c07a69c2a6
I just noticed we weren't testing preerase with non-0xff ecksums at all! Added to relevant tests: # test with a number of different erase values defines.ERASE_VALUE = [0xff, 0x00, -1] The most important non-0xff value being -1 (noop erases), which should usually result in fragmented ecksums. Note this was copied from test_rbyd, where we do something similar to test non-0xff ecksums in rbyd logs.
2015 lines
62 KiB
TOML
2015 lines
62 KiB
TOML
# Test some low-level block-map operations
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#
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# Note these is very much not-exhaustive, but the entire test suite can
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# be run with the gbmap if you define LFS3_YES_GBMAP:
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#
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# LFS3_YES_GBMAP=1 make test -j
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#
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after = ['test_btree', 'test_mtree']
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ifdef = 'LFS3_GBMAP'
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# test low-level gbmap operations
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# test simple set operations
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[cases.test_gbmap_set_split]
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in = 'lfs3.c'
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code = '''
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lfs3_t lfs3;
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lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
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lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
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lfs3_alloc_ckpoint(&lfs3);
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// create an initial gbmap
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lfs3_btree_t gbmap;
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lfs3_btree_init(&gbmap);
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lfs3_gbmap_commit(&lfs3, &gbmap, 0, LFS3_RATTRS(
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LFS3_RATTR(2, LFS3_TAG_BMFREE, -2),
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LFS3_RATTR_WEIGHT(+BLOCK_COUNT),
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LFS3_RATTR_NULL)) => 0;
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// set some blocks as in-use, avoid any weird merges for now
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lfs3_gbmap_set(&lfs3, &gbmap, 6, LFS3_TAG_BMINUSE, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 8, LFS3_TAG_BMINUSE, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 10, LFS3_TAG_BMINUSE, NULL) => 0;
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printf("gbmap: w%d 0x%x.%x\n",
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gbmap.r.weight,
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gbmap.r.blocks[0],
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gbmap.r.trunk);
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// weight should stay the same
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assert(gbmap.r.weight == BLOCK_COUNT);
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// check ranges
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lfs3_bid_t bid_;
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lfs3_bid_t weight_;
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 0,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == 5);
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assert(weight_ == 6);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 6,
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&bid_, &weight_, NULL) => LFS3_TAG_BMINUSE;
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assert(bid_ == 6);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 7,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == 7);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 8,
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&bid_, &weight_, NULL) => LFS3_TAG_BMINUSE;
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assert(bid_ == 8);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 9,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == 9);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 10,
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&bid_, &weight_, NULL) => LFS3_TAG_BMINUSE;
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assert(bid_ == 10);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 11,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == BLOCK_COUNT-1);
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assert(weight_ == BLOCK_COUNT-11);
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lfs3_unmount(&lfs3) => 0;
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'''
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[cases.test_gbmap_set_replace]
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in = 'lfs3.c'
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code = '''
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lfs3_t lfs3;
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lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
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lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
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lfs3_alloc_ckpoint(&lfs3);
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// create an initial gbmap
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lfs3_btree_t gbmap;
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lfs3_btree_init(&gbmap);
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lfs3_gbmap_commit(&lfs3, &gbmap, 0, LFS3_RATTRS(
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LFS3_RATTR(2, LFS3_TAG_BMFREE, -2),
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LFS3_RATTR_WEIGHT(+BLOCK_COUNT),
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LFS3_RATTR_NULL)) => 0;
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// set some blocks as in-use, avoid any weird merges for now
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lfs3_gbmap_set(&lfs3, &gbmap, 6, LFS3_TAG_BMINUSE, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 8, LFS3_TAG_BMINUSE, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 10, LFS3_TAG_BMINUSE, NULL) => 0;
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// replace those blocks as bad, this tests deleting ranges
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lfs3_gbmap_set(&lfs3, &gbmap, 6, LFS3_TAG_BMBAD, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 8, LFS3_TAG_BMBAD, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 10, LFS3_TAG_BMBAD, NULL) => 0;
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printf("gbmap: w%d 0x%x.%x\n",
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gbmap.r.weight,
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gbmap.r.blocks[0],
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gbmap.r.trunk);
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// weight should stay the same
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assert(gbmap.r.weight == BLOCK_COUNT);
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// check ranges
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lfs3_bid_t bid_;
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lfs3_bid_t weight_;
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 0,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == 5);
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assert(weight_ == 6);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 6,
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&bid_, &weight_, NULL) => LFS3_TAG_BMBAD;
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assert(bid_ == 6);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 7,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == 7);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 8,
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&bid_, &weight_, NULL) => LFS3_TAG_BMBAD;
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assert(bid_ == 8);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 9,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == 9);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 10,
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&bid_, &weight_, NULL) => LFS3_TAG_BMBAD;
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assert(bid_ == 10);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 11,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == BLOCK_COUNT-1);
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assert(weight_ == BLOCK_COUNT-11);
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lfs3_unmount(&lfs3) => 0;
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'''
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[cases.test_gbmap_set_merge]
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in = 'lfs3.c'
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code = '''
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lfs3_t lfs3;
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lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
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lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
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lfs3_alloc_ckpoint(&lfs3);
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// create an initial gbmap
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lfs3_btree_t gbmap;
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lfs3_btree_init(&gbmap);
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lfs3_gbmap_commit(&lfs3, &gbmap, 0, LFS3_RATTRS(
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LFS3_RATTR(2, LFS3_TAG_BMFREE, -2),
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LFS3_RATTR_WEIGHT(+BLOCK_COUNT),
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LFS3_RATTR_NULL)) => 0;
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// set some blocks as in-use, avoid any weird merges for now
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lfs3_gbmap_set(&lfs3, &gbmap, 6, LFS3_TAG_BMINUSE, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 8, LFS3_TAG_BMINUSE, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 10, LFS3_TAG_BMINUSE, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 12, LFS3_TAG_BMINUSE, NULL) => 0;
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// set neighboring blocks as in-use, triggering merges
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lfs3_gbmap_set(&lfs3, &gbmap, 5, LFS3_TAG_BMINUSE, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 9, LFS3_TAG_BMINUSE, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 13, LFS3_TAG_BMINUSE, NULL) => 0;
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printf("gbmap: w%d 0x%x.%x\n",
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gbmap.r.weight,
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gbmap.r.blocks[0],
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gbmap.r.trunk);
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// weight should stay the same
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assert(gbmap.r.weight == BLOCK_COUNT);
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// check ranges
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lfs3_bid_t bid_;
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lfs3_bid_t weight_;
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 0,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == 4);
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assert(weight_ == 5);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 5,
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&bid_, &weight_, NULL) => LFS3_TAG_BMINUSE;
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assert(bid_ == 6);
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assert(weight_ == 2);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 7,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == 7);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 8,
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&bid_, &weight_, NULL) => LFS3_TAG_BMINUSE;
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assert(bid_ == 10);
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assert(weight_ == 3);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 11,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == 11);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 12,
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&bid_, &weight_, NULL) => LFS3_TAG_BMINUSE;
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assert(bid_ == 13);
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assert(weight_ == 2);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 14,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == BLOCK_COUNT-1);
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assert(weight_ == BLOCK_COUNT-14);
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lfs3_unmount(&lfs3) => 0;
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'''
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[cases.test_gbmap_set_noop]
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in = 'lfs3.c'
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code = '''
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lfs3_t lfs3;
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lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
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lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
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lfs3_alloc_ckpoint(&lfs3);
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// create an initial gbmap
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lfs3_btree_t gbmap;
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lfs3_btree_init(&gbmap);
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lfs3_gbmap_commit(&lfs3, &gbmap, 0, LFS3_RATTRS(
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LFS3_RATTR(2, LFS3_TAG_BMFREE, -2),
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LFS3_RATTR_WEIGHT(+BLOCK_COUNT),
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LFS3_RATTR_NULL)) => 0;
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// set some blocks as in-use, avoid any weird merges for now
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lfs3_gbmap_set(&lfs3, &gbmap, 6, LFS3_TAG_BMINUSE, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 8, LFS3_TAG_BMINUSE, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 10, LFS3_TAG_BMINUSE, NULL) => 0;
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// test a bunch of noops
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lfs3_gbmap_set(&lfs3, &gbmap, 6, LFS3_TAG_BMINUSE, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 7, LFS3_TAG_BMFREE, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 8, LFS3_TAG_BMINUSE, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 9, LFS3_TAG_BMFREE, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, 10, LFS3_TAG_BMINUSE, NULL) => 0;
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printf("gbmap: w%d 0x%x.%x\n",
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gbmap.r.weight,
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gbmap.r.blocks[0],
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gbmap.r.trunk);
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// weight should stay the same
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assert(gbmap.r.weight == BLOCK_COUNT);
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// check ranges
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lfs3_bid_t bid_;
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lfs3_bid_t weight_;
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 0,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == 5);
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assert(weight_ == 6);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 6,
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&bid_, &weight_, NULL) => LFS3_TAG_BMINUSE;
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assert(bid_ == 6);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 7,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == 7);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 8,
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&bid_, &weight_, NULL) => LFS3_TAG_BMINUSE;
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assert(bid_ == 8);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 9,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == 9);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 10,
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&bid_, &weight_, NULL) => LFS3_TAG_BMINUSE;
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assert(bid_ == 10);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 11,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == BLOCK_COUNT-1);
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assert(weight_ == BLOCK_COUNT-11);
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lfs3_unmount(&lfs3) => 0;
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'''
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[cases.test_gbmap_set_bounds]
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in = 'lfs3.c'
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code = '''
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lfs3_t lfs3;
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lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
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lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
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lfs3_alloc_ckpoint(&lfs3);
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// create an initial gbmap
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lfs3_btree_t gbmap;
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lfs3_btree_init(&gbmap);
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lfs3_gbmap_commit(&lfs3, &gbmap, 0, LFS3_RATTRS(
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LFS3_RATTR(2, LFS3_TAG_BMFREE, -2),
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LFS3_RATTR_WEIGHT(+BLOCK_COUNT),
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LFS3_RATTR_NULL)) => 0;
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// test that setting the first and last blocks don't break anything
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//
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// though in theory blocks 0x{0,1} are immutable...
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lfs3_gbmap_set(&lfs3, &gbmap, 0, LFS3_TAG_BMINUSE, NULL) => 0;
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lfs3_gbmap_set(&lfs3, &gbmap, BLOCK_COUNT-1, LFS3_TAG_BMINUSE, NULL) => 0;
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printf("gbmap: w%d 0x%x.%x\n",
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gbmap.r.weight,
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gbmap.r.blocks[0],
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gbmap.r.trunk);
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// weight should stay the same
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assert(gbmap.r.weight == BLOCK_COUNT);
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// check ranges
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lfs3_bid_t bid_;
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lfs3_bid_t weight_;
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 0,
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&bid_, &weight_, NULL) => LFS3_TAG_BMINUSE;
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assert(bid_ == 0);
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assert(weight_ == 1);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, 1,
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&bid_, &weight_, NULL) => LFS3_TAG_BMFREE;
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assert(bid_ == BLOCK_COUNT-2);
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assert(weight_ == BLOCK_COUNT-2);
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, BLOCK_COUNT-1,
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&bid_, &weight_, NULL) => LFS3_TAG_BMINUSE;
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assert(bid_ == BLOCK_COUNT-1);
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assert(weight_ == 1);
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lfs3_unmount(&lfs3) => 0;
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'''
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[cases.test_gbmap_set_fuzz]
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defines.N = [1, 2, 4, 8, 16, 32, 64, 128, 256, 512]
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defines.TYPES = [2, 3, 4]
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defines.SEED = 'range(20)'
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fuzz = 'SEED'
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in = 'lfs3.c'
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code = '''
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lfs3_t lfs3;
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lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
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lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
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lfs3_alloc_ckpoint(&lfs3);
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// create an initial gbmap
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lfs3_btree_t gbmap;
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lfs3_btree_init(&gbmap);
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lfs3_gbmap_commit(&lfs3, &gbmap, 0, LFS3_RATTRS(
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LFS3_RATTR(2, LFS3_TAG_BMFREE, -2),
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LFS3_RATTR_WEIGHT(+BLOCK_COUNT),
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LFS3_RATTR_NULL)) => 0;
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// create a simulation to compare against
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lfs3_tag_t *sim = malloc(BLOCK_COUNT*sizeof(lfs3_tag_t));
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for (lfs3_size_t i = 0; i < BLOCK_COUNT; i++) {
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sim[i] = LFS3_TAG_BMFREE;
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}
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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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// choose a pseudo-random block
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lfs3_block_t block = TEST_PRNG(&prng) % BLOCK_COUNT;
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// and pseudo-random gbmap type
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lfs3_tag_t tag = LFS3_TAG_BMRANGE + (TEST_PRNG(&prng) % TYPES);
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// set in gbmap
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lfs3_gbmap_set(&lfs3, &gbmap, block, tag, NULL) => 0;
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// and set in sim
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sim[block] = tag;
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}
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printf("gbmap: w%d 0x%x.%x\n",
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gbmap.r.weight,
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gbmap.r.blocks[0],
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gbmap.r.trunk);
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// check if gbmap matches sim
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lfs3_size_t i = 0;
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while (i < BLOCK_COUNT) {
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// we need to convert our sim's raw blocks to compressed ranges,
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// in theory our gbmap is optimal
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lfs3_tag_t tag = sim[i];
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lfs3_size_t d = 1;
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while (i+d < BLOCK_COUNT && sim[i+d] == tag) {
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d += 1;
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}
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// does our gbmap contain the optimal range?
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lfs3_bid_t bid_;
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lfs3_bid_t weight_;
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lfs3_gbmap_lookupnext(&lfs3, &gbmap, i,
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&bid_, &weight_, NULL) => tag;
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assert(bid_ == i+(weight_-1));
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assert(weight_ == d);
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i += d;
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}
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|
|
free(sim);
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
|
|
# set operations with ecksums are a bit more complicated
|
|
[cases.test_gbmap_set_ecksum_split]
|
|
in = 'lfs3.c'
|
|
code = '''
|
|
lfs3_t lfs3;
|
|
lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
|
|
lfs3_alloc_ckpoint(&lfs3);
|
|
|
|
// create an initial gbmap
|
|
lfs3_btree_t gbmap;
|
|
lfs3_btree_init(&gbmap);
|
|
lfs3_gbmap_commit(&lfs3, &gbmap, 0, LFS3_RATTRS(
|
|
LFS3_RATTR(2, LFS3_TAG_BMFREE, -2),
|
|
LFS3_RATTR_WEIGHT(+BLOCK_COUNT),
|
|
LFS3_RATTR_NULL)) => 0;
|
|
|
|
// set some blocks as erased with ecksums, avoid any weird merges
|
|
// for now
|
|
lfs3_ecksum_t ecksum = {.cksize=CFG->prog_size, .cksum=0x12345678};
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 6, LFS3_TAG_BMERASED, &ecksum) => 0;
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 8, LFS3_TAG_BMERASED, &ecksum) => 0;
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 10, LFS3_TAG_BMERASED, &ecksum) => 0;
|
|
printf("gbmap: w%d 0x%x.%x\n",
|
|
gbmap.r.weight,
|
|
gbmap.r.blocks[0],
|
|
gbmap.r.trunk);
|
|
|
|
// weight should stay the same
|
|
assert(gbmap.r.weight == BLOCK_COUNT);
|
|
|
|
// check ranges
|
|
lfs3_bid_t bid_;
|
|
lfs3_bid_t weight_;
|
|
lfs3_ecksum_t ecksum_;
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 0,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMFREE;
|
|
assert(bid_ == 5);
|
|
assert(weight_ == 6);
|
|
assert(!lfs3_ecksum_isecksum(&ecksum_));
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 6,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == 6);
|
|
assert(weight_ == 1);
|
|
assert(lfs3_ecksum_cmp(&ecksum_, &ecksum) == 0);
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 7,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMFREE;
|
|
assert(bid_ == 7);
|
|
assert(weight_ == 1);
|
|
assert(!lfs3_ecksum_isecksum(&ecksum_));
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 8,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == 8);
|
|
assert(weight_ == 1);
|
|
assert(lfs3_ecksum_cmp(&ecksum_, &ecksum) == 0);
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 9,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMFREE;
|
|
assert(bid_ == 9);
|
|
assert(weight_ == 1);
|
|
assert(!lfs3_ecksum_isecksum(&ecksum_));
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 10,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == 10);
|
|
assert(weight_ == 1);
|
|
assert(lfs3_ecksum_cmp(&ecksum_, &ecksum) == 0);
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 11,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMFREE;
|
|
assert(bid_ == BLOCK_COUNT-1);
|
|
assert(weight_ == BLOCK_COUNT-11);
|
|
assert(!lfs3_ecksum_isecksum(&ecksum_));
|
|
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
[cases.test_gbmap_set_ecksum_replace]
|
|
in = 'lfs3.c'
|
|
code = '''
|
|
lfs3_t lfs3;
|
|
lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
|
|
lfs3_alloc_ckpoint(&lfs3);
|
|
|
|
// create an initial gbmap
|
|
lfs3_btree_t gbmap;
|
|
lfs3_btree_init(&gbmap);
|
|
lfs3_gbmap_commit(&lfs3, &gbmap, 0, LFS3_RATTRS(
|
|
LFS3_RATTR(2, LFS3_TAG_BMFREE, -2),
|
|
LFS3_RATTR_WEIGHT(+BLOCK_COUNT),
|
|
LFS3_RATTR_NULL)) => 0;
|
|
|
|
// set some blocks as erased with ecksums, avoid any weird merges
|
|
// for now
|
|
lfs3_ecksum_t ecksum_a = {.cksize=CFG->prog_size, .cksum=0x12345678};
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 6, LFS3_TAG_BMERASED, &ecksum_a) => 0;
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 8, LFS3_TAG_BMERASED, &ecksum_a) => 0;
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 10, LFS3_TAG_BMERASED, &ecksum_a) => 0;
|
|
// replace those blocks with different ecksums
|
|
lfs3_ecksum_t ecksum_b = {.cksize=CFG->prog_size, .cksum=0x9abcdef0};
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 6, LFS3_TAG_BMERASED, &ecksum_b) => 0;
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 8, LFS3_TAG_BMERASED, &ecksum_b) => 0;
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 10, LFS3_TAG_BMERASED, &ecksum_b) => 0;
|
|
printf("gbmap: w%d 0x%x.%x\n",
|
|
gbmap.r.weight,
|
|
gbmap.r.blocks[0],
|
|
gbmap.r.trunk);
|
|
|
|
// weight should stay the same
|
|
assert(gbmap.r.weight == BLOCK_COUNT);
|
|
|
|
// check ranges
|
|
lfs3_bid_t bid_;
|
|
lfs3_bid_t weight_;
|
|
lfs3_ecksum_t ecksum_;
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 0,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMFREE;
|
|
assert(bid_ == 5);
|
|
assert(weight_ == 6);
|
|
assert(!lfs3_ecksum_isecksum(&ecksum_));
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 6,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == 6);
|
|
assert(weight_ == 1);
|
|
assert(lfs3_ecksum_cmp(&ecksum_, &ecksum_b) == 0);
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 7,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMFREE;
|
|
assert(bid_ == 7);
|
|
assert(weight_ == 1);
|
|
assert(!lfs3_ecksum_isecksum(&ecksum_));
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 8,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == 8);
|
|
assert(weight_ == 1);
|
|
assert(lfs3_ecksum_cmp(&ecksum_, &ecksum_b) == 0);
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 9,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMFREE;
|
|
assert(bid_ == 9);
|
|
assert(weight_ == 1);
|
|
assert(!lfs3_ecksum_isecksum(&ecksum_));
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 10,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == 10);
|
|
assert(weight_ == 1);
|
|
assert(lfs3_ecksum_cmp(&ecksum_, &ecksum_b) == 0);
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 11,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMFREE;
|
|
assert(bid_ == BLOCK_COUNT-1);
|
|
assert(weight_ == BLOCK_COUNT-11);
|
|
assert(!lfs3_ecksum_isecksum(&ecksum_));
|
|
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
[cases.test_gbmap_set_ecksum_merge]
|
|
in = 'lfs3.c'
|
|
code = '''
|
|
lfs3_t lfs3;
|
|
lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
|
|
lfs3_alloc_ckpoint(&lfs3);
|
|
|
|
// create an initial gbmap
|
|
lfs3_btree_t gbmap;
|
|
lfs3_btree_init(&gbmap);
|
|
lfs3_gbmap_commit(&lfs3, &gbmap, 0, LFS3_RATTRS(
|
|
LFS3_RATTR(2, LFS3_TAG_BMFREE, -2),
|
|
LFS3_RATTR_WEIGHT(+BLOCK_COUNT),
|
|
LFS3_RATTR_NULL)) => 0;
|
|
|
|
// set some blocks as erased with ecksums, avoid any weird merges
|
|
// for now
|
|
lfs3_ecksum_t ecksum = {.cksize=CFG->prog_size, .cksum=0x12345678};
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 6, LFS3_TAG_BMERASED, &ecksum) => 0;
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 8, LFS3_TAG_BMERASED, &ecksum) => 0;
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 10, LFS3_TAG_BMERASED, &ecksum) => 0;
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 12, LFS3_TAG_BMERASED, &ecksum) => 0;
|
|
// set neighboring blocks as erased with ecksums, triggering merges
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 5, LFS3_TAG_BMERASED, &ecksum) => 0;
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 9, LFS3_TAG_BMERASED, &ecksum) => 0;
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 13, LFS3_TAG_BMERASED, &ecksum) => 0;
|
|
printf("gbmap: w%d 0x%x.%x\n",
|
|
gbmap.r.weight,
|
|
gbmap.r.blocks[0],
|
|
gbmap.r.trunk);
|
|
|
|
// weight should stay the same
|
|
assert(gbmap.r.weight == BLOCK_COUNT);
|
|
|
|
// check ranges
|
|
lfs3_bid_t bid_;
|
|
lfs3_bid_t weight_;
|
|
lfs3_ecksum_t ecksum_;
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 0,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMFREE;
|
|
assert(bid_ == 4);
|
|
assert(weight_ == 5);
|
|
assert(!lfs3_ecksum_isecksum(&ecksum_));
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 5,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == 6);
|
|
assert(weight_ == 2);
|
|
assert(lfs3_ecksum_cmp(&ecksum_, &ecksum) == 0);
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 7,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMFREE;
|
|
assert(bid_ == 7);
|
|
assert(weight_ == 1);
|
|
assert(!lfs3_ecksum_isecksum(&ecksum_));
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 8,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == 10);
|
|
assert(weight_ == 3);
|
|
assert(lfs3_ecksum_cmp(&ecksum_, &ecksum) == 0);
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 11,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMFREE;
|
|
assert(bid_ == 11);
|
|
assert(weight_ == 1);
|
|
assert(!lfs3_ecksum_isecksum(&ecksum_));
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 12,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == 13);
|
|
assert(weight_ == 2);
|
|
assert(lfs3_ecksum_cmp(&ecksum_, &ecksum) == 0);
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 14,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMFREE;
|
|
assert(bid_ == BLOCK_COUNT-1);
|
|
assert(weight_ == BLOCK_COUNT-14);
|
|
assert(!lfs3_ecksum_isecksum(&ecksum_));
|
|
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
[cases.test_gbmap_set_ecksum_nomerge]
|
|
in = 'lfs3.c'
|
|
code = '''
|
|
lfs3_t lfs3;
|
|
lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
|
|
lfs3_alloc_ckpoint(&lfs3);
|
|
|
|
// create an initial gbmap
|
|
lfs3_btree_t gbmap;
|
|
lfs3_btree_init(&gbmap);
|
|
lfs3_gbmap_commit(&lfs3, &gbmap, 0, LFS3_RATTRS(
|
|
LFS3_RATTR(2, LFS3_TAG_BMFREE, -2),
|
|
LFS3_RATTR_WEIGHT(+BLOCK_COUNT),
|
|
LFS3_RATTR_NULL)) => 0;
|
|
|
|
// set some blocks as erased with ecksums, avoid any weird merges
|
|
// for now
|
|
lfs3_ecksum_t ecksum_a = {.cksize=CFG->prog_size, .cksum=0x12345678};
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 6, LFS3_TAG_BMERASED, &ecksum_a) => 0;
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 8, LFS3_TAG_BMERASED, &ecksum_a) => 0;
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 10, LFS3_TAG_BMERASED, &ecksum_a) => 0;
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 12, LFS3_TAG_BMERASED, &ecksum_a) => 0;
|
|
// set neighboring blocks as erased with _different_ ecksums, this
|
|
// should _not_ trigger a merge!
|
|
lfs3_ecksum_t ecksum_b = {.cksize=CFG->prog_size, .cksum=0x9abcdef0};
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 5, LFS3_TAG_BMERASED, &ecksum_b) => 0;
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 9, LFS3_TAG_BMERASED, &ecksum_b) => 0;
|
|
lfs3_gbmap_set(&lfs3, &gbmap, 13, LFS3_TAG_BMERASED, &ecksum_b) => 0;
|
|
printf("gbmap: w%d 0x%x.%x\n",
|
|
gbmap.r.weight,
|
|
gbmap.r.blocks[0],
|
|
gbmap.r.trunk);
|
|
|
|
// weight should stay the same
|
|
assert(gbmap.r.weight == BLOCK_COUNT);
|
|
|
|
// check ranges
|
|
lfs3_bid_t bid_;
|
|
lfs3_bid_t weight_;
|
|
lfs3_ecksum_t ecksum_;
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 0,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMFREE;
|
|
assert(bid_ == 4);
|
|
assert(weight_ == 5);
|
|
assert(!lfs3_ecksum_isecksum(&ecksum_));
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 5,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == 5);
|
|
assert(weight_ == 1);
|
|
assert(lfs3_ecksum_cmp(&ecksum_, &ecksum_b) == 0);
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 6,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == 6);
|
|
assert(weight_ == 1);
|
|
assert(lfs3_ecksum_cmp(&ecksum_, &ecksum_a) == 0);
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 7,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMFREE;
|
|
assert(bid_ == 7);
|
|
assert(weight_ == 1);
|
|
assert(!lfs3_ecksum_isecksum(&ecksum_));
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 8,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == 8);
|
|
assert(weight_ == 1);
|
|
assert(lfs3_ecksum_cmp(&ecksum_, &ecksum_a) == 0);
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 9,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == 9);
|
|
assert(weight_ == 1);
|
|
assert(lfs3_ecksum_cmp(&ecksum_, &ecksum_b) == 0);
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 10,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == 10);
|
|
assert(weight_ == 1);
|
|
assert(lfs3_ecksum_cmp(&ecksum_, &ecksum_a) == 0);
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 11,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMFREE;
|
|
assert(bid_ == 11);
|
|
assert(weight_ == 1);
|
|
assert(!lfs3_ecksum_isecksum(&ecksum_));
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 12,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == 12);
|
|
assert(weight_ == 1);
|
|
assert(lfs3_ecksum_cmp(&ecksum_, &ecksum_a) == 0);
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 13,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == 13);
|
|
assert(weight_ == 1);
|
|
assert(lfs3_ecksum_cmp(&ecksum_, &ecksum_b) == 0);
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, 14,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMFREE;
|
|
assert(bid_ == BLOCK_COUNT-1);
|
|
assert(weight_ == BLOCK_COUNT-14);
|
|
assert(!lfs3_ecksum_isecksum(&ecksum_));
|
|
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
[cases.test_gbmap_set_ecksum_fuzz]
|
|
defines.N = [1, 2, 4, 8, 16, 32, 64, 128, 256, 512]
|
|
defines.MASK = [0x1, 0x3, 0xf, 0xffff]
|
|
defines.SEED = 'range(20)'
|
|
fuzz = 'SEED'
|
|
in = 'lfs3.c'
|
|
code = '''
|
|
lfs3_t lfs3;
|
|
lfs3_format(&lfs3, LFS3_F_RDWR, CFG) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, CFG) => 0;
|
|
lfs3_alloc_ckpoint(&lfs3);
|
|
|
|
// create an initial gbmap
|
|
lfs3_ecksum_t ecksum = {.cksize=CFG->prog_size, .cksum=0x00000000};
|
|
lfs3_btree_t gbmap;
|
|
lfs3_btree_init(&gbmap);
|
|
lfs3_gbmap_commit(&lfs3, &gbmap, 0, LFS3_RATTRS(
|
|
LFS3_RATTR(3, LFS3_TAG_BMERASED, -2, LFS3_FROM_ECKSUM),
|
|
LFS3_RATTR_WEIGHT(+BLOCK_COUNT),
|
|
LFS3_RATTR_ARG(&ecksum),
|
|
LFS3_RATTR_NULL)) => 0;
|
|
|
|
// create a simulation to compare against
|
|
lfs3_tag_t *sim = malloc(BLOCK_COUNT*sizeof(uint32_t));
|
|
for (lfs3_size_t i = 0; i < BLOCK_COUNT; i++) {
|
|
sim[i] = 0x00000000;
|
|
}
|
|
|
|
uint32_t prng = SEED;
|
|
for (lfs3_size_t i = 0; i < N; i++) {
|
|
// choose a pseudo-random block
|
|
lfs3_block_t block = TEST_PRNG(&prng) % BLOCK_COUNT;
|
|
// and pseudo-random ecksum
|
|
ecksum.cksum = TEST_PRNG(&prng) & MASK;
|
|
|
|
// set in gbmap
|
|
lfs3_gbmap_set(&lfs3, &gbmap,
|
|
block, LFS3_TAG_BMERASED, &ecksum) => 0;
|
|
|
|
// and set in sim
|
|
sim[block] = ecksum.cksum;
|
|
}
|
|
printf("gbmap: w%d 0x%x.%x\n",
|
|
gbmap.r.weight,
|
|
gbmap.r.blocks[0],
|
|
gbmap.r.trunk);
|
|
|
|
// check if gbmap matches sim
|
|
lfs3_size_t i = 0;
|
|
while (i < BLOCK_COUNT) {
|
|
// we need to convert our sim's raw blocks to compressed ranges,
|
|
// in theory our gbmap is optimal
|
|
uint32_t cksum = sim[i];
|
|
lfs3_size_t d = 1;
|
|
while (i+d < BLOCK_COUNT && sim[i+d] == cksum) {
|
|
d += 1;
|
|
}
|
|
|
|
// does our gbmap contain the optimal range?
|
|
lfs3_bid_t bid_;
|
|
lfs3_bid_t weight_;
|
|
lfs3_ecksum_t ecksum_;
|
|
lfs3_gbmap_lookupnext(&lfs3, &gbmap, i,
|
|
&bid_, &weight_, &ecksum_) => LFS3_TAG_BMERASED;
|
|
assert(bid_ == i+(weight_-1));
|
|
assert(weight_ == d);
|
|
assert(ecksum_.cksize == CFG->prog_size);
|
|
assert(ecksum_.cksum == cksum);
|
|
|
|
i += d;
|
|
}
|
|
|
|
free(sim);
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
|
|
|
|
# test high-level gbmap operations
|
|
|
|
# test that the gbmap generally works
|
|
[cases.test_gbmap_files]
|
|
defines.COUNT = [
|
|
'BLOCK_COUNT',
|
|
'BLOCK_COUNT-1',
|
|
'BLOCK_COUNT/2',
|
|
'BLOCK_COUNT/4',
|
|
'5',
|
|
'3',
|
|
]
|
|
defines.SIZE = [
|
|
'BLOCK_SIZE',
|
|
'2*BLOCK_SIZE',
|
|
'8*BLOCK_SIZE',
|
|
]
|
|
defines.N = ['5', 'BLOCK_COUNT/2']
|
|
defines.WRAPAROUND = 3
|
|
if = [
|
|
'COUNT >= 3',
|
|
'COUNT >= 2*N*SIZE/BLOCK_SIZE',
|
|
]
|
|
code = '''
|
|
// test various block counts
|
|
struct lfs3_cfg cfg = *CFG;
|
|
cfg.block_count = COUNT;
|
|
lfs3_t lfs3;
|
|
// note the gbmap flag
|
|
lfs3_format(&lfs3, LFS3_F_RDWR | LFS3_F_GBMAP, &cfg) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
|
|
// check that we were formatted with the gbmap
|
|
struct lfs3_fsinfo fsinfo;
|
|
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
|
|
assert(fsinfo.flags & LFS3_I_GBMAP);
|
|
|
|
// create n files repeatedly until we're sure we've wrapped around
|
|
// a few times
|
|
uint32_t prng = 42;
|
|
uint32_t prng_ = prng;
|
|
for (lfs3_size_t i = 0;
|
|
i < (WRAPAROUND*COUNT)
|
|
/ (N*(SIZE/BLOCK_SIZE));
|
|
i++) {
|
|
prng = prng_;
|
|
for (lfs3_size_t n = 0; n < N; n++) {
|
|
char name[256];
|
|
sprintf(name, "file%08d", n);
|
|
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
for (int remount = 0; remount < 2; remount++) {
|
|
// remount?
|
|
if (remount) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// check that our file writes worked
|
|
prng_ = prng;
|
|
for (lfs3_size_t i = 0; i < N; i++) {
|
|
// check with stat
|
|
char name[256];
|
|
sprintf(name, "file%08d", i);
|
|
struct lfs3_info info;
|
|
lfs3_stat(&lfs3, name, &info) => 0;
|
|
assert(strcmp(info.name, name) == 0);
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
|
|
// try reading the file, note we reset prng above
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
uint8_t rbuf[SIZE];
|
|
lfs3_file_open(&lfs3, &file, name, LFS3_O_RDONLY) => 0;
|
|
lfs3_file_read(&lfs3, &file, rbuf, SIZE) => SIZE;
|
|
assert(memcmp(rbuf, wbuf, SIZE) == 0);
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
# test that the gbmap with gc generally works
|
|
[cases.test_gbmap_gc_files]
|
|
defines.COUNT = [
|
|
'BLOCK_COUNT',
|
|
'BLOCK_COUNT-1',
|
|
'BLOCK_COUNT/2',
|
|
'BLOCK_COUNT/4',
|
|
'5',
|
|
'3',
|
|
]
|
|
defines.SIZE = [
|
|
'BLOCK_SIZE',
|
|
'2*BLOCK_SIZE',
|
|
'8*BLOCK_SIZE',
|
|
]
|
|
defines.N = ['5', 'BLOCK_COUNT/2']
|
|
defines.WRAPAROUND = 3
|
|
defines.PREERASE = [false, true]
|
|
defines.GC_FLAGS = '''
|
|
LFS3_GC_LOOKAHEAD
|
|
| ((PREERASE) ? LFS3_IFDEF_PREERASE(LFS3_GC_PREERASE, -1) : 0)
|
|
'''
|
|
defines.GC_STEPS = -1
|
|
defines.GC_PREERASE_COUNT = ['0', '4', 'COUNT/2', 'COUNT-4', '-1']
|
|
# test with a number of different erase values
|
|
defines.ERASE_VALUE = [0xff, 0x00, -1]
|
|
ifdef = 'LFS3_GC'
|
|
if = [
|
|
'COUNT >= 3',
|
|
'COUNT >= 2*N*SIZE/BLOCK_SIZE',
|
|
'LFS3_IFDEF_PREERASE(true, !PREERASE)',
|
|
# this is just to reduce useless permutations
|
|
'PREERASE || GC_PREERASE_COUNT == 0',
|
|
'PREERASE || ERASE_VALUE == 0xff',
|
|
]
|
|
code = '''
|
|
// test various block counts
|
|
struct lfs3_cfg cfg = *CFG;
|
|
cfg.block_count = COUNT;
|
|
lfs3_t lfs3;
|
|
// note the gbmap flag
|
|
lfs3_format(&lfs3,
|
|
LFS3_F_RDWR
|
|
// note preerasing needs revperturb
|
|
| ((PREERASE)
|
|
? LFS3_IFDEF_PREERASE(LFS3_F_REVPERTURB, -1)
|
|
: 0)
|
|
| LFS3_F_GBMAP,
|
|
&cfg) => 0;
|
|
lfs3_mount(&lfs3,
|
|
LFS3_M_RDWR
|
|
// note preerasing needs revperturb
|
|
| ((PREERASE)
|
|
? LFS3_IFDEF_PREERASE(LFS3_M_REVPERTURB, -1)
|
|
: 0),
|
|
&cfg) => 0;
|
|
|
|
// check that we were formatted with the gbmap
|
|
struct lfs3_fsinfo fsinfo;
|
|
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
|
|
assert(fsinfo.flags & LFS3_I_GBMAP);
|
|
|
|
// run gc to prebuild gbmap, preerase blocks, etc
|
|
lfs3_fs_gc(&lfs3) => 0;
|
|
|
|
// create n files repeatedly until we're sure we've wrapped around
|
|
// a few times
|
|
uint32_t prng = 42;
|
|
uint32_t prng_ = prng;
|
|
for (lfs3_size_t i = 0;
|
|
i < (WRAPAROUND*COUNT)
|
|
/ (N*(SIZE/BLOCK_SIZE));
|
|
i++) {
|
|
prng = prng_;
|
|
for (lfs3_size_t n = 0; n < N; n++) {
|
|
char name[256];
|
|
sprintf(name, "file%08d", n);
|
|
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
for (int remount = 0; remount < 2; remount++) {
|
|
// remount?
|
|
if (remount) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// check that our file writes worked
|
|
prng_ = prng;
|
|
for (lfs3_size_t i = 0; i < N; i++) {
|
|
// check with stat
|
|
char name[256];
|
|
sprintf(name, "file%08d", i);
|
|
struct lfs3_info info;
|
|
lfs3_stat(&lfs3, name, &info) => 0;
|
|
assert(strcmp(info.name, name) == 0);
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
|
|
// try reading the file, note we reset prng above
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
uint8_t rbuf[SIZE];
|
|
lfs3_file_open(&lfs3, &file, name, LFS3_O_RDONLY) => 0;
|
|
lfs3_file_read(&lfs3, &file, rbuf, SIZE) => SIZE;
|
|
assert(memcmp(rbuf, wbuf, SIZE) == 0);
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
|
|
|
|
# test high-high-level gbmap operations
|
|
|
|
# test that we can remove the gbmap and things still work
|
|
[cases.test_gbmap_rmgbmap]
|
|
ifndef = 'LFS3_YES_GBMAP'
|
|
defines.COUNT = [
|
|
'BLOCK_COUNT',
|
|
'BLOCK_COUNT-1',
|
|
'BLOCK_COUNT/2',
|
|
'BLOCK_COUNT/4',
|
|
'5',
|
|
'3',
|
|
]
|
|
defines.SIZE = [
|
|
'BLOCK_SIZE',
|
|
'2*BLOCK_SIZE',
|
|
'8*BLOCK_SIZE',
|
|
]
|
|
defines.N = ['5', 'BLOCK_COUNT/2']
|
|
defines.WRAPAROUND = 3
|
|
# REMOUNT=0 => don't remount
|
|
# REMOUNT=1 => remount after
|
|
# REMOUNT=2 => remount before
|
|
# REMOUNT=3 => remount both after and before
|
|
defines.REMOUNT = [0, 1, 2, 3]
|
|
if = [
|
|
'COUNT >= 3',
|
|
'COUNT >= 2*N*SIZE/BLOCK_SIZE',
|
|
]
|
|
code = '''
|
|
// test various block counts
|
|
struct lfs3_cfg cfg = *CFG;
|
|
cfg.block_count = COUNT;
|
|
lfs3_t lfs3;
|
|
// note the gbmap flag
|
|
lfs3_format(&lfs3, LFS3_F_RDWR | LFS3_F_GBMAP, &cfg) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
|
|
// check that we were formatted with the gbmap
|
|
struct lfs3_fsinfo fsinfo;
|
|
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
|
|
assert(fsinfo.flags & LFS3_I_GBMAP);
|
|
|
|
// create n files repeatedly until we're sure we've wrapped around
|
|
// a few times
|
|
uint32_t prng = 42;
|
|
uint32_t prng_ = prng;
|
|
for (lfs3_size_t i = 0;
|
|
i < (WRAPAROUND*COUNT)
|
|
/ (N*(SIZE/BLOCK_SIZE));
|
|
i++) {
|
|
prng = prng_;
|
|
for (lfs3_size_t n = 0; n < N; n++) {
|
|
char name[256];
|
|
sprintf(name, "file%08d", n);
|
|
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
// remount before?
|
|
if (REMOUNT & 2) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// now remove the gbmap
|
|
lfs3_fs_rmgbmap(&lfs3) => 0;
|
|
|
|
// remount after?
|
|
if (REMOUNT & 1) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// we should no longer have a gbmap
|
|
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
|
|
assert(!(fsinfo.flags & LFS3_I_GBMAP));
|
|
|
|
// create n files repeatedly until we're sure we've wrapped around
|
|
// a few times
|
|
for (lfs3_size_t i = 0;
|
|
i < (WRAPAROUND*COUNT)
|
|
/ (N*(SIZE/BLOCK_SIZE));
|
|
i++) {
|
|
prng = prng_;
|
|
for (lfs3_size_t n = 0; n < N; n++) {
|
|
char name[256];
|
|
sprintf(name, "file%08d", n);
|
|
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
for (int remount = 0; remount < 2; remount++) {
|
|
// remount?
|
|
if (remount) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// check that our file writes worked
|
|
prng_ = prng;
|
|
for (lfs3_size_t i = 0; i < N; i++) {
|
|
// check with stat
|
|
char name[256];
|
|
sprintf(name, "file%08d", i);
|
|
struct lfs3_info info;
|
|
lfs3_stat(&lfs3, name, &info) => 0;
|
|
assert(strcmp(info.name, name) == 0);
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
|
|
// try reading the file, note we reset prng above
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
uint8_t rbuf[SIZE];
|
|
lfs3_file_open(&lfs3, &file, name, LFS3_O_RDONLY) => 0;
|
|
lfs3_file_read(&lfs3, &file, rbuf, SIZE) => SIZE;
|
|
assert(memcmp(rbuf, wbuf, SIZE) == 0);
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
# test that we can make the gbmap and things still work
|
|
[cases.test_gbmap_mkgbmap]
|
|
ifndef = 'LFS3_YES_GBMAP'
|
|
defines.COUNT = [
|
|
'BLOCK_COUNT',
|
|
'BLOCK_COUNT-1',
|
|
'BLOCK_COUNT/2',
|
|
'BLOCK_COUNT/4',
|
|
'5',
|
|
'3',
|
|
]
|
|
defines.SIZE = [
|
|
'BLOCK_SIZE',
|
|
'2*BLOCK_SIZE',
|
|
'8*BLOCK_SIZE',
|
|
]
|
|
defines.N = ['5', 'BLOCK_COUNT/2']
|
|
defines.WRAPAROUND = 3
|
|
# REMOUNT=0 => don't remount
|
|
# REMOUNT=1 => remount after
|
|
# REMOUNT=2 => remount before
|
|
# REMOUNT=3 => remount both after and before
|
|
defines.REMOUNT = [0, 1, 2, 3]
|
|
if = [
|
|
'COUNT >= 3',
|
|
'COUNT >= 2*N*SIZE/BLOCK_SIZE',
|
|
]
|
|
code = '''
|
|
// test various block counts
|
|
struct lfs3_cfg cfg = *CFG;
|
|
cfg.block_count = COUNT;
|
|
lfs3_t lfs3;
|
|
// note the lack of gbmap flag
|
|
lfs3_format(&lfs3, LFS3_F_RDWR, &cfg) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
|
|
// check that we were formatted without the gbmap
|
|
struct lfs3_fsinfo fsinfo;
|
|
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
|
|
assert(!(fsinfo.flags & LFS3_I_GBMAP));
|
|
|
|
// create n files repeatedly until we're sure we've wrapped around
|
|
// a few times
|
|
uint32_t prng = 42;
|
|
uint32_t prng_ = prng;
|
|
for (lfs3_size_t i = 0;
|
|
i < (WRAPAROUND*COUNT)
|
|
/ (N*(SIZE/BLOCK_SIZE));
|
|
i++) {
|
|
prng = prng_;
|
|
for (lfs3_size_t n = 0; n < N; n++) {
|
|
char name[256];
|
|
sprintf(name, "file%08d", n);
|
|
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
// remount before?
|
|
if (REMOUNT & 2) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// now make the gbmap
|
|
lfs3_fs_mkgbmap(&lfs3) => 0;
|
|
|
|
// remount after?
|
|
if (REMOUNT & 1) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// we should now have a gbmap
|
|
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
|
|
assert(fsinfo.flags & LFS3_I_GBMAP);
|
|
|
|
// create n files repeatedly until we're sure we've wrapped around
|
|
// a few times
|
|
for (lfs3_size_t i = 0;
|
|
i < (WRAPAROUND*COUNT)
|
|
/ (N*(SIZE/BLOCK_SIZE));
|
|
i++) {
|
|
prng = prng_;
|
|
for (lfs3_size_t n = 0; n < N; n++) {
|
|
char name[256];
|
|
sprintf(name, "file%08d", n);
|
|
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
for (int remount = 0; remount < 2; remount++) {
|
|
// remount?
|
|
if (remount) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// check that our file writes worked
|
|
prng_ = prng;
|
|
for (lfs3_size_t i = 0; i < N; i++) {
|
|
// check with stat
|
|
char name[256];
|
|
sprintf(name, "file%08d", i);
|
|
struct lfs3_info info;
|
|
lfs3_stat(&lfs3, name, &info) => 0;
|
|
assert(strcmp(info.name, name) == 0);
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
|
|
// try reading the file, note we reset prng above
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
uint8_t rbuf[SIZE];
|
|
lfs3_file_open(&lfs3, &file, name, LFS3_O_RDONLY) => 0;
|
|
lfs3_file_read(&lfs3, &file, rbuf, SIZE) => SIZE;
|
|
assert(memcmp(rbuf, wbuf, SIZE) == 0);
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
# test that we can remove and then remake the gbmap and things still
|
|
# work
|
|
#
|
|
# this leaves the disk with garbage gstate that mkgbmap needs to clean
|
|
# up
|
|
[cases.test_gbmap_rmmkgbmap]
|
|
ifndef = 'LFS3_YES_GBMAP'
|
|
defines.COUNT = [
|
|
'BLOCK_COUNT',
|
|
'BLOCK_COUNT-1',
|
|
'BLOCK_COUNT/2',
|
|
'BLOCK_COUNT/4',
|
|
'5',
|
|
'3',
|
|
]
|
|
defines.SIZE = [
|
|
'BLOCK_SIZE',
|
|
'2*BLOCK_SIZE',
|
|
'8*BLOCK_SIZE',
|
|
]
|
|
defines.N = ['5', 'BLOCK_COUNT/2']
|
|
defines.WRAPAROUND = 3
|
|
# REMOUNT=0x1 => remount after
|
|
# REMOUNT=0x2 => remount before make
|
|
# REMOUNT=0x4 => remount after remove
|
|
# REMOUNT=0x8 => remount before
|
|
defines.REMOUNT = 'range(0x10)'
|
|
if = [
|
|
'COUNT >= 3',
|
|
'COUNT >= 2*N*SIZE/BLOCK_SIZE',
|
|
]
|
|
code = '''
|
|
// test various block counts
|
|
struct lfs3_cfg cfg = *CFG;
|
|
cfg.block_count = COUNT;
|
|
lfs3_t lfs3;
|
|
// note the gbmap flag
|
|
lfs3_format(&lfs3, LFS3_F_RDWR | LFS3_F_GBMAP, &cfg) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
|
|
// check that we were formatted with the gbmap
|
|
struct lfs3_fsinfo fsinfo;
|
|
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
|
|
assert(fsinfo.flags & LFS3_I_GBMAP);
|
|
|
|
// create n files repeatedly until we're sure we've wrapped around
|
|
// a few times
|
|
uint32_t prng = 42;
|
|
uint32_t prng_ = prng;
|
|
for (lfs3_size_t i = 0;
|
|
i < (WRAPAROUND*COUNT)
|
|
/ (N*(SIZE/BLOCK_SIZE));
|
|
i++) {
|
|
prng = prng_;
|
|
for (lfs3_size_t n = 0; n < N; n++) {
|
|
char name[256];
|
|
sprintf(name, "file%08d", n);
|
|
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
// remount before?
|
|
if (REMOUNT & 8) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// now remove the gbmap
|
|
lfs3_fs_rmgbmap(&lfs3) => 0;
|
|
|
|
// remount after remove?
|
|
if (REMOUNT & 4) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// we should no longer have a gbmap
|
|
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
|
|
assert(!(fsinfo.flags & LFS3_I_GBMAP));
|
|
|
|
// create n files repeatedly until we're sure we've wrapped around
|
|
// a few times
|
|
for (lfs3_size_t i = 0;
|
|
i < (WRAPAROUND*COUNT)
|
|
/ (N*(SIZE/BLOCK_SIZE));
|
|
i++) {
|
|
prng = prng_;
|
|
for (lfs3_size_t n = 0; n < N; n++) {
|
|
char name[256];
|
|
sprintf(name, "file%08d", n);
|
|
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
// remount before make?
|
|
if (REMOUNT & 2) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// now remake the gbmap
|
|
lfs3_fs_mkgbmap(&lfs3) => 0;
|
|
|
|
// remount after?
|
|
if (REMOUNT & 1) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// we should now have a gbmap
|
|
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
|
|
assert(fsinfo.flags & LFS3_I_GBMAP);
|
|
|
|
// create n files repeatedly until we're sure we've wrapped around
|
|
// a few times
|
|
for (lfs3_size_t i = 0;
|
|
i < (WRAPAROUND*COUNT)
|
|
/ (N*(SIZE/BLOCK_SIZE));
|
|
i++) {
|
|
prng = prng_;
|
|
for (lfs3_size_t n = 0; n < N; n++) {
|
|
char name[256];
|
|
sprintf(name, "file%08d", n);
|
|
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
for (int remount = 0; remount < 2; remount++) {
|
|
// remount?
|
|
if (remount) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// check that our file writes worked
|
|
prng_ = prng;
|
|
for (lfs3_size_t i = 0; i < N; i++) {
|
|
// check with stat
|
|
char name[256];
|
|
sprintf(name, "file%08d", i);
|
|
struct lfs3_info info;
|
|
lfs3_stat(&lfs3, name, &info) => 0;
|
|
assert(strcmp(info.name, name) == 0);
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
|
|
// try reading the file, note we reset prng above
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
uint8_t rbuf[SIZE];
|
|
lfs3_file_open(&lfs3, &file, name, LFS3_O_RDONLY) => 0;
|
|
lfs3_file_read(&lfs3, &file, rbuf, SIZE) => SIZE;
|
|
assert(memcmp(rbuf, wbuf, SIZE) == 0);
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
# test that we can make and then remove the gbmap and things still
|
|
# work
|
|
#
|
|
# not exactly sure what this tests, but including for completeness
|
|
[cases.test_gbmap_mkrmgbmap]
|
|
ifndef = 'LFS3_YES_GBMAP'
|
|
defines.COUNT = [
|
|
'BLOCK_COUNT',
|
|
'BLOCK_COUNT-1',
|
|
'BLOCK_COUNT/2',
|
|
'BLOCK_COUNT/4',
|
|
'5',
|
|
'3',
|
|
]
|
|
defines.SIZE = [
|
|
'BLOCK_SIZE',
|
|
'2*BLOCK_SIZE',
|
|
'8*BLOCK_SIZE',
|
|
]
|
|
defines.N = ['5', 'BLOCK_COUNT/2']
|
|
defines.WRAPAROUND = 3
|
|
# REMOUNT=0x1 => remount after
|
|
# REMOUNT=0x2 => remount before remove
|
|
# REMOUNT=0x4 => remount after make
|
|
# REMOUNT=0x8 => remount before
|
|
defines.REMOUNT = 'range(0x10)'
|
|
if = [
|
|
'COUNT >= 3',
|
|
'COUNT >= 2*N*SIZE/BLOCK_SIZE',
|
|
]
|
|
code = '''
|
|
// test various block counts
|
|
struct lfs3_cfg cfg = *CFG;
|
|
cfg.block_count = COUNT;
|
|
lfs3_t lfs3;
|
|
// note the lack of gbmap flag
|
|
lfs3_format(&lfs3, LFS3_F_RDWR, &cfg) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
|
|
// check that we were formatted without the gbmap
|
|
struct lfs3_fsinfo fsinfo;
|
|
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
|
|
assert(!(fsinfo.flags & LFS3_I_GBMAP));
|
|
|
|
// create n files repeatedly until we're sure we've wrapped around
|
|
// a few times
|
|
uint32_t prng = 42;
|
|
uint32_t prng_ = prng;
|
|
for (lfs3_size_t i = 0;
|
|
i < (WRAPAROUND*COUNT)
|
|
/ (N*(SIZE/BLOCK_SIZE));
|
|
i++) {
|
|
prng = prng_;
|
|
for (lfs3_size_t n = 0; n < N; n++) {
|
|
char name[256];
|
|
sprintf(name, "file%08d", n);
|
|
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
// remount before?
|
|
if (REMOUNT & 8) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// now make the gbmap
|
|
lfs3_fs_mkgbmap(&lfs3) => 0;
|
|
|
|
// remount after make?
|
|
if (REMOUNT & 4) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// we should now have a gbmap
|
|
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
|
|
assert(fsinfo.flags & LFS3_I_GBMAP);
|
|
|
|
// create n files repeatedly until we're sure we've wrapped around
|
|
// a few times
|
|
for (lfs3_size_t i = 0;
|
|
i < (WRAPAROUND*COUNT)
|
|
/ (N*(SIZE/BLOCK_SIZE));
|
|
i++) {
|
|
prng = prng_;
|
|
for (lfs3_size_t n = 0; n < N; n++) {
|
|
char name[256];
|
|
sprintf(name, "file%08d", n);
|
|
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
// remount before remove?
|
|
if (REMOUNT & 2) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// now remove the gbmap
|
|
lfs3_fs_rmgbmap(&lfs3) => 0;
|
|
|
|
// remount after?
|
|
if (REMOUNT & 1) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// we should no longer have a gbmap
|
|
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
|
|
assert(!(fsinfo.flags & LFS3_I_GBMAP));
|
|
|
|
// create n files repeatedly until we're sure we've wrapped around
|
|
// a few times
|
|
for (lfs3_size_t i = 0;
|
|
i < (WRAPAROUND*COUNT)
|
|
/ (N*(SIZE/BLOCK_SIZE));
|
|
i++) {
|
|
prng = prng_;
|
|
for (lfs3_size_t n = 0; n < N; n++) {
|
|
char name[256];
|
|
sprintf(name, "file%08d", n);
|
|
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
for (int remount = 0; remount < 2; remount++) {
|
|
// remount?
|
|
if (remount) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// check that our file writes worked
|
|
prng_ = prng;
|
|
for (lfs3_size_t i = 0; i < N; i++) {
|
|
// check with stat
|
|
char name[256];
|
|
sprintf(name, "file%08d", i);
|
|
struct lfs3_info info;
|
|
lfs3_stat(&lfs3, name, &info) => 0;
|
|
assert(strcmp(info.name, name) == 0);
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
|
|
// try reading the file, note we reset prng above
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
uint8_t rbuf[SIZE];
|
|
lfs3_file_open(&lfs3, &file, name, LFS3_O_RDONLY) => 0;
|
|
lfs3_file_read(&lfs3, &file, rbuf, SIZE) => SIZE;
|
|
assert(memcmp(rbuf, wbuf, SIZE) == 0);
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
# test that removing a non-existant gbmap errors
|
|
[cases.test_gbmap_rmgbmap_noent]
|
|
ifndef = 'LFS3_YES_GBMAP'
|
|
defines.COUNT = [
|
|
'BLOCK_COUNT',
|
|
'BLOCK_COUNT-1',
|
|
'BLOCK_COUNT/2',
|
|
'BLOCK_COUNT/4',
|
|
'5',
|
|
'3',
|
|
]
|
|
defines.SIZE = [
|
|
'BLOCK_SIZE',
|
|
'2*BLOCK_SIZE',
|
|
'8*BLOCK_SIZE',
|
|
]
|
|
defines.N = ['5', 'BLOCK_COUNT/2']
|
|
defines.WRAPAROUND = 3
|
|
# REMOUNT=0 => don't remount
|
|
# REMOUNT=1 => remount after
|
|
# REMOUNT=2 => remount before
|
|
# REMOUNT=3 => remount both after and before
|
|
defines.REMOUNT = [0, 1, 2, 3]
|
|
if = [
|
|
'COUNT >= 3',
|
|
'COUNT >= 2*N*SIZE/BLOCK_SIZE',
|
|
]
|
|
code = '''
|
|
// test various block counts
|
|
struct lfs3_cfg cfg = *CFG;
|
|
cfg.block_count = COUNT;
|
|
lfs3_t lfs3;
|
|
// note the lack of gbmap flag
|
|
lfs3_format(&lfs3, LFS3_F_RDWR, &cfg) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
|
|
// check that we were formatted without the gbmap
|
|
struct lfs3_fsinfo fsinfo;
|
|
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
|
|
assert(!(fsinfo.flags & LFS3_I_GBMAP));
|
|
|
|
// create n files repeatedly until we're sure we've wrapped around
|
|
// a few times
|
|
uint32_t prng = 42;
|
|
uint32_t prng_ = prng;
|
|
for (lfs3_size_t i = 0;
|
|
i < (WRAPAROUND*COUNT)
|
|
/ (N*(SIZE/BLOCK_SIZE));
|
|
i++) {
|
|
prng = prng_;
|
|
for (lfs3_size_t n = 0; n < N; n++) {
|
|
char name[256];
|
|
sprintf(name, "file%08d", n);
|
|
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
// remount before?
|
|
if (REMOUNT & 2) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// now try to remove the gbmap
|
|
lfs3_fs_rmgbmap(&lfs3) => LFS3_ERR_NOENT;
|
|
|
|
// remount after?
|
|
if (REMOUNT & 1) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// we should no longer have a gbmap
|
|
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
|
|
assert(!(fsinfo.flags & LFS3_I_GBMAP));
|
|
|
|
// create n files repeatedly until we're sure we've wrapped around
|
|
// a few times
|
|
for (lfs3_size_t i = 0;
|
|
i < (WRAPAROUND*COUNT)
|
|
/ (N*(SIZE/BLOCK_SIZE));
|
|
i++) {
|
|
prng = prng_;
|
|
for (lfs3_size_t n = 0; n < N; n++) {
|
|
char name[256];
|
|
sprintf(name, "file%08d", n);
|
|
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
for (int remount = 0; remount < 2; remount++) {
|
|
// remount?
|
|
if (remount) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// check that our file writes worked
|
|
prng_ = prng;
|
|
for (lfs3_size_t i = 0; i < N; i++) {
|
|
// check with stat
|
|
char name[256];
|
|
sprintf(name, "file%08d", i);
|
|
struct lfs3_info info;
|
|
lfs3_stat(&lfs3, name, &info) => 0;
|
|
assert(strcmp(info.name, name) == 0);
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
|
|
// try reading the file, note we reset prng above
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
uint8_t rbuf[SIZE];
|
|
lfs3_file_open(&lfs3, &file, name, LFS3_O_RDONLY) => 0;
|
|
lfs3_file_read(&lfs3, &file, rbuf, SIZE) => SIZE;
|
|
assert(memcmp(rbuf, wbuf, SIZE) == 0);
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|
|
|
|
# test that making an existant gbmap errors
|
|
[cases.test_gbmap_mkgbmap_exist]
|
|
ifndef = 'LFS3_YES_GBMAP'
|
|
defines.COUNT = [
|
|
'BLOCK_COUNT',
|
|
'BLOCK_COUNT-1',
|
|
'BLOCK_COUNT/2',
|
|
'BLOCK_COUNT/4',
|
|
'5',
|
|
'3',
|
|
]
|
|
defines.SIZE = [
|
|
'BLOCK_SIZE',
|
|
'2*BLOCK_SIZE',
|
|
'8*BLOCK_SIZE',
|
|
]
|
|
defines.N = ['5', 'BLOCK_COUNT/2']
|
|
defines.WRAPAROUND = 3
|
|
# REMOUNT=0 => don't remount
|
|
# REMOUNT=1 => remount after
|
|
# REMOUNT=2 => remount before
|
|
# REMOUNT=3 => remount both after and before
|
|
defines.REMOUNT = [0, 1, 2, 3]
|
|
if = [
|
|
'COUNT >= 3',
|
|
'COUNT >= 2*N*SIZE/BLOCK_SIZE',
|
|
]
|
|
code = '''
|
|
// test various block counts
|
|
struct lfs3_cfg cfg = *CFG;
|
|
cfg.block_count = COUNT;
|
|
lfs3_t lfs3;
|
|
// note the gbmap flag
|
|
lfs3_format(&lfs3, LFS3_F_RDWR | LFS3_F_GBMAP, &cfg) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
|
|
// check that we were formatted with the gbmap
|
|
struct lfs3_fsinfo fsinfo;
|
|
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
|
|
assert(fsinfo.flags & LFS3_I_GBMAP);
|
|
|
|
// create n files repeatedly until we're sure we've wrapped around
|
|
// a few times
|
|
uint32_t prng = 42;
|
|
uint32_t prng_ = prng;
|
|
for (lfs3_size_t i = 0;
|
|
i < (WRAPAROUND*COUNT)
|
|
/ (N*(SIZE/BLOCK_SIZE));
|
|
i++) {
|
|
prng = prng_;
|
|
for (lfs3_size_t n = 0; n < N; n++) {
|
|
char name[256];
|
|
sprintf(name, "file%08d", n);
|
|
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
// remount before?
|
|
if (REMOUNT & 2) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// now make the gbmap
|
|
lfs3_fs_mkgbmap(&lfs3) => LFS3_ERR_EXIST;
|
|
|
|
// remount after?
|
|
if (REMOUNT & 1) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// we should now have a gbmap
|
|
lfs3_fs_stat(&lfs3, &fsinfo) => 0;
|
|
assert(fsinfo.flags & LFS3_I_GBMAP);
|
|
|
|
// create n files repeatedly until we're sure we've wrapped around
|
|
// a few times
|
|
for (lfs3_size_t i = 0;
|
|
i < (WRAPAROUND*COUNT)
|
|
/ (N*(SIZE/BLOCK_SIZE));
|
|
i++) {
|
|
prng = prng_;
|
|
for (lfs3_size_t n = 0; n < N; n++) {
|
|
char name[256];
|
|
sprintf(name, "file%08d", n);
|
|
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
lfs3_file_open(&lfs3, &file, name,
|
|
LFS3_O_WRONLY | LFS3_O_CREAT | LFS3_O_TRUNC) => 0;
|
|
lfs3_file_write(&lfs3, &file, wbuf, SIZE) => SIZE;
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
for (int remount = 0; remount < 2; remount++) {
|
|
// remount?
|
|
if (remount) {
|
|
lfs3_unmount(&lfs3) => 0;
|
|
lfs3_mount(&lfs3, LFS3_M_RDWR, &cfg) => 0;
|
|
}
|
|
|
|
// check that our file writes worked
|
|
prng_ = prng;
|
|
for (lfs3_size_t i = 0; i < N; i++) {
|
|
// check with stat
|
|
char name[256];
|
|
sprintf(name, "file%08d", i);
|
|
struct lfs3_info info;
|
|
lfs3_stat(&lfs3, name, &info) => 0;
|
|
assert(strcmp(info.name, name) == 0);
|
|
assert(info.type == LFS3_TYPE_REG);
|
|
assert(info.size == SIZE);
|
|
|
|
// try reading the file, note we reset prng above
|
|
uint8_t wbuf[SIZE];
|
|
for (lfs3_size_t j = 0; j < SIZE; j++) {
|
|
wbuf[j] = 'a' + (TEST_PRNG(&prng_) % 26);
|
|
}
|
|
|
|
lfs3_file_t file;
|
|
uint8_t rbuf[SIZE];
|
|
lfs3_file_open(&lfs3, &file, name, LFS3_O_RDONLY) => 0;
|
|
lfs3_file_read(&lfs3, &file, rbuf, SIZE) => SIZE;
|
|
assert(memcmp(rbuf, wbuf, SIZE) == 0);
|
|
lfs3_file_close(&lfs3, &file) => 0;
|
|
}
|
|
}
|
|
|
|
lfs3_unmount(&lfs3) => 0;
|
|
'''
|