forked from Imagelibrary/littlefs
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8 Commits
fix-bounda
...
mkconsiste
| Author | SHA1 | Date | |
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259535ee73 | ||
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94d9e097a6 | ||
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dd03c27476 | ||
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23a4a089b5 | ||
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b6773e68bf | ||
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b33a5b3f85 | ||
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384a498762 | ||
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24795e6b74 |
66
lfs.c
66
lfs.c
@@ -2712,11 +2712,6 @@ static int lfs_dir_rawseek(lfs_t *lfs, lfs_dir_t *dir, lfs_off_t off) {
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dir->id = (off > 0 && lfs_pair_cmp(dir->head, lfs->root) == 0);
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while (off > 0) {
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int diff = lfs_min(dir->m.count - dir->id, off);
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dir->id += diff;
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dir->pos += diff;
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off -= diff;
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if (dir->id == dir->m.count) {
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if (!dir->m.split) {
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return LFS_ERR_INVAL;
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@@ -2729,6 +2724,11 @@ static int lfs_dir_rawseek(lfs_t *lfs, lfs_dir_t *dir, lfs_off_t off) {
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dir->id = 0;
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}
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int diff = lfs_min(dir->m.count - dir->id, off);
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dir->id += diff;
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dir->pos += diff;
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off -= diff;
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}
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return 0;
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@@ -4741,8 +4741,6 @@ static int lfs_fs_deorphan(lfs_t *lfs, bool powerloss) {
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return 0;
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}
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int8_t found = 0;
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// Check for orphans in two separate passes:
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// - 1 for half-orphans (relocations)
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// - 2 for full-orphans (removes/renames)
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@@ -4813,8 +4811,6 @@ static int lfs_fs_deorphan(lfs_t *lfs, bool powerloss) {
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return state;
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}
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found += 1;
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// did our commit create more orphans?
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if (state == LFS_OK_ORPHANED) {
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moreorphans = true;
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@@ -4849,8 +4845,6 @@ static int lfs_fs_deorphan(lfs_t *lfs, bool powerloss) {
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return state;
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}
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found += 1;
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// did our commit create more orphans?
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if (state == LFS_OK_ORPHANED) {
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moreorphans = true;
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@@ -4868,9 +4862,7 @@ static int lfs_fs_deorphan(lfs_t *lfs, bool powerloss) {
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}
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// mark orphans as fixed
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return lfs_fs_preporphans(lfs, -lfs_min(
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lfs_gstate_getorphans(&lfs->gstate),
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found));
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return lfs_fs_preporphans(lfs, -lfs_gstate_getorphans(&lfs->gstate));
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}
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#endif
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@@ -4895,6 +4887,36 @@ static int lfs_fs_forceconsistency(lfs_t *lfs) {
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}
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#endif
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#ifndef LFS_READONLY
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int lfs_fs_rawmkconsistent(lfs_t *lfs) {
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// lfs_fs_forceconsistency does most of the work here
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int err = lfs_fs_forceconsistency(lfs);
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if (err) {
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return err;
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}
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// do we have any pending gstate?
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lfs_gstate_t delta = {0};
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lfs_gstate_xor(&delta, &lfs->gdisk);
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lfs_gstate_xor(&delta, &lfs->gstate);
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if (!lfs_gstate_iszero(&delta)) {
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// lfs_dir_commit will implicitly write out any pending gstate
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lfs_mdir_t root;
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err = lfs_dir_fetch(lfs, &root, lfs->root);
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if (err) {
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return err;
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}
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err = lfs_dir_commit(lfs, &root, NULL, 0);
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if (err) {
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return err;
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}
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}
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return 0;
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}
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#endif
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static int lfs_fs_size_count(void *p, lfs_block_t block) {
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(void)block;
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lfs_size_t *size = p;
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@@ -6060,6 +6082,22 @@ int lfs_fs_traverse(lfs_t *lfs, int (*cb)(void *, lfs_block_t), void *data) {
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return err;
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}
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#ifndef LFS_READONLY
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int lfs_fs_mkconsistent(lfs_t *lfs) {
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int err = LFS_LOCK(lfs->cfg);
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if (err) {
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return err;
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}
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LFS_TRACE("lfs_fs_mkconsistent(%p)", (void*)lfs);
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err = lfs_fs_rawmkconsistent(lfs);
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LFS_TRACE("lfs_fs_mkconsistent -> %d", err);
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LFS_UNLOCK(lfs->cfg);
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return err;
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}
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#endif
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#ifdef LFS_MIGRATE
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int lfs_migrate(lfs_t *lfs, const struct lfs_config *cfg) {
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int err = LFS_LOCK(cfg);
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12
lfs.h
12
lfs.h
@@ -676,6 +676,18 @@ lfs_ssize_t lfs_fs_size(lfs_t *lfs);
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// Returns a negative error code on failure.
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int lfs_fs_traverse(lfs_t *lfs, int (*cb)(void*, lfs_block_t), void *data);
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#ifndef LFS_READONLY
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// Attempt to make the filesystem consistent and ready for writing
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//
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// Calling this function is not required, consistency will be implicitly
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// enforced on the first operation that writes to the filesystem, but this
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// function allows the work to be performed earlier and without other
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// filesystem changes.
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//
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// Returns a negative error code on failure.
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int lfs_fs_mkconsistent(lfs_t *lfs);
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#endif
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#ifndef LFS_READONLY
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#ifdef LFS_MIGRATE
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// Attempts to migrate a previous version of littlefs
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@@ -810,7 +810,8 @@ code = '''
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}
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lfs_unmount(&lfs) => 0;
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for (int j = 2; j < COUNT; j++) {
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// try seeking to each dir entry
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for (int j = 0; j < COUNT; j++) {
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lfs_mount(&lfs, cfg) => 0;
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lfs_dir_t dir;
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lfs_dir_open(&lfs, &dir, "hello") => 0;
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@@ -822,16 +823,15 @@ code = '''
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assert(strcmp(info.name, "..") == 0);
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assert(info.type == LFS_TYPE_DIR);
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lfs_soff_t pos;
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for (int i = 0; i < j; i++) {
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char path[1024];
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sprintf(path, "kitty%03d", i);
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lfs_dir_read(&lfs, &dir, &info) => 1;
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assert(strcmp(info.name, path) == 0);
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assert(info.type == LFS_TYPE_DIR);
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pos = lfs_dir_tell(&lfs, &dir);
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assert(pos >= 0);
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}
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lfs_soff_t pos = lfs_dir_tell(&lfs, &dir);
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assert(pos >= 0);
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lfs_dir_seek(&lfs, &dir, pos) => 0;
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char path[1024];
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@@ -861,6 +861,52 @@ code = '''
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lfs_dir_close(&lfs, &dir) => 0;
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lfs_unmount(&lfs) => 0;
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}
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// try seeking to end of dir
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lfs_mount(&lfs, cfg) => 0;
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lfs_dir_t dir;
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lfs_dir_open(&lfs, &dir, "hello") => 0;
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struct lfs_info info;
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lfs_dir_read(&lfs, &dir, &info) => 1;
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assert(strcmp(info.name, ".") == 0);
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assert(info.type == LFS_TYPE_DIR);
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lfs_dir_read(&lfs, &dir, &info) => 1;
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assert(strcmp(info.name, "..") == 0);
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assert(info.type == LFS_TYPE_DIR);
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for (int i = 0; i < COUNT; i++) {
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char path[1024];
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sprintf(path, "kitty%03d", i);
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lfs_dir_read(&lfs, &dir, &info) => 1;
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assert(strcmp(info.name, path) == 0);
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assert(info.type == LFS_TYPE_DIR);
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}
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lfs_soff_t pos = lfs_dir_tell(&lfs, &dir);
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assert(pos >= 0);
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lfs_dir_read(&lfs, &dir, &info) => 0;
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lfs_dir_seek(&lfs, &dir, pos) => 0;
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lfs_dir_read(&lfs, &dir, &info) => 0;
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lfs_dir_rewind(&lfs, &dir) => 0;
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char path[1024];
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sprintf(path, "kitty%03d", 0);
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lfs_dir_read(&lfs, &dir, &info) => 1;
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assert(strcmp(info.name, ".") == 0);
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assert(info.type == LFS_TYPE_DIR);
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lfs_dir_read(&lfs, &dir, &info) => 1;
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assert(strcmp(info.name, "..") == 0);
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assert(info.type == LFS_TYPE_DIR);
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lfs_dir_read(&lfs, &dir, &info) => 1;
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assert(strcmp(info.name, path) == 0);
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assert(info.type == LFS_TYPE_DIR);
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lfs_dir_seek(&lfs, &dir, pos) => 0;
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lfs_dir_read(&lfs, &dir, &info) => 0;
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lfs_dir_close(&lfs, &dir) => 0;
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lfs_unmount(&lfs) => 0;
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'''
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[cases.test_dirs_toot_seek]
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@@ -877,7 +923,7 @@ code = '''
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}
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lfs_unmount(&lfs) => 0;
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for (int j = 2; j < COUNT; j++) {
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for (int j = 0; j < COUNT; j++) {
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lfs_mount(&lfs, cfg) => 0;
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lfs_dir_t dir;
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lfs_dir_open(&lfs, &dir, "/") => 0;
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@@ -889,16 +935,15 @@ code = '''
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assert(strcmp(info.name, "..") == 0);
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assert(info.type == LFS_TYPE_DIR);
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lfs_soff_t pos;
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for (int i = 0; i < j; i++) {
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char path[1024];
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sprintf(path, "hi%03d", i);
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lfs_dir_read(&lfs, &dir, &info) => 1;
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assert(strcmp(info.name, path) == 0);
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assert(info.type == LFS_TYPE_DIR);
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pos = lfs_dir_tell(&lfs, &dir);
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assert(pos >= 0);
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}
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lfs_soff_t pos = lfs_dir_tell(&lfs, &dir);
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assert(pos >= 0);
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lfs_dir_seek(&lfs, &dir, pos) => 0;
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char path[1024];
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@@ -928,5 +973,51 @@ code = '''
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lfs_dir_close(&lfs, &dir) => 0;
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lfs_unmount(&lfs) => 0;
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}
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// try seeking to end of dir
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lfs_mount(&lfs, cfg) => 0;
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lfs_dir_t dir;
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lfs_dir_open(&lfs, &dir, "/") => 0;
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struct lfs_info info;
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lfs_dir_read(&lfs, &dir, &info) => 1;
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assert(strcmp(info.name, ".") == 0);
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assert(info.type == LFS_TYPE_DIR);
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lfs_dir_read(&lfs, &dir, &info) => 1;
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assert(strcmp(info.name, "..") == 0);
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assert(info.type == LFS_TYPE_DIR);
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for (int i = 0; i < COUNT; i++) {
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char path[1024];
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sprintf(path, "hi%03d", i);
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lfs_dir_read(&lfs, &dir, &info) => 1;
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assert(strcmp(info.name, path) == 0);
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assert(info.type == LFS_TYPE_DIR);
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}
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lfs_soff_t pos = lfs_dir_tell(&lfs, &dir);
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assert(pos >= 0);
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lfs_dir_read(&lfs, &dir, &info) => 0;
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lfs_dir_seek(&lfs, &dir, pos) => 0;
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lfs_dir_read(&lfs, &dir, &info) => 0;
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lfs_dir_rewind(&lfs, &dir) => 0;
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char path[1024];
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sprintf(path, "hi%03d", 0);
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lfs_dir_read(&lfs, &dir, &info) => 1;
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assert(strcmp(info.name, ".") == 0);
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assert(info.type == LFS_TYPE_DIR);
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lfs_dir_read(&lfs, &dir, &info) => 1;
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assert(strcmp(info.name, "..") == 0);
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assert(info.type == LFS_TYPE_DIR);
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lfs_dir_read(&lfs, &dir, &info) => 1;
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assert(strcmp(info.name, path) == 0);
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assert(info.type == LFS_TYPE_DIR);
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lfs_dir_seek(&lfs, &dir, pos) => 0;
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lfs_dir_read(&lfs, &dir, &info) => 0;
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lfs_dir_close(&lfs, &dir) => 0;
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lfs_unmount(&lfs) => 0;
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'''
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@@ -59,6 +59,150 @@ code = '''
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lfs_unmount(&lfs) => 0;
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'''
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# test that we only run deorphan once per power-cycle
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[cases.test_orphans_no_orphans]
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in = 'lfs.c'
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code = '''
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lfs_t lfs;
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lfs_format(&lfs, cfg) => 0;
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lfs_mount(&lfs, cfg) => 0;
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// mark the filesystem as having orphans
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lfs_fs_preporphans(&lfs, +1) => 0;
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lfs_mdir_t mdir;
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lfs_dir_fetch(&lfs, &mdir, (lfs_block_t[2]){0, 1}) => 0;
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lfs_dir_commit(&lfs, &mdir, NULL, 0) => 0;
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// we should have orphans at this state
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assert(lfs_gstate_hasorphans(&lfs.gstate));
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lfs_unmount(&lfs) => 0;
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// mount
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lfs_mount(&lfs, cfg) => 0;
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// we should detect orphans
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assert(lfs_gstate_hasorphans(&lfs.gstate));
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// force consistency
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lfs_fs_forceconsistency(&lfs) => 0;
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// we should no longer have orphans
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assert(!lfs_gstate_hasorphans(&lfs.gstate));
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lfs_unmount(&lfs) => 0;
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'''
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[cases.test_orphans_one_orphan]
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in = 'lfs.c'
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code = '''
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lfs_t lfs;
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lfs_format(&lfs, cfg) => 0;
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lfs_mount(&lfs, cfg) => 0;
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// create an orphan
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lfs_mdir_t orphan;
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lfs_alloc_ack(&lfs);
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lfs_dir_alloc(&lfs, &orphan) => 0;
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lfs_dir_commit(&lfs, &orphan, NULL, 0) => 0;
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// append our orphan and mark the filesystem as having orphans
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lfs_fs_preporphans(&lfs, +1) => 0;
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lfs_mdir_t mdir;
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lfs_dir_fetch(&lfs, &mdir, (lfs_block_t[2]){0, 1}) => 0;
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lfs_pair_tole32(orphan.pair);
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lfs_dir_commit(&lfs, &mdir, LFS_MKATTRS(
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{LFS_MKTAG(LFS_TYPE_SOFTTAIL, 0x3ff, 8), orphan.pair})) => 0;
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// we should have orphans at this state
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assert(lfs_gstate_hasorphans(&lfs.gstate));
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lfs_unmount(&lfs) => 0;
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|
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// mount
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lfs_mount(&lfs, cfg) => 0;
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// we should detect orphans
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assert(lfs_gstate_hasorphans(&lfs.gstate));
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// force consistency
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lfs_fs_forceconsistency(&lfs) => 0;
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// we should no longer have orphans
|
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assert(!lfs_gstate_hasorphans(&lfs.gstate));
|
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lfs_unmount(&lfs) => 0;
|
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'''
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# test that we can persist gstate with lfs_fs_mkconsistent
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[cases.test_orphans_mkconsistent_no_orphans]
|
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in = 'lfs.c'
|
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code = '''
|
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lfs_t lfs;
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lfs_format(&lfs, cfg) => 0;
|
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|
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lfs_mount(&lfs, cfg) => 0;
|
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// mark the filesystem as having orphans
|
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lfs_fs_preporphans(&lfs, +1) => 0;
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lfs_mdir_t mdir;
|
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lfs_dir_fetch(&lfs, &mdir, (lfs_block_t[2]){0, 1}) => 0;
|
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lfs_dir_commit(&lfs, &mdir, NULL, 0) => 0;
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|
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// we should have orphans at this state
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assert(lfs_gstate_hasorphans(&lfs.gstate));
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lfs_unmount(&lfs) => 0;
|
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|
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// mount
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lfs_mount(&lfs, cfg) => 0;
|
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// we should detect orphans
|
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assert(lfs_gstate_hasorphans(&lfs.gstate));
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// force consistency
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lfs_fs_mkconsistent(&lfs) => 0;
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// we should no longer have orphans
|
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assert(!lfs_gstate_hasorphans(&lfs.gstate));
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// remount
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lfs_unmount(&lfs) => 0;
|
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lfs_mount(&lfs, cfg) => 0;
|
||||
// we should still have no orphans
|
||||
assert(!lfs_gstate_hasorphans(&lfs.gstate));
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lfs_unmount(&lfs) => 0;
|
||||
'''
|
||||
|
||||
[cases.test_orphans_mkconsistent_one_orphan]
|
||||
in = 'lfs.c'
|
||||
code = '''
|
||||
lfs_t lfs;
|
||||
lfs_format(&lfs, cfg) => 0;
|
||||
|
||||
lfs_mount(&lfs, cfg) => 0;
|
||||
// create an orphan
|
||||
lfs_mdir_t orphan;
|
||||
lfs_alloc_ack(&lfs);
|
||||
lfs_dir_alloc(&lfs, &orphan) => 0;
|
||||
lfs_dir_commit(&lfs, &orphan, NULL, 0) => 0;
|
||||
|
||||
// append our orphan and mark the filesystem as having orphans
|
||||
lfs_fs_preporphans(&lfs, +1) => 0;
|
||||
lfs_mdir_t mdir;
|
||||
lfs_dir_fetch(&lfs, &mdir, (lfs_block_t[2]){0, 1}) => 0;
|
||||
lfs_pair_tole32(orphan.pair);
|
||||
lfs_dir_commit(&lfs, &mdir, LFS_MKATTRS(
|
||||
{LFS_MKTAG(LFS_TYPE_SOFTTAIL, 0x3ff, 8), orphan.pair})) => 0;
|
||||
|
||||
// we should have orphans at this state
|
||||
assert(lfs_gstate_hasorphans(&lfs.gstate));
|
||||
lfs_unmount(&lfs) => 0;
|
||||
|
||||
// mount
|
||||
lfs_mount(&lfs, cfg) => 0;
|
||||
// we should detect orphans
|
||||
assert(lfs_gstate_hasorphans(&lfs.gstate));
|
||||
// force consistency
|
||||
lfs_fs_mkconsistent(&lfs) => 0;
|
||||
// we should no longer have orphans
|
||||
assert(!lfs_gstate_hasorphans(&lfs.gstate));
|
||||
|
||||
// remount
|
||||
lfs_unmount(&lfs) => 0;
|
||||
lfs_mount(&lfs, cfg) => 0;
|
||||
// we should still have no orphans
|
||||
assert(!lfs_gstate_hasorphans(&lfs.gstate));
|
||||
lfs_unmount(&lfs) => 0;
|
||||
'''
|
||||
|
||||
# reentrant testing for orphans, basically just spam mkdir/remove
|
||||
[cases.test_orphans_reentrant]
|
||||
reentrant = true
|
||||
|
||||
Reference in New Issue
Block a user