diff options
Diffstat (limited to 'fs/ubifs')
-rw-r--r-- | fs/ubifs/budget.c | 210 | ||||
-rw-r--r-- | fs/ubifs/commit.c | 29 | ||||
-rw-r--r-- | fs/ubifs/compress.c | 18 | ||||
-rw-r--r-- | fs/ubifs/debug.c | 331 | ||||
-rw-r--r-- | fs/ubifs/debug.h | 117 | ||||
-rw-r--r-- | fs/ubifs/dir.c | 9 | ||||
-rw-r--r-- | fs/ubifs/file.c | 106 | ||||
-rw-r--r-- | fs/ubifs/ioctl.c | 2 | ||||
-rw-r--r-- | fs/ubifs/journal.c | 12 | ||||
-rw-r--r-- | fs/ubifs/key.h | 36 | ||||
-rw-r--r-- | fs/ubifs/lprops.c | 14 | ||||
-rw-r--r-- | fs/ubifs/lpt.c | 45 | ||||
-rw-r--r-- | fs/ubifs/lpt_commit.c | 212 | ||||
-rw-r--r-- | fs/ubifs/orphan.c | 30 | ||||
-rw-r--r-- | fs/ubifs/recovery.c | 17 | ||||
-rw-r--r-- | fs/ubifs/replay.c | 17 | ||||
-rw-r--r-- | fs/ubifs/sb.c | 29 | ||||
-rw-r--r-- | fs/ubifs/super.c | 325 | ||||
-rw-r--r-- | fs/ubifs/tnc.c | 43 | ||||
-rw-r--r-- | fs/ubifs/tnc_commit.c | 9 | ||||
-rw-r--r-- | fs/ubifs/ubifs-media.h | 7 | ||||
-rw-r--r-- | fs/ubifs/ubifs.h | 123 |
22 files changed, 1152 insertions, 589 deletions
diff --git a/fs/ubifs/budget.c b/fs/ubifs/budget.c index 1a4973e10664..0e5e54d82924 100644 --- a/fs/ubifs/budget.c +++ b/fs/ubifs/budget.c @@ -32,18 +32,15 @@ #include "ubifs.h" #include <linux/writeback.h> -#include <asm/div64.h> +#include <linux/math64.h> /* * When pessimistic budget calculations say that there is no enough space, * UBIFS starts writing back dirty inodes and pages, doing garbage collection, - * or committing. The below constants define maximum number of times UBIFS + * or committing. The below constant defines maximum number of times UBIFS * repeats the operations. */ -#define MAX_SHRINK_RETRIES 8 -#define MAX_GC_RETRIES 4 -#define MAX_CMT_RETRIES 2 -#define MAX_NOSPC_RETRIES 1 +#define MAX_MKSPC_RETRIES 3 /* * The below constant defines amount of dirty pages which should be written @@ -52,30 +49,6 @@ #define NR_TO_WRITE 16 /** - * struct retries_info - information about re-tries while making free space. - * @prev_liability: previous liability - * @shrink_cnt: how many times the liability was shrinked - * @shrink_retries: count of liability shrink re-tries (increased when - * liability does not shrink) - * @try_gc: GC should be tried first - * @gc_retries: how many times GC was run - * @cmt_retries: how many times commit has been done - * @nospc_retries: how many times GC returned %-ENOSPC - * - * Since we consider budgeting to be the fast-path, and this structure has to - * be allocated on stack and zeroed out, we make it smaller using bit-fields. - */ -struct retries_info { - long long prev_liability; - unsigned int shrink_cnt; - unsigned int shrink_retries:5; - unsigned int try_gc:1; - unsigned int gc_retries:4; - unsigned int cmt_retries:3; - unsigned int nospc_retries:1; -}; - -/** * shrink_liability - write-back some dirty pages/inodes. * @c: UBIFS file-system description object * @nr_to_write: how many dirty pages to write-back @@ -147,9 +120,25 @@ static int run_gc(struct ubifs_info *c) } /** + * get_liability - calculate current liability. + * @c: UBIFS file-system description object + * + * This function calculates and returns current UBIFS liability, i.e. the + * amount of bytes UBIFS has "promised" to write to the media. + */ +static long long get_liability(struct ubifs_info *c) +{ + long long liab; + + spin_lock(&c->space_lock); + liab = c->budg_idx_growth + c->budg_data_growth + c->budg_dd_growth; + spin_unlock(&c->space_lock); + return liab; +} + +/** * make_free_space - make more free space on the file-system. * @c: UBIFS file-system description object - * @ri: information about previous invocations of this function * * This function is called when an operation cannot be budgeted because there * is supposedly no free space. But in most cases there is some free space: @@ -165,87 +154,42 @@ static int run_gc(struct ubifs_info *c) * Returns %-ENOSPC if it couldn't do more free space, and other negative error * codes on failures. */ -static int make_free_space(struct ubifs_info *c, struct retries_info *ri) +static int make_free_space(struct ubifs_info *c) { - int err; - - /* - * If we have some dirty pages and inodes (liability), try to write - * them back unless this was tried too many times without effect - * already. - */ - if (ri->shrink_retries < MAX_SHRINK_RETRIES && !ri->try_gc) { - long long liability; - - spin_lock(&c->space_lock); - liability = c->budg_idx_growth + c->budg_data_growth + - c->budg_dd_growth; - spin_unlock(&c->space_lock); + int err, retries = 0; + long long liab1, liab2; - if (ri->prev_liability >= liability) { - /* Liability does not shrink, next time try GC then */ - ri->shrink_retries += 1; - if (ri->gc_retries < MAX_GC_RETRIES) - ri->try_gc = 1; - dbg_budg("liability did not shrink: retries %d of %d", - ri->shrink_retries, MAX_SHRINK_RETRIES); - } + do { + liab1 = get_liability(c); + /* + * We probably have some dirty pages or inodes (liability), try + * to write them back. + */ + dbg_budg("liability %lld, run write-back", liab1); + shrink_liability(c, NR_TO_WRITE); - dbg_budg("force write-back (count %d)", ri->shrink_cnt); - shrink_liability(c, NR_TO_WRITE + ri->shrink_cnt); + liab2 = get_liability(c); + if (liab2 < liab1) + return -EAGAIN; - ri->prev_liability = liability; - ri->shrink_cnt += 1; - return -EAGAIN; - } + dbg_budg("new liability %lld (not shrinked)", liab2); - /* - * Try to run garbage collector unless it was already tried too many - * times. - */ - if (ri->gc_retries < MAX_GC_RETRIES) { - ri->gc_retries += 1; - dbg_budg("run GC, retries %d of %d", - ri->gc_retries, MAX_GC_RETRIES); - - ri->try_gc = 0; + /* Liability did not shrink again, try GC */ + dbg_budg("Run GC"); err = run_gc(c); if (!err) return -EAGAIN; - if (err == -EAGAIN) { - dbg_budg("GC asked to commit"); - err = ubifs_run_commit(c); - if (err) - return err; - return -EAGAIN; - } - - if (err != -ENOSPC) - return err; - - /* - * GC could not make any progress. If this is the first time, - * then it makes sense to try to commit, because it might make - * some dirty space. - */ - dbg_budg("GC returned -ENOSPC, retries %d", - ri->nospc_retries); - if (ri->nospc_retries >= MAX_NOSPC_RETRIES) + if (err != -EAGAIN && err != -ENOSPC) + /* Some real error happened */ return err; - ri->nospc_retries += 1; - } - /* Neither GC nor write-back helped, try to commit */ - if (ri->cmt_retries < MAX_CMT_RETRIES) { - ri->cmt_retries += 1; - dbg_budg("run commit, retries %d of %d", - ri->cmt_retries, MAX_CMT_RETRIES); + dbg_budg("Run commit (retries %d)", retries); err = ubifs_run_commit(c); if (err) return err; - return -EAGAIN; - } + } while (retries++ < MAX_MKSPC_RETRIES); + return -ENOSPC; } @@ -258,8 +202,8 @@ static int make_free_space(struct ubifs_info *c, struct retries_info *ri) */ int ubifs_calc_min_idx_lebs(struct ubifs_info *c) { - int ret; - uint64_t idx_size; + int idx_lebs, eff_leb_size = c->leb_size - c->max_idx_node_sz; + long long idx_size; idx_size = c->old_idx_sz + c->budg_idx_growth + c->budg_uncommitted_idx; @@ -271,23 +215,16 @@ int ubifs_calc_min_idx_lebs(struct ubifs_info *c) * pair, nor similarly the two variables for the new index size, so we * have to do this costly 64-bit division on fast-path. */ - if (do_div(idx_size, c->leb_size - c->max_idx_node_sz)) - ret = idx_size + 1; - else - ret = idx_size; + idx_size += eff_leb_size - 1; + idx_lebs = div_u64(idx_size, eff_leb_size); /* * The index head is not available for the in-the-gaps method, so add an * extra LEB to compensate. */ - ret += 1; - /* - * At present the index needs at least 2 LEBs: one for the index head - * and one for in-the-gaps method (which currently does not cater for - * the index head and so excludes it from consideration). - */ - if (ret < 2) - ret = 2; - return ret; + idx_lebs += 1; + if (idx_lebs < MIN_INDEX_LEBS) + idx_lebs = MIN_INDEX_LEBS; + return idx_lebs; } /** @@ -363,7 +300,7 @@ long long ubifs_calc_available(const struct ubifs_info *c, int min_idx_lebs) */ static int can_use_rp(struct ubifs_info *c) { - if (current->fsuid == c->rp_uid || capable(CAP_SYS_RESOURCE) || + if (current_fsuid() == c->rp_uid || capable(CAP_SYS_RESOURCE) || (c->rp_gid != 0 && in_group_p(c->rp_gid))) return 1; return 0; @@ -530,8 +467,7 @@ static int calc_dd_growth(const struct ubifs_info *c, int ubifs_budget_space(struct ubifs_info *c, struct ubifs_budget_req *req) { int uninitialized_var(cmt_retries), uninitialized_var(wb_retries); - int err, idx_growth, data_growth, dd_growth; - struct retries_info ri; + int err, idx_growth, data_growth, dd_growth, retried = 0; ubifs_assert(req->new_page <= 1); ubifs_assert(req->dirtied_page <= 1); @@ -549,7 +485,6 @@ int ubifs_budget_space(struct ubifs_info *c, struct ubifs_budget_req *req) if (!data_growth && !dd_growth) return 0; idx_growth = calc_idx_growth(c, req); - memset(&ri, 0, sizeof(struct retries_info)); again: spin_lock(&c->space_lock); @@ -587,12 +522,17 @@ again: return err; } - err = make_free_space(c, &ri); + err = make_free_space(c); + cond_resched(); if (err == -EAGAIN) { dbg_budg("try again"); - cond_resched(); goto again; } else if (err == -ENOSPC) { + if (!retried) { + retried = 1; + dbg_budg("-ENOSPC, but anyway try once again"); + goto again; + } dbg_budg("FS is full, -ENOSPC"); c->nospace = 1; if (can_use_rp(c) || c->rp_size == 0) @@ -712,9 +652,9 @@ void ubifs_release_dirty_inode_budget(struct ubifs_info *c, * user-space. User-space application tend to expect that if the file-system * (e.g., via the 'statfs()' call) reports that it has N bytes available, they * are able to write a file of size N. UBIFS attaches node headers to each data - * node and it has to write indexind nodes as well. This introduces additional - * overhead, and UBIFS it has to report sligtly less free space to meet the - * above expectetion. + * node and it has to write indexing nodes as well. This introduces additional + * overhead, and UBIFS has to report slightly less free space to meet the above + * expectations. * * This function assumes free space is made up of uncompressed data nodes and * full index nodes (one per data node, tripled because we always allow enough @@ -723,7 +663,7 @@ void ubifs_release_dirty_inode_budget(struct ubifs_info *c, * Note, the calculation is pessimistic, which means that most of the time * UBIFS reports less space than it actually has. */ -long long ubifs_reported_space(const struct ubifs_info *c, uint64_t free) +long long ubifs_reported_space(const struct ubifs_info *c, long long free) { int divisor, factor, f; @@ -737,7 +677,7 @@ long long ubifs_reported_space(const struct ubifs_info *c, uint64_t free) * of data nodes, f - fanout. Because effective UBIFS fanout is twice * as less than maximum fanout, we assume that each data node * introduces 3 * @c->max_idx_node_sz / (@c->fanout/2 - 1) bytes. - * Note, the multiplier 3 is because UBIFS reseves thrice as more space + * Note, the multiplier 3 is because UBIFS reserves thrice as more space * for the index. */ f = c->fanout > 3 ? c->fanout >> 1 : 2; @@ -745,8 +685,7 @@ long long ubifs_reported_space(const struct ubifs_info *c, uint64_t free) divisor = UBIFS_MAX_DATA_NODE_SZ; divisor += (c->max_idx_node_sz * 3) / (f - 1); free *= factor; - do_div(free, divisor); - return free; + return div_u64(free, divisor); } /** @@ -756,10 +695,10 @@ long long ubifs_reported_space(const struct ubifs_info *c, uint64_t free) * This function calculates amount of free space to report to user-space. * * Because UBIFS may introduce substantial overhead (the index, node headers, - * alighment, wastage at the end of eraseblocks, etc), it cannot report real + * alignment, wastage at the end of eraseblocks, etc), it cannot report real * amount of free flash space it has (well, because not all dirty space is - * reclamable, UBIFS does not actually know the real amount). If UBIFS did so, - * it would bread user expectetion about what free space is. Users seem to + * reclaimable, UBIFS does not actually know the real amount). If UBIFS did so, + * it would bread user expectations about what free space is. Users seem to * accustomed to assume that if the file-system reports N bytes of free space, * they would be able to fit a file of N bytes to the FS. This almost works for * traditional file-systems, because they have way less overhead than UBIFS. @@ -771,18 +710,9 @@ long long ubifs_get_free_space(struct ubifs_info *c) long long available, outstanding, free; spin_lock(&c->space_lock); - min_idx_lebs = ubifs_calc_min_idx_lebs(c); + min_idx_lebs = c->min_idx_lebs; + ubifs_assert(min_idx_lebs == ubifs_calc_min_idx_lebs(c)); outstanding = c->budg_data_growth + c->budg_dd_growth; - - /* - * Force the amount available to the total size reported if the used - * space is zero. - */ - if (c->lst.total_used <= UBIFS_INO_NODE_SZ && !outstanding) { - spin_unlock(&c->space_lock); - return (long long)c->block_cnt << UBIFS_BLOCK_SHIFT; - } - available = ubifs_calc_available(c, min_idx_lebs); /* diff --git a/fs/ubifs/commit.c b/fs/ubifs/commit.c index 0a6aa2cc78f0..f3a7945527fb 100644 --- a/fs/ubifs/commit.c +++ b/fs/ubifs/commit.c @@ -234,8 +234,8 @@ int ubifs_bg_thread(void *info) int err; struct ubifs_info *c = info; - ubifs_msg("background thread \"%s\" started, PID %d", - c->bgt_name, current->pid); + dbg_msg("background thread \"%s\" started, PID %d", + c->bgt_name, current->pid); set_freezable(); while (1) { @@ -470,12 +470,12 @@ int dbg_old_index_check_init(struct ubifs_info *c, struct ubifs_zbranch *zroot) { struct ubifs_idx_node *idx; int lnum, offs, len, err = 0; + struct ubifs_debug_info *d = c->dbg; - c->old_zroot = *zroot; - - lnum = c->old_zroot.lnum; - offs = c->old_zroot.offs; - len = c->old_zroot.len; + d->old_zroot = *zroot; + lnum = d->old_zroot.lnum; + offs = d->old_zroot.offs; + len = d->old_zroot.len; idx = kmalloc(c->max_idx_node_sz, GFP_NOFS); if (!idx) @@ -485,8 +485,8 @@ int dbg_old_index_check_init(struct ubifs_info *c, struct ubifs_zbranch *zroot) if (err) goto out; - c->old_zroot_level = le16_to_cpu(idx->level); - c->old_zroot_sqnum = le64_to_cpu(idx->ch.sqnum); + d->old_zroot_level = le16_to_cpu(idx->level); + d->old_zroot_sqnum = le64_to_cpu(idx->ch.sqnum); out: kfree(idx); return err; @@ -509,6 +509,7 @@ int dbg_check_old_index(struct ubifs_info *c, struct ubifs_zbranch *zroot) { int lnum, offs, len, err = 0, uninitialized_var(last_level), child_cnt; int first = 1, iip; + struct ubifs_debug_info *d = c->dbg; union ubifs_key lower_key, upper_key, l_key, u_key; unsigned long long uninitialized_var(last_sqnum); struct ubifs_idx_node *idx; @@ -525,9 +526,9 @@ int dbg_check_old_index(struct ubifs_info *c, struct ubifs_zbranch *zroot) UBIFS_IDX_NODE_SZ; /* Start at the old zroot */ - lnum = c->old_zroot.lnum; - offs = c->old_zroot.offs; - len = c->old_zroot.len; + lnum = d->old_zroot.lnum; + offs = d->old_zroot.offs; + len = d->old_zroot.len; iip = 0; /* @@ -560,11 +561,11 @@ int dbg_check_old_index(struct ubifs_info *c, struct ubifs_zbranch *zroot) if (first) { first = 0; /* Check root level and sqnum */ - if (le16_to_cpu(idx->level) != c->old_zroot_level) { + if (le16_to_cpu(idx->level) != d->old_zroot_level) { err = 2; goto out_dump; } - if (le64_to_cpu(idx->ch.sqnum) != c->old_zroot_sqnum) { + if (le64_to_cpu(idx->ch.sqnum) != d->old_zroot_sqnum) { err = 3; goto out_dump; } diff --git a/fs/ubifs/compress.c b/fs/ubifs/compress.c index a0ada596b17c..11e4132f314a 100644 --- a/fs/ubifs/compress.c +++ b/fs/ubifs/compress.c @@ -33,7 +33,7 @@ /* Fake description object for the "none" compressor */ static struct ubifs_compressor none_compr = { .compr_type = UBIFS_COMPR_NONE, - .name = "no compression", + .name = "none", .capi_name = "", }; @@ -43,13 +43,13 @@ static DEFINE_MUTEX(lzo_mutex); static struct ubifs_compressor lzo_compr = { .compr_type = UBIFS_COMPR_LZO, .comp_mutex = &lzo_mutex, - .name = "LZO", + .name = "lzo", .capi_name = "lzo", }; #else static struct ubifs_compressor lzo_compr = { .compr_type = UBIFS_COMPR_LZO, - .name = "LZO", + .name = "lzo", }; #endif @@ -108,7 +108,7 @@ void ubifs_compress(const void *in_buf, int in_len, void *out_buf, int *out_len, if (compr->comp_mutex) mutex_lock(compr->comp_mutex); err = crypto_comp_compress(compr->cc, in_buf, in_len, out_buf, - out_len); + (unsigned int *)out_len); if (compr->comp_mutex) mutex_unlock(compr->comp_mutex); if (unlikely(err)) { @@ -119,10 +119,10 @@ void ubifs_compress(const void *in_buf, int in_len, void *out_buf, int *out_len, } /* - * Presently, we just require that compression results in less data, - * rather than any defined minimum compression ratio or amount. + * If the data compressed only slightly, it is better to leave it + * uncompressed to improve read speed. */ - if (ALIGN(*out_len, 8) >= ALIGN(in_len, 8)) + if (in_len - *out_len < UBIFS_MIN_COMPRESS_DIFF) goto no_compr; return; @@ -172,7 +172,7 @@ int ubifs_decompress(const void *in_buf, int in_len, void *out_buf, if (compr->decomp_mutex) mutex_lock(compr->decomp_mutex); err = crypto_comp_decompress(compr->cc, in_buf, in_len, out_buf, - out_len); + (unsigned int *)out_len); if (compr->decomp_mutex) mutex_unlock(compr->decomp_mutex); if (err) @@ -244,7 +244,7 @@ out_lzo: /** * ubifs_compressors_exit - de-initialize UBIFS compressors. */ -void __exit ubifs_compressors_exit(void) +void ubifs_compressors_exit(void) { compr_exit(&lzo_compr); compr_exit(&zlib_compr); diff --git a/fs/ubifs/debug.c b/fs/ubifs/debug.c index 7186400750e7..792c5a16c182 100644 --- a/fs/ubifs/debug.c +++ b/fs/ubifs/debug.c @@ -32,6 +32,8 @@ #include "ubifs.h" #include <linux/module.h> #include <linux/moduleparam.h> +#include <linux/debugfs.h> +#include <linux/math64.h> #ifdef CONFIG_UBIFS_FS_DEBUG @@ -101,21 +103,24 @@ static void sprintf_key(const struct ubifs_info *c, const union ubifs_key *key, if (c->key_fmt == UBIFS_SIMPLE_KEY_FMT) { switch (type) { case UBIFS_INO_KEY: - sprintf(p, "(%lu, %s)", key_inum(c, key), + sprintf(p, "(%lu, %s)", (unsigned long)key_inum(c, key), get_key_type(type)); break; case UBIFS_DENT_KEY: case UBIFS_XENT_KEY: - sprintf(p, "(%lu, %s, %#08x)", key_inum(c, key), + sprintf(p, "(%lu, %s, %#08x)", + (unsigned long)key_inum(c, key), get_key_type(type), key_hash(c, key)); break; case UBIFS_DATA_KEY: - sprintf(p, "(%lu, %s, %u)", key_inum(c, key), + sprintf(p, "(%lu, %s, %u)", + (unsigned long)key_inum(c, key), get_key_type(type), key_block(c, key)); break; case UBIFS_TRUN_KEY: sprintf(p, "(%lu, %s)", - key_inum(c, key), get_key_type(type)); + (unsigned long)key_inum(c, key), + get_key_type(type)); break; default: sprintf(p, "(bad key type: %#08x, %#08x)", @@ -364,8 +369,8 @@ void dbg_dump_node(const struct ubifs_info *c, const void *node) le32_to_cpu(mst->ihead_lnum)); printk(KERN_DEBUG "\tihead_offs %u\n", le32_to_cpu(mst->ihead_offs)); - printk(KERN_DEBUG "\tindex_size %u\n", - le32_to_cpu(mst->index_size)); + printk(KERN_DEBUG "\tindex_size %llu\n", + (unsigned long long)le64_to_cpu(mst->index_size)); printk(KERN_DEBUG "\tlpt_lnum %u\n", le32_to_cpu(mst->lpt_lnum)); printk(KERN_DEBUG "\tlpt_offs %u\n", @@ -593,7 +598,9 @@ void dbg_dump_budg(struct ubifs_info *c) struct rb_node *rb; struct ubifs_bud *bud; struct ubifs_gced_idx_leb *idx_gc; + long long available, outstanding, free; + ubifs_assert(spin_is_locked(&c->space_lock)); spin_lock(&dbg_lock); printk(KERN_DEBUG "(pid %d) Budgeting info: budg_data_growth %lld, " "budg_dd_growth %lld, budg_idx_growth %lld\n", current->pid, @@ -626,6 +633,17 @@ void dbg_dump_budg(struct ubifs_info *c) printk(KERN_DEBUG "\tGC'ed idx LEB %d unmap %d\n", idx_gc->lnum, idx_gc->unmap); printk(KERN_DEBUG "\tcommit state %d\n", c->cmt_state); + + /* Print budgeting predictions */ + available = ubifs_calc_available(c, c->min_idx_lebs); + outstanding = c->budg_data_growth + c->budg_dd_growth; + if (available > outstanding) + free = ubifs_reported_space(c, available - outstanding); + else + free = 0; + printk(KERN_DEBUG "Budgeting predictions:\n"); + printk(KERN_DEBUG "\tavailable: %lld, outstanding %lld, free %lld\n", + available, outstanding, free); spin_unlock(&dbg_lock); } @@ -642,7 +660,8 @@ void dbg_dump_lprops(struct ubifs_info *c) struct ubifs_lprops lp; struct ubifs_lp_stats lst; - printk(KERN_DEBUG "(pid %d) Dumping LEB properties\n", current->pid); + printk(KERN_DEBUG "(pid %d) start dumping LEB properties\n", + current->pid); ubifs_get_lp_stats(c, &lst); dbg_dump_lstats(&lst); @@ -653,6 +672,8 @@ void dbg_dump_lprops(struct ubifs_info *c) dbg_dump_lprop(c, &lp); } + printk(KERN_DEBUG "(pid %d) finish dumping LEB properties\n", + current->pid); } void dbg_dump_lpt_info(struct ubifs_info *c) @@ -660,6 +681,7 @@ void dbg_dump_lpt_info(struct ubifs_info *c) int i; spin_lock(&dbg_lock); + printk(KERN_DEBUG "(pid %d) dumping LPT information\n", current->pid); printk(KERN_DEBUG "\tlpt_sz: %lld\n", c->lpt_sz); printk(KERN_DEBUG "\tpnode_sz: %d\n", c->pnode_sz); printk(KERN_DEBUG "\tnnode_sz: %d\n", c->nnode_sz); @@ -681,7 +703,8 @@ void dbg_dump_lpt_info(struct ubifs_info *c) printk(KERN_DEBUG "\tLPT root is at %d:%d\n", c->lpt_lnum, c->lpt_offs); printk(KERN_DEBUG "\tLPT head is at %d:%d\n", c->nhead_lnum, c->nhead_offs); - printk(KERN_DEBUG "\tLPT ltab is at %d:%d\n", c->ltab_lnum, c->ltab_offs); + printk(KERN_DEBUG "\tLPT ltab is at %d:%d\n", + c->ltab_lnum, c->ltab_offs); if (c->big_lpt) printk(KERN_DEBUG "\tLPT lsave is at %d:%d\n", c->lsave_lnum, c->lsave_offs); @@ -700,9 +723,9 @@ void dbg_dump_leb(const struct ubifs_info *c, int lnum) if (dbg_failure_mode) return; - printk(KERN_DEBUG "(pid %d) Dumping LEB %d\n", current->pid, lnum); - - sleb = ubifs_scan(c, lnum, 0, c->dbg_buf); + printk(KERN_DEBUG "(pid %d) start dumping LEB %d\n", + current->pid, lnum); + sleb = ubifs_scan(c, lnum, 0, c->dbg->buf); if (IS_ERR(sleb)) { ubifs_err("scan error %d", (int)PTR_ERR(sleb)); return; @@ -718,6 +741,8 @@ void dbg_dump_leb(const struct ubifs_info *c, int lnum) dbg_dump_node(c, snod->node); } + printk(KERN_DEBUG "(pid %d) finish dumping LEB %d\n", + current->pid, lnum); ubifs_scan_destroy(sleb); return; } @@ -765,7 +790,7 @@ void dbg_dump_heap(struct ubifs_info *c, struct ubifs_lpt_heap *heap, int cat) { int i; - printk(KERN_DEBUG "(pid %d) Dumping heap cat %d (%d elements)\n", + printk(KERN_DEBUG "(pid %d) start dumping heap cat %d (%d elements)\n", current->pid, cat, heap->cnt); for (i = 0; i < heap->cnt; i++) { struct ubifs_lprops *lprops = heap->arr[i]; @@ -774,6 +799,7 @@ void dbg_dump_heap(struct ubifs_info *c, struct ubifs_lpt_heap *heap, int cat) "flags %d\n", i, lprops->lnum, lprops->hpos, lprops->free, lprops->dirty, lprops->flags); } + printk(KERN_DEBUG "(pid %d) finish dumping heap\n", current->pid); } void dbg_dump_pnode(struct ubifs_info *c, struct ubifs_pnode *pnode, @@ -781,7 +807,7 @@ void dbg_dump_pnode(struct ubifs_info *c, struct ubifs_pnode *pnode, { int i; - printk(KERN_DEBUG "(pid %d) Dumping pnode:\n", current->pid); + printk(KERN_DEBUG "(pid %d) dumping pnode:\n", current->pid); printk(KERN_DEBUG "\taddress %zx parent %zx cnext %zx\n", (size_t)pnode, (size_t)parent, (size_t)pnode->cnext); printk(KERN_DEBUG "\tflags %lu iip %d level %d num %d\n", @@ -800,7 +826,7 @@ void dbg_dump_tnc(struct ubifs_info *c) int level; printk(KERN_DEBUG "\n"); - printk(KERN_DEBUG "(pid %d) Dumping the TNC tree\n", current->pid); + printk(KERN_DEBUG "(pid %d) start dumping TNC tree\n", current->pid); znode = ubifs_tnc_levelorder_next(c->zroot.znode, NULL); level = znode->level; printk(KERN_DEBUG "== Level %d ==\n", level); @@ -812,8 +838,7 @@ void dbg_dump_tnc(struct ubifs_info *c) dbg_dump_znode(c, znode); znode = ubifs_tnc_levelorder_next(c->zroot.znode, znode); } - - printk(KERN_DEBUG "\n"); + printk(KERN_DEBUG "(pid %d) finish dumping TNC tree\n", current->pid); } static int dump_znode(struct ubifs_info *c, struct ubifs_znode *znode, @@ -989,8 +1014,8 @@ static int dbg_check_key_order(struct ubifs_info *c, struct ubifs_zbranch *zbr1, zbr1->offs, DBGKEY(&key)); dbg_err("but it should have key %s according to tnc", DBGKEY(&zbr1->key)); - dbg_dump_node(c, dent1); - goto out_free; + dbg_dump_node(c, dent1); + goto out_free; } key_read(c, &dent2->key, &key); @@ -999,8 +1024,8 @@ static int dbg_check_key_order(struct ubifs_info *c, struct ubifs_zbranch *zbr1, zbr1->offs, DBGKEY(&key)); dbg_err("but it should have key %s according to tnc", DBGKEY(&zbr2->key)); - dbg_dump_node(c, dent2); - goto out_free; + dbg_dump_node(c, dent2); + goto out_free; } nlen1 = le16_to_cpu(dent1->nlen); @@ -1017,9 +1042,9 @@ static int dbg_check_key_order(struct ubifs_info *c, struct ubifs_zbranch *zbr1, dbg_err("bad order of colliding key %s", DBGKEY(&key)); - dbg_msg("first node at %d:%d\n", zbr1->lnum, zbr1->offs); + ubifs_msg("first node at %d:%d\n", zbr1->lnum, zbr1->offs); dbg_dump_node(c, dent1); - dbg_msg("second node at %d:%d\n", zbr2->lnum, zbr2->offs); + ubifs_msg("second node at %d:%d\n", zbr2->lnum, zbr2->offs); dbg_dump_node(c, dent2); out_free: @@ -1589,7 +1614,7 @@ static struct fsck_inode *add_inode(struct ubifs_info *c, if (inum > c->highest_inum) { ubifs_err("too high inode number, max. is %lu", - c->highest_inum); + (unsigned long)c->highest_inum); return ERR_PTR(-EINVAL); } @@ -1668,16 +1693,18 @@ static struct fsck_inode *read_add_inode(struct ubifs_info *c, ino_key_init(c, &key, inum); err = ubifs_lookup_level0(c, &key, &znode, &n); if (!err) { - ubifs_err("inode %lu not found in index", inum); + ubifs_err("inode %lu not found in index", (unsigned long)inum); return ERR_PTR(-ENOENT); } else if (err < 0) { - ubifs_err("error %d while looking up inode %lu", err, inum); + ubifs_err("error %d while looking up inode %lu", + err, (unsigned long)inum); return ERR_PTR(err); } zbr = &znode->zbranch[n]; if (zbr->len < UBIFS_INO_NODE_SZ) { - ubifs_err("bad node %lu node length %d", inum, zbr->len); + ubifs_err("bad node %lu node length %d", + (unsigned long)inum, zbr->len); return ERR_PTR(-EINVAL); } @@ -1697,7 +1724,7 @@ static struct fsck_inode *read_add_inode(struct ubifs_info *c, kfree(ino); if (IS_ERR(fscki)) { ubifs_err("error %ld while adding inode %lu node", - PTR_ERR(fscki), inum); + PTR_ERR(fscki), (unsigned long)inum); return fscki; } @@ -1786,7 +1813,8 @@ static int check_leaf(struct ubifs_info *c, struct ubifs_zbranch *zbr, if (IS_ERR(fscki)) { err = PTR_ERR(fscki); ubifs_err("error %d while processing data node and " - "trying to find inode node %lu", err, inum); + "trying to find inode node %lu", + err, (unsigned long)inum); goto out_dump; } @@ -1819,7 +1847,8 @@ static int check_leaf(struct ubifs_info *c, struct ubifs_zbranch *zbr, if (IS_ERR(fscki)) { err = PTR_ERR(fscki); ubifs_err("error %d while processing entry node and " - "trying to find inode node %lu", err, inum); + "trying to find inode node %lu", + err, (unsigned long)inum); goto out_dump; } @@ -1832,7 +1861,7 @@ static int check_leaf(struct ubifs_info *c, struct ubifs_zbranch *zbr, err = PTR_ERR(fscki); ubifs_err("error %d while processing entry node and " "trying to find parent inode node %lu", - err, inum); + err, (unsigned long)inum); goto out_dump; } @@ -1923,7 +1952,8 @@ static int check_inodes(struct ubifs_info *c, struct fsck_data *fsckd) fscki->references != 1) { ubifs_err("directory inode %lu has %d " "direntries which refer it, but " - "should be 1", fscki->inum, + "should be 1", + (unsigned long)fscki->inum, fscki->references); goto out_dump; } @@ -1931,27 +1961,29 @@ static int check_inodes(struct ubifs_info *c, struct fsck_data *fsckd) fscki->references != 0) { ubifs_err("root inode %lu has non-zero (%d) " "direntries which refer it", - fscki->inum, fscki->references); + (unsigned long)fscki->inum, + fscki->references); goto out_dump; } if (fscki->calc_sz != fscki->size) { ubifs_err("directory inode %lu size is %lld, " "but calculated size is %lld", - fscki->inum, fscki->size, - fscki->calc_sz); + (unsigned long)fscki->inum, + fscki->size, fscki->calc_sz); goto out_dump; } if (fscki->calc_cnt != fscki->nlink) { ubifs_err("directory inode %lu nlink is %d, " "but calculated nlink is %d", - fscki->inum, fscki->nlink, - fscki->calc_cnt); + (unsigned long)fscki->inum, + fscki->nlink, fscki->calc_cnt); goto out_dump; } } else { if (fscki->references != fscki->nlink) { ubifs_err("inode %lu nlink is %d, but " - "calculated nlink is %d", fscki->inum, + "calculated nlink is %d", + (unsigned long)fscki->inum, fscki->nlink, fscki->references); goto out_dump; } @@ -1959,20 +1991,21 @@ static int check_inodes(struct ubifs_info *c, struct fsck_data *fsckd) if (fscki->xattr_sz != fscki->calc_xsz) { ubifs_err("inode %lu has xattr size %u, but " "calculated size is %lld", - fscki->inum, fscki->xattr_sz, + (unsigned long)fscki->inum, fscki->xattr_sz, fscki->calc_xsz); goto out_dump; } if (fscki->xattr_cnt != fscki->calc_xcnt) { ubifs_err("inode %lu has %u xattrs, but " - "calculated count is %lld", fscki->inum, + "calculated count is %lld", + (unsigned long)fscki->inum, fscki->xattr_cnt, fscki->calc_xcnt); goto out_dump; } if (fscki->xattr_nms != fscki->calc_xnms) { ubifs_err("inode %lu has xattr names' size %u, but " "calculated names' size is %lld", - fscki->inum, fscki->xattr_nms, + (unsigned long)fscki->inum, fscki->xattr_nms, fscki->calc_xnms); goto out_dump; } @@ -1985,11 +2018,12 @@ out_dump: ino_key_init(c, &key, fscki->inum); err = ubifs_lookup_level0(c, &key, &znode, &n); if (!err) { - ubifs_err("inode %lu not found in index", fscki->inum); + ubifs_err("inode %lu not found in index", + (unsigned long)fscki->inum); return -ENOENT; } else if (err < 0) { ubifs_err("error %d while looking up inode %lu", - err, fscki->inum); + err, (unsigned long)fscki->inum); return err; } @@ -2007,7 +2041,7 @@ out_dump: } ubifs_msg("dump of the inode %lu sitting in LEB %d:%d", - fscki->inum, zbr->lnum, zbr->offs); + (unsigned long)fscki->inum, zbr->lnum, zbr->offs); dbg_dump_node(c, ino); kfree(ino); return -EINVAL; @@ -2085,13 +2119,13 @@ static int simple_rand(void) return (next >> 16) & 32767; } -void dbg_failure_mode_registration(struct ubifs_info *c) +static void failure_mode_init(struct ubifs_info *c) { struct failure_mode_info *fmi; fmi = kmalloc(sizeof(struct failure_mode_info), GFP_NOFS); if (!fmi) { - dbg_err("Failed to register failure mode - no memory"); + ubifs_err("Failed to register failure mode - no memory"); return; } fmi->c = c; @@ -2100,7 +2134,7 @@ void dbg_failure_mode_registration(struct ubifs_info *c) spin_unlock(&fmi_lock); } -void dbg_failure_mode_deregistration(struct ubifs_info *c) +static void failure_mode_exit(struct ubifs_info *c) { struct failure_mode_info *fmi, *tmp; @@ -2134,42 +2168,44 @@ static int in_failure_mode(struct ubi_volume_desc *desc) struct ubifs_info *c = dbg_find_info(desc); if (c && dbg_failure_mode) - return c->failure_mode; + return c->dbg->failure_mode; return 0; } static int do_fail(struct ubi_volume_desc *desc, int lnum, int write) { struct ubifs_info *c = dbg_find_info(desc); + struct ubifs_debug_info *d; if (!c || !dbg_failure_mode) return 0; - if (c->failure_mode) + d = c->dbg; + if (d->failure_mode) return 1; - if (!c->fail_cnt) { + if (!d->fail_cnt) { /* First call - decide delay to failure */ if (chance(1, 2)) { unsigned int delay = 1 << (simple_rand() >> 11); if (chance(1, 2)) { - c->fail_delay = 1; - c->fail_timeout = jiffies + + d->fail_delay = 1; + d->fail_timeout = jiffies + msecs_to_jiffies(delay); dbg_rcvry("failing after %ums", delay); } else { - c->fail_delay = 2; - c->fail_cnt_max = delay; + d->fail_delay = 2; + d->fail_cnt_max = delay; dbg_rcvry("failing after %u calls", delay); } } - c->fail_cnt += 1; + d->fail_cnt += 1; } /* Determine if failure delay has expired */ - if (c->fail_delay == 1) { - if (time_before(jiffies, c->fail_timeout)) + if (d->fail_delay == 1) { + if (time_before(jiffies, d->fail_timeout)) return 0; - } else if (c->fail_delay == 2) - if (c->fail_cnt++ < c->fail_cnt_max) + } else if (d->fail_delay == 2) + if (d->fail_cnt++ < d->fail_cnt_max) return 0; if (lnum == UBIFS_SB_LNUM) { if (write) { @@ -2227,7 +2263,7 @@ static int do_fail(struct ubi_volume_desc *desc, int lnum, int write) dbg_rcvry("failing in bud LEB %d commit not running", lnum); } ubifs_err("*** SETTING FAILURE MODE ON (LEB %d) ***", lnum); - c->failure_mode = 1; + d->failure_mode = 1; dump_stack(); return 1; } @@ -2332,4 +2368,181 @@ int dbg_leb_map(struct ubi_volume_desc *desc, int lnum, int dtype) return 0; } +/** + * ubifs_debugging_init - initialize UBIFS debugging. + * @c: UBIFS file-system description object + * + * This function initializes debugging-related data for the file system. + * Returns zero in case of success and a negative error code in case of + * failure. + */ +int ubifs_debugging_init(struct ubifs_info *c) +{ + c->dbg = kzalloc(sizeof(struct ubifs_debug_info), GFP_KERNEL); + if (!c->dbg) + return -ENOMEM; + + c->dbg->buf = vmalloc(c->leb_size); + if (!c->dbg->buf) + goto out; + + failure_mode_init(c); + return 0; + +out: + kfree(c->dbg); + return -ENOMEM; +} + +/** + * ubifs_debugging_exit - free debugging data. + * @c: UBIFS file-system description object + */ +void ubifs_debugging_exit(struct ubifs_info *c) +{ + failure_mode_exit(c); + vfree(c->dbg->buf); + kfree(c->dbg); +} + +/* + * Root directory for UBIFS stuff in debugfs. Contains sub-directories which + * contain the stuff specific to particular file-system mounts. + */ +static struct dentry *debugfs_rootdir; + +/** + * dbg_debugfs_init - initialize debugfs file-system. + * + * UBIFS uses debugfs file-system to expose various debugging knobs to + * user-space. This function creates "ubifs" directory in the debugfs + * file-system. Returns zero in case of success and a negative error code in + * case of failure. + */ +int dbg_debugfs_init(void) +{ + debugfs_rootdir = debugfs_create_dir("ubifs", NULL); + if (IS_ERR(debugfs_rootdir)) { + int err = PTR_ERR(debugfs_rootdir); + ubifs_err("cannot create \"ubifs\" debugfs directory, " + "error %d\n", err); + return err; + } + + return 0; +} + +/** + * dbg_debugfs_exit - remove the "ubifs" directory from debugfs file-system. + */ +void dbg_debugfs_exit(void) +{ + debugfs_remove(debugfs_rootdir); +} + +static int open_debugfs_file(struct inode *inode, struct file *file) +{ + file->private_data = inode->i_private; + return 0; +} + +static ssize_t write_debugfs_file(struct file *file, const char __user *buf, + size_t count, loff_t *ppos) +{ + struct ubifs_info *c = file->private_data; + struct ubifs_debug_info *d = c->dbg; + + if (file->f_path.dentry == d->dump_lprops) + dbg_dump_lprops(c); + else if (file->f_path.dentry == d->dump_budg) { + spin_lock(&c->space_lock); + dbg_dump_budg(c); + spin_unlock(&c->space_lock); + } else if (file->f_path.dentry == d->dump_tnc) { + mutex_lock(&c->tnc_mutex); + dbg_dump_tnc(c); + mutex_unlock(&c->tnc_mutex); + } else + return -EINVAL; + + *ppos += count; + return count; +} + +static const struct file_operations debugfs_fops = { + .open = open_debugfs_file, + .write = write_debugfs_file, + .owner = THIS_MODULE, +}; + +/** + * dbg_debugfs_init_fs - initialize debugfs for UBIFS instance. + * @c: UBIFS file-system description object + * + * This function creates all debugfs files for this instance of UBIFS. Returns + * zero in case of success and a negative error code in case of failure. + * + * Note, the only reason we have not merged this function with the + * 'ubifs_debugging_init()' function is because it is better to initialize + * debugfs interfaces at the very end of the mount process, and remove them at + * the very beginning of the mount process. + */ +int dbg_debugfs_init_fs(struct ubifs_info *c) +{ + int err; + const char *fname; + struct dentry *dent; + struct ubifs_debug_info *d = c->dbg; + + sprintf(d->debugfs_dir_name, "ubi%d_%d", c->vi.ubi_num, c->vi.vol_id); + d->debugfs_dir = debugfs_create_dir(d->debugfs_dir_name, + debugfs_rootdir); + if (IS_ERR(d->debugfs_dir)) { + err = PTR_ERR(d->debugfs_dir); + ubifs_err("cannot create \"%s\" debugfs directory, error %d\n", + d->debugfs_dir_name, err); + goto out; + } + + fname = "dump_lprops"; + dent = debugfs_create_file(fname, S_IWUGO, d->debugfs_dir, c, + &debugfs_fops); + if (IS_ERR(dent)) + goto out_remove; + d->dump_lprops = dent; + + fname = "dump_budg"; + dent = debugfs_create_file(fname, S_IWUGO, d->debugfs_dir, c, + &debugfs_fops); + if (IS_ERR(dent)) + goto out_remove; + d->dump_budg = dent; + + fname = "dump_tnc"; + dent = debugfs_create_file(fname, S_IWUGO, d->debugfs_dir, c, + &debugfs_fops); + if (IS_ERR(dent)) + goto out_remove; + d->dump_tnc = dent; + + return 0; + +out_remove: + err = PTR_ERR(dent); + ubifs_err("cannot create \"%s\" debugfs directory, error %d\n", + fname, err); + debugfs_remove_recursive(d->debugfs_dir); +out: + return err; +} + +/** + * dbg_debugfs_exit_fs - remove all debugfs files. + * @c: UBIFS file-system description object + */ +void dbg_debugfs_exit_fs(struct ubifs_info *c) +{ + debugfs_remove_recursive(c->dbg->debugfs_dir); +} + #endif /* CONFIG_UBIFS_FS_DEBUG */ diff --git a/fs/ubifs/debug.h b/fs/ubifs/debug.h index 33d6b95071e4..9820d6999f7e 100644 --- a/fs/ubifs/debug.h +++ b/fs/ubifs/debug.h @@ -25,7 +25,56 @@ #ifdef CONFIG_UBIFS_FS_DEBUG -#define UBIFS_DBG(op) op +/** + * ubifs_debug_info - per-FS debugging information. + * @buf: a buffer of LEB size, used for various purposes + * @old_zroot: old index root - used by 'dbg_check_old_index()' + * @old_zroot_level: old index root level - used by 'dbg_check_old_index()' + * @old_zroot_sqnum: old index root sqnum - used by 'dbg_check_old_index()' + * @failure_mode: failure mode for recovery testing + * @fail_delay: 0=>don't delay, 1=>delay a time, 2=>delay a number of calls + * @fail_timeout: time in jiffies when delay of failure mode expires + * @fail_cnt: current number of calls to failure mode I/O functions + * @fail_cnt_max: number of calls by which to delay failure mode + * @chk_lpt_sz: used by LPT tree size checker + * @chk_lpt_sz2: used by LPT tree size checker + * @chk_lpt_wastage: used by LPT tree size checker + * @chk_lpt_lebs: used by LPT tree size checker + * @new_nhead_offs: used by LPT tree size checker + * @new_ihead_lnum: used by debugging to check ihead_lnum + * @new_ihead_offs: used by debugging to check ihead_offs + * + * debugfs_dir_name: name of debugfs directory containing this file-system's + * files + * debugfs_dir: direntry object of the file-system debugfs directory + * dump_lprops: "dump lprops" debugfs knob + * dump_budg: "dump budgeting information" debugfs knob + * dump_tnc: "dump TNC" debugfs knob + */ +struct ubifs_debug_info { + void *buf; + struct ubifs_zbranch old_zroot; + int old_zroot_level; + unsigned long long old_zroot_sqnum; + int failure_mode; + int fail_delay; + unsigned long fail_timeout; + unsigned int fail_cnt; + unsigned int fail_cnt_max; + long long chk_lpt_sz; + long long chk_lpt_sz2; + long long chk_lpt_wastage; + int chk_lpt_lebs; + int new_nhead_offs; + int new_ihead_lnum; + int new_ihead_offs; + + char debugfs_dir_name[100]; + struct dentry *debugfs_dir; + struct dentry *dump_lprops; + struct dentry *dump_budg; + struct dentry *dump_tnc; +}; #define ubifs_assert(expr) do { \ if (unlikely(!(expr))) { \ @@ -211,14 +260,18 @@ extern unsigned int ubifs_msg_flags; extern unsigned int ubifs_chk_flags; extern unsigned int ubifs_tst_flags; -/* Dump functions */ +int ubifs_debugging_init(struct ubifs_info *c); +void ubifs_debugging_exit(struct ubifs_info *c); +/* Dump functions */ const char *dbg_ntype(int type); const char *dbg_cstate(int cmt_state); const char *dbg_get_key_dump(const struct ubifs_info *c, const union ubifs_key *key); void dbg_dump_inode(const struct ubifs_info *c, const struct inode *inode); void dbg_dump_node(const struct ubifs_info *c, const void *node); +void dbg_dump_lpt_node(const struct ubifs_info *c, void *node, int lnum, + int offs); void dbg_dump_budget_req(const struct ubifs_budget_req *req); void dbg_dump_lstats(const struct ubifs_lp_stats *lst); void dbg_dump_budg(struct ubifs_info *c); @@ -233,9 +286,9 @@ void dbg_dump_pnode(struct ubifs_info *c, struct ubifs_pnode *pnode, struct ubifs_nnode *parent, int iip); void dbg_dump_tnc(struct ubifs_info *c); void dbg_dump_index(struct ubifs_info *c); +void dbg_dump_lpt_lebs(const struct ubifs_info *c); /* Checking helper functions */ - typedef int (*dbg_leaf_callback)(struct ubifs_info *c, struct ubifs_zbranch *zbr, void *priv); typedef int (*dbg_znode_callback)(struct ubifs_info *c, @@ -274,9 +327,6 @@ int dbg_force_in_the_gaps(void); #define dbg_failure_mode (ubifs_tst_flags & UBIFS_TST_RCVRY) -void dbg_failure_mode_registration(struct ubifs_info *c); -void dbg_failure_mode_deregistration(struct ubifs_info *c); - #ifndef UBIFS_DBG_PRESERVE_UBI #define ubi_leb_read dbg_leb_read @@ -318,9 +368,13 @@ static inline int dbg_change(struct ubi_volume_desc *desc, int lnum, return dbg_leb_change(desc, lnum, buf, len, UBI_UNKNOWN); } -#else /* !CONFIG_UBIFS_FS_DEBUG */ +/* Debugfs-related stuff */ +int dbg_debugfs_init(void); +void dbg_debugfs_exit(void); +int dbg_debugfs_init_fs(struct ubifs_info *c); +void dbg_debugfs_exit_fs(struct ubifs_info *c); -#define UBIFS_DBG(op) +#else /* !CONFIG_UBIFS_FS_DEBUG */ /* Use "if (0)" to make compiler check arguments even if debugging is off */ #define ubifs_assert(expr) do { \ @@ -360,23 +414,28 @@ static inline int dbg_change(struct ubi_volume_desc *desc, int lnum, #define DBGKEY(key) ((char *)(key)) #define DBGKEY1(key) ((char *)(key)) -#define dbg_ntype(type) "" -#define dbg_cstate(cmt_state) "" -#define dbg_get_key_dump(c, key) ({}) -#define dbg_dump_inode(c, inode) ({}) -#define dbg_dump_node(c, node) ({}) -#define dbg_dump_budget_req(req) ({}) -#define dbg_dump_lstats(lst) ({}) -#define dbg_dump_budg(c) ({}) -#define dbg_dump_lprop(c, lp) ({}) -#define dbg_dump_lprops(c) ({}) -#define dbg_dump_lpt_info(c) ({}) -#define dbg_dump_leb(c, lnum) ({}) -#define dbg_dump_znode(c, znode) ({}) -#define dbg_dump_heap(c, heap, cat) ({}) -#define dbg_dump_pnode(c, pnode, parent, iip) ({}) -#define dbg_dump_tnc(c) ({}) -#define dbg_dump_index(c) ({}) +#define ubifs_debugging_init(c) 0 +#define ubifs_debugging_exit(c) ({}) + +#define dbg_ntype(type) "" +#define dbg_cstate(cmt_state) "" +#define dbg_get_key_dump(c, key) ({}) +#define dbg_dump_inode(c, inode) ({}) +#define dbg_dump_node(c, node) ({}) +#define dbg_dump_lpt_node(c, node, lnum, offs) ({}) +#define dbg_dump_budget_req(req) ({}) +#define dbg_dump_lstats(lst) ({}) +#define dbg_dump_budg(c) ({}) +#define dbg_dump_lprop(c, lp) ({}) +#define dbg_dump_lprops(c) ({}) +#define dbg_dump_lpt_info(c) ({}) +#define dbg_dump_leb(c, lnum) ({}) +#define dbg_dump_znode(c, znode) ({}) +#define dbg_dump_heap(c, heap, cat) ({}) +#define dbg_dump_pnode(c, pnode, parent, iip) ({}) +#define dbg_dump_tnc(c) ({}) +#define dbg_dump_index(c) ({}) +#define dbg_dump_lpt_lebs(c) ({}) #define dbg_walk_index(c, leaf_cb, znode_cb, priv) 0 #define dbg_old_index_check_init(c, zroot) 0 @@ -396,9 +455,11 @@ static inline int dbg_change(struct ubi_volume_desc *desc, int lnum, #define dbg_force_in_the_gaps_enabled 0 #define dbg_force_in_the_gaps() 0 #define dbg_failure_mode 0 -#define dbg_failure_mode_registration(c) ({}) -#define dbg_failure_mode_deregistration(c) ({}) -#endif /* !CONFIG_UBIFS_FS_DEBUG */ +#define dbg_debugfs_init() 0 +#define dbg_debugfs_exit() +#define dbg_debugfs_init_fs(c) 0 +#define dbg_debugfs_exit_fs(c) 0 +#endif /* !CONFIG_UBIFS_FS_DEBUG */ #endif /* !__UBIFS_DEBUG_H__ */ diff --git a/fs/ubifs/dir.c b/fs/ubifs/dir.c index 526c01ec8003..f448ab1f9c38 100644 --- a/fs/ubifs/dir.c +++ b/fs/ubifs/dir.c @@ -104,13 +104,13 @@ struct inode *ubifs_new_inode(struct ubifs_info *c, const struct inode *dir, */ inode->i_flags |= (S_NOCMTIME); - inode->i_uid = current->fsuid; + inode->i_uid = current_fsuid(); if (dir->i_mode & S_ISGID) { inode->i_gid = dir->i_gid; if (S_ISDIR(mode)) mode |= S_ISGID; } else - inode->i_gid = current->fsgid; + inode->i_gid = current_fsgid(); inode->i_mode = mode; inode->i_mtime = inode->i_atime = inode->i_ctime = ubifs_current_time(inode); @@ -161,7 +161,7 @@ struct inode *ubifs_new_inode(struct ubifs_info *c, const struct inode *dir, return ERR_PTR(-EINVAL); } ubifs_warn("running out of inode numbers (current %lu, max %d)", - c->highest_inum, INUM_WATERMARK); + (unsigned long)c->highest_inum, INUM_WATERMARK); } inode->i_ino = ++c->highest_inum; @@ -428,7 +428,8 @@ static int ubifs_readdir(struct file *file, void *dirent, filldir_t filldir) dbg_gen("feed '%s', ino %llu, new f_pos %#x", dent->name, (unsigned long long)le64_to_cpu(dent->inum), key_hash_flash(c, &dent->key)); - ubifs_assert(dent->ch.sqnum > ubifs_inode(dir)->creat_sqnum); + ubifs_assert(le64_to_cpu(dent->ch.sqnum) > + ubifs_inode(dir)->creat_sqnum); nm.len = le16_to_cpu(dent->nlen); over = filldir(dirent, dent->name, nm.len, file->f_pos, diff --git a/fs/ubifs/file.c b/fs/ubifs/file.c index 51cf511d44d9..bf37374567fa 100644 --- a/fs/ubifs/file.c +++ b/fs/ubifs/file.c @@ -72,8 +72,8 @@ static int read_block(struct inode *inode, void *addr, unsigned int block, return err; } - ubifs_assert(dn->ch.sqnum > ubifs_inode(inode)->creat_sqnum); - + ubifs_assert(le64_to_cpu(dn->ch.sqnum) > + ubifs_inode(inode)->creat_sqnum); len = le32_to_cpu(dn->size); if (len <= 0 || len > UBIFS_BLOCK_SIZE) goto dump; @@ -219,7 +219,8 @@ static void release_existing_page_budget(struct ubifs_info *c) } static int write_begin_slow(struct address_space *mapping, - loff_t pos, unsigned len, struct page **pagep) + loff_t pos, unsigned len, struct page **pagep, + unsigned flags) { struct inode *inode = mapping->host; struct ubifs_info *c = inode->i_sb->s_fs_info; @@ -247,14 +248,14 @@ static int write_begin_slow(struct address_space *mapping, if (unlikely(err)) return err; - page = __grab_cache_page(mapping, index); + page = grab_cache_page_write_begin(mapping, index, flags); if (unlikely(!page)) { ubifs_release_budget(c, &req); return -ENOMEM; } if (!PageUptodate(page)) { - if (!(pos & PAGE_CACHE_MASK) && len == PAGE_CACHE_SIZE) + if (!(pos & ~PAGE_CACHE_MASK) && len == PAGE_CACHE_SIZE) SetPageChecked(page); else { err = do_readpage(page); @@ -438,13 +439,13 @@ static int ubifs_write_begin(struct file *file, struct address_space *mapping, return -EROFS; /* Try out the fast-path part first */ - page = __grab_cache_page(mapping, index); + page = grab_cache_page_write_begin(mapping, index, flags); if (unlikely(!page)) return -ENOMEM; if (!PageUptodate(page)) { /* The page is not loaded from the flash */ - if (!(pos & PAGE_CACHE_MASK) && len == PAGE_CACHE_SIZE) + if (!(pos & ~PAGE_CACHE_MASK) && len == PAGE_CACHE_SIZE) /* * We change whole page so no need to load it. But we * have to set the @PG_checked flag to make the further @@ -483,7 +484,7 @@ static int ubifs_write_begin(struct file *file, struct address_space *mapping, unlock_page(page); page_cache_release(page); - return write_begin_slow(mapping, pos, len, pagep); + return write_begin_slow(mapping, pos, len, pagep, flags); } /* @@ -626,7 +627,7 @@ static int populate_page(struct ubifs_info *c, struct page *page, dn = bu->buf + (bu->zbranch[nn].offs - offs); - ubifs_assert(dn->ch.sqnum > + ubifs_assert(le64_to_cpu(dn->ch.sqnum) > ubifs_inode(inode)->creat_sqnum); len = le32_to_cpu(dn->size); @@ -691,32 +692,22 @@ out_err: /** * ubifs_do_bulk_read - do bulk-read. * @c: UBIFS file-system description object - * @page1: first page + * @bu: bulk-read information + * @page1: first page to read * * This function returns %1 if the bulk-read is done, otherwise %0 is returned. */ -static int ubifs_do_bulk_read(struct ubifs_info *c, struct page *page1) +static int ubifs_do_bulk_read(struct ubifs_info *c, struct bu_info *bu, + struct page *page1) { pgoff_t offset = page1->index, end_index; struct address_space *mapping = page1->mapping; struct inode *inode = mapping->host; struct ubifs_inode *ui = ubifs_inode(inode); - struct bu_info *bu; int err, page_idx, page_cnt, ret = 0, n = 0; + int allocate = bu->buf ? 0 : 1; loff_t isize; - bu = kmalloc(sizeof(struct bu_info), GFP_NOFS); - if (!bu) - return 0; - - bu->buf_len = c->bulk_read_buf_size; - bu->buf = kmalloc(bu->buf_len, GFP_NOFS); - if (!bu->buf) - goto out_free; - - data_key_init(c, &bu->key, inode->i_ino, - offset << UBIFS_BLOCKS_PER_PAGE_SHIFT); - err = ubifs_tnc_get_bu_keys(c, bu); if (err) goto out_warn; @@ -735,12 +726,25 @@ static int ubifs_do_bulk_read(struct ubifs_info *c, struct page *page1) * together. If all the pages were like this, bulk-read would * reduce performance, so we turn it off for a while. */ - ui->read_in_a_row = 0; - ui->bulk_read = 0; - goto out_free; + goto out_bu_off; } if (bu->cnt) { + if (allocate) { + /* + * Allocate bulk-read buffer depending on how many data + * nodes we are going to read. + */ + bu->buf_len = bu->zbranch[bu->cnt - 1].offs + + bu->zbranch[bu->cnt - 1].len - + bu->zbranch[0].offs; + ubifs_assert(bu->buf_len > 0); + ubifs_assert(bu->buf_len <= c->leb_size); + bu->buf = kmalloc(bu->buf_len, GFP_NOFS | __GFP_NOWARN); + if (!bu->buf) + goto out_bu_off; + } + err = ubifs_tnc_bulk_read(c, bu); if (err) goto out_warn; @@ -779,13 +783,17 @@ static int ubifs_do_bulk_read(struct ubifs_info *c, struct page *page1) ui->last_page_read = offset + page_idx - 1; out_free: - kfree(bu->buf); - kfree(bu); + if (allocate) + kfree(bu->buf); return ret; out_warn: ubifs_warn("ignoring error %d and skipping bulk-read", err); goto out_free; + +out_bu_off: + ui->read_in_a_row = ui->bulk_read = 0; + goto out_free; } /** @@ -803,18 +811,20 @@ static int ubifs_bulk_read(struct page *page) struct ubifs_info *c = inode->i_sb->s_fs_info; struct ubifs_inode *ui = ubifs_inode(inode); pgoff_t index = page->index, last_page_read = ui->last_page_read; - int ret = 0; + struct bu_info *bu; + int err = 0, allocated = 0; ui->last_page_read = index; - if (!c->bulk_read) return 0; + /* - * Bulk-read is protected by ui_mutex, but it is an optimization, so - * don't bother if we cannot lock the mutex. + * Bulk-read is protected by @ui->ui_mutex, but it is an optimization, + * so don't bother if we cannot lock the mutex. */ if (!mutex_trylock(&ui->ui_mutex)) return 0; + if (index != last_page_read + 1) { /* Turn off bulk-read if we stop reading sequentially */ ui->read_in_a_row = 1; @@ -822,6 +832,7 @@ static int ubifs_bulk_read(struct page *page) ui->bulk_read = 0; goto out_unlock; } + if (!ui->bulk_read) { ui->read_in_a_row += 1; if (ui->read_in_a_row < 3) @@ -829,10 +840,35 @@ static int ubifs_bulk_read(struct page *page) /* Three reads in a row, so switch on bulk-read */ ui->bulk_read = 1; } - ret = ubifs_do_bulk_read(c, page); + + /* + * If possible, try to use pre-allocated bulk-read information, which + * is protected by @c->bu_mutex. + */ + if (mutex_trylock(&c->bu_mutex)) + bu = &c->bu; + else { + bu = kmalloc(sizeof(struct bu_info), GFP_NOFS | __GFP_NOWARN); + if (!bu) + goto out_unlock; + + bu->buf = NULL; + allocated = 1; + } + + bu->buf_len = c->max_bu_buf_len; + data_key_init(c, &bu->key, inode->i_ino, + page->index << UBIFS_BLOCKS_PER_PAGE_SHIFT); + err = ubifs_do_bulk_read(c, bu, page); + + if (!allocated) + mutex_unlock(&c->bu_mutex); + else + kfree(bu); + out_unlock: mutex_unlock(&ui->ui_mutex); - return ret; + return err; } static int ubifs_readpage(struct file *file, struct page *page) diff --git a/fs/ubifs/ioctl.c b/fs/ubifs/ioctl.c index 5e82cffe9695..6db7a6be6c97 100644 --- a/fs/ubifs/ioctl.c +++ b/fs/ubifs/ioctl.c @@ -154,6 +154,7 @@ long ubifs_ioctl(struct file *file, unsigned int cmd, unsigned long arg) case FS_IOC_GETFLAGS: flags = ubifs2ioctl(ubifs_inode(inode)->flags); + dbg_gen("get flags: %#x, i_flags %#x", flags, inode->i_flags); return put_user(flags, (int __user *) arg); case FS_IOC_SETFLAGS: { @@ -176,6 +177,7 @@ long ubifs_ioctl(struct file *file, unsigned int cmd, unsigned long arg) err = mnt_want_write(file->f_path.mnt); if (err) return err; + dbg_gen("set flags: %#x, i_flags %#x", flags, inode->i_flags); err = setflags(inode, flags); mnt_drop_write(file->f_path.mnt); return err; diff --git a/fs/ubifs/journal.c b/fs/ubifs/journal.c index 22993f867d19..10ae25b7d1db 100644 --- a/fs/ubifs/journal.c +++ b/fs/ubifs/journal.c @@ -690,8 +690,9 @@ int ubifs_jnl_write_data(struct ubifs_info *c, const struct inode *inode, int dlen = UBIFS_DATA_NODE_SZ + UBIFS_BLOCK_SIZE * WORST_COMPR_FACTOR; struct ubifs_inode *ui = ubifs_inode(inode); - dbg_jnl("ino %lu, blk %u, len %d, key %s", key_inum(c, key), - key_block(c, key), len, DBGKEY(key)); + dbg_jnl("ino %lu, blk %u, len %d, key %s", + (unsigned long)key_inum(c, key), key_block(c, key), len, + DBGKEY(key)); ubifs_assert(len <= UBIFS_BLOCK_SIZE); data = kmalloc(dlen, GFP_NOFS); @@ -703,7 +704,7 @@ int ubifs_jnl_write_data(struct ubifs_info *c, const struct inode *inode, data->size = cpu_to_le32(len); zero_data_node_unused(data); - if (!(ui->flags && UBIFS_COMPR_FL)) + if (!(ui->flags & UBIFS_COMPR_FL)) /* Compression is disabled for this inode */ compr_type = UBIFS_COMPR_NONE; else @@ -1128,7 +1129,8 @@ int ubifs_jnl_truncate(struct ubifs_info *c, const struct inode *inode, ino_t inum = inode->i_ino; unsigned int blk; - dbg_jnl("ino %lu, size %lld -> %lld", inum, old_size, new_size); + dbg_jnl("ino %lu, size %lld -> %lld", + (unsigned long)inum, old_size, new_size); ubifs_assert(!ui->data_len); ubifs_assert(S_ISREG(inode->i_mode)); ubifs_assert(mutex_is_locked(&ui->ui_mutex)); @@ -1218,7 +1220,7 @@ int ubifs_jnl_truncate(struct ubifs_info *c, const struct inode *inode, data_key_init(c, &key, inum, blk); bit = old_size & (UBIFS_BLOCK_SIZE - 1); - blk = (old_size >> UBIFS_BLOCK_SHIFT) - (bit ? 0: 1); + blk = (old_size >> UBIFS_BLOCK_SHIFT) - (bit ? 0 : 1); data_key_init(c, &to_key, inum, blk); err = ubifs_tnc_remove_range(c, &key, &to_key); diff --git a/fs/ubifs/key.h b/fs/ubifs/key.h index 9ee65086f627..efb3430a2581 100644 --- a/fs/ubifs/key.h +++ b/fs/ubifs/key.h @@ -38,6 +38,22 @@ #define __UBIFS_KEY_H__ /** + * key_mask_hash - mask a valid hash value. + * @val: value to be masked + * + * We use hash values as offset in directories, so values %0 and %1 are + * reserved for "." and "..". %2 is reserved for "end of readdir" marker. This + * function makes sure the reserved values are not used. + */ +static inline uint32_t key_mask_hash(uint32_t hash) +{ + hash &= UBIFS_S_KEY_HASH_MASK; + if (unlikely(hash <= 2)) + hash += 3; + return hash; +} + +/** * key_r5_hash - R5 hash function (borrowed from reiserfs). * @s: direntry name * @len: name length @@ -54,16 +70,7 @@ static inline uint32_t key_r5_hash(const char *s, int len) str++; } - a &= UBIFS_S_KEY_HASH_MASK; - - /* - * We use hash values as offset in directories, so values %0 and %1 are - * reserved for "." and "..". %2 is reserved for "end of readdir" - * marker. - */ - if (unlikely(a >= 0 && a <= 2)) - a += 3; - return a; + return key_mask_hash(a); } /** @@ -77,10 +84,7 @@ static inline uint32_t key_test_hash(const char *str, int len) len = min_t(uint32_t, len, 4); memcpy(&a, str, len); - a &= UBIFS_S_KEY_HASH_MASK; - if (unlikely(a >= 0 && a <= 2)) - a += 3; - return a; + return key_mask_hash(a); } /** @@ -345,7 +349,7 @@ static inline int key_type_flash(const struct ubifs_info *c, const void *k) { const union ubifs_key *key = k; - return le32_to_cpu(key->u32[1]) >> UBIFS_S_KEY_BLOCK_BITS; + return le32_to_cpu(key->j32[1]) >> UBIFS_S_KEY_BLOCK_BITS; } /** @@ -416,7 +420,7 @@ static inline unsigned int key_block_flash(const struct ubifs_info *c, { const union ubifs_key *key = k; - return le32_to_cpu(key->u32[1]) & UBIFS_S_KEY_BLOCK_MASK; + return le32_to_cpu(key->j32[1]) & UBIFS_S_KEY_BLOCK_MASK; } /** diff --git a/fs/ubifs/lprops.c b/fs/ubifs/lprops.c index f27176e9b70d..dfd2bcece27a 100644 --- a/fs/ubifs/lprops.c +++ b/fs/ubifs/lprops.c @@ -520,13 +520,13 @@ static int is_lprops_dirty(struct ubifs_info *c, struct ubifs_lprops *lprops) * @flags: new flags * @idx_gc_cnt: change to the count of idx_gc list * - * This function changes LEB properties. This function does not change a LEB - * property (@free, @dirty or @flag) if the value passed is %LPROPS_NC. + * This function changes LEB properties (@free, @dirty or @flag). However, the + * property which has the %LPROPS_NC value is not changed. Returns a pointer to + * the updated LEB properties on success and a negative error code on failure. * - * This function returns a pointer to the updated LEB properties on success - * and a negative error code on failure. N.B. the LEB properties may have had to - * be copied (due to COW) and consequently the pointer returned may not be the - * same as the pointer passed. + * Note, the LEB properties may have had to be copied (due to COW) and + * consequently the pointer returned may not be the same as the pointer + * passed. */ const struct ubifs_lprops *ubifs_change_lp(struct ubifs_info *c, const struct ubifs_lprops *lp, @@ -1088,7 +1088,7 @@ static int scan_check_cb(struct ubifs_info *c, } } - sleb = ubifs_scan(c, lnum, 0, c->dbg_buf); + sleb = ubifs_scan(c, lnum, 0, c->dbg->buf); if (IS_ERR(sleb)) { /* * After an unclean unmount, empty and freeable LEBs diff --git a/fs/ubifs/lpt.c b/fs/ubifs/lpt.c index db8bd0e518b2..b2792e84d245 100644 --- a/fs/ubifs/lpt.c +++ b/fs/ubifs/lpt.c @@ -36,15 +36,16 @@ * can be written into a single eraseblock. In that case, garbage collection * consists of just writing the whole table, which therefore makes all other * eraseblocks reusable. In the case of the big model, dirty eraseblocks are - * selected for garbage collection, which consists are marking the nodes in + * selected for garbage collection, which consists of marking the clean nodes in * that LEB as dirty, and then only the dirty nodes are written out. Also, in * the case of the big model, a table of LEB numbers is saved so that the entire * LPT does not to be scanned looking for empty eraseblocks when UBIFS is first * mounted. */ -#include <linux/crc16.h> #include "ubifs.h" +#include <linux/crc16.h> +#include <linux/math64.h> /** * do_calc_lpt_geom - calculate sizes for the LPT area. @@ -135,15 +136,13 @@ static void do_calc_lpt_geom(struct ubifs_info *c) int ubifs_calc_lpt_geom(struct ubifs_info *c) { int lebs_needed; - uint64_t sz; + long long sz; do_calc_lpt_geom(c); /* Verify that lpt_lebs is big enough */ sz = c->lpt_sz * 2; /* Must have at least 2 times the size */ - sz += c->leb_size - 1; - do_div(sz, c->leb_size); - lebs_needed = sz; + lebs_needed = div_u64(sz + c->leb_size - 1, c->leb_size); if (lebs_needed > c->lpt_lebs) { ubifs_err("too few LPT LEBs"); return -EINVAL; @@ -156,7 +155,6 @@ int ubifs_calc_lpt_geom(struct ubifs_info *c) } c->check_lpt_free = c->big_lpt; - return 0; } @@ -176,7 +174,7 @@ static int calc_dflt_lpt_geom(struct ubifs_info *c, int *main_lebs, int *big_lpt) { int i, lebs_needed; - uint64_t sz; + long long sz; /* Start by assuming the minimum number of LPT LEBs */ c->lpt_lebs = UBIFS_MIN_LPT_LEBS; @@ -203,9 +201,7 @@ static int calc_dflt_lpt_geom(struct ubifs_info *c, int *main_lebs, /* Now check there are enough LPT LEBs */ for (i = 0; i < 64 ; i++) { sz = c->lpt_sz * 4; /* Allow 4 times the size */ - sz += c->leb_size - 1; - do_div(sz, c->leb_size); - lebs_needed = sz; + lebs_needed = div_u64(sz + c->leb_size - 1, c->leb_size); if (lebs_needed > c->lpt_lebs) { /* Not enough LPT LEBs so try again with more */ c->lpt_lebs = lebs_needed; @@ -558,7 +554,7 @@ static int calc_nnode_num(int row, int col) * This function calculates and returns the nnode number based on the parent's * nnode number and the index in parent. */ -static int calc_nnode_num_from_parent(struct ubifs_info *c, +static int calc_nnode_num_from_parent(const struct ubifs_info *c, struct ubifs_nnode *parent, int iip) { int num, shft; @@ -583,7 +579,7 @@ static int calc_nnode_num_from_parent(struct ubifs_info *c, * This function calculates and returns the pnode number based on the parent's * nnode number and the index in parent. */ -static int calc_pnode_num_from_parent(struct ubifs_info *c, +static int calc_pnode_num_from_parent(const struct ubifs_info *c, struct ubifs_nnode *parent, int iip) { int i, n = c->lpt_hght - 1, pnum = parent->num, num = 0; @@ -966,7 +962,7 @@ static int check_lpt_type(uint8_t **addr, int *pos, int type) * * This function returns %0 on success and a negative error code on failure. */ -static int unpack_pnode(struct ubifs_info *c, void *buf, +static int unpack_pnode(const struct ubifs_info *c, void *buf, struct ubifs_pnode *pnode) { uint8_t *addr = buf + UBIFS_LPT_CRC_BYTES; @@ -996,15 +992,15 @@ static int unpack_pnode(struct ubifs_info *c, void *buf, } /** - * unpack_nnode - unpack a nnode. + * ubifs_unpack_nnode - unpack a nnode. * @c: UBIFS file-system description object * @buf: buffer containing packed nnode to unpack * @nnode: nnode structure to fill * * This function returns %0 on success and a negative error code on failure. */ -static int unpack_nnode(struct ubifs_info *c, void *buf, - struct ubifs_nnode *nnode) +int ubifs_unpack_nnode(const struct ubifs_info *c, void *buf, + struct ubifs_nnode *nnode) { uint8_t *addr = buf + UBIFS_LPT_CRC_BYTES; int i, pos = 0, err; @@ -1036,7 +1032,7 @@ static int unpack_nnode(struct ubifs_info *c, void *buf, * * This function returns %0 on success and a negative error code on failure. */ -static int unpack_ltab(struct ubifs_info *c, void *buf) +static int unpack_ltab(const struct ubifs_info *c, void *buf) { uint8_t *addr = buf + UBIFS_LPT_CRC_BYTES; int i, pos = 0, err; @@ -1068,7 +1064,7 @@ static int unpack_ltab(struct ubifs_info *c, void *buf) * * This function returns %0 on success and a negative error code on failure. */ -static int unpack_lsave(struct ubifs_info *c, void *buf) +static int unpack_lsave(const struct ubifs_info *c, void *buf) { uint8_t *addr = buf + UBIFS_LPT_CRC_BYTES; int i, pos = 0, err; @@ -1096,7 +1092,7 @@ static int unpack_lsave(struct ubifs_info *c, void *buf) * * This function returns %0 on success and a negative error code on failure. */ -static int validate_nnode(struct ubifs_info *c, struct ubifs_nnode *nnode, +static int validate_nnode(const struct ubifs_info *c, struct ubifs_nnode *nnode, struct ubifs_nnode *parent, int iip) { int i, lvl, max_offs; @@ -1140,7 +1136,7 @@ static int validate_nnode(struct ubifs_info *c, struct ubifs_nnode *nnode, * * This function returns %0 on success and a negative error code on failure. */ -static int validate_pnode(struct ubifs_info *c, struct ubifs_pnode *pnode, +static int validate_pnode(const struct ubifs_info *c, struct ubifs_pnode *pnode, struct ubifs_nnode *parent, int iip) { int i; @@ -1174,7 +1170,8 @@ static int validate_pnode(struct ubifs_info *c, struct ubifs_pnode *pnode, * This function calculates the LEB numbers for the LEB properties it contains * based on the pnode number. */ -static void set_pnode_lnum(struct ubifs_info *c, struct ubifs_pnode *pnode) +static void set_pnode_lnum(const struct ubifs_info *c, + struct ubifs_pnode *pnode) { int i, lnum; @@ -1227,7 +1224,7 @@ int ubifs_read_nnode(struct ubifs_info *c, struct ubifs_nnode *parent, int iip) err = ubi_read(c->ubi, lnum, buf, offs, c->nnode_sz); if (err) goto out; - err = unpack_nnode(c, buf, nnode); + err = ubifs_unpack_nnode(c, buf, nnode); if (err) goto out; } @@ -1816,7 +1813,7 @@ static struct ubifs_nnode *scan_get_nnode(struct ubifs_info *c, c->nnode_sz); if (err) return ERR_PTR(err); - err = unpack_nnode(c, buf, nnode); + err = ubifs_unpack_nnode(c, buf, nnode); if (err) return ERR_PTR(err); } diff --git a/fs/ubifs/lpt_commit.c b/fs/ubifs/lpt_commit.c index eed5a0025d63..96ca95707175 100644 --- a/fs/ubifs/lpt_commit.c +++ b/fs/ubifs/lpt_commit.c @@ -320,6 +320,8 @@ no_space: dbg_err("LPT out of space at LEB %d:%d needing %d, done_ltab %d, " "done_lsave %d", lnum, offs, len, done_ltab, done_lsave); dbg_dump_lpt_info(c); + dbg_dump_lpt_lebs(c); + dump_stack(); return err; } @@ -546,8 +548,10 @@ static int write_cnodes(struct ubifs_info *c) no_space: ubifs_err("LPT out of space mismatch"); dbg_err("LPT out of space mismatch at LEB %d:%d needing %d, done_ltab " - "%d, done_lsave %d", lnum, offs, len, done_ltab, done_lsave); + "%d, done_lsave %d", lnum, offs, len, done_ltab, done_lsave); dbg_dump_lpt_info(c); + dbg_dump_lpt_lebs(c); + dump_stack(); return err; } @@ -571,8 +575,6 @@ static struct ubifs_pnode *next_pnode(struct ubifs_info *c, /* We assume here that LEB zero is never an LPT LEB */ if (nnode->nbranch[iip].lnum) return ubifs_get_pnode(c, nnode, iip); - else - return NULL; } /* Go up while can't go right */ @@ -751,7 +753,7 @@ static void lpt_tgc_start(struct ubifs_info *c) * LPT trivial garbage collection is where a LPT LEB contains only dirty and * free space and so may be reused as soon as the next commit is completed. * This function is called after the commit is completed (master node has been - * written) and unmaps LPT LEBs that were marked for trivial GC. + * written) and un-maps LPT LEBs that were marked for trivial GC. */ static int lpt_tgc_end(struct ubifs_info *c) { @@ -1027,7 +1029,7 @@ static int make_node_dirty(struct ubifs_info *c, int node_type, int node_num, * @c: UBIFS file-system description object * @node_type: LPT node type */ -static int get_lpt_node_len(struct ubifs_info *c, int node_type) +static int get_lpt_node_len(const struct ubifs_info *c, int node_type) { switch (node_type) { case UBIFS_LPT_NNODE: @@ -1048,7 +1050,7 @@ static int get_lpt_node_len(struct ubifs_info *c, int node_type) * @buf: buffer * @len: length of buffer */ -static int get_pad_len(struct ubifs_info *c, uint8_t *buf, int len) +static int get_pad_len(const struct ubifs_info *c, uint8_t *buf, int len) { int offs, pad_len; @@ -1065,7 +1067,8 @@ static int get_pad_len(struct ubifs_info *c, uint8_t *buf, int len) * @buf: buffer * @node_num: node number is returned here */ -static int get_lpt_node_type(struct ubifs_info *c, uint8_t *buf, int *node_num) +static int get_lpt_node_type(const struct ubifs_info *c, uint8_t *buf, + int *node_num) { uint8_t *addr = buf + UBIFS_LPT_CRC_BYTES; int pos = 0, node_type; @@ -1083,7 +1086,7 @@ static int get_lpt_node_type(struct ubifs_info *c, uint8_t *buf, int *node_num) * * This function returns %1 if the buffer contains a node or %0 if it does not. */ -static int is_a_node(struct ubifs_info *c, uint8_t *buf, int len) +static int is_a_node(const struct ubifs_info *c, uint8_t *buf, int len) { uint8_t *addr = buf + UBIFS_LPT_CRC_BYTES; int pos = 0, node_type, node_len; @@ -1107,7 +1110,6 @@ static int is_a_node(struct ubifs_info *c, uint8_t *buf, int len) return 1; } - /** * lpt_gc_lnum - garbage collect a LPT LEB. * @c: UBIFS file-system description object @@ -1465,7 +1467,7 @@ void ubifs_lpt_free(struct ubifs_info *c, int wr_only) #ifdef CONFIG_UBIFS_FS_DEBUG /** - * dbg_is_all_ff - determine if a buffer contains only 0xff bytes. + * dbg_is_all_ff - determine if a buffer contains only 0xFF bytes. * @buf: buffer * @len: buffer length */ @@ -1490,7 +1492,7 @@ static int dbg_is_nnode_dirty(struct ubifs_info *c, int lnum, int offs) struct ubifs_nnode *nnode; int hght; - /* Entire tree is in memory so first_nnode / next_nnode are ok */ + /* Entire tree is in memory so first_nnode / next_nnode are OK */ nnode = first_nnode(c, &hght); for (; nnode; nnode = next_nnode(c, nnode, &hght)) { struct ubifs_nbranch *branch; @@ -1604,7 +1606,10 @@ static int dbg_check_ltab_lnum(struct ubifs_info *c, int lnum) { int err, len = c->leb_size, dirty = 0, node_type, node_num, node_len; int ret; - void *buf = c->dbg_buf; + void *buf = c->dbg->buf; + + if (!(ubifs_chk_flags & UBIFS_CHK_LPROPS)) + return 0; dbg_lp("LEB %d", lnum); err = ubi_read(c->ubi, lnum, buf, 0, c->leb_size); @@ -1706,6 +1711,9 @@ int dbg_chk_lpt_free_spc(struct ubifs_info *c) long long free = 0; int i; + if (!(ubifs_chk_flags & UBIFS_CHK_LPROPS)) + return 0; + for (i = 0; i < c->lpt_lebs; i++) { if (c->ltab[i].tgc || c->ltab[i].cmt) continue; @@ -1718,6 +1726,8 @@ int dbg_chk_lpt_free_spc(struct ubifs_info *c) dbg_err("LPT space error: free %lld lpt_sz %lld", free, c->lpt_sz); dbg_dump_lpt_info(c); + dbg_dump_lpt_lebs(c); + dump_stack(); return -EINVAL; } return 0; @@ -1733,15 +1743,19 @@ int dbg_chk_lpt_free_spc(struct ubifs_info *c) */ int dbg_chk_lpt_sz(struct ubifs_info *c, int action, int len) { + struct ubifs_debug_info *d = c->dbg; long long chk_lpt_sz, lpt_sz; int err = 0; + if (!(ubifs_chk_flags & UBIFS_CHK_LPROPS)) + return 0; + switch (action) { case 0: - c->chk_lpt_sz = 0; - c->chk_lpt_sz2 = 0; - c->chk_lpt_lebs = 0; - c->chk_lpt_wastage = 0; + d->chk_lpt_sz = 0; + d->chk_lpt_sz2 = 0; + d->chk_lpt_lebs = 0; + d->chk_lpt_wastage = 0; if (c->dirty_pn_cnt > c->pnode_cnt) { dbg_err("dirty pnodes %d exceed max %d", c->dirty_pn_cnt, c->pnode_cnt); @@ -1754,35 +1768,35 @@ int dbg_chk_lpt_sz(struct ubifs_info *c, int action, int len) } return err; case 1: - c->chk_lpt_sz += len; + d->chk_lpt_sz += len; return 0; case 2: - c->chk_lpt_sz += len; - c->chk_lpt_wastage += len; - c->chk_lpt_lebs += 1; + d->chk_lpt_sz += len; + d->chk_lpt_wastage += len; + d->chk_lpt_lebs += 1; return 0; case 3: chk_lpt_sz = c->leb_size; - chk_lpt_sz *= c->chk_lpt_lebs; + chk_lpt_sz *= d->chk_lpt_lebs; chk_lpt_sz += len - c->nhead_offs; - if (c->chk_lpt_sz != chk_lpt_sz) { + if (d->chk_lpt_sz != chk_lpt_sz) { dbg_err("LPT wrote %lld but space used was %lld", - c->chk_lpt_sz, chk_lpt_sz); + d->chk_lpt_sz, chk_lpt_sz); err = -EINVAL; } - if (c->chk_lpt_sz > c->lpt_sz) { + if (d->chk_lpt_sz > c->lpt_sz) { dbg_err("LPT wrote %lld but lpt_sz is %lld", - c->chk_lpt_sz, c->lpt_sz); + d->chk_lpt_sz, c->lpt_sz); err = -EINVAL; } - if (c->chk_lpt_sz2 && c->chk_lpt_sz != c->chk_lpt_sz2) { + if (d->chk_lpt_sz2 && d->chk_lpt_sz != d->chk_lpt_sz2) { dbg_err("LPT layout size %lld but wrote %lld", - c->chk_lpt_sz, c->chk_lpt_sz2); + d->chk_lpt_sz, d->chk_lpt_sz2); err = -EINVAL; } - if (c->chk_lpt_sz2 && c->new_nhead_offs != len) { + if (d->chk_lpt_sz2 && d->new_nhead_offs != len) { dbg_err("LPT new nhead offs: expected %d was %d", - c->new_nhead_offs, len); + d->new_nhead_offs, len); err = -EINVAL; } lpt_sz = (long long)c->pnode_cnt * c->pnode_sz; @@ -1790,26 +1804,146 @@ int dbg_chk_lpt_sz(struct ubifs_info *c, int action, int len) lpt_sz += c->ltab_sz; if (c->big_lpt) lpt_sz += c->lsave_sz; - if (c->chk_lpt_sz - c->chk_lpt_wastage > lpt_sz) { + if (d->chk_lpt_sz - d->chk_lpt_wastage > lpt_sz) { dbg_err("LPT chk_lpt_sz %lld + waste %lld exceeds %lld", - c->chk_lpt_sz, c->chk_lpt_wastage, lpt_sz); + d->chk_lpt_sz, d->chk_lpt_wastage, lpt_sz); err = -EINVAL; } - if (err) + if (err) { dbg_dump_lpt_info(c); - c->chk_lpt_sz2 = c->chk_lpt_sz; - c->chk_lpt_sz = 0; - c->chk_lpt_wastage = 0; - c->chk_lpt_lebs = 0; - c->new_nhead_offs = len; + dbg_dump_lpt_lebs(c); + dump_stack(); + } + d->chk_lpt_sz2 = d->chk_lpt_sz; + d->chk_lpt_sz = 0; + d->chk_lpt_wastage = 0; + d->chk_lpt_lebs = 0; + d->new_nhead_offs = len; return err; case 4: - c->chk_lpt_sz += len; - c->chk_lpt_wastage += len; + d->chk_lpt_sz += len; + d->chk_lpt_wastage += len; return 0; default: return -EINVAL; } } +/** + * dbg_dump_lpt_leb - dump an LPT LEB. + * @c: UBIFS file-system description object + * @lnum: LEB number to dump + * + * This function dumps an LEB from LPT area. Nodes in this area are very + * different to nodes in the main area (e.g., they do not have common headers, + * they do not have 8-byte alignments, etc), so we have a separate function to + * dump LPT area LEBs. Note, LPT has to be locked by the caller. + */ +static void dump_lpt_leb(const struct ubifs_info *c, int lnum) +{ + int err, len = c->leb_size, node_type, node_num, node_len, offs; + void *buf = c->dbg->buf; + + printk(KERN_DEBUG "(pid %d) start dumping LEB %d\n", + current->pid, lnum); + err = ubi_read(c->ubi, lnum, buf, 0, c->leb_size); + if (err) { + ubifs_err("cannot read LEB %d, error %d", lnum, err); + return; + } + while (1) { + offs = c->leb_size - len; + if (!is_a_node(c, buf, len)) { + int pad_len; + + pad_len = get_pad_len(c, buf, len); + if (pad_len) { + printk(KERN_DEBUG "LEB %d:%d, pad %d bytes\n", + lnum, offs, pad_len); + buf += pad_len; + len -= pad_len; + continue; + } + if (len) + printk(KERN_DEBUG "LEB %d:%d, free %d bytes\n", + lnum, offs, len); + break; + } + + node_type = get_lpt_node_type(c, buf, &node_num); + switch (node_type) { + case UBIFS_LPT_PNODE: + { + node_len = c->pnode_sz; + if (c->big_lpt) + printk(KERN_DEBUG "LEB %d:%d, pnode num %d\n", + lnum, offs, node_num); + else + printk(KERN_DEBUG "LEB %d:%d, pnode\n", + lnum, offs); + break; + } + case UBIFS_LPT_NNODE: + { + int i; + struct ubifs_nnode nnode; + + node_len = c->nnode_sz; + if (c->big_lpt) + printk(KERN_DEBUG "LEB %d:%d, nnode num %d, ", + lnum, offs, node_num); + else + printk(KERN_DEBUG "LEB %d:%d, nnode, ", + lnum, offs); + err = ubifs_unpack_nnode(c, buf, &nnode); + for (i = 0; i < UBIFS_LPT_FANOUT; i++) { + printk("%d:%d", nnode.nbranch[i].lnum, + nnode.nbranch[i].offs); + if (i != UBIFS_LPT_FANOUT - 1) + printk(", "); + } + printk("\n"); + break; + } + case UBIFS_LPT_LTAB: + node_len = c->ltab_sz; + printk(KERN_DEBUG "LEB %d:%d, ltab\n", + lnum, offs); + break; + case UBIFS_LPT_LSAVE: + node_len = c->lsave_sz; + printk(KERN_DEBUG "LEB %d:%d, lsave len\n", lnum, offs); + break; + default: + ubifs_err("LPT node type %d not recognized", node_type); + return; + } + + buf += node_len; + len -= node_len; + } + + printk(KERN_DEBUG "(pid %d) finish dumping LEB %d\n", + current->pid, lnum); +} + +/** + * dbg_dump_lpt_lebs - dump LPT lebs. + * @c: UBIFS file-system description object + * + * This function dumps all LPT LEBs. The caller has to make sure the LPT is + * locked. + */ +void dbg_dump_lpt_lebs(const struct ubifs_info *c) +{ + int i; + + printk(KERN_DEBUG "(pid %d) start dumping all LPT LEBs\n", + current->pid); + for (i = 0; i < c->lpt_lebs; i++) + dump_lpt_leb(c, i + c->lpt_first); + printk(KERN_DEBUG "(pid %d) finish dumping all LPT LEBs\n", + current->pid); +} + #endif /* CONFIG_UBIFS_FS_DEBUG */ diff --git a/fs/ubifs/orphan.c b/fs/ubifs/orphan.c index 02d3462f4d3e..9e6f403f170e 100644 --- a/fs/ubifs/orphan.c +++ b/fs/ubifs/orphan.c @@ -105,7 +105,7 @@ int ubifs_add_orphan(struct ubifs_info *c, ino_t inum) list_add_tail(&orphan->list, &c->orph_list); list_add_tail(&orphan->new_list, &c->orph_new); spin_unlock(&c->orphan_lock); - dbg_gen("ino %lu", inum); + dbg_gen("ino %lu", (unsigned long)inum); return 0; } @@ -132,14 +132,16 @@ void ubifs_delete_orphan(struct ubifs_info *c, ino_t inum) else { if (o->dnext) { spin_unlock(&c->orphan_lock); - dbg_gen("deleted twice ino %lu", inum); + dbg_gen("deleted twice ino %lu", + (unsigned long)inum); return; } if (o->cnext) { o->dnext = c->orph_dnext; c->orph_dnext = o; spin_unlock(&c->orphan_lock); - dbg_gen("delete later ino %lu", inum); + dbg_gen("delete later ino %lu", + (unsigned long)inum); return; } rb_erase(p, &c->orph_tree); @@ -151,12 +153,12 @@ void ubifs_delete_orphan(struct ubifs_info *c, ino_t inum) } spin_unlock(&c->orphan_lock); kfree(o); - dbg_gen("inum %lu", inum); + dbg_gen("inum %lu", (unsigned long)inum); return; } } spin_unlock(&c->orphan_lock); - dbg_err("missing orphan ino %lu", inum); + dbg_err("missing orphan ino %lu", (unsigned long)inum); dbg_dump_stack(); } @@ -448,7 +450,7 @@ static void erase_deleted(struct ubifs_info *c) rb_erase(&orphan->rb, &c->orph_tree); list_del(&orphan->list); c->tot_orphans -= 1; - dbg_gen("deleting orphan ino %lu", orphan->inum); + dbg_gen("deleting orphan ino %lu", (unsigned long)orphan->inum); kfree(orphan); } c->orph_dnext = NULL; @@ -536,8 +538,8 @@ static int insert_dead_orphan(struct ubifs_info *c, ino_t inum) list_add_tail(&orphan->list, &c->orph_list); orphan->dnext = c->orph_dnext; c->orph_dnext = orphan; - dbg_mnt("ino %lu, new %d, tot %d", - inum, c->new_orphans, c->tot_orphans); + dbg_mnt("ino %lu, new %d, tot %d", (unsigned long)inum, + c->new_orphans, c->tot_orphans); return 0; } @@ -609,7 +611,8 @@ static int do_kill_orphans(struct ubifs_info *c, struct ubifs_scan_leb *sleb, n = (le32_to_cpu(orph->ch.len) - UBIFS_ORPH_NODE_SZ) >> 3; for (i = 0; i < n; i++) { inum = le64_to_cpu(orph->inos[i]); - dbg_rcvry("deleting orphaned inode %lu", inum); + dbg_rcvry("deleting orphaned inode %lu", + (unsigned long)inum); err = ubifs_tnc_remove_ino(c, inum); if (err) return err; @@ -840,8 +843,8 @@ static int dbg_orphan_check(struct ubifs_info *c, struct ubifs_zbranch *zbr, if (inum != ci->last_ino) { /* Lowest node type is the inode node, so it comes first */ if (key_type(c, &zbr->key) != UBIFS_INO_KEY) - ubifs_err("found orphan node ino %lu, type %d", inum, - key_type(c, &zbr->key)); + ubifs_err("found orphan node ino %lu, type %d", + (unsigned long)inum, key_type(c, &zbr->key)); ci->last_ino = inum; ci->tot_inos += 1; err = ubifs_tnc_read_node(c, zbr, ci->node); @@ -853,7 +856,8 @@ static int dbg_orphan_check(struct ubifs_info *c, struct ubifs_zbranch *zbr, /* Must be recorded as an orphan */ if (!dbg_find_check_orphan(&ci->root, inum) && !dbg_find_orphan(c, inum)) { - ubifs_err("missing orphan, ino %lu", inum); + ubifs_err("missing orphan, ino %lu", + (unsigned long)inum); ci->missing += 1; } } @@ -895,7 +899,7 @@ static int dbg_scan_orphans(struct ubifs_info *c, struct check_info *ci) for (lnum = c->orph_first; lnum <= c->orph_last; lnum++) { struct ubifs_scan_leb *sleb; - sleb = ubifs_scan(c, lnum, 0, c->dbg_buf); + sleb = ubifs_scan(c, lnum, 0, c->dbg->buf); if (IS_ERR(sleb)) { err = PTR_ERR(sleb); break; diff --git a/fs/ubifs/recovery.c b/fs/ubifs/recovery.c index 77d26c141cf6..90acac603e63 100644 --- a/fs/ubifs/recovery.c +++ b/fs/ubifs/recovery.c @@ -168,12 +168,12 @@ static int write_rcvrd_mst_node(struct ubifs_info *c, struct ubifs_mst_node *mst) { int err = 0, lnum = UBIFS_MST_LNUM, sz = c->mst_node_alsz; - uint32_t save_flags; + __le32 save_flags; dbg_rcvry("recovery"); save_flags = mst->flags; - mst->flags = cpu_to_le32(le32_to_cpu(mst->flags) | UBIFS_MST_RCVRY); + mst->flags |= cpu_to_le32(UBIFS_MST_RCVRY); ubifs_prepare_node(c, mst, UBIFS_MST_NODE_SZ, 1); err = ubi_leb_change(c->ubi, lnum, mst, sz, UBI_SHORTTERM); @@ -1435,13 +1435,13 @@ static int fix_size_in_place(struct ubifs_info *c, struct size_entry *e) err = ubi_leb_change(c->ubi, lnum, c->sbuf, len, UBI_UNKNOWN); if (err) goto out; - dbg_rcvry("inode %lu at %d:%d size %lld -> %lld ", e->inum, lnum, offs, - i_size, e->d_size); + dbg_rcvry("inode %lu at %d:%d size %lld -> %lld ", + (unsigned long)e->inum, lnum, offs, i_size, e->d_size); return 0; out: ubifs_warn("inode %lu failed to fix size %lld -> %lld error %d", - e->inum, e->i_size, e->d_size, err); + (unsigned long)e->inum, e->i_size, e->d_size, err); return err; } @@ -1472,7 +1472,8 @@ int ubifs_recover_size(struct ubifs_info *c) return err; if (err == -ENOENT) { /* Remove data nodes that have no inode */ - dbg_rcvry("removing ino %lu", e->inum); + dbg_rcvry("removing ino %lu", + (unsigned long)e->inum); err = ubifs_tnc_remove_ino(c, e->inum); if (err) return err; @@ -1493,8 +1494,8 @@ int ubifs_recover_size(struct ubifs_info *c) return PTR_ERR(inode); if (inode->i_size < e->d_size) { dbg_rcvry("ino %lu size %lld -> %lld", - e->inum, e->d_size, - inode->i_size); + (unsigned long)e->inum, + e->d_size, inode->i_size); inode->i_size = e->d_size; ubifs_inode(inode)->ui_size = e->d_size; e->inode = inode; diff --git a/fs/ubifs/replay.c b/fs/ubifs/replay.c index 7399692af859..ce42a7b0ca5a 100644 --- a/fs/ubifs/replay.c +++ b/fs/ubifs/replay.c @@ -144,7 +144,7 @@ static int set_bud_lprops(struct ubifs_info *c, struct replay_entry *r) /* * If the replay order was perfect the dirty space would now be * zero. The order is not perfect because the the journal heads - * race with eachother. This is not a problem but is does mean + * race with each other. This is not a problem but is does mean * that the dirty space may temporarily exceed c->leb_size * during the replay. */ @@ -656,7 +656,7 @@ out_dump: * @dirty: amount of dirty space from padding and deletion nodes * * This function inserts a reference node to the replay tree and returns zero - * in case of success ort a negative error code in case of failure. + * in case of success or a negative error code in case of failure. */ static int insert_ref_node(struct ubifs_info *c, int lnum, int offs, unsigned long long sqnum, int free, int dirty) @@ -883,7 +883,7 @@ static int replay_log_leb(struct ubifs_info *c, int lnum, int offs, void *sbuf) * This means that we reached end of log and now * look to the older log data, which was already * committed but the eraseblock was not erased (UBIFS - * only unmaps it). So this basically means we have to + * only un-maps it). So this basically means we have to * exit with "end of log" code. */ err = 1; @@ -1062,10 +1062,19 @@ int ubifs_replay_journal(struct ubifs_info *c) if (err) goto out; + /* + * UBIFS budgeting calculations use @c->budg_uncommitted_idx variable + * to roughly estimate index growth. Things like @c->min_idx_lebs + * depend on it. This means we have to initialize it to make sure + * budgeting works properly. + */ + c->budg_uncommitted_idx = atomic_long_read(&c->dirty_zn_cnt); + c->budg_uncommitted_idx *= c->max_idx_node_sz; + ubifs_assert(c->bud_bytes <= c->max_bud_bytes || c->need_recovery); dbg_mnt("finished, log head LEB %d:%d, max_sqnum %llu, " "highest_inum %lu", c->lhead_lnum, c->lhead_offs, c->max_sqnum, - c->highest_inum); + (unsigned long)c->highest_inum); out: destroy_replay_tree(c); destroy_bud_list(c); diff --git a/fs/ubifs/sb.c b/fs/ubifs/sb.c index 2bf753b38889..e070c643d1bb 100644 --- a/fs/ubifs/sb.c +++ b/fs/ubifs/sb.c @@ -28,6 +28,7 @@ #include "ubifs.h" #include <linux/random.h> +#include <linux/math64.h> /* * Default journal size in logical eraseblocks as a percent of total @@ -80,7 +81,8 @@ static int create_default_filesystem(struct ubifs_info *c) int err, tmp, jnl_lebs, log_lebs, max_buds, main_lebs, main_first; int lpt_lebs, lpt_first, orph_lebs, big_lpt, ino_waste, sup_flags = 0; int min_leb_cnt = UBIFS_MIN_LEB_CNT; - uint64_t tmp64, main_bytes; + long long tmp64, main_bytes; + __le64 tmp_le64; /* Some functions called from here depend on the @c->key_len filed */ c->key_len = UBIFS_SK_LEN; @@ -159,7 +161,7 @@ static int create_default_filesystem(struct ubifs_info *c) if (!sup) return -ENOMEM; - tmp64 = (uint64_t)max_buds * c->leb_size; + tmp64 = (long long)max_buds * c->leb_size; if (big_lpt) sup_flags |= UBIFS_FLG_BIGLPT; @@ -178,14 +180,16 @@ static int create_default_filesystem(struct ubifs_info *c) sup->fanout = cpu_to_le32(DEFAULT_FANOUT); sup->lsave_cnt = cpu_to_le32(c->lsave_cnt); sup->fmt_version = cpu_to_le32(UBIFS_FORMAT_VERSION); - sup->default_compr = cpu_to_le16(UBIFS_COMPR_LZO); sup->time_gran = cpu_to_le32(DEFAULT_TIME_GRAN); + if (c->mount_opts.override_compr) + sup->default_compr = cpu_to_le16(c->mount_opts.compr_type); + else + sup->default_compr = cpu_to_le16(UBIFS_COMPR_LZO); generate_random_uuid(sup->uuid); - main_bytes = (uint64_t)main_lebs * c->leb_size; - tmp64 = main_bytes * DEFAULT_RP_PERCENT; - do_div(tmp64, 100); + main_bytes = (long long)main_lebs * c->leb_size; + tmp64 = div_u64(main_bytes * DEFAULT_RP_PERCENT, 100); if (tmp64 > DEFAULT_MAX_RP_SIZE) tmp64 = DEFAULT_MAX_RP_SIZE; sup->rp_size = cpu_to_le64(tmp64); @@ -295,10 +299,10 @@ static int create_default_filesystem(struct ubifs_info *c) ino->ch.node_type = UBIFS_INO_NODE; ino->creat_sqnum = cpu_to_le64(++c->max_sqnum); ino->nlink = cpu_to_le32(2); - tmp = cpu_to_le64(CURRENT_TIME_SEC.tv_sec); - ino->atime_sec = tmp; - ino->ctime_sec = tmp; - ino->mtime_sec = tmp; + tmp_le64 = cpu_to_le64(CURRENT_TIME_SEC.tv_sec); + ino->atime_sec = tmp_le64; + ino->ctime_sec = tmp_le64; + ino->mtime_sec = tmp_le64; ino->atime_nsec = 0; ino->ctime_nsec = 0; ino->mtime_nsec = 0; @@ -581,16 +585,15 @@ int ubifs_read_superblock(struct ubifs_info *c) c->jhead_cnt = le32_to_cpu(sup->jhead_cnt) + NONDATA_JHEADS_CNT; c->fanout = le32_to_cpu(sup->fanout); c->lsave_cnt = le32_to_cpu(sup->lsave_cnt); - c->default_compr = le16_to_cpu(sup->default_compr); c->rp_size = le64_to_cpu(sup->rp_size); c->rp_uid = le32_to_cpu(sup->rp_uid); c->rp_gid = le32_to_cpu(sup->rp_gid); sup_flags = le32_to_cpu(sup->flags); + if (!c->mount_opts.override_compr) + c->default_compr = le16_to_cpu(sup->default_compr); c->vfs_sb->s_time_gran = le32_to_cpu(sup->time_gran); - memcpy(&c->uuid, &sup->uuid, 16); - c->big_lpt = !!(sup_flags & UBIFS_FLG_BIGLPT); /* Automatically increase file system size to the maximum size */ diff --git a/fs/ubifs/super.c b/fs/ubifs/super.c index 8780efbf40ac..0d7564b95f8e 100644 --- a/fs/ubifs/super.c +++ b/fs/ubifs/super.c @@ -34,8 +34,16 @@ #include <linux/parser.h> #include <linux/seq_file.h> #include <linux/mount.h> +#include <linux/math64.h> +#include <linux/writeback.h> #include "ubifs.h" +/* + * Maximum amount of memory we may 'kmalloc()' without worrying that we are + * allocating too much. + */ +#define UBIFS_KMALLOC_OK (128*1024) + /* Slab cache for UBIFS inodes */ struct kmem_cache *ubifs_inode_slab; @@ -411,39 +419,54 @@ static int ubifs_show_options(struct seq_file *s, struct vfsmount *mnt) else if (c->mount_opts.chk_data_crc == 1) seq_printf(s, ",no_chk_data_crc"); + if (c->mount_opts.override_compr) { + seq_printf(s, ",compr="); + seq_printf(s, ubifs_compr_name(c->mount_opts.compr_type)); + } + return 0; } static int ubifs_sync_fs(struct super_block *sb, int wait) { + int i, err; struct ubifs_info *c = sb->s_fs_info; - int i, ret = 0, err; - long long bud_bytes; - - if (c->jheads) { - for (i = 0; i < c->jhead_cnt; i++) { - err = ubifs_wbuf_sync(&c->jheads[i].wbuf); - if (err && !ret) - ret = err; - } + struct writeback_control wbc = { + .sync_mode = wait ? WB_SYNC_ALL : WB_SYNC_HOLD, + .range_start = 0, + .range_end = LLONG_MAX, + .nr_to_write = LONG_MAX, + }; + + if (sb->s_flags & MS_RDONLY) + return 0; - /* Commit the journal unless it has too little data */ - spin_lock(&c->buds_lock); - bud_bytes = c->bud_bytes; - spin_unlock(&c->buds_lock); - if (bud_bytes > c->leb_size) { - err = ubifs_run_commit(c); - if (err) - return err; - } + /* + * Synchronize write buffers, because 'ubifs_run_commit()' does not + * do this if it waits for an already running commit. + */ + for (i = 0; i < c->jhead_cnt; i++) { + err = ubifs_wbuf_sync(&c->jheads[i].wbuf); + if (err) + return err; } /* - * We ought to call sync for c->ubi but it does not have one. If it had - * it would in turn call mtd->sync, however mtd operations are - * synchronous anyway, so we don't lose any sleep here. + * VFS calls '->sync_fs()' before synchronizing all dirty inodes and + * pages, so synchronize them first, then commit the journal. Strictly + * speaking, it is not necessary to commit the journal here, + * synchronizing write-buffers would be enough. But committing makes + * UBIFS free space predictions much more accurate, so we want to let + * the user be able to get more accurate results of 'statfs()' after + * they synchronize the file system. */ - return ret; + generic_sync_sb_inodes(sb, &wbc); + + err = ubifs_run_commit(c); + if (err) + return err; + + return ubi_sync(c->vi.ubi_num); } /** @@ -561,18 +584,11 @@ static int init_constants_early(struct ubifs_info *c) * calculations when reporting free space. */ c->leb_overhead = c->leb_size % UBIFS_MAX_DATA_NODE_SZ; - /* Buffer size for bulk-reads */ - c->bulk_read_buf_size = UBIFS_MAX_BULK_READ * UBIFS_MAX_DATA_NODE_SZ; - if (c->bulk_read_buf_size > c->leb_size) - c->bulk_read_buf_size = c->leb_size; - if (c->bulk_read_buf_size > 128 * 1024) { - /* Check if we can kmalloc more than 128KiB */ - void *try = kmalloc(c->bulk_read_buf_size, GFP_KERNEL); - kfree(try); - if (!try) - c->bulk_read_buf_size = 128 * 1024; - } + /* Buffer size for bulk-reads */ + c->max_bu_buf_len = UBIFS_MAX_BULK_READ * UBIFS_MAX_DATA_NODE_SZ; + if (c->max_bu_buf_len > c->leb_size) + c->max_bu_buf_len = c->leb_size; return 0; } @@ -597,7 +613,7 @@ static int bud_wbuf_callback(struct ubifs_info *c, int lnum, int free, int pad) } /* - * init_constants_late - initialize UBIFS constants. + * init_constants_sb - initialize UBIFS constants. * @c: UBIFS file-system description object * * This is a helper function which initializes various UBIFS constants after @@ -605,10 +621,10 @@ static int bud_wbuf_callback(struct ubifs_info *c, int lnum, int free, int pad) * makes sure they are all right. Returns zero in case of success and a * negative error code in case of failure. */ -static int init_constants_late(struct ubifs_info *c) +static int init_constants_sb(struct ubifs_info *c) { int tmp, err; - uint64_t tmp64; + long long tmp64; c->main_bytes = (long long)c->main_lebs * c->leb_size; c->max_znode_sz = sizeof(struct ubifs_znode) + @@ -635,9 +651,8 @@ static int init_constants_late(struct ubifs_info *c) * Make sure that the log is large enough to fit reference nodes for * all buds plus one reserved LEB. */ - tmp64 = c->max_bud_bytes; - tmp = do_div(tmp64, c->leb_size); - c->max_bud_cnt = tmp64 + !!tmp; + tmp64 = c->max_bud_bytes + c->leb_size - 1; + c->max_bud_cnt = div_u64(tmp64, c->leb_size); tmp = (c->ref_node_alsz * c->max_bud_cnt + c->leb_size - 1); tmp /= c->leb_size; tmp += 1; @@ -673,7 +688,7 @@ static int init_constants_late(struct ubifs_info *c) * Consequently, if the journal is too small, UBIFS will treat it as * always full. */ - tmp64 = (uint64_t)(c->jhead_cnt + 1) * c->leb_size + 1; + tmp64 = (long long)(c->jhead_cnt + 1) * c->leb_size + 1; if (c->bg_bud_bytes < tmp64) c->bg_bud_bytes = tmp64; if (c->max_bud_bytes < tmp64 + c->leb_size) @@ -683,6 +698,21 @@ static int init_constants_late(struct ubifs_info *c) if (err) return err; + return 0; +} + +/* + * init_constants_master - initialize UBIFS constants. + * @c: UBIFS file-system description object + * + * This is a helper function which initializes various UBIFS constants after + * the master node has been read. It also checks various UBIFS parameters and + * makes sure they are all right. + */ +static void init_constants_master(struct ubifs_info *c) +{ + long long tmp64; + c->min_idx_lebs = ubifs_calc_min_idx_lebs(c); /* @@ -691,14 +721,13 @@ static int init_constants_late(struct ubifs_info *c) * necessary to report something for the 'statfs()' call. * * Subtract the LEB reserved for GC, the LEB which is reserved for - * deletions, and assume only one journal head is available. + * deletions, minimum LEBs for the index, and assume only one journal + * head is available. */ - tmp64 = c->main_lebs - 2 - c->jhead_cnt + 1; - tmp64 *= (uint64_t)c->leb_size - c->leb_overhead; + tmp64 = c->main_lebs - 1 - 1 - MIN_INDEX_LEBS - c->jhead_cnt + 1; + tmp64 *= (long long)c->leb_size - c->leb_overhead; tmp64 = ubifs_reported_space(c, tmp64); c->block_cnt = tmp64 >> UBIFS_BLOCK_SHIFT; - - return 0; } /** @@ -879,6 +908,7 @@ static int check_volume_empty(struct ubifs_info *c) * Opt_no_bulk_read: disable bulk-reads * Opt_chk_data_crc: check CRCs when reading data nodes * Opt_no_chk_data_crc: do not check CRCs when reading data nodes + * Opt_override_compr: override default compressor * Opt_err: just end of array marker */ enum { @@ -888,6 +918,7 @@ enum { Opt_no_bulk_read, Opt_chk_data_crc, Opt_no_chk_data_crc, + Opt_override_compr, Opt_err, }; @@ -898,6 +929,7 @@ static const match_table_t tokens = { {Opt_no_bulk_read, "no_bulk_read"}, {Opt_chk_data_crc, "chk_data_crc"}, {Opt_no_chk_data_crc, "no_chk_data_crc"}, + {Opt_override_compr, "compr=%s"}, {Opt_err, NULL}, }; @@ -951,6 +983,28 @@ static int ubifs_parse_options(struct ubifs_info *c, char *options, c->mount_opts.chk_data_crc = 1; c->no_chk_data_crc = 1; break; + case Opt_override_compr: + { + char *name = match_strdup(&args[0]); + + if (!name) + return -ENOMEM; + if (!strcmp(name, "none")) + c->mount_opts.compr_type = UBIFS_COMPR_NONE; + else if (!strcmp(name, "lzo")) + c->mount_opts.compr_type = UBIFS_COMPR_LZO; + else if (!strcmp(name, "zlib")) + c->mount_opts.compr_type = UBIFS_COMPR_ZLIB; + else { + ubifs_err("unknown compressor \"%s\"", name); + kfree(name); + return -EINVAL; + } + kfree(name); + c->mount_opts.override_compr = 1; + c->default_compr = c->mount_opts.compr_type; + break; + } default: ubifs_err("unrecognized mount option \"%s\" " "or missing value", p); @@ -992,6 +1046,58 @@ static void destroy_journal(struct ubifs_info *c) } /** + * bu_init - initialize bulk-read information. + * @c: UBIFS file-system description object + */ +static void bu_init(struct ubifs_info *c) +{ + ubifs_assert(c->bulk_read == 1); + + if (c->bu.buf) + return; /* Already initialized */ + +again: + c->bu.buf = kmalloc(c->max_bu_buf_len, GFP_KERNEL | __GFP_NOWARN); + if (!c->bu.buf) { + if (c->max_bu_buf_len > UBIFS_KMALLOC_OK) { + c->max_bu_buf_len = UBIFS_KMALLOC_OK; + goto again; + } + + /* Just disable bulk-read */ + ubifs_warn("Cannot allocate %d bytes of memory for bulk-read, " + "disabling it", c->max_bu_buf_len); + c->mount_opts.bulk_read = 1; + c->bulk_read = 0; + return; + } +} + +/** + * check_free_space - check if there is enough free space to mount. + * @c: UBIFS file-system description object + * + * This function makes sure UBIFS has enough free space to be mounted in + * read/write mode. UBIFS must always have some free space to allow deletions. + */ +static int check_free_space(struct ubifs_info *c) +{ + ubifs_assert(c->dark_wm > 0); + if (c->lst.total_free + c->lst.total_dirty < c->dark_wm) { + ubifs_err("insufficient free space to mount in read/write mode"); + dbg_dump_budg(c); + dbg_dump_lprops(c); + /* + * We return %-EINVAL instead of %-ENOSPC because it seems to + * be the closest error code mentioned in the mount function + * documentation. + */ + return -EINVAL; + } + return 0; +} + +/** * mount_ubifs - mount UBIFS file-system. * @c: UBIFS file-system description object * @@ -1012,11 +1118,9 @@ static int mount_ubifs(struct ubifs_info *c) if (err) return err; -#ifdef CONFIG_UBIFS_FS_DEBUG - c->dbg_buf = vmalloc(c->leb_size); - if (!c->dbg_buf) - return -ENOMEM; -#endif + err = ubifs_debugging_init(c); + if (err) + return err; err = check_volume_empty(c); if (err) @@ -1059,6 +1163,13 @@ static int mount_ubifs(struct ubifs_info *c) goto out_free; } + if (c->bulk_read == 1) + bu_init(c); + + /* + * We have to check all CRCs, even for data nodes, when we mount the FS + * (specifically, when we are replaying). + */ c->always_chk_crc = 1; err = ubifs_read_superblock(c); @@ -1066,27 +1177,25 @@ static int mount_ubifs(struct ubifs_info *c) goto out_free; /* - * Make sure the compressor which is set as the default on in the - * superblock was actually compiled in. + * Make sure the compressor which is set as default in the superblock + * or overridden by mount options is actually compiled in. */ if (!ubifs_compr_present(c->default_compr)) { - ubifs_warn("'%s' compressor is set by superblock, but not " - "compiled in", ubifs_compr_name(c->default_compr)); - c->default_compr = UBIFS_COMPR_NONE; + ubifs_err("'compressor \"%s\" is not compiled in", + ubifs_compr_name(c->default_compr)); + goto out_free; } - dbg_failure_mode_registration(c); - - err = init_constants_late(c); + err = init_constants_sb(c); if (err) - goto out_dereg; + goto out_free; sz = ALIGN(c->max_idx_node_sz, c->min_io_size); sz = ALIGN(sz + c->max_idx_node_sz, c->min_io_size); c->cbuf = kmalloc(sz, GFP_NOFS); if (!c->cbuf) { err = -ENOMEM; - goto out_dereg; + goto out_free; } sprintf(c->bgt_name, BGT_NAME_PATTERN, c->vi.ubi_num, c->vi.vol_id); @@ -1111,6 +1220,8 @@ static int mount_ubifs(struct ubifs_info *c) if (err) goto out_master; + init_constants_master(c); + if ((c->mst_node->flags & cpu_to_le32(UBIFS_MST_DIRTY)) != 0) { ubifs_msg("recovery needed"); c->need_recovery = 1; @@ -1149,12 +1260,9 @@ static int mount_ubifs(struct ubifs_info *c) if (!mounted_read_only) { int lnum; - /* Check for enough free space */ - if (ubifs_calc_available(c, c->min_idx_lebs) <= 0) { - ubifs_err("insufficient available space"); - err = -EINVAL; + err = check_free_space(c); + if (err) goto out_orphans; - } /* Check for enough log space */ lnum = c->lhead_lnum + 1; @@ -1198,6 +1306,10 @@ static int mount_ubifs(struct ubifs_info *c) } } + err = dbg_debugfs_init_fs(c); + if (err) + goto out_infos; + err = dbg_check_filesystem(c); if (err) goto out_infos; @@ -1249,8 +1361,20 @@ static int mount_ubifs(struct ubifs_info *c) dbg_msg("tree fanout: %d", c->fanout); dbg_msg("reserved GC LEB: %d", c->gc_lnum); dbg_msg("first main LEB: %d", c->main_first); + dbg_msg("max. znode size %d", c->max_znode_sz); + dbg_msg("max. index node size %d", c->max_idx_node_sz); + dbg_msg("node sizes: data %zu, inode %zu, dentry %zu", + UBIFS_DATA_NODE_SZ, UBIFS_INO_NODE_SZ, UBIFS_DENT_NODE_SZ); + dbg_msg("node sizes: trun %zu, sb %zu, master %zu", + UBIFS_TRUN_NODE_SZ, UBIFS_SB_NODE_SZ, UBIFS_MST_NODE_SZ); + dbg_msg("node sizes: ref %zu, cmt. start %zu, orph %zu", + UBIFS_REF_NODE_SZ, UBIFS_CS_NODE_SZ, UBIFS_ORPH_NODE_SZ); + dbg_msg("max. node sizes: data %zu, inode %zu dentry %zu", + UBIFS_MAX_DATA_NODE_SZ, UBIFS_MAX_INO_NODE_SZ, + UBIFS_MAX_DENT_NODE_SZ); dbg_msg("dead watermark: %d", c->dead_wm); dbg_msg("dark watermark: %d", c->dark_wm); + dbg_msg("LEB overhead: %d", c->leb_overhead); x = (long long)c->main_lebs * c->dark_wm; dbg_msg("max. dark space: %lld (%lld KiB, %lld MiB)", x, x >> 10, x >> 20); @@ -1286,13 +1410,12 @@ out_wbufs: free_wbufs(c); out_cbuf: kfree(c->cbuf); -out_dereg: - dbg_failure_mode_deregistration(c); out_free: + kfree(c->bu.buf); vfree(c->ileb_buf); vfree(c->sbuf); kfree(c->bottom_up_buf); - UBIFS_DBG(vfree(c->dbg_buf)); + ubifs_debugging_exit(c); return err; } @@ -1310,6 +1433,7 @@ static void ubifs_umount(struct ubifs_info *c) dbg_gen("un-mounting UBI device %d, volume %d", c->vi.ubi_num, c->vi.vol_id); + dbg_debugfs_exit_fs(c); spin_lock(&ubifs_infos_lock); list_del(&c->infos_list); spin_unlock(&ubifs_infos_lock); @@ -1325,11 +1449,11 @@ static void ubifs_umount(struct ubifs_info *c) kfree(c->cbuf); kfree(c->rcvrd_mst_node); kfree(c->mst_node); + kfree(c->bu.buf); + vfree(c->ileb_buf); vfree(c->sbuf); kfree(c->bottom_up_buf); - UBIFS_DBG(vfree(c->dbg_buf)); - vfree(c->ileb_buf); - dbg_failure_mode_deregistration(c); + ubifs_debugging_exit(c); } /** @@ -1351,12 +1475,9 @@ static int ubifs_remount_rw(struct ubifs_info *c) c->remounting_rw = 1; c->always_chk_crc = 1; - /* Check for enough free space */ - if (ubifs_calc_available(c, c->min_idx_lebs) <= 0) { - ubifs_err("insufficient available space"); - err = -EINVAL; + err = check_free_space(c); + if (err) goto out; - } if (c->old_leb_cnt != c->leb_cnt) { struct ubifs_sb_node *sup; @@ -1479,20 +1600,24 @@ out: * @c: UBIFS file-system description object * * This function is called during un-mounting and re-mounting, and it commits - * the journal unless the "fast unmount" mode is enabled. It also avoids - * committing the journal if it contains too few data. + * the journal unless the "fast unmount" mode is enabled. */ static void commit_on_unmount(struct ubifs_info *c) { - if (!c->fast_unmount) { - long long bud_bytes; + struct super_block *sb = c->vfs_sb; + long long bud_bytes; - spin_lock(&c->buds_lock); - bud_bytes = c->bud_bytes; - spin_unlock(&c->buds_lock); - if (bud_bytes > c->leb_size) - ubifs_run_commit(c); - } + /* + * This function is called before the background thread is stopped, so + * we may race with ongoing commit, which means we have to take + * @c->bud_lock to access @c->bud_bytes. + */ + spin_lock(&c->buds_lock); + bud_bytes = c->bud_bytes; + spin_unlock(&c->buds_lock); + + if (!c->fast_unmount && !(sb->s_flags & MS_RDONLY) && bud_bytes) + ubifs_run_commit(c); } /** @@ -1626,6 +1751,7 @@ static int ubifs_remount_fs(struct super_block *sb, int *flags, char *data) ubifs_err("invalid or unknown remount parameter"); return err; } + if ((sb->s_flags & MS_RDONLY) && !(*flags & MS_RDONLY)) { err = ubifs_remount_rw(c); if (err) @@ -1633,6 +1759,14 @@ static int ubifs_remount_fs(struct super_block *sb, int *flags, char *data) } else if (!(sb->s_flags & MS_RDONLY) && (*flags & MS_RDONLY)) ubifs_remount_ro(c); + if (c->bulk_read == 1) + bu_init(c); + else { + dbg_gen("disable bulk-read"); + kfree(c->bu.buf); + c->bu.buf = NULL; + } + return 0; } @@ -1723,6 +1857,7 @@ static int ubifs_fill_super(struct super_block *sb, void *data, int silent) mutex_init(&c->log_mutex); mutex_init(&c->mst_mutex); mutex_init(&c->umount_mutex); + mutex_init(&c->bu_mutex); init_waitqueue_head(&c->cmt_wq); c->buds = RB_ROOT; c->old_idx = RB_ROOT; @@ -1803,7 +1938,6 @@ static int ubifs_fill_super(struct super_block *sb, void *data, int silent) goto out_iput; mutex_unlock(&c->umount_mutex); - return 0; out_iput: @@ -1909,7 +2043,7 @@ static void ubifs_kill_sb(struct super_block *sb) * We do 'commit_on_unmount()' here instead of 'ubifs_put_super()' * in order to be outside BKL. */ - if (sb->s_root && !(sb->s_flags & MS_RDONLY)) + if (sb->s_root) commit_on_unmount(c); /* The un-mount routine is actually done in put_super() */ generic_shutdown_super(sb); @@ -1975,6 +2109,14 @@ static int __init ubifs_init(void) BUILD_BUG_ON(UBIFS_REF_NODE_SZ != 64); /* + * We use 2 bit wide bit-fields to store compression type, which should + * be amended if more compressors are added. The bit-fields are: + * @compr_type in 'struct ubifs_inode', @default_compr in + * 'struct ubifs_info' and @compr_type in 'struct ubifs_mount_opts'. + */ + BUILD_BUG_ON(UBIFS_COMPR_TYPES_CNT > 4); + + /* * We require that PAGE_CACHE_SIZE is greater-than-or-equal-to * UBIFS_BLOCK_SIZE. It is assumed that both are powers of 2. */ @@ -2003,11 +2145,17 @@ static int __init ubifs_init(void) err = ubifs_compressors_init(); if (err) + goto out_shrinker; + + err = dbg_debugfs_init(); + if (err) goto out_compr; return 0; out_compr: + ubifs_compressors_exit(); +out_shrinker: unregister_shrinker(&ubifs_shrinker_info); kmem_cache_destroy(ubifs_inode_slab); out_reg: @@ -2022,6 +2170,7 @@ static void __exit ubifs_exit(void) ubifs_assert(list_empty(&ubifs_infos)); ubifs_assert(atomic_long_read(&ubifs_clean_zn_cnt) == 0); + dbg_debugfs_exit(); ubifs_compressors_exit(); unregister_shrinker(&ubifs_shrinker_info); kmem_cache_destroy(ubifs_inode_slab); diff --git a/fs/ubifs/tnc.c b/fs/ubifs/tnc.c index d27fd918b9c9..f7e36f545527 100644 --- a/fs/ubifs/tnc.c +++ b/fs/ubifs/tnc.c @@ -1501,7 +1501,12 @@ out: * @bu: bulk-read parameters and results * * Lookup consecutive data node keys for the same inode that reside - * consecutively in the same LEB. + * consecutively in the same LEB. This function returns zero in case of success + * and a negative error code in case of failure. + * + * Note, if the bulk-read buffer length (@bu->buf_len) is known, this function + * makes sure bulk-read nodes fit the buffer. Otherwise, this function prepares + * maxumum possible amount of nodes for bulk-read. */ int ubifs_tnc_get_bu_keys(struct ubifs_info *c, struct bu_info *bu) { @@ -2240,12 +2245,11 @@ int ubifs_tnc_replace(struct ubifs_info *c, const union ubifs_key *key, if (found) { /* Ensure the znode is dirtied */ if (znode->cnext || !ubifs_zn_dirty(znode)) { - znode = dirty_cow_bottom_up(c, - znode); - if (IS_ERR(znode)) { - err = PTR_ERR(znode); - goto out_unlock; - } + znode = dirty_cow_bottom_up(c, znode); + if (IS_ERR(znode)) { + err = PTR_ERR(znode); + goto out_unlock; + } } zbr = &znode->zbranch[n]; lnc_free(zbr); @@ -2312,11 +2316,11 @@ int ubifs_tnc_add_nm(struct ubifs_info *c, const union ubifs_key *key, /* Ensure the znode is dirtied */ if (znode->cnext || !ubifs_zn_dirty(znode)) { - znode = dirty_cow_bottom_up(c, znode); - if (IS_ERR(znode)) { - err = PTR_ERR(znode); - goto out_unlock; - } + znode = dirty_cow_bottom_up(c, znode); + if (IS_ERR(znode)) { + err = PTR_ERR(znode); + goto out_unlock; + } } if (found == 1) { @@ -2622,11 +2626,11 @@ int ubifs_tnc_remove_range(struct ubifs_info *c, union ubifs_key *from_key, /* Ensure the znode is dirtied */ if (znode->cnext || !ubifs_zn_dirty(znode)) { - znode = dirty_cow_bottom_up(c, znode); - if (IS_ERR(znode)) { - err = PTR_ERR(znode); - goto out_unlock; - } + znode = dirty_cow_bottom_up(c, znode); + if (IS_ERR(znode)) { + err = PTR_ERR(znode); + goto out_unlock; + } } /* Remove all keys in range except the first */ @@ -2677,7 +2681,7 @@ int ubifs_tnc_remove_ino(struct ubifs_info *c, ino_t inum) struct ubifs_dent_node *xent, *pxent = NULL; struct qstr nm = { .name = NULL }; - dbg_tnc("ino %lu", inum); + dbg_tnc("ino %lu", (unsigned long)inum); /* * Walk all extended attribute entries and remove them together with @@ -2697,7 +2701,8 @@ int ubifs_tnc_remove_ino(struct ubifs_info *c, ino_t inum) } xattr_inum = le64_to_cpu(xent->inum); - dbg_tnc("xent '%s', ino %lu", xent->name, xattr_inum); + dbg_tnc("xent '%s', ino %lu", xent->name, + (unsigned long)xattr_inum); nm.name = xent->name; nm.len = le16_to_cpu(xent->nlen); diff --git a/fs/ubifs/tnc_commit.c b/fs/ubifs/tnc_commit.c index 8ac76b1c2d55..fde8d127c768 100644 --- a/fs/ubifs/tnc_commit.c +++ b/fs/ubifs/tnc_commit.c @@ -553,8 +553,8 @@ static int layout_in_empty_space(struct ubifs_info *c) } #ifdef CONFIG_UBIFS_FS_DEBUG - c->new_ihead_lnum = lnum; - c->new_ihead_offs = buf_offs; + c->dbg->new_ihead_lnum = lnum; + c->dbg->new_ihead_offs = buf_offs; #endif return 0; @@ -802,8 +802,10 @@ int ubifs_tnc_start_commit(struct ubifs_info *c, struct ubifs_zbranch *zroot) * budgeting subsystem to assume the index is already committed, * even though it is not. */ + ubifs_assert(c->min_idx_lebs == ubifs_calc_min_idx_lebs(c)); c->old_idx_sz = c->calc_idx_sz; c->budg_uncommitted_idx = 0; + c->min_idx_lebs = ubifs_calc_min_idx_lebs(c); spin_unlock(&c->space_lock); mutex_unlock(&c->tnc_mutex); @@ -1002,7 +1004,8 @@ static int write_index(struct ubifs_info *c) } #ifdef CONFIG_UBIFS_FS_DEBUG - if (lnum != c->new_ihead_lnum || buf_offs != c->new_ihead_offs) { + if (lnum != c->dbg->new_ihead_lnum || + buf_offs != c->dbg->new_ihead_offs) { ubifs_err("inconsistent ihead"); return -EINVAL; } diff --git a/fs/ubifs/ubifs-media.h b/fs/ubifs/ubifs-media.h index 0b378042a3a2..b25fc36cf72f 100644 --- a/fs/ubifs/ubifs-media.h +++ b/fs/ubifs/ubifs-media.h @@ -51,6 +51,13 @@ */ #define UBIFS_MIN_COMPR_LEN 128 +/* + * If compressed data length is less than %UBIFS_MIN_COMPRESS_DIFF bytes + * shorter than uncompressed data length, UBIFS preferes to leave this data + * node uncompress, because it'll be read faster. + */ +#define UBIFS_MIN_COMPRESS_DIFF 64 + /* Root inode number */ #define UBIFS_ROOT_INO 1 diff --git a/fs/ubifs/ubifs.h b/fs/ubifs/ubifs.h index a7bd32fa15b9..fc2a4cc66d03 100644 --- a/fs/ubifs/ubifs.h +++ b/fs/ubifs/ubifs.h @@ -63,6 +63,14 @@ #define SQNUM_WARN_WATERMARK 0xFFFFFFFF00000000ULL #define SQNUM_WATERMARK 0xFFFFFFFFFF000000ULL +/* + * Minimum amount of LEBs reserved for the index. At present the index needs at + * least 2 LEBs: one for the index head and one for in-the-gaps method (which + * currently does not cater for the index head and so excludes it from + * consideration). + */ +#define MIN_INDEX_LEBS 2 + /* Minimum amount of data UBIFS writes to the flash */ #define MIN_WRITE_SZ (UBIFS_DATA_NODE_SZ + 8) @@ -386,12 +394,12 @@ struct ubifs_inode { unsigned int dirty:1; unsigned int xattr:1; unsigned int bulk_read:1; + unsigned int compr_type:2; struct mutex ui_mutex; spinlock_t ui_lock; loff_t synced_i_size; loff_t ui_size; int flags; - int compr_type; pgoff_t last_page_read; pgoff_t read_in_a_row; int data_len; @@ -419,7 +427,7 @@ struct ubifs_unclean_leb { * * LPROPS_UNCAT: not categorized * LPROPS_DIRTY: dirty > 0, not index - * LPROPS_DIRTY_IDX: dirty + free > UBIFS_CH_SZ and index + * LPROPS_DIRTY_IDX: dirty + free > @c->min_idx_node_sze and index * LPROPS_FREE: free > 0, not empty, not index * LPROPS_HEAP_CNT: number of heaps used for storing categorized LEBs * LPROPS_EMPTY: LEB is empty, not taken @@ -473,8 +481,8 @@ struct ubifs_lprops { struct ubifs_lpt_lprops { int free; int dirty; - unsigned tgc : 1; - unsigned cmt : 1; + unsigned tgc:1; + unsigned cmt:1; }; /** @@ -482,24 +490,26 @@ struct ubifs_lpt_lprops { * @empty_lebs: number of empty LEBs * @taken_empty_lebs: number of taken LEBs * @idx_lebs: number of indexing LEBs - * @total_free: total free space in bytes - * @total_dirty: total dirty space in bytes - * @total_used: total used space in bytes (includes only data LEBs) - * @total_dead: total dead space in bytes (includes only data LEBs) - * @total_dark: total dark space in bytes (includes only data LEBs) + * @total_free: total free space in bytes (includes all LEBs) + * @total_dirty: total dirty space in bytes (includes all LEBs) + * @total_used: total used space in bytes (does not include index LEBs) + * @total_dead: total dead space in bytes (does not include index LEBs) + * @total_dark: total dark space in bytes (does not include index LEBs) * - * N.B. total_dirty and total_used are different to other total_* fields, - * because they account _all_ LEBs, not just data LEBs. + * The @taken_empty_lebs field counts the LEBs that are in the transient state + * of having been "taken" for use but not yet written to. @taken_empty_lebs is + * needed to account correctly for @gc_lnum, otherwise @empty_lebs could be + * used by itself (in which case 'unused_lebs' would be a better name). In the + * case of @gc_lnum, it is "taken" at mount time or whenever a LEB is retained + * by GC, but unlike other empty LEBs that are "taken", it may not be written + * straight away (i.e. before the next commit start or unmount), so either + * @gc_lnum must be specially accounted for, or the current approach followed + * i.e. count it under @taken_empty_lebs. * - * 'taken_empty_lebs' counts the LEBs that are in the transient state of having - * been 'taken' for use but not yet written to. 'taken_empty_lebs' is needed - * to account correctly for gc_lnum, otherwise 'empty_lebs' could be used - * by itself (in which case 'unused_lebs' would be a better name). In the case - * of gc_lnum, it is 'taken' at mount time or whenever a LEB is retained by GC, - * but unlike other empty LEBs that are 'taken', it may not be written straight - * away (i.e. before the next commit start or unmount), so either gc_lnum must - * be specially accounted for, or the current approach followed i.e. count it - * under 'taken_empty_lebs'. + * @empty_lebs includes @taken_empty_lebs. + * + * @total_used, @total_dead and @total_dark fields do not account indexing + * LEBs. */ struct ubifs_lp_stats { int empty_lebs; @@ -753,7 +763,7 @@ struct ubifs_znode { }; /** - * struct bu_info - bulk-read information + * struct bu_info - bulk-read information. * @key: first data node key * @zbranch: zbranches of data nodes to bulk read * @buf: buffer to read into @@ -893,15 +903,25 @@ struct ubifs_orphan { /** * struct ubifs_mount_opts - UBIFS-specific mount options information. * @unmount_mode: selected unmount mode (%0 default, %1 normal, %2 fast) - * @bulk_read: enable bulk-reads - * @chk_data_crc: check CRCs when reading data nodes + * @bulk_read: enable/disable bulk-reads (%0 default, %1 disabe, %2 enable) + * @chk_data_crc: enable/disable CRC data checking when reading data nodes + * (%0 default, %1 disabe, %2 enable) + * @override_compr: override default compressor (%0 - do not override and use + * superblock compressor, %1 - override and use compressor + * specified in @compr_type) + * @compr_type: compressor type to override the superblock compressor with + * (%UBIFS_COMPR_NONE, etc) */ struct ubifs_mount_opts { unsigned int unmount_mode:2; unsigned int bulk_read:2; unsigned int chk_data_crc:2; + unsigned int override_compr:1; + unsigned int compr_type:2; }; +struct ubifs_debug_info; + /** * struct ubifs_info - UBIFS file-system description data structure * (per-superblock). @@ -946,6 +966,7 @@ struct ubifs_mount_opts { * @no_chk_data_crc: do not check CRCs when reading data nodes (except during * recovery) * @bulk_read: enable bulk-reads + * @default_compr: default compression algorithm (%UBIFS_COMPR_LZO, etc) * * @tnc_mutex: protects the Tree Node Cache (TNC), @zroot, @cnext, @enext, and * @calc_idx_sz @@ -963,13 +984,14 @@ struct ubifs_mount_opts { * @ileb_nxt: next pre-allocated index LEBs * @old_idx: tree of index nodes obsoleted since the last commit start * @bottom_up_buf: a buffer which is used by 'dirty_cow_bottom_up()' in tnc.c - * @new_ihead_lnum: used by debugging to check ihead_lnum - * @new_ihead_offs: used by debugging to check ihead_offs * * @mst_node: master node * @mst_offs: offset of valid master node * @mst_mutex: protects the master node area, @mst_node, and @mst_offs - * @bulk_read_buf_size: buffer size for bulk-reads + * + * @max_bu_buf_len: maximum bulk-read buffer length + * @bu_mutex: protects the pre-allocated bulk-read buffer and @c->bu + * @bu: pre-allocated bulk-read information * * @log_lebs: number of logical eraseblocks in the log * @log_bytes: log size in bytes @@ -983,7 +1005,6 @@ struct ubifs_mount_opts { * @main_lebs: count of LEBs in the main area * @main_first: first LEB of the main area * @main_bytes: main area size in bytes - * @default_compr: default compression algorithm (%UBIFS_COMPR_LZO, etc) * * @key_hash_type: type of the key hash * @key_hash: direntry key hash function @@ -1146,15 +1167,7 @@ struct ubifs_mount_opts { * @always_chk_crc: always check CRCs (while mounting and remounting rw) * @mount_opts: UBIFS-specific mount options * - * @dbg_buf: a buffer of LEB size used for debugging purposes - * @old_zroot: old index root - used by 'dbg_check_old_index()' - * @old_zroot_level: old index root level - used by 'dbg_check_old_index()' - * @old_zroot_sqnum: old index root sqnum - used by 'dbg_check_old_index()' - * @failure_mode: failure mode for recovery testing - * @fail_delay: 0=>don't delay, 1=>delay a time, 2=>delay a number of calls - * @fail_timeout: time in jiffies when delay of failure mode expires - * @fail_cnt: current number of calls to failure mode I/O functions - * @fail_cnt_max: number of calls by which to delay failure mode + * @dbg: debugging-related information */ struct ubifs_info { struct super_block *vfs_sb; @@ -1193,6 +1206,7 @@ struct ubifs_info { unsigned int big_lpt:1; unsigned int no_chk_data_crc:1; unsigned int bulk_read:1; + unsigned int default_compr:2; struct mutex tnc_mutex; struct ubifs_zbranch zroot; @@ -1209,15 +1223,14 @@ struct ubifs_info { int ileb_nxt; struct rb_root old_idx; int *bottom_up_buf; -#ifdef CONFIG_UBIFS_FS_DEBUG - int new_ihead_lnum; - int new_ihead_offs; -#endif struct ubifs_mst_node *mst_node; int mst_offs; struct mutex mst_mutex; - int bulk_read_buf_size; + + int max_bu_buf_len; + struct mutex bu_mutex; + struct bu_info bu; int log_lebs; long long log_bytes; @@ -1231,7 +1244,6 @@ struct ubifs_info { int main_lebs; int main_first; long long main_bytes; - int default_compr; uint8_t key_hash_type; uint32_t (*key_hash)(const char *str, int len); @@ -1309,8 +1321,8 @@ struct ubifs_info { void *sbuf; struct list_head idx_gc; int idx_gc_cnt; - volatile int gc_seq; - volatile int gced_lnum; + int gc_seq; + int gced_lnum; struct list_head infos_list; struct mutex umount_mutex; @@ -1385,21 +1397,7 @@ struct ubifs_info { struct ubifs_mount_opts mount_opts; #ifdef CONFIG_UBIFS_FS_DEBUG - void *dbg_buf; - struct ubifs_zbranch old_zroot; - int old_zroot_level; - unsigned long long old_zroot_sqnum; - int failure_mode; - int fail_delay; - unsigned long fail_timeout; - unsigned int fail_cnt; - unsigned int fail_cnt_max; - long long chk_lpt_sz; - long long chk_lpt_sz2; - long long chk_lpt_wastage; - int chk_lpt_lebs; - int new_nhead_lnum; - int new_nhead_offs; + struct ubifs_debug_info *dbg; #endif }; @@ -1499,7 +1497,7 @@ void ubifs_cancel_ino_op(struct ubifs_info *c, struct inode *inode, long long ubifs_get_free_space(struct ubifs_info *c); int ubifs_calc_min_idx_lebs(struct ubifs_info *c); void ubifs_convert_page_budget(struct ubifs_info *c); -long long ubifs_reported_space(const struct ubifs_info *c, uint64_t free); +long long ubifs_reported_space(const struct ubifs_info *c, long long free); long long ubifs_calc_available(const struct ubifs_info *c, int min_idx_lebs); /* find.c */ @@ -1633,6 +1631,9 @@ void ubifs_add_lpt_dirt(struct ubifs_info *c, int lnum, int dirty); void ubifs_add_nnode_dirt(struct ubifs_info *c, struct ubifs_nnode *nnode); uint32_t ubifs_unpack_bits(uint8_t **addr, int *pos, int nrbits); struct ubifs_nnode *ubifs_first_nnode(struct ubifs_info *c, int *hght); +/* Needed only in debugging code in lpt_commit.c */ +int ubifs_unpack_nnode(const struct ubifs_info *c, void *buf, + struct ubifs_nnode *nnode); /* lpt_commit.c */ int ubifs_lpt_start_commit(struct ubifs_info *c); @@ -1708,7 +1709,7 @@ long ubifs_compat_ioctl(struct file *file, unsigned int cmd, unsigned long arg); /* compressor.c */ int __init ubifs_compressors_init(void); -void __exit ubifs_compressors_exit(void); +void ubifs_compressors_exit(void); void ubifs_compress(const void *in_buf, int in_len, void *out_buf, int *out_len, int *compr_type); int ubifs_decompress(const void *buf, int len, void *out, int *out_len, |