vmt.c 22 KB

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  1. /*
  2. * Copyright (c) International Business Machines Corp., 2006
  3. *
  4. * This program is free software; you can redistribute it and/or modify
  5. * it under the terms of the GNU General Public License as published by
  6. * the Free Software Foundation; either version 2 of the License, or
  7. * (at your option) any later version.
  8. *
  9. * This program is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See
  12. * the GNU General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU General Public License
  15. * along with this program; if not, write to the Free Software
  16. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  17. *
  18. * Author: Artem Bityutskiy (Битюцкий Артём)
  19. */
  20. /*
  21. * This file contains implementation of volume creation, deletion, updating and
  22. * resizing.
  23. */
  24. #include <linux/err.h>
  25. #include <asm/div64.h>
  26. #include "ubi.h"
  27. #ifdef CONFIG_MTD_UBI_DEBUG_PARANOID
  28. static void paranoid_check_volumes(struct ubi_device *ubi);
  29. #else
  30. #define paranoid_check_volumes(ubi)
  31. #endif
  32. static ssize_t vol_attribute_show(struct device *dev,
  33. struct device_attribute *attr, char *buf);
  34. /* Device attributes corresponding to files in '/<sysfs>/class/ubi/ubiX_Y' */
  35. static struct device_attribute attr_vol_reserved_ebs =
  36. __ATTR(reserved_ebs, S_IRUGO, vol_attribute_show, NULL);
  37. static struct device_attribute attr_vol_type =
  38. __ATTR(type, S_IRUGO, vol_attribute_show, NULL);
  39. static struct device_attribute attr_vol_name =
  40. __ATTR(name, S_IRUGO, vol_attribute_show, NULL);
  41. static struct device_attribute attr_vol_corrupted =
  42. __ATTR(corrupted, S_IRUGO, vol_attribute_show, NULL);
  43. static struct device_attribute attr_vol_alignment =
  44. __ATTR(alignment, S_IRUGO, vol_attribute_show, NULL);
  45. static struct device_attribute attr_vol_usable_eb_size =
  46. __ATTR(usable_eb_size, S_IRUGO, vol_attribute_show, NULL);
  47. static struct device_attribute attr_vol_data_bytes =
  48. __ATTR(data_bytes, S_IRUGO, vol_attribute_show, NULL);
  49. static struct device_attribute attr_vol_upd_marker =
  50. __ATTR(upd_marker, S_IRUGO, vol_attribute_show, NULL);
  51. /*
  52. * "Show" method for files in '/<sysfs>/class/ubi/ubiX_Y/'.
  53. *
  54. * Consider a situation:
  55. * A. process 1 opens a sysfs file related to volume Y, say
  56. * /<sysfs>/class/ubi/ubiX_Y/reserved_ebs;
  57. * B. process 2 removes volume Y;
  58. * C. process 1 starts reading the /<sysfs>/class/ubi/ubiX_Y/reserved_ebs file;
  59. *
  60. * What we want to do in a situation like that is to return error when the file
  61. * is read. This is done by means of the 'removed' flag and the 'vol_lock' of
  62. * the UBI volume description object.
  63. */
  64. static ssize_t vol_attribute_show(struct device *dev,
  65. struct device_attribute *attr, char *buf)
  66. {
  67. int ret = -ENODEV;
  68. struct ubi_volume *vol = container_of(dev, struct ubi_volume, dev);
  69. spin_lock(&vol->ubi->volumes_lock);
  70. if (vol->removed) {
  71. spin_unlock(&vol->ubi->volumes_lock);
  72. return ret;
  73. }
  74. if (attr == &attr_vol_reserved_ebs)
  75. ret = sprintf(buf, "%d\n", vol->reserved_pebs);
  76. else if (attr == &attr_vol_type) {
  77. const char *tp;
  78. if (vol->vol_type == UBI_DYNAMIC_VOLUME)
  79. tp = "dynamic";
  80. else
  81. tp = "static";
  82. ret = sprintf(buf, "%s\n", tp);
  83. } else if (attr == &attr_vol_name)
  84. ret = sprintf(buf, "%s\n", vol->name);
  85. else if (attr == &attr_vol_corrupted)
  86. ret = sprintf(buf, "%d\n", vol->corrupted);
  87. else if (attr == &attr_vol_alignment)
  88. ret = sprintf(buf, "%d\n", vol->alignment);
  89. else if (attr == &attr_vol_usable_eb_size)
  90. ret = sprintf(buf, "%d\n", vol->usable_leb_size);
  91. else if (attr == &attr_vol_data_bytes)
  92. ret = sprintf(buf, "%lld\n", vol->used_bytes);
  93. else if (attr == &attr_vol_upd_marker)
  94. ret = sprintf(buf, "%d\n", vol->upd_marker);
  95. else
  96. BUG();
  97. spin_unlock(&vol->ubi->volumes_lock);
  98. return ret;
  99. }
  100. /* Release method for volume devices */
  101. static void vol_release(struct device *dev)
  102. {
  103. struct ubi_volume *vol = container_of(dev, struct ubi_volume, dev);
  104. ubi_assert(vol->removed);
  105. kfree(vol);
  106. }
  107. /**
  108. * volume_sysfs_init - initialize sysfs for new volume.
  109. * @ubi: UBI device description object
  110. * @vol: volume description object
  111. *
  112. * This function returns zero in case of success and a negative error code in
  113. * case of failure.
  114. *
  115. * Note, this function does not free allocated resources in case of failure -
  116. * the caller does it. This is because this would cause release() here and the
  117. * caller would oops.
  118. */
  119. static int volume_sysfs_init(struct ubi_device *ubi, struct ubi_volume *vol)
  120. {
  121. int err;
  122. err = device_create_file(&vol->dev, &attr_vol_reserved_ebs);
  123. if (err)
  124. return err;
  125. err = device_create_file(&vol->dev, &attr_vol_type);
  126. if (err)
  127. return err;
  128. err = device_create_file(&vol->dev, &attr_vol_name);
  129. if (err)
  130. return err;
  131. err = device_create_file(&vol->dev, &attr_vol_corrupted);
  132. if (err)
  133. return err;
  134. err = device_create_file(&vol->dev, &attr_vol_alignment);
  135. if (err)
  136. return err;
  137. err = device_create_file(&vol->dev, &attr_vol_usable_eb_size);
  138. if (err)
  139. return err;
  140. err = device_create_file(&vol->dev, &attr_vol_data_bytes);
  141. if (err)
  142. return err;
  143. err = device_create_file(&vol->dev, &attr_vol_upd_marker);
  144. if (err)
  145. return err;
  146. return 0;
  147. }
  148. /**
  149. * volume_sysfs_close - close sysfs for a volume.
  150. * @vol: volume description object
  151. */
  152. static void volume_sysfs_close(struct ubi_volume *vol)
  153. {
  154. device_remove_file(&vol->dev, &attr_vol_upd_marker);
  155. device_remove_file(&vol->dev, &attr_vol_data_bytes);
  156. device_remove_file(&vol->dev, &attr_vol_usable_eb_size);
  157. device_remove_file(&vol->dev, &attr_vol_alignment);
  158. device_remove_file(&vol->dev, &attr_vol_corrupted);
  159. device_remove_file(&vol->dev, &attr_vol_name);
  160. device_remove_file(&vol->dev, &attr_vol_type);
  161. device_remove_file(&vol->dev, &attr_vol_reserved_ebs);
  162. device_unregister(&vol->dev);
  163. }
  164. /**
  165. * ubi_create_volume - create volume.
  166. * @ubi: UBI device description object
  167. * @req: volume creation request
  168. *
  169. * This function creates volume described by @req. If @req->vol_id id
  170. * %UBI_VOL_NUM_AUTO, this function automatically assigne ID to the new volume
  171. * and saves it in @req->vol_id. Returns zero in case of success and a negative
  172. * error code in case of failure.
  173. */
  174. int ubi_create_volume(struct ubi_device *ubi, struct ubi_mkvol_req *req)
  175. {
  176. int i, err, vol_id = req->vol_id;
  177. struct ubi_volume *vol;
  178. struct ubi_vtbl_record vtbl_rec;
  179. uint64_t bytes;
  180. dev_t dev;
  181. if (ubi->ro_mode)
  182. return -EROFS;
  183. vol = kzalloc(sizeof(struct ubi_volume), GFP_KERNEL);
  184. if (!vol)
  185. return -ENOMEM;
  186. mutex_lock(&ubi->volumes_mutex);
  187. spin_lock(&ubi->volumes_lock);
  188. if (vol_id == UBI_VOL_NUM_AUTO) {
  189. /* Find unused volume ID */
  190. dbg_msg("search for vacant volume ID");
  191. for (i = 0; i < ubi->vtbl_slots; i++)
  192. if (!ubi->volumes[i]) {
  193. vol_id = i;
  194. break;
  195. }
  196. if (vol_id == UBI_VOL_NUM_AUTO) {
  197. dbg_err("out of volume IDs");
  198. err = -ENFILE;
  199. goto out_unlock;
  200. }
  201. req->vol_id = vol_id;
  202. }
  203. dbg_msg("volume ID %d, %llu bytes, type %d, name %s",
  204. vol_id, (unsigned long long)req->bytes,
  205. (int)req->vol_type, req->name);
  206. /* Ensure that this volume does not exist */
  207. err = -EEXIST;
  208. if (ubi->volumes[vol_id]) {
  209. dbg_err("volume %d already exists", vol_id);
  210. goto out_unlock;
  211. }
  212. /* Ensure that the name is unique */
  213. for (i = 0; i < ubi->vtbl_slots; i++)
  214. if (ubi->volumes[i] &&
  215. ubi->volumes[i]->name_len == req->name_len &&
  216. !strcmp(ubi->volumes[i]->name, req->name)) {
  217. dbg_err("volume \"%s\" exists (ID %d)", req->name, i);
  218. goto out_unlock;
  219. }
  220. /* Calculate how many eraseblocks are requested */
  221. vol->usable_leb_size = ubi->leb_size - ubi->leb_size % req->alignment;
  222. bytes = req->bytes;
  223. if (do_div(bytes, vol->usable_leb_size))
  224. vol->reserved_pebs = 1;
  225. vol->reserved_pebs += bytes;
  226. /* Reserve physical eraseblocks */
  227. if (vol->reserved_pebs > ubi->avail_pebs) {
  228. dbg_err("not enough PEBs, only %d available", ubi->avail_pebs);
  229. err = -ENOSPC;
  230. goto out_unlock;
  231. }
  232. ubi->avail_pebs -= vol->reserved_pebs;
  233. ubi->rsvd_pebs += vol->reserved_pebs;
  234. vol->vol_id = vol_id;
  235. vol->alignment = req->alignment;
  236. vol->data_pad = ubi->leb_size % vol->alignment;
  237. vol->vol_type = req->vol_type;
  238. vol->name_len = req->name_len;
  239. memcpy(vol->name, req->name, vol->name_len + 1);
  240. vol->exclusive = 1;
  241. vol->ubi = ubi;
  242. ubi->volumes[vol_id] = vol;
  243. spin_unlock(&ubi->volumes_lock);
  244. /*
  245. * Finish all pending erases because there may be some LEBs belonging
  246. * to the same volume ID.
  247. */
  248. err = ubi_wl_flush(ubi);
  249. if (err)
  250. goto out_acc;
  251. vol->eba_tbl = kmalloc(vol->reserved_pebs * sizeof(int), GFP_KERNEL);
  252. if (!vol->eba_tbl) {
  253. err = -ENOMEM;
  254. goto out_acc;
  255. }
  256. for (i = 0; i < vol->reserved_pebs; i++)
  257. vol->eba_tbl[i] = UBI_LEB_UNMAPPED;
  258. if (vol->vol_type == UBI_DYNAMIC_VOLUME) {
  259. vol->used_ebs = vol->reserved_pebs;
  260. vol->last_eb_bytes = vol->usable_leb_size;
  261. vol->used_bytes =
  262. (long long)vol->used_ebs * vol->usable_leb_size;
  263. } else {
  264. bytes = vol->used_bytes;
  265. vol->last_eb_bytes = do_div(bytes, vol->usable_leb_size);
  266. vol->used_ebs = bytes;
  267. if (vol->last_eb_bytes)
  268. vol->used_ebs += 1;
  269. else
  270. vol->last_eb_bytes = vol->usable_leb_size;
  271. }
  272. /* Register character device for the volume */
  273. cdev_init(&vol->cdev, &ubi_vol_cdev_operations);
  274. vol->cdev.owner = THIS_MODULE;
  275. dev = MKDEV(MAJOR(ubi->cdev.dev), vol_id + 1);
  276. err = cdev_add(&vol->cdev, dev, 1);
  277. if (err) {
  278. ubi_err("cannot add character device");
  279. goto out_mapping;
  280. }
  281. err = ubi_create_gluebi(ubi, vol);
  282. if (err)
  283. goto out_cdev;
  284. vol->dev.release = vol_release;
  285. vol->dev.parent = &ubi->dev;
  286. vol->dev.devt = dev;
  287. vol->dev.class = ubi_class;
  288. sprintf(&vol->dev.bus_id[0], "%s_%d", ubi->ubi_name, vol->vol_id);
  289. err = device_register(&vol->dev);
  290. if (err) {
  291. ubi_err("cannot register device");
  292. goto out_gluebi;
  293. }
  294. err = volume_sysfs_init(ubi, vol);
  295. if (err)
  296. goto out_sysfs;
  297. /* Fill volume table record */
  298. memset(&vtbl_rec, 0, sizeof(struct ubi_vtbl_record));
  299. vtbl_rec.reserved_pebs = cpu_to_be32(vol->reserved_pebs);
  300. vtbl_rec.alignment = cpu_to_be32(vol->alignment);
  301. vtbl_rec.data_pad = cpu_to_be32(vol->data_pad);
  302. vtbl_rec.name_len = cpu_to_be16(vol->name_len);
  303. if (vol->vol_type == UBI_DYNAMIC_VOLUME)
  304. vtbl_rec.vol_type = UBI_VID_DYNAMIC;
  305. else
  306. vtbl_rec.vol_type = UBI_VID_STATIC;
  307. memcpy(vtbl_rec.name, vol->name, vol->name_len + 1);
  308. err = ubi_change_vtbl_record(ubi, vol_id, &vtbl_rec);
  309. if (err)
  310. goto out_sysfs;
  311. spin_lock(&ubi->volumes_lock);
  312. ubi->vol_count += 1;
  313. vol->exclusive = 0;
  314. spin_unlock(&ubi->volumes_lock);
  315. paranoid_check_volumes(ubi);
  316. mutex_unlock(&ubi->volumes_mutex);
  317. return 0;
  318. out_gluebi:
  319. err = ubi_destroy_gluebi(vol);
  320. out_cdev:
  321. cdev_del(&vol->cdev);
  322. out_mapping:
  323. kfree(vol->eba_tbl);
  324. out_acc:
  325. spin_lock(&ubi->volumes_lock);
  326. ubi->rsvd_pebs -= vol->reserved_pebs;
  327. ubi->avail_pebs += vol->reserved_pebs;
  328. ubi->volumes[vol_id] = NULL;
  329. out_unlock:
  330. spin_unlock(&ubi->volumes_lock);
  331. mutex_unlock(&ubi->volumes_mutex);
  332. kfree(vol);
  333. ubi_err("cannot create volume %d, error %d", vol_id, err);
  334. return err;
  335. /*
  336. * We are registered, so @vol is destroyed in the release function and
  337. * we have to de-initialize differently.
  338. */
  339. out_sysfs:
  340. err = ubi_destroy_gluebi(vol);
  341. cdev_del(&vol->cdev);
  342. kfree(vol->eba_tbl);
  343. spin_lock(&ubi->volumes_lock);
  344. ubi->rsvd_pebs -= vol->reserved_pebs;
  345. ubi->avail_pebs += vol->reserved_pebs;
  346. ubi->volumes[vol_id] = NULL;
  347. spin_unlock(&ubi->volumes_lock);
  348. mutex_unlock(&ubi->volumes_mutex);
  349. volume_sysfs_close(vol);
  350. ubi_err("cannot create volume %d, error %d", vol_id, err);
  351. return err;
  352. }
  353. /**
  354. * ubi_remove_volume - remove volume.
  355. * @desc: volume descriptor
  356. *
  357. * This function removes volume described by @desc. The volume has to be opened
  358. * in "exclusive" mode. Returns zero in case of success and a negative error
  359. * code in case of failure.
  360. */
  361. int ubi_remove_volume(struct ubi_volume_desc *desc)
  362. {
  363. struct ubi_volume *vol = desc->vol;
  364. struct ubi_device *ubi = vol->ubi;
  365. int i, err, vol_id = vol->vol_id, reserved_pebs = vol->reserved_pebs;
  366. dbg_msg("remove UBI volume %d", vol_id);
  367. ubi_assert(desc->mode == UBI_EXCLUSIVE);
  368. ubi_assert(vol == ubi->volumes[vol_id]);
  369. if (ubi->ro_mode)
  370. return -EROFS;
  371. mutex_lock(&ubi->volumes_mutex);
  372. err = ubi_destroy_gluebi(vol);
  373. if (err)
  374. goto out;
  375. err = ubi_change_vtbl_record(ubi, vol_id, NULL);
  376. if (err)
  377. goto out;
  378. for (i = 0; i < vol->reserved_pebs; i++) {
  379. err = ubi_eba_unmap_leb(ubi, vol, i);
  380. if (err)
  381. goto out;
  382. }
  383. spin_lock(&ubi->volumes_lock);
  384. vol->removed = 1;
  385. ubi->volumes[vol_id] = NULL;
  386. spin_unlock(&ubi->volumes_lock);
  387. kfree(vol->eba_tbl);
  388. vol->eba_tbl = NULL;
  389. cdev_del(&vol->cdev);
  390. volume_sysfs_close(vol);
  391. kfree(desc);
  392. spin_lock(&ubi->volumes_lock);
  393. ubi->rsvd_pebs -= reserved_pebs;
  394. ubi->avail_pebs += reserved_pebs;
  395. i = ubi->beb_rsvd_level - ubi->beb_rsvd_pebs;
  396. if (i > 0) {
  397. i = ubi->avail_pebs >= i ? i : ubi->avail_pebs;
  398. ubi->avail_pebs -= i;
  399. ubi->rsvd_pebs += i;
  400. ubi->beb_rsvd_pebs += i;
  401. if (i > 0)
  402. ubi_msg("reserve more %d PEBs", i);
  403. }
  404. ubi->vol_count -= 1;
  405. spin_unlock(&ubi->volumes_lock);
  406. paranoid_check_volumes(ubi);
  407. mutex_unlock(&ubi->volumes_mutex);
  408. module_put(THIS_MODULE);
  409. return 0;
  410. out:
  411. mutex_unlock(&ubi->volumes_mutex);
  412. return err;
  413. }
  414. /**
  415. * ubi_resize_volume - re-size volume.
  416. * @desc: volume descriptor
  417. * @reserved_pebs: new size in physical eraseblocks
  418. *
  419. * This function returns zero in case of success, and a negative error code in
  420. * case of failure.
  421. */
  422. int ubi_resize_volume(struct ubi_volume_desc *desc, int reserved_pebs)
  423. {
  424. int i, err, pebs, *new_mapping;
  425. struct ubi_volume *vol = desc->vol;
  426. struct ubi_device *ubi = vol->ubi;
  427. struct ubi_vtbl_record vtbl_rec;
  428. int vol_id = vol->vol_id;
  429. if (ubi->ro_mode)
  430. return -EROFS;
  431. dbg_msg("re-size volume %d to from %d to %d PEBs",
  432. vol_id, vol->reserved_pebs, reserved_pebs);
  433. ubi_assert(desc->mode == UBI_EXCLUSIVE);
  434. ubi_assert(vol == ubi->volumes[vol_id]);
  435. if (vol->vol_type == UBI_STATIC_VOLUME &&
  436. reserved_pebs < vol->used_ebs) {
  437. dbg_err("too small size %d, %d LEBs contain data",
  438. reserved_pebs, vol->used_ebs);
  439. return -EINVAL;
  440. }
  441. /* If the size is the same, we have nothing to do */
  442. if (reserved_pebs == vol->reserved_pebs)
  443. return 0;
  444. new_mapping = kmalloc(reserved_pebs * sizeof(int), GFP_KERNEL);
  445. if (!new_mapping)
  446. return -ENOMEM;
  447. for (i = 0; i < reserved_pebs; i++)
  448. new_mapping[i] = UBI_LEB_UNMAPPED;
  449. /* Reserve physical eraseblocks */
  450. mutex_lock(&ubi->volumes_mutex);
  451. pebs = reserved_pebs - vol->reserved_pebs;
  452. if (pebs > 0) {
  453. spin_lock(&ubi->volumes_lock);
  454. if (pebs > ubi->avail_pebs) {
  455. dbg_err("not enough PEBs: requested %d, available %d",
  456. pebs, ubi->avail_pebs);
  457. spin_unlock(&ubi->volumes_lock);
  458. err = -ENOSPC;
  459. goto out_free;
  460. }
  461. ubi->avail_pebs -= pebs;
  462. ubi->rsvd_pebs += pebs;
  463. for (i = 0; i < vol->reserved_pebs; i++)
  464. new_mapping[i] = vol->eba_tbl[i];
  465. kfree(vol->eba_tbl);
  466. vol->eba_tbl = new_mapping;
  467. spin_unlock(&ubi->volumes_lock);
  468. }
  469. /* Change volume table record */
  470. memcpy(&vtbl_rec, &ubi->vtbl[vol_id], sizeof(struct ubi_vtbl_record));
  471. vtbl_rec.reserved_pebs = cpu_to_be32(reserved_pebs);
  472. err = ubi_change_vtbl_record(ubi, vol_id, &vtbl_rec);
  473. if (err)
  474. goto out_acc;
  475. if (pebs < 0) {
  476. for (i = 0; i < -pebs; i++) {
  477. err = ubi_eba_unmap_leb(ubi, vol, reserved_pebs + i);
  478. if (err)
  479. goto out_acc;
  480. }
  481. spin_lock(&ubi->volumes_lock);
  482. ubi->rsvd_pebs += pebs;
  483. ubi->avail_pebs -= pebs;
  484. pebs = ubi->beb_rsvd_level - ubi->beb_rsvd_pebs;
  485. if (pebs > 0) {
  486. pebs = ubi->avail_pebs >= pebs ? pebs : ubi->avail_pebs;
  487. ubi->avail_pebs -= pebs;
  488. ubi->rsvd_pebs += pebs;
  489. ubi->beb_rsvd_pebs += pebs;
  490. if (pebs > 0)
  491. ubi_msg("reserve more %d PEBs", pebs);
  492. }
  493. for (i = 0; i < reserved_pebs; i++)
  494. new_mapping[i] = vol->eba_tbl[i];
  495. kfree(vol->eba_tbl);
  496. vol->eba_tbl = new_mapping;
  497. spin_unlock(&ubi->volumes_lock);
  498. }
  499. vol->reserved_pebs = reserved_pebs;
  500. if (vol->vol_type == UBI_DYNAMIC_VOLUME) {
  501. vol->used_ebs = reserved_pebs;
  502. vol->last_eb_bytes = vol->usable_leb_size;
  503. vol->used_bytes =
  504. (long long)vol->used_ebs * vol->usable_leb_size;
  505. }
  506. paranoid_check_volumes(ubi);
  507. mutex_unlock(&ubi->volumes_mutex);
  508. return 0;
  509. out_acc:
  510. if (pebs > 0) {
  511. spin_lock(&ubi->volumes_lock);
  512. ubi->rsvd_pebs -= pebs;
  513. ubi->avail_pebs += pebs;
  514. spin_unlock(&ubi->volumes_lock);
  515. }
  516. out_free:
  517. kfree(new_mapping);
  518. mutex_unlock(&ubi->volumes_mutex);
  519. return err;
  520. }
  521. /**
  522. * ubi_add_volume - add volume.
  523. * @ubi: UBI device description object
  524. * @vol: volume description object
  525. *
  526. * This function adds an existin volume and initializes all its data
  527. * structures. Returnes zero in case of success and a negative error code in
  528. * case of failure.
  529. */
  530. int ubi_add_volume(struct ubi_device *ubi, struct ubi_volume *vol)
  531. {
  532. int err, vol_id = vol->vol_id;
  533. dev_t dev;
  534. dbg_msg("add volume %d", vol_id);
  535. ubi_dbg_dump_vol_info(vol);
  536. ubi_assert(vol);
  537. /* Register character device for the volume */
  538. cdev_init(&vol->cdev, &ubi_vol_cdev_operations);
  539. vol->cdev.owner = THIS_MODULE;
  540. dev = MKDEV(MAJOR(ubi->cdev.dev), vol->vol_id + 1);
  541. err = cdev_add(&vol->cdev, dev, 1);
  542. if (err) {
  543. ubi_err("cannot add character device for volume %d, error %d",
  544. vol_id, err);
  545. return err;
  546. }
  547. err = ubi_create_gluebi(ubi, vol);
  548. if (err)
  549. goto out_cdev;
  550. vol->dev.release = vol_release;
  551. vol->dev.parent = &ubi->dev;
  552. vol->dev.devt = dev;
  553. vol->dev.class = ubi_class;
  554. sprintf(&vol->dev.bus_id[0], "%s_%d", ubi->ubi_name, vol->vol_id);
  555. err = device_register(&vol->dev);
  556. if (err)
  557. goto out_gluebi;
  558. err = volume_sysfs_init(ubi, vol);
  559. if (err) {
  560. cdev_del(&vol->cdev);
  561. err = ubi_destroy_gluebi(vol);
  562. volume_sysfs_close(vol);
  563. return err;
  564. }
  565. paranoid_check_volumes(ubi);
  566. return 0;
  567. out_gluebi:
  568. err = ubi_destroy_gluebi(vol);
  569. out_cdev:
  570. cdev_del(&vol->cdev);
  571. return err;
  572. }
  573. /**
  574. * ubi_free_volume - free volume.
  575. * @ubi: UBI device description object
  576. * @vol: volume description object
  577. *
  578. * This function frees all resources for volume @vol but does not remove it.
  579. * Used only when the UBI device is detached.
  580. */
  581. void ubi_free_volume(struct ubi_device *ubi, struct ubi_volume *vol)
  582. {
  583. int err;
  584. dbg_msg("free volume %d", vol->vol_id);
  585. ubi_assert(vol);
  586. vol->removed = 1;
  587. err = ubi_destroy_gluebi(vol);
  588. ubi->volumes[vol->vol_id] = NULL;
  589. cdev_del(&vol->cdev);
  590. volume_sysfs_close(vol);
  591. }
  592. #ifdef CONFIG_MTD_UBI_DEBUG_PARANOID
  593. /**
  594. * paranoid_check_volume - check volume information.
  595. * @ubi: UBI device description object
  596. * @vol_id: volume ID
  597. */
  598. static void paranoid_check_volume(struct ubi_device *ubi, int vol_id)
  599. {
  600. int idx = vol_id2idx(ubi, vol_id);
  601. int reserved_pebs, alignment, data_pad, vol_type, name_len, upd_marker;
  602. const struct ubi_volume *vol;
  603. long long n;
  604. const char *name;
  605. spin_lock(&ubi->volumes_lock);
  606. reserved_pebs = be32_to_cpu(ubi->vtbl[vol_id].reserved_pebs);
  607. vol = ubi->volumes[idx];
  608. if (!vol) {
  609. if (reserved_pebs) {
  610. ubi_err("no volume info, but volume exists");
  611. goto fail;
  612. }
  613. spin_unlock(&ubi->volumes_lock);
  614. return;
  615. }
  616. if (vol->exclusive) {
  617. /*
  618. * The volume may be being created at the moment, do not check
  619. * it (e.g., it may be in the middle of ubi_create_volume().
  620. */
  621. spin_unlock(&ubi->volumes_lock);
  622. return;
  623. }
  624. if (vol->reserved_pebs < 0 || vol->alignment < 0 || vol->data_pad < 0 ||
  625. vol->name_len < 0) {
  626. ubi_err("negative values");
  627. goto fail;
  628. }
  629. if (vol->alignment > ubi->leb_size || vol->alignment == 0) {
  630. ubi_err("bad alignment");
  631. goto fail;
  632. }
  633. n = vol->alignment % ubi->min_io_size;
  634. if (vol->alignment != 1 && n) {
  635. ubi_err("alignment is not multiple of min I/O unit");
  636. goto fail;
  637. }
  638. n = ubi->leb_size % vol->alignment;
  639. if (vol->data_pad != n) {
  640. ubi_err("bad data_pad, has to be %lld", n);
  641. goto fail;
  642. }
  643. if (vol->vol_type != UBI_DYNAMIC_VOLUME &&
  644. vol->vol_type != UBI_STATIC_VOLUME) {
  645. ubi_err("bad vol_type");
  646. goto fail;
  647. }
  648. if (vol->upd_marker != 0 && vol->upd_marker != 1) {
  649. ubi_err("bad upd_marker");
  650. goto fail;
  651. }
  652. if (vol->upd_marker && vol->corrupted) {
  653. dbg_err("update marker and corrupted simultaneously");
  654. goto fail;
  655. }
  656. if (vol->reserved_pebs > ubi->good_peb_count) {
  657. ubi_err("too large reserved_pebs");
  658. goto fail;
  659. }
  660. n = ubi->leb_size - vol->data_pad;
  661. if (vol->usable_leb_size != ubi->leb_size - vol->data_pad) {
  662. ubi_err("bad usable_leb_size, has to be %lld", n);
  663. goto fail;
  664. }
  665. if (vol->name_len > UBI_VOL_NAME_MAX) {
  666. ubi_err("too long volume name, max is %d", UBI_VOL_NAME_MAX);
  667. goto fail;
  668. }
  669. if (!vol->name) {
  670. ubi_err("NULL volume name");
  671. goto fail;
  672. }
  673. n = strnlen(vol->name, vol->name_len + 1);
  674. if (n != vol->name_len) {
  675. ubi_err("bad name_len %lld", n);
  676. goto fail;
  677. }
  678. n = (long long)vol->used_ebs * vol->usable_leb_size;
  679. if (vol->vol_type == UBI_DYNAMIC_VOLUME) {
  680. if (vol->corrupted != 0) {
  681. ubi_err("corrupted dynamic volume");
  682. goto fail;
  683. }
  684. if (vol->used_ebs != vol->reserved_pebs) {
  685. ubi_err("bad used_ebs");
  686. goto fail;
  687. }
  688. if (vol->last_eb_bytes != vol->usable_leb_size) {
  689. ubi_err("bad last_eb_bytes");
  690. goto fail;
  691. }
  692. if (vol->used_bytes != n) {
  693. ubi_err("bad used_bytes");
  694. goto fail;
  695. }
  696. } else {
  697. if (vol->corrupted != 0 && vol->corrupted != 1) {
  698. ubi_err("bad corrupted");
  699. goto fail;
  700. }
  701. if (vol->used_ebs < 0 || vol->used_ebs > vol->reserved_pebs) {
  702. ubi_err("bad used_ebs");
  703. goto fail;
  704. }
  705. if (vol->last_eb_bytes < 0 ||
  706. vol->last_eb_bytes > vol->usable_leb_size) {
  707. ubi_err("bad last_eb_bytes");
  708. goto fail;
  709. }
  710. if (vol->used_bytes < 0 || vol->used_bytes > n ||
  711. vol->used_bytes < n - vol->usable_leb_size) {
  712. ubi_err("bad used_bytes");
  713. goto fail;
  714. }
  715. }
  716. alignment = be32_to_cpu(ubi->vtbl[vol_id].alignment);
  717. data_pad = be32_to_cpu(ubi->vtbl[vol_id].data_pad);
  718. name_len = be16_to_cpu(ubi->vtbl[vol_id].name_len);
  719. upd_marker = ubi->vtbl[vol_id].upd_marker;
  720. name = &ubi->vtbl[vol_id].name[0];
  721. if (ubi->vtbl[vol_id].vol_type == UBI_VID_DYNAMIC)
  722. vol_type = UBI_DYNAMIC_VOLUME;
  723. else
  724. vol_type = UBI_STATIC_VOLUME;
  725. if (alignment != vol->alignment || data_pad != vol->data_pad ||
  726. upd_marker != vol->upd_marker || vol_type != vol->vol_type ||
  727. name_len!= vol->name_len || strncmp(name, vol->name, name_len)) {
  728. ubi_err("volume info is different");
  729. goto fail;
  730. }
  731. spin_unlock(&ubi->volumes_lock);
  732. return;
  733. fail:
  734. ubi_err("paranoid check failed for volume %d", vol_id);
  735. ubi_dbg_dump_vol_info(vol);
  736. ubi_dbg_dump_vtbl_record(&ubi->vtbl[vol_id], vol_id);
  737. spin_unlock(&ubi->volumes_lock);
  738. BUG();
  739. }
  740. /**
  741. * paranoid_check_volumes - check information about all volumes.
  742. * @ubi: UBI device description object
  743. */
  744. static void paranoid_check_volumes(struct ubi_device *ubi)
  745. {
  746. int i;
  747. for (i = 0; i < ubi->vtbl_slots; i++)
  748. paranoid_check_volume(ubi, i);
  749. }
  750. #endif