Renamed traversal -> trv

- test_traversal -> test_trvs
- lfs3_traversal_t -> lfs3_trv_t
- lfs3_btraversal_t -> lfs3_btrv_t
- t -> trv
- bt -> btrv
- lfs3_traversal_* -> lfs3_trv_*
- lfs3_btraversal_* -> lfs3_btrv_*

The traversal type is becoming one of the more fundamental types in
littlefs, and if DIR and REG both get shortened names, it makes sense
for TRV to have one as well.

This also removes the temptation to use t for traversals, which is
probably an even worse name.

---

Note that lfs3_btree_traverse, lfs3_mtree_traverse, etc, remain
unaffected. This may change in the future, but it's interesting to note
that verbs seem to need much less typing than nouns.
This commit is contained in:
Christopher Haster
2025-07-18 17:46:16 -05:00
parent 4cea5af96f
commit 2586fe68a2
12 changed files with 1376 additions and 1376 deletions
+254 -254
View File
File diff suppressed because it is too large Load Diff
+14 -14
View File
@@ -108,7 +108,7 @@ enum lfs3_type {
// internally used types, don't use these
LFS3_type_BOOKMARK = 4, // Directory bookmark
LFS3_type_ORPHAN = 5, // An orphaned stickynote
LFS3_type_TRAVERSAL = 6, // An open traversal object
LFS3_type_TRV = 6, // An open traversal object
};
// File open flags
@@ -757,20 +757,20 @@ typedef struct lfs3_dir {
lfs3_off_t pos;
} lfs3_dir_t;
typedef struct lfs3_btraversal {
typedef struct lfs3_btrv {
lfs3_bid_t bid;
const lfs3_rbyd_t *branch;
lfs3_srid_t rid;
lfs3_rbyd_t rbyd;
} lfs3_btraversal_t;
} lfs3_btrv_t;
// littlefs traversal type
typedef struct lfs3_traversal {
typedef struct lfs3_trv {
// mdir/bshrub/btree state, this also includes our traversal
// state machine
lfs3_bshrub_t b;
// opened file state
lfs3_handle_t *ht;
lfs3_handle_t *htrv;
union {
// cycle detection state, only valid when traversing the mroot chain
struct {
@@ -779,16 +779,16 @@ typedef struct lfs3_traversal {
uint8_t power;
} mtortoise;
// btree traversal state
lfs3_btraversal_t bt;
lfs3_btrv_t btrv;
// graft traversal state
lfs3_size_t gt;
lfs3_size_t gtrv;
} u;
// recalculate gcksum when traversing with ckmeta
uint32_t gcksum;
// pending blocks, only used in lfs3_traversal_read
// pending blocks, only used in lfs3_trv_read
lfs3_sblock_t blocks[2];
} lfs3_traversal_t;
} lfs3_trv_t;
// grm encoding:
// .- -+- -+- -+- -+- -. mids: 2 leb128s <=2x5 bytes
@@ -886,7 +886,7 @@ typedef struct lfs3 {
// optional incremental gc state
#ifdef LFS3_GC
struct {
lfs3_traversal_t t;
lfs3_trv_t trv;
} gc;
#endif
} lfs3_t;
@@ -1241,13 +1241,13 @@ int lfs3_dir_rewind(lfs3_t *lfs3, lfs3_dir_t *dir);
// the filesystem.
//
// Returns a negative error code on failure.
int lfs3_traversal_open(lfs3_t *lfs3, lfs3_traversal_t *t, uint32_t flags);
int lfs3_trv_open(lfs3_t *lfs3, lfs3_trv_t *trv, uint32_t flags);
// Close a traversal
//
// Releases any allocated resources.
// Returns a negative error code on failure.
int lfs3_traversal_close(lfs3_t *lfs3, lfs3_traversal_t *t);
int lfs3_trv_close(lfs3_t *lfs3, lfs3_trv_t *trv);
// Progress the traversal and read an entry
//
@@ -1255,13 +1255,13 @@ int lfs3_traversal_close(lfs3_t *lfs3, lfs3_traversal_t *t);
//
// Returns 0 on success, LFS3_ERR_NOENT at the end of traversal, or a
// negative error code on failure.
int lfs3_traversal_read(lfs3_t *lfs3, lfs3_traversal_t *t,
int lfs3_trv_read(lfs3_t *lfs3, lfs3_trv_t *trv,
struct lfs3_tinfo *tinfo);
// Reset the traversal
//
// Returns a negative error code on failure.
int lfs3_traversal_rewind(lfs3_t *lfs3, lfs3_traversal_t *t);
int lfs3_trv_rewind(lfs3_t *lfs3, lfs3_trv_t *trv);
/// Filesystem-level filesystem operations
+9 -9
View File
@@ -180,8 +180,8 @@ code = '''
uint8_t *seen = malloc((BLOCK_COUNT+7)/8);
memset(seen, 0, (BLOCK_COUNT+7)/8);
lfs3_traversal_t t;
lfs3_traversal_init(&t,
lfs3_trv_t trv;
lfs3_trv_init(&trv,
LFS3_T_RDONLY
| ((CKMETA) ? LFS3_T_CKMETA : 0));
for (lfs3_block_t i = 0;; i++) {
@@ -190,7 +190,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bptr_t bptr;
tag = lfs3_mtree_traverse(&lfs3, &t,
tag = lfs3_mtree_traverse(&lfs3, &trv,
&bptr);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -351,8 +351,8 @@ code = '''
uint8_t *seen = malloc((BLOCK_COUNT+7)/8);
memset(seen, 0, (BLOCK_COUNT+7)/8);
lfs3_traversal_t t;
lfs3_traversal_init(&t,
lfs3_trv_t trv;
lfs3_trv_init(&trv,
LFS3_T_RDONLY
| ((CKMETA) ? LFS3_T_CKMETA : 0));
for (lfs3_block_t i = 0;; i++) {
@@ -361,7 +361,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bptr_t bptr;
tag = lfs3_mtree_traverse(&lfs3, &t,
tag = lfs3_mtree_traverse(&lfs3, &trv,
&bptr);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -508,8 +508,8 @@ code = '''
uint8_t *seen = malloc((BLOCK_COUNT+7)/8);
memset(seen, 0, (BLOCK_COUNT+7)/8);
lfs3_traversal_t t;
lfs3_traversal_init(&t,
lfs3_trv_t trv;
lfs3_trv_init(&trv,
LFS3_T_RDONLY
| ((CKMETA) ? LFS3_T_CKMETA : 0));
for (lfs3_block_t i = 0;; i++) {
@@ -518,7 +518,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bptr_t bptr;
tag = lfs3_mtree_traverse(&lfs3, &t,
tag = lfs3_mtree_traverse(&lfs3, &trv,
&bptr);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
+1 -1
View File
@@ -4,7 +4,7 @@ after = [
'test_files',
'test_fwrite',
'test_stickynotes',
'test_traversal',
'test_trvs',
'test_gc',
'test_mount',
'test_ck',
+6 -6
View File
@@ -4305,8 +4305,8 @@ code = '''
uint8_t *seen = malloc((BLOCK_COUNT+7)/8);
memset(seen, 0, (BLOCK_COUNT+7)/8);
lfs3_btraversal_t bt;
lfs3_btraversal_init(&bt);
lfs3_btrv_t btrv;
lfs3_btrv_init(&btrv);
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
assert(i <= 2*N);
@@ -4315,7 +4315,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bid_t weight;
lfs3_data_t data;
tag = lfs3_btree_traverse(&lfs3, &btree, &bt,
tag = lfs3_btree_traverse(&lfs3, &btree, &btrv,
&bid, &weight, &data);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -4463,8 +4463,8 @@ code = '''
uint8_t *seen = malloc((BLOCK_COUNT+7)/8);
memset(seen, 0, (BLOCK_COUNT+7)/8);
lfs3_btraversal_t bt;
lfs3_btraversal_init(&bt);
lfs3_btrv_t btrv;
lfs3_btrv_init(&btrv);
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
assert(i <= 2*N);
@@ -4473,7 +4473,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bid_t weight;
lfs3_data_t data;
tag = lfs3_btree_traverse(&lfs3, &btree, &bt,
tag = lfs3_btree_traverse(&lfs3, &btree, &btrv,
&bid, &weight, &data);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
+116 -116
View File
@@ -1,5 +1,5 @@
# Test checksum validation things
after = ['test_traversal', 'test_gc', 'test_mount']
after = ['test_trvs', 'test_gc', 'test_mount']
code = '''
@@ -182,7 +182,7 @@ code = '''
[cases.test_ck_ckmeta_easy]
# METHOD=0 => lfs3_fs_ckmeta
# METHOD=1 => lfs3_fs_gc
# METHOD=2 => lfs3_traversal_read
# METHOD=2 => lfs3_trv_read
# METHOD=3 => lfs3_mount
defines.METHOD = [0, 1, 2, 3]
defines.GC_FLAGS = 'LFS3_GC_CKMETA'
@@ -230,17 +230,17 @@ code = '''
}
// traverse to find blocks
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t k = 0;
for (lfs3_block_t j = 0;; j++) {
assert(j < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
goto done;
}
@@ -259,7 +259,7 @@ code = '''
clobber_buf, BLOCK_SIZE) => 0;
if (tinfo.btype != LFS3_BTYPE_MDIR || k == i+1) {
i += (tinfo.btype == LFS3_BTYPE_MDIR) ? 2 : 1;
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto clobbered;
}
}
@@ -280,22 +280,22 @@ code = '''
LFS3_UNREACHABLE();
#endif
// find clobbered blocks with lfs3_traversal_read
// find clobbered blocks with lfs3_trv_read
} else if (METHOD == 2) {
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY | LFS3_T_CKMETA) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY | LFS3_T_CKMETA) => 0;
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
LFS3_ASSERT(i < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_CORRUPT);
if (err == LFS3_ERR_CORRUPT) {
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
// find clobbered blocks with lfs3_mount
} else if (METHOD == 3) {
@@ -319,7 +319,7 @@ done:;
[cases.test_ck_ckdata_easy]
# METHOD=0 => lfs3_fs_ckdata
# METHOD=1 => lfs3_fs_gc
# METHOD=2 => lfs3_traversal_read
# METHOD=2 => lfs3_trv_read
# METHOD=3 => lfs3_mount
defines.METHOD = [0, 1, 2, 3]
defines.GC_FLAGS = 'LFS3_GC_CKDATA'
@@ -367,17 +367,17 @@ code = '''
}
// traverse to find blocks
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t k = 0;
for (lfs3_block_t j = 0;; j++) {
assert(j < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
goto done;
}
@@ -397,7 +397,7 @@ code = '''
clobber_buf, BLOCK_SIZE) => 0;
if (tinfo.btype != LFS3_BTYPE_MDIR || k == i+1) {
i += (tinfo.btype == LFS3_BTYPE_MDIR) ? 2 : 1;
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto clobbered;
}
}
@@ -418,22 +418,22 @@ code = '''
LFS3_UNREACHABLE();
#endif
// find clobbered blocks with lfs3_traversal_read
// find clobbered blocks with lfs3_trv_read
} else if (METHOD == 2) {
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY | LFS3_T_CKDATA) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY | LFS3_T_CKDATA) => 0;
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
LFS3_ASSERT(i < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_CORRUPT);
if (err == LFS3_ERR_CORRUPT) {
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
// find clobbered blocks with lfs3_mount
} else if (METHOD == 3) {
@@ -458,7 +458,7 @@ done:;
[cases.test_ck_ckmeta_hard]
# METHOD=0 => lfs3_fs_ckmeta
# METHOD=1 => lfs3_fs_gc
# METHOD=2 => lfs3_traversal_read
# METHOD=2 => lfs3_trv_read
# METHOD=3 => lfs3_mount
defines.METHOD = [0, 1, 2, 3]
defines.GC_FLAGS = 'LFS3_GC_CKMETA'
@@ -509,18 +509,18 @@ code = '''
}
// traverse to find blocks
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t k = 0;
lfs3_block_t badblock;
for (lfs3_block_t j = 0;; j++) {
assert(j < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
goto done;
}
@@ -530,7 +530,7 @@ code = '''
// found an interesting block?
if (k == i) {
badblock = tinfo.block;
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto clobber;
}
k += 1;
@@ -570,17 +570,17 @@ code = '''
LFS3_UNREACHABLE();
#endif
// find clobbered blocks with lfs3_traversal_read
// find clobbered blocks with lfs3_trv_read
} else if (METHOD == 2) {
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t,
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv,
LFS3_T_RDONLY | LFS3_T_CKMETA) => 0;
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
LFS3_ASSERT(i < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err
|| err == LFS3_ERR_NOENT
|| err == LFS3_ERR_CORRUPT);
@@ -588,11 +588,11 @@ code = '''
break;
}
if (err == LFS3_ERR_CORRUPT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto detected;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
// find clobbered blocks with lfs3_mount
} else if (METHOD == 3) {
@@ -713,7 +713,7 @@ done:;
[cases.test_ck_ckdata_hard]
# METHOD=0 => lfs3_fs_ckdata
# METHOD=1 => lfs3_fs_gc
# METHOD=2 => lfs3_traversal_read
# METHOD=2 => lfs3_trv_read
# METHOD=3 => lfs3_mount
defines.METHOD = [0, 1, 2, 3]
defines.GC_FLAGS = 'LFS3_GC_CKDATA'
@@ -764,18 +764,18 @@ code = '''
}
// traverse to find blocks
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t k = 0;
lfs3_block_t badblock;
for (lfs3_block_t j = 0;; j++) {
assert(j < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
goto done;
}
@@ -786,7 +786,7 @@ code = '''
// found an interesting block?
if (k == i) {
badblock = tinfo.block;
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto clobber;
}
k += 1;
@@ -826,17 +826,17 @@ code = '''
LFS3_UNREACHABLE();
#endif
// find clobbered blocks with lfs3_traversal_read
// find clobbered blocks with lfs3_trv_read
} else if (METHOD == 2) {
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t,
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv,
LFS3_T_RDONLY | LFS3_T_CKDATA) => 0;
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
LFS3_ASSERT(i < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err
|| err == LFS3_ERR_NOENT
|| err == LFS3_ERR_CORRUPT);
@@ -844,11 +844,11 @@ code = '''
break;
}
if (err == LFS3_ERR_CORRUPT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto detected;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
// find clobbered blocks with lfs3_mount
} else if (METHOD == 3) {
@@ -1007,17 +1007,17 @@ code = '''
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
// traverse to find blocks
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t k = 0;
for (lfs3_block_t j = 0;; j++) {
assert(j < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_file_close(&lfs3, &file) => 0;
lfs3_unmount(&lfs3) => 0;
goto done;
@@ -1032,7 +1032,7 @@ code = '''
CFG->erase(CFG, tinfo.block) => 0;
CFG->prog(CFG, tinfo.block, 0,
clobber_buf, BLOCK_SIZE) => 0;
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto clobbered;
}
k += 1;
@@ -1104,17 +1104,17 @@ code = '''
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
// traverse to find blocks
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t k = 0;
for (lfs3_block_t j = 0;; j++) {
assert(j < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_file_close(&lfs3, &file) => 0;
lfs3_unmount(&lfs3) => 0;
goto done;
@@ -1130,7 +1130,7 @@ code = '''
CFG->erase(CFG, tinfo.block) => 0;
CFG->prog(CFG, tinfo.block, 0,
clobber_buf, BLOCK_SIZE) => 0;
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto clobbered;
}
k += 1;
@@ -1208,18 +1208,18 @@ code = '''
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
// traverse to find blocks
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t k = 0;
lfs3_block_t badblock;
for (lfs3_block_t j = 0;; j++) {
assert(j < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_file_close(&lfs3, &file) => 0;
lfs3_unmount(&lfs3) => 0;
goto done;
@@ -1229,7 +1229,7 @@ code = '''
// found an interesting block?
if (k == i) {
badblock = tinfo.block;
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto clobber;
}
k += 1;
@@ -1356,18 +1356,18 @@ code = '''
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
// traverse to find blocks
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t k = 0;
lfs3_block_t badblock;
for (lfs3_block_t j = 0;; j++) {
assert(j < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_file_close(&lfs3, &file) => 0;
lfs3_unmount(&lfs3) => 0;
goto done;
@@ -1378,7 +1378,7 @@ code = '''
// found an interesting block?
if (k == i) {
badblock = tinfo.block;
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto clobber;
}
k += 1;
@@ -1578,18 +1578,18 @@ code = '''
lfs3_file_close(&lfs3, &file) => 0;
// find the data block
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t badblock;
while (true) {
struct lfs3_tinfo tinfo;
lfs3_traversal_read(&lfs3, &t, &tinfo) => 0;
lfs3_trv_read(&lfs3, &trv, &tinfo) => 0;
if (tinfo.btype == LFS3_BTYPE_DATA) {
badblock = tinfo.block;
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
@@ -1689,18 +1689,18 @@ code = '''
lfs3_file_close(&lfs3, &file) => 0;
// find the btree block
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t badblock;
while (true) {
struct lfs3_tinfo tinfo;
lfs3_traversal_read(&lfs3, &t, &tinfo) => 0;
lfs3_trv_read(&lfs3, &trv, &tinfo) => 0;
if (tinfo.btype == LFS3_BTYPE_BTREE) {
badblock = tinfo.block;
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
@@ -2088,18 +2088,18 @@ code = '''
lfs3_file_close(&lfs3, &file) => 0;
// find the data block
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t badblock;
while (true) {
struct lfs3_tinfo tinfo;
lfs3_traversal_read(&lfs3, &t, &tinfo) => 0;
lfs3_trv_read(&lfs3, &trv, &tinfo) => 0;
if (tinfo.btype == LFS3_BTYPE_DATA) {
badblock = tinfo.block;
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
@@ -2199,18 +2199,18 @@ code = '''
lfs3_file_close(&lfs3, &file) => 0;
// find the btree block
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t badblock;
while (true) {
struct lfs3_tinfo tinfo;
lfs3_traversal_read(&lfs3, &t, &tinfo) => 0;
lfs3_trv_read(&lfs3, &trv, &tinfo) => 0;
if (tinfo.btype == LFS3_BTYPE_BTREE) {
badblock = tinfo.block;
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
@@ -2462,18 +2462,18 @@ code = '''
lfs3_file_close(&lfs3, &file) => 0;
// find the btree block
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t badblock;
while (true) {
struct lfs3_tinfo tinfo;
lfs3_traversal_read(&lfs3, &t, &tinfo) => 0;
lfs3_trv_read(&lfs3, &trv, &tinfo) => 0;
if (tinfo.btype == LFS3_BTYPE_BTREE) {
badblock = tinfo.block;
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
@@ -2606,18 +2606,18 @@ code = '''
lfs3_file_close(&lfs3, &file) => 0;
// find the data block
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t badblock;
while (true) {
struct lfs3_tinfo tinfo;
lfs3_traversal_read(&lfs3, &t, &tinfo) => 0;
lfs3_trv_read(&lfs3, &trv, &tinfo) => 0;
if (tinfo.btype == LFS3_BTYPE_DATA) {
badblock = tinfo.block;
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
@@ -2834,15 +2834,15 @@ code = '''
// run ckmeta mtreeonly?
} else if (CKMETA && MTREEONLY) {
// need an explicit traversal for this
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t,
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv,
LFS3_T_RDONLY | LFS3_T_MTREEONLY | LFS3_T_CKMETA) => 0;
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
LFS3_ASSERT(i < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err
|| err == LFS3_ERR_NOENT
|| err == LFS3_ERR_CORRUPT);
@@ -2850,11 +2850,11 @@ code = '''
break;
}
if (err == LFS3_ERR_CORRUPT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto corrupt_mounted;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
}
}
@@ -3152,15 +3152,15 @@ code = '''
// run ckmeta mtreeonly?
} else if (CKMETA && MTREEONLY) {
// need an explicit traversal for this
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t,
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv,
LFS3_T_RDONLY | LFS3_T_MTREEONLY | LFS3_T_CKMETA) => 0;
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
LFS3_ASSERT(i < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err
|| err == LFS3_ERR_NOENT
|| err == LFS3_ERR_CORRUPT);
@@ -3168,11 +3168,11 @@ code = '''
break;
}
if (err == LFS3_ERR_CORRUPT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto corrupt_mounted;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
}
}
@@ -3568,15 +3568,15 @@ code = '''
// run ckmeta mtreeonly?
} else if (CKMETA && MTREEONLY) {
// need an explicit traversal for this
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t,
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv,
LFS3_T_RDONLY | LFS3_T_MTREEONLY | LFS3_T_CKMETA) => 0;
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
LFS3_ASSERT(i < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err
|| err == LFS3_ERR_NOENT
|| err == LFS3_ERR_CORRUPT);
@@ -3584,11 +3584,11 @@ code = '''
break;
}
if (err == LFS3_ERR_CORRUPT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto corrupt_open;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
}
}
@@ -3851,15 +3851,15 @@ code = '''
// run ckmeta mtreeonly?
} else if (CKMETA && MTREEONLY) {
// need an explicit traversal for this
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t,
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv,
LFS3_T_RDONLY | LFS3_T_MTREEONLY | LFS3_T_CKMETA) => 0;
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
LFS3_ASSERT(i < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err
|| err == LFS3_ERR_NOENT
|| err == LFS3_ERR_CORRUPT);
@@ -3867,11 +3867,11 @@ code = '''
break;
}
if (err == LFS3_ERR_CORRUPT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto corrupt_mounted;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
}
}
@@ -4451,15 +4451,15 @@ code = '''
// run ckmeta mtreeonly?
} else if (CKMETA && MTREEONLY) {
// need an explicit traversal for this
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t,
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv,
LFS3_T_RDONLY | LFS3_T_MTREEONLY | LFS3_T_CKMETA) => 0;
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
LFS3_ASSERT(i < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err
|| err == LFS3_ERR_NOENT
|| err == LFS3_ERR_CORRUPT);
@@ -4467,11 +4467,11 @@ code = '''
break;
}
if (err == LFS3_ERR_CORRUPT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto corrupt_mounted;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
}
}
+30 -30
View File
@@ -183,8 +183,8 @@ code = '''
lfs3_size_t fragments = 0;
lfs3_file_open(&lfs3, &file, "hello", LFS3_O_RDONLY) => 0;
lfs3_btraversal_t bt;
lfs3_btraversal_init(&bt);
lfs3_btrv_t btrv;
lfs3_btrv_init(&btrv);
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
assert(i < 2*BLOCK_COUNT);
@@ -193,7 +193,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bid_t weight;
lfs3_data_t data;
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &bt,
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &btrv,
&bid, &weight, &data);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -331,8 +331,8 @@ code = '''
lfs3_block_t blocks = 0;
lfs3_file_open(&lfs3, &file, "hello", LFS3_O_RDONLY) => 0;
lfs3_btraversal_t bt;
lfs3_btraversal_init(&bt);
lfs3_btrv_t btrv;
lfs3_btrv_init(&btrv);
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
assert(i < 2*BLOCK_COUNT);
@@ -341,7 +341,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bid_t weight;
lfs3_data_t data;
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &bt,
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &btrv,
&bid, &weight, &data);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -597,8 +597,8 @@ code = '''
lfs3_size_t fragments = 0;
lfs3_file_open(&lfs3, &file, "hello", LFS3_O_RDONLY) => 0;
lfs3_btraversal_t bt;
lfs3_btraversal_init(&bt);
lfs3_btrv_t btrv;
lfs3_btrv_init(&btrv);
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
assert(i < 2*BLOCK_COUNT);
@@ -607,7 +607,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bid_t weight;
lfs3_data_t data;
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &bt,
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &btrv,
&bid, &weight, &data);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -760,8 +760,8 @@ code = '''
lfs3_block_t blocks = 0;
lfs3_file_open(&lfs3, &file, "hello", LFS3_O_RDONLY) => 0;
lfs3_btraversal_t bt;
lfs3_btraversal_init(&bt);
lfs3_btrv_t btrv;
lfs3_btrv_init(&btrv);
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
assert(i < 2*BLOCK_COUNT);
@@ -770,7 +770,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bid_t weight;
lfs3_data_t data;
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &bt,
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &btrv,
&bid, &weight, &data);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -2088,8 +2088,8 @@ code = '''
lfs3_size_t fragments = 0;
lfs3_file_open(&lfs3, &file, "hello", LFS3_O_RDONLY) => 0;
lfs3_btraversal_t bt;
lfs3_btraversal_init(&bt);
lfs3_btrv_t btrv;
lfs3_btrv_init(&btrv);
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
assert(i < 2*BLOCK_COUNT);
@@ -2098,7 +2098,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bid_t weight;
lfs3_data_t data;
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &bt,
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &btrv,
&bid, &weight, &data);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -2240,8 +2240,8 @@ code = '''
lfs3_size_t fragments = 0;
lfs3_file_open(&lfs3, &file, "hello", LFS3_O_RDONLY) => 0;
lfs3_btraversal_t bt;
lfs3_btraversal_init(&bt);
lfs3_btrv_t btrv;
lfs3_btrv_init(&btrv);
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
assert(i < 2*BLOCK_COUNT);
@@ -2250,7 +2250,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bid_t weight;
lfs3_data_t data;
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &bt,
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &btrv,
&bid, &weight, &data);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -2539,8 +2539,8 @@ code = '''
lfs3_size_t fragments = 0;
lfs3_file_open(&lfs3, &file, "hello", LFS3_O_RDONLY) => 0;
lfs3_btraversal_t bt;
lfs3_btraversal_init(&bt);
lfs3_btrv_t btrv;
lfs3_btrv_init(&btrv);
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
assert(i < 2*BLOCK_COUNT);
@@ -2549,7 +2549,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bid_t weight;
lfs3_data_t data;
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &bt,
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &btrv,
&bid, &weight, &data);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -2706,8 +2706,8 @@ code = '''
lfs3_block_t blocks = 0;
lfs3_file_open(&lfs3, &file, "hello", LFS3_O_RDONLY) => 0;
lfs3_btraversal_t bt;
lfs3_btraversal_init(&bt);
lfs3_btrv_t btrv;
lfs3_btrv_init(&btrv);
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
assert(i < 2*BLOCK_COUNT);
@@ -2716,7 +2716,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bid_t weight;
lfs3_data_t data;
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &bt,
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &btrv,
&bid, &weight, &data);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -2999,8 +2999,8 @@ code = '''
lfs3_size_t fragments = 0;
lfs3_file_open(&lfs3, &file, "hello", LFS3_O_RDONLY) => 0;
lfs3_btraversal_t bt;
lfs3_btraversal_init(&bt);
lfs3_btrv_t btrv;
lfs3_btrv_init(&btrv);
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
assert(i < 2*BLOCK_COUNT);
@@ -3009,7 +3009,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bid_t weight;
lfs3_data_t data;
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &bt,
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &btrv,
&bid, &weight, &data);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -3170,8 +3170,8 @@ code = '''
lfs3_block_t blocks = 0;
lfs3_file_open(&lfs3, &file, "hello", LFS3_O_RDONLY) => 0;
lfs3_btraversal_t bt;
lfs3_btraversal_init(&bt);
lfs3_btrv_t btrv;
lfs3_btrv_init(&btrv);
for (lfs3_block_t i = 0;; i++) {
// a bit hacky, but this catches infinite loops
assert(i < 2*BLOCK_COUNT);
@@ -3180,7 +3180,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bid_t weight;
lfs3_data_t data;
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &bt,
tag = lfs3_bshrub_traverse(&lfs3, &file.b, &btrv,
&bid, &weight, &data);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
+99 -99
View File
@@ -1,8 +1,8 @@
# Test GC things
# most of the GC logic is tested in test_traversal, we just test
# most of the GC logic is tested in test_trvs, we just test
# GC-API specific things here
after = ['test_traversal']
after = ['test_trvs']
# test that lookahead can make progress in isolation
[cases.test_gc_lookahead_progress]
@@ -45,7 +45,7 @@ code = '''
struct lfs3_fsinfo fsinfo;
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
assert(fsinfo.flags & LFS3_I_LOOKAHEAD);
assert(lfs3.handles != &lfs3.gc.t.b.h);
assert(lfs3.handles != &lfs3.gc.trv.b.h);
// run GC until we make progress
for (lfs3_block_t i = 0;; i++) {
@@ -112,11 +112,11 @@ code = '''
struct lfs3_fsinfo fsinfo;
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
assert(fsinfo.flags & LFS3_I_LOOKAHEAD);
assert(lfs3.handles != &lfs3.gc.t.b.h);
assert(lfs3.handles != &lfs3.gc.trv.b.h);
// run GC one step
lfs3_fs_gc(&lfs3) => 0;
assert(lfs3.handles == &lfs3.gc.t.b.h);
assert(lfs3.handles == &lfs3.gc.trv.b.h);
// mutate the filesystem
lfs3_file_open(&lfs3, &file, "spider",
@@ -128,7 +128,7 @@ code = '''
lfs3_file_close(&lfs3, &file) => 0;
// run GC until our traversal is done
while (lfs3.handles == &lfs3.gc.t.b.h) {
while (lfs3.handles == &lfs3.gc.trv.b.h) {
lfs3_fs_gc(&lfs3) => 0;
}
@@ -197,7 +197,7 @@ code = '''
struct lfs3_fsinfo fsinfo;
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
assert(fsinfo.flags & LFS3_I_COMPACT);
assert(lfs3.handles != &lfs3.gc.t.b.h);
assert(lfs3.handles != &lfs3.gc.trv.b.h);
// run GC until we make progress
for (lfs3_block_t i = 0;; i++) {
@@ -286,19 +286,19 @@ code = '''
struct lfs3_fsinfo fsinfo;
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
assert(fsinfo.flags & LFS3_I_COMPACT);
assert(lfs3.handles != &lfs3.gc.t.b.h);
assert(lfs3.handles != &lfs3.gc.trv.b.h);
// run GC one traversal + one step
while (true) {
lfs3_fs_gc(&lfs3) => 0;
// internal traversal done?
if (lfs3.handles != &lfs3.gc.t.b.h) {
if (lfs3.handles != &lfs3.gc.trv.b.h) {
break;
}
}
lfs3_fs_gc(&lfs3) => 0;
assert(lfs3.handles == &lfs3.gc.t.b.h);
assert(lfs3.handles == &lfs3.gc.trv.b.h);
// mutate the filesystem
lfs3_file_rewind(&lfs3, &file) => 0;
@@ -309,7 +309,7 @@ code = '''
lfs3_file_sync(&lfs3, &file) => 0;
// run GC until our traversal is done (twice for compact)
while (lfs3.handles == &lfs3.gc.t.b.h) {
while (lfs3.handles == &lfs3.gc.trv.b.h) {
lfs3_fs_gc(&lfs3) => 0;
}
@@ -410,7 +410,7 @@ code = '''
struct lfs3_fsinfo fsinfo;
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
assert(fsinfo.flags & LFS3_I_MKCONSISTENT);
assert(lfs3.handles != &lfs3.gc.t.b.h);
assert(lfs3.handles != &lfs3.gc.trv.b.h);
// run GC until we make progress
for (lfs3_block_t i = 0;; i++) {
@@ -513,7 +513,7 @@ code = '''
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
assert(fsinfo.flags & LFS3_I_MKCONSISTENT);
#ifdef LFS3_GC
assert(lfs3.handles != &lfs3.gc.t.b.h);
assert(lfs3.handles != &lfs3.gc.trv.b.h);
#endif
// call lfs3_fs_mkconsistent
@@ -614,9 +614,9 @@ code = '''
}
// run GC one step
assert(lfs3.handles != &lfs3.gc.t.b.h);
assert(lfs3.handles != &lfs3.gc.trv.b.h);
lfs3_fs_gc(&lfs3) => 0;
assert(lfs3.handles == &lfs3.gc.t.b.h);
assert(lfs3.handles == &lfs3.gc.trv.b.h);
// create the rest of the orphans after GC has started
for (lfs3_size_t i = 0; i < ORPHANS; i++) {
@@ -638,7 +638,7 @@ code = '''
assert(fsinfo.flags & LFS3_I_MKCONSISTENT);
// run GC until our traversal is done
while (lfs3.handles == &lfs3.gc.t.b.h) {
while (lfs3.handles == &lfs3.gc.trv.b.h) {
lfs3_fs_gc(&lfs3) => 0;
}
@@ -721,17 +721,17 @@ code = '''
}
// traverse to find blocks
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t k = 0;
for (lfs3_block_t j = 0;; j++) {
assert(j < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
goto done;
}
@@ -750,7 +750,7 @@ code = '''
clobber_buf, BLOCK_SIZE) => 0;
if (tinfo.btype != LFS3_BTYPE_MDIR || k == i+1) {
i += (tinfo.btype == LFS3_BTYPE_MDIR) ? 2 : 1;
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto clobbered;
}
}
@@ -821,17 +821,17 @@ code = '''
}
// traverse to find blocks
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t k = 0;
for (lfs3_block_t j = 0;; j++) {
assert(j < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
goto done;
}
@@ -851,7 +851,7 @@ code = '''
clobber_buf, BLOCK_SIZE) => 0;
if (tinfo.btype != LFS3_BTYPE_MDIR || k == i+1) {
i += (tinfo.btype == LFS3_BTYPE_MDIR) ? 2 : 1;
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto clobbered;
}
}
@@ -923,17 +923,17 @@ code = '''
}
// traverse to find blocks
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t k = 0;
for (lfs3_block_t j = 0;; j++) {
assert(j < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
goto done;
}
@@ -952,7 +952,7 @@ code = '''
clobber_buf, BLOCK_SIZE) => 0;
if (tinfo.btype != LFS3_BTYPE_MDIR || k == i+1) {
i += (tinfo.btype == LFS3_BTYPE_MDIR) ? 2 : 1;
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto clobbered;
}
}
@@ -1010,17 +1010,17 @@ code = '''
}
// traverse to find blocks
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t k = 0;
for (lfs3_block_t j = 0;; j++) {
assert(j < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
goto done;
}
@@ -1040,7 +1040,7 @@ code = '''
clobber_buf, BLOCK_SIZE) => 0;
if (tinfo.btype != LFS3_BTYPE_MDIR || k == i+1) {
i += (tinfo.btype == LFS3_BTYPE_MDIR) ? 2 : 1;
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto clobbered;
}
}
@@ -1062,7 +1062,7 @@ done:;
[cases.test_gc_ckmeta_unck]
# AFTER=0 => after running lfs3_fs_gc once
# AFTER=1 => after running lfs3_fs_gc to completion
# AFTER=2 => after running lfs3_traversal_t
# AFTER=2 => after running lfs3_trv_t
# AFTER=3 => after lfs3_fs_ckmeta
# AFTER=4 => after remounting with LFS3_M_CKMETA
defines.AFTER = [0, 1, 2, 3, 4]
@@ -1127,19 +1127,19 @@ code = '''
lfs3_fs_gc(&lfs3) => 0;
}
// run lfs3_traversal_t
// run lfs3_trv_t
} else if (AFTER == 2) {
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDWR | GC_FLAGS) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDWR | GC_FLAGS) => 0;
while (true) {
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(err == 0 || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
// run lfs3_fs_ckmeta
} else if (AFTER == 3) {
@@ -1163,17 +1163,17 @@ code = '''
}
// traverse to find blocks
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t k = 0;
for (lfs3_block_t j = 0;; j++) {
assert(j < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
goto done;
}
@@ -1192,7 +1192,7 @@ code = '''
clobber_buf, BLOCK_SIZE) => 0;
if (tinfo.btype != LFS3_BTYPE_MDIR || k == i+1) {
i += (tinfo.btype == LFS3_BTYPE_MDIR) ? 2 : 1;
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto clobbered;
}
}
@@ -1225,7 +1225,7 @@ done:;
[cases.test_gc_ckdata_unck]
# AFTER=0 => after running lfs3_fs_gc once
# AFTER=1 => after running lfs3_fs_gc to completion
# AFTER=2 => after running lfs3_traversal_t
# AFTER=2 => after running lfs3_trv_t
# AFTER=3 => after lfs3_fs_ckdata
# AFTER=4 => after remounting with LFS3_M_CKDATA
defines.AFTER = [0, 1, 2, 3, 4]
@@ -1290,19 +1290,19 @@ code = '''
lfs3_fs_gc(&lfs3) => 0;
}
// run lfs3_traversal_t
// run lfs3_trv_t
} else if (AFTER == 2) {
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDWR | GC_FLAGS) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDWR | GC_FLAGS) => 0;
while (true) {
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(err == 0 || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
// run lfs3_fs_ckdata
} else if (AFTER == 3) {
@@ -1326,17 +1326,17 @@ code = '''
}
// traverse to find blocks
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t k = 0;
for (lfs3_block_t j = 0;; j++) {
assert(j < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
goto done;
}
@@ -1356,7 +1356,7 @@ code = '''
clobber_buf, BLOCK_SIZE) => 0;
if (tinfo.btype != LFS3_BTYPE_MDIR || k == i+1) {
i += (tinfo.btype == LFS3_BTYPE_MDIR) ? 2 : 1;
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
goto clobbered;
}
}
@@ -1392,7 +1392,7 @@ done:;
# test that gc work clears flags in lfs3_fs_stat
[cases.test_gc_iflags]
# AFTER=0 => after running lfs3_fs_gc
# AFTER=1 => after running lfs3_traversal_t
# AFTER=1 => after running lfs3_trv_t
# AFTER=2 => after explicit operations
# AFTER=3 => after remounting
defines.AFTER = [0, 1, 2, 3]
@@ -1468,7 +1468,7 @@ code = '''
assert(false);
#endif
// run lfs3_traversal_t
// run lfs3_trv_t
} else if (AFTER == 1) {
while (true) {
// it may take multiple traversals to do all pending work
@@ -1482,17 +1482,17 @@ code = '''
break;
}
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDWR | GC_FLAGS) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDWR | GC_FLAGS) => 0;
while (true) {
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(err == 0 || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
}
// run explicit operations
@@ -1517,34 +1517,34 @@ code = '''
if (LOOKAHEAD) {
// we need an explicit traversal for this
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t,
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv,
LFS3_T_RDWR | LFS3_T_LOOKAHEAD) => 0;
while (true) {
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(err == 0 || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
}
if (COMPACT) {
// we need an explicit traversal for this
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t,
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv,
LFS3_T_RDWR | LFS3_T_COMPACT) => 0;
while (true) {
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(err == 0 || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
}
if (CKMETA) {
@@ -1581,7 +1581,7 @@ code = '''
# test that gc work clears flags in lfs3_fs_stat after lfs3_fs_unck
[cases.test_gc_iflags_unck]
# AFTER=0 => after running lfs3_fs_gc
# AFTER=1 => after running lfs3_traversal_t
# AFTER=1 => after running lfs3_trv_t
# AFTER=2 => after explicit operations
# AFTER=3 => after remounting
defines.AFTER = [0, 1, 2, 3]
@@ -1657,7 +1657,7 @@ code = '''
assert(false);
#endif
// run lfs3_traversal_t
// run lfs3_trv_t
} else if (AFTER == 1) {
while (true) {
// it may take multiple traversals to do all pending work
@@ -1671,17 +1671,17 @@ code = '''
break;
}
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDWR | GC_FLAGS) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDWR | GC_FLAGS) => 0;
while (true) {
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(err == 0 || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
}
// run explicit operations
@@ -1706,34 +1706,34 @@ code = '''
if (LOOKAHEAD) {
// we need an explicit traversal for this
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t,
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv,
LFS3_T_RDWR | LFS3_T_LOOKAHEAD) => 0;
while (true) {
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(err == 0 || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
}
if (COMPACT) {
// we need an explicit traversal for this
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t,
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv,
LFS3_T_RDWR | LFS3_T_COMPACT) => 0;
while (true) {
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(err == 0 || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
}
if (CKMETA) {
@@ -1786,7 +1786,7 @@ code = '''
assert(false);
#endif
// run lfs3_traversal_t
// run lfs3_trv_t
} else if (AFTER == 1) {
while (true) {
// it may take multiple traversals to do all pending work
@@ -1800,17 +1800,17 @@ code = '''
break;
}
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDWR | GC_FLAGS) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDWR | GC_FLAGS) => 0;
while (true) {
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(err == 0 || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
}
// run explicit operations
@@ -1835,34 +1835,34 @@ code = '''
if (LOOKAHEAD) {
// we need an explicit traversal for this
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t,
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv,
LFS3_T_RDWR | LFS3_T_LOOKAHEAD) => 0;
while (true) {
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(err == 0 || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
}
if (COMPACT) {
// we need an explicit traversal for this
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t,
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv,
LFS3_T_RDWR | LFS3_T_COMPACT) => 0;
while (true) {
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(err == 0 || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
break;
}
}
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
}
if (CKMETA) {
+11 -11
View File
@@ -1,5 +1,5 @@
# Advanced mount tests
after = ['test_mtree', 'test_traversal']
after = ['test_mtree', 'test_trvs']
# test we can mount
@@ -405,17 +405,17 @@ code = '''
}
// traverse to find blocks
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t k = 0;
for (lfs3_block_t j = 0;; j++) {
assert(j < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
goto done;
}
@@ -434,7 +434,7 @@ code = '''
clobber_buf, BLOCK_SIZE) => 0;
if (tinfo.btype != LFS3_BTYPE_MDIR || k == i+1) {
i += (tinfo.btype == LFS3_BTYPE_MDIR) ? 2 : 1;
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
goto clobbered;
}
@@ -494,17 +494,17 @@ code = '''
}
// traverse to find blocks
lfs3_traversal_t t;
lfs3_traversal_open(&lfs3, &t, LFS3_T_RDONLY) => 0;
lfs3_trv_t trv;
lfs3_trv_open(&lfs3, &trv, LFS3_T_RDONLY) => 0;
lfs3_block_t k = 0;
for (lfs3_block_t j = 0;; j++) {
assert(j < 2*BLOCK_COUNT);
struct lfs3_tinfo tinfo;
int err = lfs3_traversal_read(&lfs3, &t, &tinfo);
int err = lfs3_trv_read(&lfs3, &trv, &tinfo);
assert(!err || err == LFS3_ERR_NOENT);
if (err == LFS3_ERR_NOENT) {
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
goto done;
}
@@ -524,7 +524,7 @@ code = '''
clobber_buf, BLOCK_SIZE) => 0;
if (tinfo.btype != LFS3_BTYPE_MDIR || k == i+1) {
i += (tinfo.btype == LFS3_BTYPE_MDIR) ? 2 : 1;
lfs3_traversal_close(&lfs3, &t) => 0;
lfs3_trv_close(&lfs3, &trv) => 0;
lfs3_unmount(&lfs3) => 0;
goto clobbered;
}
+24 -24
View File
@@ -3665,8 +3665,8 @@ code = '''
uint8_t *seen = malloc((BLOCK_COUNT+7)/8);
memset(seen, 0, (BLOCK_COUNT+7)/8);
lfs3_traversal_t t;
lfs3_traversal_init(&t,
lfs3_trv_t trv;
lfs3_trv_init(&trv,
LFS3_T_RDONLY
| LFS3_T_MTREEONLY
| ((CKMETA) ? LFS3_T_CKMETA : 0));
@@ -3676,7 +3676,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bptr_t bptr;
tag = lfs3_mtree_traverse(&lfs3, &t,
tag = lfs3_mtree_traverse(&lfs3, &trv,
&bptr);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -3787,8 +3787,8 @@ code = '''
uint8_t *seen = malloc((BLOCK_COUNT+7)/8);
memset(seen, 0, (BLOCK_COUNT+7)/8);
lfs3_traversal_t t;
lfs3_traversal_init(&t,
lfs3_trv_t trv;
lfs3_trv_init(&trv,
LFS3_T_RDONLY
| LFS3_T_MTREEONLY
| ((CKMETA) ? LFS3_T_CKMETA : 0));
@@ -3798,7 +3798,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bptr_t bptr;
tag = lfs3_mtree_traverse(&lfs3, &t,
tag = lfs3_mtree_traverse(&lfs3, &trv,
&bptr);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -3935,8 +3935,8 @@ code = '''
uint8_t *seen = malloc((BLOCK_COUNT+7)/8);
memset(seen, 0, (BLOCK_COUNT+7)/8);
lfs3_traversal_t t;
lfs3_traversal_init(&t,
lfs3_trv_t trv;
lfs3_trv_init(&trv,
LFS3_T_RDONLY
| LFS3_T_MTREEONLY
| ((CKMETA) ? LFS3_T_CKMETA : 0));
@@ -3946,7 +3946,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bptr_t bptr;
tag = lfs3_mtree_traverse(&lfs3, &t,
tag = lfs3_mtree_traverse(&lfs3, &trv,
&bptr);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -4106,8 +4106,8 @@ code = '''
uint8_t *seen = malloc((BLOCK_COUNT+7)/8);
memset(seen, 0, (BLOCK_COUNT+7)/8);
lfs3_traversal_t t;
lfs3_traversal_init(&t,
lfs3_trv_t trv;
lfs3_trv_init(&trv,
LFS3_T_RDONLY
| LFS3_T_MTREEONLY
| ((CKMETA) ? LFS3_T_CKMETA : 0));
@@ -4117,7 +4117,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bptr_t bptr;
tag = lfs3_mtree_traverse(&lfs3, &t,
tag = lfs3_mtree_traverse(&lfs3, &trv,
&bptr);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -4257,8 +4257,8 @@ code = '''
uint8_t *seen = malloc((BLOCK_COUNT+7)/8);
memset(seen, 0, (BLOCK_COUNT+7)/8);
lfs3_traversal_t t;
lfs3_traversal_init(&t,
lfs3_trv_t trv;
lfs3_trv_init(&trv,
LFS3_T_RDONLY
| LFS3_T_MTREEONLY
| ((CKMETA) ? LFS3_T_CKMETA : 0));
@@ -4268,7 +4268,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bptr_t bptr;
tag = lfs3_mtree_traverse(&lfs3, &t,
tag = lfs3_mtree_traverse(&lfs3, &trv,
&bptr);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -4383,8 +4383,8 @@ code = '''
uint8_t *seen = malloc((BLOCK_COUNT+7)/8);
memset(seen, 0, (BLOCK_COUNT+7)/8);
lfs3_traversal_t t;
lfs3_traversal_init(&t,
lfs3_trv_t trv;
lfs3_trv_init(&trv,
LFS3_T_RDONLY
| LFS3_T_MTREEONLY
| ((CKMETA) ? LFS3_T_CKMETA : 0));
@@ -4394,7 +4394,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bptr_t bptr;
tag = lfs3_mtree_traverse(&lfs3, &t,
tag = lfs3_mtree_traverse(&lfs3, &trv,
&bptr);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -4553,8 +4553,8 @@ code = '''
uint8_t *seen = malloc((BLOCK_COUNT+7)/8);
memset(seen, 0, (BLOCK_COUNT+7)/8);
lfs3_traversal_t t;
lfs3_traversal_init(&t,
lfs3_trv_t trv;
lfs3_trv_init(&trv,
LFS3_T_RDONLY
| LFS3_T_MTREEONLY
| ((CKMETA) ? LFS3_T_CKMETA : 0));
@@ -4564,7 +4564,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bptr_t bptr;
tag = lfs3_mtree_traverse(&lfs3, &t,
tag = lfs3_mtree_traverse(&lfs3, &trv,
&bptr);
assert(tag >= 0 || tag == LFS3_ERR_NOENT);
if (tag == LFS3_ERR_NOENT) {
@@ -4686,8 +4686,8 @@ code = '''
LFS3_MPTR_MROOTANCHOR()))) => 0;
// technically, cycle detection only needs to work when we're validating
lfs3_traversal_t t;
lfs3_traversal_init(&t,
lfs3_trv_t trv;
lfs3_trv_init(&trv,
LFS3_T_RDONLY | LFS3_T_MTREEONLY | LFS3_T_CKMETA);
for (lfs3_block_t i = 0;; i++) {
// assert that we detect the cycle in a reasonable number of iterations
@@ -4695,7 +4695,7 @@ code = '''
lfs3_stag_t tag;
lfs3_bptr_t bptr;
tag = lfs3_mtree_traverse(&lfs3, &t,
tag = lfs3_mtree_traverse(&lfs3, &trv,
&bptr);
assert(tag >= 0 || tag == LFS3_ERR_CORRUPT);
if (tag == LFS3_ERR_CORRUPT) {
+1 -1
View File
@@ -8,7 +8,7 @@ after = [
'test_dirs',
'test_files',
'test_stickynotes',
'test_traversal',
'test_trvs',
'test_gc',
'test_mount',
'test_ck',
File diff suppressed because it is too large Load Diff