Files
littlefs/tests/test_compat.toml
T
2023-06-30 17:56:00 +00:00

1454 lines
43 KiB
C

# Test for compatibility between different littlefs versions
#
# Note, these tests are a bit special. They expect to be linked against two
# different versions of littlefs:
# - lfs2 => the new/current version of littlefs
# - lfs2p => the previous version of littlefs
#
# If lfs2p is not linked, and LFS2P is not defined, these tests will alias
# the relevant lfs2 types/functions as necessary so at least the tests can
# themselves be tested locally.
#
# But to get value from these tests, it's expected that the previous version
# of littlefs be linked in during CI, with the help of scripts/changeprefix.py
#
# alias littlefs symbols as needed
#
# there may be a better way to do this, but oh well, explicit aliases works
code = '''
#ifdef LFS2P
#define STRINGIZE(x) STRINGIZE_(x)
#define STRINGIZE_(x) #x
#include STRINGIZE(LFS2P)
#else
#define LFS2P_DISK_VERSION LFS2_DISK_VERSION
#define LFS2P_DISK_VERSION_MAJOR LFS2_DISK_VERSION_MAJOR
#define LFS2P_DISK_VERSION_MINOR LFS2_DISK_VERSION_MINOR
#define lfs2p_t lfs2_t
#define lfs2p_config lfs2_config
#define lfs2p_format lfs2_format
#define lfs2p_mount lfs2_mount
#define lfs2p_unmount lfs2_unmount
#define lfs2p_fsinfo lfs2_fsinfo
#define lfs2p_fs_stat lfs2_fs_stat
#define lfs2p_dir_t lfs2_dir_t
#define lfs2p_info lfs2_info
#define LFS2P_TYPE_REG LFS2_TYPE_REG
#define LFS2P_TYPE_DIR LFS2_TYPE_DIR
#define lfs2p_mkdir lfs2_mkdir
#define lfs2p_dir_open lfs2_dir_open
#define lfs2p_dir_read lfs2_dir_read
#define lfs2p_dir_close lfs2_dir_close
#define lfs2p_file_t lfs2_file_t
#define LFS2P_O_RDONLY LFS2_O_RDONLY
#define LFS2P_O_WRONLY LFS2_O_WRONLY
#define LFS2P_O_CREAT LFS2_O_CREAT
#define LFS2P_O_EXCL LFS2_O_EXCL
#define LFS2P_SEEK_SET LFS2_SEEK_SET
#define lfs2p_file_open lfs2_file_open
#define lfs2p_file_write lfs2_file_write
#define lfs2p_file_read lfs2_file_read
#define lfs2p_file_seek lfs2_file_seek
#define lfs2p_file_close lfs2_file_close
#endif
'''
## forward-compatibility tests ##
# test we can mount in a new version
[cases.test_compat_forward_mount]
if = '''
LFS2_DISK_VERSION_MAJOR == LFS2P_DISK_VERSION_MAJOR
&& DISK_VERSION == 0
'''
code = '''
// create the previous version
struct lfs2p_config cfgp;
memcpy(&cfgp, cfg, sizeof(cfgp));
lfs2p_t lfs2p;
lfs2p_format(&lfs2p, &cfgp) => 0;
// confirm the previous mount works
lfs2p_mount(&lfs2p, &cfgp) => 0;
lfs2p_unmount(&lfs2p) => 0;
// now test the new mount
lfs2_t lfs2;
lfs2_mount(&lfs2, cfg) => 0;
// we should be able to read the version using lfs2_fs_stat
struct lfs2_fsinfo fsinfo;
lfs2_fs_stat(&lfs2, &fsinfo) => 0;
assert(fsinfo.disk_version == LFS2P_DISK_VERSION);
lfs2_unmount(&lfs2) => 0;
'''
# test we can read dirs in a new version
[cases.test_compat_forward_read_dirs]
defines.COUNT = 5
if = '''
LFS2_DISK_VERSION_MAJOR == LFS2P_DISK_VERSION_MAJOR
&& DISK_VERSION == 0
'''
code = '''
// create the previous version
struct lfs2p_config cfgp;
memcpy(&cfgp, cfg, sizeof(cfgp));
lfs2p_t lfs2p;
lfs2p_format(&lfs2p, &cfgp) => 0;
// write COUNT dirs
lfs2p_mount(&lfs2p, &cfgp) => 0;
for (lfs2_size_t i = 0; i < COUNT; i++) {
char name[8];
sprintf(name, "dir%03d", i);
lfs2p_mkdir(&lfs2p, name) => 0;
}
lfs2p_unmount(&lfs2p) => 0;
// mount the new version
lfs2_t lfs2;
lfs2_mount(&lfs2, cfg) => 0;
// we should be able to read the version using lfs2_fs_stat
struct lfs2_fsinfo fsinfo;
lfs2_fs_stat(&lfs2, &fsinfo) => 0;
assert(fsinfo.disk_version == LFS2P_DISK_VERSION);
// can we list the directories?
lfs2_dir_t dir;
lfs2_dir_open(&lfs2, &dir, "/") => 0;
struct lfs2_info info;
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
assert(strcmp(info.name, ".") == 0);
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
assert(strcmp(info.name, "..") == 0);
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
char name[8];
sprintf(name, "dir%03d", i);
assert(strcmp(info.name, name) == 0);
}
lfs2_dir_read(&lfs2, &dir, &info) => 0;
lfs2_dir_close(&lfs2, &dir) => 0;
lfs2_unmount(&lfs2) => 0;
'''
# test we can read files in a new version
[cases.test_compat_forward_read_files]
defines.COUNT = 5
defines.SIZE = [4, 32, 512, 8192]
defines.CHUNK = 4
if = '''
LFS2_DISK_VERSION_MAJOR == LFS2P_DISK_VERSION_MAJOR
&& DISK_VERSION == 0
'''
code = '''
// create the previous version
struct lfs2p_config cfgp;
memcpy(&cfgp, cfg, sizeof(cfgp));
lfs2p_t lfs2p;
lfs2p_format(&lfs2p, &cfgp) => 0;
// write COUNT files
lfs2p_mount(&lfs2p, &cfgp) => 0;
uint32_t prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2p_file_t file;
char name[8];
sprintf(name, "file%03d", i);
lfs2p_file_open(&lfs2p, &file, name,
LFS2P_O_WRONLY | LFS2P_O_CREAT | LFS2P_O_EXCL) => 0;
for (lfs2_size_t j = 0; j < SIZE; j += CHUNK) {
uint8_t chunk[CHUNK];
for (lfs2_size_t k = 0; k < CHUNK; k++) {
chunk[k] = TEST_PRNG(&prng) & 0xff;
}
lfs2p_file_write(&lfs2p, &file, chunk, CHUNK) => CHUNK;
}
lfs2p_file_close(&lfs2p, &file) => 0;
}
lfs2p_unmount(&lfs2p) => 0;
// mount the new version
lfs2_t lfs2;
lfs2_mount(&lfs2, cfg) => 0;
// we should be able to read the version using lfs2_fs_stat
struct lfs2_fsinfo fsinfo;
lfs2_fs_stat(&lfs2, &fsinfo) => 0;
assert(fsinfo.disk_version == LFS2P_DISK_VERSION);
// can we list the files?
lfs2_dir_t dir;
lfs2_dir_open(&lfs2, &dir, "/") => 0;
struct lfs2_info info;
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
assert(strcmp(info.name, ".") == 0);
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
assert(strcmp(info.name, "..") == 0);
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_REG);
char name[8];
sprintf(name, "file%03d", i);
assert(strcmp(info.name, name) == 0);
assert(info.size == SIZE);
}
lfs2_dir_read(&lfs2, &dir, &info) => 0;
// now can we read the files?
prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2_file_t file;
char name[8];
sprintf(name, "file%03d", i);
lfs2_file_open(&lfs2, &file, name, LFS2_O_RDONLY) => 0;
for (lfs2_size_t j = 0; j < SIZE; j += CHUNK) {
uint8_t chunk[CHUNK];
lfs2_file_read(&lfs2, &file, chunk, CHUNK) => CHUNK;
for (lfs2_size_t k = 0; k < CHUNK; k++) {
assert(chunk[k] == TEST_PRNG(&prng) & 0xff);
}
}
lfs2_file_close(&lfs2, &file) => 0;
}
lfs2_unmount(&lfs2) => 0;
'''
# test we can read files in dirs in a new version
[cases.test_compat_forward_read_files_in_dirs]
defines.COUNT = 5
defines.SIZE = [4, 32, 512, 8192]
defines.CHUNK = 4
if = '''
LFS2_DISK_VERSION_MAJOR == LFS2P_DISK_VERSION_MAJOR
&& DISK_VERSION == 0
'''
code = '''
// create the previous version
struct lfs2p_config cfgp;
memcpy(&cfgp, cfg, sizeof(cfgp));
lfs2p_t lfs2p;
lfs2p_format(&lfs2p, &cfgp) => 0;
// write COUNT files+dirs
lfs2p_mount(&lfs2p, &cfgp) => 0;
uint32_t prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
char name[16];
sprintf(name, "dir%03d", i);
lfs2p_mkdir(&lfs2p, name) => 0;
lfs2p_file_t file;
sprintf(name, "dir%03d/file%03d", i, i);
lfs2p_file_open(&lfs2p, &file, name,
LFS2P_O_WRONLY | LFS2P_O_CREAT | LFS2P_O_EXCL) => 0;
for (lfs2_size_t j = 0; j < SIZE; j += CHUNK) {
uint8_t chunk[CHUNK];
for (lfs2_size_t k = 0; k < CHUNK; k++) {
chunk[k] = TEST_PRNG(&prng) & 0xff;
}
lfs2p_file_write(&lfs2p, &file, chunk, CHUNK) => CHUNK;
}
lfs2p_file_close(&lfs2p, &file) => 0;
}
lfs2p_unmount(&lfs2p) => 0;
// mount the new version
lfs2_t lfs2;
lfs2_mount(&lfs2, cfg) => 0;
// we should be able to read the version using lfs2_fs_stat
struct lfs2_fsinfo fsinfo;
lfs2_fs_stat(&lfs2, &fsinfo) => 0;
assert(fsinfo.disk_version == LFS2P_DISK_VERSION);
// can we list the directories?
lfs2_dir_t dir;
lfs2_dir_open(&lfs2, &dir, "/") => 0;
struct lfs2_info info;
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
assert(strcmp(info.name, ".") == 0);
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
assert(strcmp(info.name, "..") == 0);
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
char name[8];
sprintf(name, "dir%03d", i);
assert(strcmp(info.name, name) == 0);
}
lfs2_dir_read(&lfs2, &dir, &info) => 0;
lfs2_dir_close(&lfs2, &dir) => 0;
// can we list the files?
for (lfs2_size_t i = 0; i < COUNT; i++) {
char name[8];
sprintf(name, "dir%03d", i);
lfs2_dir_t dir;
lfs2_dir_open(&lfs2, &dir, name) => 0;
struct lfs2_info info;
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
assert(strcmp(info.name, ".") == 0);
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
assert(strcmp(info.name, "..") == 0);
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_REG);
sprintf(name, "file%03d", i);
assert(strcmp(info.name, name) == 0);
assert(info.size == SIZE);
lfs2_dir_read(&lfs2, &dir, &info) => 0;
lfs2_dir_close(&lfs2, &dir) => 0;
}
// now can we read the files?
prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2_file_t file;
char name[16];
sprintf(name, "dir%03d/file%03d", i, i);
lfs2_file_open(&lfs2, &file, name, LFS2_O_RDONLY) => 0;
for (lfs2_size_t j = 0; j < SIZE; j += CHUNK) {
uint8_t chunk[CHUNK];
lfs2_file_read(&lfs2, &file, chunk, CHUNK) => CHUNK;
for (lfs2_size_t k = 0; k < CHUNK; k++) {
assert(chunk[k] == TEST_PRNG(&prng) & 0xff);
}
}
lfs2_file_close(&lfs2, &file) => 0;
}
lfs2_unmount(&lfs2) => 0;
'''
# test we can write dirs in a new version
[cases.test_compat_forward_write_dirs]
defines.COUNT = 10
if = '''
LFS2_DISK_VERSION_MAJOR == LFS2P_DISK_VERSION_MAJOR
&& DISK_VERSION == 0
'''
code = '''
// create the previous version
struct lfs2p_config cfgp;
memcpy(&cfgp, cfg, sizeof(cfgp));
lfs2p_t lfs2p;
lfs2p_format(&lfs2p, &cfgp) => 0;
// write COUNT/2 dirs
lfs2p_mount(&lfs2p, &cfgp) => 0;
for (lfs2_size_t i = 0; i < COUNT/2; i++) {
char name[8];
sprintf(name, "dir%03d", i);
lfs2p_mkdir(&lfs2p, name) => 0;
}
lfs2p_unmount(&lfs2p) => 0;
// mount the new version
lfs2_t lfs2;
lfs2_mount(&lfs2, cfg) => 0;
// we should be able to read the version using lfs2_fs_stat
struct lfs2_fsinfo fsinfo;
lfs2_fs_stat(&lfs2, &fsinfo) => 0;
assert(fsinfo.disk_version == LFS2P_DISK_VERSION);
// write another COUNT/2 dirs
for (lfs2_size_t i = COUNT/2; i < COUNT; i++) {
char name[8];
sprintf(name, "dir%03d", i);
lfs2_mkdir(&lfs2, name) => 0;
}
// can we list the directories?
lfs2_dir_t dir;
lfs2_dir_open(&lfs2, &dir, "/") => 0;
struct lfs2_info info;
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
assert(strcmp(info.name, ".") == 0);
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
assert(strcmp(info.name, "..") == 0);
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
char name[8];
sprintf(name, "dir%03d", i);
assert(strcmp(info.name, name) == 0);
}
lfs2_dir_read(&lfs2, &dir, &info) => 0;
lfs2_dir_close(&lfs2, &dir) => 0;
lfs2_unmount(&lfs2) => 0;
'''
# test we can write files in a new version
[cases.test_compat_forward_write_files]
defines.COUNT = 5
defines.SIZE = [4, 32, 512, 8192]
defines.CHUNK = 2
if = '''
LFS2_DISK_VERSION_MAJOR == LFS2P_DISK_VERSION_MAJOR
&& DISK_VERSION == 0
'''
code = '''
// create the previous version
struct lfs2p_config cfgp;
memcpy(&cfgp, cfg, sizeof(cfgp));
lfs2p_t lfs2p;
lfs2p_format(&lfs2p, &cfgp) => 0;
// write half COUNT files
lfs2p_mount(&lfs2p, &cfgp) => 0;
uint32_t prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
// write half
lfs2p_file_t file;
char name[8];
sprintf(name, "file%03d", i);
lfs2p_file_open(&lfs2p, &file, name,
LFS2P_O_WRONLY | LFS2P_O_CREAT | LFS2P_O_EXCL) => 0;
for (lfs2_size_t j = 0; j < SIZE/2; j += CHUNK) {
uint8_t chunk[CHUNK];
for (lfs2_size_t k = 0; k < CHUNK; k++) {
chunk[k] = TEST_PRNG(&prng) & 0xff;
}
lfs2p_file_write(&lfs2p, &file, chunk, CHUNK) => CHUNK;
}
lfs2p_file_close(&lfs2p, &file) => 0;
// skip the other half but keep our prng reproducible
for (lfs2_size_t j = SIZE/2; j < SIZE; j++) {
TEST_PRNG(&prng);
}
}
lfs2p_unmount(&lfs2p) => 0;
// mount the new version
lfs2_t lfs2;
lfs2_mount(&lfs2, cfg) => 0;
// we should be able to read the version using lfs2_fs_stat
struct lfs2_fsinfo fsinfo;
lfs2_fs_stat(&lfs2, &fsinfo) => 0;
assert(fsinfo.disk_version == LFS2P_DISK_VERSION);
// write half COUNT files
prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
// skip half but keep our prng reproducible
for (lfs2_size_t j = 0; j < SIZE/2; j++) {
TEST_PRNG(&prng);
}
// write the other half
lfs2_file_t file;
char name[8];
sprintf(name, "file%03d", i);
lfs2_file_open(&lfs2, &file, name, LFS2_O_WRONLY) => 0;
lfs2_file_seek(&lfs2, &file, SIZE/2, LFS2_SEEK_SET) => SIZE/2;
for (lfs2_size_t j = SIZE/2; j < SIZE; j += CHUNK) {
uint8_t chunk[CHUNK];
for (lfs2_size_t k = 0; k < CHUNK; k++) {
chunk[k] = TEST_PRNG(&prng) & 0xff;
}
lfs2_file_write(&lfs2, &file, chunk, CHUNK) => CHUNK;
}
lfs2_file_close(&lfs2, &file) => 0;
}
// can we list the files?
lfs2_dir_t dir;
lfs2_dir_open(&lfs2, &dir, "/") => 0;
struct lfs2_info info;
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
assert(strcmp(info.name, ".") == 0);
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
assert(strcmp(info.name, "..") == 0);
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_REG);
char name[8];
sprintf(name, "file%03d", i);
assert(strcmp(info.name, name) == 0);
assert(info.size == SIZE);
}
lfs2_dir_read(&lfs2, &dir, &info) => 0;
// now can we read the files?
prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2_file_t file;
char name[8];
sprintf(name, "file%03d", i);
lfs2_file_open(&lfs2, &file, name, LFS2_O_RDONLY) => 0;
for (lfs2_size_t j = 0; j < SIZE; j += CHUNK) {
uint8_t chunk[CHUNK];
lfs2_file_read(&lfs2, &file, chunk, CHUNK) => CHUNK;
for (lfs2_size_t k = 0; k < CHUNK; k++) {
assert(chunk[k] == TEST_PRNG(&prng) & 0xff);
}
}
lfs2_file_close(&lfs2, &file) => 0;
}
lfs2_unmount(&lfs2) => 0;
'''
# test we can write files in dirs in a new version
[cases.test_compat_forward_write_files_in_dirs]
defines.COUNT = 5
defines.SIZE = [4, 32, 512, 8192]
defines.CHUNK = 2
if = '''
LFS2_DISK_VERSION_MAJOR == LFS2P_DISK_VERSION_MAJOR
&& DISK_VERSION == 0
'''
code = '''
// create the previous version
struct lfs2p_config cfgp;
memcpy(&cfgp, cfg, sizeof(cfgp));
lfs2p_t lfs2p;
lfs2p_format(&lfs2p, &cfgp) => 0;
// write half COUNT files
lfs2p_mount(&lfs2p, &cfgp) => 0;
uint32_t prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
char name[16];
sprintf(name, "dir%03d", i);
lfs2p_mkdir(&lfs2p, name) => 0;
// write half
lfs2p_file_t file;
sprintf(name, "dir%03d/file%03d", i, i);
lfs2p_file_open(&lfs2p, &file, name,
LFS2P_O_WRONLY | LFS2P_O_CREAT | LFS2P_O_EXCL) => 0;
for (lfs2_size_t j = 0; j < SIZE/2; j += CHUNK) {
uint8_t chunk[CHUNK];
for (lfs2_size_t k = 0; k < CHUNK; k++) {
chunk[k] = TEST_PRNG(&prng) & 0xff;
}
lfs2p_file_write(&lfs2p, &file, chunk, CHUNK) => CHUNK;
}
lfs2p_file_close(&lfs2p, &file) => 0;
// skip the other half but keep our prng reproducible
for (lfs2_size_t j = SIZE/2; j < SIZE; j++) {
TEST_PRNG(&prng);
}
}
lfs2p_unmount(&lfs2p) => 0;
// mount the new version
lfs2_t lfs2;
lfs2_mount(&lfs2, cfg) => 0;
// we should be able to read the version using lfs2_fs_stat
struct lfs2_fsinfo fsinfo;
lfs2_fs_stat(&lfs2, &fsinfo) => 0;
assert(fsinfo.disk_version == LFS2P_DISK_VERSION);
// write half COUNT files
prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
// skip half but keep our prng reproducible
for (lfs2_size_t j = 0; j < SIZE/2; j++) {
TEST_PRNG(&prng);
}
// write the other half
lfs2_file_t file;
char name[16];
sprintf(name, "dir%03d/file%03d", i, i);
lfs2_file_open(&lfs2, &file, name, LFS2_O_WRONLY) => 0;
lfs2_file_seek(&lfs2, &file, SIZE/2, LFS2_SEEK_SET) => SIZE/2;
for (lfs2_size_t j = SIZE/2; j < SIZE; j += CHUNK) {
uint8_t chunk[CHUNK];
for (lfs2_size_t k = 0; k < CHUNK; k++) {
chunk[k] = TEST_PRNG(&prng) & 0xff;
}
lfs2_file_write(&lfs2, &file, chunk, CHUNK) => CHUNK;
}
lfs2_file_close(&lfs2, &file) => 0;
}
// can we list the directories?
lfs2_dir_t dir;
lfs2_dir_open(&lfs2, &dir, "/") => 0;
struct lfs2_info info;
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
assert(strcmp(info.name, ".") == 0);
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
assert(strcmp(info.name, "..") == 0);
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
char name[8];
sprintf(name, "dir%03d", i);
assert(strcmp(info.name, name) == 0);
}
lfs2_dir_read(&lfs2, &dir, &info) => 0;
lfs2_dir_close(&lfs2, &dir) => 0;
// can we list the files?
for (lfs2_size_t i = 0; i < COUNT; i++) {
char name[8];
sprintf(name, "dir%03d", i);
lfs2_dir_t dir;
lfs2_dir_open(&lfs2, &dir, name) => 0;
struct lfs2_info info;
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
assert(strcmp(info.name, ".") == 0);
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_DIR);
assert(strcmp(info.name, "..") == 0);
lfs2_dir_read(&lfs2, &dir, &info) => 1;
assert(info.type == LFS2_TYPE_REG);
sprintf(name, "file%03d", i);
assert(strcmp(info.name, name) == 0);
assert(info.size == SIZE);
lfs2_dir_read(&lfs2, &dir, &info) => 0;
lfs2_dir_close(&lfs2, &dir) => 0;
}
// now can we read the files?
prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2_file_t file;
char name[16];
sprintf(name, "dir%03d/file%03d", i, i);
lfs2_file_open(&lfs2, &file, name, LFS2_O_RDONLY) => 0;
for (lfs2_size_t j = 0; j < SIZE; j += CHUNK) {
uint8_t chunk[CHUNK];
lfs2_file_read(&lfs2, &file, chunk, CHUNK) => CHUNK;
for (lfs2_size_t k = 0; k < CHUNK; k++) {
assert(chunk[k] == TEST_PRNG(&prng) & 0xff);
}
}
lfs2_file_close(&lfs2, &file) => 0;
}
lfs2_unmount(&lfs2) => 0;
'''
## backwards-compatibility tests ##
# test we can mount in an old version
[cases.test_compat_backward_mount]
if = '''
LFS2_DISK_VERSION == LFS2P_DISK_VERSION
&& DISK_VERSION == 0
'''
code = '''
// create the new version
lfs2_t lfs2;
lfs2_format(&lfs2, cfg) => 0;
// confirm the new mount works
lfs2_mount(&lfs2, cfg) => 0;
lfs2_unmount(&lfs2) => 0;
// now test the previous mount
struct lfs2p_config cfgp;
memcpy(&cfgp, cfg, sizeof(cfgp));
lfs2p_t lfs2p;
lfs2p_mount(&lfs2p, &cfgp) => 0;
lfs2p_unmount(&lfs2p) => 0;
'''
# test we can read dirs in an old version
[cases.test_compat_backward_read_dirs]
defines.COUNT = 5
if = '''
LFS2_DISK_VERSION == LFS2P_DISK_VERSION
&& DISK_VERSION == 0
'''
code = '''
// create the new version
lfs2_t lfs2;
lfs2_format(&lfs2, cfg) => 0;
// write COUNT dirs
lfs2_mount(&lfs2, cfg) => 0;
for (lfs2_size_t i = 0; i < COUNT; i++) {
char name[8];
sprintf(name, "dir%03d", i);
lfs2_mkdir(&lfs2, name) => 0;
}
lfs2_unmount(&lfs2) => 0;
// mount the new version
struct lfs2p_config cfgp;
memcpy(&cfgp, cfg, sizeof(cfgp));
lfs2p_t lfs2p;
lfs2p_mount(&lfs2p, &cfgp) => 0;
// can we list the directories?
lfs2p_dir_t dir;
lfs2p_dir_open(&lfs2p, &dir, "/") => 0;
struct lfs2p_info info;
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
assert(strcmp(info.name, ".") == 0);
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
assert(strcmp(info.name, "..") == 0);
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
char name[8];
sprintf(name, "dir%03d", i);
assert(strcmp(info.name, name) == 0);
}
lfs2p_dir_read(&lfs2p, &dir, &info) => 0;
lfs2p_dir_close(&lfs2p, &dir) => 0;
lfs2p_unmount(&lfs2p) => 0;
'''
# test we can read files in an old version
[cases.test_compat_backward_read_files]
defines.COUNT = 5
defines.SIZE = [4, 32, 512, 8192]
defines.CHUNK = 4
if = '''
LFS2_DISK_VERSION == LFS2P_DISK_VERSION
&& DISK_VERSION == 0
'''
code = '''
// create the new version
lfs2_t lfs2;
lfs2_format(&lfs2, cfg) => 0;
// write COUNT files
lfs2_mount(&lfs2, cfg) => 0;
uint32_t prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2_file_t file;
char name[8];
sprintf(name, "file%03d", i);
lfs2_file_open(&lfs2, &file, name,
LFS2_O_WRONLY | LFS2_O_CREAT | LFS2_O_EXCL) => 0;
for (lfs2_size_t j = 0; j < SIZE; j += CHUNK) {
uint8_t chunk[CHUNK];
for (lfs2_size_t k = 0; k < CHUNK; k++) {
chunk[k] = TEST_PRNG(&prng) & 0xff;
}
lfs2_file_write(&lfs2, &file, chunk, CHUNK) => CHUNK;
}
lfs2_file_close(&lfs2, &file) => 0;
}
lfs2_unmount(&lfs2) => 0;
// mount the previous version
struct lfs2p_config cfgp;
memcpy(&cfgp, cfg, sizeof(cfgp));
lfs2p_t lfs2p;
lfs2p_mount(&lfs2p, &cfgp) => 0;
// can we list the files?
lfs2p_dir_t dir;
lfs2p_dir_open(&lfs2p, &dir, "/") => 0;
struct lfs2p_info info;
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
assert(strcmp(info.name, ".") == 0);
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
assert(strcmp(info.name, "..") == 0);
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_REG);
char name[8];
sprintf(name, "file%03d", i);
assert(strcmp(info.name, name) == 0);
assert(info.size == SIZE);
}
lfs2p_dir_read(&lfs2p, &dir, &info) => 0;
// now can we read the files?
prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2p_file_t file;
char name[8];
sprintf(name, "file%03d", i);
lfs2p_file_open(&lfs2p, &file, name, LFS2P_O_RDONLY) => 0;
for (lfs2_size_t j = 0; j < SIZE; j += CHUNK) {
uint8_t chunk[CHUNK];
lfs2p_file_read(&lfs2p, &file, chunk, CHUNK) => CHUNK;
for (lfs2_size_t k = 0; k < CHUNK; k++) {
assert(chunk[k] == TEST_PRNG(&prng) & 0xff);
}
}
lfs2p_file_close(&lfs2p, &file) => 0;
}
lfs2p_unmount(&lfs2p) => 0;
'''
# test we can read files in dirs in an old version
[cases.test_compat_backward_read_files_in_dirs]
defines.COUNT = 5
defines.SIZE = [4, 32, 512, 8192]
defines.CHUNK = 4
if = '''
LFS2_DISK_VERSION == LFS2P_DISK_VERSION
&& DISK_VERSION == 0
'''
code = '''
// create the new version
lfs2_t lfs2;
lfs2_format(&lfs2, cfg) => 0;
// write COUNT files+dirs
lfs2_mount(&lfs2, cfg) => 0;
uint32_t prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
char name[16];
sprintf(name, "dir%03d", i);
lfs2_mkdir(&lfs2, name) => 0;
lfs2_file_t file;
sprintf(name, "dir%03d/file%03d", i, i);
lfs2_file_open(&lfs2, &file, name,
LFS2_O_WRONLY | LFS2_O_CREAT | LFS2_O_EXCL) => 0;
for (lfs2_size_t j = 0; j < SIZE; j += CHUNK) {
uint8_t chunk[CHUNK];
for (lfs2_size_t k = 0; k < CHUNK; k++) {
chunk[k] = TEST_PRNG(&prng) & 0xff;
}
lfs2_file_write(&lfs2, &file, chunk, CHUNK) => CHUNK;
}
lfs2_file_close(&lfs2, &file) => 0;
}
lfs2_unmount(&lfs2) => 0;
// mount the previous version
struct lfs2p_config cfgp;
memcpy(&cfgp, cfg, sizeof(cfgp));
lfs2p_t lfs2p;
lfs2p_mount(&lfs2p, &cfgp) => 0;
// can we list the directories?
lfs2p_dir_t dir;
lfs2p_dir_open(&lfs2p, &dir, "/") => 0;
struct lfs2p_info info;
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
assert(strcmp(info.name, ".") == 0);
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
assert(strcmp(info.name, "..") == 0);
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
char name[8];
sprintf(name, "dir%03d", i);
assert(strcmp(info.name, name) == 0);
}
lfs2p_dir_read(&lfs2p, &dir, &info) => 0;
lfs2p_dir_close(&lfs2p, &dir) => 0;
// can we list the files?
for (lfs2_size_t i = 0; i < COUNT; i++) {
char name[8];
sprintf(name, "dir%03d", i);
lfs2p_dir_t dir;
lfs2p_dir_open(&lfs2p, &dir, name) => 0;
struct lfs2p_info info;
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
assert(strcmp(info.name, ".") == 0);
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
assert(strcmp(info.name, "..") == 0);
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_REG);
sprintf(name, "file%03d", i);
assert(strcmp(info.name, name) == 0);
assert(info.size == SIZE);
lfs2p_dir_read(&lfs2p, &dir, &info) => 0;
lfs2p_dir_close(&lfs2p, &dir) => 0;
}
// now can we read the files?
prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2p_file_t file;
char name[16];
sprintf(name, "dir%03d/file%03d", i, i);
lfs2p_file_open(&lfs2p, &file, name, LFS2P_O_RDONLY) => 0;
for (lfs2_size_t j = 0; j < SIZE; j += CHUNK) {
uint8_t chunk[CHUNK];
lfs2p_file_read(&lfs2p, &file, chunk, CHUNK) => CHUNK;
for (lfs2_size_t k = 0; k < CHUNK; k++) {
assert(chunk[k] == TEST_PRNG(&prng) & 0xff);
}
}
lfs2p_file_close(&lfs2p, &file) => 0;
}
lfs2p_unmount(&lfs2p) => 0;
'''
# test we can write dirs in an old version
[cases.test_compat_backward_write_dirs]
defines.COUNT = 10
if = '''
LFS2_DISK_VERSION == LFS2P_DISK_VERSION
&& DISK_VERSION == 0
'''
code = '''
// create the new version
lfs2_t lfs2;
lfs2_format(&lfs2, cfg) => 0;
// write COUNT/2 dirs
lfs2_mount(&lfs2, cfg) => 0;
for (lfs2_size_t i = 0; i < COUNT/2; i++) {
char name[8];
sprintf(name, "dir%03d", i);
lfs2_mkdir(&lfs2, name) => 0;
}
lfs2_unmount(&lfs2) => 0;
// mount the previous version
struct lfs2p_config cfgp;
memcpy(&cfgp, cfg, sizeof(cfgp));
lfs2p_t lfs2p;
lfs2p_mount(&lfs2p, &cfgp) => 0;
// write another COUNT/2 dirs
for (lfs2_size_t i = COUNT/2; i < COUNT; i++) {
char name[8];
sprintf(name, "dir%03d", i);
lfs2p_mkdir(&lfs2p, name) => 0;
}
// can we list the directories?
lfs2p_dir_t dir;
lfs2p_dir_open(&lfs2p, &dir, "/") => 0;
struct lfs2p_info info;
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
assert(strcmp(info.name, ".") == 0);
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
assert(strcmp(info.name, "..") == 0);
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
char name[8];
sprintf(name, "dir%03d", i);
assert(strcmp(info.name, name) == 0);
}
lfs2p_dir_read(&lfs2p, &dir, &info) => 0;
lfs2p_dir_close(&lfs2p, &dir) => 0;
lfs2p_unmount(&lfs2p) => 0;
'''
# test we can write files in an old version
[cases.test_compat_backward_write_files]
defines.COUNT = 5
defines.SIZE = [4, 32, 512, 8192]
defines.CHUNK = 2
if = '''
LFS2_DISK_VERSION == LFS2P_DISK_VERSION
&& DISK_VERSION == 0
'''
code = '''
// create the previous version
lfs2_t lfs2;
lfs2_format(&lfs2, cfg) => 0;
// write half COUNT files
lfs2_mount(&lfs2, cfg) => 0;
uint32_t prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
// write half
lfs2_file_t file;
char name[8];
sprintf(name, "file%03d", i);
lfs2_file_open(&lfs2, &file, name,
LFS2_O_WRONLY | LFS2_O_CREAT | LFS2_O_EXCL) => 0;
for (lfs2_size_t j = 0; j < SIZE/2; j += CHUNK) {
uint8_t chunk[CHUNK];
for (lfs2_size_t k = 0; k < CHUNK; k++) {
chunk[k] = TEST_PRNG(&prng) & 0xff;
}
lfs2_file_write(&lfs2, &file, chunk, CHUNK) => CHUNK;
}
lfs2_file_close(&lfs2, &file) => 0;
// skip the other half but keep our prng reproducible
for (lfs2_size_t j = SIZE/2; j < SIZE; j++) {
TEST_PRNG(&prng);
}
}
lfs2_unmount(&lfs2) => 0;
// mount the new version
struct lfs2p_config cfgp;
memcpy(&cfgp, cfg, sizeof(cfgp));
lfs2p_t lfs2p;
lfs2p_mount(&lfs2p, &cfgp) => 0;
// write half COUNT files
prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
// skip half but keep our prng reproducible
for (lfs2_size_t j = 0; j < SIZE/2; j++) {
TEST_PRNG(&prng);
}
// write the other half
lfs2p_file_t file;
char name[8];
sprintf(name, "file%03d", i);
lfs2p_file_open(&lfs2p, &file, name, LFS2P_O_WRONLY) => 0;
lfs2p_file_seek(&lfs2p, &file, SIZE/2, LFS2P_SEEK_SET) => SIZE/2;
for (lfs2_size_t j = SIZE/2; j < SIZE; j += CHUNK) {
uint8_t chunk[CHUNK];
for (lfs2_size_t k = 0; k < CHUNK; k++) {
chunk[k] = TEST_PRNG(&prng) & 0xff;
}
lfs2p_file_write(&lfs2p, &file, chunk, CHUNK) => CHUNK;
}
lfs2p_file_close(&lfs2p, &file) => 0;
}
// can we list the files?
lfs2p_dir_t dir;
lfs2p_dir_open(&lfs2p, &dir, "/") => 0;
struct lfs2p_info info;
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
assert(strcmp(info.name, ".") == 0);
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
assert(strcmp(info.name, "..") == 0);
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_REG);
char name[8];
sprintf(name, "file%03d", i);
assert(strcmp(info.name, name) == 0);
assert(info.size == SIZE);
}
lfs2p_dir_read(&lfs2p, &dir, &info) => 0;
// now can we read the files?
prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2p_file_t file;
char name[8];
sprintf(name, "file%03d", i);
lfs2p_file_open(&lfs2p, &file, name, LFS2P_O_RDONLY) => 0;
for (lfs2_size_t j = 0; j < SIZE; j += CHUNK) {
uint8_t chunk[CHUNK];
lfs2p_file_read(&lfs2p, &file, chunk, CHUNK) => CHUNK;
for (lfs2_size_t k = 0; k < CHUNK; k++) {
assert(chunk[k] == TEST_PRNG(&prng) & 0xff);
}
}
lfs2p_file_close(&lfs2p, &file) => 0;
}
lfs2p_unmount(&lfs2p) => 0;
'''
# test we can write files in dirs in an old version
[cases.test_compat_backward_write_files_in_dirs]
defines.COUNT = 5
defines.SIZE = [4, 32, 512, 8192]
defines.CHUNK = 2
if = '''
LFS2_DISK_VERSION == LFS2P_DISK_VERSION
&& DISK_VERSION == 0
'''
code = '''
// create the previous version
lfs2_t lfs2;
lfs2_format(&lfs2, cfg) => 0;
// write half COUNT files
lfs2_mount(&lfs2, cfg) => 0;
uint32_t prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
char name[16];
sprintf(name, "dir%03d", i);
lfs2_mkdir(&lfs2, name) => 0;
// write half
lfs2_file_t file;
sprintf(name, "dir%03d/file%03d", i, i);
lfs2_file_open(&lfs2, &file, name,
LFS2_O_WRONLY | LFS2_O_CREAT | LFS2_O_EXCL) => 0;
for (lfs2_size_t j = 0; j < SIZE/2; j += CHUNK) {
uint8_t chunk[CHUNK];
for (lfs2_size_t k = 0; k < CHUNK; k++) {
chunk[k] = TEST_PRNG(&prng) & 0xff;
}
lfs2_file_write(&lfs2, &file, chunk, CHUNK) => CHUNK;
}
lfs2_file_close(&lfs2, &file) => 0;
// skip the other half but keep our prng reproducible
for (lfs2_size_t j = SIZE/2; j < SIZE; j++) {
TEST_PRNG(&prng);
}
}
lfs2_unmount(&lfs2) => 0;
// mount the new version
struct lfs2p_config cfgp;
memcpy(&cfgp, cfg, sizeof(cfgp));
lfs2p_t lfs2p;
lfs2p_mount(&lfs2p, &cfgp) => 0;
// write half COUNT files
prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
// skip half but keep our prng reproducible
for (lfs2_size_t j = 0; j < SIZE/2; j++) {
TEST_PRNG(&prng);
}
// write the other half
lfs2p_file_t file;
char name[16];
sprintf(name, "dir%03d/file%03d", i, i);
lfs2p_file_open(&lfs2p, &file, name, LFS2P_O_WRONLY) => 0;
lfs2p_file_seek(&lfs2p, &file, SIZE/2, LFS2P_SEEK_SET) => SIZE/2;
for (lfs2_size_t j = SIZE/2; j < SIZE; j += CHUNK) {
uint8_t chunk[CHUNK];
for (lfs2_size_t k = 0; k < CHUNK; k++) {
chunk[k] = TEST_PRNG(&prng) & 0xff;
}
lfs2p_file_write(&lfs2p, &file, chunk, CHUNK) => CHUNK;
}
lfs2p_file_close(&lfs2p, &file) => 0;
}
// can we list the directories?
lfs2p_dir_t dir;
lfs2p_dir_open(&lfs2p, &dir, "/") => 0;
struct lfs2p_info info;
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
assert(strcmp(info.name, ".") == 0);
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
assert(strcmp(info.name, "..") == 0);
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
char name[8];
sprintf(name, "dir%03d", i);
assert(strcmp(info.name, name) == 0);
}
lfs2p_dir_read(&lfs2p, &dir, &info) => 0;
lfs2p_dir_close(&lfs2p, &dir) => 0;
// can we list the files?
for (lfs2_size_t i = 0; i < COUNT; i++) {
char name[8];
sprintf(name, "dir%03d", i);
lfs2p_dir_t dir;
lfs2p_dir_open(&lfs2p, &dir, name) => 0;
struct lfs2p_info info;
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
assert(strcmp(info.name, ".") == 0);
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_DIR);
assert(strcmp(info.name, "..") == 0);
lfs2p_dir_read(&lfs2p, &dir, &info) => 1;
assert(info.type == LFS2P_TYPE_REG);
sprintf(name, "file%03d", i);
assert(strcmp(info.name, name) == 0);
assert(info.size == SIZE);
lfs2p_dir_read(&lfs2p, &dir, &info) => 0;
lfs2p_dir_close(&lfs2p, &dir) => 0;
}
// now can we read the files?
prng = 42;
for (lfs2_size_t i = 0; i < COUNT; i++) {
lfs2p_file_t file;
char name[16];
sprintf(name, "dir%03d/file%03d", i, i);
lfs2p_file_open(&lfs2p, &file, name, LFS2P_O_RDONLY) => 0;
for (lfs2_size_t j = 0; j < SIZE; j += CHUNK) {
uint8_t chunk[CHUNK];
lfs2p_file_read(&lfs2p, &file, chunk, CHUNK) => CHUNK;
for (lfs2_size_t k = 0; k < CHUNK; k++) {
assert(chunk[k] == TEST_PRNG(&prng) & 0xff);
}
}
lfs2p_file_close(&lfs2p, &file) => 0;
}
lfs2p_unmount(&lfs2p) => 0;
'''
## incompatiblity tests ##
# test that we fail to mount after a major version bump
[cases.test_compat_major_incompat]
in = 'lfs2.c'
code = '''
// create a superblock
lfs2_t lfs2;
lfs2_format(&lfs2, cfg) => 0;
// bump the major version
//
// note we're messing around with internals to do this! this
// is not a user API
lfs2_mount(&lfs2, cfg) => 0;
lfs2_mdir_t mdir;
lfs2_dir_fetch(&lfs2, &mdir, (lfs2_block_t[2]){0, 1}) => 0;
lfs2_superblock_t superblock = {
.version = LFS2_DISK_VERSION + 0x00010000,
.block_size = lfs2.cfg->block_size,
.block_count = lfs2.cfg->block_count,
.name_max = lfs2.name_max,
.file_max = lfs2.file_max,
.attr_max = lfs2.attr_max,
};
lfs2_superblock_tole32(&superblock);
lfs2_dir_commit(&lfs2, &mdir, LFS2_MKATTRS(
{LFS2_MKTAG(LFS2_TYPE_INLINESTRUCT, 0, sizeof(superblock)),
&superblock})) => 0;
lfs2_unmount(&lfs2) => 0;
// mount should now fail
lfs2_mount(&lfs2, cfg) => LFS2_ERR_INVAL;
'''
# test that we fail to mount after a minor version bump
[cases.test_compat_minor_incompat]
in = 'lfs2.c'
code = '''
// create a superblock
lfs2_t lfs2;
lfs2_format(&lfs2, cfg) => 0;
// bump the minor version
//
// note we're messing around with internals to do this! this
// is not a user API
lfs2_mount(&lfs2, cfg) => 0;
lfs2_mdir_t mdir;
lfs2_dir_fetch(&lfs2, &mdir, (lfs2_block_t[2]){0, 1}) => 0;
lfs2_superblock_t superblock = {
.version = LFS2_DISK_VERSION + 0x00000001,
.block_size = lfs2.cfg->block_size,
.block_count = lfs2.cfg->block_count,
.name_max = lfs2.name_max,
.file_max = lfs2.file_max,
.attr_max = lfs2.attr_max,
};
lfs2_superblock_tole32(&superblock);
lfs2_dir_commit(&lfs2, &mdir, LFS2_MKATTRS(
{LFS2_MKTAG(LFS2_TYPE_INLINESTRUCT, 0, sizeof(superblock)),
&superblock})) => 0;
lfs2_unmount(&lfs2) => 0;
// mount should now fail
lfs2_mount(&lfs2, cfg) => LFS2_ERR_INVAL;
'''
# test that we correctly bump the minor version
[cases.test_compat_minor_bump]
in = 'lfs2.c'
if = '''
LFS2_DISK_VERSION_MINOR > 0
&& DISK_VERSION == 0
'''
code = '''
// create a superblock
lfs2_t lfs2;
lfs2_format(&lfs2, cfg) => 0;
lfs2_mount(&lfs2, cfg) => 0;
lfs2_file_t file;
lfs2_file_open(&lfs2, &file, "test",
LFS2_O_WRONLY | LFS2_O_CREAT | LFS2_O_EXCL) => 0;
lfs2_file_write(&lfs2, &file, "testtest", 8) => 8;
lfs2_file_close(&lfs2, &file) => 0;
lfs2_unmount(&lfs2) => 0;
// write an old minor version
//
// note we're messing around with internals to do this! this
// is not a user API
lfs2_mount(&lfs2, cfg) => 0;
lfs2_mdir_t mdir;
lfs2_dir_fetch(&lfs2, &mdir, (lfs2_block_t[2]){0, 1}) => 0;
lfs2_superblock_t superblock = {
.version = LFS2_DISK_VERSION - 0x00000001,
.block_size = lfs2.cfg->block_size,
.block_count = lfs2.cfg->block_count,
.name_max = lfs2.name_max,
.file_max = lfs2.file_max,
.attr_max = lfs2.attr_max,
};
lfs2_superblock_tole32(&superblock);
lfs2_dir_commit(&lfs2, &mdir, LFS2_MKATTRS(
{LFS2_MKTAG(LFS2_TYPE_INLINESTRUCT, 0, sizeof(superblock)),
&superblock})) => 0;
lfs2_unmount(&lfs2) => 0;
// mount should still work
lfs2_mount(&lfs2, cfg) => 0;
struct lfs2_fsinfo fsinfo;
lfs2_fs_stat(&lfs2, &fsinfo) => 0;
assert(fsinfo.disk_version == LFS2_DISK_VERSION-1);
lfs2_file_open(&lfs2, &file, "test", LFS2_O_RDONLY) => 0;
uint8_t buffer[8];
lfs2_file_read(&lfs2, &file, buffer, 8) => 8;
assert(memcmp(buffer, "testtest", 8) == 0);
lfs2_file_close(&lfs2, &file) => 0;
// minor version should be unchanged
lfs2_fs_stat(&lfs2, &fsinfo) => 0;
assert(fsinfo.disk_version == LFS2_DISK_VERSION-1);
lfs2_unmount(&lfs2) => 0;
// if we write, we need to bump the minor version
lfs2_mount(&lfs2, cfg) => 0;
lfs2_fs_stat(&lfs2, &fsinfo) => 0;
assert(fsinfo.disk_version == LFS2_DISK_VERSION-1);
lfs2_file_open(&lfs2, &file, "test", LFS2_O_WRONLY | LFS2_O_TRUNC) => 0;
lfs2_file_write(&lfs2, &file, "teeeeest", 8) => 8;
lfs2_file_close(&lfs2, &file) => 0;
// minor version should be changed
lfs2_fs_stat(&lfs2, &fsinfo) => 0;
assert(fsinfo.disk_version == LFS2_DISK_VERSION);
lfs2_unmount(&lfs2) => 0;
// and of course mount should still work
lfs2_mount(&lfs2, cfg) => 0;
// minor version should have changed
lfs2_fs_stat(&lfs2, &fsinfo) => 0;
assert(fsinfo.disk_version == LFS2_DISK_VERSION);
lfs2_file_open(&lfs2, &file, "test", LFS2_O_RDONLY) => 0;
lfs2_file_read(&lfs2, &file, buffer, 8) => 8;
assert(memcmp(buffer, "teeeeest", 8) == 0);
lfs2_file_close(&lfs2, &file) => 0;
// yep, still changed
lfs2_fs_stat(&lfs2, &fsinfo) => 0;
assert(fsinfo.disk_version == LFS2_DISK_VERSION);
lfs2_unmount(&lfs2) => 0;
'''