Files
littlefs/runners/test_defines.h
T
Christopher Haster 0ea11c1a0e runners: Bumped default crystal_thresh BLOCK_SIZE/8 -> BLOCK_SIZE/16
This has been adopted in external benchmarks for a while, as it manages
to push sequential write performance into a much better region of the
diminishing-returns curve.

But hey! Don't take my word for it, let's see the results from our new
bench_runner for the first time:

  NOR throughput             cs=1/8  cs=1/16
  bench_wt_seq+write        15180.0  29402.6 (+93.7%)
  bench_wt_random+write       876.2    957.3 (+9.3%)
  bench_wt_logging+write     2001.0   2153.4 (+7.6%)
  bench_wt_many+write         453.6    453.6 (+0.0%)

  NAND throughput            cs=1/8  cs=1/16
  bench_wt_seq+write        21778.7  22330.1 (+2.5%)
  bench_wt_random+write      3583.0   3637.2 (+1.5%)
  bench_wt_logging+write    10855.1  10977.1 (+1.1%)
  bench_wt_many+write          68.2     68.2 (+0.0%)

Though this doesn't really capture the tradeoffs related to file tails,
storage usage, etc.

In theory sequential writes are happy to start crystallizing as soon as
any data is written, but this leads to significant waste anytime you're
not going to write most of a block.
2026-03-09 22:51:42 -05:00

100 lines
4.4 KiB
C

// littlefs test runner defines
// preconfigured defines that control how tests run
#ifdef TEST_DEFINE
// name value (overridable)
TEST_DEFINE(DISK_SIZE, 1024*1024 )
TEST_DEFINE(DISK_GEOMETRY, 0 )
TEST_DEFINE(READ_SIZE, 1 )
TEST_DEFINE(PROG_SIZE, 1 )
TEST_DEFINE(ERASE_SIZE, 4096 )
TEST_DEFINE(BLOCK_SIZE, LFS3_MAX(ERASE_SIZE, 512) )
TEST_DEFINE(BLOCK_COUNT, DISK_SIZE/LFS3_MAX(BLOCK_SIZE, 1) )
TEST_DEFINE(BLOCK_RECYCLES, -1 )
TEST_DEFINE(RCACHE_SIZE, LFS3_MAX(16, READ_SIZE) )
TEST_DEFINE(PCACHE_SIZE, LFS3_MAX(16, PROG_SIZE) )
TEST_DEFINE(FCACHE_SIZE, 16 )
TEST_DEFINE(LOOKAHEAD_SIZE, 16 )
TEST_DEFINE(GC_FLAGS, LFS3_GC_GC )
TEST_DEFINE(GC_STEPS, 0 )
TEST_DEFINE(GC_LOOKAHEAD_THRESH, -1 )
TEST_DEFINE(GC_LOOKGBMAP_THRESH, -1 )
TEST_DEFINE(GC_PREERASE_COUNT, -1 )
TEST_DEFINE(GC_COMPACT_THRESH, 0 )
TEST_DEFINE(SHRUB_SIZE, BLOCK_SIZE/4 )
TEST_DEFINE(FRAGMENT_SIZE, LFS3_MIN(BLOCK_SIZE/16, 512) )
TEST_DEFINE(CRYSTAL_THRESH, BLOCK_SIZE/16 )
TEST_DEFINE(LOOKGBMAP_THRESH, BLOCK_COUNT/4 )
TEST_DEFINE(ERASE_VALUE, 0xff )
#ifndef TEST_KIWIBD
TEST_DEFINE(ERASE_CYCLES, 0 )
TEST_DEFINE(BADBLOCK_BEHAVIOR, LFS3_EMUBD_BADBLOCK_PROGERROR )
TEST_DEFINE(POWERLOSS_BEHAVIOR, LFS3_EMUBD_POWERLOSS_ATOMIC )
TEST_DEFINE(BD_SEED, 0 )
#endif
#endif
// struct lfs3_cfg definition
#ifdef TEST_CFG
struct lfs3_cfg _cfg = {
#ifdef TEST_CFG_CFG
TEST_CFG_CFG
#endif
.read_size = READ_SIZE,
.prog_size = PROG_SIZE,
.block_size = BLOCK_SIZE,
.block_count = BLOCK_COUNT,
.block_recycles = BLOCK_RECYCLES,
.rcache_size = RCACHE_SIZE,
.pcache_size = PCACHE_SIZE,
.fcache_size = FCACHE_SIZE,
.lookahead_size = LOOKAHEAD_SIZE,
#ifdef LFS3_GBMAP
.gc_lookgbmap_thresh = GC_LOOKGBMAP_THRESH,
.lookgbmap_thresh = LOOKGBMAP_THRESH,
#endif
#ifdef LFS3_PREERASE
.gc_preerase_count = GC_PREERASE_COUNT,
#endif
#ifdef LFS3_GC
.gc_flags = GC_FLAGS,
.gc_steps = GC_STEPS,
#endif
.gc_lookahead_thresh = GC_LOOKAHEAD_THRESH,
.gc_compact_thresh = GC_COMPACT_THRESH,
.shrub_size = SHRUB_SIZE,
.fragment_size = FRAGMENT_SIZE,
.crystal_thresh = CRYSTAL_THRESH,
};
struct lfs3_cfg *TEST_CFG = &_cfg;
#endif
// struct lfs3_*bd_cfg definition
#ifdef TEST_BDCFG
#ifndef TEST_KIWIBD
struct lfs3_emubd_cfg _bdcfg = {
#ifdef TEST_BDCFG_CFG
TEST_BDCFG_CFG
#endif
.erase_value = ERASE_VALUE,
.erase_cycles = ERASE_CYCLES,
.badblock_behavior = BADBLOCK_BEHAVIOR,
.powerloss_behavior = POWERLOSS_BEHAVIOR,
.seed = BD_SEED,
};
struct lfs3_emubd_cfg *TEST_BDCFG = &_bdcfg;
#else
struct lfs3_kiwibd_cfg _bdcfg = {
#ifdef TEST_BDCFG_CFG
TEST_BDCFG_CFG
#endif
.erase_value = ERASE_VALUE,
};
struct lfs3_kiwibd_cfg *TEST_BDCFG = &_bdcfg;
#endif
#endif