block2mtd.c 10 KB

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  1. /*
  2. * block2mtd.c - create an mtd from a block device
  3. *
  4. * Copyright (C) 2001,2002 Simon Evans <spse@secret.org.uk>
  5. * Copyright (C) 2004-2006 Joern Engel <joern@wh.fh-wedel.de>
  6. *
  7. * Licence: GPL
  8. */
  9. #include <linux/module.h>
  10. #include <linux/fs.h>
  11. #include <linux/blkdev.h>
  12. #include <linux/bio.h>
  13. #include <linux/pagemap.h>
  14. #include <linux/list.h>
  15. #include <linux/init.h>
  16. #include <linux/mtd/mtd.h>
  17. #include <linux/buffer_head.h>
  18. #include <linux/mutex.h>
  19. #include <linux/mount.h>
  20. #define ERROR(fmt, args...) printk(KERN_ERR "block2mtd: " fmt "\n" , ## args)
  21. #define INFO(fmt, args...) printk(KERN_INFO "block2mtd: " fmt "\n" , ## args)
  22. /* Info for the block device */
  23. struct block2mtd_dev {
  24. struct list_head list;
  25. struct block_device *blkdev;
  26. struct mtd_info mtd;
  27. struct mutex write_mutex;
  28. };
  29. /* Static info about the MTD, used in cleanup_module */
  30. static LIST_HEAD(blkmtd_device_list);
  31. static struct page *page_read(struct address_space *mapping, int index)
  32. {
  33. return read_mapping_page(mapping, index, NULL);
  34. }
  35. /* erase a specified part of the device */
  36. static int _block2mtd_erase(struct block2mtd_dev *dev, loff_t to, size_t len)
  37. {
  38. struct address_space *mapping = dev->blkdev->bd_inode->i_mapping;
  39. struct page *page;
  40. int index = to >> PAGE_SHIFT; // page index
  41. int pages = len >> PAGE_SHIFT;
  42. u_long *p;
  43. u_long *max;
  44. while (pages) {
  45. page = page_read(mapping, index);
  46. if (!page)
  47. return -ENOMEM;
  48. if (IS_ERR(page))
  49. return PTR_ERR(page);
  50. max = page_address(page) + PAGE_SIZE;
  51. for (p=page_address(page); p<max; p++)
  52. if (*p != -1UL) {
  53. lock_page(page);
  54. memset(page_address(page), 0xff, PAGE_SIZE);
  55. set_page_dirty(page);
  56. unlock_page(page);
  57. break;
  58. }
  59. page_cache_release(page);
  60. pages--;
  61. index++;
  62. }
  63. return 0;
  64. }
  65. static int block2mtd_erase(struct mtd_info *mtd, struct erase_info *instr)
  66. {
  67. struct block2mtd_dev *dev = mtd->priv;
  68. size_t from = instr->addr;
  69. size_t len = instr->len;
  70. int err;
  71. instr->state = MTD_ERASING;
  72. mutex_lock(&dev->write_mutex);
  73. err = _block2mtd_erase(dev, from, len);
  74. mutex_unlock(&dev->write_mutex);
  75. if (err) {
  76. ERROR("erase failed err = %d", err);
  77. instr->state = MTD_ERASE_FAILED;
  78. } else
  79. instr->state = MTD_ERASE_DONE;
  80. instr->state = MTD_ERASE_DONE;
  81. mtd_erase_callback(instr);
  82. return err;
  83. }
  84. static int block2mtd_read(struct mtd_info *mtd, loff_t from, size_t len,
  85. size_t *retlen, u_char *buf)
  86. {
  87. struct block2mtd_dev *dev = mtd->priv;
  88. struct page *page;
  89. int index = from >> PAGE_SHIFT;
  90. int offset = from & (PAGE_SIZE-1);
  91. int cpylen;
  92. if (from > mtd->size)
  93. return -EINVAL;
  94. if (from + len > mtd->size)
  95. len = mtd->size - from;
  96. if (retlen)
  97. *retlen = 0;
  98. while (len) {
  99. if ((offset + len) > PAGE_SIZE)
  100. cpylen = PAGE_SIZE - offset; // multiple pages
  101. else
  102. cpylen = len; // this page
  103. len = len - cpylen;
  104. page = page_read(dev->blkdev->bd_inode->i_mapping, index);
  105. if (!page)
  106. return -ENOMEM;
  107. if (IS_ERR(page))
  108. return PTR_ERR(page);
  109. memcpy(buf, page_address(page) + offset, cpylen);
  110. page_cache_release(page);
  111. if (retlen)
  112. *retlen += cpylen;
  113. buf += cpylen;
  114. offset = 0;
  115. index++;
  116. }
  117. return 0;
  118. }
  119. /* write data to the underlying device */
  120. static int _block2mtd_write(struct block2mtd_dev *dev, const u_char *buf,
  121. loff_t to, size_t len, size_t *retlen)
  122. {
  123. struct page *page;
  124. struct address_space *mapping = dev->blkdev->bd_inode->i_mapping;
  125. int index = to >> PAGE_SHIFT; // page index
  126. int offset = to & ~PAGE_MASK; // page offset
  127. int cpylen;
  128. if (retlen)
  129. *retlen = 0;
  130. while (len) {
  131. if ((offset+len) > PAGE_SIZE)
  132. cpylen = PAGE_SIZE - offset; // multiple pages
  133. else
  134. cpylen = len; // this page
  135. len = len - cpylen;
  136. page = page_read(mapping, index);
  137. if (!page)
  138. return -ENOMEM;
  139. if (IS_ERR(page))
  140. return PTR_ERR(page);
  141. if (memcmp(page_address(page)+offset, buf, cpylen)) {
  142. lock_page(page);
  143. memcpy(page_address(page) + offset, buf, cpylen);
  144. set_page_dirty(page);
  145. unlock_page(page);
  146. }
  147. page_cache_release(page);
  148. if (retlen)
  149. *retlen += cpylen;
  150. buf += cpylen;
  151. offset = 0;
  152. index++;
  153. }
  154. return 0;
  155. }
  156. static int block2mtd_write(struct mtd_info *mtd, loff_t to, size_t len,
  157. size_t *retlen, const u_char *buf)
  158. {
  159. struct block2mtd_dev *dev = mtd->priv;
  160. int err;
  161. if (!len)
  162. return 0;
  163. if (to >= mtd->size)
  164. return -ENOSPC;
  165. if (to + len > mtd->size)
  166. len = mtd->size - to;
  167. mutex_lock(&dev->write_mutex);
  168. err = _block2mtd_write(dev, buf, to, len, retlen);
  169. mutex_unlock(&dev->write_mutex);
  170. if (err > 0)
  171. err = 0;
  172. return err;
  173. }
  174. /* sync the device - wait until the write queue is empty */
  175. static void block2mtd_sync(struct mtd_info *mtd)
  176. {
  177. struct block2mtd_dev *dev = mtd->priv;
  178. sync_blockdev(dev->blkdev);
  179. return;
  180. }
  181. static void block2mtd_free_device(struct block2mtd_dev *dev)
  182. {
  183. if (!dev)
  184. return;
  185. kfree(dev->mtd.name);
  186. if (dev->blkdev) {
  187. invalidate_mapping_pages(dev->blkdev->bd_inode->i_mapping,
  188. 0, -1);
  189. close_bdev_excl(dev->blkdev);
  190. }
  191. kfree(dev);
  192. }
  193. /* FIXME: ensure that mtd->size % erase_size == 0 */
  194. static struct block2mtd_dev *add_device(char *devname, int erase_size)
  195. {
  196. struct block_device *bdev;
  197. struct block2mtd_dev *dev;
  198. char *name;
  199. if (!devname)
  200. return NULL;
  201. dev = kzalloc(sizeof(struct block2mtd_dev), GFP_KERNEL);
  202. if (!dev)
  203. return NULL;
  204. /* Get a handle on the device */
  205. bdev = open_bdev_excl(devname, O_RDWR, NULL);
  206. #ifndef MODULE
  207. if (IS_ERR(bdev)) {
  208. /* We might not have rootfs mounted at this point. Try
  209. to resolve the device name by other means. */
  210. dev_t devt = name_to_dev_t(devname);
  211. if (devt) {
  212. bdev = open_by_devnum(devt, FMODE_WRITE | FMODE_READ);
  213. }
  214. }
  215. #endif
  216. if (IS_ERR(bdev)) {
  217. ERROR("error: cannot open device %s", devname);
  218. goto devinit_err;
  219. }
  220. dev->blkdev = bdev;
  221. if (MAJOR(bdev->bd_dev) == MTD_BLOCK_MAJOR) {
  222. ERROR("attempting to use an MTD device as a block device");
  223. goto devinit_err;
  224. }
  225. mutex_init(&dev->write_mutex);
  226. /* Setup the MTD structure */
  227. /* make the name contain the block device in */
  228. name = kmalloc(sizeof("block2mtd: ") + strlen(devname) + 1,
  229. GFP_KERNEL);
  230. if (!name)
  231. goto devinit_err;
  232. sprintf(name, "block2mtd: %s", devname);
  233. dev->mtd.name = name;
  234. dev->mtd.size = dev->blkdev->bd_inode->i_size & PAGE_MASK;
  235. dev->mtd.erasesize = erase_size;
  236. dev->mtd.writesize = 1;
  237. dev->mtd.type = MTD_RAM;
  238. dev->mtd.flags = MTD_CAP_RAM;
  239. dev->mtd.erase = block2mtd_erase;
  240. dev->mtd.write = block2mtd_write;
  241. dev->mtd.writev = default_mtd_writev;
  242. dev->mtd.sync = block2mtd_sync;
  243. dev->mtd.read = block2mtd_read;
  244. dev->mtd.priv = dev;
  245. dev->mtd.owner = THIS_MODULE;
  246. if (add_mtd_device(&dev->mtd)) {
  247. /* Device didnt get added, so free the entry */
  248. goto devinit_err;
  249. }
  250. list_add(&dev->list, &blkmtd_device_list);
  251. INFO("mtd%d: [%s] erase_size = %dKiB [%d]", dev->mtd.index,
  252. dev->mtd.name + strlen("block2mtd: "),
  253. dev->mtd.erasesize >> 10, dev->mtd.erasesize);
  254. return dev;
  255. devinit_err:
  256. block2mtd_free_device(dev);
  257. return NULL;
  258. }
  259. /* This function works similar to reguler strtoul. In addition, it
  260. * allows some suffixes for a more human-readable number format:
  261. * ki, Ki, kiB, KiB - multiply result with 1024
  262. * Mi, MiB - multiply result with 1024^2
  263. * Gi, GiB - multiply result with 1024^3
  264. */
  265. static int ustrtoul(const char *cp, char **endp, unsigned int base)
  266. {
  267. unsigned long result = simple_strtoul(cp, endp, base);
  268. switch (**endp) {
  269. case 'G' :
  270. result *= 1024;
  271. case 'M':
  272. result *= 1024;
  273. case 'K':
  274. case 'k':
  275. result *= 1024;
  276. /* By dwmw2 editorial decree, "ki", "Mi" or "Gi" are to be used. */
  277. if ((*endp)[1] == 'i') {
  278. if ((*endp)[2] == 'B')
  279. (*endp) += 3;
  280. else
  281. (*endp) += 2;
  282. }
  283. }
  284. return result;
  285. }
  286. static int parse_num(size_t *num, const char *token)
  287. {
  288. char *endp;
  289. size_t n;
  290. n = (size_t) ustrtoul(token, &endp, 0);
  291. if (*endp)
  292. return -EINVAL;
  293. *num = n;
  294. return 0;
  295. }
  296. static inline void kill_final_newline(char *str)
  297. {
  298. char *newline = strrchr(str, '\n');
  299. if (newline && !newline[1])
  300. *newline = 0;
  301. }
  302. #define parse_err(fmt, args...) do { \
  303. ERROR(fmt, ## args); \
  304. return 0; \
  305. } while (0)
  306. #ifndef MODULE
  307. static int block2mtd_init_called = 0;
  308. static char block2mtd_paramline[80 + 12]; /* 80 for device, 12 for erase size */
  309. #endif
  310. static int block2mtd_setup2(const char *val)
  311. {
  312. char buf[80 + 12]; /* 80 for device, 12 for erase size */
  313. char *str = buf;
  314. char *token[2];
  315. char *name;
  316. size_t erase_size = PAGE_SIZE;
  317. int i, ret;
  318. if (strnlen(val, sizeof(buf)) >= sizeof(buf))
  319. parse_err("parameter too long");
  320. strcpy(str, val);
  321. kill_final_newline(str);
  322. for (i = 0; i < 2; i++)
  323. token[i] = strsep(&str, ",");
  324. if (str)
  325. parse_err("too many arguments");
  326. if (!token[0])
  327. parse_err("no argument");
  328. name = token[0];
  329. if (strlen(name) + 1 > 80)
  330. parse_err("device name too long");
  331. if (token[1]) {
  332. ret = parse_num(&erase_size, token[1]);
  333. if (ret) {
  334. parse_err("illegal erase size");
  335. }
  336. }
  337. add_device(name, erase_size);
  338. return 0;
  339. }
  340. static int block2mtd_setup(const char *val, struct kernel_param *kp)
  341. {
  342. #ifdef MODULE
  343. return block2mtd_setup2(val);
  344. #else
  345. /* If more parameters are later passed in via
  346. /sys/module/block2mtd/parameters/block2mtd
  347. and block2mtd_init() has already been called,
  348. we can parse the argument now. */
  349. if (block2mtd_init_called)
  350. return block2mtd_setup2(val);
  351. /* During early boot stage, we only save the parameters
  352. here. We must parse them later: if the param passed
  353. from kernel boot command line, block2mtd_setup() is
  354. called so early that it is not possible to resolve
  355. the device (even kmalloc() fails). Deter that work to
  356. block2mtd_setup2(). */
  357. strlcpy(block2mtd_paramline, val, sizeof(block2mtd_paramline));
  358. return 0;
  359. #endif
  360. }
  361. module_param_call(block2mtd, block2mtd_setup, NULL, NULL, 0200);
  362. MODULE_PARM_DESC(block2mtd, "Device to use. \"block2mtd=<dev>[,<erasesize>]\"");
  363. static int __init block2mtd_init(void)
  364. {
  365. int ret = 0;
  366. #ifndef MODULE
  367. if (strlen(block2mtd_paramline))
  368. ret = block2mtd_setup2(block2mtd_paramline);
  369. block2mtd_init_called = 1;
  370. #endif
  371. return ret;
  372. }
  373. static void __devexit block2mtd_exit(void)
  374. {
  375. struct list_head *pos, *next;
  376. /* Remove the MTD devices */
  377. list_for_each_safe(pos, next, &blkmtd_device_list) {
  378. struct block2mtd_dev *dev = list_entry(pos, typeof(*dev), list);
  379. block2mtd_sync(&dev->mtd);
  380. del_mtd_device(&dev->mtd);
  381. INFO("mtd%d: [%s] removed", dev->mtd.index,
  382. dev->mtd.name + strlen("block2mtd: "));
  383. list_del(&dev->list);
  384. block2mtd_free_device(dev);
  385. }
  386. }
  387. module_init(block2mtd_init);
  388. module_exit(block2mtd_exit);
  389. MODULE_LICENSE("GPL");
  390. MODULE_AUTHOR("Joern Engel <joern@lazybastard.org>");
  391. MODULE_DESCRIPTION("Emulate an MTD using a block device");