lfs_testbd.c 9.8 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300
  1. /*
  2. * Testing block device, wraps filebd and rambd while providing a bunch
  3. * of hooks for testing littlefs in various conditions.
  4. *
  5. * Copyright (c) 2017, Arm Limited. All rights reserved.
  6. * SPDX-License-Identifier: BSD-3-Clause
  7. */
  8. #include "bd/lfs_testbd.h"
  9. #include <stdlib.h>
  10. int lfs_testbd_createcfg(const struct lfs_config *cfg, const char *path,
  11. const struct lfs_testbd_config *bdcfg) {
  12. LFS_TRACE("lfs_testbd_createcfg(%p {.context=%p, "
  13. ".read=%p, .prog=%p, .erase=%p, .sync=%p, "
  14. ".read_size=%"PRIu32", .prog_size=%"PRIu32", "
  15. ".block_size=%"PRIu32", .block_count=%"PRIu32"}, "
  16. "\"%s\", "
  17. "%p {.erase_value=%"PRId32", .erase_cycles=%"PRIu32", "
  18. ".badblock_behavior=%"PRIu8", .power_cycles=%"PRIu32", "
  19. ".buffer=%p, .wear_buffer=%p})",
  20. (void*)cfg, cfg->context,
  21. (void*)(uintptr_t)cfg->read, (void*)(uintptr_t)cfg->prog,
  22. (void*)(uintptr_t)cfg->erase, (void*)(uintptr_t)cfg->sync,
  23. cfg->read_size, cfg->prog_size, cfg->block_size, cfg->block_count,
  24. path, (void*)bdcfg, bdcfg->erase_value, bdcfg->erase_cycles,
  25. bdcfg->badblock_behavior, bdcfg->power_cycles,
  26. bdcfg->buffer, bdcfg->wear_buffer);
  27. lfs_testbd_t *bd = cfg->context;
  28. bd->cfg = bdcfg;
  29. // setup testing things
  30. bd->persist = path;
  31. bd->power_cycles = bd->cfg->power_cycles;
  32. if (bd->cfg->erase_cycles) {
  33. if (bd->cfg->wear_buffer) {
  34. bd->wear = bd->cfg->wear_buffer;
  35. } else {
  36. bd->wear = lfs_malloc(sizeof(lfs_testbd_wear_t) * cfg->block_count);
  37. if (!bd->wear) {
  38. LFS_TRACE("lfs_testbd_createcfg -> %d", LFS_ERR_NOMEM);
  39. return LFS_ERR_NOMEM;
  40. }
  41. }
  42. memset(bd->wear, 0, sizeof(lfs_testbd_wear_t) * cfg->block_count);
  43. }
  44. // create underlying block device
  45. if (bd->persist) {
  46. bd->u.file.cfg = (struct lfs_filebd_config){
  47. .erase_value = bd->cfg->erase_value,
  48. };
  49. int err = lfs_filebd_createcfg(cfg, path, &bd->u.file.cfg);
  50. LFS_TRACE("lfs_testbd_createcfg -> %d", err);
  51. return err;
  52. } else {
  53. bd->u.ram.cfg = (struct lfs_rambd_config){
  54. .erase_value = bd->cfg->erase_value,
  55. .buffer = bd->cfg->buffer,
  56. };
  57. int err = lfs_rambd_createcfg(cfg, &bd->u.ram.cfg);
  58. LFS_TRACE("lfs_testbd_createcfg -> %d", err);
  59. return err;
  60. }
  61. }
  62. int lfs_testbd_create(const struct lfs_config *cfg, const char *path) {
  63. LFS_TRACE("lfs_testbd_create(%p {.context=%p, "
  64. ".read=%p, .prog=%p, .erase=%p, .sync=%p, "
  65. ".read_size=%"PRIu32", .prog_size=%"PRIu32", "
  66. ".block_size=%"PRIu32", .block_count=%"PRIu32"}, "
  67. "\"%s\")",
  68. (void*)cfg, cfg->context,
  69. (void*)(uintptr_t)cfg->read, (void*)(uintptr_t)cfg->prog,
  70. (void*)(uintptr_t)cfg->erase, (void*)(uintptr_t)cfg->sync,
  71. cfg->read_size, cfg->prog_size, cfg->block_size, cfg->block_count,
  72. path);
  73. static const struct lfs_testbd_config defaults = {.erase_value=-1};
  74. int err = lfs_testbd_createcfg(cfg, path, &defaults);
  75. LFS_TRACE("lfs_testbd_create -> %d", err);
  76. return err;
  77. }
  78. int lfs_testbd_destroy(const struct lfs_config *cfg) {
  79. LFS_TRACE("lfs_testbd_destroy(%p)", (void*)cfg);
  80. lfs_testbd_t *bd = cfg->context;
  81. if (bd->cfg->erase_cycles && !bd->cfg->wear_buffer) {
  82. lfs_free(bd->wear);
  83. }
  84. if (bd->persist) {
  85. int err = lfs_filebd_destroy(cfg);
  86. LFS_TRACE("lfs_testbd_destroy -> %d", err);
  87. return err;
  88. } else {
  89. int err = lfs_rambd_destroy(cfg);
  90. LFS_TRACE("lfs_testbd_destroy -> %d", err);
  91. return err;
  92. }
  93. }
  94. /// Internal mapping to block devices ///
  95. static int lfs_testbd_rawread(const struct lfs_config *cfg, lfs_block_t block,
  96. lfs_off_t off, void *buffer, lfs_size_t size) {
  97. lfs_testbd_t *bd = cfg->context;
  98. if (bd->persist) {
  99. return lfs_filebd_read(cfg, block, off, buffer, size);
  100. } else {
  101. return lfs_rambd_read(cfg, block, off, buffer, size);
  102. }
  103. }
  104. static int lfs_testbd_rawprog(const struct lfs_config *cfg, lfs_block_t block,
  105. lfs_off_t off, const void *buffer, lfs_size_t size) {
  106. lfs_testbd_t *bd = cfg->context;
  107. if (bd->persist) {
  108. return lfs_filebd_prog(cfg, block, off, buffer, size);
  109. } else {
  110. return lfs_rambd_prog(cfg, block, off, buffer, size);
  111. }
  112. }
  113. static int lfs_testbd_rawerase(const struct lfs_config *cfg,
  114. lfs_block_t block) {
  115. lfs_testbd_t *bd = cfg->context;
  116. if (bd->persist) {
  117. return lfs_filebd_erase(cfg, block);
  118. } else {
  119. return lfs_rambd_erase(cfg, block);
  120. }
  121. }
  122. static int lfs_testbd_rawsync(const struct lfs_config *cfg) {
  123. lfs_testbd_t *bd = cfg->context;
  124. if (bd->persist) {
  125. return lfs_filebd_sync(cfg);
  126. } else {
  127. return lfs_rambd_sync(cfg);
  128. }
  129. }
  130. /// block device API ///
  131. int lfs_testbd_read(const struct lfs_config *cfg, lfs_block_t block,
  132. lfs_off_t off, void *buffer, lfs_size_t size) {
  133. LFS_TRACE("lfs_testbd_read(%p, 0x%"PRIx32", %"PRIu32", %p, %"PRIu32")",
  134. (void*)cfg, block, off, buffer, size);
  135. lfs_testbd_t *bd = cfg->context;
  136. // check if read is valid
  137. LFS_ASSERT(off % cfg->read_size == 0);
  138. LFS_ASSERT(size % cfg->read_size == 0);
  139. LFS_ASSERT(block < cfg->block_count);
  140. // block bad?
  141. if (bd->cfg->erase_cycles && bd->wear[block] >= bd->cfg->erase_cycles &&
  142. bd->cfg->badblock_behavior == LFS_TESTBD_BADBLOCK_READERROR) {
  143. LFS_TRACE("lfs_testbd_read -> %d", LFS_ERR_CORRUPT);
  144. return LFS_ERR_CORRUPT;
  145. }
  146. // read
  147. int err = lfs_testbd_rawread(cfg, block, off, buffer, size);
  148. LFS_TRACE("lfs_testbd_read -> %d", err);
  149. return err;
  150. }
  151. int lfs_testbd_prog(const struct lfs_config *cfg, lfs_block_t block,
  152. lfs_off_t off, const void *buffer, lfs_size_t size) {
  153. LFS_TRACE("lfs_testbd_prog(%p, 0x%"PRIx32", %"PRIu32", %p, %"PRIu32")",
  154. (void*)cfg, block, off, buffer, size);
  155. lfs_testbd_t *bd = cfg->context;
  156. // check if write is valid
  157. LFS_ASSERT(off % cfg->prog_size == 0);
  158. LFS_ASSERT(size % cfg->prog_size == 0);
  159. LFS_ASSERT(block < cfg->block_count);
  160. // block bad?
  161. if (bd->cfg->erase_cycles && bd->wear[block] >= bd->cfg->erase_cycles) {
  162. if (bd->cfg->badblock_behavior ==
  163. LFS_TESTBD_BADBLOCK_PROGERROR) {
  164. LFS_TRACE("lfs_testbd_prog -> %d", LFS_ERR_CORRUPT);
  165. return LFS_ERR_CORRUPT;
  166. } else if (bd->cfg->badblock_behavior ==
  167. LFS_TESTBD_BADBLOCK_PROGNOOP ||
  168. bd->cfg->badblock_behavior ==
  169. LFS_TESTBD_BADBLOCK_ERASENOOP) {
  170. LFS_TRACE("lfs_testbd_prog -> %d", 0);
  171. return 0;
  172. }
  173. }
  174. // prog
  175. int err = lfs_testbd_rawprog(cfg, block, off, buffer, size);
  176. if (err) {
  177. LFS_TRACE("lfs_testbd_prog -> %d", err);
  178. return err;
  179. }
  180. // lose power?
  181. if (bd->power_cycles > 0) {
  182. bd->power_cycles -= 1;
  183. if (bd->power_cycles == 0) {
  184. // sync to make sure we persist the last changes
  185. assert(lfs_testbd_rawsync(cfg) == 0);
  186. // simulate power loss
  187. exit(33);
  188. }
  189. }
  190. LFS_TRACE("lfs_testbd_prog -> %d", 0);
  191. return 0;
  192. }
  193. int lfs_testbd_erase(const struct lfs_config *cfg, lfs_block_t block) {
  194. LFS_TRACE("lfs_testbd_erase(%p, 0x%"PRIx32")", (void*)cfg, block);
  195. lfs_testbd_t *bd = cfg->context;
  196. // check if erase is valid
  197. LFS_ASSERT(block < cfg->block_count);
  198. // block bad?
  199. if (bd->cfg->erase_cycles) {
  200. if (bd->wear[block] >= bd->cfg->erase_cycles) {
  201. if (bd->cfg->badblock_behavior ==
  202. LFS_TESTBD_BADBLOCK_ERASEERROR) {
  203. LFS_TRACE("lfs_testbd_erase -> %d", LFS_ERR_CORRUPT);
  204. return LFS_ERR_CORRUPT;
  205. } else if (bd->cfg->badblock_behavior ==
  206. LFS_TESTBD_BADBLOCK_ERASENOOP) {
  207. LFS_TRACE("lfs_testbd_erase -> %d", 0);
  208. return 0;
  209. }
  210. } else {
  211. // mark wear
  212. bd->wear[block] += 1;
  213. }
  214. }
  215. // erase
  216. int err = lfs_testbd_rawerase(cfg, block);
  217. if (err) {
  218. LFS_TRACE("lfs_testbd_erase -> %d", err);
  219. return err;
  220. }
  221. // lose power?
  222. if (bd->power_cycles > 0) {
  223. bd->power_cycles -= 1;
  224. if (bd->power_cycles == 0) {
  225. // sync to make sure we persist the last changes
  226. assert(lfs_testbd_rawsync(cfg) == 0);
  227. // simulate power loss
  228. exit(33);
  229. }
  230. }
  231. LFS_TRACE("lfs_testbd_prog -> %d", 0);
  232. return 0;
  233. }
  234. int lfs_testbd_sync(const struct lfs_config *cfg) {
  235. LFS_TRACE("lfs_testbd_sync(%p)", (void*)cfg);
  236. int err = lfs_testbd_rawsync(cfg);
  237. LFS_TRACE("lfs_testbd_sync -> %d", err);
  238. return err;
  239. }
  240. /// simulated wear operations ///
  241. lfs_testbd_swear_t lfs_testbd_getwear(const struct lfs_config *cfg,
  242. lfs_block_t block) {
  243. LFS_TRACE("lfs_testbd_getwear(%p, %"PRIu32")", (void*)cfg, block);
  244. lfs_testbd_t *bd = cfg->context;
  245. // check if block is valid
  246. LFS_ASSERT(bd->cfg->erase_cycles);
  247. LFS_ASSERT(block < cfg->block_count);
  248. LFS_TRACE("lfs_testbd_getwear -> %"PRIu32, bd->wear[block]);
  249. return bd->wear[block];
  250. }
  251. int lfs_testbd_setwear(const struct lfs_config *cfg,
  252. lfs_block_t block, lfs_testbd_wear_t wear) {
  253. LFS_TRACE("lfs_testbd_setwear(%p, %"PRIu32")", (void*)cfg, block);
  254. lfs_testbd_t *bd = cfg->context;
  255. // check if block is valid
  256. LFS_ASSERT(bd->cfg->erase_cycles);
  257. LFS_ASSERT(block < cfg->block_count);
  258. bd->wear[block] = wear;
  259. LFS_TRACE("lfs_testbd_setwear -> %d", 0);
  260. return 0;
  261. }