1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * Copyright (c) 2012 Linutronix GmbH 4 * Copyright (c) 2014 sigma star gmbh 5 * Author: Richard Weinberger <richard@nod.at> 6 */ 7 8 /** 9 * update_fastmap_work_fn - calls ubi_update_fastmap from a work queue 10 * @wrk: the work description object 11 */ 12 static void update_fastmap_work_fn(struct work_struct *wrk) 13 { 14 struct ubi_device *ubi = container_of(wrk, struct ubi_device, fm_work); 15 16 ubi_update_fastmap(ubi); 17 spin_lock(&ubi->wl_lock); 18 ubi->fm_work_scheduled = 0; 19 spin_unlock(&ubi->wl_lock); 20 } 21 22 /** 23 * find_anchor_wl_entry - find wear-leveling entry to used as anchor PEB. 24 * @root: the RB-tree where to look for 25 */ 26 static struct ubi_wl_entry *find_anchor_wl_entry(struct rb_root *root) 27 { 28 struct rb_node *p; 29 struct ubi_wl_entry *e, *victim = NULL; 30 int max_ec = UBI_MAX_ERASECOUNTER; 31 32 ubi_rb_for_each_entry(p, e, root, u.rb) { 33 if (e->pnum < UBI_FM_MAX_START && e->ec < max_ec) { 34 victim = e; 35 max_ec = e->ec; 36 } 37 } 38 39 return victim; 40 } 41 42 static inline void return_unused_peb(struct ubi_device *ubi, 43 struct ubi_wl_entry *e) 44 { 45 wl_tree_add(e, &ubi->free); 46 ubi->free_count++; 47 } 48 49 /** 50 * return_unused_pool_pebs - returns unused PEB to the free tree. 51 * @ubi: UBI device description object 52 * @pool: fastmap pool description object 53 */ 54 static void return_unused_pool_pebs(struct ubi_device *ubi, 55 struct ubi_fm_pool *pool) 56 { 57 int i; 58 struct ubi_wl_entry *e; 59 60 for (i = pool->used; i < pool->size; i++) { 61 e = ubi->lookuptbl[pool->pebs[i]]; 62 return_unused_peb(ubi, e); 63 } 64 } 65 66 /** 67 * ubi_wl_get_fm_peb - find a physical erase block with a given maximal number. 68 * @ubi: UBI device description object 69 * @anchor: This PEB will be used as anchor PEB by fastmap 70 * 71 * The function returns a physical erase block with a given maximal number 72 * and removes it from the wl subsystem. 73 * Must be called with wl_lock held! 74 */ 75 struct ubi_wl_entry *ubi_wl_get_fm_peb(struct ubi_device *ubi, int anchor) 76 { 77 struct ubi_wl_entry *e = NULL; 78 79 if (!ubi->free.rb_node || (ubi->free_count - ubi->beb_rsvd_pebs < 1)) 80 goto out; 81 82 if (anchor) 83 e = find_anchor_wl_entry(&ubi->free); 84 else 85 e = find_mean_wl_entry(ubi, &ubi->free); 86 87 if (!e) 88 goto out; 89 90 self_check_in_wl_tree(ubi, e, &ubi->free); 91 92 /* remove it from the free list, 93 * the wl subsystem does no longer know this erase block */ 94 rb_erase(&e->u.rb, &ubi->free); 95 ubi->free_count--; 96 out: 97 return e; 98 } 99 100 /** 101 * ubi_refill_pools - refills all fastmap PEB pools. 102 * @ubi: UBI device description object 103 */ 104 void ubi_refill_pools(struct ubi_device *ubi) 105 { 106 struct ubi_fm_pool *wl_pool = &ubi->fm_wl_pool; 107 struct ubi_fm_pool *pool = &ubi->fm_pool; 108 struct ubi_wl_entry *e; 109 int enough; 110 111 spin_lock(&ubi->wl_lock); 112 113 return_unused_pool_pebs(ubi, wl_pool); 114 return_unused_pool_pebs(ubi, pool); 115 116 wl_pool->size = 0; 117 pool->size = 0; 118 119 for (;;) { 120 enough = 0; 121 if (pool->size < pool->max_size) { 122 if (!ubi->free.rb_node) 123 break; 124 125 e = wl_get_wle(ubi); 126 if (!e) 127 break; 128 129 pool->pebs[pool->size] = e->pnum; 130 pool->size++; 131 } else 132 enough++; 133 134 if (wl_pool->size < wl_pool->max_size) { 135 if (!ubi->free.rb_node || 136 (ubi->free_count - ubi->beb_rsvd_pebs < 5)) 137 break; 138 139 e = find_wl_entry(ubi, &ubi->free, WL_FREE_MAX_DIFF); 140 self_check_in_wl_tree(ubi, e, &ubi->free); 141 rb_erase(&e->u.rb, &ubi->free); 142 ubi->free_count--; 143 144 wl_pool->pebs[wl_pool->size] = e->pnum; 145 wl_pool->size++; 146 } else 147 enough++; 148 149 if (enough == 2) 150 break; 151 } 152 153 wl_pool->used = 0; 154 pool->used = 0; 155 156 spin_unlock(&ubi->wl_lock); 157 } 158 159 /** 160 * produce_free_peb - produce a free physical eraseblock. 161 * @ubi: UBI device description object 162 * 163 * This function tries to make a free PEB by means of synchronous execution of 164 * pending works. This may be needed if, for example the background thread is 165 * disabled. Returns zero in case of success and a negative error code in case 166 * of failure. 167 */ 168 static int produce_free_peb(struct ubi_device *ubi) 169 { 170 int err; 171 172 while (!ubi->free.rb_node && ubi->works_count) { 173 dbg_wl("do one work synchronously"); 174 err = do_work(ubi); 175 176 if (err) 177 return err; 178 } 179 180 return 0; 181 } 182 183 /** 184 * ubi_wl_get_peb - get a physical eraseblock. 185 * @ubi: UBI device description object 186 * 187 * This function returns a physical eraseblock in case of success and a 188 * negative error code in case of failure. 189 * Returns with ubi->fm_eba_sem held in read mode! 190 */ 191 int ubi_wl_get_peb(struct ubi_device *ubi) 192 { 193 int ret, attempts = 0; 194 struct ubi_fm_pool *pool = &ubi->fm_pool; 195 struct ubi_fm_pool *wl_pool = &ubi->fm_wl_pool; 196 197 again: 198 down_read(&ubi->fm_eba_sem); 199 spin_lock(&ubi->wl_lock); 200 201 /* We check here also for the WL pool because at this point we can 202 * refill the WL pool synchronous. */ 203 if (pool->used == pool->size || wl_pool->used == wl_pool->size) { 204 spin_unlock(&ubi->wl_lock); 205 up_read(&ubi->fm_eba_sem); 206 ret = ubi_update_fastmap(ubi); 207 if (ret) { 208 ubi_msg(ubi, "Unable to write a new fastmap: %i", ret); 209 down_read(&ubi->fm_eba_sem); 210 return -ENOSPC; 211 } 212 down_read(&ubi->fm_eba_sem); 213 spin_lock(&ubi->wl_lock); 214 } 215 216 if (pool->used == pool->size) { 217 spin_unlock(&ubi->wl_lock); 218 attempts++; 219 if (attempts == 10) { 220 ubi_err(ubi, "Unable to get a free PEB from user WL pool"); 221 ret = -ENOSPC; 222 goto out; 223 } 224 up_read(&ubi->fm_eba_sem); 225 ret = produce_free_peb(ubi); 226 if (ret < 0) { 227 down_read(&ubi->fm_eba_sem); 228 goto out; 229 } 230 goto again; 231 } 232 233 ubi_assert(pool->used < pool->size); 234 ret = pool->pebs[pool->used++]; 235 prot_queue_add(ubi, ubi->lookuptbl[ret]); 236 spin_unlock(&ubi->wl_lock); 237 out: 238 return ret; 239 } 240 241 /* get_peb_for_wl - returns a PEB to be used internally by the WL sub-system. 242 * 243 * @ubi: UBI device description object 244 */ 245 static struct ubi_wl_entry *get_peb_for_wl(struct ubi_device *ubi) 246 { 247 struct ubi_fm_pool *pool = &ubi->fm_wl_pool; 248 int pnum; 249 250 ubi_assert(rwsem_is_locked(&ubi->fm_eba_sem)); 251 252 if (pool->used == pool->size) { 253 /* We cannot update the fastmap here because this 254 * function is called in atomic context. 255 * Let's fail here and refill/update it as soon as possible. */ 256 if (!ubi->fm_work_scheduled) { 257 ubi->fm_work_scheduled = 1; 258 schedule_work(&ubi->fm_work); 259 } 260 return NULL; 261 } 262 263 pnum = pool->pebs[pool->used++]; 264 return ubi->lookuptbl[pnum]; 265 } 266 267 /** 268 * ubi_ensure_anchor_pebs - schedule wear-leveling to produce an anchor PEB. 269 * @ubi: UBI device description object 270 */ 271 int ubi_ensure_anchor_pebs(struct ubi_device *ubi) 272 { 273 struct ubi_work *wrk; 274 struct ubi_wl_entry *anchor; 275 276 spin_lock(&ubi->wl_lock); 277 278 /* Do we already have an anchor? */ 279 if (ubi->fm_anchor) { 280 spin_unlock(&ubi->wl_lock); 281 return 0; 282 } 283 284 /* See if we can find an anchor PEB on the list of free PEBs */ 285 anchor = ubi_wl_get_fm_peb(ubi, 1); 286 if (anchor) { 287 ubi->fm_anchor = anchor; 288 spin_unlock(&ubi->wl_lock); 289 return 0; 290 } 291 292 /* No luck, trigger wear leveling to produce a new anchor PEB */ 293 ubi->fm_do_produce_anchor = 1; 294 if (ubi->wl_scheduled) { 295 spin_unlock(&ubi->wl_lock); 296 return 0; 297 } 298 ubi->wl_scheduled = 1; 299 spin_unlock(&ubi->wl_lock); 300 301 wrk = kmalloc(sizeof(struct ubi_work), GFP_NOFS); 302 if (!wrk) { 303 spin_lock(&ubi->wl_lock); 304 ubi->wl_scheduled = 0; 305 spin_unlock(&ubi->wl_lock); 306 return -ENOMEM; 307 } 308 309 wrk->func = &wear_leveling_worker; 310 __schedule_ubi_work(ubi, wrk); 311 return 0; 312 } 313 314 /** 315 * ubi_wl_put_fm_peb - returns a PEB used in a fastmap to the wear-leveling 316 * sub-system. 317 * see: ubi_wl_put_peb() 318 * 319 * @ubi: UBI device description object 320 * @fm_e: physical eraseblock to return 321 * @lnum: the last used logical eraseblock number for the PEB 322 * @torture: if this physical eraseblock has to be tortured 323 */ 324 int ubi_wl_put_fm_peb(struct ubi_device *ubi, struct ubi_wl_entry *fm_e, 325 int lnum, int torture) 326 { 327 struct ubi_wl_entry *e; 328 int vol_id, pnum = fm_e->pnum; 329 330 dbg_wl("PEB %d", pnum); 331 332 ubi_assert(pnum >= 0); 333 ubi_assert(pnum < ubi->peb_count); 334 335 spin_lock(&ubi->wl_lock); 336 e = ubi->lookuptbl[pnum]; 337 338 /* This can happen if we recovered from a fastmap the very 339 * first time and writing now a new one. In this case the wl system 340 * has never seen any PEB used by the original fastmap. 341 */ 342 if (!e) { 343 e = fm_e; 344 ubi_assert(e->ec >= 0); 345 ubi->lookuptbl[pnum] = e; 346 } 347 348 spin_unlock(&ubi->wl_lock); 349 350 vol_id = lnum ? UBI_FM_DATA_VOLUME_ID : UBI_FM_SB_VOLUME_ID; 351 return schedule_erase(ubi, e, vol_id, lnum, torture, true); 352 } 353 354 /** 355 * ubi_is_erase_work - checks whether a work is erase work. 356 * @wrk: The work object to be checked 357 */ 358 int ubi_is_erase_work(struct ubi_work *wrk) 359 { 360 return wrk->func == erase_worker; 361 } 362 363 static void ubi_fastmap_close(struct ubi_device *ubi) 364 { 365 int i; 366 367 return_unused_pool_pebs(ubi, &ubi->fm_pool); 368 return_unused_pool_pebs(ubi, &ubi->fm_wl_pool); 369 370 if (ubi->fm_anchor) { 371 return_unused_peb(ubi, ubi->fm_anchor); 372 ubi->fm_anchor = NULL; 373 } 374 375 if (ubi->fm) { 376 for (i = 0; i < ubi->fm->used_blocks; i++) 377 kfree(ubi->fm->e[i]); 378 } 379 kfree(ubi->fm); 380 } 381 382 /** 383 * may_reserve_for_fm - tests whether a PEB shall be reserved for fastmap. 384 * See find_mean_wl_entry() 385 * 386 * @ubi: UBI device description object 387 * @e: physical eraseblock to return 388 * @root: RB tree to test against. 389 */ 390 static struct ubi_wl_entry *may_reserve_for_fm(struct ubi_device *ubi, 391 struct ubi_wl_entry *e, 392 struct rb_root *root) { 393 if (e && !ubi->fm_disabled && !ubi->fm && 394 e->pnum < UBI_FM_MAX_START) 395 e = rb_entry(rb_next(root->rb_node), 396 struct ubi_wl_entry, u.rb); 397 398 return e; 399 } 400