Fixed issue with aggressively rounding down lookahead configuration
The littlefs allows buffers to be passed statically in the case that a system does not have a heap. Unfortunately, this means we can't round up in the case of an unaligned lookahead buffer. Double unfortunately, rounding down after clamping to the block device size could result in a lookahead of zero for block devices < 32 blocks large. The assert in littlefs does catch this case, but rounding down prevents support for < 32 block devices. The solution is to simply require a 32-bit aligned buffer with an assert. This avoids runtime problems while allowing a user to pass in the correct buffer for < 32 block devices. Rounding up can be handled at higher API levels.
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@@ -15,7 +15,7 @@ script:
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- CFLAGS="-DLFS_READ_SIZE=1 -DLFS_PROG_SIZE=1" make test
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- CFLAGS="-DLFS_READ_SIZE=1 -DLFS_PROG_SIZE=1" make test
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- CFLAGS="-DLFS_READ_SIZE=512 -DLFS_PROG_SIZE=512" make test
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- CFLAGS="-DLFS_READ_SIZE=512 -DLFS_PROG_SIZE=512" make test
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- CFLAGS="-DLFS_BLOCK_COUNT=1023" make test
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- CFLAGS="-DLFS_BLOCK_COUNT=1023" make test
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- CFLAGS="-DLFS_LOOKAHEAD=2047" make test
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- CFLAGS="-DLFS_LOOKAHEAD=2048" make test
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# self-host with littlefs-fuse for fuzz test
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# self-host with littlefs-fuse for fuzz test
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- make -C littlefs-fuse
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- make -C littlefs-fuse
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@@ -278,7 +278,7 @@ static int lfs_alloc_lookahead(void *p, lfs_block_t block) {
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% (lfs_soff_t)(lfs->cfg->block_count))
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% (lfs_soff_t)(lfs->cfg->block_count))
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+ lfs->cfg->block_count) % lfs->cfg->block_count;
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+ lfs->cfg->block_count) % lfs->cfg->block_count;
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if (off < lfs->free.lookahead) {
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if (off < lfs->cfg->lookahead) {
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lfs->free.buffer[off / 32] |= 1U << (off % 32);
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lfs->free.buffer[off / 32] |= 1U << (off % 32);
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}
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}
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@@ -294,7 +294,8 @@ static int lfs_alloc(lfs_t *lfs, lfs_block_t *block) {
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return LFS_ERR_NOSPC;
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return LFS_ERR_NOSPC;
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}
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}
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if (lfs->free.off >= lfs->free.lookahead) {
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if (lfs->free.off >= lfs_min(
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lfs->cfg->lookahead, lfs->cfg->block_count)) {
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break;
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break;
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}
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}
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@@ -308,11 +309,11 @@ static int lfs_alloc(lfs_t *lfs, lfs_block_t *block) {
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}
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}
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}
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}
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lfs->free.begin += lfs->free.lookahead;
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lfs->free.begin += lfs_min(lfs->cfg->lookahead, lfs->cfg->block_count);
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lfs->free.off = 0;
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lfs->free.off = 0;
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// find mask of free blocks from tree
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// find mask of free blocks from tree
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memset(lfs->free.buffer, 0, lfs->free.lookahead/8);
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memset(lfs->free.buffer, 0, lfs->cfg->lookahead/8);
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int err = lfs_traverse(lfs, lfs_alloc_lookahead, lfs);
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int err = lfs_traverse(lfs, lfs_alloc_lookahead, lfs);
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if (err) {
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if (err) {
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return err;
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return err;
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@@ -1870,13 +1871,12 @@ static int lfs_init(lfs_t *lfs, const struct lfs_config *cfg) {
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}
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}
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// setup lookahead, round down to nearest 32-bits
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// setup lookahead, round down to nearest 32-bits
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lfs->free.lookahead = lfs_min(lfs->cfg->lookahead, lfs->cfg->block_count);
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assert(lfs->cfg->lookahead % 32 == 0);
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lfs->free.lookahead = 32 * (lfs->free.lookahead / 32);
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assert(lfs->cfg->lookahead > 0);
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assert(lfs->free.lookahead > 0);
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if (lfs->cfg->lookahead_buffer) {
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if (lfs->cfg->lookahead_buffer) {
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lfs->free.buffer = lfs->cfg->lookahead_buffer;
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lfs->free.buffer = lfs->cfg->lookahead_buffer;
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} else {
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} else {
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lfs->free.buffer = malloc(lfs->free.lookahead/8);
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lfs->free.buffer = malloc(lfs->cfg->lookahead/8);
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if (!lfs->free.buffer) {
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if (!lfs->free.buffer) {
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return LFS_ERR_NOMEM;
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return LFS_ERR_NOMEM;
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}
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}
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@@ -1919,7 +1919,7 @@ int lfs_format(lfs_t *lfs, const struct lfs_config *cfg) {
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}
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}
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// create free lookahead
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// create free lookahead
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memset(lfs->free.buffer, 0, lfs->free.lookahead/8);
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memset(lfs->free.buffer, 0, lfs->cfg->lookahead/8);
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lfs->free.begin = 0;
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lfs->free.begin = 0;
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lfs->free.off = 0;
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lfs->free.off = 0;
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lfs->free.end = lfs->free.begin + lfs->cfg->block_count;
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lfs->free.end = lfs->free.begin + lfs->cfg->block_count;
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@@ -1998,8 +1998,8 @@ int lfs_mount(lfs_t *lfs, const struct lfs_config *cfg) {
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}
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}
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// setup free lookahead
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// setup free lookahead
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lfs->free.begin = -lfs->free.lookahead;
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lfs->free.begin = -lfs->cfg->lookahead;
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lfs->free.off = lfs->free.lookahead;
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lfs->free.off = lfs->cfg->lookahead;
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lfs->free.end = lfs->free.begin + lfs->cfg->block_count;
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lfs->free.end = lfs->free.begin + lfs->cfg->block_count;
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// load superblock
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// load superblock
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