fc486ca4f7
Thinking about use case a bit, most lfsr_fs_gc will be to perform
background work, and can benefit from being incremental.
We already support incremental gc and all the mess associated with
traversal invalidation via the traversal API, so we might as well expose
this through lfsr_fs_gc.
The main downside is that we need to store an lfsr_traversal_t object
somewhere, which is not exactly a cheap struct. I was originally
considering limiting incremental gc to the traversal API for this
reason, but I think the value add of an incremental lfsr_fs_gc is too
compelling... Though we really should add a compile-time option
(LFS_NO_GC? LFS_NO_INCRGC?) to allow users to opt-out of this RAM cost
if they're never going to call this function.
Oh, and lfs_t also becomes self-referential, which might become a
problem for higher-level language users...
---
The incremental behavior of lfsr_fs_gc can be controlled by the new
gc_steps config option. This allows more than one step to be performed
at a time, which may allow for more progress when intermixed with
write-heavy filesystem operations. Setting gc_steps=-1 performs a full
traversal every call, which guarantees always making some amount of
progress.
This adds a bit of code, since we now need to check for/resume existing
traversals. But the real cost is the added RAM to lfs_t, which is
unfortunately wasted if you never call lfsr_fs_gc:
code stack lfs_t
before: 35708 2672 164
after: 35756 (+0.1%) 2672 (+0.0%) 296 (+80.5%)
156 lines
5.2 KiB
C
156 lines
5.2 KiB
C
/*
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* Runner for littlefs tests
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*
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* Copyright (c) 2022, The littlefs authors.
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* SPDX-License-Identifier: BSD-3-Clause
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*/
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#ifndef TEST_RUNNER_H
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#define TEST_RUNNER_H
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// override LFS_TRACE
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void test_trace(const char *fmt, ...);
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#define LFS_TRACE_(fmt, ...) \
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test_trace("%s:%d:trace: " fmt "%s\n", \
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__FILE__, \
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__LINE__, \
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__VA_ARGS__)
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#define LFS_TRACE(...) LFS_TRACE_(__VA_ARGS__, "")
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#define LFS_EMUBD_TRACE(...) LFS_TRACE_(__VA_ARGS__, "")
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// note these are indirectly included in any generated files
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#include "bd/lfs_emubd.h"
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#include <stdio.h>
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// give source a chance to define feature macros
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#undef _FEATURES_H
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#undef _STDIO_H
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// generated test configurations
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struct lfs_config;
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enum test_flags {
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TEST_INTERNAL = 0x1,
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TEST_REENTRANT = 0x2,
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TEST_FUZZ = 0x4,
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};
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typedef uint8_t test_flags_t;
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typedef struct test_define {
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const char *name;
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intmax_t *define;
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intmax_t (*cb)(void *data, size_t i);
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void *data;
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size_t permutations;
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} test_define_t;
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struct test_case {
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const char *name;
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const char *path;
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test_flags_t flags;
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const test_define_t *defines;
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size_t permutations;
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bool (*if_)(void);
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void (*run)(struct lfs_config *cfg);
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};
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struct test_suite {
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const char *name;
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const char *path;
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test_flags_t flags;
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const test_define_t *defines;
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size_t define_count;
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const struct test_case *cases;
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size_t case_count;
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};
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extern const struct test_suite *const test_suites[];
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extern const size_t test_suite_count;
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// this variable tracks the number of powerlosses triggered during the
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// current test permutation, this is useful for both tests and debugging
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extern volatile size_t TEST_PLS;
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// deterministic prng for pseudo-randomness in tests
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uint32_t test_prng(uint32_t *state);
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#define TEST_PRNG(state) test_prng(state)
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// generation of specific permutations of an array for exhaustive testing
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size_t test_factorial(size_t x);
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void test_permutation(size_t i, uint32_t *buffer, size_t size);
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#define TEST_FACTORIAL(x) test_factorial(x)
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#define TEST_PERMUTATION(i, buffer, size) test_permutation(i, buffer, size)
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// a few preconfigured defines that control how tests run
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#define TEST_IMPLICIT_DEFINES \
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/* name value (overridable) */ \
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TEST_DEFINE(READ_SIZE, 1 ) \
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TEST_DEFINE(PROG_SIZE, 1 ) \
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TEST_DEFINE(BLOCK_SIZE, 4096 ) \
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TEST_DEFINE(BLOCK_COUNT, DISK_SIZE/BLOCK_SIZE ) \
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TEST_DEFINE(DISK_SIZE, 1024*1024 ) \
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TEST_DEFINE(BLOCK_RECYCLES, -1 ) \
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TEST_DEFINE(RCACHE_SIZE, LFS_MAX(16, READ_SIZE) ) \
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TEST_DEFINE(PCACHE_SIZE, LFS_MAX(16, PROG_SIZE) ) \
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TEST_DEFINE(FILE_BUFFER_SIZE, 16 ) \
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TEST_DEFINE(LOOKAHEAD_SIZE, 16 ) \
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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(INLINE_SIZE, BLOCK_SIZE/4 ) \
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TEST_DEFINE(SHRUB_SIZE, INLINE_SIZE ) \
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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(CHECK_PROGS, false ) \
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TEST_DEFINE(ERASE_VALUE, 0xff ) \
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TEST_DEFINE(ERASE_CYCLES, 0 ) \
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TEST_DEFINE(BADBLOCK_BEHAVIOR, LFS_EMUBD_BADBLOCK_PROGERROR ) \
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TEST_DEFINE(POWERLOSS_BEHAVIOR, LFS_EMUBD_POWERLOSS_NOOP ) \
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TEST_DEFINE(EMUBD_SEED, 0 )
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// declare defines as global intmax_ts
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#define TEST_DEFINE(k, v) \
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extern intmax_t k;
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TEST_IMPLICIT_DEFINES
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#undef TEST_DEFINE
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// map defines to cfg struct fields
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#define TEST_CFG \
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.read_size = READ_SIZE, \
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.prog_size = PROG_SIZE, \
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.block_size = BLOCK_SIZE, \
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.block_count = BLOCK_COUNT, \
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.block_recycles = BLOCK_RECYCLES, \
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.rcache_size = RCACHE_SIZE, \
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.pcache_size = PCACHE_SIZE, \
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.file_buffer_size = FILE_BUFFER_SIZE, \
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.lookahead_size = LOOKAHEAD_SIZE, \
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.gc_steps = GC_STEPS, \
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.gc_compact_thresh = GC_COMPACT_THRESH, \
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.inline_size = INLINE_SIZE, \
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.shrub_size = SHRUB_SIZE, \
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.fragment_size = FRAGMENT_SIZE, \
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.crystal_thresh = CRYSTAL_THRESH, \
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.check_progs = CHECK_PROGS,
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#define TEST_BDCFG \
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.erase_value = ERASE_VALUE, \
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.erase_cycles = ERASE_CYCLES, \
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.badblock_behavior = BADBLOCK_BEHAVIOR, \
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.powerloss_behavior = POWERLOSS_BEHAVIOR, \
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.seed = EMUBD_SEED,
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#endif
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