efi_disk.c 9.7 KB

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  1. /*
  2. * EFI application disk support
  3. *
  4. * Copyright (c) 2016 Alexander Graf
  5. *
  6. * SPDX-License-Identifier: GPL-2.0+
  7. */
  8. #include <common.h>
  9. #include <blk.h>
  10. #include <dm.h>
  11. #include <efi_loader.h>
  12. #include <inttypes.h>
  13. #include <part.h>
  14. #include <malloc.h>
  15. static const efi_guid_t efi_block_io_guid = BLOCK_IO_GUID;
  16. struct efi_disk_obj {
  17. /* Generic EFI object parent class data */
  18. struct efi_object parent;
  19. /* EFI Interface callback struct for block I/O */
  20. struct efi_block_io ops;
  21. /* U-Boot ifname for block device */
  22. const char *ifname;
  23. /* U-Boot dev_index for block device */
  24. int dev_index;
  25. /* EFI Interface Media descriptor struct, referenced by ops */
  26. struct efi_block_io_media media;
  27. /* EFI device path to this block device */
  28. struct efi_device_path *dp;
  29. /* partition # */
  30. unsigned int part;
  31. /* handle to filesys proto (for partition objects) */
  32. struct efi_simple_file_system_protocol *volume;
  33. /* Offset into disk for simple partitions */
  34. lbaint_t offset;
  35. /* Internal block device */
  36. struct blk_desc *desc;
  37. };
  38. static efi_status_t EFIAPI efi_disk_reset(struct efi_block_io *this,
  39. char extended_verification)
  40. {
  41. EFI_ENTRY("%p, %x", this, extended_verification);
  42. return EFI_EXIT(EFI_DEVICE_ERROR);
  43. }
  44. enum efi_disk_direction {
  45. EFI_DISK_READ,
  46. EFI_DISK_WRITE,
  47. };
  48. static efi_status_t efi_disk_rw_blocks(struct efi_block_io *this,
  49. u32 media_id, u64 lba, unsigned long buffer_size,
  50. void *buffer, enum efi_disk_direction direction)
  51. {
  52. struct efi_disk_obj *diskobj;
  53. struct blk_desc *desc;
  54. int blksz;
  55. int blocks;
  56. unsigned long n;
  57. diskobj = container_of(this, struct efi_disk_obj, ops);
  58. desc = (struct blk_desc *) diskobj->desc;
  59. blksz = desc->blksz;
  60. blocks = buffer_size / blksz;
  61. lba += diskobj->offset;
  62. debug("EFI: %s:%d blocks=%x lba=%"PRIx64" blksz=%x dir=%d\n", __func__,
  63. __LINE__, blocks, lba, blksz, direction);
  64. /* We only support full block access */
  65. if (buffer_size & (blksz - 1))
  66. return EFI_DEVICE_ERROR;
  67. if (direction == EFI_DISK_READ)
  68. n = blk_dread(desc, lba, blocks, buffer);
  69. else
  70. n = blk_dwrite(desc, lba, blocks, buffer);
  71. /* We don't do interrupts, so check for timers cooperatively */
  72. efi_timer_check();
  73. debug("EFI: %s:%d n=%lx blocks=%x\n", __func__, __LINE__, n, blocks);
  74. if (n != blocks)
  75. return EFI_DEVICE_ERROR;
  76. return EFI_SUCCESS;
  77. }
  78. static efi_status_t EFIAPI efi_disk_read_blocks(struct efi_block_io *this,
  79. u32 media_id, u64 lba, unsigned long buffer_size,
  80. void *buffer)
  81. {
  82. void *real_buffer = buffer;
  83. efi_status_t r;
  84. #ifdef CONFIG_EFI_LOADER_BOUNCE_BUFFER
  85. if (buffer_size > EFI_LOADER_BOUNCE_BUFFER_SIZE) {
  86. r = efi_disk_read_blocks(this, media_id, lba,
  87. EFI_LOADER_BOUNCE_BUFFER_SIZE, buffer);
  88. if (r != EFI_SUCCESS)
  89. return r;
  90. return efi_disk_read_blocks(this, media_id, lba +
  91. EFI_LOADER_BOUNCE_BUFFER_SIZE / this->media->block_size,
  92. buffer_size - EFI_LOADER_BOUNCE_BUFFER_SIZE,
  93. buffer + EFI_LOADER_BOUNCE_BUFFER_SIZE);
  94. }
  95. real_buffer = efi_bounce_buffer;
  96. #endif
  97. EFI_ENTRY("%p, %x, %"PRIx64", %lx, %p", this, media_id, lba,
  98. buffer_size, buffer);
  99. r = efi_disk_rw_blocks(this, media_id, lba, buffer_size, real_buffer,
  100. EFI_DISK_READ);
  101. /* Copy from bounce buffer to real buffer if necessary */
  102. if ((r == EFI_SUCCESS) && (real_buffer != buffer))
  103. memcpy(buffer, real_buffer, buffer_size);
  104. return EFI_EXIT(r);
  105. }
  106. static efi_status_t EFIAPI efi_disk_write_blocks(struct efi_block_io *this,
  107. u32 media_id, u64 lba, unsigned long buffer_size,
  108. void *buffer)
  109. {
  110. void *real_buffer = buffer;
  111. efi_status_t r;
  112. #ifdef CONFIG_EFI_LOADER_BOUNCE_BUFFER
  113. if (buffer_size > EFI_LOADER_BOUNCE_BUFFER_SIZE) {
  114. r = efi_disk_write_blocks(this, media_id, lba,
  115. EFI_LOADER_BOUNCE_BUFFER_SIZE, buffer);
  116. if (r != EFI_SUCCESS)
  117. return r;
  118. return efi_disk_write_blocks(this, media_id, lba +
  119. EFI_LOADER_BOUNCE_BUFFER_SIZE / this->media->block_size,
  120. buffer_size - EFI_LOADER_BOUNCE_BUFFER_SIZE,
  121. buffer + EFI_LOADER_BOUNCE_BUFFER_SIZE);
  122. }
  123. real_buffer = efi_bounce_buffer;
  124. #endif
  125. EFI_ENTRY("%p, %x, %"PRIx64", %lx, %p", this, media_id, lba,
  126. buffer_size, buffer);
  127. /* Populate bounce buffer if necessary */
  128. if (real_buffer != buffer)
  129. memcpy(real_buffer, buffer, buffer_size);
  130. r = efi_disk_rw_blocks(this, media_id, lba, buffer_size, real_buffer,
  131. EFI_DISK_WRITE);
  132. return EFI_EXIT(r);
  133. }
  134. static efi_status_t EFIAPI efi_disk_flush_blocks(struct efi_block_io *this)
  135. {
  136. /* We always write synchronously */
  137. EFI_ENTRY("%p", this);
  138. return EFI_EXIT(EFI_SUCCESS);
  139. }
  140. static const struct efi_block_io block_io_disk_template = {
  141. .reset = &efi_disk_reset,
  142. .read_blocks = &efi_disk_read_blocks,
  143. .write_blocks = &efi_disk_write_blocks,
  144. .flush_blocks = &efi_disk_flush_blocks,
  145. };
  146. /*
  147. * Find filesystem from a device-path. The passed in path 'p' probably
  148. * contains one or more /File(name) nodes, so the comparison stops at
  149. * the first /File() node, and returns the pointer to that via 'rp'.
  150. * This is mostly intended to be a helper to map a device-path to an
  151. * efi_file_handle object.
  152. */
  153. struct efi_simple_file_system_protocol *
  154. efi_fs_from_path(struct efi_device_path *fp)
  155. {
  156. struct efi_object *efiobj;
  157. struct efi_disk_obj *diskobj;
  158. efiobj = efi_dp_find_obj(fp, NULL);
  159. if (!efiobj)
  160. return NULL;
  161. diskobj = container_of(efiobj, struct efi_disk_obj, parent);
  162. return diskobj->volume;
  163. }
  164. static void efi_disk_add_dev(const char *name,
  165. const char *if_typename,
  166. struct blk_desc *desc,
  167. int dev_index,
  168. lbaint_t offset,
  169. unsigned int part)
  170. {
  171. struct efi_disk_obj *diskobj;
  172. /* Don't add empty devices */
  173. if (!desc->lba)
  174. return;
  175. diskobj = calloc(1, sizeof(*diskobj));
  176. /* Fill in object data */
  177. diskobj->dp = efi_dp_from_part(desc, part);
  178. diskobj->part = part;
  179. diskobj->parent.protocols[0].guid = &efi_block_io_guid;
  180. diskobj->parent.protocols[0].protocol_interface = &diskobj->ops;
  181. diskobj->parent.protocols[1].guid = &efi_guid_device_path;
  182. diskobj->parent.protocols[1].protocol_interface = diskobj->dp;
  183. if (part >= 1) {
  184. diskobj->volume = efi_simple_file_system(desc, part,
  185. diskobj->dp);
  186. diskobj->parent.protocols[2].guid =
  187. &efi_simple_file_system_protocol_guid;
  188. diskobj->parent.protocols[2].protocol_interface =
  189. diskobj->volume;
  190. }
  191. diskobj->parent.handle = diskobj;
  192. diskobj->ops = block_io_disk_template;
  193. diskobj->ifname = if_typename;
  194. diskobj->dev_index = dev_index;
  195. diskobj->offset = offset;
  196. diskobj->desc = desc;
  197. /* Fill in EFI IO Media info (for read/write callbacks) */
  198. diskobj->media.removable_media = desc->removable;
  199. diskobj->media.media_present = 1;
  200. diskobj->media.block_size = desc->blksz;
  201. diskobj->media.io_align = desc->blksz;
  202. diskobj->media.last_block = desc->lba - offset;
  203. diskobj->ops.media = &diskobj->media;
  204. /* Hook up to the device list */
  205. list_add_tail(&diskobj->parent.link, &efi_obj_list);
  206. }
  207. static int efi_disk_create_eltorito(struct blk_desc *desc,
  208. const char *if_typename,
  209. int diskid,
  210. const char *pdevname)
  211. {
  212. int disks = 0;
  213. #if CONFIG_IS_ENABLED(ISO_PARTITION)
  214. char devname[32] = { 0 }; /* dp->str is u16[32] long */
  215. disk_partition_t info;
  216. int part = 1;
  217. if (desc->part_type != PART_TYPE_ISO)
  218. return 0;
  219. /* and devices for each partition: */
  220. while (!part_get_info(desc, part, &info)) {
  221. snprintf(devname, sizeof(devname), "%s:%d", pdevname,
  222. part);
  223. efi_disk_add_dev(devname, if_typename, desc, diskid,
  224. info.start, part);
  225. part++;
  226. disks++;
  227. }
  228. /* ... and add block device: */
  229. efi_disk_add_dev(devname, if_typename, desc, diskid, 0, 0);
  230. #endif
  231. return disks;
  232. }
  233. /*
  234. * U-Boot doesn't have a list of all online disk devices. So when running our
  235. * EFI payload, we scan through all of the potentially available ones and
  236. * store them in our object pool.
  237. *
  238. * TODO(sjg@chromium.org): Actually with CONFIG_BLK, U-Boot does have this.
  239. * Consider converting the code to look up devices as needed. The EFI device
  240. * could be a child of the UCLASS_BLK block device, perhaps.
  241. *
  242. * This gets called from do_bootefi_exec().
  243. */
  244. int efi_disk_register(void)
  245. {
  246. int disks = 0;
  247. #ifdef CONFIG_BLK
  248. struct udevice *dev;
  249. for (uclass_first_device_check(UCLASS_BLK, &dev);
  250. dev;
  251. uclass_next_device_check(&dev)) {
  252. struct blk_desc *desc = dev_get_uclass_platdata(dev);
  253. const char *if_typename = dev->driver->name;
  254. disk_partition_t info;
  255. int part = 1;
  256. printf("Scanning disk %s...\n", dev->name);
  257. /* add devices for each partition: */
  258. while (!part_get_info(desc, part, &info)) {
  259. efi_disk_add_dev(dev->name, if_typename, desc,
  260. desc->devnum, 0, part);
  261. part++;
  262. }
  263. /* ... and add block device: */
  264. efi_disk_add_dev(dev->name, if_typename, desc,
  265. desc->devnum, 0, 0);
  266. disks++;
  267. /*
  268. * El Torito images show up as block devices in an EFI world,
  269. * so let's create them here
  270. */
  271. disks += efi_disk_create_eltorito(desc, if_typename,
  272. desc->devnum, dev->name);
  273. }
  274. #else
  275. int i, if_type;
  276. /* Search for all available disk devices */
  277. for (if_type = 0; if_type < IF_TYPE_COUNT; if_type++) {
  278. const struct blk_driver *cur_drvr;
  279. const char *if_typename;
  280. cur_drvr = blk_driver_lookup_type(if_type);
  281. if (!cur_drvr)
  282. continue;
  283. if_typename = cur_drvr->if_typename;
  284. printf("Scanning disks on %s...\n", if_typename);
  285. for (i = 0; i < 4; i++) {
  286. struct blk_desc *desc;
  287. char devname[32] = { 0 }; /* dp->str is u16[32] long */
  288. desc = blk_get_devnum_by_type(if_type, i);
  289. if (!desc)
  290. continue;
  291. if (desc->type == DEV_TYPE_UNKNOWN)
  292. continue;
  293. snprintf(devname, sizeof(devname), "%s%d",
  294. if_typename, i);
  295. efi_disk_add_dev(devname, if_typename, desc, i, 0, 0);
  296. disks++;
  297. /*
  298. * El Torito images show up as block devices
  299. * in an EFI world, so let's create them here
  300. */
  301. disks += efi_disk_create_eltorito(desc, if_typename,
  302. i, devname);
  303. }
  304. }
  305. #endif
  306. printf("Found %d disks\n", disks);
  307. return 0;
  308. }