238c2babe4
The litmus benches are really only intended for introspection/debugging/ cool plots/etc. They're interesting to poke around with and cover a wide range of littlefs's data-structures, but are not very rigorous. To make this more clear for new users, added a new litmus flag for benches: litmus = true This doesn't change anything about how the bench is run, but serves as a marker to hint that the bench is intended for non-rigorous benchmarking. --- In the makefile, litmus tests are disabled by default at runtime (--no-litmus). This is to limit `make bench` to benches that are useful for performance comparisons. With --no-litmus at runtime, the litmus benches are at least compiled into the bench_runner, which should hopefully encourage keeping them up to date with code changes. Eventually we should also run them in CI, but only to check for runtime errors. Unlike our tests, we're not really worried about compile time at the moment due to how few/small our benches are.
240 lines
7.2 KiB
TOML
240 lines
7.2 KiB
TOML
# Low-level rbyd benchmarks
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# set block_size to the full size of disk so we can test arbitrarily
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# large rbyd trees, we don't really care about block sizes at this
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# abstraction level
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#
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defines.BLOCK_SIZE = 'DISK_SIZE'
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defines.BLOCK_COUNT = 1
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# don't bother simulating erases, this gets expensive with big disks
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defines.ERASE_VALUE = -1
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[cases.bench_rbyd_attrs]
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# 0 = in-order
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# 1 = reversed-order
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# 2 = random-order
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defines.ORDER = 2
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defines.N = 256
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defines.SIZE = 4
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defines.STEP = 1
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defines.SEED = 42
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# set of probes to measure
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# 0x01 => append
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# 0x02 => remove
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# 0x04 => fetch
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# 0x08 => lookup
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# 0x10 => usage
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defines.MASK = 0x1f
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# not the most rigorous
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litmus = true
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in = 'lfs3.c'
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code = '''
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lfs3_t lfs3;
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lfs3_init(&lfs3, LFS3_M_RDWR, CFG) => 0;
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for (lfs3_size_t n = 1; n < N; n += STEP) {
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lfs3_rbyd_t rbyd = {
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.blocks[0] = 0,
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.eoff = 0,
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.cksum = 0,
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.trunk = 0,
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.weight = 0,
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};
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lfs3_bd_erase(&lfs3, rbyd.blocks[0]) => 0;
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// create N attrs
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//
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// NOTE we only have 256 user attributes, so this benchmark is
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// a bit limited
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uint32_t prng = SEED;
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for (lfs3_size_t i = 0; i < n; i++) {
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// create an attr
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lfs3_off_t i_
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= (ORDER == 0) ? i
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: (ORDER == 1) ? (n-1-i)
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: BENCH_PRNG(&prng) % n;
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uint8_t wbuf[SIZE];
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memset(wbuf, 'a'+(BENCH_PRNG(&prng) % 26), SIZE);
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lfs3_rbyd_commit(&lfs3, &rbyd, -1, LFS3_RATTRS(
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LFS3_RATTR(3,
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LFS3_TAG_ATTR(i_ & 0xff), 0, LFS3_FROM_DATA),
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LFS3_RATTR_ARG(SIZE),
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LFS3_RATTR_ARG(wbuf),
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LFS3_RATTR_NULL)) => 0;
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}
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// create an attr
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if (MASK & 0x01) {
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BENCH_START("append");
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lfs3_off_t i_
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= (ORDER == 0) ? (n-1)
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: (ORDER == 1) ? 0
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: BENCH_PRNG(&prng) % n;
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uint8_t wbuf[SIZE];
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memset(wbuf, 'a'+(BENCH_PRNG(&prng) % 26), SIZE);
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lfs3_rbyd_commit(&lfs3, &rbyd, -1, LFS3_RATTRS(
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LFS3_RATTR(3,
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LFS3_TAG_ATTR(i_ & 0xff), 0, LFS3_FROM_DATA),
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LFS3_RATTR_ARG(SIZE),
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LFS3_RATTR_ARG(wbuf),
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LFS3_RATTR_NULL)) => 0;
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BENCH_STOP("append", n+STEP);
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}
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// delete an attr
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if (MASK & 0x02) {
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BENCH_START("remove");
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lfs3_off_t i_ = BENCH_PRNG(&prng) % n;
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lfs3_rbyd_commit(&lfs3, &rbyd, -1, LFS3_RATTRS(
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LFS3_RATTR(1,
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LFS3_tag_RM | LFS3_TAG_ATTR(i_ & 0xff), 0),
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LFS3_RATTR_NULL)) => 0;
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BENCH_STOP("remove", n+STEP);
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}
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// fetch the rbyd
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if (MASK & 0x04) {
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BENCH_START("fetch");
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lfs3_rbyd_t rbyd_;
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lfs3_rbyd_fetch(&lfs3, &rbyd_, rbyd.blocks[0], 0) => 0;
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BENCH_STOP("fetch", n+STEP);
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}
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// lookup an attr
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if (MASK & 0x08) {
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BENCH_START("lookup");
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lfs3_off_t i_ = BENCH_PRNG(&prng) % n;
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lfs3_data_t data_;
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lfs3_stag_t tag_ = lfs3_rbyd_lookup(&lfs3, &rbyd,
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-1, LFS3_TAG_ATTR(i_ & 0xff),
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&data_);
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// note that random order may have some collisions
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assert(tag_ == LFS3_TAG_ATTR(i_ & 0xff)
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|| tag_ == LFS3_ERR_NOENT);
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BENCH_STOP("lookup", n+STEP);
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}
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// measure the disk usage
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if (MASK & 0x10) {
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BENCH_RESULT("usage", n+STEP, lfs3_rbyd_eoff(&rbyd));
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}
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}
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'''
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[cases.bench_rbyd_ids]
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# 0 = in-order
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# 1 = reversed-order
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# 2 = random-order
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defines.ORDER = 2
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defines.N = 1024
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defines.SIZE = 4
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defines.STEP = 1
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defines.SEED = 42
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# set of probes to measure
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# 0x01 => create
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# 0x02 => delete
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# 0x04 => fetch
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# 0x08 => lookup
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# 0x10 => usage
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defines.MASK = 0x1f
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# not the most rigorous
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litmus = true
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in = 'lfs3.c'
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code = '''
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lfs3_t lfs3;
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lfs3_init(&lfs3, LFS3_M_RDWR, CFG) => 0;
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for (lfs3_size_t n = 1; n < N; n += STEP) {
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lfs3_rbyd_t rbyd = {
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.blocks[0] = 0,
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.eoff = 0,
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.cksum = 0,
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.trunk = 0,
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.weight = 0,
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};
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lfs3_bd_erase(&lfs3, rbyd.blocks[0]) => 0;
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// create N attrs
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//
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// note we need to take care to generate indexes within a valid
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// range as the rbyd grows
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uint32_t prng = SEED;
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for (lfs3_size_t i = 0; i < n; i++) {
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// create an attr
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lfs3_off_t i_
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= (ORDER == 0) ? rbyd.weight
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: (ORDER == 1) ? 0
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: BENCH_PRNG(&prng) % (rbyd.weight+1);
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uint8_t wbuf[SIZE];
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memset(wbuf, 'a'+(BENCH_PRNG(&prng) % 26), SIZE);
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lfs3_rbyd_commit(&lfs3, &rbyd, i_, LFS3_RATTRS(
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LFS3_RATTR(3, LFS3_TAG_DATA, +1, LFS3_FROM_DATA),
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LFS3_RATTR_ARG(SIZE),
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LFS3_RATTR_ARG(wbuf),
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LFS3_RATTR_NULL)) => 0;
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}
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// create an attr
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if (MASK & 0x01) {
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BENCH_START("create");
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lfs3_off_t i_
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= (ORDER == 0) ? rbyd.weight
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: (ORDER == 1) ? 0
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: BENCH_PRNG(&prng) % (rbyd.weight+1);
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lfs3_off_t n_ = rbyd.weight;
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uint8_t wbuf[SIZE];
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memset(wbuf, 'a'+(BENCH_PRNG(&prng) % 26), SIZE);
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lfs3_rbyd_commit(&lfs3, &rbyd, i_, LFS3_RATTRS(
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LFS3_RATTR(3, LFS3_TAG_DATA, +1, LFS3_FROM_DATA),
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LFS3_RATTR_ARG(SIZE),
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LFS3_RATTR_ARG(wbuf),
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LFS3_RATTR_NULL)) => 0;
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assert(rbyd.weight == n_+1);
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BENCH_STOP("create", n+STEP);
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}
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// delete an attr
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if (MASK & 0x02) {
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BENCH_START("delete");
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lfs3_off_t i_ = BENCH_PRNG(&prng) % rbyd.weight;
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lfs3_off_t n_ = rbyd.weight;
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lfs3_rbyd_commit(&lfs3, &rbyd, i_, LFS3_RATTRS(
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LFS3_RATTR(1, LFS3_tag_RM, -1),
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LFS3_RATTR_NULL)) => 0;
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assert(rbyd.weight == n_-1);
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BENCH_STOP("delete", n+STEP);
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}
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// fetch the rbyd
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if (MASK & 0x04) {
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BENCH_START("fetch");
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lfs3_rbyd_t rbyd_;
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lfs3_rbyd_fetch(&lfs3, &rbyd_, rbyd.blocks[0], 0) => 0;
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assert(rbyd_.weight == rbyd.weight);
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BENCH_STOP("fetch", n+STEP);
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}
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// lookup an attr
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if (MASK & 0x08) {
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BENCH_START("lookup");
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lfs3_off_t i_ = BENCH_PRNG(&prng) % rbyd.weight;
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lfs3_data_t data_;
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lfs3_stag_t tag_ = lfs3_rbyd_lookup(&lfs3, &rbyd,
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i_, LFS3_TAG_DATA,
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&data_);
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assert(tag_ == LFS3_TAG_DATA);
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assert(lfs3_data_size(&data_) == SIZE);
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BENCH_STOP("lookup", n+STEP);
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}
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// measure the disk usage
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if (MASK & 0x10) {
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BENCH_RESULT("usage", n+STEP, lfs3_rbyd_eoff(&rbyd));
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}
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}
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'''
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