bc9562c64e
- Off-by-one in test_btree_find_general[_sparse]_fuzz Because we can only create named btrees via splitting, these always start with one entry. If all operations are randomly selected to be splits, this can lead to an overflow of the sim buffer (sounds unlikely, but relatively easily for small N). The fix is to use a `for (lfs3_size_t i = 1; i < N; i++)` loop to account for the initial entry. Note we already use this in the test_btree_split_* tests. An alternative is allocating space for N+1 entries, but this seems unintuitive with N usually being associated with the upper bound on btree size. - Off-by-one in our sim rename pattern When renaming, we don't bother to update sim_size, because after the rename the sim_size size will be unchanged. But this means the sim_size is out-of-date during the memmove that reinserts the renamed entry. Buffer overflow! To fix we just need to use sim_size-1 to account for the temporarily deleted entry. This is messy C code, so not surprised it went unnoticed, even though this pattern ended up in quite a few tests. Found while running with HEAP=1. This was just intended to test HEAP=1, but I guess the injected heap hooks result in a more fragile heap? They increase all allocations by one word, and maybe this reduces alignment padding? Not exactly sure. But it's a good argument for maybe adding heap canaries in the future. Previously we ran Valgrind on all tests, but it's unclear if this will still be reasonable with the number of tests we have now.
2064 lines
73 KiB
TOML
2064 lines
73 KiB
TOML
# Tests over block relocations and wear-leveling
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after = [
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'test_mtree',
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'test_dirs',
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'test_files',
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'test_stickynotes',
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'test_powerloss',
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]
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# Note that most of the delicate relocation operations are already tested
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# in test_mtree. This mostly just covers high-level operations with
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# relatively aggressive wear-leveling.
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# dirs + relocations may create problems for gstate
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[cases.test_relocations_spam_dir_many]
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defines.BLOCK_RECYCLES = [4, 1, 0]
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defines.N = [1, 2, 4, 8, 16, 32, 64, 128, 256, 512]
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code = '''
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lfs3_t lfs3;
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lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
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lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
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// make this many directories
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for (lfs3_size_t i = 0; i < N; i++) {
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char name[256];
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sprintf(name, "dir%03x", i);
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int err = lfs3_mkdir(&lfs3, name);
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assert(!err || (TEST_PLS && err == LFS3_ERR_EXIST));
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}
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for (int remount = 0; remount < 2; remount++) {
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// remount?
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if (remount) {
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lfs3_unmount(&lfs3) => 0;
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lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
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}
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// grm should be zero here
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assert(lfs3.grm_p[0] == 0);
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// check that our mkdir worked
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for (lfs3_size_t i = 0; i < N; i++) {
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char name[256];
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sprintf(name, "dir%03x", i);
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struct lfs3_info info;
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lfs3_stat(&lfs3, name, &info) => 0;
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assert(strcmp(info.name, name) == 0);
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assert(info.type == LFS3_TYPE_DIR);
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assert(info.size == 0);
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}
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lfs3_dir_t dir;
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lfs3_dir_open(&lfs3, &dir, "/") => 0;
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struct lfs3_info info;
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lfs3_dir_read(&lfs3, &dir, &info) => 0;
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assert(strcmp(info.name, ".") == 0);
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assert(info.type == LFS3_TYPE_DIR);
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assert(info.size == 0);
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lfs3_dir_read(&lfs3, &dir, &info) => 0;
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assert(strcmp(info.name, "..") == 0);
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assert(info.type == LFS3_TYPE_DIR);
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assert(info.size == 0);
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for (lfs3_size_t i = 0; i < N; i++) {
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char name[256];
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sprintf(name, "dir%03x", i);
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lfs3_dir_read(&lfs3, &dir, &info) => 0;
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assert(strcmp(info.name, name) == 0);
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assert(info.type == LFS3_TYPE_DIR);
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assert(info.size == 0);
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}
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lfs3_dir_read(&lfs3, &dir, &info) => LFS3_ERR_NOENT;
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lfs3_dir_close(&lfs3, &dir) => 0;
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for (lfs3_size_t i = 0; i < N; i++) {
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char name[256];
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sprintf(name, "dir%03x", i);
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lfs3_dir_open(&lfs3, &dir, name) => 0;
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lfs3_dir_read(&lfs3, &dir, &info) => 0;
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assert(strcmp(info.name, ".") == 0);
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assert(info.type == LFS3_TYPE_DIR);
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assert(info.size == 0);
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lfs3_dir_read(&lfs3, &dir, &info) => 0;
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assert(strcmp(info.name, "..") == 0);
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assert(info.type == LFS3_TYPE_DIR);
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assert(info.size == 0);
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lfs3_dir_read(&lfs3, &dir, &info) => LFS3_ERR_NOENT;
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lfs3_dir_close(&lfs3, &dir) => 0;
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}
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}
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lfs3_unmount(&lfs3) => 0;
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'''
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[cases.test_relocations_spam_dir_fuzz]
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defines.BLOCK_RECYCLES = [4, 1, 0]
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defines.N = [1, 2, 4, 8, 16, 32, 64, 128, 256]
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defines.OPS = 1024
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defines.SEED = 'range(10)'
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fuzz = 'SEED'
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code = '''
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lfs3_t lfs3;
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lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
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lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
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// set up a simulation to compare against
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lfs3_size_t *sim = malloc(N*sizeof(lfs3_size_t));
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lfs3_size_t sim_size = 0;
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uint32_t prng = SEED;
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for (lfs3_size_t i = 0; i < OPS; i++) {
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// choose a pseudo-random op, either mkdir, remove, or rename
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uint8_t op = TEST_PRNG(&prng) % 3;
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if (op == 0 || sim_size == 0) {
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// choose a pseudo-random number, truncate to 3 hexadecimals
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lfs3_size_t x = TEST_PRNG(&prng) % N;
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// insert into our sim
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for (lfs3_size_t j = 0;; j++) {
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if (j >= sim_size || sim[j] >= x) {
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// already seen?
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if (j < sim_size && sim[j] == x) {
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// do nothing
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} else {
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// insert
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memmove(&sim[j+1], &sim[j],
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(sim_size-j)*sizeof(lfs3_size_t));
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sim_size += 1;
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sim[j] = x;
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}
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break;
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}
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}
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// create a directory here
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char name[256];
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sprintf(name, "dir%03x", x);
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int err = lfs3_mkdir(&lfs3, name);
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assert(!err || err == LFS3_ERR_EXIST);
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} else if (op == 1) {
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// choose a pseudo-random entry to delete
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lfs3_size_t j = TEST_PRNG(&prng) % sim_size;
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lfs3_size_t x = sim[j];
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// delete from our sim
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memmove(&sim[j], &sim[j+1],
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(sim_size-(j+1))*sizeof(lfs3_size_t));
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sim_size -= 1;
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// remove this directory
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char name[256];
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sprintf(name, "dir%03x", x);
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lfs3_remove(&lfs3, name) => 0;
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} else {
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// choose a pseudo-random entry to rename, and a pseudo-random
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// number to rename to
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lfs3_size_t j = TEST_PRNG(&prng) % sim_size;
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lfs3_size_t x = sim[j];
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lfs3_size_t y = TEST_PRNG(&prng) % N;
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for (lfs3_size_t k = 0;; k++) {
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if (k >= sim_size || sim[k] >= y) {
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// already seen and not a noop?
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if (k < sim_size && sim[k] == y && x != y) {
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// just delete the original entry
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memmove(&sim[j], &sim[j+1],
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(sim_size-(j+1))*sizeof(lfs3_size_t));
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sim_size -= 1;
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} else {
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// first delete
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memmove(&sim[j], &sim[j+1],
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(sim_size-(j+1))*sizeof(lfs3_size_t));
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if (k > j) {
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k -= 1;
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}
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// then insert
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memmove(&sim[k+1], &sim[k],
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(sim_size-1-k)*sizeof(lfs3_size_t));
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sim[k] = y;
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}
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break;
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}
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}
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// rename this directory
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char old_name[256];
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sprintf(old_name, "dir%03x", x);
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char new_name[256];
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sprintf(new_name, "dir%03x", y);
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lfs3_rename(&lfs3, old_name, new_name) => 0;
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}
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}
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for (int remount = 0; remount < 2; remount++) {
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// remount?
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if (remount) {
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lfs3_unmount(&lfs3) => 0;
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lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
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}
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// grm should be zero here
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assert(lfs3.grm_p[0] == 0);
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// test that our directories match our simulation
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for (lfs3_size_t j = 0; j < sim_size; j++) {
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char name[256];
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sprintf(name, "dir%03x", sim[j]);
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struct lfs3_info info;
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lfs3_stat(&lfs3, name, &info) => 0;
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char name2[256];
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sprintf(name2, "dir%03x", sim[j]);
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assert(strcmp(info.name, name2) == 0);
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assert(info.type == LFS3_TYPE_DIR);
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assert(info.size == 0);
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}
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lfs3_dir_t dir;
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lfs3_dir_open(&lfs3, &dir, "/") => 0;
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struct lfs3_info info;
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lfs3_dir_read(&lfs3, &dir, &info) => 0;
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assert(strcmp(info.name, ".") == 0);
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assert(info.type == LFS3_TYPE_DIR);
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assert(info.size == 0);
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lfs3_dir_read(&lfs3, &dir, &info) => 0;
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assert(strcmp(info.name, "..") == 0);
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assert(info.type == LFS3_TYPE_DIR);
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assert(info.size == 0);
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for (lfs3_size_t j = 0; j < sim_size; j++) {
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char name[256];
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sprintf(name, "dir%03x", sim[j]);
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lfs3_dir_read(&lfs3, &dir, &info) => 0;
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assert(strcmp(info.name, name) == 0);
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assert(info.type == LFS3_TYPE_DIR);
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assert(info.size == 0);
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}
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lfs3_dir_read(&lfs3, &dir, &info) => LFS3_ERR_NOENT;
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lfs3_dir_close(&lfs3, &dir) => 0;
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}
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// clean up sim/lfs3
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free(sim);
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lfs3_unmount(&lfs3) => 0;
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'''
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# files + relocations may create problems for shrubs
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[cases.test_relocations_spam_file_many]
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defines.BLOCK_RECYCLES = [4, 1, 0]
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defines.N = [1, 2, 4, 8, 16, 32, 64]
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defines.SIZE = [
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'0',
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'FCACHE_SIZE/2',
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'2*FCACHE_SIZE',
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'BLOCK_SIZE/2',
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'BLOCK_SIZE',
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'2*BLOCK_SIZE',
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'4*BLOCK_SIZE',
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]
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if = '(SIZE*N)/BLOCK_SIZE <= 32'
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code = '''
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lfs3_t lfs3;
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lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
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lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
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// create this many files
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uint32_t prng = 42;
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for (lfs3_size_t i = 0; i < N; i++) {
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char name[256];
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sprintf(name, "amethyst%03x", i);
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uint8_t wbuf[SIZE];
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for (lfs3_size_t j = 0; j < SIZE; j++) {
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wbuf[j] = 'a' + (TEST_PRNG(&prng) % 26);
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}
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lfs3_file_t file;
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lfs3_file_open(&lfs3, &file, name,
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LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_EXCL) => 0;
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lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
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lfs3_file_close(&lfs3, &file) => 0;
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}
|
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|
|
for (int remount = 0; remount < 2; remount++) {
|
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// remount?
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|
if (remount) {
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lfs3_unmount(&lfs3) => 0;
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lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
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}
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|
|
|
// check that our writes worked
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prng = 42;
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for (lfs3_size_t i = 0; i < N; i++) {
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// check with stat
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char name[256];
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sprintf(name, "amethyst%03x", i);
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struct lfs3_info info;
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lfs3_stat(&lfs3, name, &info) => 0;
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assert(strcmp(info.name, name) == 0);
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assert(info.type == LFS3_TYPE_REG);
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assert(info.size == SIZE);
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|
|
// try reading the file, note we reset prng above
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uint8_t wbuf[SIZE];
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for (lfs3_size_t j = 0; j < SIZE; j++) {
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wbuf[j] = 'a' + (TEST_PRNG(&prng) % 26);
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}
|
|
|
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lfs3_file_t file;
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uint8_t rbuf[SIZE];
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lfs3_file_open(&lfs3, &file, name, LFS3_O_RDONLY) => 0;
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lfs3_file_read(&lfs3, &file, rbuf, SIZE) => SIZE;
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assert(memcmp(rbuf, wbuf, SIZE) == 0);
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lfs3_file_close(&lfs3, &file) => 0;
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}
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}
|
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|
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lfs3_unmount(&lfs3) => 0;
|
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'''
|
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[cases.test_relocations_spam_file_fuzz]
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defines.BLOCK_RECYCLES = [4, 1, 0]
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defines.N = [1, 2, 4, 8, 16, 32, 64]
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|
defines.OPS = 1024
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|
defines.SIZE = [
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'0',
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'FCACHE_SIZE/2',
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'2*FCACHE_SIZE',
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'BLOCK_SIZE/2',
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'BLOCK_SIZE',
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'2*BLOCK_SIZE',
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'4*BLOCK_SIZE',
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]
|
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defines.SEED = 'range(10)'
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fuzz = 'SEED'
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if = '(SIZE*N)/BLOCK_SIZE <= 16'
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code = '''
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lfs3_t lfs3;
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lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
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lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
|
|
|
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// set up a simulation to compare against
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lfs3_size_t *sim = malloc(N*sizeof(lfs3_size_t));
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uint32_t *sim_prngs = malloc(N*sizeof(uint32_t));
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lfs3_size_t sim_size = 0;
|
|
|
|
uint32_t prng = SEED;
|
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for (lfs3_size_t i = 0; i < OPS; i++) {
|
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// choose which operation to do
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uint8_t op = TEST_PRNG(&prng) % 3;
|
|
|
|
// creating a new file?
|
|
if (op == 0 || sim_size == 0) {
|
|
// choose a pseudo-random number
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lfs3_size_t x = TEST_PRNG(&prng) % N;
|
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// associate each file with a prng that generates its contents
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|
uint32_t wprng = TEST_PRNG(&prng);
|
|
|
|
// insert into our sim
|
|
for (lfs3_size_t j = 0;; j++) {
|
|
if (j >= sim_size || sim[j] >= x) {
|
|
// already seen?
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|
if (j < sim_size && sim[j] == x) {
|
|
// new prng
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|
sim_prngs[j] = wprng;
|
|
} else {
|
|
// insert
|
|
memmove(&sim[j+1], &sim[j],
|
|
(sim_size-j)*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[j+1], &sim_prngs[j],
|
|
(sim_size-j)*sizeof(uint32_t));
|
|
sim_size += 1;
|
|
sim[j] = x;
|
|
sim_prngs[j] = wprng;
|
|
}
|
|
break;
|
|
}
|
|
}
|
|
|
|
// create a file here
|
|
char name[256];
|
|
sprintf(name, "amethyst%03x", x);
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&wprng) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
|
|
// deleting a file?
|
|
} else if (op == 1) {
|
|
// choose a random file to delete
|
|
lfs3_size_t j = TEST_PRNG(&prng) % sim_size;
|
|
lfs3_size_t x = sim[j];
|
|
// delete from our sim
|
|
memmove(&sim[j], &sim[j+1],
|
|
(sim_size-(j+1))*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[j], &sim_prngs[j+1],
|
|
(sim_size-(j+1))*sizeof(uint32_t));
|
|
sim_size -= 1;
|
|
|
|
// delete this file
|
|
char name[256];
|
|
sprintf(name, "amethyst%03x", x);
|
|
lfs3_remove(&lfs3, name) => 0;
|
|
|
|
// renaming a file?
|
|
} else {
|
|
// choose a random file to rename, and a random number to
|
|
// rename to
|
|
lfs3_size_t j = TEST_PRNG(&prng) % sim_size;
|
|
lfs3_size_t x = sim[j];
|
|
lfs3_size_t y = TEST_PRNG(&prng) % N;
|
|
uint32_t wprng = sim_prngs[j];
|
|
|
|
// update our sim
|
|
for (lfs3_size_t k = 0;; k++) {
|
|
if (k >= sim_size || sim[k] >= y) {
|
|
// renaming and replacing
|
|
if (k < sim_size && sim[k] == y && x != y) {
|
|
// delete the original entry
|
|
memmove(&sim[j], &sim[j+1],
|
|
(sim_size-(j+1))*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[j], &sim_prngs[j+1],
|
|
(sim_size-(j+1))*sizeof(uint32_t));
|
|
sim_size -= 1;
|
|
if (k > j) {
|
|
k -= 1;
|
|
}
|
|
// update the prng
|
|
sim_prngs[k] = wprng;
|
|
// just renaming
|
|
} else {
|
|
// first delete
|
|
memmove(&sim[j], &sim[j+1],
|
|
(sim_size-(j+1))*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[j], &sim_prngs[j+1],
|
|
(sim_size-(j+1))*sizeof(uint32_t));
|
|
if (k > j) {
|
|
k -= 1;
|
|
}
|
|
// then insert
|
|
memmove(&sim[k+1], &sim[k],
|
|
(sim_size-1-k)*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[k+1], &sim_prngs[k],
|
|
(sim_size-1-k)*sizeof(uint32_t));
|
|
sim[k] = y;
|
|
sim_prngs[k] = wprng;
|
|
}
|
|
break;
|
|
}
|
|
}
|
|
|
|
// rename this file
|
|
char old_name[256];
|
|
sprintf(old_name, "amethyst%03x", x);
|
|
char new_name[256];
|
|
sprintf(new_name, "amethyst%03x", y);
|
|
lfs3_rename(&lfs3, old_name, new_name) => 0;
|
|
}
|
|
}
|
|
|
|
for (int remount = 0; remount < 2; remount++) {
|
|
// remount?
|
|
if (remount) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
|
|
}
|
|
|
|
// check that our files match our simulation
|
|
for (lfs3_size_t j = 0; j < sim_size; j++) {
|
|
char name[256];
|
|
sprintf(name, "amethyst%03x", sim[j]);
|
|
struct lfs3_info info;
|
|
lfs3_stat(&lfs3, name, &info) => 0;
|
|
assert(strcmp(info.name, name) == 0);
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
}
|
|
|
|
lfs3_dir_t dir;
|
|
lfs3_dir_open(&lfs3, &dir, "/") => 0;
|
|
struct lfs3_info info;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, ".") == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, "..") == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
for (lfs3_size_t j = 0; j < sim_size; j++) {
|
|
char name[256];
|
|
sprintf(name, "amethyst%03x", sim[j]);
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, name) == 0);
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
}
|
|
lfs3_dir_read(&lfs3, &dir, &info) => LFS3_ERR_NOENT;
|
|
lfs3_dir_close(&lfs3, &dir) => 0;
|
|
|
|
// check the file contents
|
|
for (lfs3_size_t j = 0; j < sim_size; j++) {
|
|
char name[256];
|
|
sprintf(name, "amethyst%03x", sim[j]);
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name, LFS3_O_RDONLY) => 0;
|
|
|
|
uint32_t wprng = sim_prngs[j];
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&wprng) % 26);
|
|
}
|
|
|
|
uint8_t rbuf[SIZE];
|
|
lfs3_file_read(&lfs3, &file, rbuf, SIZE) => SIZE;
|
|
assert(memcmp(rbuf, wbuf, SIZE) == 0);
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
// clean up sim/lfs3
|
|
free(sim);
|
|
free(sim_prngs);
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
# open files + relocations may create problems for uncreats/zombies
|
|
[cases.test_relocations_spam_uz_fuzz]
|
|
defines.BLOCK_RECYCLES = [4, 1, 0]
|
|
# you probably need to flush if you expect errors
|
|
defines.FLUSH = false
|
|
defines.N = [1, 2, 4, 8, 16, 32, 64]
|
|
defines.OPS = 1024
|
|
defines.SIZE = [
|
|
'0',
|
|
'FCACHE_SIZE/2',
|
|
'2*FCACHE_SIZE',
|
|
'BLOCK_SIZE/2',
|
|
'BLOCK_SIZE',
|
|
'2*BLOCK_SIZE',
|
|
'4*BLOCK_SIZE',
|
|
]
|
|
defines.SEED = 'range(10)'
|
|
fuzz = 'SEED'
|
|
if = '(SIZE*N)/BLOCK_SIZE <= 16'
|
|
code = '''
|
|
lfs3_t lfs3;
|
|
lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
|
|
|
|
// set up a simulation to compare against
|
|
lfs3_size_t *sim = malloc(N*sizeof(lfs3_size_t));
|
|
uint32_t *sim_prngs = malloc(N*sizeof(uint32_t));
|
|
bool *sim_isstickys = malloc(N*sizeof(bool));
|
|
lfs3_size_t sim_size = 0;
|
|
|
|
typedef struct sim_file {
|
|
lfs3_size_t x;
|
|
bool sticky;
|
|
bool zombie;
|
|
uint32_t prng;
|
|
lfs3_file_t file;
|
|
} sim_file_t;
|
|
sim_file_t **sim_files = malloc(N*sizeof(sim_file_t*));
|
|
lfs3_size_t sim_file_count = 0;
|
|
|
|
uint32_t prng = SEED;
|
|
for (lfs3_size_t i = 0; i < OPS; i++) {
|
|
nonsense:;
|
|
// choose which operation to do
|
|
uint8_t op = TEST_PRNG(&prng) % 5;
|
|
|
|
// open a new file?
|
|
if (op == 0) {
|
|
if (sim_file_count >= N) {
|
|
goto nonsense;
|
|
}
|
|
// choose a pseudo-random number
|
|
lfs3_size_t x = TEST_PRNG(&prng) % N;
|
|
|
|
// already exists?
|
|
bool exist = false;
|
|
uint32_t wprng = 0;
|
|
bool sticky = true;
|
|
for (lfs3_size_t j = 0; j < sim_size; j++) {
|
|
if (sim[j] == x) {
|
|
exist = true;
|
|
wprng = sim_prngs[j];
|
|
sticky = sim_isstickys[j];
|
|
break;
|
|
}
|
|
}
|
|
// choose a random seed if we don't exist
|
|
if (!exist) {
|
|
wprng = TEST_PRNG(&prng);
|
|
sticky = true;
|
|
}
|
|
|
|
lfs3_size_t j = sim_file_count;
|
|
sim_files[j] = malloc(sizeof(sim_file_t));
|
|
|
|
// open the actual file
|
|
char name[256];
|
|
sprintf(name, "batman%03x", x);
|
|
lfs3_file_open(&lfs3, &sim_files[j]->file, name,
|
|
LFS3_O_RDWR
|
|
| LFS3_O_CREAT
|
|
| ((FLUSH) ? LFS3_O_FLUSH : 0)) => 0;
|
|
|
|
// write some initial data if we don't exist
|
|
if (!exist || sticky) {
|
|
uint8_t wbuf[SIZE];
|
|
uint32_t wprng_ = wprng;
|
|
for (lfs3_size_t k = 0; k < SIZE; k++) {
|
|
wbuf[k] = 'a' + (TEST_PRNG(&wprng_) % 26);
|
|
}
|
|
lfs3_file_write(&lfs3, &sim_files[j]->file, wbuf, SIZE)
|
|
=> SIZE;
|
|
}
|
|
|
|
// open in our sim
|
|
sim_files[j]->x = x;
|
|
sim_files[j]->sticky = sticky;
|
|
sim_files[j]->zombie = false;
|
|
sim_files[j]->prng = wprng;
|
|
sim_file_count++;
|
|
|
|
// insert into our sim
|
|
for (lfs3_size_t k = 0;; k++) {
|
|
if (k >= sim_size || sim[k] >= x) {
|
|
// already seen?
|
|
if (k < sim_size && sim[k] == x) {
|
|
// new prng
|
|
sim_prngs[k] = wprng;
|
|
} else {
|
|
// insert
|
|
memmove(&sim[k+1], &sim[k],
|
|
(sim_size-k)*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[k+1], &sim_prngs[k],
|
|
(sim_size-k)*sizeof(uint32_t));
|
|
memmove(&sim_isstickys[k+1], &sim_isstickys[k],
|
|
(sim_size-k)*sizeof(bool));
|
|
sim_size += 1;
|
|
sim[k] = x;
|
|
sim_prngs[k] = wprng;
|
|
sim_isstickys[k] = sticky;
|
|
}
|
|
break;
|
|
}
|
|
}
|
|
|
|
// write/rewrite a file?
|
|
} else if (op == 1) {
|
|
if (sim_file_count == 0) {
|
|
goto nonsense;
|
|
}
|
|
// choose a random file handle
|
|
lfs3_size_t j = TEST_PRNG(&prng) % sim_file_count;
|
|
lfs3_size_t x = sim_files[j]->x;
|
|
// choose a random seed
|
|
uint32_t wprng = TEST_PRNG(&prng);
|
|
|
|
// write to the file
|
|
lfs3_file_rewind(&lfs3, &sim_files[j]->file) => 0;
|
|
uint8_t wbuf[SIZE];
|
|
uint32_t wprng_ = wprng;
|
|
for (lfs3_size_t k = 0; k < SIZE; k++) {
|
|
wbuf[k] = 'a' + (TEST_PRNG(&wprng_) % 26);
|
|
}
|
|
lfs3_file_write(&lfs3, &sim_files[j]->file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_sync(&lfs3, &sim_files[j]->file) => 0;
|
|
|
|
// update sim
|
|
sim_files[j]->prng = wprng;
|
|
if (!sim_files[j]->zombie) {
|
|
// update in our sim
|
|
for (lfs3_size_t k = 0;; k++) {
|
|
if (sim[k] == x) {
|
|
// new prng
|
|
sim_prngs[k] = wprng;
|
|
// no longer sticky
|
|
sim_isstickys[k] = false;
|
|
break;
|
|
}
|
|
}
|
|
|
|
// update related sim files
|
|
for (lfs3_size_t k = 0; k < sim_file_count; k++) {
|
|
if (sim_files[k]->x == x && !sim_files[k]->zombie) {
|
|
// new prng
|
|
sim_files[k]->prng = wprng;
|
|
// no longer sticky
|
|
sim_files[k]->sticky = false;
|
|
}
|
|
}
|
|
}
|
|
|
|
// close a file?
|
|
} else if (op == 2) {
|
|
if (sim_file_count == 0) {
|
|
goto nonsense;
|
|
}
|
|
// choose a random file handle
|
|
lfs3_size_t j = TEST_PRNG(&prng) % sim_file_count;
|
|
lfs3_size_t x = sim_files[j]->x;
|
|
bool sticky = sim_files[j]->sticky;
|
|
bool zombie = sim_files[j]->zombie;
|
|
|
|
// this doesn't really test anything, but if we don't close
|
|
// files eventually everything will end up zombies
|
|
|
|
// close the file without affected disk
|
|
lfs3_file_desync(&lfs3, &sim_files[j]->file) => 0;
|
|
lfs3_file_close(&lfs3, &sim_files[j]->file) => 0;
|
|
// clobber closed files to try to catch lingering references
|
|
memset(&sim_files[j]->file, 0xcc, sizeof(lfs3_file_t));
|
|
|
|
// remove from list
|
|
free(sim_files[j]);
|
|
sim_files[j] = sim_files[sim_file_count-1];
|
|
sim_file_count -= 1;
|
|
|
|
// update our sim
|
|
if (sticky && !zombie) {
|
|
// orphaned?
|
|
bool orphan = true;
|
|
for (lfs3_size_t k = 0; k < sim_file_count; k++) {
|
|
if (sim_files[k]->x == x && !sim_files[k]->zombie) {
|
|
orphan = false;
|
|
}
|
|
}
|
|
|
|
// if we were never synced, delete from sim
|
|
if (orphan) {
|
|
for (lfs3_size_t k = 0;; k++) {
|
|
if (sim[k] == x) {
|
|
memmove(&sim[k], &sim[k+1],
|
|
(sim_size-(k+1))*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[k], &sim_prngs[k+1],
|
|
(sim_size-(k+1))*sizeof(uint32_t));
|
|
memmove(&sim_isstickys[k], &sim_isstickys[k+1],
|
|
(sim_size-(k+1))*sizeof(bool));
|
|
sim_size -= 1;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
// remove a file?
|
|
} else if (op == 3) {
|
|
if (sim_size == 0) {
|
|
goto nonsense;
|
|
}
|
|
// choose a random file to delete
|
|
lfs3_size_t j = TEST_PRNG(&prng) % sim_size;
|
|
lfs3_size_t x = sim[j];
|
|
|
|
// delete this file
|
|
char name[256];
|
|
sprintf(name, "batman%03x", x);
|
|
lfs3_remove(&lfs3, name) => 0;
|
|
|
|
// delete from our sim
|
|
memmove(&sim[j], &sim[j+1],
|
|
(sim_size-(j+1))*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[j], &sim_prngs[j+1],
|
|
(sim_size-(j+1))*sizeof(uint32_t));
|
|
memmove(&sim_isstickys[j], &sim_isstickys[j+1],
|
|
(sim_size-(j+1))*sizeof(bool));
|
|
sim_size -= 1;
|
|
|
|
// mark any related sim files as zombied
|
|
for (lfs3_size_t k = 0; k < sim_file_count; k++) {
|
|
if (sim_files[k]->x == x) {
|
|
sim_files[k]->zombie = true;
|
|
}
|
|
}
|
|
|
|
// rename a file?
|
|
} else if (op == 4) {
|
|
if (sim_size == 0) {
|
|
goto nonsense;
|
|
}
|
|
// choose a random file to rename, and a random number to
|
|
// rename to
|
|
lfs3_size_t j = TEST_PRNG(&prng) % sim_size;
|
|
lfs3_size_t x = sim[j];
|
|
lfs3_size_t y = TEST_PRNG(&prng) % N;
|
|
uint32_t wprng = sim_prngs[j];
|
|
bool sticky = sim_isstickys[j];
|
|
|
|
// rename this file
|
|
char old_name[256];
|
|
sprintf(old_name, "batman%03x", x);
|
|
char new_name[256];
|
|
sprintf(new_name, "batman%03x", y);
|
|
lfs3_rename(&lfs3, old_name, new_name) => 0;
|
|
|
|
// update our sim
|
|
for (lfs3_size_t k = 0;; k++) {
|
|
if (k >= sim_size || sim[k] >= y) {
|
|
// renaming and replacing
|
|
if (k < sim_size && sim[k] == y && x != y) {
|
|
// delete the original entry
|
|
memmove(&sim[j], &sim[j+1],
|
|
(sim_size-(j+1))*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[j], &sim_prngs[j+1],
|
|
(sim_size-(j+1))*sizeof(uint32_t));
|
|
memmove(&sim_isstickys[j], &sim_isstickys[j+1],
|
|
(sim_size-(j+1))*sizeof(bool));
|
|
sim_size -= 1;
|
|
if (k > j) {
|
|
k -= 1;
|
|
}
|
|
// update the prng/sticky
|
|
sim_prngs[k] = wprng;
|
|
sim_isstickys[k] = sticky;
|
|
// just renaming
|
|
} else {
|
|
// first delete
|
|
memmove(&sim[j], &sim[j+1],
|
|
(sim_size-(j+1))*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[j], &sim_prngs[j+1],
|
|
(sim_size-(j+1))*sizeof(uint32_t));
|
|
memmove(&sim_isstickys[j], &sim_isstickys[j+1],
|
|
(sim_size-(j+1))*sizeof(bool));
|
|
if (k > j) {
|
|
k -= 1;
|
|
}
|
|
// then insert
|
|
memmove(&sim[k+1], &sim[k],
|
|
(sim_size-1-k)*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[k+1], &sim_prngs[k],
|
|
(sim_size-1-k)*sizeof(uint32_t));
|
|
memmove(&sim_isstickys[k+1], &sim_isstickys[k],
|
|
(sim_size-1-k)*sizeof(bool));
|
|
sim[k] = y;
|
|
sim_prngs[k] = wprng;
|
|
sim_isstickys[k] = sticky;
|
|
}
|
|
break;
|
|
}
|
|
}
|
|
|
|
// update any related sim files
|
|
for (lfs3_size_t k = 0; k < sim_file_count; k++) {
|
|
// move source files
|
|
if (sim_files[k]->x == x) {
|
|
sim_files[k]->x = y;
|
|
|
|
// mark target files as zombied
|
|
} else if (sim_files[k]->x == y) {
|
|
sim_files[k]->zombie = true;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
// check that disk matches our simulation
|
|
for (lfs3_size_t j = 0; j < sim_size; j++) {
|
|
char name[256];
|
|
sprintf(name, "batman%03x", sim[j]);
|
|
struct lfs3_info info;
|
|
lfs3_stat(&lfs3, name, &info) => 0;
|
|
assert(strcmp(info.name, name) == 0);
|
|
if (sim_isstickys[j]) {
|
|
assert(info.type == LFS3_TYPE_STICKYNOTE);
|
|
assert(info.size == 0);
|
|
} else {
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
}
|
|
}
|
|
|
|
lfs3_dir_t dir;
|
|
lfs3_dir_open(&lfs3, &dir, "/") => 0;
|
|
struct lfs3_info info;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, ".") == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, "..") == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
for (lfs3_size_t j = 0; j < sim_size; j++) {
|
|
char name[256];
|
|
sprintf(name, "batman%03x", sim[j]);
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, name) == 0);
|
|
if (sim_isstickys[j]) {
|
|
assert(info.type == LFS3_TYPE_STICKYNOTE);
|
|
assert(info.size == 0);
|
|
} else {
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
}
|
|
}
|
|
lfs3_dir_read(&lfs3, &dir, &info) => LFS3_ERR_NOENT;
|
|
lfs3_dir_close(&lfs3, &dir) => 0;
|
|
|
|
for (lfs3_size_t j = 0; j < sim_size; j++) {
|
|
char name[256];
|
|
sprintf(name, "batman%03x", sim[j]);
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name, LFS3_O_RDONLY) => 0;
|
|
|
|
uint32_t wprng = sim_prngs[j];
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&wprng) % 26);
|
|
}
|
|
|
|
uint8_t rbuf[SIZE];
|
|
if (sim_isstickys[j]) {
|
|
lfs3_file_read(&lfs3, &file, rbuf, SIZE) => 0;
|
|
} else {
|
|
lfs3_file_read(&lfs3, &file, rbuf, SIZE) => SIZE;
|
|
assert(memcmp(rbuf, wbuf, SIZE) == 0);
|
|
}
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
|
|
// check that our file handles match our simulation
|
|
for (lfs3_size_t j = 0; j < sim_file_count; j++) {
|
|
uint32_t wprng = sim_files[j]->prng;
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&wprng) % 26);
|
|
}
|
|
|
|
lfs3_file_rewind(&lfs3, &sim_files[j]->file) => 0;
|
|
uint8_t rbuf[SIZE];
|
|
lfs3_file_read(&lfs3, &sim_files[j]->file, rbuf, SIZE) => SIZE;
|
|
assert(memcmp(rbuf, wbuf, SIZE) == 0);
|
|
}
|
|
|
|
// clean up sim/lfs3
|
|
free(sim);
|
|
free(sim_prngs);
|
|
free(sim_isstickys);
|
|
for (lfs3_size_t j = 0; j < sim_file_count; j++) {
|
|
lfs3_file_close(&lfs3, &sim_files[j]->file) => 0;
|
|
free(sim_files[j]);
|
|
}
|
|
free(sim_files);
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
# open files + dirs + relocations can cause so many problems it's not worth
|
|
# listing them
|
|
[cases.test_relocations_spam_uzd_fuzz]
|
|
defines.BLOCK_RECYCLES = [4, 1, 0]
|
|
# you probably need to flush if you expect errors
|
|
defines.FLUSH = false
|
|
defines.N = [1, 2, 4, 8, 16, 32, 64]
|
|
defines.OPS = 1024
|
|
defines.SIZE = [
|
|
'0',
|
|
'FCACHE_SIZE/2',
|
|
'2*FCACHE_SIZE',
|
|
'BLOCK_SIZE/2',
|
|
'BLOCK_SIZE',
|
|
'2*BLOCK_SIZE',
|
|
'4*BLOCK_SIZE',
|
|
]
|
|
defines.SEED = 'range(10)'
|
|
fuzz = 'SEED'
|
|
if = '(SIZE*N)/BLOCK_SIZE <= 16'
|
|
code = '''
|
|
lfs3_t lfs3;
|
|
lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
|
|
|
|
// set up a simulation to compare against
|
|
lfs3_size_t *sim = malloc(N*sizeof(lfs3_size_t));
|
|
uint32_t *sim_prngs = malloc(N*sizeof(uint32_t));
|
|
bool *sim_isstickys = malloc(N*sizeof(bool));
|
|
bool *sim_isdirs = malloc(N*sizeof(bool));
|
|
lfs3_size_t sim_size = 0;
|
|
|
|
typedef struct sim_file {
|
|
lfs3_size_t x;
|
|
bool sticky;
|
|
bool zombie;
|
|
uint32_t prng;
|
|
lfs3_file_t file;
|
|
} sim_file_t;
|
|
sim_file_t **sim_files = malloc(N*sizeof(sim_file_t*));
|
|
lfs3_size_t sim_file_count = 0;
|
|
|
|
uint32_t prng = SEED;
|
|
for (lfs3_size_t i = 0; i < OPS; i++) {
|
|
nonsense:;
|
|
// choose which operation to do
|
|
uint8_t op = TEST_PRNG(&prng) % 8;
|
|
|
|
// open a new file?
|
|
if (op == 0) {
|
|
if (sim_file_count >= N) {
|
|
goto nonsense;
|
|
}
|
|
// choose a pseudo-random number
|
|
lfs3_size_t x = TEST_PRNG(&prng) % N;
|
|
|
|
// already exists?
|
|
bool exist = true;
|
|
uint32_t wprng = 0;
|
|
bool sticky = true;
|
|
for (lfs3_size_t j = 0; j < sim_size; j++) {
|
|
if (sim[j] == x) {
|
|
if (sim_isdirs[j]) {
|
|
goto nonsense;
|
|
}
|
|
exist = true;
|
|
wprng = sim_prngs[j];
|
|
sticky = sim_isstickys[j];
|
|
break;
|
|
}
|
|
}
|
|
// choose a random seed if we don't exist
|
|
if (!exist) {
|
|
wprng = TEST_PRNG(&prng);
|
|
sticky = true;
|
|
}
|
|
|
|
lfs3_size_t j = sim_file_count;
|
|
sim_files[j] = malloc(sizeof(sim_file_t));
|
|
|
|
// open the actual file
|
|
char name[256];
|
|
sprintf(name, "batman%03x", x);
|
|
lfs3_file_open(&lfs3, &sim_files[j]->file, name,
|
|
LFS3_O_RDWR
|
|
| LFS3_O_CREAT
|
|
| ((FLUSH) ? LFS3_O_FLUSH : 0)) => 0;
|
|
|
|
// write some initial data if we don't exist
|
|
if (!exist || sticky) {
|
|
uint8_t wbuf[SIZE];
|
|
uint32_t wprng_ = wprng;
|
|
for (lfs3_size_t k = 0; k < SIZE; k++) {
|
|
wbuf[k] = 'a' + (TEST_PRNG(&wprng_) % 26);
|
|
}
|
|
lfs3_file_write(&lfs3, &sim_files[j]->file, wbuf, SIZE)
|
|
=> SIZE;
|
|
}
|
|
|
|
// open in our sim
|
|
sim_files[j]->x = x;
|
|
sim_files[j]->sticky = sticky;
|
|
sim_files[j]->zombie = false;
|
|
sim_files[j]->prng = wprng;
|
|
sim_file_count++;
|
|
|
|
// insert into our sim
|
|
for (lfs3_size_t k = 0;; k++) {
|
|
if (k >= sim_size || sim[k] >= x) {
|
|
// already seen?
|
|
if (k < sim_size && sim[k] == x) {
|
|
// new prng
|
|
sim_prngs[k] = wprng;
|
|
} else {
|
|
// insert
|
|
memmove(&sim[k+1], &sim[k],
|
|
(sim_size-k)*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[k+1], &sim_prngs[k],
|
|
(sim_size-k)*sizeof(uint32_t));
|
|
memmove(&sim_isstickys[k+1], &sim_isstickys[k],
|
|
(sim_size-k)*sizeof(bool));
|
|
memmove(&sim_isdirs[k+1], &sim_isdirs[k],
|
|
(sim_size-k)*sizeof(bool));
|
|
sim_size += 1;
|
|
sim[k] = x;
|
|
sim_prngs[k] = wprng;
|
|
sim_isstickys[k] = sticky;
|
|
sim_isdirs[k] = false;
|
|
}
|
|
break;
|
|
}
|
|
}
|
|
|
|
// write/rewrite a file?
|
|
} else if (op == 1) {
|
|
if (sim_file_count == 0) {
|
|
goto nonsense;
|
|
}
|
|
// choose a random file handle
|
|
lfs3_size_t j = TEST_PRNG(&prng) % sim_file_count;
|
|
lfs3_size_t x = sim_files[j]->x;
|
|
// choose a random seed
|
|
uint32_t wprng = TEST_PRNG(&prng);
|
|
|
|
// write to the file
|
|
lfs3_file_rewind(&lfs3, &sim_files[j]->file) => 0;
|
|
uint8_t wbuf[SIZE];
|
|
uint32_t wprng_ = wprng;
|
|
for (lfs3_size_t k = 0; k < SIZE; k++) {
|
|
wbuf[k] = 'a' + (TEST_PRNG(&wprng_) % 26);
|
|
}
|
|
lfs3_file_write(&lfs3, &sim_files[j]->file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_sync(&lfs3, &sim_files[j]->file) => 0;
|
|
|
|
// update sim
|
|
sim_files[j]->prng = wprng;
|
|
if (!sim_files[j]->zombie) {
|
|
// update in our sim
|
|
for (lfs3_size_t k = 0;; k++) {
|
|
if (k >= sim_size || sim[k] >= x) {
|
|
// new prng
|
|
sim_prngs[k] = wprng;
|
|
// no longer sticky
|
|
sim_isstickys[k] = false;
|
|
break;
|
|
}
|
|
}
|
|
|
|
// update related sim files
|
|
for (lfs3_size_t k = 0; k < sim_file_count; k++) {
|
|
if (sim_files[k]->x == x && !sim_files[k]->zombie) {
|
|
// new prng
|
|
sim_files[k]->prng = wprng;
|
|
// no longer sticky
|
|
sim_files[k]->sticky = false;
|
|
}
|
|
}
|
|
}
|
|
|
|
// close a file?
|
|
} else if (op == 2) {
|
|
if (sim_file_count == 0) {
|
|
goto nonsense;
|
|
}
|
|
// choose a random file handle
|
|
lfs3_size_t j = TEST_PRNG(&prng) % sim_file_count;
|
|
lfs3_size_t x = sim_files[j]->x;
|
|
lfs3_size_t sticky = sim_files[j]->sticky;
|
|
lfs3_size_t zombie = sim_files[j]->zombie;
|
|
|
|
// this doesn't really test anything, but if we don't close
|
|
// files eventually everything will end up zombies
|
|
|
|
// close the file without affected disk
|
|
lfs3_file_desync(&lfs3, &sim_files[j]->file) => 0;
|
|
lfs3_file_close(&lfs3, &sim_files[j]->file) => 0;
|
|
// clobber closed files to try to catch lingering references
|
|
memset(&sim_files[j]->file, 0xcc, sizeof(lfs3_file_t));
|
|
|
|
// remove from list
|
|
free(sim_files[j]);
|
|
sim_files[j] = sim_files[sim_file_count-1];
|
|
sim_file_count -= 1;
|
|
|
|
// update our sim
|
|
if (sticky && !zombie) {
|
|
// orphaned?
|
|
bool orphan = true;
|
|
for (lfs3_size_t k = 0; k < sim_file_count; k++) {
|
|
if (sim_files[k]->x == x && !sim_files[k]->zombie) {
|
|
orphan = false;
|
|
}
|
|
}
|
|
|
|
// if we were never synced, delete from sim
|
|
if (orphan) {
|
|
for (lfs3_size_t k = 0;; k++) {
|
|
if (sim[k] == x) {
|
|
memmove(&sim[k], &sim[k+1],
|
|
(sim_size-(k+1))*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[k], &sim_prngs[k+1],
|
|
(sim_size-(k+1))*sizeof(uint32_t));
|
|
memmove(&sim_isstickys[k], &sim_isstickys[k+1],
|
|
(sim_size-(k+1))*sizeof(bool));
|
|
memmove(&sim_isdirs[k], &sim_isdirs[k+1],
|
|
(sim_size-(k+1))*sizeof(bool));
|
|
sim_size -= 1;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
// remove a file?
|
|
} else if (op == 3) {
|
|
if (sim_size == 0) {
|
|
goto nonsense;
|
|
}
|
|
// choose a random file to delete
|
|
lfs3_size_t j = TEST_PRNG(&prng) % sim_size;
|
|
lfs3_size_t x = sim[j];
|
|
|
|
// delete this file
|
|
char name[256];
|
|
sprintf(name, "batman%03x", x);
|
|
lfs3_remove(&lfs3, name) => 0;
|
|
|
|
// delete from our sim
|
|
memmove(&sim[j], &sim[j+1],
|
|
(sim_size-(j+1))*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[j], &sim_prngs[j+1],
|
|
(sim_size-(j+1))*sizeof(uint32_t));
|
|
memmove(&sim_isstickys[j], &sim_isstickys[j+1],
|
|
(sim_size-(j+1))*sizeof(bool));
|
|
memmove(&sim_isdirs[j], &sim_isdirs[j+1],
|
|
(sim_size-(j+1))*sizeof(bool));
|
|
sim_size -= 1;
|
|
|
|
// mark any related sim files as zombied
|
|
for (lfs3_size_t k = 0; k < sim_file_count; k++) {
|
|
if (sim_files[k]->x == x) {
|
|
sim_files[k]->zombie = true;
|
|
}
|
|
}
|
|
|
|
// rename a file?
|
|
} else if (op == 4) {
|
|
if (sim_size == 0) {
|
|
goto nonsense;
|
|
}
|
|
// choose a random file to rename, and a random number to
|
|
// rename to
|
|
lfs3_size_t j = TEST_PRNG(&prng) % sim_size;
|
|
lfs3_size_t x = sim[j];
|
|
lfs3_size_t y = TEST_PRNG(&prng) % N;
|
|
uint32_t wprng = sim_prngs[j];
|
|
bool sticky = sim_isstickys[j];
|
|
bool dir = sim_isdirs[j];
|
|
|
|
for (lfs3_size_t k = 0;; k++) {
|
|
if (k >= sim_size || sim[k] >= y) {
|
|
// renaming and replacing
|
|
if (k < sim_size && sim[k] == y && x != y) {
|
|
// type mismatch?
|
|
if (sim_isdirs[k] != dir) {
|
|
goto nonsense;
|
|
}
|
|
}
|
|
break;
|
|
}
|
|
}
|
|
|
|
// rename this file
|
|
char old_name[256];
|
|
sprintf(old_name, "batman%03x", x);
|
|
char new_name[256];
|
|
sprintf(new_name, "batman%03x", y);
|
|
lfs3_rename(&lfs3, old_name, new_name) => 0;
|
|
|
|
// update our sim
|
|
for (lfs3_size_t k = 0;; k++) {
|
|
if (k >= sim_size || sim[k] >= y) {
|
|
// renaming and replacing
|
|
if (k < sim_size && sim[k] == y && x != y) {
|
|
// delete the original entry
|
|
memmove(&sim[j], &sim[j+1],
|
|
(sim_size-(j+1))*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[j], &sim_prngs[j+1],
|
|
(sim_size-(j+1))*sizeof(uint32_t));
|
|
memmove(&sim_isstickys[j], &sim_isstickys[j+1],
|
|
(sim_size-(j+1))*sizeof(bool));
|
|
memmove(&sim_isdirs[j], &sim_isdirs[j+1],
|
|
(sim_size-(j+1))*sizeof(bool));
|
|
sim_size -= 1;
|
|
if (k > j) {
|
|
k -= 1;
|
|
}
|
|
// update the prng/sticky/dir
|
|
sim_prngs[k] = wprng;
|
|
sim_isstickys[k] = sticky;
|
|
sim_isdirs[k] = dir;
|
|
// just renaming
|
|
} else {
|
|
// first delete
|
|
memmove(&sim[j], &sim[j+1],
|
|
(sim_size-(j+1))*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[j], &sim_prngs[j+1],
|
|
(sim_size-(j+1))*sizeof(uint32_t));
|
|
memmove(&sim_isstickys[j], &sim_isstickys[j+1],
|
|
(sim_size-(j+1))*sizeof(bool));
|
|
memmove(&sim_isdirs[j], &sim_isdirs[j+1],
|
|
(sim_size-(j+1))*sizeof(bool));
|
|
if (k > j) {
|
|
k -= 1;
|
|
}
|
|
// then insert
|
|
memmove(&sim[k+1], &sim[k],
|
|
(sim_size-1-k)*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[k+1], &sim_prngs[k],
|
|
(sim_size-1-k)*sizeof(uint32_t));
|
|
memmove(&sim_isstickys[k+1], &sim_isstickys[k],
|
|
(sim_size-1-k)*sizeof(bool));
|
|
memmove(&sim_isdirs[k+1], &sim_isdirs[k],
|
|
(sim_size-1-k)*sizeof(bool));
|
|
sim[k] = y;
|
|
sim_prngs[k] = wprng;
|
|
sim_isstickys[k] = sticky;
|
|
sim_isdirs[k] = dir;
|
|
}
|
|
break;
|
|
}
|
|
}
|
|
|
|
// update any related sim files
|
|
for (lfs3_size_t k = 0; k < sim_file_count; k++) {
|
|
// move source files
|
|
if (sim_files[k]->x == x) {
|
|
sim_files[k]->x = y;
|
|
|
|
// mark target files as zombied
|
|
} else if (sim_files[k]->x == y) {
|
|
sim_files[k]->zombie = true;
|
|
}
|
|
}
|
|
|
|
// toss a directory into the mix
|
|
} else if (op == 5) {
|
|
// choose a pseudo-random number
|
|
lfs3_size_t x = TEST_PRNG(&prng) % N;
|
|
|
|
for (lfs3_size_t k = 0;; k++) {
|
|
if (k >= sim_size || sim[k] >= x) {
|
|
// already seen?
|
|
if (k < sim_size && sim[k] == x) {
|
|
goto nonsense;
|
|
}
|
|
break;
|
|
}
|
|
}
|
|
|
|
// make the directory
|
|
char name[256];
|
|
sprintf(name, "batman%03x", x);
|
|
lfs3_mkdir(&lfs3, name) => 0;
|
|
|
|
// insert into our sim
|
|
for (lfs3_size_t k = 0;; k++) {
|
|
if (k >= sim_size || sim[k] >= x) {
|
|
// insert
|
|
memmove(&sim[k+1], &sim[k],
|
|
(sim_size-k)*sizeof(lfs3_size_t));
|
|
memmove(&sim_prngs[k+1], &sim_prngs[k],
|
|
(sim_size-k)*sizeof(uint32_t));
|
|
memmove(&sim_isstickys[k+1], &sim_isstickys[k],
|
|
(sim_size-k)*sizeof(bool));
|
|
memmove(&sim_isdirs[k+1], &sim_isdirs[k],
|
|
(sim_size-k)*sizeof(bool));
|
|
sim_size += 1;
|
|
sim[k] = x;
|
|
sim_prngs[k] = 0;
|
|
sim_isdirs[k] = true;
|
|
break;
|
|
}
|
|
}
|
|
|
|
// mark any related sim files as zombied
|
|
for (lfs3_size_t k = 0; k < sim_file_count; k++) {
|
|
if (sim_files[k]->x == x) {
|
|
sim_files[k]->zombie = true;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
// check that disk matches our simulation
|
|
for (lfs3_size_t j = 0; j < sim_size; j++) {
|
|
char name[256];
|
|
sprintf(name, "batman%03x", sim[j]);
|
|
struct lfs3_info info;
|
|
lfs3_stat(&lfs3, name, &info) => 0;
|
|
assert(strcmp(info.name, name) == 0);
|
|
if (sim_isdirs[j]) {
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
} else if (sim_isstickys[j]) {
|
|
assert(info.type == LFS3_TYPE_STICKYNOTE);
|
|
assert(info.size == 0);
|
|
} else {
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
}
|
|
}
|
|
|
|
lfs3_dir_t dir;
|
|
lfs3_dir_open(&lfs3, &dir, "/") => 0;
|
|
struct lfs3_info info;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, ".") == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, "..") == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
for (lfs3_size_t j = 0; j < sim_size; j++) {
|
|
char name[256];
|
|
sprintf(name, "batman%03x", sim[j]);
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, name) == 0);
|
|
if (sim_isdirs[j]) {
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
} else if (sim_isstickys[j]) {
|
|
assert(info.type == LFS3_TYPE_STICKYNOTE);
|
|
assert(info.size == 0);
|
|
} else {
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
}
|
|
}
|
|
lfs3_dir_read(&lfs3, &dir, &info) => LFS3_ERR_NOENT;
|
|
lfs3_dir_close(&lfs3, &dir) => 0;
|
|
|
|
for (lfs3_size_t j = 0; j < sim_size; j++) {
|
|
if (sim_isdirs[j]) {
|
|
char name[256];
|
|
sprintf(name, "batman%03x", sim[j]);
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name, LFS3_O_RDONLY)
|
|
=> LFS3_ERR_ISDIR;
|
|
|
|
} else {
|
|
char name[256];
|
|
sprintf(name, "batman%03x", sim[j]);
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name, LFS3_O_RDONLY) => 0;
|
|
|
|
uint32_t wprng = sim_prngs[j];
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&wprng) % 26);
|
|
}
|
|
|
|
uint8_t rbuf[SIZE];
|
|
if (sim_isstickys[j]) {
|
|
lfs3_file_read(&lfs3, &file, rbuf, SIZE) => 0;
|
|
} else {
|
|
lfs3_file_read(&lfs3, &file, rbuf, SIZE) => SIZE;
|
|
assert(memcmp(rbuf, wbuf, SIZE) == 0);
|
|
}
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
// check that our file handles match our simulation
|
|
for (lfs3_size_t j = 0; j < sim_file_count; j++) {
|
|
uint32_t wprng = sim_files[j]->prng;
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&wprng) % 26);
|
|
}
|
|
|
|
lfs3_file_rewind(&lfs3, &sim_files[j]->file) => 0;
|
|
uint8_t rbuf[SIZE];
|
|
lfs3_file_read(&lfs3, &sim_files[j]->file, rbuf, SIZE) => SIZE;
|
|
assert(memcmp(rbuf, wbuf, SIZE) == 0);
|
|
}
|
|
|
|
// clean up sim/lfs3
|
|
free(sim);
|
|
free(sim_prngs);
|
|
free(sim_isstickys);
|
|
free(sim_isdirs);
|
|
for (lfs3_size_t j = 0; j < sim_file_count; j++) {
|
|
lfs3_file_close(&lfs3, &sim_files[j]->file) => 0;
|
|
free(sim_files[j]);
|
|
}
|
|
free(sim_files);
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
|
|
# and don't forget potential powerloss problems
|
|
|
|
# A general purpose powerloss fuzz test
|
|
#
|
|
#
|
|
# Under powerloss, we can't really keep track of a sim reliably/
|
|
# efficiently, instead just do random operations, store a counter in a
|
|
# special file so we know how much progress has been made, and hope for
|
|
# the best. Most likely an internal assert will trigger if anything goes
|
|
# wrong.
|
|
#
|
|
[cases.test_relocations_spam_f_pl_fuzz]
|
|
defines.BLOCK_RECYCLES = [4, 1, 0]
|
|
defines.N = [1, 2, 4, 8, 16, 32, 64]
|
|
defines.OPS = 256
|
|
defines.SIZE = [
|
|
'0',
|
|
'FCACHE_SIZE/2',
|
|
'2*FCACHE_SIZE',
|
|
'BLOCK_SIZE/2',
|
|
'BLOCK_SIZE',
|
|
'2*BLOCK_SIZE',
|
|
'4*BLOCK_SIZE',
|
|
]
|
|
defines.SEED = 'range(10)'
|
|
fuzz = 'SEED'
|
|
if = '(SIZE*N)/BLOCK_SIZE <= 16'
|
|
reentrant = true
|
|
code = '''
|
|
// format once per test
|
|
lfs3_t lfs3;
|
|
int err = lfs3_mount(&lfs3, LFS3_M_RDWR, CFG);
|
|
if (err) {
|
|
lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
|
|
}
|
|
|
|
// keep some test state on disk to survive powerloss
|
|
typedef struct fuzz_state {
|
|
lfs3_size_t i;
|
|
uint32_t prng;
|
|
} fuzz_state_t;
|
|
fuzz_state_t state = {.i = 0, .prng = SEED};
|
|
|
|
lfs3_file_t state_file;
|
|
lfs3_file_open(&lfs3, &state_file,
|
|
"state", LFS3_O_RDWR | LFS3_O_CREAT) => 0;
|
|
lfs3_ssize_t d = lfs3_file_read(&lfs3, &state_file, &state, sizeof(state));
|
|
assert(d == 0 || d == sizeof(state));
|
|
|
|
// keep test files in a separate directory
|
|
err = lfs3_mkdir(&lfs3, "test");
|
|
assert(!err || err == LFS3_ERR_EXIST);
|
|
|
|
uint32_t prng = state.prng;
|
|
for (lfs3_size_t i = state.i; i < OPS; i++) {
|
|
// choose which operation to do
|
|
uint8_t op = TEST_PRNG(&prng) % 3;
|
|
|
|
// how many files do we have?
|
|
lfs3_size_t count = 0;
|
|
lfs3_dir_t dir;
|
|
lfs3_dir_open(&lfs3, &dir, "test") => 0;
|
|
struct lfs3_info info;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, ".") == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, "..") == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
while (true) {
|
|
int err = lfs3_dir_read(&lfs3, &dir, &info);
|
|
assert(!err || err == LFS3_ERR_NOENT);
|
|
if (err == LFS3_ERR_NOENT) {
|
|
break;
|
|
}
|
|
assert(strlen(info.name) == strlen("amethyst..."));
|
|
assert(memcmp(info.name, "amethyst", strlen("amethyst")) == 0);
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
count++;
|
|
}
|
|
lfs3_dir_close(&lfs3, &dir) => 0;
|
|
|
|
// creating a new file?
|
|
if (op == 0 || count == 0) {
|
|
// choose a pseudo-random number
|
|
lfs3_size_t x = TEST_PRNG(&prng) % N;
|
|
uint32_t wprng = TEST_PRNG(&prng);
|
|
|
|
// create a file here
|
|
char name[256];
|
|
sprintf(name, "test/amethyst%03x", x);
|
|
uint8_t wbuf[SIZE];
|
|
uint8_t ck = 0;
|
|
for (lfs3_size_t j = 0; j < SIZE-1; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&wprng) % 26);
|
|
ck = (ck + (wbuf[j] - 'a')) % 26;
|
|
}
|
|
// make the sum equal to 'a' mod 26
|
|
if (SIZE > 0) {
|
|
wbuf[SIZE-1] = 'a' + ((26 - ck) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
|
|
// deleting a file?
|
|
} else if (op == 1) {
|
|
// choose a random file to delete
|
|
lfs3_size_t j = TEST_PRNG(&prng) % count;
|
|
// find the file
|
|
lfs3_dir_open(&lfs3, &dir, "test") => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
for (lfs3_size_t k = 0; k <= j; k++) {
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
}
|
|
lfs3_dir_close(&lfs3, &dir) => 0;
|
|
|
|
// delete this file
|
|
char name[256];
|
|
assert(strlen(info.name) == strlen("amethyst..."));
|
|
sprintf(name, "test/%s", info.name);
|
|
lfs3_remove(&lfs3, name) => 0;
|
|
|
|
// renaming a file?
|
|
} else {
|
|
// choose a random file to rename, and a random number to
|
|
// rename to
|
|
lfs3_size_t j = TEST_PRNG(&prng) % count;
|
|
lfs3_size_t y = TEST_PRNG(&prng) % N;
|
|
// find the file
|
|
lfs3_dir_open(&lfs3, &dir, "test") => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
for (lfs3_size_t k = 0; k <= j; k++) {
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
}
|
|
lfs3_dir_close(&lfs3, &dir) => 0;
|
|
|
|
// rename this file
|
|
char old_name[256];
|
|
assert(strlen(info.name) == strlen("amethyst..."));
|
|
sprintf(old_name, "test/%s", info.name);
|
|
char new_name[256];
|
|
sprintf(new_name, "test/amethyst%03x", y);
|
|
lfs3_rename(&lfs3, old_name, new_name) => 0;
|
|
}
|
|
|
|
// update our state file
|
|
state.i = i;
|
|
state.prng = prng;
|
|
lfs3_file_rewind(&lfs3, &state_file) => 0;
|
|
lfs3_file_write(&lfs3, &state_file, &state, sizeof(state))
|
|
=> sizeof(state);
|
|
lfs3_file_sync(&lfs3, &state_file) => 0;
|
|
}
|
|
|
|
// go ahead and close our state file in case we remount
|
|
lfs3_file_close(&lfs3, &state_file) => 0;
|
|
|
|
for (int remount = 0; remount < 2; remount++) {
|
|
// remount?
|
|
if (remount) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
|
|
}
|
|
|
|
// check that things look more-or-less ok
|
|
lfs3_dir_t dir;
|
|
lfs3_dir_open(&lfs3, &dir, "test") => 0;
|
|
struct lfs3_info info;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, ".") == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, "..") == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
while (true) {
|
|
int err = lfs3_dir_read(&lfs3, &dir, &info);
|
|
assert(!err || err == LFS3_ERR_NOENT);
|
|
if (err == LFS3_ERR_NOENT) {
|
|
break;
|
|
}
|
|
assert(strlen(info.name) == strlen("amethyst..."));
|
|
assert(memcmp(info.name, "amethyst", strlen("amethyst")) == 0);
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
|
|
// at least try to read the files
|
|
char name[256];
|
|
sprintf(name, "test/%s", info.name);
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name, LFS3_O_RDONLY) => 0;
|
|
|
|
uint8_t rbuf[SIZE];
|
|
lfs3_file_read(&lfs3, &file, rbuf, SIZE) => SIZE;
|
|
// all data should be lowercase ascii
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
assert(rbuf[j] >= 'a' && rbuf[j] <= 'z');
|
|
}
|
|
// sum should be equal to 'a' mod 26
|
|
uint8_t ck = 0;
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
ck = (ck + (rbuf[j] - 'a')) % 26;
|
|
}
|
|
assert(ck == 0);
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
lfs3_dir_close(&lfs3, &dir) => 0;
|
|
}
|
|
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
# A general purpose powerloss fuzz test, with directories!
|
|
#
|
|
# Under powerloss, we can't really keep track of a sim reliably/
|
|
# efficiently, instead just do random operations, store a counter in a
|
|
# special file so we know how much progress has been made, and hope for
|
|
# the best. Most likely an internal assert will trigger if anything goes
|
|
# wrong.
|
|
#
|
|
[cases.test_relocations_spam_fd_pl_fuzz]
|
|
defines.BLOCK_RECYCLES = [4, 1, 0]
|
|
# note dirs x files grows O(n^2)
|
|
defines.N = [1, 2, 4, 8]
|
|
defines.M = 'N'
|
|
defines.OPS = 256
|
|
defines.SIZE = [
|
|
'0',
|
|
'FCACHE_SIZE/2',
|
|
'2*FCACHE_SIZE',
|
|
'BLOCK_SIZE/2',
|
|
'BLOCK_SIZE',
|
|
'2*BLOCK_SIZE',
|
|
'4*BLOCK_SIZE',
|
|
]
|
|
defines.SEED = 'range(10)'
|
|
fuzz = 'SEED'
|
|
if = '(SIZE*N)/BLOCK_SIZE <= 16'
|
|
reentrant = true
|
|
code = '''
|
|
// format once per test
|
|
lfs3_t lfs3;
|
|
int err = lfs3_mount(&lfs3, LFS3_M_RDWR, CFG);
|
|
if (err) {
|
|
lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
|
|
}
|
|
|
|
// keep some test state on disk to survive powerloss
|
|
typedef struct fuzz_state {
|
|
lfs3_size_t i;
|
|
uint32_t prng;
|
|
} fuzz_state_t;
|
|
fuzz_state_t state = {.i = 0, .prng = SEED};
|
|
|
|
lfs3_file_t state_file;
|
|
lfs3_file_open(&lfs3, &state_file,
|
|
"state", LFS3_O_RDWR | LFS3_O_CREAT) => 0;
|
|
lfs3_ssize_t d = lfs3_file_read(&lfs3, &state_file, &state, sizeof(state));
|
|
assert(d == 0 || d == sizeof(state));
|
|
|
|
// keep test files in a separate directory
|
|
err = lfs3_mkdir(&lfs3, "test");
|
|
assert(!err || err == LFS3_ERR_EXIST);
|
|
|
|
uint32_t prng = state.prng;
|
|
for (lfs3_size_t i = state.i; i < OPS; i++) {
|
|
// choose which operation to do
|
|
uint8_t op = TEST_PRNG(&prng) % 6;
|
|
|
|
// how many dirs do we have?
|
|
lfs3_size_t dir_count = 0;
|
|
lfs3_dir_t dir;
|
|
lfs3_dir_open(&lfs3, &dir, "test") => 0;
|
|
struct lfs3_info info;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, ".") == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, "..") == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
while (true) {
|
|
int err = lfs3_dir_read(&lfs3, &dir, &info);
|
|
assert(!err || err == LFS3_ERR_NOENT);
|
|
if (err == LFS3_ERR_NOENT) {
|
|
break;
|
|
}
|
|
assert(strlen(info.name) == strlen("quartz..."));
|
|
assert(memcmp(info.name, "quartz", strlen("quartz")) == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
dir_count++;
|
|
}
|
|
lfs3_dir_close(&lfs3, &dir) => 0;
|
|
|
|
// dir op?
|
|
if (op < 3 || dir_count == 0) {
|
|
// creating a new dir?
|
|
if (op == 0 || dir_count == 0) {
|
|
// choose a pseudo-random number
|
|
lfs3_size_t x = TEST_PRNG(&prng) % N;
|
|
|
|
// create a dir here
|
|
char name[256];
|
|
sprintf(name, "test/quartz%03x", x);
|
|
int err = lfs3_mkdir(&lfs3, name);
|
|
assert(!err || err == LFS3_ERR_EXIST);
|
|
|
|
// deleting a dir?
|
|
} else if (op == 1) {
|
|
// choose a random dir to delete
|
|
lfs3_size_t j = TEST_PRNG(&prng) % dir_count;
|
|
// find the dir
|
|
lfs3_dir_open(&lfs3, &dir, "test") => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
for (lfs3_size_t k = 0; k <= j; k++) {
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
}
|
|
lfs3_dir_close(&lfs3, &dir) => 0;
|
|
|
|
// try to delete this dir, ignore non-empty dirs!
|
|
char name[256];
|
|
assert(strlen(info.name) == strlen("quartz..."));
|
|
sprintf(name, "test/%s", info.name);
|
|
int err = lfs3_remove(&lfs3, name);
|
|
assert(!err || err == LFS3_ERR_NOTEMPTY);
|
|
|
|
// renaming a dir?
|
|
} else {
|
|
// choose a random dir to rename, and a random number to
|
|
// rename to
|
|
lfs3_size_t j = TEST_PRNG(&prng) % dir_count;
|
|
lfs3_size_t y = TEST_PRNG(&prng) % N;
|
|
// find the dir
|
|
lfs3_dir_open(&lfs3, &dir, "test") => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
for (lfs3_size_t k = 0; k <= j; k++) {
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
}
|
|
lfs3_dir_close(&lfs3, &dir) => 0;
|
|
|
|
// rename this dir, ignore conflicts!
|
|
char old_name[256];
|
|
assert(strlen(info.name) == strlen("quartz..."));
|
|
sprintf(old_name, "test/%s", info.name);
|
|
char new_name[256];
|
|
sprintf(new_name, "test/quartz%03x", y);
|
|
int err = lfs3_rename(&lfs3, old_name, new_name);
|
|
assert(!err || err == LFS3_ERR_NOTEMPTY);
|
|
}
|
|
|
|
// file op?
|
|
} else {
|
|
// choose a pseudo-random dir
|
|
lfs3_size_t dir_i = TEST_PRNG(&prng) % dir_count;
|
|
// find the dir
|
|
lfs3_dir_open(&lfs3, &dir, "test") => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
for (lfs3_size_t k = 0; k <= dir_i; k++) {
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
}
|
|
lfs3_dir_close(&lfs3, &dir) => 0;
|
|
char dir_path[256];
|
|
sprintf(dir_path, "test/%s", info.name);
|
|
|
|
// how many files do we have?
|
|
lfs3_size_t count = 0;
|
|
lfs3_dir_open(&lfs3, &dir, dir_path) => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, ".") == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, "..") == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
while (true) {
|
|
int err = lfs3_dir_read(&lfs3, &dir, &info);
|
|
assert(!err || err == LFS3_ERR_NOENT);
|
|
if (err == LFS3_ERR_NOENT) {
|
|
break;
|
|
}
|
|
assert(strlen(info.name) == strlen("amethyst..."));
|
|
assert(memcmp(
|
|
info.name,
|
|
"amethyst", strlen("amethyst")) == 0);
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
count++;
|
|
}
|
|
lfs3_dir_close(&lfs3, &dir) => 0;
|
|
|
|
// creating a new file?
|
|
if (op == 3 || count == 0) {
|
|
// choose a pseudo-random number
|
|
lfs3_size_t x = TEST_PRNG(&prng) % M;
|
|
uint32_t wprng = TEST_PRNG(&prng);
|
|
|
|
// create a file here
|
|
char name[256];
|
|
sprintf(name, "%s/amethyst%03x", dir_path, x);
|
|
uint8_t wbuf[SIZE];
|
|
uint8_t ck = 0;
|
|
for (lfs3_size_t j = 0; j < SIZE-1; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&wprng) % 26);
|
|
ck = (ck + (wbuf[j] - 'a')) % 26;
|
|
}
|
|
// make the sum equal to 'a' mod 26
|
|
if (SIZE > 0) {
|
|
wbuf[SIZE-1] = 'a' + ((26 - ck) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
|
|
// deleting a file?
|
|
} else if (op == 4) {
|
|
// choose a random file to delete
|
|
lfs3_size_t j = TEST_PRNG(&prng) % count;
|
|
// find the file
|
|
lfs3_dir_open(&lfs3, &dir, dir_path) => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
for (lfs3_size_t k = 0; k <= j; k++) {
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
}
|
|
lfs3_dir_close(&lfs3, &dir) => 0;
|
|
|
|
// delete this file
|
|
char name[256];
|
|
assert(strlen(info.name) == strlen("amethyst..."));
|
|
sprintf(name, "%s/%s", dir_path, info.name);
|
|
lfs3_remove(&lfs3, name) => 0;
|
|
|
|
// renaming a file?
|
|
} else {
|
|
// choose a random file to rename
|
|
lfs3_size_t j = TEST_PRNG(&prng) % count;
|
|
// find the file
|
|
lfs3_dir_open(&lfs3, &dir, dir_path) => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
for (lfs3_size_t k = 0; k <= j; k++) {
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
}
|
|
lfs3_dir_close(&lfs3, &dir) => 0;
|
|
|
|
// choose a random dir to rename to
|
|
lfs3_size_t dir_j = TEST_PRNG(&prng) % dir_count;
|
|
// find the dir
|
|
struct lfs3_info info_;
|
|
lfs3_dir_open(&lfs3, &dir, "test") => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info_) => 0;
|
|
lfs3_dir_read(&lfs3, &dir, &info_) => 0;
|
|
for (lfs3_size_t k = 0; k <= dir_j; k++) {
|
|
lfs3_dir_read(&lfs3, &dir, &info_) => 0;
|
|
}
|
|
lfs3_dir_close(&lfs3, &dir) => 0;
|
|
|
|
// choose a random file to rename to
|
|
lfs3_size_t y = TEST_PRNG(&prng) % M;
|
|
|
|
// rename this file
|
|
char old_name[256];
|
|
assert(strlen(info.name) == strlen("amethyst..."));
|
|
sprintf(old_name, "%s/%s", dir_path, info.name);
|
|
char new_name[256];
|
|
sprintf(new_name, "test/%s/amethyst%03x", info_.name, y);
|
|
lfs3_rename(&lfs3, old_name, new_name) => 0;
|
|
}
|
|
}
|
|
|
|
// update our state file
|
|
state.i = i;
|
|
state.prng = prng;
|
|
lfs3_file_rewind(&lfs3, &state_file) => 0;
|
|
lfs3_file_write(&lfs3, &state_file, &state, sizeof(state))
|
|
=> sizeof(state);
|
|
lfs3_file_sync(&lfs3, &state_file) => 0;
|
|
}
|
|
|
|
// go ahead and close our state file in case we remount
|
|
lfs3_file_close(&lfs3, &state_file) => 0;
|
|
|
|
for (int remount = 0; remount < 2; remount++) {
|
|
// remount?
|
|
if (remount) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
|
|
}
|
|
|
|
// check that things look more-or-less ok
|
|
lfs3_dir_t dir;
|
|
lfs3_dir_open(&lfs3, &dir, "test") => 0;
|
|
struct lfs3_info info;
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, ".") == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
lfs3_dir_read(&lfs3, &dir, &info) => 0;
|
|
assert(strcmp(info.name, "..") == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
while (true) {
|
|
int err = lfs3_dir_read(&lfs3, &dir, &info);
|
|
assert(!err || err == LFS3_ERR_NOENT);
|
|
if (err == LFS3_ERR_NOENT) {
|
|
break;
|
|
}
|
|
assert(strlen(info.name) == strlen("quartz..."));
|
|
assert(memcmp(info.name, "quartz", strlen("quartz")) == 0);
|
|
assert(info.type == LFS3_TYPE_DIR);
|
|
assert(info.size == 0);
|
|
|
|
// check that our dirs look more-or-less ok
|
|
char name[256];
|
|
sprintf(name, "test/%s", info.name);
|
|
lfs3_dir_t dir_;
|
|
lfs3_dir_open(&lfs3, &dir_, name) => 0;
|
|
struct lfs3_info info_;
|
|
lfs3_dir_read(&lfs3, &dir_, &info_) => 0;
|
|
assert(strcmp(info_.name, ".") == 0);
|
|
assert(info_.type == LFS3_TYPE_DIR);
|
|
assert(info_.size == 0);
|
|
lfs3_dir_read(&lfs3, &dir_, &info_) => 0;
|
|
assert(strcmp(info_.name, "..") == 0);
|
|
assert(info_.type == LFS3_TYPE_DIR);
|
|
assert(info_.size == 0);
|
|
|
|
while (true) {
|
|
err = lfs3_dir_read(&lfs3, &dir_, &info_);
|
|
assert(!err || err == LFS3_ERR_NOENT);
|
|
if (err == LFS3_ERR_NOENT) {
|
|
break;
|
|
}
|
|
assert(strlen(info_.name) == strlen("amethyst..."));
|
|
assert(memcmp(
|
|
info_.name,
|
|
"amethyst", strlen("amethyst")) == 0);
|
|
assert(info_.type == LFS3_TYPE_REG);
|
|
assert(info_.size == SIZE);
|
|
|
|
// at least try to read the files
|
|
sprintf(name, "test/%s/%s", info.name, info_.name);
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name, LFS3_O_RDONLY) => 0;
|
|
|
|
uint8_t rbuf[SIZE];
|
|
lfs3_file_read(&lfs3, &file, rbuf, SIZE) => SIZE;
|
|
// all data should be lowercase ascii
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
assert(rbuf[j] >= 'a' && rbuf[j] <= 'z');
|
|
}
|
|
// sum should be equal to 'a' mod 26
|
|
uint8_t ck = 0;
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
ck = (ck + (rbuf[j] - 'a')) % 26;
|
|
}
|
|
assert(ck == 0);
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
lfs3_dir_close(&lfs3, &dir_) => 0;
|
|
}
|
|
lfs3_dir_close(&lfs3, &dir) => 0;
|
|
}
|
|
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|