Renamed lfs->cfg->shrub_size -> lfs->cfg->inline_size
While I think shrub_size is probably the more correct name at a technical level, inline_size is probably more what users expect and doesn't require a deeper understanding of filesystem details. The only risk is that users may think inline_size has no effect on large files, when in fact it still controls how much of the btree root can be inlined. There's also the point that sticking with inline_size maintains compatibility with both the upstream version and any future version that has other file representations. May revisit this, but renaming to lfs->cfg->inline_size for now.
This commit is contained in:
@@ -6276,7 +6276,7 @@ static int lfsr_bshrub_commit_(lfs_t *lfs, lfsr_bshrub_t *bshrub,
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//
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// Instead, we keep track of an estimate of how many bytes have
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// been progged to the shrub since the last estimate, and recalculate
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// the estimate when this overflows our shrub_size. This mirrors how
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// the estimate when this overflows our inline_size. This mirrors how
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// block_size and rbyds interact, and amortizes the estimate cost.
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// figure out how much data this commit progs
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@@ -6285,27 +6285,27 @@ static int lfsr_bshrub_commit_(lfs_t *lfs, lfsr_bshrub_t *bshrub,
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commit_estimate += lfs->rat_estimate + lfsr_rat_size(rats[i]);
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}
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// does our estimate exceed our shrub_size? need to recalculate an
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// does our estimate exceed our inline_size? need to recalculate an
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// accurate estimate
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lfs_ssize_t estimate = (alloc) ? (lfs_size_t)-1 : bshrub->shrub.eoff;
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// this double condition avoids overflow issues
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if ((lfs_size_t)estimate > lfs->cfg->shrub_size
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|| estimate + commit_estimate > lfs->cfg->shrub_size) {
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if ((lfs_size_t)estimate > lfs->cfg->inline_size
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|| estimate + commit_estimate > lfs->cfg->inline_size) {
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estimate = lfsr_bshrub_estimate(lfs, bshrub);
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if (estimate < 0) {
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return estimate;
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}
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// two cases where we evict:
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// - overflow shrub_size/2 - don't penalize for commits here
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// - overflow shrub_size - must include commits or we risk overflow
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// - overflow inline_size/2 - don't penalize for commits here
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// - overflow inline_size - must include commits or risk overflow
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//
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// the 1/2 here prevents runaway performance with the shrub is
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// near full, but it's a heuristic, so including the commit would
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// just be mean
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//
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if ((lfs_size_t)estimate > lfs->cfg->shrub_size/2
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|| estimate + commit_estimate > lfs->cfg->shrub_size) {
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if ((lfs_size_t)estimate > lfs->cfg->inline_size/2
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|| estimate + commit_estimate > lfs->cfg->inline_size) {
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goto relocate;
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}
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}
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@@ -12823,8 +12823,8 @@ static int lfs_init(lfs_t *lfs, uint32_t flags,
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LFS_ASSERT(lfs->cfg->gc_compact_thresh == (lfs_size_t)-1
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|| lfs->cfg->gc_compact_thresh <= lfs->cfg->block_size);
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// shrub_size must be <= block_size/4
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LFS_ASSERT(lfs->cfg->shrub_size <= lfs->cfg->block_size/4);
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// inline_size must be <= block_size/4
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LFS_ASSERT(lfs->cfg->inline_size <= lfs->cfg->block_size/4);
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// fragment_size must be <= block_size/4
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LFS_ASSERT(lfs->cfg->fragment_size <= lfs->cfg->block_size/4);
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@@ -438,7 +438,7 @@ struct lfs_config {
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// blocksize/4.
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//
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// 0 disables shrubs.
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lfs_size_t shrub_size;
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lfs_size_t inline_size;
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// Maximum size of a non-block B-tree leaf in bytes. Smaller values may
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// make small random-writes cheaper, but increase metadata overhead. Must
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@@ -117,7 +117,7 @@ void bench_permutation(size_t i, uint32_t *buffer, size_t size);
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BENCH_DEFINE(GC_FLAGS, 0 ) \
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BENCH_DEFINE(GC_STEPS, 0 ) \
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BENCH_DEFINE(GC_COMPACT_THRESH, 0 ) \
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BENCH_DEFINE(SHRUB_SIZE, BLOCK_SIZE/4 ) \
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BENCH_DEFINE(INLINE_SIZE, BLOCK_SIZE/4 ) \
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BENCH_DEFINE(FRAGMENT_SIZE, BLOCK_SIZE/8 ) \
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BENCH_DEFINE(CRYSTAL_THRESH, BLOCK_SIZE/8 ) \
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BENCH_DEFINE(ERASE_VALUE, 0xff ) \
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@@ -146,7 +146,7 @@ void bench_permutation(size_t i, uint32_t *buffer, size_t size);
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.lookahead_size = LOOKAHEAD_SIZE, \
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BENCH_GC_CFG \
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.gc_compact_thresh = GC_COMPACT_THRESH, \
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.shrub_size = SHRUB_SIZE, \
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.inline_size = INLINE_SIZE, \
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.fragment_size = FRAGMENT_SIZE, \
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.crystal_thresh = CRYSTAL_THRESH,
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@@ -108,7 +108,7 @@ void test_permutation(size_t i, uint32_t *buffer, size_t size);
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TEST_DEFINE(GC_FLAGS, 0 ) \
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TEST_DEFINE(GC_STEPS, 0 ) \
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TEST_DEFINE(GC_COMPACT_THRESH, 0 ) \
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TEST_DEFINE(SHRUB_SIZE, BLOCK_SIZE/4 ) \
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TEST_DEFINE(INLINE_SIZE, BLOCK_SIZE/4 ) \
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TEST_DEFINE(FRAGMENT_SIZE, BLOCK_SIZE/8 ) \
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TEST_DEFINE(CRYSTAL_THRESH, BLOCK_SIZE/8 ) \
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TEST_DEFINE(ERASE_VALUE, 0xff ) \
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@@ -137,7 +137,7 @@ void test_permutation(size_t i, uint32_t *buffer, size_t size);
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.lookahead_size = LOOKAHEAD_SIZE, \
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TEST_GC_CFG \
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.gc_compact_thresh = GC_COMPACT_THRESH, \
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.shrub_size = SHRUB_SIZE, \
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.inline_size = INLINE_SIZE, \
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.fragment_size = FRAGMENT_SIZE, \
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.crystal_thresh = CRYSTAL_THRESH
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+3
-3
@@ -1657,7 +1657,7 @@ code = '''
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defines.BADBIT = -1
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defines.BADBLOCK_BEHAVIOR = 'LFS_EMUBD_BADBLOCK_PROGFLIP'
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# force the file to create a btree
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defines.SHRUB_SIZE = 0
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defines.INLINE_SIZE = 0
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defines.CRYSTAL_THRESH = -1
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defines.FRAGMENT_SIZE = 'BLOCK_SIZE/8'
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defines.SIZE = '2*FRAGMENT_SIZE'
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@@ -1956,7 +1956,7 @@ code = '''
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[cases.test_ck_ckfetches_btree]
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defines.BADBIT = -1
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# force the file to create a btree
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defines.SHRUB_SIZE = 0
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defines.INLINE_SIZE = 0
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defines.CRYSTAL_THRESH = -1
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defines.FRAGMENT_SIZE = 'BLOCK_SIZE/8'
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defines.SIZE = '2*FRAGMENT_SIZE'
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@@ -2213,7 +2213,7 @@ defines.BADBLOCK_BEHAVIOR = [
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'LFS_EMUBD_BADBLOCK_READFLIP',
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]
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# force the file to create a btree
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defines.SHRUB_SIZE = 0
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defines.INLINE_SIZE = 0
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defines.CRYSTAL_THRESH = -1
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defines.FRAGMENT_SIZE = 'BLOCK_SIZE/8'
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defines.SIZE = '2*FRAGMENT_SIZE'
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@@ -103,7 +103,7 @@ code = '''
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defines.N = [0, 1, 2, 3, 4]
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defines.SIZE = 'N*FRAGMENT_SIZE'
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# force a btree node
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defines.SHRUB_SIZE = 0
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defines.INLINE_SIZE = 0
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defines.CRYSTAL_THRESH = -1
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defines.SYNC = [false, true]
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in = 'lfs.c'
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@@ -487,7 +487,7 @@ defines.N = [0, 1, 2, 3, 4]
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defines.SIZE = 'N*FRAGMENT_SIZE'
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defines.CHUNK = [32, 8, 1]
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# force a btree node
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defines.SHRUB_SIZE = 0
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defines.INLINE_SIZE = 0
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defines.CRYSTAL_THRESH = -1
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defines.SYNC = [false, true]
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defines.REMOUNT = [false, true]
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@@ -128,7 +128,7 @@ defines.POWERLOSS_BEHAVIOR = [
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]
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defines.MKCONSISTENT = [false, true]
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# inlining has a tendency to hide sync issues, so try without
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defines.SHRUB_SIZE = ['BLOCK_SIZE/4', '0']
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defines.INLINE_SIZE = ['BLOCK_SIZE/4', '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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@@ -228,7 +228,7 @@ defines.POWERLOSS_BEHAVIOR = [
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]
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defines.MKCONSISTENT = [false, true]
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# inlining has a tendency to hide sync issues, so try without
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defines.SHRUB_SIZE = ['BLOCK_SIZE/4', '0']
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defines.INLINE_SIZE = ['BLOCK_SIZE/4', '0']
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defines.N = [1, 2, 4, 8, 16, 32, 64]
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defines.OPS = 256
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defines.SIZE = [
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@@ -458,7 +458,7 @@ defines.POWERLOSS_BEHAVIOR = [
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]
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defines.MKCONSISTENT = [false, true]
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# inlining has a tendency to hide sync issues, so try without
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defines.SHRUB_SIZE = ['BLOCK_SIZE/4', '0']
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defines.INLINE_SIZE = ['BLOCK_SIZE/4', '0']
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# note dirs x files grows O(n^2)
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defines.N = [1, 2, 4, 8]
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defines.M = 'N'
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@@ -2286,7 +2286,7 @@ defines.LOOKAHEAD = [false, true]
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defines.CKMETA = [false, true]
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defines.CKDATA = [false, true]
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defines.SIZE = '2*BLOCK_SIZE'
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defines.SHRUB_SIZE = 0
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defines.INLINE_SIZE = 0
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defines.TRUNC = [false, true]
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code = '''
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lfs_t lfs;
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@@ -2569,7 +2569,7 @@ defines.LOOKAHEAD = [false, true]
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defines.CKMETA = [false, true]
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defines.CKDATA = [false, true]
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defines.SIZE = '2*BLOCK_SIZE'
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defines.SHRUB_SIZE = 0
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defines.INLINE_SIZE = 0
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code = '''
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lfs_t lfs;
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lfsr_format(&lfs, LFS_F_RDWR, CFG) => 0;
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@@ -2858,7 +2858,7 @@ defines.LOOKAHEAD = [false, true]
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defines.CKMETA = [false, true]
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defines.CKDATA = [false, true]
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defines.SIZE = '2*BLOCK_SIZE'
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defines.SHRUB_SIZE = 0
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defines.INLINE_SIZE = 0
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defines.DESYNC = [false, true]
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code = '''
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lfs_t lfs;
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@@ -6652,7 +6652,7 @@ defines.LOOKAHEAD = [false, true]
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defines.CKMETA = [false, true]
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defines.CKDATA = [false, true]
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# limit files to very simple btrees
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defines.SHRUB_SIZE = 0
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defines.INLINE_SIZE = 0
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defines.CRYSTAL_THRESH = -1
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defines.FRAGMENT_SIZE = 'BLOCK_SIZE/8'
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defines.SIZE = '2*FRAGMENT_SIZE'
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@@ -6812,7 +6812,7 @@ defines.LOOKAHEAD = [false, true]
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defines.CKMETA = [false, true]
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defines.CKDATA = [false, true]
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# limit files to very simple btrees
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defines.SHRUB_SIZE = 0
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defines.INLINE_SIZE = 0
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defines.CRYSTAL_THRESH = -1
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defines.FRAGMENT_SIZE = 'BLOCK_SIZE/8'
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defines.SIZE = '2*FRAGMENT_SIZE'
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@@ -6971,7 +6971,7 @@ defines.CKMETA = [false, true]
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defines.CKDATA = [false, true]
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# this configuration should create a 2-layer bshrub, which may be
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# a bit delicate
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defines.SHRUB_SIZE = 'BLOCK_SIZE/4'
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defines.INLINE_SIZE = 'BLOCK_SIZE/4'
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defines.CRYSTAL_THRESH = -1
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defines.FRAGMENT_SIZE = 'BLOCK_SIZE/8'
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defines.SIZE = 'BLOCK_SIZE'
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@@ -7140,7 +7140,7 @@ defines.CKMETA = [false, true]
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defines.CKDATA = [false, true]
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# this configuration should create a 2-layer bshrub, which may be
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# a bit delicate
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defines.SHRUB_SIZE = 'BLOCK_SIZE/4'
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defines.INLINE_SIZE = 'BLOCK_SIZE/4'
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defines.CRYSTAL_THRESH = -1
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defines.FRAGMENT_SIZE = 'BLOCK_SIZE/8'
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defines.SIZE = 'BLOCK_SIZE'
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