);
1014 link_initialize(&dev->devman_dev);
1015
1016 return dev;
[791f58c]1017}
1018
1019/** Delete a device node.
1020 *
1021 * @param node The device node structure.
1022 */
[ba38f72c]1023void delete_dev_node(dev_node_t *dev)
[791f58c]1024{
[ba38f72c]1025 assert(list_empty(&dev->functions));
1026 assert(dev->pfun == NULL);
1027 assert(dev->drv == NULL);
1028
1029 free(dev);
[791f58c]1030}
1031
[58cbb0c8]1032/** Increase device node reference count.
1033 *
1034 * @param dev Device node
1035 */
1036void dev_add_ref(dev_node_t *dev)
1037{
1038 atomic_inc(&dev->refcnt);
1039}
1040
1041/** Decrease device node reference count.
1042 *
1043 * When the count drops to zero the device node is freed.
1044 *
1045 * @param dev Device node
1046 */
1047void dev_del_ref(dev_node_t *dev)
1048{
1049 if (atomic_predec(&dev->refcnt) == 0)
1050 delete_dev_node(dev);
1051}
1052
1053
[791f58c]1054/** Find the device node structure of the device witch has the specified handle.
1055 *
1056 * @param tree The device tree where we look for the device node.
1057 * @param handle The handle of the device.
1058 * @return The device node.
1059 */
[ba38f72c]1060dev_node_t *find_dev_node_no_lock(dev_tree_t *tree, devman_handle_t handle)
[791f58c]1061{
1062 unsigned long key = handle;
[01b87dc5]1063 link_t *link;
1064
1065 assert(fibril_rwlock_is_locked(&tree->rwlock));
1066
1067 link = hash_table_find(&tree->devman_devices, &key);
[ba38f72c]1068 return hash_table_get_instance(link, dev_node_t, devman_dev);
[791f58c]1069}
1070
1071/** Find the device node structure of the device witch has the specified handle.
1072 *
1073 * @param tree The device tree where we look for the device node.
1074 * @param handle The handle of the device.
1075 * @return The device node.
1076 */
[ba38f72c]1077dev_node_t *find_dev_node(dev_tree_t *tree, devman_handle_t handle)
[791f58c]1078{
[ba38f72c]1079 dev_node_t *dev = NULL;
[791f58c]1080
1081 fibril_rwlock_read_lock(&tree->rwlock);
[ba38f72c]1082 dev = find_dev_node_no_lock(tree, handle);
[58cbb0c8]1083 if (dev != NULL)
1084 dev_add_ref(dev);
1085
[791f58c]1086 fibril_rwlock_read_unlock(&tree->rwlock);
1087
[ba38f72c]1088 return dev;
1089}
1090
[7beb220]1091/** Get list of device functions. */
1092int dev_get_functions(dev_tree_t *tree, dev_node_t *dev,
1093 devman_handle_t *hdl_buf, size_t buf_size, size_t *act_size)
1094{
1095 size_t act_cnt;
1096 size_t buf_cnt;
1097
1098 assert(fibril_rwlock_is_locked(&tree->rwlock));
1099
1100 buf_cnt = buf_size / sizeof(devman_handle_t);
1101
1102 act_cnt = list_count(&dev->functions);
1103 *act_size = act_cnt * sizeof(devman_handle_t);
1104
1105 if (buf_size % sizeof(devman_handle_t) != 0)
1106 return EINVAL;
1107
1108 size_t pos = 0;
1109 list_foreach(dev->functions, item) {
1110 fun_node_t *fun =
1111 list_get_instance(item, fun_node_t, dev_functions);
1112
[58cbb0c8]1113 if (pos < buf_cnt) {
[7beb220]1114 hdl_buf[pos] = fun->handle;
[58cbb0c8]1115 }
1116
[7beb220]1117 pos++;
1118 }
1119
1120 return EOK;
1121}
1122
1123
[ba38f72c]1124/* Function nodes */
1125
1126/** Create a new function node.
1127 *
1128 * @return A function node structure.
1129 */
1130fun_node_t *create_fun_node(void)
1131{
[58cbb0c8]1132 fun_node_t *fun;
1133
1134 fun = calloc(1, sizeof(fun_node_t));
1135 if (fun == NULL)
1136 return NULL;
[ba38f72c]1137
[c1a0488]1138 fun->state = FUN_INIT;
[58cbb0c8]1139 atomic_set(&fun->refcnt, 0);
1140 link_initialize(&fun->dev_functions);
1141 list_initialize(&fun->match_ids.ids);
1142 link_initialize(&fun->devman_fun);
1143 link_initialize(&fun->loc_fun);
1144
1145 return fun;
[ba38f72c]1146}
1147
1148/** Delete a function node.
1149 *
1150 * @param fun The device node structure.
1151 */
1152void delete_fun_node(fun_node_t *fun)
1153{
1154 assert(fun->dev == NULL);
1155 assert(fun->child == NULL);
1156
1157 clean_match_ids(&fun->match_ids);
1158 free_not_null(fun->name);
1159 free_not_null(fun->pathname);
1160 free(fun);
1161}
1162
[58cbb0c8]1163/** Increase function node reference count.
1164 *
1165 * @param fun Function node
1166 */
1167void fun_add_ref(fun_node_t *fun)
1168{
1169 atomic_inc(&fun->refcnt);
1170}
1171
1172/** Decrease function node reference count.
1173 *
1174 * When the count drops to zero the function node is freed.
1175 *
1176 * @param fun Function node
1177 */
1178void fun_del_ref(fun_node_t *fun)
1179{
1180 if (atomic_predec(&fun->refcnt) == 0)
1181 delete_fun_node(fun);
1182}
1183
[ba38f72c]1184/** Find the function node with the specified handle.
1185 *
1186 * @param tree The device tree where we look for the device node.
1187 * @param handle The handle of the function.
1188 * @return The function node.
1189 */
1190fun_node_t *find_fun_node_no_lock(dev_tree_t *tree, devman_handle_t handle)
1191{
1192 unsigned long key = handle;
1193 link_t *link;
[58cbb0c8]1194 fun_node_t *fun;
[ba38f72c]1195
1196 assert(fibril_rwlock_is_locked(&tree->rwlock));
1197
1198 link = hash_table_find(&tree->devman_functions, &key);
1199 if (link == NULL)
1200 return NULL;
1201
[58cbb0c8]1202 fun = hash_table_get_instance(link, fun_node_t, devman_fun);
1203
1204 return fun;
[791f58c]1205}
1206
[ba38f72c]1207/** Find the function node with the specified handle.
1208 *
1209 * @param tree The device tree where we look for the device node.
1210 * @param handle The handle of the function.
1211 * @return The function node.
1212 */
1213fun_node_t *find_fun_node(dev_tree_t *tree, devman_handle_t handle)
1214{
1215 fun_node_t *fun = NULL;
1216
1217 fibril_rwlock_read_lock(&tree->rwlock);
[58cbb0c8]1218
[ba38f72c]1219 fun = find_fun_node_no_lock(tree, handle);
[58cbb0c8]1220 if (fun != NULL)
1221 fun_add_ref(fun);
1222
[ba38f72c]1223 fibril_rwlock_read_unlock(&tree->rwlock);
1224
1225 return fun;
1226}
[791f58c]1227
[bda60d9]1228/** Create and set device's full path in device tree.
[38b3baf]1229 *
[58cbb0c8]1230 * @param tree Device tree
[38b3baf]1231 * @param node The device's device node.
1232 * @param parent The parent device node.
1233 * @return True on success, false otherwise (insufficient
1234 * resources etc.).
[bda60d9]1235 */
[58cbb0c8]1236static bool set_fun_path(dev_tree_t *tree, fun_node_t *fun, fun_node_t *parent)
[38b3baf]1237{
[58cbb0c8]1238 assert(fibril_rwlock_is_write_locked(&tree->rwlock));
[ba38f72c]1239 assert(fun->name != NULL);
[bda60d9]1240
[ba38f72c]1241 size_t pathsize = (str_size(fun->name) + 1);
[58b833c]1242 if (parent != NULL)
[38b3baf]1243 pathsize += str_size(parent->pathname) + 1;
[bda60d9]1244
[ba38f72c]1245 fun->pathname = (char *) malloc(pathsize);
1246 if (fun->pathname == NULL) {
[ebcb05a]1247 log_msg(LVL_ERROR, "Failed to allocate device path.");
[bda60d9]1248 return false;
1249 }
1250
[58b833c]1251 if (parent != NULL) {
[ba38f72c]1252 str_cpy(fun->pathname, pathsize, parent->pathname);
1253 str_append(fun->pathname, pathsize, "/");
1254 str_append(fun->pathname, pathsize, fun->name);
[bda60d9]1255 } else {
[ba38f72c]1256 str_cpy(fun->pathname, pathsize, fun->name);
[bda60d9]1257 }
1258
1259 return true;
1260}
1261
1262/** Insert new device into device tree.
[38b3baf]1263 *
1264 * @param tree The device tree.
[58cbb0c8]1265 * @param dev The newly added device node.
1266 * @param pfun The parent function node.
[58b833c]1267 *
[38b3baf]1268 * @return True on success, false otherwise (insufficient resources
1269 * etc.).
[bda60d9]1270 */
[ba38f72c]1271bool insert_dev_node(dev_tree_t *tree, dev_node_t *dev, fun_node_t *pfun)
1272{
1273 assert(fibril_rwlock_is_write_locked(&tree->rwlock));
1274
[ebcb05a]1275 log_msg(LVL_DEBUG, "insert_dev_node(dev=%p, pfun=%p [\"%s\"])",
[9b415c9]1276 dev, pfun, pfun->pathname);
1277
[ba38f72c]1278 /* Add the node to the handle-to-node map. */
1279 dev->handle = ++tree->current_handle;
1280 unsigned long key = dev->handle;
1281 hash_table_insert(&tree->devman_devices, &key, &dev->devman_dev);
1282
1283 /* Add the node to the list of its parent's children. */
1284 dev->pfun = pfun;
1285 pfun->child = dev;
1286
1287 return true;
1288}
1289
[1a5b252]1290/** Remove device from device tree.
1291 *
1292 * @param tree Device tree
1293 * @param dev Device node
1294 */
1295void remove_dev_node(dev_tree_t *tree, dev_node_t *dev)
1296{
1297 assert(fibril_rwlock_is_write_locked(&tree->rwlock));
1298
1299 log_msg(LVL_DEBUG, "remove_dev_node(dev=%p)", dev);
1300
1301 /* Remove node from the handle-to-node map. */
1302 unsigned long key = dev->handle;
1303 hash_table_remove(&tree->devman_devices, &key, 1);
1304
1305 /* Unlink from parent function. */
1306 dev->pfun->child = NULL;
1307 dev->pfun = NULL;
[c1a0488]1308
1309 dev->state = DEVICE_REMOVED;
[1a5b252]1310}
1311
1312
[ba38f72c]1313/** Insert new function into device tree.
1314 *
1315 * @param tree The device tree.
[58cbb0c8]1316 * @param fun The newly added function node.
1317 * @param fun_name The name of the newly added function.
1318 * @param dev Owning device node.
[ba38f72c]1319 *
1320 * @return True on success, false otherwise (insufficient resources
1321 * etc.).
1322 */
1323bool insert_fun_node(dev_tree_t *tree, fun_node_t *fun, char *fun_name,
1324 dev_node_t *dev)
[bda60d9]1325{
[ba38f72c]1326 fun_node_t *pfun;
1327
1328 assert(fun_name != NULL);
[01b87dc5]1329 assert(fibril_rwlock_is_write_locked(&tree->rwlock));
[bda60d9]1330
[ba38f72c]1331 /*
1332 * The root function is a special case, it does not belong to any
1333 * device so for the root function dev == NULL.
1334 */
1335 pfun = (dev != NULL) ? dev->pfun : NULL;
1336
1337 fun->name = fun_name;
[58cbb0c8]1338 if (!set_fun_path(tree, fun, pfun)) {
[38b3baf]1339 return false;
[bda60d9]1340 }
1341
[38b3baf]1342 /* Add the node to the handle-to-node map. */
[ba38f72c]1343 fun->handle = ++tree->current_handle;
1344 unsigned long key = fun->handle;
1345 hash_table_insert(&tree->devman_functions, &key, &fun->devman_fun);
[bda60d9]1346
[38b3baf]1347 /* Add the node to the list of its parent's children. */
[ba38f72c]1348 fun->dev = dev;
1349 if (dev != NULL)
1350 list_append(&fun->dev_functions, &dev->functions);
[38b3baf]1351
[bda60d9]1352 return true;
1353}
1354
[d0dd7b5]1355/** Remove function from device tree.
1356 *
1357 * @param tree Device tree
1358 * @param node Function node to remove
1359 */
1360void remove_fun_node(dev_tree_t *tree, fun_node_t *fun)
1361{
1362 assert(fibril_rwlock_is_write_locked(&tree->rwlock));
1363
1364 /* Remove the node from the handle-to-node map. */
1365 unsigned long key = fun->handle;
1366 hash_table_remove(&tree->devman_functions, &key, 1);
1367
1368 /* Remove the node from the list of its parent's children. */
1369 if (fun->dev != NULL)
1370 list_remove(&fun->dev_functions);
[1a5b252]1371
1372 fun->dev = NULL;
[c1a0488]1373 fun->state = FUN_REMOVED;
[d0dd7b5]1374}
1375
[ba38f72c]1376/** Find function node with a specified path in the device tree.
[5cd136ab]1377 *
[ba38f72c]1378 * @param path The path of the function node in the device tree.
[38b3baf]1379 * @param tree The device tree.
[ba38f72c]1380 * @return The function node if it is present in the tree, NULL
[38b3baf]1381 * otherwise.
[5cd136ab]1382 */
[ba38f72c]1383fun_node_t *find_fun_node_by_path(dev_tree_t *tree, char *path)
[5cd136ab]1384{
[df147c7]1385 assert(path != NULL);
1386
1387 bool is_absolute = path[0] == '/';
1388 if (!is_absolute) {
1389 return NULL;
1390 }
1391
[957cfa58]1392 fibril_rwlock_read_lock(&tree->rwlock);
1393
[ba38f72c]1394 fun_node_t *fun = tree->root_node;
[58cbb0c8]1395 fun_add_ref(fun);
[38b3baf]1396 /*
[ba38f72c]1397 * Relative path to the function from its parent (but with '/' at the
[38b3baf]1398 * beginning)
1399 */
[5cd136ab]1400 char *rel_path = path;
1401 char *next_path_elem = NULL;
[7beb220]1402 bool cont = (rel_path[1] != '\0');
[5cd136ab]1403
[ba38f72c]1404 while (cont && fun != NULL) {
[38b3baf]1405 next_path_elem = get_path_elem_end(rel_path + 1);
[58b833c]1406 if (next_path_elem[0] == '/') {
[5cd136ab]1407 cont = true;
1408 next_path_elem[0] = 0;
1409 } else {
1410 cont = false;
1411 }
1412
[58cbb0c8]1413 fun_node_t *cfun = find_node_child(tree, fun, rel_path + 1);
1414 fun_del_ref(fun);
1415 fun = cfun;
[5cd136ab]1416
1417 if (cont) {
[38b3baf]1418 /* Restore the original path. */
[5cd136ab]1419 next_path_elem[0] = '/';
1420 }
[38b3baf]1421 rel_path = next_path_elem;
[5cd136ab]1422 }
1423
[957cfa58]1424 fibril_rwlock_read_unlock(&tree->rwlock);
1425
[ba38f72c]1426 return fun;
[5cd136ab]1427}
1428
[0876062]1429/** Find function with a specified name belonging to given device.
[38b3baf]1430 *
1431 * Device tree rwlock should be held at least for reading.
1432 *
[58cbb0c8]1433 * @param tree Device tree
[0876062]1434 * @param dev Device the function belongs to.
1435 * @param name Function name (not path).
1436 * @return Function node.
1437 * @retval NULL No function with given name.
[5cd136ab]1438 */
[58cbb0c8]1439fun_node_t *find_fun_node_in_device(dev_tree_t *tree, dev_node_t *dev,
1440 const char *name)
[5cd136ab]1441{
[0876062]1442 assert(name != NULL);
[58cbb0c8]1443 assert(fibril_rwlock_is_locked(&tree->rwlock));
[0876062]1444
[ba38f72c]1445 fun_node_t *fun;
[0876062]1446
[b72efe8]1447 list_foreach(dev->functions, link) {
[ba38f72c]1448 fun = list_get_instance(link, fun_node_t, dev_functions);
[0876062]1449
[58cbb0c8]1450 if (str_cmp(name, fun->name) == 0) {
1451 fun_add_ref(fun);
[ba38f72c]1452 return fun;
[58cbb0c8]1453 }
[38b3baf]1454 }
[0876062]1455
[5cd136ab]1456 return NULL;
1457}
1458
[0876062]1459/** Find child function node with a specified name.
1460 *
1461 * Device tree rwlock should be held at least for reading.
1462 *
[58cbb0c8]1463 * @param tree Device tree
[0876062]1464 * @param parent The parent function node.
1465 * @param name The name of the child function.
1466 * @return The child function node.
1467 */
[58cbb0c8]1468static fun_node_t *find_node_child(dev_tree_t *tree, fun_node_t *pfun,
1469 const char *name)
[0876062]1470{
[58cbb0c8]1471 return find_fun_node_in_device(tree, pfun->child, name);
[0876062]1472}
1473
[15f3c3f]1474/* loc devices */
[ce89036b]1475
[15f3c3f]1476fun_node_t *find_loc_tree_function(dev_tree_t *tree, service_id_t service_id)
[ce89036b]1477{
[ba38f72c]1478 fun_node_t *fun = NULL;
[ce89036b]1479 link_t *link;
[15f3c3f]1480 unsigned long key = (unsigned long) service_id;
[ce89036b]1481
1482 fibril_rwlock_read_lock(&tree->rwlock);
[15f3c3f]1483 link = hash_table_find(&tree->loc_functions, &key);
[58cbb0c8]1484 if (link != NULL) {
[15f3c3f]1485 fun = hash_table_get_instance(link, fun_node_t, loc_fun);
[58cbb0c8]1486 fun_add_ref(fun);
1487 }
[ce89036b]1488 fibril_rwlock_read_unlock(&tree->rwlock);
1489
[ba38f72c]1490 return fun;
[ce89036b]1491}
1492
[15f3c3f]1493void tree_add_loc_function(dev_tree_t *tree, fun_node_t *fun)
[791f58c]1494{
[58cbb0c8]1495 assert(fibril_rwlock_is_write_locked(&tree->rwlock));
1496
[15f3c3f]1497 unsigned long key = (unsigned long) fun->service_id;
1498 hash_table_insert(&tree->loc_functions, &key, &fun->loc_fun);
[791f58c]1499}
1500
[c16cf62]1501/** @}
[58b833c]1502 */
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