blkmtd.c 20 KB

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  1. /*
  2. * $Id: blkmtd.c,v 1.27 2005/11/07 11:14:24 gleixner Exp $
  3. *
  4. * blkmtd.c - use a block device as a fake MTD
  5. *
  6. * Author: Simon Evans <spse@secret.org.uk>
  7. *
  8. * Copyright (C) 2001,2002 Simon Evans
  9. *
  10. * Licence: GPL
  11. *
  12. * How it works:
  13. * The driver uses raw/io to read/write the device and the page
  14. * cache to cache access. Writes update the page cache with the
  15. * new data and mark it dirty and add the page into a BIO which
  16. * is then written out.
  17. *
  18. * It can be loaded Read-Only to prevent erases and writes to the
  19. * medium.
  20. *
  21. */
  22. #include <linux/config.h>
  23. #include <linux/module.h>
  24. #include <linux/fs.h>
  25. #include <linux/blkdev.h>
  26. #include <linux/bio.h>
  27. #include <linux/pagemap.h>
  28. #include <linux/list.h>
  29. #include <linux/init.h>
  30. #include <linux/mtd/mtd.h>
  31. #define err(format, arg...) printk(KERN_ERR "blkmtd: " format "\n" , ## arg)
  32. #define info(format, arg...) printk(KERN_INFO "blkmtd: " format "\n" , ## arg)
  33. #define warn(format, arg...) printk(KERN_WARNING "blkmtd: " format "\n" , ## arg)
  34. #define crit(format, arg...) printk(KERN_CRIT "blkmtd: " format "\n" , ## arg)
  35. /* Default erase size in K, always make it a multiple of PAGE_SIZE */
  36. #define CONFIG_MTD_BLKDEV_ERASESIZE (128 << 10) /* 128KiB */
  37. #define VERSION "$Revision: 1.27 $"
  38. /* Info for the block device */
  39. struct blkmtd_dev {
  40. struct list_head list;
  41. struct block_device *blkdev;
  42. struct mtd_info mtd_info;
  43. struct semaphore wrbuf_mutex;
  44. };
  45. /* Static info about the MTD, used in cleanup_module */
  46. static LIST_HEAD(blkmtd_device_list);
  47. static void blkmtd_sync(struct mtd_info *mtd);
  48. #define MAX_DEVICES 4
  49. /* Module parameters passed by insmod/modprobe */
  50. static char *device[MAX_DEVICES]; /* the block device to use */
  51. static int erasesz[MAX_DEVICES]; /* optional default erase size */
  52. static int ro[MAX_DEVICES]; /* optional read only flag */
  53. static int sync;
  54. MODULE_LICENSE("GPL");
  55. MODULE_AUTHOR("Simon Evans <spse@secret.org.uk>");
  56. MODULE_DESCRIPTION("Emulate an MTD using a block device");
  57. module_param_array(device, charp, NULL, 0);
  58. MODULE_PARM_DESC(device, "block device to use");
  59. module_param_array(erasesz, int, NULL, 0);
  60. MODULE_PARM_DESC(erasesz, "optional erase size to use in KiB. eg 4=4KiB.");
  61. module_param_array(ro, bool, NULL, 0);
  62. MODULE_PARM_DESC(ro, "1=Read only, writes and erases cause errors");
  63. module_param(sync, bool, 0);
  64. MODULE_PARM_DESC(sync, "1=Synchronous writes");
  65. /* completion handler for BIO reads */
  66. static int bi_read_complete(struct bio *bio, unsigned int bytes_done, int error)
  67. {
  68. if (bio->bi_size)
  69. return 1;
  70. complete((struct completion*)bio->bi_private);
  71. return 0;
  72. }
  73. /* completion handler for BIO writes */
  74. static int bi_write_complete(struct bio *bio, unsigned int bytes_done, int error)
  75. {
  76. const int uptodate = test_bit(BIO_UPTODATE, &bio->bi_flags);
  77. struct bio_vec *bvec = bio->bi_io_vec + bio->bi_vcnt - 1;
  78. if (bio->bi_size)
  79. return 1;
  80. if(!uptodate)
  81. err("bi_write_complete: not uptodate\n");
  82. do {
  83. struct page *page = bvec->bv_page;
  84. DEBUG(3, "Cleaning up page %ld\n", page->index);
  85. if (--bvec >= bio->bi_io_vec)
  86. prefetchw(&bvec->bv_page->flags);
  87. if (uptodate) {
  88. SetPageUptodate(page);
  89. } else {
  90. ClearPageUptodate(page);
  91. SetPageError(page);
  92. }
  93. clear_page_dirty(page);
  94. unlock_page(page);
  95. page_cache_release(page);
  96. } while (bvec >= bio->bi_io_vec);
  97. complete((struct completion*)bio->bi_private);
  98. return 0;
  99. }
  100. /* read one page from the block device */
  101. static int blkmtd_readpage(struct blkmtd_dev *dev, struct page *page)
  102. {
  103. struct bio *bio;
  104. struct completion event;
  105. int err = -ENOMEM;
  106. if(PageUptodate(page)) {
  107. DEBUG(2, "blkmtd: readpage page %ld is already upto date\n", page->index);
  108. unlock_page(page);
  109. return 0;
  110. }
  111. ClearPageUptodate(page);
  112. ClearPageError(page);
  113. bio = bio_alloc(GFP_KERNEL, 1);
  114. if(bio) {
  115. init_completion(&event);
  116. bio->bi_bdev = dev->blkdev;
  117. bio->bi_sector = page->index << (PAGE_SHIFT-9);
  118. bio->bi_private = &event;
  119. bio->bi_end_io = bi_read_complete;
  120. if(bio_add_page(bio, page, PAGE_SIZE, 0) == PAGE_SIZE) {
  121. submit_bio(READ_SYNC, bio);
  122. wait_for_completion(&event);
  123. err = test_bit(BIO_UPTODATE, &bio->bi_flags) ? 0 : -EIO;
  124. bio_put(bio);
  125. }
  126. }
  127. if(err)
  128. SetPageError(page);
  129. else
  130. SetPageUptodate(page);
  131. flush_dcache_page(page);
  132. unlock_page(page);
  133. return err;
  134. }
  135. /* write out the current BIO and wait for it to finish */
  136. static int blkmtd_write_out(struct bio *bio)
  137. {
  138. struct completion event;
  139. int err;
  140. if(!bio->bi_vcnt) {
  141. bio_put(bio);
  142. return 0;
  143. }
  144. init_completion(&event);
  145. bio->bi_private = &event;
  146. bio->bi_end_io = bi_write_complete;
  147. submit_bio(WRITE_SYNC, bio);
  148. wait_for_completion(&event);
  149. DEBUG(3, "submit_bio completed, bi_vcnt = %d\n", bio->bi_vcnt);
  150. err = test_bit(BIO_UPTODATE, &bio->bi_flags) ? 0 : -EIO;
  151. bio_put(bio);
  152. return err;
  153. }
  154. /**
  155. * blkmtd_add_page - add a page to the current BIO
  156. * @bio: bio to add to (NULL to alloc initial bio)
  157. * @blkdev: block device
  158. * @page: page to add
  159. * @pagecnt: pages left to add
  160. *
  161. * Adds a page to the current bio, allocating it if necessary. If it cannot be
  162. * added, the current bio is written out and a new one is allocated. Returns
  163. * the new bio to add or NULL on error
  164. */
  165. static struct bio *blkmtd_add_page(struct bio *bio, struct block_device *blkdev,
  166. struct page *page, int pagecnt)
  167. {
  168. retry:
  169. if(!bio) {
  170. bio = bio_alloc(GFP_KERNEL, pagecnt);
  171. if(!bio)
  172. return NULL;
  173. bio->bi_sector = page->index << (PAGE_SHIFT-9);
  174. bio->bi_bdev = blkdev;
  175. }
  176. if(bio_add_page(bio, page, PAGE_SIZE, 0) != PAGE_SIZE) {
  177. blkmtd_write_out(bio);
  178. bio = NULL;
  179. goto retry;
  180. }
  181. return bio;
  182. }
  183. /**
  184. * write_pages - write block of data to device via the page cache
  185. * @dev: device to write to
  186. * @buf: data source or NULL if erase (output is set to 0xff)
  187. * @to: offset into output device
  188. * @len: amount to data to write
  189. * @retlen: amount of data written
  190. *
  191. * Grab pages from the page cache and fill them with the source data.
  192. * Non page aligned start and end result in a readin of the page and
  193. * part of the page being modified. Pages are added to the bio and then written
  194. * out.
  195. */
  196. static int write_pages(struct blkmtd_dev *dev, const u_char *buf, loff_t to,
  197. size_t len, size_t *retlen)
  198. {
  199. int pagenr, offset;
  200. size_t start_len = 0, end_len;
  201. int pagecnt = 0;
  202. int err = 0;
  203. struct bio *bio = NULL;
  204. size_t thislen = 0;
  205. pagenr = to >> PAGE_SHIFT;
  206. offset = to & ~PAGE_MASK;
  207. DEBUG(2, "blkmtd: write_pages: buf = %p to = %ld len = %zd pagenr = %d offset = %d\n",
  208. buf, (long)to, len, pagenr, offset);
  209. /* see if we have to do a partial write at the start */
  210. if(offset) {
  211. start_len = ((offset + len) > PAGE_SIZE) ? PAGE_SIZE - offset : len;
  212. len -= start_len;
  213. }
  214. /* calculate the length of the other two regions */
  215. end_len = len & ~PAGE_MASK;
  216. len -= end_len;
  217. if(start_len)
  218. pagecnt++;
  219. if(len)
  220. pagecnt += len >> PAGE_SHIFT;
  221. if(end_len)
  222. pagecnt++;
  223. down(&dev->wrbuf_mutex);
  224. DEBUG(3, "blkmtd: write: start_len = %zd len = %zd end_len = %zd pagecnt = %d\n",
  225. start_len, len, end_len, pagecnt);
  226. if(start_len) {
  227. /* do partial start region */
  228. struct page *page;
  229. DEBUG(3, "blkmtd: write: doing partial start, page = %d len = %zd offset = %d\n",
  230. pagenr, start_len, offset);
  231. BUG_ON(!buf);
  232. page = read_cache_page(dev->blkdev->bd_inode->i_mapping, pagenr, (filler_t *)blkmtd_readpage, dev);
  233. lock_page(page);
  234. if(PageDirty(page)) {
  235. err("to = %lld start_len = %zd len = %zd end_len = %zd pagenr = %d\n",
  236. to, start_len, len, end_len, pagenr);
  237. BUG();
  238. }
  239. memcpy(page_address(page)+offset, buf, start_len);
  240. set_page_dirty(page);
  241. SetPageUptodate(page);
  242. buf += start_len;
  243. thislen = start_len;
  244. bio = blkmtd_add_page(bio, dev->blkdev, page, pagecnt);
  245. if(!bio) {
  246. err = -ENOMEM;
  247. err("bio_add_page failed\n");
  248. goto write_err;
  249. }
  250. pagecnt--;
  251. pagenr++;
  252. }
  253. /* Now do the main loop to a page aligned, n page sized output */
  254. if(len) {
  255. int pagesc = len >> PAGE_SHIFT;
  256. DEBUG(3, "blkmtd: write: whole pages start = %d, count = %d\n",
  257. pagenr, pagesc);
  258. while(pagesc) {
  259. struct page *page;
  260. /* see if page is in the page cache */
  261. DEBUG(3, "blkmtd: write: grabbing page %d from page cache\n", pagenr);
  262. page = grab_cache_page(dev->blkdev->bd_inode->i_mapping, pagenr);
  263. if(PageDirty(page)) {
  264. BUG();
  265. }
  266. if(!page) {
  267. warn("write: cannot grab cache page %d", pagenr);
  268. err = -ENOMEM;
  269. goto write_err;
  270. }
  271. if(!buf) {
  272. memset(page_address(page), 0xff, PAGE_SIZE);
  273. } else {
  274. memcpy(page_address(page), buf, PAGE_SIZE);
  275. buf += PAGE_SIZE;
  276. }
  277. bio = blkmtd_add_page(bio, dev->blkdev, page, pagecnt);
  278. if(!bio) {
  279. err = -ENOMEM;
  280. err("bio_add_page failed\n");
  281. goto write_err;
  282. }
  283. pagenr++;
  284. pagecnt--;
  285. set_page_dirty(page);
  286. SetPageUptodate(page);
  287. pagesc--;
  288. thislen += PAGE_SIZE;
  289. }
  290. }
  291. if(end_len) {
  292. /* do the third region */
  293. struct page *page;
  294. DEBUG(3, "blkmtd: write: doing partial end, page = %d len = %zd\n",
  295. pagenr, end_len);
  296. BUG_ON(!buf);
  297. page = read_cache_page(dev->blkdev->bd_inode->i_mapping, pagenr, (filler_t *)blkmtd_readpage, dev);
  298. lock_page(page);
  299. if(PageDirty(page)) {
  300. err("to = %lld start_len = %zd len = %zd end_len = %zd pagenr = %d\n",
  301. to, start_len, len, end_len, pagenr);
  302. BUG();
  303. }
  304. memcpy(page_address(page), buf, end_len);
  305. set_page_dirty(page);
  306. SetPageUptodate(page);
  307. DEBUG(3, "blkmtd: write: writing out partial end\n");
  308. thislen += end_len;
  309. bio = blkmtd_add_page(bio, dev->blkdev, page, pagecnt);
  310. if(!bio) {
  311. err = -ENOMEM;
  312. err("bio_add_page failed\n");
  313. goto write_err;
  314. }
  315. pagenr++;
  316. }
  317. DEBUG(3, "blkmtd: write: got %d vectors to write\n", bio->bi_vcnt);
  318. write_err:
  319. if(bio)
  320. blkmtd_write_out(bio);
  321. DEBUG(2, "blkmtd: write: end, retlen = %zd, err = %d\n", *retlen, err);
  322. up(&dev->wrbuf_mutex);
  323. if(retlen)
  324. *retlen = thislen;
  325. return err;
  326. }
  327. /* erase a specified part of the device */
  328. static int blkmtd_erase(struct mtd_info *mtd, struct erase_info *instr)
  329. {
  330. struct blkmtd_dev *dev = mtd->priv;
  331. struct mtd_erase_region_info *einfo = mtd->eraseregions;
  332. int numregions = mtd->numeraseregions;
  333. size_t from;
  334. u_long len;
  335. int err = -EIO;
  336. size_t retlen;
  337. instr->state = MTD_ERASING;
  338. from = instr->addr;
  339. len = instr->len;
  340. /* check erase region has valid start and length */
  341. DEBUG(2, "blkmtd: erase: dev = `%s' from = 0x%zx len = 0x%lx\n",
  342. mtd->name+9, from, len);
  343. while(numregions) {
  344. DEBUG(3, "blkmtd: checking erase region = 0x%08X size = 0x%X num = 0x%x\n",
  345. einfo->offset, einfo->erasesize, einfo->numblocks);
  346. if(from >= einfo->offset
  347. && from < einfo->offset + (einfo->erasesize * einfo->numblocks)) {
  348. if(len == einfo->erasesize
  349. && ( (from - einfo->offset) % einfo->erasesize == 0))
  350. break;
  351. }
  352. numregions--;
  353. einfo++;
  354. }
  355. if(!numregions) {
  356. /* Not a valid erase block */
  357. err("erase: invalid erase request 0x%lX @ 0x%08zX", len, from);
  358. instr->state = MTD_ERASE_FAILED;
  359. err = -EIO;
  360. }
  361. if(instr->state != MTD_ERASE_FAILED) {
  362. /* do the erase */
  363. DEBUG(3, "Doing erase from = %zd len = %ld\n", from, len);
  364. err = write_pages(dev, NULL, from, len, &retlen);
  365. if(err || retlen != len) {
  366. err("erase failed err = %d", err);
  367. instr->state = MTD_ERASE_FAILED;
  368. } else {
  369. instr->state = MTD_ERASE_DONE;
  370. }
  371. }
  372. DEBUG(3, "blkmtd: erase: checking callback\n");
  373. mtd_erase_callback(instr);
  374. DEBUG(2, "blkmtd: erase: finished (err = %d)\n", err);
  375. return err;
  376. }
  377. /* read a range of the data via the page cache */
  378. static int blkmtd_read(struct mtd_info *mtd, loff_t from, size_t len,
  379. size_t *retlen, u_char *buf)
  380. {
  381. struct blkmtd_dev *dev = mtd->priv;
  382. int err = 0;
  383. int offset;
  384. int pagenr, pages;
  385. size_t thislen = 0;
  386. DEBUG(2, "blkmtd: read: dev = `%s' from = %lld len = %zd buf = %p\n",
  387. mtd->name+9, from, len, buf);
  388. if(from > mtd->size)
  389. return -EINVAL;
  390. if(from + len > mtd->size)
  391. len = mtd->size - from;
  392. pagenr = from >> PAGE_SHIFT;
  393. offset = from - (pagenr << PAGE_SHIFT);
  394. pages = (offset+len+PAGE_SIZE-1) >> PAGE_SHIFT;
  395. DEBUG(3, "blkmtd: read: pagenr = %d offset = %d, pages = %d\n",
  396. pagenr, offset, pages);
  397. while(pages) {
  398. struct page *page;
  399. int cpylen;
  400. DEBUG(3, "blkmtd: read: looking for page: %d\n", pagenr);
  401. page = read_cache_page(dev->blkdev->bd_inode->i_mapping, pagenr, (filler_t *)blkmtd_readpage, dev);
  402. if(IS_ERR(page)) {
  403. err = -EIO;
  404. goto readerr;
  405. }
  406. cpylen = (PAGE_SIZE > len) ? len : PAGE_SIZE;
  407. if(offset+cpylen > PAGE_SIZE)
  408. cpylen = PAGE_SIZE-offset;
  409. memcpy(buf + thislen, page_address(page) + offset, cpylen);
  410. offset = 0;
  411. len -= cpylen;
  412. thislen += cpylen;
  413. pagenr++;
  414. pages--;
  415. if(!PageDirty(page))
  416. page_cache_release(page);
  417. }
  418. readerr:
  419. if(retlen)
  420. *retlen = thislen;
  421. DEBUG(2, "blkmtd: end read: retlen = %zd, err = %d\n", thislen, err);
  422. return err;
  423. }
  424. /* write data to the underlying device */
  425. static int blkmtd_write(struct mtd_info *mtd, loff_t to, size_t len,
  426. size_t *retlen, const u_char *buf)
  427. {
  428. struct blkmtd_dev *dev = mtd->priv;
  429. int err;
  430. if(!len)
  431. return 0;
  432. DEBUG(2, "blkmtd: write: dev = `%s' to = %lld len = %zd buf = %p\n",
  433. mtd->name+9, to, len, buf);
  434. if(to >= mtd->size) {
  435. return -ENOSPC;
  436. }
  437. if(to + len > mtd->size) {
  438. len = mtd->size - to;
  439. }
  440. err = write_pages(dev, buf, to, len, retlen);
  441. if(err > 0)
  442. err = 0;
  443. DEBUG(2, "blkmtd: write: end, err = %d\n", err);
  444. return err;
  445. }
  446. /* sync the device - wait until the write queue is empty */
  447. static void blkmtd_sync(struct mtd_info *mtd)
  448. {
  449. /* Currently all writes are synchronous */
  450. }
  451. static void free_device(struct blkmtd_dev *dev)
  452. {
  453. DEBUG(2, "blkmtd: free_device() dev = %p\n", dev);
  454. if(dev) {
  455. kfree(dev->mtd_info.eraseregions);
  456. kfree(dev->mtd_info.name);
  457. if(dev->blkdev) {
  458. invalidate_inode_pages(dev->blkdev->bd_inode->i_mapping);
  459. close_bdev_excl(dev->blkdev);
  460. }
  461. kfree(dev);
  462. }
  463. }
  464. /* For a given size and initial erase size, calculate the number
  465. * and size of each erase region. Goes round the loop twice,
  466. * once to find out how many regions, then allocates space,
  467. * then round the loop again to fill it in.
  468. */
  469. static struct mtd_erase_region_info *calc_erase_regions(
  470. size_t erase_size, size_t total_size, int *regions)
  471. {
  472. struct mtd_erase_region_info *info = NULL;
  473. DEBUG(2, "calc_erase_regions, es = %zd size = %zd regions = %d\n",
  474. erase_size, total_size, *regions);
  475. /* Make any user specified erasesize be a power of 2
  476. and at least PAGE_SIZE */
  477. if(erase_size) {
  478. int es = erase_size;
  479. erase_size = 1;
  480. while(es != 1) {
  481. es >>= 1;
  482. erase_size <<= 1;
  483. }
  484. if(erase_size < PAGE_SIZE)
  485. erase_size = PAGE_SIZE;
  486. } else {
  487. erase_size = CONFIG_MTD_BLKDEV_ERASESIZE;
  488. }
  489. *regions = 0;
  490. do {
  491. int tot_size = total_size;
  492. int er_size = erase_size;
  493. int count = 0, offset = 0, regcnt = 0;
  494. while(tot_size) {
  495. count = tot_size / er_size;
  496. if(count) {
  497. tot_size = tot_size % er_size;
  498. if(info) {
  499. DEBUG(2, "adding to erase info off=%d er=%d cnt=%d\n",
  500. offset, er_size, count);
  501. (info+regcnt)->offset = offset;
  502. (info+regcnt)->erasesize = er_size;
  503. (info+regcnt)->numblocks = count;
  504. (*regions)++;
  505. }
  506. regcnt++;
  507. offset += (count * er_size);
  508. }
  509. while(er_size > tot_size)
  510. er_size >>= 1;
  511. }
  512. if(info == NULL) {
  513. info = kmalloc(regcnt * sizeof(struct mtd_erase_region_info), GFP_KERNEL);
  514. if(!info)
  515. break;
  516. }
  517. } while(!(*regions));
  518. DEBUG(2, "calc_erase_regions done, es = %zd size = %zd regions = %d\n",
  519. erase_size, total_size, *regions);
  520. return info;
  521. }
  522. extern dev_t __init name_to_dev_t(const char *line);
  523. static struct blkmtd_dev *add_device(char *devname, int readonly, int erase_size)
  524. {
  525. struct block_device *bdev;
  526. int mode;
  527. struct blkmtd_dev *dev;
  528. if(!devname)
  529. return NULL;
  530. /* Get a handle on the device */
  531. #ifdef MODULE
  532. mode = (readonly) ? O_RDONLY : O_RDWR;
  533. bdev = open_bdev_excl(devname, mode, NULL);
  534. #else
  535. mode = (readonly) ? FMODE_READ : FMODE_WRITE;
  536. bdev = open_by_devnum(name_to_dev_t(devname), mode);
  537. #endif
  538. if(IS_ERR(bdev)) {
  539. err("error: cannot open device %s", devname);
  540. DEBUG(2, "blkmtd: opening bdev returned %ld\n", PTR_ERR(bdev));
  541. return NULL;
  542. }
  543. DEBUG(1, "blkmtd: found a block device major = %d, minor = %d\n",
  544. MAJOR(bdev->bd_dev), MINOR(bdev->bd_dev));
  545. if(MAJOR(bdev->bd_dev) == MTD_BLOCK_MAJOR) {
  546. err("attempting to use an MTD device as a block device");
  547. blkdev_put(bdev);
  548. return NULL;
  549. }
  550. dev = kmalloc(sizeof(struct blkmtd_dev), GFP_KERNEL);
  551. if(dev == NULL) {
  552. blkdev_put(bdev);
  553. return NULL;
  554. }
  555. memset(dev, 0, sizeof(struct blkmtd_dev));
  556. dev->blkdev = bdev;
  557. if(!readonly) {
  558. init_MUTEX(&dev->wrbuf_mutex);
  559. }
  560. dev->mtd_info.size = dev->blkdev->bd_inode->i_size & PAGE_MASK;
  561. /* Setup the MTD structure */
  562. /* make the name contain the block device in */
  563. dev->mtd_info.name = kmalloc(sizeof("blkmtd: ") + strlen(devname), GFP_KERNEL);
  564. if(dev->mtd_info.name == NULL)
  565. goto devinit_err;
  566. sprintf(dev->mtd_info.name, "blkmtd: %s", devname);
  567. dev->mtd_info.eraseregions = calc_erase_regions(erase_size, dev->mtd_info.size,
  568. &dev->mtd_info.numeraseregions);
  569. if(dev->mtd_info.eraseregions == NULL)
  570. goto devinit_err;
  571. dev->mtd_info.erasesize = dev->mtd_info.eraseregions->erasesize;
  572. DEBUG(1, "blkmtd: init: found %d erase regions\n",
  573. dev->mtd_info.numeraseregions);
  574. if(readonly) {
  575. dev->mtd_info.type = MTD_ROM;
  576. dev->mtd_info.flags = MTD_CAP_ROM;
  577. } else {
  578. dev->mtd_info.type = MTD_RAM;
  579. dev->mtd_info.flags = MTD_CAP_RAM;
  580. dev->mtd_info.erase = blkmtd_erase;
  581. dev->mtd_info.write = blkmtd_write;
  582. dev->mtd_info.writev = default_mtd_writev;
  583. dev->mtd_info.sync = blkmtd_sync;
  584. }
  585. dev->mtd_info.read = blkmtd_read;
  586. dev->mtd_info.readv = default_mtd_readv;
  587. dev->mtd_info.priv = dev;
  588. dev->mtd_info.owner = THIS_MODULE;
  589. list_add(&dev->list, &blkmtd_device_list);
  590. if (add_mtd_device(&dev->mtd_info)) {
  591. /* Device didnt get added, so free the entry */
  592. list_del(&dev->list);
  593. goto devinit_err;
  594. } else {
  595. info("mtd%d: [%s] erase_size = %dKiB %s",
  596. dev->mtd_info.index, dev->mtd_info.name + strlen("blkmtd: "),
  597. dev->mtd_info.erasesize >> 10,
  598. readonly ? "(read-only)" : "");
  599. }
  600. return dev;
  601. devinit_err:
  602. free_device(dev);
  603. return NULL;
  604. }
  605. /* Cleanup and exit - sync the device and kill of the kernel thread */
  606. static void __devexit cleanup_blkmtd(void)
  607. {
  608. struct list_head *temp1, *temp2;
  609. /* Remove the MTD devices */
  610. list_for_each_safe(temp1, temp2, &blkmtd_device_list) {
  611. struct blkmtd_dev *dev = list_entry(temp1, struct blkmtd_dev,
  612. list);
  613. blkmtd_sync(&dev->mtd_info);
  614. del_mtd_device(&dev->mtd_info);
  615. info("mtd%d: [%s] removed", dev->mtd_info.index,
  616. dev->mtd_info.name + strlen("blkmtd: "));
  617. list_del(&dev->list);
  618. free_device(dev);
  619. }
  620. }
  621. #ifndef MODULE
  622. /* Handle kernel boot params */
  623. static int __init param_blkmtd_device(char *str)
  624. {
  625. int i;
  626. for(i = 0; i < MAX_DEVICES; i++) {
  627. device[i] = str;
  628. DEBUG(2, "blkmtd: device setup: %d = %s\n", i, device[i]);
  629. strsep(&str, ",");
  630. }
  631. return 1;
  632. }
  633. static int __init param_blkmtd_erasesz(char *str)
  634. {
  635. int i;
  636. for(i = 0; i < MAX_DEVICES; i++) {
  637. char *val = strsep(&str, ",");
  638. if(val)
  639. erasesz[i] = simple_strtoul(val, NULL, 0);
  640. DEBUG(2, "blkmtd: erasesz setup: %d = %d\n", i, erasesz[i]);
  641. }
  642. return 1;
  643. }
  644. static int __init param_blkmtd_ro(char *str)
  645. {
  646. int i;
  647. for(i = 0; i < MAX_DEVICES; i++) {
  648. char *val = strsep(&str, ",");
  649. if(val)
  650. ro[i] = simple_strtoul(val, NULL, 0);
  651. DEBUG(2, "blkmtd: ro setup: %d = %d\n", i, ro[i]);
  652. }
  653. return 1;
  654. }
  655. static int __init param_blkmtd_sync(char *str)
  656. {
  657. if(str[0] == '1')
  658. sync = 1;
  659. return 1;
  660. }
  661. __setup("blkmtd_device=", param_blkmtd_device);
  662. __setup("blkmtd_erasesz=", param_blkmtd_erasesz);
  663. __setup("blkmtd_ro=", param_blkmtd_ro);
  664. __setup("blkmtd_sync=", param_blkmtd_sync);
  665. #endif
  666. /* Startup */
  667. static int __init init_blkmtd(void)
  668. {
  669. int i;
  670. info("version " VERSION);
  671. /* Check args - device[0] is the bare minimum*/
  672. if(!device[0]) {
  673. err("error: missing `device' name\n");
  674. return -EINVAL;
  675. }
  676. for(i = 0; i < MAX_DEVICES; i++)
  677. add_device(device[i], ro[i], erasesz[i] << 10);
  678. if(list_empty(&blkmtd_device_list))
  679. return -EINVAL;
  680. return 0;
  681. }
  682. module_init(init_blkmtd);
  683. module_exit(cleanup_blkmtd);