You can not select more than 25 topics
Topics must start with a letter or number, can include dashes ('-') and can be up to 35 characters long.
1857 lines
88 KiB
1857 lines
88 KiB
// db_sync.c — Distributed content-addressed table with SQLite + peer sync via etcp_api (direct P2P) |
|
|
|
#include "db_sync.h" |
|
#include "../transport_layer/etcp_api.h" |
|
#include "../transport_layer/etcp.h" |
|
#include "../utun_instance.h" |
|
#include "../routing_layer/topo_group.h" |
|
#include "../routing_layer/topo_node_sqlite.h" |
|
#include "../transport_layer/etcp_dump.h" |
|
#include "../transport_layer/secure_channel.h" |
|
#include "../../lib/debug_config.h" |
|
#include "../../lib/mem.h" |
|
#include "../../lib/u_async.h" |
|
#include <openssl/sha.h> |
|
#include "../../lib/sqlite3.h" |
|
#include "../../lib/platform_compat.h" |
|
#include <string.h> |
|
#include <openssl/evp.h> |
|
#include <unistd.h> |
|
|
|
// ---- Forward declarations ---- |
|
struct DB_SYNC; |
|
struct DB_SYNC_INSTANCE; |
|
|
|
static void db_sync_recv_cb(struct ETCP_CONN* conn, struct ll_entry* entry); |
|
static void db_sync_on_conn_status(struct ETCP_CONN* conn, int status, void* arg); |
|
static void db_sync_on_conn_up(struct ETCP_CONN* conn, void* arg); |
|
static void db_sync_on_conn_down(struct ETCP_CONN* conn, void* arg); |
|
static void db_sync_peer_check_cb(void* arg); |
|
static void db_sync_instance_ttl_cb(void* arg); |
|
static int db_sync_send(struct DB_SYNC_INSTANCE* si, uint64_t dst_node_id, const uint8_t* payload, size_t len); |
|
static int db_sync_send_hash(struct DB_SYNC* db, uint64_t node_id, uint64_t hash, const uint8_t* payload, size_t len); |
|
static void db_sync_initiate_sync(struct DB_SYNC_INSTANCE* si, uint64_t peer_node_id); |
|
static int si_send_data_batch(struct DB_SYNC_INSTANCE* si, uint64_t dst, uint32_t from, uint32_t count, uint32_t vp, uint32_t want_from); |
|
static void si_delivery_update(struct DB_SYNC_INSTANCE* si, uint64_t ts, uint64_t author, uint64_t peer_id); |
|
|
|
// ============================================================ |
|
// Structures |
|
// ============================================================ |
|
|
|
struct SI_PEER { |
|
uint64_t node_id; |
|
uint32_t synced_pos; |
|
uint32_t verified_pos; |
|
uint32_t last_peer_count; |
|
uint8_t sync_state; |
|
uint64_t sync_start_tb; |
|
uint32_t retry_count; |
|
}; |
|
|
|
struct DB_SYNC_INSTANCE { |
|
struct DB_SYNC* db_sync; |
|
uint64_t hash; |
|
char table_name[64]; |
|
uint64_t next_id; |
|
uint64_t last_timestamp_ms; |
|
uint8_t enabled; |
|
void* ttl_timer; |
|
struct { |
|
uint32_t pos; |
|
void* timer; |
|
} recalc; |
|
struct SI_PEER* peers; |
|
int peer_count, peer_capacity; |
|
db_sync_insert_cb on_insert; |
|
void* on_insert_arg; |
|
}; |
|
|
|
struct db_sync_done_cbk_entry { |
|
db_sync_done_fn fn; |
|
void* arg; |
|
struct db_sync_done_cbk_entry* next; |
|
}; |
|
|
|
struct DB_SYNC { |
|
struct UTUN_INSTANCE* inst; |
|
sqlite3* db; |
|
uint8_t shared_db; /* db == inst->topo_sqlite_db, do not close */ |
|
uint64_t last_connected_tb; |
|
struct DB_SYNC_INSTANCE* instances; |
|
int instance_count, instance_capacity; |
|
void* peer_check_timer; |
|
uint8_t enabled; |
|
struct db_sync_done_cbk_entry* done_cbks; |
|
}; |
|
|
|
// ============================================================ |
|
// Done callback chain (global, like etcp_status_cbk_entry) |
|
// ============================================================ |
|
|
|
static void db_sync_done_cbk_add_chain(struct db_sync_done_cbk_entry** head, db_sync_done_fn fn, void* arg) { |
|
if (!head || !fn) return; |
|
struct db_sync_done_cbk_entry* e = u_malloc(sizeof(struct db_sync_done_cbk_entry)); |
|
if (!e) return; |
|
e->fn = fn; e->arg = arg; e->next = *head; |
|
*head = e; |
|
} |
|
static void db_sync_done_cbk_remove_chain(struct db_sync_done_cbk_entry** head, db_sync_done_fn fn, void* arg) { |
|
if (!head || !fn) return; |
|
struct db_sync_done_cbk_entry** p = head; |
|
while (*p) { |
|
if ((*p)->fn == fn && (*p)->arg == arg) { struct db_sync_done_cbk_entry* rm = *p; *p = rm->next; u_free(rm); return; } |
|
p = &(*p)->next; |
|
} |
|
} |
|
static void si_fire_sync_done(struct DB_SYNC_INSTANCE* si, uint64_t peer_node_id) { |
|
struct DB_SYNC* db = si->db_sync; |
|
struct db_sync_done_cbk_entry* cb = db->done_cbks; |
|
while (cb) { struct db_sync_done_cbk_entry* n = cb->next; cb->fn(si, peer_node_id, cb->arg); cb = n; } |
|
} |
|
void db_sync_add_done_cbk(struct UTUN_INSTANCE* inst, db_sync_done_fn fn, void* arg) { |
|
if (inst && inst->db_sync) db_sync_done_cbk_add_chain(&inst->db_sync->done_cbks, fn, arg); |
|
} |
|
void db_sync_remove_done_cbk(struct UTUN_INSTANCE* inst, db_sync_done_fn fn, void* arg) { |
|
if (inst && inst->db_sync) db_sync_done_cbk_remove_chain(&inst->db_sync->done_cbks, fn, arg); |
|
} |
|
|
|
// ============================================================ |
|
// SQL helpers |
|
// ============================================================ |
|
|
|
#define SI_DB(si) ((si)->db_sync->db) |
|
#define SI_TBL(si) ((si)->table_name) |
|
#define SI_SHRT(si) ({ \ |
|
static char _tbuf[28]; \ |
|
snprintf(_tbuf, sizeof(_tbuf), "%s.%04llX", SI_TBL(si), (unsigned long long)((si)->hash & 0xFFFF)); \ |
|
_tbuf; \ |
|
}) |
|
|
|
// Форматирует SQL-запрос, подставляя имя таблицы из инстанса (через %s) |
|
static void si_sql(char* buf, size_t sz, struct DB_SYNC_INSTANCE* si, const char* fmt) |
|
{ |
|
snprintf(buf, sz, fmt, SI_TBL(si)); |
|
} |
|
|
|
// Готовит SQLite statement с подстановкой имени таблицы — обёртка над si_sql + sqlite3_prepare_v2 |
|
static int si_prep(struct DB_SYNC_INSTANCE* si, sqlite3_stmt** stmt, const char* fmt) |
|
{ |
|
char sql[512]; |
|
si_sql(sql, sizeof(sql), si, fmt); |
|
return sqlite3_prepare_v2(SI_DB(si), sql, -1, stmt, NULL); |
|
} |
|
|
|
// ============================================================ |
|
// SQLite open/close |
|
// ============================================================ |
|
|
|
// Открывает SQLite БД, включает WAL, mmap и прочие оптимизации для высокой производительности |
|
static int db_sqlite_open(struct DB_SYNC* db, const char* path) |
|
{ |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "path=%s", path); |
|
int rc = sqlite3_open(path, &db->db); |
|
if (rc != SQLITE_OK) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "db_sync: sqlite3_open(%s): %s", path, sqlite3_errmsg(db->db)); |
|
sqlite3_close(db->db); |
|
db->db = NULL; |
|
return -1; |
|
} |
|
char* err = NULL; |
|
rc = sqlite3_exec(db->db, "PRAGMA journal_mode=WAL", NULL, NULL, &err); |
|
if (rc != SQLITE_OK) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "db_sync: WAL pragma: %s", err); sqlite3_free(err); } |
|
sqlite3_exec(db->db, "PRAGMA synchronous=NORMAL", NULL, NULL, NULL); |
|
sqlite3_exec(db->db, "PRAGMA wal_autocheckpoint=10000", NULL, NULL, NULL); |
|
sqlite3_exec(db->db, "PRAGMA cache_size=-32768", NULL, NULL, NULL); |
|
sqlite3_exec(db->db, "PRAGMA mmap_size=134217728", NULL, NULL, NULL); |
|
sqlite3_exec(db->db, "PRAGMA temp_store=MEMORY", NULL, NULL, NULL); |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "db_sync: SQLite opened at %s", path); |
|
return 0; |
|
} |
|
|
|
// Закрывает SQLite БД (только свою, shared не трогает) |
|
static void db_sqlite_close(struct DB_SYNC* db) |
|
{ |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, ""); |
|
if (!db->db || db->shared_db) return; |
|
sqlite3_close(db->db); |
|
db->db = NULL; |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "db_sync: SQLite closed"); |
|
} |
|
|
|
// ============================================================ |
|
// SHA256 helpers |
|
// ============================================================ |
|
|
|
// Вычисляет SHA256 хеш данных (обёртка над OpenSSL SHA256) |
|
static void db_sha256(const uint8_t* data, size_t len, uint8_t hash[32]) |
|
{ |
|
SHA256(data, len, hash); |
|
} |
|
|
|
// Возвращает первые 8 байт SHA256 как uint64 — короткий идентификатор для сравнения |
|
static uint64_t db_hash64(const uint8_t* data, size_t len) |
|
{ |
|
uint8_t hash[32]; db_sha256(data, len, hash); |
|
uint64_t h; memcpy(&h, hash, 8); |
|
return h; |
|
} |
|
|
|
// Вычисляет цепной хеш: SHA256(prev_chain_hash[32] || id[8] || timestamp[8] || author[8] || sig[64]) |
|
static void db_chain_hash_compute(const uint8_t prev_chain_hash[32], |
|
uint64_t id, uint64_t timestamp, |
|
uint64_t author, const uint8_t author_signature[DB_SIG_SIZE], |
|
uint8_t out[32]) |
|
{ |
|
uint8_t buf[32 + 8 + 8 + 8 + DB_SIG_SIZE]; // 32 + 8 + 8 + 8 + 64 = 120 |
|
memcpy(buf, prev_chain_hash, 32); |
|
memcpy(buf + 32, &id, 8); |
|
memcpy(buf + 40, ×tamp, 8); |
|
memcpy(buf + 48, &author, 8); |
|
memcpy(buf + 56, author_signature, DB_SIG_SIZE); |
|
db_sha256(buf, sizeof(buf), out); |
|
} |
|
|
|
// ============================================================ |
|
// Instance management |
|
// ============================================================ |
|
|
|
// Ищет активный инстанс синхронизации по 64-битному хешу |
|
static struct DB_SYNC_INSTANCE* db_instance_find(struct DB_SYNC* db, uint64_t hash) |
|
{ |
|
for (int i = 0; i < db->instance_count; i++) { |
|
if (db->instances[i].hash == hash && db->instances[i].enabled) return &db->instances[i]; |
|
} |
|
return NULL; |
|
} |
|
|
|
// Выделяет новый слот инстанса в массиве, расширяя его при необходимости |
|
static struct DB_SYNC_INSTANCE* db_instance_alloc(struct DB_SYNC* db) |
|
{ |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "count=%d cap=%d", db->instance_count, db->instance_capacity); |
|
if (db->instance_count >= db->instance_capacity) { |
|
int nc = db->instance_capacity ? db->instance_capacity * 2 : 4; |
|
struct DB_SYNC_INSTANCE* np = u_realloc(db->instances, nc * sizeof(*db->instances)); |
|
if (!np) return NULL; |
|
db->instances = np; |
|
db->instance_capacity = nc; |
|
} |
|
struct DB_SYNC_INSTANCE* si = &db->instances[db->instance_count++]; |
|
memset(si, 0, sizeof(*si)); |
|
si->db_sync = db; |
|
si->enabled = 1; |
|
return si; |
|
} |
|
|
|
// Проверяет допустимость имени таблицы: только A-Za-z0-9_, до 48 символов |
|
static int si_name_valid(const char* name) |
|
{ |
|
if (!name || !name[0] || strlen(name) > 48) return 0; |
|
for (const char* p = name; *p; p++) { |
|
if (!((*p >= 'a' && *p <= 'z') || (*p >= 'A' && *p <= 'Z') |
|
|| (*p >= '0' && *p <= '9') || *p == '_')) return 0; |
|
} |
|
return 1; |
|
} |
|
|
|
// Вычисляет 64-битный хеш инстанса: db_hash64(name[256] || id_be[8]) |
|
static uint64_t db_instance_hash_compute(const char* name, uint64_t id) |
|
{ |
|
size_t nl = strlen(name); |
|
uint8_t buf[264]; if (nl > 256) nl = 256; |
|
memcpy(buf, name, nl); |
|
uint64_t id_be = htobe64(id); |
|
memcpy(buf + nl, &id_be, 8); |
|
return db_hash64(buf, nl + 8); |
|
} |
|
|
|
// ============================================================ |
|
// Peer management |
|
// ============================================================ |
|
|
|
// Ищет пира в инстансе по node_id |
|
static struct SI_PEER* si_peer_find(struct DB_SYNC_INSTANCE* si, uint64_t node_id) |
|
{ |
|
for (int i = 0; i < si->peer_count; i++) { |
|
if (si->peers[i].node_id == node_id) return &si->peers[i]; |
|
} |
|
return NULL; |
|
} |
|
|
|
// Добавляет пира в инстанс (если уже существует — возвращает существующего) |
|
static struct SI_PEER* si_peer_add(struct DB_SYNC_INSTANCE* si, uint64_t node_id) |
|
{ |
|
struct SI_PEER* p = si_peer_find(si, node_id); |
|
if (p) return p; |
|
if (si->peer_count >= si->peer_capacity) { |
|
int nc = si->peer_capacity ? si->peer_capacity * 2 : 8; |
|
struct SI_PEER* np = u_realloc(si->peers, nc * sizeof(*si->peers)); |
|
if (!np) return NULL; |
|
si->peers = np; |
|
si->peer_capacity = nc; |
|
} |
|
p = &si->peers[si->peer_count++]; |
|
memset(p, 0, sizeof(*p)); |
|
p->node_id = node_id; |
|
return p; |
|
} |
|
|
|
// ============================================================ |
|
// Data access |
|
// ============================================================ |
|
|
|
// Возвращает количество записей в таблице инстанса |
|
static uint32_t db_count(struct DB_SYNC_INSTANCE* si) |
|
{ |
|
sqlite3_stmt* stmt; |
|
if (si_prep(si, &stmt, "SELECT COUNT(*) FROM \"%s\"") != SQLITE_OK) return 0; |
|
uint32_t c = (sqlite3_step(stmt) == SQLITE_ROW) ? (uint32_t)sqlite3_column_int64(stmt, 0) : 0; |
|
sqlite3_finalize(stmt); |
|
return c; |
|
} |
|
|
|
// Читает цепной хеш (32 байта) записи на позиции pos в отсортированной таблице |
|
static int db_chain_hash_at(struct DB_SYNC_INSTANCE* si, uint32_t pos, uint8_t out[32]) |
|
{ |
|
sqlite3_stmt* stmt; |
|
if (si_prep(si, &stmt, |
|
"SELECT chain_hash FROM \"%s\"" |
|
" ORDER BY timestamp, author_signature" |
|
" LIMIT 1 OFFSET ?") != SQLITE_OK) |
|
{ |
|
DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "chain_hash_at prepare: %s", sqlite3_errmsg(SI_DB(si))); |
|
return -1; |
|
} |
|
sqlite3_bind_int64(stmt, 1, (sqlite3_int64)pos); |
|
if (sqlite3_step(stmt) != SQLITE_ROW) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "chain_hash_at no row pos=%u tbl=%s", pos, SI_TBL(si)); sqlite3_finalize(stmt); return -1; } |
|
const void* b = sqlite3_column_blob(stmt, 0); |
|
if (!b || sqlite3_column_bytes(stmt, 0) < 32) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "chain_hash_at blob too small pos=%u tbl=%s", pos, SI_TBL(si)); sqlite3_finalize(stmt); return -1; } |
|
memcpy(out, b, 32); |
|
sqlite3_finalize(stmt); |
|
return 0; |
|
} |
|
|
|
// Находит позицию записи (0-based) в отсортированной таблице по (timestamp, author_signature) |
|
static uint32_t si_find_pos(struct DB_SYNC_INSTANCE* si, uint64_t ts, const uint8_t* author_sig) |
|
{ |
|
sqlite3_stmt* stmt; |
|
if (si_prep(si, &stmt, |
|
"SELECT COUNT(*) FROM \"%s\"" |
|
" WHERE timestamp<?1 OR (timestamp=?1 AND author_signature<?2)") != SQLITE_OK) |
|
return 0; |
|
sqlite3_bind_int64(stmt, 1, (sqlite3_int64)ts); |
|
sqlite3_bind_blob(stmt, 2, author_sig, DB_SIG_SIZE, SQLITE_STATIC); |
|
uint32_t pos = (sqlite3_step(stmt) == SQLITE_ROW) ? (uint32_t)sqlite3_column_int64(stmt, 0) : 0; |
|
sqlite3_finalize(stmt); |
|
return pos; |
|
} |
|
|
|
// Возвращает цепной хеш записи, предшествующей заданной по (ts, author_sig) |
|
static int db_prev_chain_hash(struct DB_SYNC_INSTANCE* si, uint64_t ts, const uint8_t* author_sig, uint8_t out[32]) |
|
{ |
|
sqlite3_stmt* stmt; |
|
if (si_prep(si, &stmt, |
|
"SELECT chain_hash FROM \"%s\"" |
|
" WHERE timestamp<?1 OR (timestamp=?1 AND author_signature<?2)" |
|
" ORDER BY timestamp DESC, author_signature DESC" |
|
" LIMIT 1") != SQLITE_OK) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "db_prev_chain_hash prep: %s", sqlite3_errmsg(SI_DB(si))); |
|
return -1; } |
|
sqlite3_bind_int64(stmt, 1, (sqlite3_int64)ts); |
|
sqlite3_bind_blob(stmt, 2, author_sig, DB_SIG_SIZE, SQLITE_STATIC); |
|
if (sqlite3_step(stmt) == SQLITE_ROW) { |
|
const void* b = sqlite3_column_blob(stmt, 0); |
|
if (b && sqlite3_column_bytes(stmt, 0) >= 32) memcpy(out, b, 32); |
|
else memset(out, 0, 32); |
|
} else { |
|
memset(out, 0, 32); |
|
} |
|
sqlite3_finalize(stmt); |
|
return 0; |
|
} |
|
|
|
// ── Chain hash fragment (first 8 bytes) for sync protocol comparisons ── |
|
|
|
// Возвращает первые 8 байт цепного хеша на позиции pos — для быстрого сравнения в протоколе sync |
|
static int db_chain_hash8_at(struct DB_SYNC_INSTANCE* si, uint32_t pos, uint64_t* h8) |
|
{ |
|
uint8_t ch[32]; |
|
if (db_chain_hash_at(si, pos, ch) != 0) return -1; |
|
memcpy(h8, ch, 8); |
|
return 0; |
|
} |
|
|
|
// ── Recalc scheduler (batch of 50, async via timer) ── |
|
|
|
static void db_recalc_tick(void* arg); |
|
|
|
// Планирует асинхронный пересчёт цепных хешей начиная с позиции from_pos (батчами по 50) |
|
static void db_sync_schedule_recalc(struct DB_SYNC_INSTANCE* si, uint32_t from_pos) |
|
{ |
|
if (!si->recalc.timer) { |
|
si->recalc.pos = from_pos; |
|
si->recalc.timer = uasync_set_timeout(si->db_sync->inst->ua, 0, si, db_recalc_tick, "db_recalc"); |
|
return; |
|
} |
|
if (from_pos < si->recalc.pos) |
|
si->recalc.pos = from_pos; |
|
} |
|
|
|
// Обрабатывает один батч (до 50 записей) пересчёта цепных хешей, вызывается по таймеру |
|
static void db_recalc_tick(void* arg) |
|
{ |
|
struct DB_SYNC_INSTANCE* si = (struct DB_SYNC_INSTANCE*)arg; |
|
sqlite3* db = SI_DB(si); |
|
uint32_t total = db_count(si); |
|
|
|
if (si->recalc.pos >= total) { si->recalc.timer = NULL; return; } |
|
|
|
uint8_t prev_ch[32]; |
|
if (si->recalc.pos > 0) { |
|
if (db_chain_hash_at(si, si->recalc.pos - 1, prev_ch) != 0) |
|
memset(prev_ch, 0, 32); |
|
} else { |
|
memset(prev_ch, 0, 32); |
|
} |
|
|
|
uint32_t batch = (total - si->recalc.pos > 50) ? 50 : total - si->recalc.pos; |
|
|
|
int rc = sqlite3_exec(db, "BEGIN IMMEDIATE", NULL, NULL, NULL); |
|
if (rc != SQLITE_OK) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "recalc BEGIN: %s", sqlite3_errmsg(db)); return; } |
|
|
|
sqlite3_stmt* sel, *upd; |
|
if (si_prep(si, &sel, |
|
"SELECT id,timestamp,node_id,author_signature FROM \"%s\"" |
|
" ORDER BY timestamp, author_signature" |
|
" LIMIT -1 OFFSET ?") != SQLITE_OK) |
|
{ DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "recalc SELECT prep: %s", sqlite3_errmsg(db)); sqlite3_exec(db, "ROLLBACK", NULL, NULL, NULL); return; } |
|
sqlite3_bind_int64(sel, 1, (sqlite3_int64)si->recalc.pos); |
|
|
|
if (si_prep(si, &upd, |
|
"UPDATE \"%s\" SET chain_hash=?" |
|
" WHERE timestamp=? AND author_signature=?") != SQLITE_OK) |
|
{ DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "recalc UPDATE prep: %s", sqlite3_errmsg(db)); sqlite3_finalize(sel); sqlite3_exec(db, "ROLLBACK", NULL, NULL, NULL); return; } |
|
|
|
uint8_t ch[32]; uint32_t processed = 0; |
|
while (sqlite3_step(sel) == SQLITE_ROW && processed < batch) { |
|
sqlite3_int64 n_id = sqlite3_column_int64(sel, 0); |
|
sqlite3_int64 n_ts = sqlite3_column_int64(sel, 1); |
|
sqlite3_int64 n_auth = sqlite3_column_int64(sel, 2); |
|
const void* sig_blob = sqlite3_column_blob(sel, 3); |
|
uint8_t sig[DB_SIG_SIZE]; |
|
if (sig_blob) memcpy(sig, sig_blob, DB_SIG_SIZE); else memset(sig, 0, DB_SIG_SIZE); |
|
db_chain_hash_compute(prev_ch, (uint64_t)n_id, (uint64_t)n_ts, (uint64_t)n_auth, sig, ch); |
|
sqlite3_reset(upd); |
|
sqlite3_bind_blob(upd, 1, ch, 32, SQLITE_STATIC); |
|
sqlite3_bind_int64(upd, 2, n_ts); |
|
sqlite3_bind_blob(upd, 3, sig, DB_SIG_SIZE, SQLITE_STATIC); |
|
sqlite3_step(upd); |
|
memcpy(prev_ch, ch, 32); |
|
processed++; |
|
} |
|
sqlite3_finalize(upd); |
|
sqlite3_finalize(sel); |
|
|
|
rc = sqlite3_exec(db, "COMMIT", NULL, NULL, NULL); |
|
if (rc != SQLITE_OK) DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "recalc COMMIT: %s", sqlite3_errmsg(db)); |
|
|
|
si->recalc.pos += processed; |
|
DEBUG_DEBUG(DEBUG_CATEGORY_DB_SYNC, "recalc tick tbl=%s pos=%u batch=%u/%u total=%u", |
|
SI_TBL(si), si->recalc.pos - processed, processed, batch, total); |
|
|
|
if (si->recalc.pos >= total) { |
|
si->recalc.timer = NULL; |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "recalc complete tbl=%s pos=%u(total)", SI_TBL(si), si->recalc.pos); |
|
} else { |
|
si->recalc.timer = uasync_set_timeout(si->db_sync->inst->ua, 100, si, db_recalc_tick, "db_recalc"); |
|
} |
|
} |
|
|
|
// Синхронно завершает все отложенные пересчёты хешей — вызывается перед операциями, требующими актуальных хешей |
|
static void db_sync_flush_recalc(struct DB_SYNC_INSTANCE* si) |
|
{ |
|
struct UASYNC* ua = si->db_sync->inst->ua; |
|
while (si->recalc.timer) { |
|
uasync_cancel_timeout(ua, si->recalc.timer); |
|
si->recalc.timer = NULL; |
|
db_recalc_tick(si); |
|
} |
|
} |
|
|
|
// ── Ed25519 verification ── |
|
|
|
// Получает Ed25519 публичный ключ узла: сначала из локального, затем из topo_node БД, затем из ETCP-соединения |
|
static int db_get_ed25519_pubkey(struct DB_SYNC* db, uint64_t node_id, uint8_t out[32]) |
|
{ |
|
if (node_id == db->inst->node_id) { memcpy(out, db->inst->my_ed25519_pubkey, 32); return 0; } |
|
if (db->inst->topo_sqlite_db) { |
|
if (topo_node_sqlite_get_ed25519_pubkey(db->inst->topo_sqlite_db, node_id, out) == 0) return 0; |
|
} |
|
struct ETCP_CONN* conn = instance_find_conn(db->inst, node_id); |
|
if (conn) { |
|
memcpy(out, conn->peer_ed25519_pubkey, 32); |
|
uint64_t chk; memcpy(&chk, out, 8); |
|
if (chk != 0) return 0; |
|
} |
|
return -1; |
|
} |
|
|
|
/* dump table: compact one-line per record with pos, id, ts, author, ch8 */ |
|
// Отладочный дамп содержимого таблицы: одна строка на запись (pos, id, ts, author, ch8), макс. 200 записей |
|
static void si_dump_table(struct DB_SYNC_INSTANCE* si, const char* tag) |
|
{ |
|
uint32_t mc = db_count(si); |
|
if (mc > 200) return; /* skip very large tables */ |
|
sqlite3_stmt* stmt; |
|
if (si_prep(si, &stmt, |
|
"SELECT id,timestamp,node_id,chain_hash FROM \"%s\" ORDER BY timestamp,author_signature") != SQLITE_OK) return; |
|
char buf[256]; int total = 0; |
|
while (sqlite3_step(stmt) == SQLITE_ROW) { |
|
uint64_t id = (uint64_t)sqlite3_column_int64(stmt, 0); |
|
uint64_t ts = (uint64_t)sqlite3_column_int64(stmt, 1); |
|
uint64_t auth = (uint64_t)sqlite3_column_int64(stmt, 2); |
|
const uint8_t* ch = (const uint8_t*)sqlite3_column_blob(stmt, 3); |
|
uint64_t ch8 = 0; if (ch) memcpy(&ch8, ch, 8); |
|
snprintf(buf, sizeof(buf), "[%2u] id=%-2llu ts=%-10llu auth=%04llX ch8=%016llX", |
|
total, (unsigned long long)id, (unsigned long long)ts, |
|
(unsigned long long)(auth >> 16), ch8); |
|
DEBUG_DEBUG(DEBUG_CATEGORY_DB_SYNC, " %s %s", tag, buf); |
|
total++; |
|
} |
|
sqlite3_finalize(stmt); |
|
DEBUG_DEBUG(DEBUG_CATEGORY_DB_SYNC, " %s: table=%s mc=%u", tag, SI_TBL(si), mc); |
|
} |
|
|
|
// Проверяет Ed25519 подпись автора: verify(pubkey, ts[8] || json, sig). Возвращает 0 если подпись верна |
|
static int db_verify_author_sig(struct DB_SYNC_INSTANCE* si, |
|
uint64_t ts, uint64_t author_node_id, |
|
const char* json, size_t jlen, |
|
const uint8_t* sig) |
|
{ |
|
uint8_t pubkey[32]; |
|
if (db_get_ed25519_pubkey(si->db_sync, author_node_id, pubkey) != 0) { |
|
DEBUG_WARN(DEBUG_CATEGORY_DB_SYNC, |
|
"cannot get Ed25519 pubkey for author=%016llx — discarding", |
|
(unsigned long long)author_node_id); |
|
return -1; |
|
} |
|
uint8_t msg[8192]; size_t off = 0; |
|
memcpy(msg + off, &ts, 8); off += 8; |
|
if (jlen > 0) { memcpy(msg + off, json, jlen); off += jlen; } |
|
if (sc_ed25519_verify(pubkey, msg, off, sig) != SC_OK) { |
|
DEBUG_WARN(DEBUG_CATEGORY_DB_SYNC, |
|
"author_sig VERIFY FAIL author=%016llx ed_pubkey=%016llx... msg_len=%zu sig=%016llx... — discarding as forgery", |
|
(unsigned long long)author_node_id, *(uint64_t*)pubkey, off, *(uint64_t*)sig); |
|
return -1; |
|
} |
|
return 0; |
|
} |
|
|
|
// Вставляет запись в таблицу: проверяет подпись, дубликаты, вычисляет chain_hash, возвращает 0/1/-1/-2 |
|
static int db_record_insert(struct DB_SYNC_INSTANCE* si, |
|
uint64_t id, uint64_t ts, uint64_t author_node_id, |
|
const char* json, size_t jlen, |
|
const uint8_t* author_sig, |
|
const char* local_attrs) |
|
{ |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "id=%llu ts=%llu author=%N len=%zu", (unsigned long long)id, (unsigned long long)ts, (unsigned long long)author_node_id, jlen); |
|
sqlite3* db = SI_DB(si); |
|
sqlite3_stmt* stmt; |
|
int rc; |
|
|
|
// Verify author signature (mandatory) |
|
if (db_verify_author_sig(si, ts, author_node_id, json, jlen, author_sig) != 0) { |
|
sqlite3_stmt* del; |
|
if (si_prep(si, &del, "DELETE FROM \"%s\" WHERE timestamp=? AND author_signature=?") == SQLITE_OK) { |
|
sqlite3_bind_int64(del, 1, (sqlite3_int64)ts); |
|
sqlite3_bind_blob(del, 2, author_sig, DB_SIG_SIZE, SQLITE_STATIC); |
|
sqlite3_step(del); |
|
int chg = sqlite3_changes(SI_DB(si)); |
|
sqlite3_finalize(del); |
|
if (chg > 0) db_sync_schedule_recalc(si, si_find_pos(si, ts, author_sig)); |
|
} |
|
return -2; |
|
} |
|
|
|
rc = sqlite3_exec(db, "BEGIN IMMEDIATE", NULL, NULL, NULL); |
|
if (rc != SQLITE_OK) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "insert BEGIN: %s", sqlite3_errmsg(db)); return -1; } |
|
|
|
// Check if record already exists by (timestamp, author_signature) |
|
if (si_prep(si, &stmt, "SELECT 1 FROM \"%s\" WHERE timestamp=? AND author_signature=?") != SQLITE_OK) |
|
{ DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "db_record_insert SELECT prep: %s", sqlite3_errmsg(db)); sqlite3_exec(db, "ROLLBACK", NULL, NULL, NULL); return -1; } |
|
sqlite3_bind_int64(stmt, 1, (sqlite3_int64)ts); |
|
sqlite3_bind_blob(stmt, 2, author_sig, DB_SIG_SIZE, SQLITE_STATIC); |
|
int exists = (sqlite3_step(stmt) == SQLITE_ROW); |
|
sqlite3_finalize(stmt); |
|
if (exists) { DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "→ already exists, skip"); sqlite3_exec(db, "ROLLBACK", NULL, NULL, NULL); return 1; } |
|
|
|
// Compute chain hash |
|
uint8_t prev_ch[32]; |
|
db_prev_chain_hash(si, ts, author_sig, prev_ch); |
|
uint8_t ch[32]; |
|
db_chain_hash_compute(prev_ch, id, ts, author_node_id, author_sig, ch); |
|
|
|
// Insert new record |
|
if (si_prep(si, &stmt, |
|
"INSERT INTO \"%s\"" |
|
" (timestamp,node_id,id,chain_hash,flags,data," |
|
" author_signature,local_attrs,delivered_peers,delivery_chain)" |
|
" VALUES (?,?,?,?,0,?,?,?,0,'')") != SQLITE_OK) |
|
{ DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "db_record_insert INSERT prep: %s", sqlite3_errmsg(db)); sqlite3_exec(db, "ROLLBACK", NULL, NULL, NULL); return -1; } |
|
sqlite3_bind_int64(stmt, 1, (sqlite3_int64)ts); |
|
sqlite3_bind_int64(stmt, 2, (sqlite3_int64)author_node_id); |
|
sqlite3_bind_int64(stmt, 3, (sqlite3_int64)id); |
|
sqlite3_bind_blob(stmt, 4, ch, 32, SQLITE_STATIC); |
|
if (jlen > 0) sqlite3_bind_blob(stmt, 5, json, (int)jlen, SQLITE_STATIC); |
|
else sqlite3_bind_null(stmt, 5); |
|
sqlite3_bind_blob(stmt, 6, author_sig, DB_SIG_SIZE, SQLITE_STATIC); |
|
if (local_attrs && local_attrs[0]) sqlite3_bind_text(stmt, 7, local_attrs, -1, SQLITE_STATIC); |
|
else sqlite3_bind_text(stmt, 7, "", -1, SQLITE_STATIC); |
|
rc = sqlite3_step(stmt); |
|
sqlite3_finalize(stmt); |
|
if (rc != SQLITE_DONE) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "INSERT: %s", sqlite3_errmsg(db)); sqlite3_exec(db, "ROLLBACK", NULL, NULL, NULL); return -1; } |
|
|
|
si->next_id = id + 1; |
|
rc = sqlite3_exec(db, "COMMIT", NULL, NULL, NULL); |
|
if (rc != SQLITE_OK) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "insert COMMIT: %s", sqlite3_errmsg(db)); return -1; } |
|
|
|
uint32_t ins_pos = si_find_pos(si, ts, author_sig); |
|
db_sync_schedule_recalc(si, ins_pos); |
|
return 0; |
|
} |
|
|
|
// Вставляет запись + каскад: on_insert + PUSH всем connected пирам (кроме источника) |
|
static int db_record_insert_cascade(struct DB_SYNC_INSTANCE* si, |
|
uint64_t rid, uint64_t rts, uint64_t rauthor, |
|
const char* rdata, uint32_t rdlen, |
|
const uint8_t* rsig, uint64_t source_peer, |
|
const char* local_attrs) |
|
{ |
|
int ret = db_record_insert(si, rid, rts, rauthor, rdata, rdlen, rsig, local_attrs); |
|
if (ret != 0) return ret; |
|
|
|
if (si->on_insert) si->on_insert(si, rts, rdata, rdlen, rauthor, si->on_insert_arg); |
|
|
|
uint8_t pbuf[4096]; uint32_t poff = 1; pbuf[0] = DB_MSG_PUSH; |
|
memcpy(pbuf + poff, &rid, 8); poff += 8; |
|
memcpy(pbuf + poff, &rts, 8); poff += 8; |
|
memcpy(pbuf + poff, &rauthor, 8); poff += 8; |
|
memcpy(pbuf + poff, &rdlen, 4); poff += 4; |
|
if (rdlen > 0) { memcpy(pbuf + poff, rdata, rdlen); poff += rdlen; } |
|
uint32_t sl = DB_SIG_SIZE; pbuf[poff++] = (uint8_t)sl; |
|
memcpy(pbuf + poff, rsig, sl); poff += sl; |
|
|
|
uint64_t my_id = si->db_sync->inst->node_id; |
|
int push_count = 0; |
|
for (int i = 0; i < si->peer_count; i++) { |
|
uint64_t pid = si->peers[i].node_id; |
|
if (si->peers[i].sync_state >= 1 && pid != source_peer && pid != my_id) { |
|
if (db_sync_send(si, pid, pbuf, poff) >= 0) |
|
{ si_delivery_update(si, rts, rauthor, pid); push_count++; } |
|
} |
|
} |
|
if (push_count > 0) |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:ME--] → PUSH: id=%llu => %d peers", |
|
SI_SHRT(si), (unsigned long long)rid, push_count); |
|
return 0; |
|
} |
|
|
|
// ============================================================ |
|
// Send |
|
// ============================================================ |
|
|
|
// Отправляет сообщение узлу через ETCP с заголовком: [ETCP_RT_ID_DB_SYNC:1][hash_be:8][payload]. Возвращает код etcp_send |
|
static int db_sync_send_hash(struct DB_SYNC* db, uint64_t node_id, uint64_t hash, const uint8_t* payload, size_t plen) |
|
{ |
|
struct ll_entry* entry = queue_entry_new(0); |
|
if (!entry) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "queue_entry_new"); return -1; } |
|
uint8_t* buf = u_malloc(plen + 9); |
|
if (!buf) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "db_sync_send_hash: u_malloc(%zu) failed for dst=%016llx", plen + 9, (unsigned long long)node_id); queue_entry_free(entry); return -1; } |
|
buf[0] = ETCP_RT_ID_DB_SYNC; |
|
uint64_t hb = htobe64(hash); |
|
memcpy(buf + 1, &hb, 8); |
|
memcpy(buf + 9, payload, plen); |
|
entry->dgram = buf; |
|
entry->len = plen + 9; |
|
|
|
struct ETCP_CONN* conn = instance_find_conn(db->inst, node_id); |
|
if (!conn || !conn->links_up) { |
|
DEBUG_WARN(DEBUG_CATEGORY_DB_SYNC, "sync: send DROP — no direct conn to %04llX (hash=%016llx, type=%02x, conn=%p lu=%d)", |
|
(unsigned long long)(node_id >> 16), hash, plen > 0 ? payload[0] : 0, |
|
(void*)conn, conn ? conn->links_up : -1); |
|
queue_entry_free(entry); |
|
return -1; |
|
} |
|
int ret = etcp_send(conn, entry); |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync: send OK → etcp_send ret=%d conn=%s l_up=%d init=%d q=%p", |
|
ret, conn->log_name, conn->links_up, conn->initialized, (void*)conn->send_input_q); |
|
return ret; |
|
} |
|
|
|
// Отправляет сообщение через ETCP от имени конкретного инстанса (подставляет хеш инстанса) |
|
static int db_sync_send(struct DB_SYNC_INSTANCE* si, uint64_t dst_node_id, const uint8_t* payload, size_t len) |
|
{ |
|
return db_sync_send_hash(si->db_sync, dst_node_id, si->hash, payload, len); |
|
} |
|
|
|
// ============================================================ |
|
// Delivery chain helpers (local fields) |
|
// ============================================================ |
|
|
|
// Обновляет delivery_chain (добавляет peer_id hex) и счётчик delivered_peers для записи после отправки пиру |
|
static void si_delivery_update(struct DB_SYNC_INSTANCE* si, uint64_t ts, uint64_t author, uint64_t peer_id) |
|
{ |
|
char hex[17]; snprintf(hex, sizeof(hex), "%016llx", (unsigned long long)peer_id); |
|
|
|
sqlite3_stmt* stmt; |
|
if (si_prep(si, &stmt, |
|
"SELECT delivery_chain FROM \"%s\"" |
|
" WHERE timestamp=? AND node_id=?") == SQLITE_OK) |
|
{ |
|
sqlite3_bind_int64(stmt, 1, (sqlite3_int64)ts); |
|
sqlite3_bind_int64(stmt, 2, (sqlite3_int64)author); |
|
if (sqlite3_step(stmt) == SQLITE_ROW) { |
|
const char* dc = (const char*)sqlite3_column_text(stmt, 0); |
|
if (dc && strstr(dc, hex)) { sqlite3_finalize(stmt); return; } |
|
} |
|
sqlite3_finalize(stmt); |
|
} |
|
|
|
if (si_prep(si, &stmt, |
|
"UPDATE \"%s\"" |
|
" SET delivered_peers = delivered_peers + 1," |
|
" delivery_chain = CASE" |
|
" WHEN delivery_chain = '' THEN ?1" |
|
" ELSE delivery_chain || ',' || ?1" |
|
" END" |
|
" WHERE timestamp = ?2 AND author = ?3") == SQLITE_OK) |
|
{ |
|
sqlite3_bind_text(stmt, 1, hex, -1, SQLITE_STATIC); |
|
sqlite3_bind_int64(stmt, 2, (sqlite3_int64)ts); |
|
sqlite3_bind_int64(stmt, 3, (sqlite3_int64)author); |
|
sqlite3_step(stmt); |
|
sqlite3_finalize(stmt); |
|
} |
|
} |
|
|
|
// ============================================================ |
|
// Sync protocol handlers |
|
// ============================================================ |
|
|
|
// Определяет направление инициации синхронизации: узел с бОльшим node_id — мастер |
|
static int is_master(uint64_t a, uint64_t b) { return a > b; } |
|
|
|
// Обрабатывает REQUEST_SYNC: запускает синхронизацию как слейв (мастер сам пришлёт INIT_SYNC) |
|
static void db_handle_request_sync(struct DB_SYNC_INSTANCE* si, uint64_t src, const uint8_t* p, size_t len) |
|
{ |
|
(void)p; (void)len; |
|
struct SI_PEER* sp = si_peer_add(si, src); |
|
if (sp && sp->sync_state != 1) { |
|
sp->sync_state = 1; |
|
sp->sync_start_tb = get_time_tb(); |
|
db_sync_initiate_sync(si, src); |
|
} |
|
} |
|
|
|
// Обрабатывает ERROR от пира: логирует причину, сбрасывает sync_state пира |
|
static void db_handle_error(struct DB_SYNC_INSTANCE* si, uint64_t src, const uint8_t* p, size_t len) |
|
{ |
|
if (len < 1 || !si) return; |
|
const char* what = (p[0] == DB_ERR_NOT_FOUND) ? "NOT_FOUND" : |
|
(p[0] == DB_ERR_DISABLED) ? "DISABLED" : "UNKNOWN"; |
|
DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, |
|
"sync [%s:%04llX] ← ERROR: code=%u (%s) — peer rejected our sync", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), p[0], what); |
|
struct SI_PEER* sp = si_peer_find(si, src); |
|
if (sp) { |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← ERROR: reset sync_state 2→0, synced_pos stays at %u", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), sp->synced_pos); |
|
sp->sync_state = 0; |
|
} |
|
} |
|
|
|
// Обрабатывает INIT_SYNC: сбрасывает pending recalc, определяет точку расхождения (tp), формирует INIT_RESP |
|
// с разреженными хешами (интервалы: 1,1,1,2,2,4,4,4,4,4,4,4,4,4,4,4) и флагом has_tail |
|
static void db_handle_init_sync(struct DB_SYNC_INSTANCE* si, uint64_t src, const uint8_t* p, size_t len) |
|
{ |
|
if (len < 4) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "INIT_SYNC too short %zu from %016llx", len, (unsigned long long)src); return; } |
|
db_sync_flush_recalc(si); |
|
uint32_t pc = *(uint32_t*)p; |
|
uint32_t mc = db_count(si); |
|
uint32_t tp = (pc < mc ? pc : mc); |
|
if (tp > 0) tp--; |
|
uint64_t my_ch8_at_tp = 0; |
|
if (mc > 0) db_chain_hash8_at(si, tp, &my_ch8_at_tp); |
|
uint8_t has_tail = (mc > tp + 1) ? 1 : 0; |
|
static const uint16_t iv[16] = {1, 1, 1, 2, 2, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4}; |
|
uint32_t accum = 0; int sparse_cnt = 0; |
|
for (int i = 0; i < 16; i++) { if (tp < accum + iv[i]) break; accum += iv[i]; sparse_cnt++; } |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← INIT_SYNC: peer=%u my=%u → tp=%u ch8=%016llX has_tail=%u sparse=%d", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), pc, mc, tp, my_ch8_at_tp, has_tail, sparse_cnt); |
|
|
|
uint8_t resp[4096]; |
|
uint32_t off = 0; |
|
resp[off++] = DB_MSG_INIT_RESP; |
|
memcpy(resp + off, &tp, 4); off += 4; |
|
uint64_t my_ch8 = 0; |
|
if (mc > 0) db_chain_hash8_at(si, tp, &my_ch8); |
|
memcpy(resp + off, &my_ch8, 8); off += 8; |
|
resp[off++] = has_tail; |
|
uint32_t sp = off; |
|
off++; |
|
int scnt = 0; |
|
accum = 0; |
|
for (int i = 0; i < 16; i++) { |
|
if (tp < accum + iv[i]) break; |
|
accum += iv[i]; |
|
uint32_t pos = tp - accum; |
|
uint64_t sch8; |
|
if (db_chain_hash8_at(si, pos, &sch8) != 0) break; |
|
if (off + 12 > sizeof(resp)) break; |
|
memcpy(resp + off, &pos, 4); off += 4; |
|
memcpy(resp + off, &sch8, 8); off += 8; |
|
scnt++; |
|
} |
|
resp[sp] = (uint8_t)scnt; |
|
int sret = db_sync_send(si, src, resp, off); |
|
{ |
|
struct SI_PEER* sp = si_peer_add(si, src); |
|
if (sp && sp->sync_state == 0) { sp->sync_state = 1; sp->sync_start_tb = get_time_tb(); } |
|
} |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] → INIT_RESP: sent %u bytes to peer=%016llx ret=%d flow=%u,%u", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), off, (unsigned long long)src, sret, |
|
resp[0], resp[1]); |
|
} |
|
|
|
// Обрабатывает INIT_RESP: сравнивает хеши на точке tp, находит первую расходящуюся позицию, |
|
// отправляет наши данные начиная с неё и запрашивает данные пира с той же позиции |
|
static void db_handle_init_resp(struct DB_SYNC_INSTANCE* si, uint64_t src, const uint8_t* p, size_t len) |
|
{ |
|
if (len < 14) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "INIT_RESP too short %zu from %016llx", len, (unsigned long long)src); return; } |
|
db_sync_flush_recalc(si); |
|
uint32_t tp = *(uint32_t*)p; |
|
uint64_t peer_ch8; memcpy(&peer_ch8, p + 4, 8); |
|
uint8_t has_tail = p[12]; |
|
uint8_t sc = p[13]; |
|
const uint8_t* spr = p + 14; |
|
|
|
uint64_t my_ch8 = 0; |
|
uint32_t mc = db_count(si); |
|
if (mc > 0 && tp < mc) db_chain_hash8_at(si, tp, &my_ch8); |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← INIT_RESP: tp=%u my=%u my_ch8=%016llX peer_ch8=%016llX has_tail=%u sc=%d", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), tp, mc, my_ch8, peer_ch8, has_tail, sc); |
|
|
|
struct SI_PEER* sp = si_peer_find(si, src); |
|
|
|
// Peer empty → send ALL our data, then SYNC_DONE will be sent from DATA handler when slave responds |
|
if (peer_ch8 == 0 && sc == 0) { |
|
uint32_t vp = (uint32_t)-1; if (sp) sp->verified_pos = vp; |
|
uint32_t sent = 0; |
|
while (sent < mc) { |
|
uint32_t b = mc - sent; if (b > DB_SEND_DATA_MAX) b = DB_SEND_DATA_MAX; |
|
uint32_t want = (sent + b >= mc) ? mc : DB_WANT_FROM_NONE; |
|
if (si_send_data_batch(si, src, sent, b, vp, want) <= 0) break; |
|
sent += b; |
|
} |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← INIT_RESP: peer empty → sent %u/%u records, awaiting response", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), sent, mc); |
|
return; |
|
} |
|
|
|
// Exact match: same hash at tp |
|
if (my_ch8 == peer_ch8) { |
|
if (!has_tail && mc <= tp + 1) { |
|
if (sp) { sp->verified_pos = tp; sp->synced_pos = tp; sp->sync_state = 2; sp->sync_start_tb = 0; } |
|
uint8_t sd[13]; sd[0] = DB_MSG_SYNC_DONE; |
|
memcpy(sd + 1, &mc, 4); memcpy(sd + 5, &my_ch8, 8); |
|
db_sync_send(si, src, sd, 13); |
|
si_fire_sync_done(si, src); |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← INIT_RESP: MATCH+no_tail ss→2 → SYNC_DONE tp=%u", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), tp); |
|
return; |
|
} |
|
// Has tail (slave or us): send our records after tp, request peer's after tp |
|
uint32_t vp = tp; if (sp) sp->verified_pos = vp; |
|
uint32_t rfrom = tp + 1; |
|
uint32_t scnt = mc - rfrom; if (scnt > DB_SEND_DATA_MAX) scnt = DB_SEND_DATA_MAX; |
|
if (scnt > 0) si_send_data_batch(si, src, rfrom, scnt, vp, rfrom); |
|
else si_send_data_batch(si, src, rfrom, 0, vp, rfrom); |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← INIT_RESP: MATCH+tail → SEND_DATA from=%u want=%u", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), rfrom, rfrom); |
|
return; |
|
} |
|
|
|
// Mismatch: find first divergent position |
|
uint32_t fm = tp; |
|
for (int i = 0; i < sc && spr + 12 <= p + len; i++) { |
|
uint32_t pos = *(uint32_t*)spr; uint64_t pch8; memcpy(&pch8, spr + 4, 8); spr += 12; |
|
uint64_t mch8; |
|
if (db_chain_hash8_at(si, pos, &mch8) == 0) { |
|
if (mch8 != pch8 && pos < fm) fm = pos; |
|
} else if (pos < fm) fm = pos; |
|
} |
|
uint32_t vp = fm > 0 ? fm - 1 : (uint32_t)-1; if (sp) sp->verified_pos = vp; |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← INIT_RESP: MISMATCH fm=%u vp=%u mc=%u", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), fm, vp, mc); |
|
|
|
// Send our records from fm, request peer's from fm |
|
uint32_t scnt = mc - fm; if (scnt > DB_SEND_DATA_MAX) scnt = DB_SEND_DATA_MAX; |
|
if (scnt > 0) si_send_data_batch(si, src, fm, scnt, vp, fm); |
|
else si_send_data_batch(si, src, fm, 0, vp, fm); |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] → SEND_DATA from=%u vp=%u cnt=%u want=%u", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), fm, vp, scnt, fm); |
|
} |
|
|
|
// ---- SEND_DATA batch helper ---- |
|
// Wire: [from:4][count:2][vp:4][want_from:4][records...] |
|
// Record: [id:8][ts:8][node_id:8][dlen:4][data][sig_len:1=64][sig:64] |
|
// Returns: number of records sent, or -1 on SQL error |
|
// Формирует и отправляет батч записей (до 32) в формате SEND_DATA: |
|
// [from:4][count:2][vp:4][want_from:4][records...]. Возвращает количество отправленных записей |
|
static int si_send_data_batch(struct DB_SYNC_INSTANCE* si, uint64_t dst, uint32_t from, uint32_t count, uint32_t vp, uint32_t want_from) |
|
{ |
|
uint8_t sbuf[8192]; uint8_t* buf = sbuf; |
|
|
|
uint32_t off = 0; |
|
buf[off++] = DB_MSG_SEND_DATA; |
|
memcpy(buf + off, &from, 4); off += 4; |
|
uint16_t rc = 0; |
|
uint16_t* rcp = (uint16_t*)(buf + off); off += 2; |
|
memcpy(buf + off, &vp, 4); off += 4; |
|
memcpy(buf + off, &want_from, 4); off += 4; // NEW: request peer's data from this position, DB_WANT_FROM_NONE=none |
|
|
|
if (count > 0) { |
|
sqlite3_stmt* stmt; |
|
if (si_prep(si, &stmt, |
|
"SELECT id,timestamp,node_id,data,author_signature" |
|
" FROM \"%s\" ORDER BY timestamp, author_signature" |
|
" LIMIT ? OFFSET ?") != SQLITE_OK) return -1; |
|
sqlite3_bind_int64(stmt, 1, (sqlite3_int64)count); |
|
sqlite3_bind_int64(stmt, 2, (sqlite3_int64)from); |
|
int bad_del = 0; |
|
while (sqlite3_step(stmt) == SQLITE_ROW) { |
|
uint64_t rid = (uint64_t)sqlite3_column_int64(stmt, 0); |
|
uint64_t rts = (uint64_t)sqlite3_column_int64(stmt, 1); |
|
uint64_t rauth = (uint64_t)sqlite3_column_int64(stmt, 2); |
|
const uint8_t* rd = (const uint8_t*)sqlite3_column_blob(stmt, 3); |
|
uint32_t rdl = (uint32_t)sqlite3_column_bytes(stmt, 3); if (!rd) rdl = 0; |
|
const uint8_t* rsig = (const uint8_t*)sqlite3_column_blob(stmt, 4); |
|
int rsl = sqlite3_column_bytes(stmt, 4); if (!rsig) rsl = 0; |
|
if (rsl == DB_SIG_SIZE && db_verify_author_sig(si, rts, rauth, (const char*)rd, rdl, rsig) != 0) { |
|
uint32_t del_pos = si_find_pos(si, rts, rsig); |
|
sqlite3_stmt* del; |
|
if (si_prep(si, &del, "DELETE FROM \"%s\" WHERE timestamp=? AND author_signature=?") == SQLITE_OK) { |
|
sqlite3_bind_int64(del, 1, (sqlite3_int64)rts); |
|
sqlite3_bind_blob(del, 2, rsig, DB_SIG_SIZE, SQLITE_STATIC); |
|
sqlite3_step(del); sqlite3_finalize(del); |
|
db_sync_schedule_recalc(si, del_pos); bad_del++; |
|
} |
|
continue; |
|
} |
|
int rec_sz = 28 + rdl + 1 + rsl; |
|
if (off + rec_sz > 8000) break; |
|
memcpy(buf + off, &rid, 8); off += 8; |
|
memcpy(buf + off, &rts, 8); off += 8; |
|
memcpy(buf + off, &rauth, 8); off += 8; |
|
memcpy(buf + off, &rdl, 4); off += 4; |
|
if (rdl > 0) { memcpy(buf + off, rd, rdl); off += rdl; } |
|
buf[off++] = (uint8_t)rsl; |
|
if (rsl > 0) { memcpy(buf + off, rsig, rsl); off += rsl; } |
|
rc++; |
|
} |
|
sqlite3_finalize(stmt); |
|
if (rc == 0 && bad_del == 0) |
|
DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] SEND_DATA: 0 records from=%u count=%u", |
|
SI_SHRT(si), (unsigned long long)(dst >> 16), from, count); |
|
} |
|
|
|
*rcp = rc; |
|
db_sync_send(si, dst, buf, off); |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] → SEND_DATA: %u recs from=%u want=%u vp=%u", |
|
SI_SHRT(si), (unsigned long long)(dst >> 16), rc, from, want_from, vp); |
|
return (int)rc; |
|
} |
|
|
|
// ---- Parse one record from SEND_DATA/PUSH wire format ---- |
|
// Wire: [id:8][ts:8][author:8][dlen:4][data][sig_len:1][sig] |
|
// Разбирает одну запись из бинарного формата: [id:8][ts:8][author:8][dlen:4][data][sig_len:1][sig] |
|
// Продвигает указатель *pp, возвращает 0 при успехе, -1 при ошибке парсинга |
|
static int si_parse_record(const uint8_t** pp, const uint8_t* end, |
|
uint64_t* rid, uint64_t* rts, uint64_t* rauthor, |
|
uint32_t* rdlen, const uint8_t** rdata, |
|
const uint8_t** rsig, int* rsiglen) |
|
{ |
|
if (*pp + 28 > end) { DEBUG_WARN(DEBUG_CATEGORY_DB_SYNC, "si_parse_record: truncated header, need 28 have %td", end - *pp); return -1; } |
|
*rid = *(uint64_t*)*pp; *pp += 8; |
|
*rts = *(uint64_t*)*pp; *pp += 8; |
|
*rauthor = *(uint64_t*)*pp; *pp += 8; |
|
*rdlen = *(uint32_t*)*pp; *pp += 4; |
|
|
|
if (*pp + *rdlen > end) { DEBUG_WARN(DEBUG_CATEGORY_DB_SYNC, "si_parse_record: data overrun dlen=%u have=%td", *rdlen, end - *pp); return -1; } |
|
*rdata = (*rdlen > 0) ? *pp : NULL; |
|
*pp += *rdlen; |
|
|
|
if (*pp + 1 > end) { DEBUG_WARN(DEBUG_CATEGORY_DB_SYNC, "si_parse_record: sig_len overrun"); return -1; } |
|
*rsiglen = (int)(*(*pp)++); |
|
if (*rsiglen > 0) { |
|
if (*pp + *rsiglen > end) { DEBUG_WARN(DEBUG_CATEGORY_DB_SYNC, "si_parse_record: sig data overrun slen=%d have=%td", *rsiglen, end - *pp); return -1; } |
|
*rsig = *pp; |
|
*pp += *rsiglen; |
|
} else { |
|
*rsig = NULL; |
|
} |
|
return 0; |
|
} |
|
|
|
// ---- Atomic SEND_DATA exchange ---- |
|
// Обрабатывает SEND_DATA: вставляет полученные записи (до 32), проверяет подписи, |
|
// корректирует synced_pos, при want_from шлёт встречные данные |
|
static void db_handle_send_data(struct DB_SYNC_INSTANCE* si, uint64_t src, const uint8_t* p, size_t len) |
|
{ |
|
if (len < 14) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← SEND_DATA: truncated len=%zu (need >=14)", SI_SHRT(si), (unsigned long long)(src >> 16), len); return; } |
|
db_sync_flush_recalc(si); |
|
uint32_t from = *(uint32_t*)p; |
|
uint16_t count = *(uint16_t*)(p + 4); |
|
uint32_t vp = *(uint32_t*)(p + 6); |
|
uint32_t want_from = *(uint32_t*)(p + 10); |
|
|
|
struct SI_PEER* sp = si_peer_find(si, src); |
|
|
|
const uint8_t* ptr = p + 14; |
|
uint16_t received = 0, duplicates = 0, bad_sigs = 0; |
|
for (uint16_t i = 0; i < count && i < 32; i++) { |
|
uint64_t rid, rts, rauthor; uint32_t rdlen; const uint8_t* rdata, *rsig; int rsiglen; |
|
if (si_parse_record(&ptr, p + len, &rid, &rts, &rauthor, &rdlen, &rdata, &rsig, &rsiglen) != 0) break; |
|
int ret = db_record_insert_cascade(si, rid, rts, rauthor, (const char*)rdata, rdlen, rsig, src, NULL); |
|
if (ret >= 0) received++; |
|
if (ret == 1) duplicates++; |
|
if (ret == -2) bad_sigs++; |
|
} |
|
|
|
uint32_t old_spos = sp ? sp->synced_pos : 0; |
|
if (received > 0) { |
|
uint32_t rst = (from < old_spos) ? from : old_spos; |
|
if (sp) sp->synced_pos = from + (count - bad_sigs) - 1; |
|
for (int j = 0; j < si->peer_count; j++) |
|
if (si->peers[j].synced_pos >= rst && &si->peers[j] != sp) |
|
si->peers[j].synced_pos = rst > 0 ? rst - 1 : 0; |
|
} |
|
|
|
char extra[32] = ""; if (duplicates) snprintf(extra, sizeof(extra), " (%u dup)", duplicates); |
|
if (bad_sigs) { size_t el = strlen(extra); snprintf(extra+el, sizeof(extra)-el, "%s%u bad", extra[0]?", ":" (", bad_sigs); } |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← DATA: from=%u cnt=%u vp=%u want=%u → ins=%u%s mc=%u sp=%u→%u", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), from, count, vp, want_from, received, extra, db_count(si), |
|
old_spos, sp ? sp->synced_pos : 0); |
|
|
|
// Respond with our data if peer requested (want_from != DB_WANT_FROM_NONE) |
|
if (want_from != DB_WANT_FROM_NONE) { |
|
uint32_t mc = db_count(si); |
|
if (want_from < mc) { |
|
uint32_t scnt = mc - want_from; if (scnt > DB_SEND_DATA_MAX) scnt = DB_SEND_DATA_MAX; |
|
si_send_data_batch(si, src, want_from, scnt, vp, DB_WANT_FROM_NONE); |
|
} else { |
|
si_send_data_batch(si, src, want_from, 0, vp, DB_WANT_FROM_NONE); |
|
} |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← DATA: responded with %u recs from=%u", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), want_from < mc ? (mc - want_from > DB_SEND_DATA_MAX ? DB_SEND_DATA_MAX : mc - want_from) : 0, want_from); |
|
} |
|
|
|
// If slave responded with want=DB_WANT_FROM_NONE and we are in active sync — complete the exchange with SYNC_DONE |
|
if (want_from == DB_WANT_FROM_NONE && sp && sp->sync_state == 1) { |
|
uint32_t mc = db_count(si); |
|
uint64_t mch8 = 0; if (mc > 0) db_chain_hash8_at(si, mc - 1, &mch8); |
|
uint8_t sd[13]; sd[0] = DB_MSG_SYNC_DONE; |
|
memcpy(sd + 1, &mc, 4); memcpy(sd + 5, &mch8, 8); |
|
db_sync_send(si, src, sd, 13); |
|
sp->sync_state = 2; sp->sync_start_tb = 0; |
|
si_fire_sync_done(si, src); |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← DATA: exchange complete, → SYNC_DONE mc=%u", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), mc); |
|
} |
|
|
|
} |
|
|
|
// Обрабатывает SYNC_DONE: финальная сверка хешей. mc==pc → sync завершён, mc<pc → запрашиваем хвост, mc>pc → отправляем хвост |
|
static void db_handle_sync_done(struct DB_SYNC_INSTANCE* si, uint64_t src, const uint8_t* p, size_t len) |
|
{ |
|
if (len < 12) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "SYNC_DONE too short %zu from %016llx", len, (unsigned long long)src); return; } |
|
db_sync_flush_recalc(si); |
|
uint32_t pc = *(uint32_t*)p; |
|
uint64_t pch8; memcpy(&pch8, p + 4, 8); |
|
uint32_t mc = db_count(si); |
|
uint64_t mch8 = 0; if (mc > 0) db_chain_hash8_at(si, mc - 1, &mch8); |
|
struct SI_PEER* sp = si_peer_find(si, src); |
|
|
|
if (mc == pc && mch8 == pch8) { |
|
if (sp) { sp->synced_pos = mc > 0 ? mc - 1 : 0; sp->sync_state = 2; sp->sync_start_tb = 0; } |
|
si_fire_sync_done(si, src); |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← SYNC_DONE: matched ✓ mc=%u ss→2", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), mc); |
|
} else if (mc < pc) { |
|
// Request tail |
|
uint32_t vp_send = mc > 0 ? mc - 1 : (uint32_t)-1; |
|
uint8_t req[14]; req[0] = DB_MSG_SEND_DATA; |
|
memcpy(req + 1, &mc, 4); uint16_t z = 0; memcpy(req + 5, &z, 2); |
|
memcpy(req + 7, &vp_send, 4); memcpy(req + 11, &mc, 4); |
|
db_sync_send(si, src, req, 14); |
|
if (sp) sp->sync_state = 1; |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← SYNC_DONE: mc=%u < pc=%u → request tail from=%u", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), mc, pc, mc); |
|
} else if (mc > pc) { |
|
// mc > pc: send tail |
|
if (sp) sp->last_peer_count = pc; |
|
uint32_t scnt = mc - pc; if (scnt > DB_SEND_DATA_MAX) scnt = DB_SEND_DATA_MAX; |
|
si_send_data_batch(si, src, pc, scnt, pc > 0 ? pc - 1 : (uint32_t)-1, DB_WANT_FROM_NONE); |
|
if (sp) sp->sync_state = 1; |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← SYNC_DONE: mc=%u > pc=%u → send tail from=%u", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), mc, pc, pc); |
|
} else { |
|
// mc == pc but chain hash differs — accept as converged |
|
if (sp) { sp->synced_pos = mc > 0 ? mc - 1 : 0; sp->sync_state = 2; sp->sync_start_tb = 0; } |
|
si_fire_sync_done(si, src); |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← SYNC_DONE: mc=%u == pc=%u (hash !match) → accept as converged", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), mc, pc); |
|
} |
|
} |
|
|
|
// Обрабатывает ACK_PUSH: помечает запись флагом DB_REC_FLAG_WAS_SENT и обновляет delivery_chain |
|
static void db_handle_ack_push(struct DB_SYNC_INSTANCE* si, uint64_t src, const uint8_t* p, size_t len) |
|
{ |
|
if (len < 16) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← PUSH ACK: truncated len=%zu (need >=16)", SI_SHRT(si), (unsigned long long)(src >> 16), len); return; } |
|
uint64_t ts = *(uint64_t*)p; |
|
uint64_t author = *(uint64_t*)(p + 8); |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "from=%016llx ts=%llu author=%016llx", (unsigned long long)src, (unsigned long long)ts, (unsigned long long)author); |
|
|
|
sqlite3_stmt* stmt; |
|
if (si_prep(si, &stmt, |
|
"UPDATE \"%s\" SET flags = flags | 1" |
|
" WHERE timestamp=? AND node_id=?" |
|
" AND node_id=? AND (flags & 1) = 0") == SQLITE_OK) |
|
{ |
|
sqlite3_bind_int64(stmt, 1, (sqlite3_int64)ts); |
|
sqlite3_bind_int64(stmt, 2, (sqlite3_int64)author); |
|
sqlite3_bind_int64(stmt, 3, (sqlite3_int64)si->db_sync->inst->node_id); |
|
sqlite3_step(stmt); |
|
int changed = sqlite3_changes(SI_DB(si)); |
|
sqlite3_finalize(stmt); |
|
if (changed > 0) |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← PUSH ACK: ts=%llu — delivery confirmed by peer", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), (unsigned long long)ts); |
|
} |
|
si_delivery_update(si, ts, author, src); |
|
} |
|
|
|
// Обрабатывает PUSH: вставляет новую запись от пира, шлёт ACK_PUSH, корректирует synced_pos остальных пиров |
|
// если запись вставлена не в конец (в середину) |
|
static void db_handle_push(struct DB_SYNC_INSTANCE* si, uint64_t src, const uint8_t* p, size_t len) |
|
{ |
|
if (len < 30) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← PUSH: truncated len=%zu (need >=30)", SI_SHRT(si), (unsigned long long)(src >> 16), len); return; } |
|
const uint8_t* ptr = p; |
|
uint64_t rid, rts, rauthor; |
|
uint32_t rdlen; |
|
const uint8_t* rdata, *rsig; |
|
int rsiglen; |
|
if (si_parse_record(&ptr, p + len, &rid, &rts, &rauthor, &rdlen, &rdata, &rsig, &rsiglen) != 0) return; |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "from=%016llx id=%llu author=%016llx ts=%llu len=%u", (unsigned long long)src, (unsigned long long)rid, (unsigned long long)rauthor, (unsigned long long)rts, rdlen); |
|
|
|
int ret = db_record_insert_cascade(si, rid, rts, rauthor, (const char*)rdata, rdlen, rsig, src, NULL); |
|
if (ret == 0) { |
|
uint32_t ins_pos = si_find_pos(si, rts, rsig); |
|
uint32_t total = db_count(si); |
|
int adj_count = 0; |
|
for (int j = 0; j < si->peer_count; j++) { |
|
if (si->peers[j].synced_pos >= ins_pos) { si->peers[j].synced_pos = ins_pos > 0 ? ins_pos - 1 : 0; adj_count++; } |
|
} |
|
uint8_t ack[17]; |
|
ack[0] = DB_MSG_ACK_PUSH; |
|
memcpy(ack + 1, &rts, 8); |
|
memcpy(ack + 9, &rauthor, 8); |
|
db_sync_send(si, src, ack, 17); |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← PUSH: msg id=%llu author=%016llX ts=%llu → inserted at pos=%u (of %u total)", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), |
|
(unsigned long long)rid, (unsigned long long)rauthor, (unsigned long long)rts, ins_pos, total); |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:%04llX] ← PUSH: msg id=%llu author=%016llX ts=%llu → inserted at pos=%u (of %u total)", |
|
SI_SHRT(si), (unsigned long long)(src >> 16), |
|
(unsigned long long)rid, (unsigned long long)rauthor, (unsigned long long)rts, ins_pos, total); |
|
if (adj_count > 0 && ins_pos < total - 1) { |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync [%s:----] PUSH: inserted at pos=%u NOT at tail → reset synced_pos of %d peers from ≥%u back to %u", |
|
SI_SHRT(si), ins_pos, adj_count, ins_pos, ins_pos > 0 ? ins_pos - 1 : 0); |
|
} |
|
} |
|
} |
|
|
|
// ============================================================ |
|
// Receive callback |
|
// ============================================================ |
|
|
|
// Главный колбэк приёма ETCP: извлекает хеш инстанса и тип сообщения, находит/создаёт инстанс, |
|
// маршрутизирует в соответствующий обработчик (INIT_SYNC, INIT_RESP, SEND_DATA, PUSH, ACK_PUSH, SYNC_DONE, ERROR, REQUEST_SYNC) |
|
static void db_sync_recv_cb(struct ETCP_CONN* conn, struct ll_entry* entry) |
|
{ |
|
if (!entry || entry->len < 10) { if (entry) { queue_dgram_free(entry); queue_entry_free(entry); } return; } |
|
struct DB_SYNC* db = conn ? conn->instance->db_sync : NULL; |
|
if (!db || !db->enabled) { queue_dgram_free(entry); queue_entry_free(entry); return; } |
|
|
|
uint64_t src = conn ? conn->peer_node_id : 0; |
|
uint64_t hash = be64toh(*(uint64_t*)(entry->dgram + 1)); |
|
uint8_t type = entry->dgram[9]; |
|
const uint8_t* payload = entry->dgram + 10; |
|
size_t plen = entry->len - 10; |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "recv type=%02x from=%016llx hash=%016llx len=%zu", type, (unsigned long long)src, (unsigned long long)hash, plen); |
|
|
|
struct DB_SYNC_INSTANCE* si = db_instance_find(db, hash); |
|
if (!si) { |
|
/* lazy-register: find table msg_<ch_id> with matching SHA256 */ |
|
sqlite3_stmt* st = NULL; |
|
if (sqlite3_prepare_v2(db->db, |
|
"SELECT name, substr(name,5) FROM sqlite_master WHERE type='table' AND name LIKE 'msg_%'", |
|
-1, &st, NULL) == SQLITE_OK) { |
|
while (sqlite3_step(st) == SQLITE_ROW) { |
|
const char* tbl = (const char*)sqlite3_column_text(st, 0); |
|
const char* ch_id = (const char*)sqlite3_column_text(st, 1); |
|
if (!ch_id || !ch_id[0]) continue; |
|
uint64_t h; { uint8_t sh[32]; SHA256((const uint8_t*)ch_id, strlen(ch_id), sh); memcpy(&h, sh, 8); } |
|
if (h == hash) { |
|
si = db_sync_instance_add(db->inst, tbl, hash, 1); |
|
if (si) { si_peer_add(si, src); } |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "lazy-register: tbl=%s ch=%s hash=%016llx", tbl, ch_id, (unsigned long long)hash); |
|
break; |
|
} |
|
} |
|
sqlite3_finalize(st); |
|
} |
|
if (!si) { |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, |
|
"recv msg type=0x%02x from %016llx hash=%016llx — instance NOT FOUND; sending DB_ERR_NOT_FOUND", |
|
type, (unsigned long long)src, (unsigned long long)hash); |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "→ instance not found for hash=%016llx", (unsigned long long)hash); |
|
uint8_t err[2]; err[0] = DB_MSG_ERROR; err[1] = DB_ERR_NOT_FOUND; |
|
db_sync_send_hash(db, src, hash, err, 2); |
|
queue_dgram_free(entry); queue_entry_free(entry); return; |
|
} |
|
} |
|
if (!si->enabled) { |
|
uint8_t err[2]; err[0] = DB_MSG_ERROR; err[1] = DB_ERR_DISABLED; |
|
db_sync_send_hash(db, src, hash, err, 2); |
|
queue_dgram_free(entry); queue_entry_free(entry); return; |
|
} |
|
|
|
switch (type) { |
|
case DB_MSG_INIT_SYNC: DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "→ handle INIT_SYNC"); db_handle_init_sync(si, src, payload, plen); break; |
|
case DB_MSG_INIT_RESP: DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "→ handle INIT_RESP"); db_handle_init_resp(si, src, payload, plen); break; |
|
case DB_MSG_SEND_DATA: DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "→ handle SEND_DATA"); db_handle_send_data(si, src, payload, plen); break; |
|
case DB_MSG_PUSH: DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "→ handle PUSH"); db_handle_push(si, src, payload, plen); break; |
|
case DB_MSG_ACK_PUSH: DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "→ handle ACK_PUSH"); db_handle_ack_push(si, src, payload, plen); break; |
|
case DB_MSG_REQUEST_SYNC: DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "→ handle REQUEST_SYNC"); db_handle_request_sync(si, src, payload, plen); break; |
|
case DB_MSG_SYNC_DONE: DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "→ handle SYNC_DONE"); db_handle_sync_done(si, src, payload, plen); break; |
|
case DB_MSG_ERROR: DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "→ handle ERROR"); db_handle_error(si, src, payload, plen); break; |
|
default: |
|
DEBUG_WARN(DEBUG_CATEGORY_DB_SYNC, "sync: unknown msg type 0x%02x from %04llX (hash=%016llx) — dropped", |
|
type, (unsigned long long)(src >> 16), hash); |
|
break; |
|
} |
|
queue_dgram_free(entry); |
|
queue_entry_free(entry); |
|
} |
|
|
|
// ============================================================ |
|
// Connection callbacks |
|
// ============================================================ |
|
|
|
// Маршрутизирует статус соединения (UP/DOWN) в соответствующие обработчики |
|
static void db_sync_on_conn_status(struct ETCP_CONN* conn, int status, void* arg) { |
|
switch (status) { |
|
case ETCP_CONN_STATUS_UP: db_sync_on_conn_up(conn, arg); break; |
|
case ETCP_CONN_STATUS_DOWN: db_sync_on_conn_down(conn, arg); break; |
|
default: break; |
|
} |
|
} |
|
|
|
// При поднятии соединения с пиром: для всех активных инстансов добавляет пира и запускает синхронизацию |
|
static void db_sync_on_conn_up(struct ETCP_CONN* conn, void* arg) |
|
{ |
|
(void)arg; |
|
if (!conn || !conn->instance || !conn->instance->db_sync) return; |
|
struct DB_SYNC* db = conn->instance->db_sync; |
|
if (!db->enabled) return; |
|
uint64_t pid = conn->peer_node_id; |
|
if (pid == 0 || pid == db->inst->node_id) return; |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "peer=%016llx init=%d links=%d", (unsigned long long)pid, conn->initialized, conn->links_up); |
|
|
|
db->last_connected_tb = get_time_tb(); |
|
int synced = 0; |
|
char tbl_list[256] = ""; |
|
for (int i = 0; i < db->instance_count; i++) { |
|
struct DB_SYNC_INSTANCE* si = &db->instances[i]; |
|
if (!si->enabled) continue; |
|
struct SI_PEER* p = si_peer_add(si, pid); |
|
if (!p) continue; |
|
if (p->sync_state != 0) continue; |
|
if (!conn->initialized || !conn->links_up) continue; |
|
{ uint8_t ek[32]; if (db_get_ed25519_pubkey(db, pid, ek) != 0) continue; } |
|
p->sync_state = 1; |
|
db_sync_initiate_sync(si, pid); |
|
synced++; |
|
if (tbl_list[0]) { size_t tl = strlen(tbl_list); snprintf(tbl_list + tl, sizeof(tbl_list) - tl, ",%s", SI_SHRT(si)); } |
|
else snprintf(tbl_list, sizeof(tbl_list), "%s", SI_SHRT(si)); |
|
} |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync: CONN UP peer=%04llX → %d tables: [%s] — initiating sync for %d", |
|
(unsigned long long)(pid >> 16), db->instance_count, synced > 0 ? tbl_list : "none", synced); |
|
} |
|
|
|
// При разрыве соединения с пиром: сбрасывает sync_state для всех инстансов, если нет других активных пиров — обнуляет last_connected_tb |
|
static void db_sync_on_conn_down(struct ETCP_CONN* conn, void* arg) |
|
{ |
|
(void)arg; |
|
if (!conn || !conn->instance || !conn->instance->db_sync) return; |
|
struct DB_SYNC* db = conn->instance->db_sync; |
|
if (!db->enabled) return; |
|
uint64_t pid = conn->peer_node_id; |
|
if (pid == 0) return; |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "peer=%016llx", (unsigned long long)pid); |
|
|
|
for (int i = 0; i < db->instance_count; i++) { |
|
struct SI_PEER* p = si_peer_find(&db->instances[i], pid); |
|
if (p) p->sync_state = 0; |
|
} |
|
|
|
int any = 0; |
|
for (int i = 0; i < db->instance_count; i++) { |
|
for (int j = 0; j < db->instances[i].peer_count; j++) { |
|
if (db->instances[i].peers[j].sync_state >= 1) { any = 1; goto cd_done; } |
|
} |
|
} |
|
cd_done: |
|
if (!any) db->last_connected_tb = 0; |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync: CONN DOWN peer=%04llX → reset sync state for %d tables", |
|
(unsigned long long)(pid >> 16), db->instance_count); |
|
} |
|
|
|
// ============================================================ |
|
// Initiate sync |
|
// ============================================================ |
|
|
|
// Запускает синхронизацию: мастер шлёт INIT_SYNC со своим количеством записей, слейв шлёт REQUEST_SYNC |
|
static void db_sync_initiate_sync(struct DB_SYNC_INSTANCE* si, uint64_t pid) |
|
{ |
|
uint32_t mc = db_count(si); |
|
uint64_t my_id = si->db_sync->inst->node_id; |
|
struct SI_PEER* p = si_peer_find(si, pid); |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "pid=%016llx my=%u tbl=%s", (unsigned long long)pid, mc, SI_TBL(si)); |
|
|
|
if (is_master(my_id, pid)) { |
|
if (p) { p->sync_start_tb = get_time_tb(); p->sync_state = 1; } |
|
uint8_t msg[5]; |
|
msg[0] = DB_MSG_INIT_SYNC; |
|
memcpy(msg + 1, &mc, 4); |
|
db_sync_send(si, pid, msg, 5); |
|
} else { |
|
if (p) { p->sync_state = 1; } |
|
uint8_t msg[1] = { DB_MSG_REQUEST_SYNC }; |
|
db_sync_send(si, pid, msg, 1); |
|
} |
|
} |
|
|
|
// Проверяет целостность цепочки хешей всей таблицы, при несовпадении запускает пересчёт с позиции ошибки |
|
static void db_verify_chain(struct DB_SYNC_INSTANCE* si) |
|
{ |
|
uint32_t mc = db_count(si); |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "tbl=%s mc=%u", SI_TBL(si), mc); |
|
if (mc == 0) return; |
|
|
|
uint8_t prev_ch[32]; memset(prev_ch, 0, 32); |
|
uint8_t exp_ch[32], stored_ch[32]; |
|
int bad_pos = -1; |
|
|
|
sqlite3_stmt* stmt; |
|
if (si_prep(si, &stmt, |
|
"SELECT id,timestamp,node_id,author_signature,chain_hash FROM \"%s\"" |
|
" ORDER BY timestamp, author_signature") != SQLITE_OK) |
|
return; |
|
for (uint32_t pos = 0; sqlite3_step(stmt) == SQLITE_ROW; pos++) { |
|
uint64_t rid = (uint64_t)sqlite3_column_int64(stmt, 0); |
|
uint64_t rts = (uint64_t)sqlite3_column_int64(stmt, 1); |
|
uint64_t rauth = (uint64_t)sqlite3_column_int64(stmt, 2); |
|
const void* sig_blob = sqlite3_column_blob(stmt, 3); |
|
uint8_t sig[DB_SIG_SIZE]; |
|
if (sig_blob) memcpy(sig, sig_blob, DB_SIG_SIZE); else memset(sig, 0, DB_SIG_SIZE); |
|
const void* b = sqlite3_column_blob(stmt, 4); |
|
if (b && sqlite3_column_bytes(stmt, 4) >= 32) memcpy(stored_ch, b, 32); |
|
else memset(stored_ch, 0, 32); |
|
|
|
db_chain_hash_compute(prev_ch, rid, rts, rauth, sig, exp_ch); |
|
if (memcmp(exp_ch, stored_ch, 32) != 0) { bad_pos = (int)pos; break; } |
|
memcpy(prev_ch, exp_ch, 32); |
|
} |
|
sqlite3_finalize(stmt); |
|
|
|
if (bad_pos >= 0) { |
|
DEBUG_WARN(DEBUG_CATEGORY_DB_SYNC, "chain_hash mismatch at pos %d/%u in %s, recalculating", |
|
bad_pos, mc, SI_TBL(si)); |
|
db_sync_schedule_recalc(si, (uint32_t)bad_pos); |
|
} |
|
} |
|
|
|
// Публичная проверка целостности цепных хешей: возвращает 0 если всё верно, 1 при несовпадении, -1 при ошибке |
|
int db_sync_chain_verify(struct DB_SYNC_INSTANCE* si) |
|
{ |
|
if (!si || !si->enabled) return 0; |
|
db_sync_flush_recalc(si); |
|
uint32_t mc = db_count(si); |
|
if (mc == 0) return 0; |
|
|
|
uint8_t prev_ch[32]; memset(prev_ch, 0, 32); |
|
uint8_t exp_ch[32], stored_ch[32]; |
|
|
|
sqlite3_stmt* stmt; |
|
if (si_prep(si, &stmt, |
|
"SELECT id,timestamp,node_id,author_signature,chain_hash FROM \"%s\"" |
|
" ORDER BY timestamp, author_signature") != SQLITE_OK) |
|
return -1; |
|
for (uint32_t pos = 0; sqlite3_step(stmt) == SQLITE_ROW; pos++) { |
|
uint64_t rid = (uint64_t)sqlite3_column_int64(stmt, 0); |
|
uint64_t rts = (uint64_t)sqlite3_column_int64(stmt, 1); |
|
uint64_t rauth = (uint64_t)sqlite3_column_int64(stmt, 2); |
|
const void* sig_blob = sqlite3_column_blob(stmt, 3); |
|
uint8_t sig[DB_SIG_SIZE]; |
|
if (sig_blob) memcpy(sig, sig_blob, DB_SIG_SIZE); else memset(sig, 0, DB_SIG_SIZE); |
|
const void* b = sqlite3_column_blob(stmt, 4); |
|
if (b && sqlite3_column_bytes(stmt, 4) >= 32) memcpy(stored_ch, b, 32); |
|
else memset(stored_ch, 0, 32); |
|
|
|
db_chain_hash_compute(prev_ch, rid, rts, rauth, sig, exp_ch); |
|
if (memcmp(exp_ch, stored_ch, 32) != 0) { sqlite3_finalize(stmt); return 1; } |
|
memcpy(prev_ch, exp_ch, 32); |
|
} |
|
sqlite3_finalize(stmt); |
|
return 0; |
|
} |
|
|
|
// Устанавливает состояние синхронизации пира (для тестов) |
|
void db_sync_peer_set_state(struct DB_SYNC_INSTANCE* si, uint64_t node_id, uint8_t state) |
|
{ |
|
struct SI_PEER* p = si_peer_find(si, node_id); |
|
if (p) p->sync_state = state; |
|
} |
|
|
|
// Принудительно перезапускает синхронизацию с указанным пиром (для тестов) |
|
void db_sync_reinitiate(struct DB_SYNC_INSTANCE* si, uint64_t node_id) |
|
{ |
|
struct SI_PEER* p = si_peer_find(si, node_id); |
|
if (p) { |
|
p->sync_state = 1; p->sync_start_tb = get_time_tb(); |
|
db_sync_initiate_sync(si, node_id); |
|
} |
|
} |
|
|
|
// Возвращает последний chain_hash8 (для сверки синхронизации в тестах) |
|
int db_sync_last_chain_hash8(struct DB_SYNC_INSTANCE* si, uint64_t* out_hash8) |
|
{ |
|
if (!si || !out_hash8) return -1; |
|
db_sync_flush_recalc(si); |
|
uint32_t mc = db_count(si); |
|
if (mc == 0) { *out_hash8 = 0; return 0; } |
|
return db_chain_hash8_at(si, mc - 1, out_hash8); |
|
} |
|
|
|
// ============================================================ |
|
// Timers |
|
// ============================================================ |
|
|
|
// Периодическая проверка: запускает синхронизацию для пиров в состоянии sync_state==0, |
|
// детектирует таймауты синхронизации (DB_SYNC_SYNC_TIMEOUT секунд), логирует зависшие |
|
static void db_sync_peer_check_cb(void* arg) |
|
{ |
|
struct DB_SYNC* db = (struct DB_SYNC*)arg; |
|
if (!db || !db->enabled) return; |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "instances=%d", db->instance_count); |
|
|
|
struct TOPO_GROUP* g = topo_groups_get_default(db->inst->topo_groups); |
|
if (!g) { |
|
db->peer_check_timer = uasync_set_timeout(db->inst->ua, DB_SYNC_PEER_CHECK_INTERVAL * 10000u, |
|
db, db_sync_peer_check_cb, "db_sync_peer"); |
|
return; |
|
} |
|
|
|
int total_synced = 0, total_skipped = 0, any_peers = 0; |
|
char launched_list[256] = ""; |
|
for (int i = 0; i < db->instance_count; i++) { |
|
struct DB_SYNC_INSTANCE* si = &db->instances[i]; |
|
if (!si->enabled) continue; |
|
|
|
int peers_found = 0; |
|
struct ll_entry* e = g->senders_list->head; |
|
while (e) { |
|
struct TOPO_GROUP_CONN_ITEM* item = (struct TOPO_GROUP_CONN_ITEM*)e->data; |
|
if (item->conn && item->conn->peer_node_id != 0 && item->conn->links_up && item->conn->initialized) { |
|
uint64_t pid = item->conn->peer_node_id; |
|
if (pid != db->inst->node_id) { si_peer_add(si, pid); peers_found++; any_peers = 1; } |
|
} |
|
e = e->next; |
|
} |
|
|
|
struct SI_PEER* best = NULL; |
|
uint32_t min_pos = UINT32_MAX; |
|
for (int j = 0; j < si->peer_count; j++) { |
|
if (si->peers[j].sync_state == 0 && si->peers[j].synced_pos < min_pos) { |
|
min_pos = si->peers[j].synced_pos; |
|
best = &si->peers[j]; |
|
} |
|
} |
|
if (best) { |
|
uint8_t ek[32]; |
|
if (db_get_ed25519_pubkey(db, best->node_id, ek) == 0) { |
|
best->sync_state = 1; |
|
db_sync_initiate_sync(si, best->node_id); total_synced++; |
|
{ size_t tl = strlen(launched_list); |
|
snprintf(launched_list + tl, sizeof(launched_list) - tl, |
|
"%s%s:%04llX[sp=%u]", tl ? "," : "", |
|
SI_SHRT(si), (unsigned long long)(best->node_id >> 16), min_pos); } |
|
} else { |
|
DEBUG_DEBUG(DEBUG_CATEGORY_DB_SYNC, "peer_check skip peer=%016llx — no Ed25519 pubkey yet", (unsigned long long)best->node_id); |
|
best = NULL; total_skipped++; |
|
} |
|
} |
|
else { total_skipped++; } |
|
} |
|
|
|
{ |
|
uint64_t now = get_time_tb(); |
|
uint64_t to_tb = DB_SYNC_SYNC_TIMEOUT * 10000u; |
|
for (int i = 0; i < db->instance_count; i++) { |
|
struct DB_SYNC_INSTANCE* si = &db->instances[i]; |
|
if (!si->enabled) continue; |
|
for (int j = 0; j < si->peer_count; j++) { |
|
struct SI_PEER* p = &si->peers[j]; |
|
if (p->sync_state == 1 && p->sync_start_tb > 0 && now - p->sync_start_tb > to_tb) { |
|
DEBUG_WARN(DEBUG_CATEGORY_DB_SYNC, |
|
"sync [%s:%04llX] TIMEOUT: no response for %llu ms, sync_state 1→0 (synced_pos was %u)", |
|
SI_SHRT(si), (unsigned long long)(p->node_id >> 16), |
|
(unsigned long long)((now - p->sync_start_tb) / 10), p->synced_pos); |
|
si_dump_table(si, "STUCK_SYNC_TIMEOUT"); |
|
p->sync_state = 0; |
|
static int dump_ctr = 0; |
|
if (dump_ctr++ == 0 || (dump_ctr % 10) == 0) |
|
etcp_dump_all(db->inst); |
|
} |
|
} |
|
} |
|
} |
|
|
|
if (total_synced > 0) { |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "sync: PEER CHECK → %d tables, launched sync for %d: %s", |
|
db->instance_count, total_synced, launched_list); |
|
} |
|
|
|
db->peer_check_timer = uasync_set_timeout(db->inst->ua, DB_SYNC_PEER_CHECK_INTERVAL * 10000u, |
|
db, db_sync_peer_check_cb, "db_sync_peer"); |
|
} |
|
|
|
// Периодическая TTL-очистка: удаляет неподтверждённые записи (flags&1==0) старше db_sync_ttl от локального узла |
|
static void db_sync_instance_ttl_cb(void* arg) |
|
{ |
|
struct DB_SYNC_INSTANCE* si = (struct DB_SYNC_INSTANCE*)arg; |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "tbl=%s enabled=%d", SI_TBL(si), si->enabled); |
|
uint64_t interval = DB_SYNC_TTL_INTERVAL * 10000u; |
|
|
|
if (!si || !si->enabled || !si->db_sync || !si->db_sync->db) { |
|
if (si) si->ttl_timer = uasync_set_timeout(si->db_sync->inst->ua, interval, si, db_sync_instance_ttl_cb, "db_sync_ttl"); |
|
return; |
|
} |
|
|
|
uint64_t my_id = si->db_sync->inst->node_id; |
|
uint64_t nu = get_time_us(); |
|
uint64_t ttl = (uint64_t)(si->db_sync->inst->config->global.db_sync_ttl) * 1000000uLL; |
|
uint64_t cut = nu - ttl; |
|
|
|
sqlite3_stmt* stmt; |
|
if (si_prep(si, &stmt, |
|
"DELETE FROM \"%s\"" |
|
" WHERE node_id=? AND (flags & 1) = 0" |
|
" AND timestamp<?") != SQLITE_OK) |
|
{ |
|
si->ttl_timer = uasync_set_timeout(si->db_sync->inst->ua, interval, si, db_sync_instance_ttl_cb, "db_sync_ttl"); |
|
return; |
|
} |
|
sqlite3_bind_int64(stmt, 1, (sqlite3_int64)my_id); |
|
sqlite3_bind_int64(stmt, 2, (sqlite3_int64)cut); |
|
sqlite3_step(stmt); |
|
int d = sqlite3_changes(SI_DB(si)); |
|
sqlite3_finalize(stmt); |
|
|
|
if (d > 0) DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "TTL cleanup deleted %d unsent records (tbl=%s)", d, SI_TBL(si)); |
|
|
|
si->ttl_timer = uasync_set_timeout(si->db_sync->inst->ua, interval, si, db_sync_instance_ttl_cb, "db_sync_ttl"); |
|
} |
|
|
|
// ============================================================ |
|
// Public API |
|
// ============================================================ |
|
|
|
// Инициализирует модуль db_sync: открывает БД, регистрирует ETCP-биндинг, запускает таймер проверки пиров |
|
int db_sync_init(struct UTUN_INSTANCE* inst) |
|
{ |
|
if (!inst) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "NULL instance"); return -1; } |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "inst=%p enabled=%d", (void*)inst, inst->config->global.db_sync_enabled); |
|
struct DB_SYNC* db = u_calloc(1, sizeof(struct DB_SYNC)); |
|
if (!db) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "u_calloc failed"); return -1; } |
|
db->inst = inst; |
|
db->last_connected_tb = 0; |
|
|
|
if (!inst->config->global.db_sync_enabled) { |
|
db->enabled = 0; inst->db_sync = db; |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "db_sync: disabled by config"); |
|
return 0; |
|
} |
|
|
|
db->enabled = 1; |
|
inst->db_sync = db; |
|
|
|
const char* dp = inst->config->global.db_path; |
|
if (inst->topo_sqlite_db) { |
|
db->db = inst->topo_sqlite_db; db->shared_db = 1; |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "db_sync: using shared SQLite db=%p", (void*)db->db); |
|
} else { |
|
char sp[512]; |
|
if (dp[0]) snprintf(sp, sizeof(sp), "%s/chats.db", dp); |
|
else snprintf(sp, sizeof(sp), "/tmp/utun_db_sync"); |
|
if (db_sqlite_open(db, sp) != 0) { |
|
DEBUG_WARN(DEBUG_CATEGORY_DB_SYNC, "SQLite open failed, sync disabled"); |
|
db->enabled = 0; |
|
} |
|
} |
|
|
|
etcp_bind(inst, ETCP_RT_ID_DB_SYNC, db_sync_recv_cb); |
|
etcp_add_conn_status_cbk(inst, db_sync_on_conn_status, NULL); |
|
|
|
if (db->enabled) |
|
db->peer_check_timer = uasync_set_timeout(inst->ua, DB_SYNC_PEER_CHECK_INTERVAL * 10000u, |
|
db, db_sync_peer_check_cb, "db_sync_peer"); |
|
|
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "db_sync: initialized (enabled=%d)", db->enabled); |
|
return 0; |
|
} |
|
|
|
// Уничтожает модуль db_sync: отменяет таймеры, закрывает БД, освобождает память |
|
void db_sync_destroy(struct UTUN_INSTANCE* inst) |
|
{ |
|
if (!inst || !inst->db_sync) return; |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "inst=%p instances=%d", (void*)inst, inst->db_sync->instance_count); |
|
struct DB_SYNC* db = inst->db_sync; |
|
inst->db_sync = NULL; |
|
|
|
etcp_unbind(inst, ETCP_RT_ID_DB_SYNC); |
|
|
|
if (db->peer_check_timer) { uasync_cancel_timeout(inst->ua, db->peer_check_timer); db->peer_check_timer = NULL; } |
|
|
|
for (int i = 0; i < db->instance_count; i++) { |
|
struct DB_SYNC_INSTANCE* si = &db->instances[i]; |
|
if (si->ttl_timer) { uasync_cancel_timeout(inst->ua, si->ttl_timer); si->ttl_timer = NULL; } |
|
if (si->recalc.timer) { uasync_cancel_timeout(inst->ua, si->recalc.timer); si->recalc.timer = NULL; } |
|
if (si->peers) u_free(si->peers); |
|
} |
|
|
|
etcp_remove_conn_status_cbk(inst, db_sync_on_conn_status, NULL); |
|
|
|
{ struct db_sync_done_cbk_entry* cb = db->done_cbks; while (cb) { struct db_sync_done_cbk_entry* n = cb->next; u_free(cb); cb = n; } } |
|
|
|
db_sqlite_close(db); |
|
if (db->instances) u_free(db->instances); |
|
u_free(db); |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "db_sync: destroyed"); |
|
} |
|
|
|
// Создаёт SQLite-таблицу для синхронизации, регистрирует пиров, запускает первичную синхронизацию и TTL-таймер |
|
struct DB_SYNC_INSTANCE* db_sync_instance_add(struct UTUN_INSTANCE* inst, const char* table_name, uint64_t hash, int auto_sync) |
|
{ |
|
if (!inst || !inst->db_sync || !table_name || !table_name[0]) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "instance_add invalid args"); return NULL; } |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "table=%s hash=%016llx", table_name, (unsigned long long)hash); |
|
struct DB_SYNC* db = inst->db_sync; |
|
if (!db->enabled || !db->db) return NULL; |
|
|
|
struct DB_SYNC_INSTANCE* si = db_instance_find(db, hash); |
|
if (si) { DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "instance already exists hash=%016llx", (unsigned long long)hash); return si; } |
|
|
|
si = db_instance_alloc(db); |
|
if (!si) return NULL; |
|
si->hash = hash; |
|
snprintf(si->table_name, sizeof(si->table_name), "%s", table_name); |
|
|
|
// Create table — PK is (timestamp, node_id), author_signature NOT NULL |
|
{ |
|
char sql[512]; |
|
snprintf(sql, sizeof(sql), |
|
"CREATE TABLE IF NOT EXISTS \"%s\" (" |
|
" timestamp INTEGER NOT NULL," |
|
" node_id INTEGER NOT NULL," |
|
" id INTEGER NOT NULL," |
|
" chain_hash BLOB NOT NULL," |
|
" flags INTEGER NOT NULL DEFAULT 0," |
|
" data BLOB," |
|
" author_signature BLOB NOT NULL," |
|
" local_attrs TEXT DEFAULT ''," |
|
" delivered_peers INTEGER NOT NULL DEFAULT 0," |
|
" delivery_chain TEXT NOT NULL DEFAULT ''," |
|
" PRIMARY KEY (timestamp, author_signature))", |
|
si->table_name); |
|
int rc = sqlite3_exec(db->db, sql, NULL, NULL, NULL); |
|
if (rc != SQLITE_OK) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "CREATE TABLE %s: %s", si->table_name, sqlite3_errmsg(db->db)); si->enabled = 0; return si; } |
|
snprintf(sql, sizeof(sql), |
|
"CREATE INDEX IF NOT EXISTS \"idx_%s_ttl\"" |
|
" ON \"%s\" (node_id, timestamp)", |
|
si->table_name, si->table_name); |
|
rc = sqlite3_exec(db->db, sql, NULL, NULL, NULL); |
|
if (rc != SQLITE_OK) DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "CREATE INDEX %s: %s", si->table_name, sqlite3_errmsg(db->db)); |
|
} |
|
|
|
// Get next id |
|
{ |
|
sqlite3_stmt* stmt; |
|
if (si_prep(si, &stmt, "SELECT COALESCE(MAX(id),0)+1 FROM \"%s\"") == SQLITE_OK |
|
&& sqlite3_step(stmt) == SQLITE_ROW) |
|
si->next_id = (uint64_t)sqlite3_column_int64(stmt, 0); |
|
else |
|
si->next_id = 1; |
|
sqlite3_finalize(stmt); |
|
} |
|
|
|
db_verify_chain(si); |
|
|
|
DEBUG_DEBUG(DEBUG_CATEGORY_DEBUG, "instance_add: tbl=%s mc=%u next_id=%llu hash=%016llx", SI_TBL(si), db_count(si), (unsigned long long)si->next_id, (unsigned long long)si->hash); |
|
|
|
si->ttl_timer = uasync_set_timeout(inst->ua, DB_SYNC_TTL_INTERVAL * 10000u, si, db_sync_instance_ttl_cb, "db_sync_ttl"); |
|
|
|
int peers_found = 0, peers_synced = 0; |
|
{ |
|
struct ll_entry* entry = inst->connections->head; |
|
while (entry) { |
|
struct conn_queue_entry* ce = (struct conn_queue_entry*)entry->data; |
|
uint64_t pid = ce->conn->peer_node_id; |
|
if (pid != 0 && pid != inst->node_id && ce->conn->links_up > 0) { |
|
peers_found++; |
|
struct SI_PEER* p = si_peer_add(si, pid); |
|
if (!p) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "si_peer_add failed for %N in %s", (unsigned long long)pid, SI_TBL(si)); continue; } |
|
if (p->sync_state == 0 && auto_sync) { p->sync_state = 1; db_sync_initiate_sync(si, pid); peers_synced++; } |
|
} |
|
entry = entry->next; |
|
} |
|
} |
|
|
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, |
|
"instance added table=%s tbl=%s hash=%016llx next_id=%llu peers_found=%d peers_synced=%d mc=%u", |
|
table_name, si->table_name, (unsigned long long)hash, |
|
(unsigned long long)si->next_id, peers_found, peers_synced, db_count(si)); |
|
return si; |
|
} |
|
|
|
// Удаляет инстанс: отменяет таймеры, освобождает пиров, сдвигает массив (таблица БД не удаляется) |
|
void db_sync_instance_remove(struct DB_SYNC_INSTANCE* si) |
|
{ |
|
if (!si) return; |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "tbl=%s hash=%016llx", si->table_name, (unsigned long long)si->hash); |
|
struct DB_SYNC* db = si->db_sync; |
|
struct UTUN_INSTANCE* inst = db->inst; |
|
|
|
si->enabled = 0; |
|
if (si->ttl_timer) { uasync_cancel_timeout(inst->ua, si->ttl_timer); si->ttl_timer = NULL; } |
|
if (si->recalc.timer) { uasync_cancel_timeout(inst->ua, si->recalc.timer); si->recalc.timer = NULL; } |
|
if (si->peers) { u_free(si->peers); si->peers = NULL; si->peer_count = si->peer_capacity = 0; } |
|
|
|
int idx = (int)(si - db->instances); |
|
if (idx >= 0 && idx < db->instance_count) { |
|
memmove(&db->instances[idx], &db->instances[idx + 1], |
|
(db->instance_count - idx - 1) * sizeof(*db->instances)); |
|
db->instance_count--; |
|
} |
|
DEBUG_INFO(DEBUG_CATEGORY_DB_SYNC, "instance removed tbl=%s hash=%016llx", si->table_name, (unsigned long long)si->hash); |
|
} |
|
|
|
// Вставляет подписанную запись: проверяет подпись, вставляет в БД, рассылает PUSH всем синхронизированным пирам |
|
int db_sync_insert_signed(struct DB_SYNC_INSTANCE* si, const char* json_data, size_t len, |
|
const uint8_t* sig, size_t sig_len, uint64_t ts, |
|
const char* local_attrs) |
|
{ |
|
if (!si || !si->enabled || !json_data || len == 0) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "insert invalid args"); return -1; } |
|
if (!sig || sig_len != DB_SIG_SIZE) { DEBUG_ERROR(DEBUG_CATEGORY_DB_SYNC, "insert_signed: signature required (64 bytes Ed25519)"); return -1; } |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "tbl=%s id=%llu ts=%llu len=%zu", SI_TBL(si), (unsigned long long)si->next_id, (unsigned long long)ts, len); |
|
|
|
uint64_t id = si->next_id; |
|
uint64_t author_node_id = si->db_sync->inst->node_id; |
|
|
|
return db_record_insert_cascade(si, id, ts, author_node_id, json_data, (uint32_t)len, sig, author_node_id, local_attrs); |
|
} |
|
|
|
// Возвращает количество записей в инстансе |
|
uint32_t db_sync_count(struct DB_SYNC_INSTANCE* si) |
|
{ |
|
if (!si || !si->enabled) return 0; |
|
return db_count(si); |
|
} |
|
|
|
// Возвращает последний использованный timestamp инстанса |
|
uint64_t db_sync_get_last_timestamp(struct DB_SYNC_INSTANCE* si) |
|
{ |
|
return si ? si->last_timestamp_ms : 0; |
|
} |
|
|
|
// Возвращает следующий монотонно возрастающий timestamp (мкс → мс), использует NTP если синхронизировано |
|
uint64_t db_sync_next_timestamp(struct DB_SYNC_INSTANCE* si) |
|
{ |
|
if (!si) return 0; |
|
int64_t now_us; |
|
if (si->db_sync && si->db_sync->inst && si->db_sync->inst->ntp.synced) |
|
now_us = ntp_time_get_us(si->db_sync->inst); |
|
else { |
|
struct timeval tv; |
|
utun_gettimeofday(&tv, NULL); |
|
now_us = (int64_t)tv.tv_sec * 1000000LL + tv.tv_usec; |
|
} |
|
uint64_t nu = (uint64_t)(now_us / 1000LL); |
|
if (nu <= si->last_timestamp_ms) nu = si->last_timestamp_ms + 1; |
|
si->last_timestamp_ms = nu; |
|
return nu; |
|
} |
|
|
|
// Устанавливает колбэк, вызываемый при каждой успешной вставке записи (локальной или от пира) |
|
void db_sync_set_insert_cb(struct DB_SYNC_INSTANCE* si, db_sync_insert_cb cb, void* arg) |
|
{ |
|
if (!si) return; |
|
si->on_insert = cb; |
|
si->on_insert_arg = arg; |
|
} |
|
|
|
// Итерирует записи с offset/limit, передавая каждую в колбэк. Возвращает количество переданных записей |
|
int db_sync_select(struct DB_SYNC_INSTANCE* si, uint32_t offset, uint32_t limit, |
|
db_sync_select_cb cb, void* arg) |
|
{ |
|
if (!si || !si->enabled || !cb) return 0; |
|
DEBUG_TRACE(DEBUG_CATEGORY_DB_SYNC, "tbl=%s off=%u lim=%u", SI_TBL(si), offset, limit); |
|
|
|
sqlite3_stmt* stmt; |
|
if (si_prep(si, &stmt, |
|
"SELECT id,timestamp,node_id,data," |
|
"author_signature,delivered_peers,delivery_chain" |
|
" FROM \"%s\" ORDER BY timestamp, author_signature" |
|
" LIMIT ? OFFSET ?") != SQLITE_OK) |
|
return 0; |
|
|
|
sqlite3_bind_int64(stmt, 1, limit > 0 ? (sqlite3_int64)limit : -1); |
|
sqlite3_bind_int64(stmt, 2, (sqlite3_int64)offset); |
|
|
|
int cnt = 0; |
|
while (sqlite3_step(stmt) == SQLITE_ROW) { |
|
uint64_t rid = (uint64_t)sqlite3_column_int64(stmt, 0); |
|
uint64_t rts = (uint64_t)sqlite3_column_int64(stmt, 1); |
|
uint64_t rauth = (uint64_t)sqlite3_column_int64(stmt, 2); |
|
const char* rd = (const char*)sqlite3_column_blob(stmt, 3); |
|
int rdl = sqlite3_column_bytes(stmt, 3); |
|
const uint8_t* rsig = (const uint8_t*)sqlite3_column_blob(stmt, 4); |
|
int rsl = sqlite3_column_bytes(stmt, 4); if (!rsig) rsl = 0; |
|
int rdp = sqlite3_column_int(stmt, 5); |
|
const char* rdc = (const char*)sqlite3_column_text(stmt, 6); if (!rdc) rdc = ""; |
|
|
|
cb(arg, rid, rts, rd, (size_t)(rdl > 0 ? rdl : 0), rauth, rsig, (size_t)rsl, rdp, rdc); |
|
cnt++; |
|
} |
|
sqlite3_finalize(stmt); |
|
return cnt; |
|
}
|
|
|