400-rootfs_split.patch 9.1 KB

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  1. --- a/drivers/mtd/Kconfig
  2. +++ b/drivers/mtd/Kconfig
  3. @@ -53,6 +53,16 @@ config MTD_PARTITIONS
  4. devices. Partitioning on NFTL 'devices' is a different - that's the
  5. 'normal' form of partitioning used on a block device.
  6. +config MTD_ROOTFS_ROOT_DEV
  7. + bool "Automatically set 'rootfs' partition to be root filesystem"
  8. + depends on MTD_PARTITIONS
  9. + default y
  10. +
  11. +config MTD_ROOTFS_SPLIT
  12. + bool "Automatically split 'rootfs' partition for squashfs"
  13. + depends on MTD_PARTITIONS
  14. + default y
  15. +
  16. config MTD_REDBOOT_PARTS
  17. tristate "RedBoot partition table parsing"
  18. depends on MTD_PARTITIONS
  19. --- a/drivers/mtd/mtdpart.c
  20. +++ b/drivers/mtd/mtdpart.c
  21. @@ -29,6 +29,8 @@
  22. #include <linux/kmod.h>
  23. #include <linux/mtd/mtd.h>
  24. #include <linux/mtd/partitions.h>
  25. +#include <linux/root_dev.h>
  26. +#include <linux/magic.h>
  27. #include <linux/err.h>
  28. /* Our partition linked list */
  29. @@ -48,7 +50,7 @@ struct mtd_part {
  30. * the pointer to that structure with this macro.
  31. */
  32. #define PART(x) ((struct mtd_part *)(x))
  33. -
  34. +#define IS_PART(mtd) (mtd->read == part_read)
  35. /*
  36. * MTD methods which simply translate the effective address and pass through
  37. @@ -618,6 +620,155 @@ int mtd_del_partition(struct mtd_info *m
  38. }
  39. EXPORT_SYMBOL_GPL(mtd_del_partition);
  40. +#ifdef CONFIG_MTD_ROOTFS_SPLIT
  41. +#define ROOTFS_SPLIT_NAME "rootfs_data"
  42. +#define ROOTFS_REMOVED_NAME "<removed>"
  43. +
  44. +struct squashfs_super_block {
  45. + __le32 s_magic;
  46. + __le32 pad0[9];
  47. + __le64 bytes_used;
  48. +};
  49. +
  50. +
  51. +static int split_squashfs(struct mtd_info *master, int offset, int *split_offset)
  52. +{
  53. + struct squashfs_super_block sb;
  54. + int len, ret;
  55. +
  56. + ret = master->read(master, offset, sizeof(sb), &len, (void *) &sb);
  57. + if (ret || (len != sizeof(sb))) {
  58. + printk(KERN_ALERT "split_squashfs: error occured while reading "
  59. + "from \"%s\"\n", master->name);
  60. + return -EINVAL;
  61. + }
  62. +
  63. + if (SQUASHFS_MAGIC != le32_to_cpu(sb.s_magic) ) {
  64. + printk(KERN_ALERT "split_squashfs: no squashfs found in \"%s\"\n",
  65. + master->name);
  66. + *split_offset = 0;
  67. + return 0;
  68. + }
  69. +
  70. + if (le64_to_cpu((sb.bytes_used)) <= 0) {
  71. + printk(KERN_ALERT "split_squashfs: squashfs is empty in \"%s\"\n",
  72. + master->name);
  73. + *split_offset = 0;
  74. + return 0;
  75. + }
  76. +
  77. + len = (u32) le64_to_cpu(sb.bytes_used);
  78. + len += (offset & 0x000fffff);
  79. + len += (master->erasesize - 1);
  80. + len &= ~(master->erasesize - 1);
  81. + len -= (offset & 0x000fffff);
  82. + *split_offset = offset + len;
  83. +
  84. + return 0;
  85. +}
  86. +
  87. +static int split_rootfs_data(struct mtd_info *master, struct mtd_info *rpart, const struct mtd_partition *part)
  88. +{
  89. + struct mtd_partition *dpart;
  90. + struct mtd_part *slave = NULL;
  91. + struct mtd_part *spart;
  92. + int ret, split_offset = 0;
  93. +
  94. + spart = PART(rpart);
  95. + ret = split_squashfs(master, spart->offset, &split_offset);
  96. + if (ret)
  97. + return ret;
  98. +
  99. + if (split_offset <= 0)
  100. + return 0;
  101. +
  102. + dpart = kmalloc(sizeof(*part)+sizeof(ROOTFS_SPLIT_NAME)+1, GFP_KERNEL);
  103. + if (dpart == NULL) {
  104. + printk(KERN_INFO "split_squashfs: no memory for partition \"%s\"\n",
  105. + ROOTFS_SPLIT_NAME);
  106. + return -ENOMEM;
  107. + }
  108. +
  109. + memcpy(dpart, part, sizeof(*part));
  110. + strcpy((char *)&dpart[1], ROOTFS_SPLIT_NAME);
  111. + dpart->name = (unsigned char *)&dpart[1];
  112. +
  113. + dpart->size = rpart->size - (split_offset - spart->offset);
  114. + dpart->offset = split_offset;
  115. +
  116. + if (dpart == NULL)
  117. + return 1;
  118. +
  119. + printk(KERN_INFO "mtd: partition \"%s\" created automatically, ofs=%llX, len=%llX \n",
  120. + ROOTFS_SPLIT_NAME, dpart->offset, dpart->size);
  121. +
  122. + slave = allocate_partition(master, dpart, 0, split_offset);
  123. + if (IS_ERR(slave))
  124. + return PTR_ERR(slave);
  125. + mutex_lock(&mtd_partitions_mutex);
  126. + list_add(&slave->list, &mtd_partitions);
  127. + mutex_unlock(&mtd_partitions_mutex);
  128. +
  129. + add_mtd_device(&slave->mtd);
  130. +
  131. + rpart->split = &slave->mtd;
  132. +
  133. + return 0;
  134. +}
  135. +
  136. +static int refresh_rootfs_split(struct mtd_info *mtd)
  137. +{
  138. + struct mtd_partition tpart;
  139. + struct mtd_part *part;
  140. + char *name;
  141. + //int index = 0;
  142. + int offset, size;
  143. + int ret;
  144. +
  145. + part = PART(mtd);
  146. +
  147. + /* check for the new squashfs offset first */
  148. + ret = split_squashfs(part->master, part->offset, &offset);
  149. + if (ret)
  150. + return ret;
  151. +
  152. + if ((offset > 0) && !mtd->split) {
  153. + printk(KERN_INFO "%s: creating new split partition for \"%s\"\n", __func__, mtd->name);
  154. + /* if we don't have a rootfs split partition, create a new one */
  155. + tpart.name = (char *) mtd->name;
  156. + tpart.size = mtd->size;
  157. + tpart.offset = part->offset;
  158. +
  159. + return split_rootfs_data(part->master, &part->mtd, &tpart);
  160. + } else if ((offset > 0) && mtd->split) {
  161. + /* update the offsets of the existing partition */
  162. + size = mtd->size + part->offset - offset;
  163. +
  164. + part = PART(mtd->split);
  165. + part->offset = offset;
  166. + part->mtd.size = size;
  167. + printk(KERN_INFO "%s: %s partition \"" ROOTFS_SPLIT_NAME "\", offset: 0x%06x (0x%06x)\n",
  168. + __func__, (!strcmp(part->mtd.name, ROOTFS_SPLIT_NAME) ? "updating" : "creating"),
  169. + (u32) part->offset, (u32) part->mtd.size);
  170. + name = kmalloc(sizeof(ROOTFS_SPLIT_NAME) + 1, GFP_KERNEL);
  171. + strcpy(name, ROOTFS_SPLIT_NAME);
  172. + part->mtd.name = name;
  173. + } else if ((offset <= 0) && mtd->split) {
  174. + printk(KERN_INFO "%s: removing partition \"%s\"\n", __func__, mtd->split->name);
  175. +
  176. + /* mark existing partition as removed */
  177. + part = PART(mtd->split);
  178. + name = kmalloc(sizeof(ROOTFS_SPLIT_NAME) + 1, GFP_KERNEL);
  179. + strcpy(name, ROOTFS_REMOVED_NAME);
  180. + part->mtd.name = name;
  181. + part->offset = 0;
  182. + part->mtd.size = 0;
  183. + }
  184. +
  185. + return 0;
  186. +}
  187. +#endif /* CONFIG_MTD_ROOTFS_SPLIT */
  188. +
  189. /*
  190. * This function, given a master MTD object and a partition table, creates
  191. * and registers slave MTD objects which are bound to the master according to
  192. @@ -633,7 +784,7 @@ int add_mtd_partitions(struct mtd_info *
  193. {
  194. struct mtd_part *slave;
  195. uint64_t cur_offset = 0;
  196. - int i;
  197. + int i, ret;
  198. printk(KERN_NOTICE "Creating %d MTD partitions on \"%s\":\n", nbparts, master->name);
  199. @@ -648,6 +799,21 @@ int add_mtd_partitions(struct mtd_info *
  200. add_mtd_device(&slave->mtd);
  201. + if (!strcmp(parts[i].name, "rootfs")) {
  202. +#ifdef CONFIG_MTD_ROOTFS_ROOT_DEV
  203. + if (ROOT_DEV == 0) {
  204. + printk(KERN_NOTICE "mtd: partition \"rootfs\" "
  205. + "set to be root filesystem\n");
  206. + ROOT_DEV = MKDEV(MTD_BLOCK_MAJOR, slave->mtd.index);
  207. + }
  208. +#endif
  209. +#ifdef CONFIG_MTD_ROOTFS_SPLIT
  210. + ret = split_rootfs_data(master, &slave->mtd, &parts[i]);
  211. + /* if (ret == 0)
  212. + * j++; */
  213. +#endif
  214. + }
  215. +
  216. cur_offset = slave->offset + slave->mtd.size;
  217. }
  218. @@ -655,6 +821,32 @@ int add_mtd_partitions(struct mtd_info *
  219. }
  220. EXPORT_SYMBOL(add_mtd_partitions);
  221. +int refresh_mtd_partitions(struct mtd_info *mtd)
  222. +{
  223. + int ret = 0;
  224. +
  225. + if (IS_PART(mtd)) {
  226. + struct mtd_part *part;
  227. + struct mtd_info *master;
  228. +
  229. + part = PART(mtd);
  230. + master = part->master;
  231. + if (master->refresh_device)
  232. + ret = master->refresh_device(master);
  233. + }
  234. +
  235. + if (!ret && mtd->refresh_device)
  236. + ret = mtd->refresh_device(mtd);
  237. +
  238. +#ifdef CONFIG_MTD_ROOTFS_SPLIT
  239. + if (!ret && IS_PART(mtd) && !strcmp(mtd->name, "rootfs"))
  240. + refresh_rootfs_split(mtd);
  241. +#endif
  242. +
  243. + return 0;
  244. +}
  245. +EXPORT_SYMBOL_GPL(refresh_mtd_partitions);
  246. +
  247. static DEFINE_SPINLOCK(part_parser_lock);
  248. static LIST_HEAD(part_parsers);
  249. --- a/drivers/mtd/mtdchar.c
  250. +++ b/drivers/mtd/mtdchar.c
  251. @@ -956,6 +956,13 @@ static int mtd_ioctl(struct file *file,
  252. break;
  253. }
  254. #endif
  255. +#ifdef CONFIG_MTD_PARTITIONS
  256. + case MTDREFRESH:
  257. + {
  258. + ret = refresh_mtd_partitions(mtd);
  259. + break;
  260. + }
  261. +#endif
  262. default:
  263. ret = -ENOTTY;
  264. --- a/include/linux/mtd/mtd.h
  265. +++ b/include/linux/mtd/mtd.h
  266. @@ -125,6 +125,7 @@ struct nand_ecclayout {
  267. struct nand_oobfree oobfree[MTD_MAX_OOBFREE_ENTRIES_LARGE];
  268. };
  269. +struct mtd_info;
  270. struct mtd_info {
  271. u_char type;
  272. uint32_t flags;
  273. @@ -266,6 +267,9 @@ struct mtd_info {
  274. struct device dev;
  275. int usecount;
  276. + int (*refresh_device)(struct mtd_info *mtd);
  277. + struct mtd_info *split;
  278. +
  279. /* If the driver is something smart, like UBI, it may need to maintain
  280. * its own reference counting. The below functions are only for driver.
  281. * The driver may register its callbacks. These callbacks are not
  282. --- a/include/linux/mtd/partitions.h
  283. +++ b/include/linux/mtd/partitions.h
  284. @@ -34,12 +34,14 @@
  285. * erasesize aligned (e.g. use MTDPART_OFS_NEXTBLK).
  286. */
  287. +struct mtd_partition;
  288. struct mtd_partition {
  289. - char *name; /* identifier string */
  290. + const char *name; /* identifier string */
  291. uint64_t size; /* partition size */
  292. uint64_t offset; /* offset within the master MTD space */
  293. uint32_t mask_flags; /* master MTD flags to mask out for this partition */
  294. struct nand_ecclayout *ecclayout; /* out of band layout for this partition (NAND only) */
  295. + int (*refresh_partition)(struct mtd_info *);
  296. };
  297. #define MTDPART_OFS_NXTBLK (-2)
  298. @@ -51,6 +53,7 @@ struct mtd_info;
  299. int add_mtd_partitions(struct mtd_info *, const struct mtd_partition *, int);
  300. int del_mtd_partitions(struct mtd_info *);
  301. +int refresh_mtd_partitions(struct mtd_info *);
  302. /*
  303. * Functions dealing with the various ways of partitioning the space
  304. --- a/include/mtd/mtd-abi.h
  305. +++ b/include/mtd/mtd-abi.h
  306. @@ -127,6 +127,7 @@ struct otp_info {
  307. #define MEMWRITEOOB64 _IOWR('M', 21, struct mtd_oob_buf64)
  308. #define MEMREADOOB64 _IOWR('M', 22, struct mtd_oob_buf64)
  309. #define MEMISLOCKED _IOR('M', 23, struct erase_info_user)
  310. +#define MTDREFRESH _IO('M', 24)
  311. /*
  312. * Obsolete legacy interface. Keep it in order not to break userspace