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https://github.com/armink/FlashDB.git
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[kvdb] Improve the GC algorithm to solve the problem of failure to collection in some cases.
This commit is contained in:
+28
-15
@@ -35,6 +35,8 @@
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#define SECTOR_MAGIC_WORD 0x30424446
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/* magic word(`K`, `V`, `0`, `0`) */
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#define KV_MAGIC_WORD 0x3030564B
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/* GC minimum number of empty sectors. GC will using at least 1 empty sector. */
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#define GC_MIN_EMPTY_SEC_NUM 1
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/* the sector remain threshold before full status */
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#ifndef FDB_SEC_REMAIN_THRESHOLD
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@@ -135,9 +137,8 @@ struct alloc_kv_cb_args {
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struct gc_cb_args {
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fdb_kvdb_t db;
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size_t cur_free_size;
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size_t setting_free_size;
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uint32_t traversed_len;
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size_t last_gc_sec_addr;
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};
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static void gc_collect(fdb_kvdb_t db);
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@@ -1071,7 +1072,7 @@ __retry:
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if ((empty_kv = alloc_kv(db, sector, kv_size)) == FAILED_ADDR) {
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if (db->gc_request && !already_gc) {
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FDB_INFO("Warning: Alloc an KV (size %" PRIu32 ") failed when new KV. Now will GC then retry.\n", (uint32_t)kv_size);
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FDB_DEBUG("Alloc an KV (size %" PRIu32 ") failed when new KV. Now will GC then retry.\n", (uint32_t)kv_size);
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gc_collect_by_free_size(db, kv_size);
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already_gc = true;
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goto __retry;
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@@ -1093,10 +1094,12 @@ static uint32_t new_kv_ex(fdb_kvdb_t db, kv_sec_info_t sector, size_t key_len, s
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static bool gc_check_cb(kv_sec_info_t sector, void *arg1, void *arg2)
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{
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size_t *empty_sec = arg1;
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size_t *empty_sec_num = arg1;
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uint32_t *empty_sec_addr = arg2;
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if (sector->check_ok) {
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*empty_sec = *empty_sec + 1;
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*empty_sec_num = *empty_sec_num + 1;
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*empty_sec_addr = sector->addr;
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}
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return false;
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@@ -1108,6 +1111,7 @@ static bool do_gc(kv_sec_info_t sector, void *arg1, void *arg2)
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struct fdb_kv kv;
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struct gc_cb_args *gc = (struct gc_cb_args *)arg1;
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fdb_kvdb_t db = gc->db;
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uint32_t last_gc_sec_addr = 0;
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if (sector->check_ok && (sector->status.dirty == FDB_SECTOR_DIRTY_TRUE || sector->status.dirty == FDB_SECTOR_DIRTY_GC)) {
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uint8_t status_table[FDB_DIRTY_STATUS_TABLE_SIZE];
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@@ -1122,15 +1126,22 @@ static bool do_gc(kv_sec_info_t sector, void *arg1, void *arg2)
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if (move_kv(db, &kv) != FDB_NO_ERR) {
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FDB_INFO("Error: Moved the KV (%.*s) for GC failed.\n", kv.name_len, kv.name);
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}
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} else {
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FDB_DEBUG("KV (%.*s) is garbage NOT need move, collect it.\n", kv.name_len, kv.name);
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}
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} while ((kv.addr.start = get_next_kv_addr(db, sector, &kv)) != FAILED_ADDR);
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format_sector(db, sector->addr, SECTOR_NOT_COMBINED);
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gc->cur_free_size += db_sec_size(db) - SECTOR_HDR_DATA_SIZE;
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FDB_DEBUG("Collect a sector @0x%08" PRIX32 "\n", sector->addr);
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last_gc_sec_addr = gc->last_gc_sec_addr;
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gc->last_gc_sec_addr = sector->addr;
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/* update oldest_addr for next GC sector format */
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db_oldest_addr(db) = get_next_sector_addr(db, sector, 0);
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if (gc->cur_free_size >= gc->setting_free_size)
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return true;
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FDB_DEBUG("Collect a sector @0x%08" PRIX32 "\n", sector->addr);
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/* the collect new space is in last GC sector */
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struct kvdb_sec_info last_gc_sector;
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if (read_sector_info(db, last_gc_sec_addr, &last_gc_sector, true) == FDB_NO_ERR) {
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if (last_gc_sector.remain > gc->setting_free_size)
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return true;
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}
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}
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return false;
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@@ -1139,15 +1150,17 @@ static bool do_gc(kv_sec_info_t sector, void *arg1, void *arg2)
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static void gc_collect_by_free_size(fdb_kvdb_t db, size_t free_size)
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{
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struct kvdb_sec_info sector;
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size_t empty_sec = 0;
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struct gc_cb_args arg = { db, 0, free_size, 0 };
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size_t empty_sec_num = 0;
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/* an empty sector address */
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uint32_t empty_sec_addr = 0;
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/* GC check the empty sector number */
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sector_iterator(db, §or, FDB_SECTOR_STORE_EMPTY, &empty_sec, NULL, gc_check_cb, false);
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sector_iterator(db, §or, FDB_SECTOR_STORE_EMPTY, &empty_sec_num, &empty_sec_addr, gc_check_cb, false);
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/* do GC collect */
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FDB_DEBUG("The remain empty sector is %" PRIu32 ", GC threshold is %" PRIdLEAST16 ".\n", (uint32_t)empty_sec, FDB_GC_EMPTY_SEC_THRESHOLD);
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if (empty_sec <= FDB_GC_EMPTY_SEC_THRESHOLD) {
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FDB_DEBUG("The remain empty sector is %" PRIu32 ", GC threshold is %" PRIdLEAST16 ".\n", (uint32_t)empty_sec_num, FDB_GC_EMPTY_SEC_THRESHOLD);
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if (empty_sec_num <= FDB_GC_EMPTY_SEC_THRESHOLD) {
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struct gc_cb_args arg = { db, free_size, empty_sec_addr };
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sector_iterator(db, §or, FDB_SECTOR_STORE_UNUSED, &arg, NULL, do_gc, false);
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}
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@@ -1580,7 +1593,7 @@ static bool check_sec_hdr_cb(kv_sec_info_t sector, void *arg1, void *arg2)
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if (db->parent.not_formatable) {
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return true;
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} else {
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FDB_INFO("Sector header info is incorrect. Auto format this sector (0x%08" PRIX32 ").\n", sector->addr);
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FDB_DEBUG("Sector header info is incorrect. Auto format this sector (0x%08" PRIX32 ").\n", sector->addr);
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format_sector(db, sector->addr, SECTOR_NOT_COMBINED);
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}
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}
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