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/**
* @file topo_group.c
* @brief BGP-like обмен топологией узлов (группы)
*/
#include <stdlib.h>
#include <string.h>
#include <stdio.h>
#include "../lib/platform_compat.h"
#include "../lib/debug_config.h"
#include "../lib/mem.h"
#include "../lib/memory_pool.h"
#include "utun_instance.h"
#include "etcp_api.h"
#include "etcp.h"
#include "etcp_connections.h"
#include "etcp_debug.h"
#include "config_parser.h"
#include "topo_node.h"
#include "topo_node_sqlite.h"
#include "route_lib.h"
#include "topo_group.h"
#include "nat_detection.h"
#include "route_connectivity.h"
#include "control_server.h"
#include "conn_mgr.h"
#include "topo_group_connect.h"
#include "topo_recovery.h"
#include "broadcast.h"
#define TOPO_GROUP_UTUN 0x8000000000000000ULL
// ============================================================================
// Вспомогательные функции
// ============================================================================
static void topo_group_send_table_request(struct TOPO_GROUP* group, struct ETCP_CONN* conn) {
if (!group || !conn) return;
DEBUG_DEBUG(DEBUG_CATEGORY_BGP, "Sending table request to %s grp=%016llx", conn->log_name, (unsigned long long)group->group_id);
struct TOPOMSG_TABLE_REQ* req = u_calloc(1, sizeof(struct TOPOMSG_TABLE_REQ));
if (!req) return;
req->cmd = ETCP_ID_TOPO_ENTRY;
req->subcmd = TOPO_SUBCMD_REQUEST_TABLE;
req->group_id = group->group_id;
struct ll_entry* e = queue_entry_new(0);
if (!e) { u_free(req); return; }
e->dgram = (uint8_t*)req; e->len = sizeof(struct TOPOMSG_TABLE_REQ);
if (etcp_send(conn, e) != 0) { u_free(req); queue_entry_free(e); }
}
static void topo_group_send_table_complete(struct TOPO_GROUP* group, struct ETCP_CONN* conn) {
if (!group || !conn) return;
struct TOPOMSG_TABLE_REQ* req = u_calloc(1, sizeof(struct TOPOMSG_TABLE_REQ));
if (!req) return;
req->cmd = ETCP_ID_TOPO_ENTRY;
req->subcmd = TOPO_SUBCMD_TABLE_COMPLETE;
req->group_id = group->group_id;
struct ll_entry* e = queue_entry_new(0);
if (!e) { u_free(req); return; }
e->dgram = (uint8_t*)req; e->len = sizeof(struct TOPOMSG_TABLE_REQ);
if (etcp_send(conn, e) != 0) { u_free(req); queue_entry_free(e); }
}
static void topo_group_add_to_senders(struct TOPO_GROUP* group, struct ETCP_CONN* conn);
static bool topo_group_should_send_to(const struct TOPO_GROUP_NODE* nq, uint64_t target_id);
static void topo_group_send_full_table(struct TOPO_GROUP* group, struct ETCP_CONN* conn);
static void topo_group_handle_request_table(struct TOPO_GROUP* group, struct ETCP_CONN* conn);
static void nodeinfo_dump_log(const uint8_t* data, size_t len) {
if (!data || len < sizeof(struct TOPOMSG_NODEINFO_PKT)) return;
struct TOPOMSG_NODEINFO_PKT* pkt = (struct TOPOMSG_NODEINFO_PKT*)data;
struct TOPOMSG_NODE* ni = &pkt->node;
DEBUG_DEBUG(DEBUG_CATEGORY_BGP, "NODEINFO nid=%016llx ver=%u v4s=%u v4a=%u hops=%u",
(unsigned long long)ni->node_id, ni->ver,
ni->local_v4_sockets, ni->local_v4_addrs, ni->hop_count);
}
static char* nodeinfo_format(const uint8_t* data, size_t len) {
if (!data || len < sizeof(struct TOPOMSG_NODEINFO_PKT)) return NULL;
struct TOPOMSG_NODEINFO_PKT* pkt = (struct TOPOMSG_NODEINFO_PKT*)data;
struct TOPOMSG_NODE* ni = &pkt->node;
uint64_t node_id = ni->node_id;
const uint8_t* dyn = data + sizeof(struct TOPOMSG_NODEINFO_PKT);
size_t off = 0;
char name_buf[64] = {0};
size_t nl = ni->node_name_len;
if (nl > 0 && nl < 63 && off + nl < len - sizeof(struct TOPOMSG_NODEINFO_PKT)) {
memcpy(name_buf, dyn + off, nl); off += nl;
}
off += ni->local_v4_sockets * sizeof(struct TOPOMSG_SOCKMETA4);
off += ni->local_v4_addrs * sizeof(struct TOPOMSG_ADDR4);
off += ni->local_v6_sockets * sizeof(struct TOPOMSG_SOCKMETA6);
off += ni->local_v6_addrs * sizeof(struct TOPOMSG_ADDR6);
char subs_buf[512] = {0};
if (ni->local_v4_subnets > 0) {
const struct TOPOMSG_SUBNET4* subs = (const struct TOPOMSG_SUBNET4*)(dyn + off);
size_t sl = 0;
for (uint8_t i = 0; i < ni->local_v4_subnets && sl < 400; i++) {
uint32_t addr = (subs[i].addr[0]<<24)|(subs[i].addr[1]<<16)|(subs[i].addr[2]<<8)|subs[i].addr[3];
char tmp[64]; snprintf(tmp,sizeof(tmp),"%d.%d.%d.%d/%u ",(addr>>24)&255,(addr>>16)&255,(addr>>8)&255,addr&255,subs[i].prefix_length);
strcat(subs_buf,tmp); sl += strlen(tmp);
}
}
int need = snprintf(NULL,0,"NODEINFO nid=%016llx ver=%u name=\"%s\" v4subs=\"%s\" v4s=%u v4a=%u hop=%u", (unsigned long long)node_id,(unsigned)ni->ver,name_buf,subs_buf,(unsigned)ni->local_v4_sockets,(unsigned)ni->local_v4_addrs,(unsigned)ni->hop_count);
char* buf = u_malloc(need+1); if (!buf) return NULL;
snprintf(buf,need+1,"NODEINFO nid=%016llx ver=%u name=\"%s\" v4subs=\"%s\" v4s=%u v4a=%u hop=%u", (unsigned long long)node_id,(unsigned)ni->ver,name_buf,subs_buf,(unsigned)ni->local_v4_sockets,(unsigned)ni->local_v4_addrs,(unsigned)ni->hop_count);
return buf;
}
static const char* group_subcmd_name(uint8_t subcmd) {
switch (subcmd) {
case TOPO_SUBCMD_NODEINFO: return "NODEINFO";
case TOPO_SUBCMD_REQUEST_TABLE: return "REQ_TABLE";
case TOPO_SUBCMD_WITHDRAW: return "WITHDRAW";
case TOPO_SUBCMD_TABLE_COMPLETE: return "TABLE_COMPLETE";
case TOPO_SUBCMD_ERR_GROUP_MISMATCH: return "ERR_GROUP_MISMATCH";
default: return "?";
}
}
// ============================================================================
// Broadcast / Withdraw
// ============================================================================
static void topo_group_broadcast_withdraw(struct TOPO_GROUP* group, uint64_t node_id, uint64_t wd_source, struct ETCP_CONN* exclude) {
if (!group) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "group is NULL"); return; }
struct TOPOMSG_WITHDRAW_PKT* pkt = u_calloc(1, sizeof(struct TOPOMSG_WITHDRAW_PKT));
if (!pkt) return;
pkt->cmd = ETCP_ID_TOPO_ENTRY; pkt->subcmd = TOPO_SUBCMD_WITHDRAW;
pkt->group_id = group->group_id; pkt->node_id = node_id; pkt->wd_source = wd_source;
struct ll_entry* e = group->senders_list ? group->senders_list->head : NULL;
while (e) {
struct TOPO_GROUP_CONN_ITEM* item = (struct TOPO_GROUP_CONN_ITEM*)e->data;
if (item && item->conn && item->conn != exclude) {
struct ll_entry* copy = queue_entry_new(0);
if (copy) { copy->dgram = u_malloc(sizeof(*pkt)); if (copy->dgram) { memcpy(copy->dgram, pkt, sizeof(*pkt)); copy->len = sizeof(*pkt); if (etcp_send(item->conn, copy) != 0) { u_free(copy->dgram); queue_entry_free(copy); } } else { queue_entry_free(copy); } }
}
e = e->next;
}
u_free(pkt);
}
// ============================================================================
// Приём пакетов
// ============================================================================
static void topo_group_receive_cbk(struct ETCP_CONN* from_conn, struct ll_entry* entry) {
if (!from_conn || !entry || entry->len < 2) { if (entry) { queue_dgram_free(entry); queue_entry_free(entry); } return; }
struct UTUN_INSTANCE* instance = from_conn->instance;
if (!instance || !instance->topo_groups) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "invalid instance/topo_groups"); queue_dgram_free(entry); queue_entry_free(entry); return; }
uint8_t* data = entry->dgram; uint8_t cmd = data[0]; uint8_t subcmd = data[1];
if (cmd != ETCP_ID_TOPO_ENTRY) { queue_dgram_free(entry); queue_entry_free(entry); return; }
uint64_t pkt_group_id = 0;
if (subcmd == TOPO_SUBCMD_NODEINFO && entry->len >= 3) {
pkt_group_id = ((struct TOPOMSG_NODEINFO_PKT*)data)->node.group_id;
} else if (subcmd == TOPO_SUBCMD_WITHDRAW && entry->len >= sizeof(struct TOPOMSG_WITHDRAW_PKT)) {
pkt_group_id = ((struct TOPOMSG_WITHDRAW_PKT*)data)->group_id;
} else if (subcmd == TOPO_SUBCMD_REQUEST_TABLE && entry->len >= sizeof(struct TOPOMSG_TABLE_REQ)) {
pkt_group_id = ((struct TOPOMSG_TABLE_REQ*)data)->group_id;
} else if (subcmd == TOPO_SUBCMD_TABLE_COMPLETE && entry->len >= sizeof(struct TOPOMSG_TABLE_REQ)) {
pkt_group_id = ((struct TOPOMSG_TABLE_REQ*)data)->group_id;
} else if (subcmd == TOPO_SUBCMD_ERR_GROUP_MISMATCH && entry->len >= sizeof(struct TOPOMSG_ERR_GROUP_MISMATCH)) {
pkt_group_id = ((struct TOPOMSG_ERR_GROUP_MISMATCH*)data)->group_id;
}
struct TOPO_GROUP* group = topo_groups_find(instance->topo_groups, pkt_group_id);
if (!group) {
DEBUG_DEBUG(DEBUG_CATEGORY_BGP, "BGP recv %s from %s: group %016llx not found, dropping", group_subcmd_name(subcmd), from_conn->log_name, (unsigned long long)pkt_group_id);
queue_dgram_free(entry); queue_entry_free(entry); return;
}
DEBUG_DEBUG(DEBUG_CATEGORY_BGP, "BGP recv NODEINFO from=%s nid=%016llx ver=%d grp=%016llx", from_conn->log_name, (unsigned long long)((struct TOPOMSG_NODEINFO_PKT*)data)->node.node_id, ((struct TOPOMSG_NODEINFO_PKT*)data)->node.ver, (unsigned long long)((struct TOPOMSG_NODEINFO_PKT*)data)->node.group_id);
if (subcmd == TOPO_SUBCMD_NODEINFO) { nodeinfo_dump_log(data, entry->len); topo_group_process_nodeinfo(group, from_conn, data, entry->len); }
else if (subcmd == TOPO_SUBCMD_WITHDRAW) topo_group_process_withdraw(group, from_conn, data, entry->len);
else if (subcmd == TOPO_SUBCMD_REQUEST_TABLE) topo_group_handle_request_table(group, from_conn);
else if (subcmd == TOPO_SUBCMD_TABLE_COMPLETE) { etcp_set_routing_exchange_state(from_conn, 3); DEBUG_INFO(DEBUG_CATEGORY_BGP, "BGP sync complete with %s: %d nodes grp=%016llx", from_conn->log_name, queue_entry_count(group->nodes), (unsigned long long)group->group_id); }
else if (subcmd == TOPO_SUBCMD_ERR_GROUP_MISMATCH) {
if (entry->len >= sizeof(struct TOPOMSG_ERR_GROUP_MISMATCH)) {
struct TOPOMSG_ERR_GROUP_MISMATCH* err = (struct TOPOMSG_ERR_GROUP_MISMATCH*)data;
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "Group mismatch from %s: expected=%u received=0x%02x group=%016llx",
from_conn->log_name, err->expected_type, err->received_flags, (unsigned long long)err->group_id);
}
}
queue_dgram_free(entry); queue_entry_free(entry);
}
// ============================================================================
// Init / Destroy / New / Remove conn
// ============================================================================
static void topo_group_conn_status(struct ETCP_CONN* conn, int status, void* arg) {
struct TOPO_GROUPS* groups = (struct TOPO_GROUPS*)arg;
if (!conn || !groups) return;
struct ll_entry* fe = groups->group_list->head;
while (fe) { struct TOPO_GROUP* g = (struct TOPO_GROUP*)fe; fe = fe->next;
if (status == ETCP_CONN_STATUS_UP) topo_group_new_conn(g, conn);
if (status == ETCP_CONN_STATUS_DOWN) topo_group_remove_conn(g, conn);
if (status == ETCP_CONN_STATUS_DELETE) topo_group_remove_conn(g, conn);
}
}
static struct TOPO_GROUP* topo_group_create(struct UTUN_INSTANCE* instance, uint64_t group_id, uint8_t group_type) {
if (!instance) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "instance is NULL"); return NULL; }
DEBUG_INFO(DEBUG_CATEGORY_BGP, "group_id=%016llx node_id=%016llx", (unsigned long long)group_id, (unsigned long long)instance->node_id);
struct ll_entry* qe = queue_entry_new(sizeof(struct TOPO_GROUP));
if (!qe) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "alloc failed"); return NULL; }
struct TOPO_GROUP* group = (struct TOPO_GROUP*)qe;
memset((uint8_t*)group + sizeof(struct ll_entry), 0, sizeof(*group) - sizeof(struct ll_entry));
group->group_id = group_id;
group->group_type = group_type;
group->instance = instance;
sc_derive_ed25519_pubkey(instance->my_keys.private_key, group->ed25519_public_key);
DEBUG_INFO(DEBUG_CATEGORY_BGP, "Ed25519 pubkey derived from X25519 private key");
group->nodes = queue_new(instance->ua, BGP_NODES_HASH_SIZE, offsetof(struct TOPO_GROUP_NODE, node_id) - sizeof(struct ll_entry), 8, "group_nodes");
if (!group->nodes) { queue_entry_free(qe); DEBUG_ERROR(DEBUG_CATEGORY_BGP, "nodes queue creation failed"); return NULL; }
group->senders_list = queue_new(instance->ua, 0, 0, 0, "group_senders");
if (!group->senders_list) { queue_free(group->nodes); queue_entry_free(qe); DEBUG_ERROR(DEBUG_CATEGORY_BGP, "senders_list queue creation failed"); return NULL; }
group->local_node = NULL;
topo_group_update_my_nodeinfo(instance, group);
group->conn_mgr = conn_mgr_init(group);
broadcast_init(group);
DEBUG_INFO(DEBUG_CATEGORY_BGP, "TOPO group created: group_id=%016llx", (unsigned long long)group_id);
return group;
}
static void topo_group_destroy(struct TOPO_GROUP* group) {
if (!group) return;
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[GRP_DESTROY] 0 enter grp=%p id=0x%016llx rec_list=%p connect=%p",
group, (unsigned long long)group->group_id, group->recovery_list, group->connect);
topo_recovery_cancel_all(group);
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[GRP_DESTROY] 1 recovery_cancel done grp=%p", group);
topo_group_connect_destroy(group);
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[GRP_DESTROY] 2 connect_destroy done");
broadcast_destroy(group);
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[GRP_DESTROY] 2b broadcast_destroy done");
struct ll_entry* e;
while ((e = queue_data_get(group->senders_list)) != NULL) queue_entry_free(e);
queue_free(group->senders_list);
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[GRP_DESTROY] 3 senders_list done");
if (group->conn_mgr) { conn_mgr_destroy(group->conn_mgr); group->conn_mgr = NULL; }
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[GRP_DESTROY] 4 conn_mgr done");
if (group->nodes) {
struct ll_entry* e; int nc = 0;
while ((e = queue_data_get(group->nodes)) != NULL) {
struct TOPO_GROUP_NODE* nq = (struct TOPO_GROUP_NODE*)e;
route_connectivity_cancel_node(group->instance, nq);
if (nq->paths) { queue_free(nq->paths); nq->paths = NULL; }
topo_nodeq_free_group_fields(group->instance->topo_groups, nq);
queue_entry_free(e); nc++;
}
queue_free(group->nodes);
if (nc) DEBUG_INFO(DEBUG_CATEGORY_SYS, "[GRP_DESTROY] 4b nodes cleaned (%d)", nc);
}
if (group->local_node) {
if (group->local_node->paths) { queue_free(group->local_node->paths); group->local_node->paths = NULL; }
topo_nodeq_free_group_fields(group->instance->topo_groups, group->local_node);
u_free(group->local_node);
}
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[GRP_DESTROY] 5 done");
}
struct TOPO_GROUPS* topo_groups_init(struct UTUN_INSTANCE* instance) {
if (!instance) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "instance is NULL"); return NULL; }
DEBUG_INFO(DEBUG_CATEGORY_BGP, "node_id=%016llx", (unsigned long long)instance->node_id);
struct TOPO_GROUPS* g = u_calloc(1, sizeof(struct TOPO_GROUPS));
if (!g) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "alloc failed"); return NULL; }
g->instance = instance;
g->group_list = queue_new(instance->ua, 16, 0, 8, "topo_groups");
if (!g->group_list) { u_free(g); DEBUG_ERROR(DEBUG_CATEGORY_BGP, "group_list queue creation failed"); return NULL; }
g->node_registry = queue_new(instance->ua, TOPO_NODE_REGISTRY_HASH_SIZE, 0, 8, "node_registry");
if (!g->node_registry) { queue_free(g->group_list); u_free(g); DEBUG_ERROR(DEBUG_CATEGORY_BGP, "node_registry queue creation failed"); return NULL; }
g->v4_sock_meta_pool = memory_pool_init(sizeof(struct TOPO_SOCKMETA4), "to_v4sock");
g->v4_addr_pool = memory_pool_init(sizeof(struct TOPO_ADDR4), "to_v4addr");
g->v6_sock_meta_pool = memory_pool_init(sizeof(struct TOPO_SOCKMETA6), "to_v6sock");
g->v6_addr_pool = memory_pool_init(sizeof(struct TOPO_ADDR6), "to_v6addr");
g->v4_subnet_pool = memory_pool_init(sizeof(struct TOPO_SUBNET4), "to_v4sub");
g->v6_subnet_pool = memory_pool_init(sizeof(struct TOPO_SUBNET6), "to_v6sub");
if (instance->config && instance->config->global.db_path[0]) {
char db_file[512];
snprintf(db_file, sizeof(db_file), "%s/chats.db", instance->config->global.db_path);
int rc = sqlite3_open(db_file, &instance->topo_sqlite_db);
if (rc == SQLITE_OK && instance->topo_sqlite_db) {
sqlite3_exec(instance->topo_sqlite_db, "PRAGMA journal_mode=WAL", NULL, NULL, NULL);
sqlite3_exec(instance->topo_sqlite_db, "PRAGMA foreign_keys=ON", NULL, NULL, NULL);
sqlite3_exec(instance->topo_sqlite_db, "PRAGMA synchronous=NORMAL", NULL, NULL, NULL);
sqlite3_exec(instance->topo_sqlite_db, "PRAGMA wal_autocheckpoint=10000", NULL, NULL, NULL);
sqlite3_exec(instance->topo_sqlite_db, "PRAGMA cache_size=-32768", NULL, NULL, NULL);
sqlite3_exec(instance->topo_sqlite_db, "PRAGMA mmap_size=134217728", NULL, NULL, NULL);
sqlite3_exec(instance->topo_sqlite_db, "PRAGMA temp_store=MEMORY", NULL, NULL, NULL);
topo_node_sqlite_init(instance->topo_sqlite_db);
DEBUG_INFO(DEBUG_CATEGORY_GENERAL, "SQLite opened: %s rc=%d db=%p", db_file, rc, (void*)instance->topo_sqlite_db);
} else {
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "sqlite3_open(%s) failed: %s",
db_file, instance->topo_sqlite_db ? sqlite3_errmsg(instance->topo_sqlite_db) : "null db");
if (instance->topo_sqlite_db) { sqlite3_close(instance->topo_sqlite_db); instance->topo_sqlite_db = NULL; }
}
}
instance->topo_groups = g;
struct TOPO_GROUP* default_group = topo_group_create(instance, TOPO_GROUP_UTUN, TOPO_GROUP_TYPE_UTUN);
if (!default_group) {
memory_pool_destroy(g->v4_sock_meta_pool); memory_pool_destroy(g->v4_addr_pool);
memory_pool_destroy(g->v6_sock_meta_pool); memory_pool_destroy(g->v6_addr_pool);
memory_pool_destroy(g->v4_subnet_pool); memory_pool_destroy(g->v6_subnet_pool);
queue_free(g->node_registry); queue_free(g->group_list); u_free(g);
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "failed to create default group");
return NULL;
}
queue_data_put_with_index(g->group_list, &default_group->ll);
instance->conn_mgr = default_group->conn_mgr; /* recv handler shortcut */
etcp_bind(instance, ETCP_ID_TOPO_ENTRY, topo_group_receive_cbk);
etcp_add_conn_status_cbk(instance, topo_group_conn_status, g);
etcp_add_socket_cbk(instance, topo_node_on_socket_changed, NULL,
ETCP_SOCKET_EVENT_ADDR_CHANGED | ETCP_SOCKET_EVENT_STATUS_CHANGED);
utun_add_activity_cbk(instance, topo_group_on_activity_change, NULL);
DEBUG_INFO(DEBUG_CATEGORY_BGP, "TOPO groups initialized (with default group)");
return g;
}
void topo_group_on_activity_change(struct UTUN_INSTANCE* instance, int active, void* arg) {
(void)active; (void)arg;
if (!instance || !instance->topo_groups || !instance->topo_groups->group_list) return;
struct ll_entry* ge = instance->topo_groups->group_list->head;
while (ge) {
struct TOPO_GROUP* g = (struct TOPO_GROUP*)ge;
topo_group_update_my_nodeinfo(instance, g);
if (g->senders_list) {
struct ll_entry* se = g->senders_list->head;
while (se) {
struct TOPO_GROUP_CONN_ITEM* item = (struct TOPO_GROUP_CONN_ITEM*)se->data;
if (item && item->conn) topo_group_send_nodeinfo(g, g->local_node, item->conn, 0);
se = se->next;
}
}
ge = ge->next;
}
}
void topo_groups_destroy(struct UTUN_INSTANCE* instance) {
if (!instance) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "instance is NULL"); return; }
if (!instance->topo_groups) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "topo_groups is NULL"); return; }
DEBUG_INFO(DEBUG_CATEGORY_BGP, "node_id=%016llx tgs=%p", (unsigned long long)instance->node_id, instance->topo_groups);
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[TOPO_DESTROY] 0 enter");
etcp_unbind(instance, ETCP_ID_TOPO_ENTRY);
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[TOPO_DESTROY] 1 etcp_unbind done");
etcp_remove_conn_status_cbk(instance, topo_group_conn_status, instance->topo_groups);
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[TOPO_DESTROY] 2 conn_cbk_remove done");
etcp_remove_socket_cbk(instance, topo_node_on_socket_changed, NULL);
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[TOPO_DESTROY] 3 socket_cbk_remove done");
utun_remove_activity_cbk(instance, topo_group_on_activity_change, NULL);
route_connectivity_cancel_all(instance);
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[TOPO_DESTROY] 4 connectivity_cancel done");
struct TOPO_GROUPS* g = instance->topo_groups;
struct ll_entry* ge;
int gcount = 0;
while ((ge = queue_data_get(g->group_list)) != NULL) { struct TOPO_GROUP* grp = (struct TOPO_GROUP*)ge; topo_group_destroy(grp); queue_entry_free(ge); gcount++; }
queue_free(g->group_list);
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[TOPO_DESTROY] 5 groups destroyed (%d)", gcount);
if (g->node_registry) {
int ncount = 0;
struct ll_entry* re;
while ((re = queue_data_get(g->node_registry)) != NULL) {
struct TOPO_NODE* node;
memcpy(&node, re->data + 8, sizeof(node));
topo_node_destroy(g, node);
queue_entry_free(re); ncount++;
}
queue_free(g->node_registry);
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[TOPO_DESTROY] 6 node_registry done (%d)", ncount);
} else {
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[TOPO_DESTROY] 6 node_registry skip (NULL)");
}
memory_pool_destroy(g->v4_sock_meta_pool);
memory_pool_destroy(g->v4_addr_pool);
memory_pool_destroy(g->v6_sock_meta_pool);
memory_pool_destroy(g->v6_addr_pool);
memory_pool_destroy(g->v4_subnet_pool);
memory_pool_destroy(g->v6_subnet_pool);
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[TOPO_DESTROY] 7 pools destroyed");
if (instance->topo_sqlite_db) { sqlite3_close(instance->topo_sqlite_db); instance->topo_sqlite_db = NULL; }
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[TOPO_DESTROY] 8 sqlite closed");
u_free(g); instance->topo_groups = NULL; instance->conn_mgr = NULL;
DEBUG_INFO(DEBUG_CATEGORY_SYS, "[TOPO_DESTROY] 9 done");
}
struct TOPO_GROUP* topo_groups_get_default(struct TOPO_GROUPS* g) {
return topo_groups_find(g, TOPO_GROUP_UTUN);
}
struct TOPO_GROUP* topo_groups_find(struct TOPO_GROUPS* g, uint64_t group_id) {
if (!g || !g->group_list) return NULL;
struct ll_entry* e = queue_find_data_by_index(g->group_list, &group_id);
return e ? (struct TOPO_GROUP*)e : NULL;
}
struct TOPO_GROUP* topo_groups_create_group(struct TOPO_GROUPS* g, uint64_t group_id, uint8_t group_type, const char* channel_id) {
if (!g || !g->instance) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "invalid args"); return NULL; }
if (topo_groups_find(g, group_id)) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "group_id=%016llx already exists", (unsigned long long)group_id); return NULL; }
struct TOPO_GROUP* group = topo_group_create(g->instance, group_id, group_type);
if (!group) return NULL;
if (channel_id) { strncpy(group->channel_id, channel_id, sizeof(group->channel_id) - 1); group->channel_id[sizeof(group->channel_id) - 1] = '\0'; }
queue_data_put_with_index(g->group_list, &group->ll);
struct ll_queue* connections = g->instance->connections;
if (connections) {
for (uint32_t slot = 0; slot < connections->hash_size; slot++) {
struct ll_entry* entry = connections->hash_table[slot];
while (entry) {
struct conn_queue_entry* cqe = (struct conn_queue_entry*)entry;
if (cqe->conn && cqe->peer_node_id != 0)
topo_group_new_conn(group, cqe->conn);
entry = entry->hash_next;
}
}
}
DEBUG_INFO(DEBUG_CATEGORY_BGP, "Group created: group_id=%016llx type=%u ch_id=%s", (unsigned long long)group_id, group_type, group->channel_id);
if (group_type == TOPO_GROUP_TYPE_CHAT) topo_group_connect_init(group);
return group;
}
void topo_group_set_nat_check_local(struct TOPO_GROUP* group, int allow) {
if (!group || !group->instance || !group->instance->nat_det) return;
nat_detection_set_allow_local(group->instance->nat_det, allow);
}
void topo_groups_set_node_updated_cb(struct TOPO_GROUPS* groups, topo_node_updated_fn fn) {
if (groups) groups->node_updated_cb = fn;
}
void topo_group_new_conn(struct TOPO_GROUP* group, struct ETCP_CONN* conn) {
if (!group || !conn) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "invalid args"); return; }
if (!conn->instance) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "conn->instance is NULL"); return; }
if (!conn->instance->rt) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "conn->instance->rt is NULL"); return; }
/* дедуп: тот же conn стреляет ETCP_CONN_STATUS_UP дважды (UDP-линк, затем TCP-линк).
* Если conn уже в senders_list — повторно не обрабатываем, иначе active_conn_count
* задваивается и переподключение никогда не стартует. */
{ struct ll_entry* se = group->senders_list ? group->senders_list->head : NULL;
while (se) {
if (((struct TOPO_GROUP_CONN_ITEM*)se->data)->conn == conn) {
DEBUG_INFO(DEBUG_CATEGORY_BGP, "topo_group_new_conn: conn already in senders_list, skip double UP (%s)", conn->log_name);
return;
}
se = se->next;
}
}
topo_recovery_cancel_for_node(group, conn->peer_node_id);
struct TOPO_GROUP_NODE* peer_nq = topo_node_find_by_id(group, conn->peer_node_id);
if (peer_nq) {
peer_nq->connectivity.last_ping_time = get_time_tb();
peer_nq->conn_presence |= NCONN_DIRECT;
peer_nq->conn_up |= NCONN_DIRECT;
if (conn->instance->topo_sqlite_db) topo_node_sqlite_nodeinfo_updated(conn->instance->topo_sqlite_db, conn->peer_node_id);
}
topo_group_add_to_senders(group, conn);
DEBUG_DEBUG(DEBUG_CATEGORY_BGP, "topo_group_new_conn: peer=%016llx group=%016llx type=%d ch=%s", (unsigned long long)conn->peer_node_id, (unsigned long long)group->group_id, group->group_type, group->channel_id);
topo_group_send_table_request(group, conn);
topo_group_connect_on_up(group, conn);
}
void topo_group_remove_conn(struct TOPO_GROUP* group, struct ETCP_CONN* conn) {
if (!group || !conn) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "invalid args"); return; }
if (!conn->instance) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "invalid instance"); return; }
bool found_in_list = false;
struct ll_entry* e = group->senders_list->head;
while (e) { struct TOPO_GROUP_CONN_ITEM* item = (struct TOPO_GROUP_CONN_ITEM*)e->data; if (item->conn == conn) { found_in_list = true; break; } e = e->next; }
if (!found_in_list) { DEBUG_WARN(DEBUG_CATEGORY_BGP, "conn already removed or not in list, skipping"); return; }
DEBUG_INFO(DEBUG_CATEGORY_BGP, "peer=%016llx", (unsigned long long)conn->peer_node_id);
struct ROUTE_TABLE* rt = conn->instance->rt;
int nodes_removed = 0;
int cascaded = 0;
struct ll_entry* node_entry = group->nodes ? group->nodes->head : NULL;
while (node_entry) {
struct ll_entry* next = node_entry->next;
struct TOPO_GROUP_NODE* nq = (struct TOPO_GROUP_NODE*)node_entry;
{
uint64_t next_hop = nq->node_id;
struct ll_entry* pe = nq->paths ? nq->paths->head : NULL;
while (pe) { struct TOPO_NODEPATH* p = (struct TOPO_NODEPATH*)pe; if (p->conn == conn && p->hop_count >= 2) { uint64_t* hop = (uint64_t*)((uint8_t*)p + sizeof(struct TOPO_NODEPATH)); if (hop[p->hop_count - 1] == conn->peer_node_id) next_hop = hop[p->hop_count - 2]; break; } pe = pe->next; }
if (topo_group_remove_path(nq, conn) == 1) {
uint64_t key = nq->node_id;
if (key != conn->peer_node_id) { topo_recovery_add_node(group, nq, next_hop); cascaded++; }
nq->conn_presence = 0; nq->conn_up = 0;
topo_fire_nodeinfo_cbk(conn->instance, group, nq);
if (group->group_type != TOPO_GROUP_TYPE_CHAT && rt) route_delete(rt, nq);
if (conn->instance && conn->instance->control_srv) control_server_notify_node_removed(conn->instance->control_srv, key);
route_connectivity_cancel_node(conn->instance, nq);
if (nq->paths) { queue_free(nq->paths); nq->paths = NULL; }
topo_nodeq_free_group_fields(group->instance->topo_groups, nq);
struct ll_entry* entry = node_entry;
if (entry) { queue_remove_data(group->nodes, entry); queue_entry_free(entry); }
nodes_removed++;
etcp_router_conn_close_all_for_node(group->instance, group->group_id, key);
uint64_t wd_src = (key == conn->peer_node_id) ? conn->instance->node_id : conn->peer_node_id;
topo_group_broadcast_withdraw(group, key, wd_src, NULL);
DEBUG_DEBUG(DEBUG_CATEGORY_BGP, "Removed node %016llx after link down", (unsigned long long)key);
} else {
nq->conn_up &= ~NCONN_DIRECT;
{ int has_direct = 0; struct ll_entry* pe2 = nq->paths ? nq->paths->head : NULL;
while (pe2) { struct TOPO_NODEPATH* p = (struct TOPO_NODEPATH*)pe2; if (p->conn->peer_node_id == nq->node_id) { has_direct = 1; break; } pe2 = pe2->next; }
if (!has_direct) nq->conn_presence &= ~NCONN_DIRECT; }
topo_fire_nodeinfo_cbk(conn->instance, group, nq);
}
}
node_entry = next;
}
e = group->senders_list->head;
while (e) { struct TOPO_GROUP_CONN_ITEM* item = (struct TOPO_GROUP_CONN_ITEM*)e->data; if (item->conn == conn) { queue_remove_data(group->senders_list, e); queue_entry_free(e); break; } e = e->next; }
if (cascaded > 0) topo_recovery_start(group);
topo_group_connect_on_down(group, conn);
DEBUG_INFO(DEBUG_CATEGORY_BGP, "BGP peer removed: %s nodes=%d grp=%016llx", conn->log_name, nodes_removed, (unsigned long long)group->group_id);
}
// ============================================================================
// NODEINFO BASED IMPLEMENTATION
// ============================================================================
struct ETCP_CONN* topo_group_find_conn_for_node(struct TOPO_GROUP* group, uint64_t node_id) {
if (!group) return NULL;
struct TOPO_GROUP_NODE* nq = topo_node_find_by_id(group, node_id);
if (!nq || !nq->paths || !nq->paths->head) return NULL;
struct ll_entry* e = nq->paths->head;
struct TOPO_NODEPATH* best_live = NULL; uint8_t best_live_hops = 255;
struct TOPO_NODEPATH* best_any = NULL; uint8_t best_any_hops = 255;
while (e) {
struct TOPO_NODEPATH* path = (struct TOPO_NODEPATH*)e;
if (path->conn) { if (path->conn->links_up && path->hop_count < best_live_hops) { best_live = path; best_live_hops = path->hop_count; } if (path->hop_count < best_any_hops) { best_any = path; best_any_hops = path->hop_count; } }
e = e->next;
}
if (!best_live && best_any) DEBUG_DEBUG(DEBUG_CATEGORY_BGP, "find_conn_for_node %016llx: no live paths, fallback to best (hops=%d links_up=%d)", (unsigned long long)node_id, best_any_hops, best_any->conn->links_up);
return best_live ? best_live->conn : (best_any ? best_any->conn : NULL);
}
int topo_group_add_path(struct TOPO_GROUP_NODE* nq, struct ETCP_CONN* conn, uint64_t* hop_list, uint8_t hop_count, uint16_t cumulative_rtt) {
if (!nq || !conn || hop_count > MAX_HOPS || !hop_list) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "add_path: invalid args"); return -1; }
if (!nq->paths) { nq->paths = queue_new(conn->instance->ua, 0, 0, 0, "node_paths"); if (!nq->paths) return -1; }
size_t path_size = sizeof(struct TOPO_NODEPATH) - sizeof(struct ll_entry) + hop_count * 8;
struct ll_entry* pe = queue_entry_new(path_size); if (!pe) return -1;
struct TOPO_NODEPATH* path = (struct TOPO_NODEPATH*)pe;
path->conn = conn; path->hop_count = hop_count; path->cumulative_rtt = cumulative_rtt;
memcpy((uint64_t*)((uint8_t*)path + sizeof(struct TOPO_NODEPATH)), hop_list, hop_count * 8);
queue_data_put(nq->paths, pe);
return 0;
}
static int topo_group_remove_path_by_hop(struct TOPO_GROUP_NODE* nq, uint64_t wd_source) {
if (!nq || !nq->paths) return 0;
int removed = 0;
struct ll_entry* e = nq->paths->head;
while (e) {
struct TOPO_NODEPATH* path = (struct TOPO_NODEPATH*)e;
uint64_t* hop = (uint64_t*)((uint8_t*)path + sizeof(struct TOPO_NODEPATH));
bool has_wd = false; for (uint8_t i = 0; i < path->hop_count; i++) if (hop[i] == wd_source) { has_wd = true; break; }
if (has_wd) { struct ll_entry* next = e->next; queue_remove_data(nq->paths, e); queue_entry_free(e); removed++; e = next; continue; }
e = e->next;
}
if (removed > 0 && nq->paths && queue_entry_count(nq->paths) == 0) { queue_free(nq->paths); nq->paths = NULL; return 1; }
return removed;
}
int topo_group_remove_path(struct TOPO_GROUP_NODE* nq, struct ETCP_CONN* conn) {
if (!nq || !conn || !nq->paths) return -1;
struct ll_entry* e = nq->paths->head;
while (e) { struct TOPO_NODEPATH* path = (struct TOPO_NODEPATH*)e; if (path->conn == conn) { queue_remove_data(nq->paths, e); queue_entry_free(e); break; } e = e->next; }
int remaining = nq->paths ? queue_entry_count(nq->paths) : 0;
if (remaining == 0) { if (nq->paths) { queue_free(nq->paths); nq->paths = NULL; } return 1; }
return 0;
}
// ===== NODEINFO process =====
static void topo_group_send_err_group_mismatch(struct TOPO_GROUP* group, struct ETCP_CONN* conn, uint8_t expected_type, uint8_t received_flags) {
if (!group || !conn) return;
struct TOPOMSG_ERR_GROUP_MISMATCH* pkt = u_calloc(1, sizeof(struct TOPOMSG_ERR_GROUP_MISMATCH));
if (!pkt) return;
pkt->cmd = ETCP_ID_TOPO_ENTRY; pkt->subcmd = TOPO_SUBCMD_ERR_GROUP_MISMATCH;
pkt->group_id = group->group_id;
pkt->expected_type = expected_type; pkt->received_flags = received_flags;
struct ll_entry* e = queue_entry_new(0);
if (!e) { u_free(pkt); return; }
e->dgram = (uint8_t*)pkt; e->len = sizeof(struct TOPOMSG_ERR_GROUP_MISMATCH);
if (etcp_send(conn, e) != 0) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "etcp_send ERR_GROUP_MISMATCH failed"); u_free(pkt); queue_entry_free(e); }
}
int topo_group_process_nodeinfo(struct TOPO_GROUP* group, struct ETCP_CONN* from, const uint8_t* data, size_t len) {
if (!group || !from || len < sizeof(struct TOPOMSG_NODEINFO_PKT)) return -1;
struct TOPOMSG_NODEINFO_PKT* pkt = (struct TOPOMSG_NODEINFO_PKT*)data;
struct TOPOMSG_NODE* ni = &pkt->node;
if (ni->group_id != group->group_id) {
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "NODEINFO group_id mismatch from %s: expected=%016llx got=%016llx nid=%016llx",
from->log_name, (unsigned long long)group->group_id, (unsigned long long)ni->group_id, (unsigned long long)ni->node_id);
return -1;
}
// Проверка соответствия типа группы
uint8_t expected_flags = (group->group_type == TOPO_GROUP_TYPE_CHAT) ? 0 : TOPO_FLAG_SEND_SUBNETS;
if ((ni->flags & TOPO_FLAG_SEND_SUBNETS) != expected_flags) {
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "Group type mismatch with %s: expected_flags=0x%02x received_flags=0x%02x (local_type=%u)",
from->log_name, expected_flags, ni->flags, group->group_type);
topo_group_send_err_group_mismatch(group, from, group->group_type, ni->flags);
return -1;
}
int dyn = topo_node_dyn_size(ni);
if ((size_t)dyn + sizeof(struct TOPOMSG_NODEINFO_PKT) != len) { DEBUG_WARN(DEBUG_CATEGORY_BGP, "Incorrect packet size (%s)", from->log_name); return -1; }
uint64_t node_id = ni->node_id;
if (ni->hop_count >= MAX_HOPS) { DEBUG_WARN(DEBUG_CATEGORY_BGP, "NODEINFO from %s dropped: too many hops (%d)", from->log_name, ni->hop_count); return -1; }
if (node_id == group->instance->node_id) return 0;
struct TOPO_GROUP_NODE* nodeinfo1 = topo_node_find_by_id(group, node_id);
uint8_t new_ver = ni->ver;
if (nodeinfo1 && (int8_t)(nodeinfo1->last_ver - new_ver) >= 0) {
DEBUG_DEBUG(DEBUG_CATEGORY_BGP, "NODEINFO skip (stale ver): node=%016llx cur_ver=%d new_ver=%d from=%s", (unsigned long long)node_id, nodeinfo1->last_ver, new_ver, from->log_name);
int new_hops = ni->hop_count + 1;
if (new_hops <= MAX_HOPS) {
uint64_t hop_list[MAX_HOPS];
const uint8_t* hop_src = (const uint8_t*)ni + sizeof(struct TOPOMSG_NODE) + dyn - ni->hop_count * 8;
memcpy(hop_list, hop_src, ni->hop_count * 8);
hop_list[ni->hop_count] = from->peer_node_id;
topo_group_remove_path(nodeinfo1, from);
{ uint8_t _hc; uint16_t _rtt; topo_node_best_hop_list(nodeinfo1, &_hc, &_rtt);
topo_group_add_path(nodeinfo1, from, hop_list, new_hops, _rtt); }
}
return 0;
}
DEBUG_DEBUG(DEBUG_CATEGORY_BGP, "NODEINFO: node=%016llx ver=%d v4s=%d v4a=%d v6s=%d v6a=%d hops=%d from=%s",
(unsigned long long)node_id, new_ver, ni->local_v4_sockets, ni->local_v4_addrs,
ni->local_v6_sockets, ni->local_v6_addrs, ni->hop_count, from->log_name);
struct ll_queue* paths = NULL;
int is_new_node = 0;
if (nodeinfo1) {
topo_nodeq_free_group_fields(group->instance->topo_groups, nodeinfo1);
paths = nodeinfo1->paths; nodeinfo1->paths = NULL;
} else { is_new_node = 1; }
const uint8_t* ser_data = data + 2;
size_t ser_len = len - 2;
struct TOPO_NODE* new_ni = NULL;
struct TOPO_NODESUBNETS* new_subnets = NULL;
uint64_t* new_hop_list = NULL; uint8_t new_hop_count = 0;
uint16_t incoming_cumulative_rtt = 0;
if (topo_node_deserialize(group, ser_data, ser_len, &new_ni, &new_subnets, &new_hop_list, &new_hop_count, &incoming_cumulative_rtt) != 0) {
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "NODEINFO deserialize failed from %s nid=%016llx", from->log_name, (unsigned long long)node_id);
if (nodeinfo1) { queue_remove_data(group->nodes, &nodeinfo1->ll); queue_free(paths); queue_entry_free(&nodeinfo1->ll); }
return -1;
}
{ int v4c = topo_list_count((struct _topo_head*)new_ni->v4_addrs);
int v6c = topo_list_count((struct _topo_head*)new_ni->v6_addrs);
DEBUG_DEBUG(DEBUG_CATEGORY_BGP, "NODEINFO deser: nid=%016llx v4a=%d v6a=%d from=%s",
(unsigned long long)node_id, v4c, v6c, from->log_name); }
/* verify Ed25519 self-signature over canonical message */
if (node_id != sc_derive_node_id_from_pubkey(new_ni->public_key)) {
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "NODEINFO node_id mismatch public_key (forgery) node=%016llx from=%s",
(unsigned long long)node_id, from->log_name);
topo_node_destroy(group->instance->topo_groups, new_ni);
u_free(new_subnets); u_free(new_hop_list);
if (nodeinfo1) { queue_remove_data(group->nodes, &nodeinfo1->ll); queue_free(paths); queue_entry_free(&nodeinfo1->ll); }
return -1;
}
{
uint64_t ekchk; memcpy(&ekchk, new_ni->ed25519_public_key, 8);
if (ekchk == 0) {
DEBUG_DEBUG(DEBUG_CATEGORY_BGP, "NODEINFO x25519_self_sig SKIP (ed25519 key zero) node=%016llx from=%s",
(unsigned long long)node_id, from->log_name);
} else {
uint8_t sig_msg[TOPO_SIG_MSG_MAX_SIZE];
int sig_len = topo_node_build_sig_msg(new_ni, sig_msg, sizeof(sig_msg));
if (sig_len <= 0 || sc_ed25519_verify(new_ni->ed25519_public_key, sig_msg, (size_t)sig_len, new_ni->x25519_self_sig) != SC_OK) {
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "NODEINFO x25519_self_sig VERIFY FAIL node=%016llx ed_pubkey=%016llx... sig_len=%d from=%s — rejecting as forgery",
(unsigned long long)node_id, ekchk, sig_len, from->log_name);
topo_node_destroy(group->instance->topo_groups, new_ni);
u_free(new_subnets); u_free(new_hop_list);
if (nodeinfo1) { queue_remove_data(group->nodes, &nodeinfo1->ll); queue_free(paths); queue_entry_free(&nodeinfo1->ll); }
return -1;
}
DEBUG_DEBUG(DEBUG_CATEGORY_BGP, "NODEINFO x25519_self_sig OK node=%016llx ed_pubkey=%016llx... sig_len=%d from=%s",
(unsigned long long)node_id, ekchk, sig_len, from->log_name);
}
}
if (nodeinfo1) {
{ struct TOPO_NODE* stored = topo_node_registry_store(group->instance->topo_groups, new_ni);
if (stored != new_ni) new_ni = stored; }
new_ni->group_id = group->group_id;
new_ni->flags = pkt->node.flags;
nodeinfo1->node_id = new_ni ? new_ni->node_id : 0;
nodeinfo1->subnets = new_subnets;
} else {
struct ll_entry* qe = queue_entry_new(sizeof(struct TOPO_GROUP_NODE));
if (!qe) { topo_node_destroy(group->instance->topo_groups, new_ni); u_free(new_hop_list); u_free(new_subnets); return -1; }
nodeinfo1 = (struct TOPO_GROUP_NODE*)qe;
memset((uint8_t*)nodeinfo1 + sizeof(struct ll_entry), 0, sizeof(*nodeinfo1) - sizeof(struct ll_entry));
{ struct TOPO_NODE* stored = topo_node_registry_store(group->instance->topo_groups, new_ni);
if (stored != new_ni) new_ni = stored; }
new_ni->group_id = group->group_id;
new_ni->flags = pkt->node.flags;
nodeinfo1->node_id = new_ni ? new_ni->node_id : 0;
nodeinfo1->subnets = new_subnets;
nodeinfo1->connectivity.probe_status = PROBE_STATUS_NONE;
nodeinfo1->connectivity.interface_status = PROBE_RESULT_UNKNOWN;
nodeinfo1->connectivity.nat_status = PROBE_RESULT_UNKNOWN;
nodeinfo1->connectivity.real_status = PROBE_RESULT_UNKNOWN;
nodeinfo1->connectivity.ping_req_time = 0;
queue_data_put_with_index(group->nodes, &nodeinfo1->ll);
}
nodeinfo1->paths = paths; nodeinfo1->last_ver = new_ver;
uint64_t hop_list[MAX_HOPS];
if (new_hop_count > 0) memcpy(hop_list, new_hop_list, new_hop_count * 8);
hop_list[new_hop_count] = from->peer_node_id;
uint8_t extended_count = new_hop_count + 1;
u_free(new_hop_list);
topo_group_remove_path_by_hop(nodeinfo1, from->peer_node_id);
topo_group_add_path(nodeinfo1, from, hop_list, extended_count, incoming_cumulative_rtt);
nodeinfo1->conn_presence |= NCONN_BGP; nodeinfo1->conn_up |= NCONN_BGP;
if (from->peer_node_id == node_id) { nodeinfo1->conn_presence |= NCONN_DIRECT; nodeinfo1->conn_up |= NCONN_DIRECT; }
if (group->group_type != TOPO_GROUP_TYPE_CHAT && group->instance->rt) route_insert(group->instance->rt, nodeinfo1);
if (node_id != group->instance->node_id) {
sqlite3* sdb = group->instance->topo_sqlite_db;
if (sdb) {
/* узлы в nodes пишет только merkle-путь; BGP лишь дополняет IP для мемберов */
if (topo_node_sqlite_member_exists(sdb, node_id))
topo_node_sqlite_addrs_put(sdb, node_id, new_ni);
if (group->group_type == TOPO_GROUP_TYPE_CHAT && group->channel_id[0]) {
topo_node_sqlite_member_put(sdb, group->channel_id, node_id, NULL, 0, NULL, 0, NULL, NULL, NULL, NULL, NULL, NULL, 0);
}
topo_node_sqlite_nodeinfo_updated(sdb, node_id);
}
}
if (group->instance->control_srv) control_server_notify_node_change(group->instance->control_srv, nodeinfo1);
DEBUG_DEBUG(DEBUG_CATEGORY_BGP, "node_updated_cb: node=%016llx has_cb=%d ch=%s type=%d", (unsigned long long)node_id, group->instance->topo_groups->node_updated_cb ? 1 : 0, group->channel_id, group->group_type);
if (group->instance->topo_groups->node_updated_cb)
group->instance->topo_groups->node_updated_cb(group->instance, node_id, ni->public_key, ni->ed25519_public_key);
{ /* fire BGP node event callbacks */
int ev = is_new_node ? TOPO_NODE_EVENT_NEW : TOPO_NODE_EVENT_UPDATE;
struct topo_node_cbk_entry* c = group->node_cbks;
while (c) { c->fn(group, node_id, ev, c->arg); c = c->next; }
}
topo_fire_nodeinfo_cbk(group->instance, group, nodeinfo1);
int hop_count = extended_count;
struct ll_entry* se = group->senders_list ? group->senders_list->head : NULL;
while (se) {
struct TOPO_GROUP_CONN_ITEM* item = (struct TOPO_GROUP_CONN_ITEM*)se->data;
if (item->conn) {
uint64_t id = item->conn->peer_node_id;
if (id != node_id) {
int found = 0; for (int i = 0; i < hop_count; i++) if (hop_list[i] == id) found = 1;
if (found == 0) {
uint16_t out_rtt = topo_get_chain_rtt(nodeinfo1);
topo_group_send_nodeinfo(group, nodeinfo1, item->conn, out_rtt);
}
}
}
se = se->next;
}
int socks_changed = 1;
if (!is_new_node) socks_changed = 1;
if (node_id != group->instance->node_id && (is_new_node || socks_changed)) {
struct TOPO_NODE* tni = topo_node_registry_find(group->instance->topo_groups, nodeinfo1->node_id);
int v4a = tni ? topo_list_count((struct _topo_head*)tni->v4_addrs) : 0;
int v6a = tni ? topo_list_count((struct _topo_head*)tni->v6_addrs) : 0;
if (v4a > 0 || v6a > 0) route_connectivity_probe_node(group->instance, group, nodeinfo1);
}
return 0;
}
int topo_group_process_withdraw(struct TOPO_GROUP* group, struct ETCP_CONN* sender, const uint8_t* data, size_t len) {
if (!group || len < sizeof(struct TOPOMSG_WITHDRAW_PKT)) return -1;
struct TOPOMSG_WITHDRAW_PKT* wp = (struct TOPOMSG_WITHDRAW_PKT*)data;
uint64_t node_id = wp->node_id, wd_source = wp->wd_source;
struct TOPO_GROUP_NODE* nq = topo_node_find_by_id(group, node_id);
if (!nq) { DEBUG_INFO(DEBUG_CATEGORY_BGP, "node not found"); return 0; }
int ret = topo_group_remove_path_by_hop(nq, wd_source);
if (ret == 1) {
nq->conn_presence = 0; nq->conn_up = 0;
topo_fire_nodeinfo_cbk(group->instance, group, nq);
if (group->group_type != TOPO_GROUP_TYPE_CHAT && group->instance && group->instance->rt) route_delete(group->instance->rt, nq);
if (group->instance->control_srv) control_server_notify_node_removed(group->instance->control_srv, node_id);
route_connectivity_cancel_node(group->instance, nq);
if (nq->paths) { queue_free(nq->paths); nq->paths = NULL; }
topo_nodeq_free_group_fields(group->instance->topo_groups, nq);
struct ll_entry* entry = queue_find_data_by_index(group->nodes, &node_id);
if (entry) { queue_remove_data(group->nodes, entry); queue_entry_free(entry); }
topo_group_broadcast_withdraw(group, node_id, wd_source, sender);
if (group->group_type == TOPO_GROUP_TYPE_CHAT && group->instance->topo_sqlite_db)
topo_node_sqlite_member_del(group->instance->topo_sqlite_db, group->channel_id, node_id);
{ /* fire BGP REMOVE callback */
struct topo_node_cbk_entry* c = group->node_cbks;
while (c) { c->fn(group, node_id, TOPO_NODE_EVENT_REMOVE, c->arg); c = c->next; }
}
}
return 0;
}
void topo_group_send_nodeinfo(struct TOPO_GROUP* group, struct TOPO_GROUP_NODE* node, struct ETCP_CONN* conn, uint16_t cumulative_rtt) {
if (!group || !node || !conn) return;
size_t max_sz = sizeof(struct TOPOMSG_NODEINFO_PKT) + 4096;
uint8_t* p = u_malloc(max_sz);
if (!p) return;
p[0] = ETCP_ID_TOPO_ENTRY; p[1] = TOPO_SUBCMD_NODEINFO;
struct TOPO_NODE* sni = topo_node_registry_find(group->instance->topo_groups, node->node_id);
if (!sni) { DEBUG_WARN(DEBUG_CATEGORY_BGP, "send_nodeinfo: node %016llx NOT in registry — skip forward to %s", (unsigned long long)node->node_id, conn->log_name); u_free(p); return; }
DEBUG_DEBUG(DEBUG_CATEGORY_BGP, "send_nodeinfo: node %016llx ver=%d grp=%016llx to conn=%s", (unsigned long long)node->node_id, sni->ver, (unsigned long long)sni->group_id, conn->log_name);
int ser_len = topo_node_serialize(sni, node, p + 2, max_sz - 2, cumulative_rtt);
if (ser_len < 0) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "send_nodeinfo: serialize failed for node %016llx", (unsigned long long)node->node_id); u_free(p); return; }
struct ll_entry* e = queue_entry_new(0);
if (!e) { u_free(p); return; }
e->dgram = p; e->len = (size_t)ser_len + 2;
if (etcp_send(conn, e) != 0) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "send_nodeinfo: etcp_send FAILED for node %016llx to %s", (unsigned long long)node->node_id, conn->log_name); u_free(p); queue_entry_free(e); }
}
static void topo_group_add_to_senders(struct TOPO_GROUP* group, struct ETCP_CONN* conn) {
if (!group || !conn || !group->senders_list) return;
bool already = false;
struct ll_entry* e = group->senders_list->head;
while (e) { if (((struct TOPO_GROUP_CONN_ITEM*)e->data)->conn == conn) { already = true; break; } e = e->next; }
if (!already) {
struct ll_entry* item_entry = queue_entry_new(sizeof(struct TOPO_GROUP_CONN_ITEM));
if (item_entry) { ((struct TOPO_GROUP_CONN_ITEM*)item_entry->data)->conn = conn; queue_data_put(group->senders_list, item_entry); }
}
}
static bool topo_group_should_send_to(const struct TOPO_GROUP_NODE* nq, uint64_t target_id) {
if (!nq || !nq->paths) return false;
if (target_id == nq->node_id) return false;
struct ll_entry* e = nq->paths->head;
while (e) {
struct TOPO_NODEPATH* path = (struct TOPO_NODEPATH*)e;
uint64_t* hop = (uint64_t*)((uint8_t*)path + sizeof(struct TOPO_NODEPATH));
bool has_id = false; for (uint8_t i = 0; i < path->hop_count; i++) if (hop[i] == target_id) { has_id = true; break; }
if (!has_id) return true;
e = e->next;
}
return false;
}
static void topo_group_send_full_table(struct TOPO_GROUP* group, struct ETCP_CONN* conn) {
if (!group || !conn) return;
uint64_t target = conn->peer_node_id;
struct ll_entry* e = group->nodes ? group->nodes->head : NULL;
while (e) {
struct TOPO_GROUP_NODE* nq = (struct TOPO_GROUP_NODE*)e;
if (nq->node_id == group->instance->node_id) { e = e->next; continue; }
if (!nq->paths) { DEBUG_WARN(DEBUG_CATEGORY_BGP, "node has no paths"); e = e->next; continue; }
if (topo_group_should_send_to(nq, target)) topo_group_send_nodeinfo(group, nq, conn, topo_get_chain_rtt(nq));
e = e->next;
}
}
static void topo_group_handle_request_table(struct TOPO_GROUP* group, struct ETCP_CONN* conn) {
if (!group || !conn) return;
topo_group_send_nodeinfo(group, group->local_node, conn, 0);
topo_group_send_full_table(group, conn);
topo_group_add_to_senders(group, conn);
topo_group_send_table_complete(group, conn);
}
/* ── BGP node event callbacks ── */
void topo_group_add_node_cbk(struct TOPO_GROUP* group, topo_node_event_fn fn, void* arg) {
if (!group || !fn) return;
struct topo_node_cbk_entry* e = u_malloc(sizeof(*e));
if (!e) return;
e->fn = fn; e->arg = arg;
e->next = group->node_cbks;
group->node_cbks = e;
}
void topo_group_remove_node_cbk(struct TOPO_GROUP* group, topo_node_event_fn fn, void* arg) {
if (!group || !fn) return;
struct topo_node_cbk_entry** p = &group->node_cbks;
while (*p) {
if ((*p)->fn == fn && (*p)->arg == arg) {
struct topo_node_cbk_entry* r = *p;
*p = r->next; u_free(r);
return;
}
p = &(*p)->next;
}
}
/* ── Global nodeinfo callbacks (instance-level, any node change) ── */
void utun_add_nodeinfo_cbk(struct UTUN_INSTANCE* instance, nodeinfo_cbk_fn fn, void* arg) {
if (!instance || !fn) return;
struct nodeinfo_cbk_entry* e = u_malloc(sizeof(*e));
if (!e) return;
e->fn = fn; e->arg = arg;
e->next = instance->nodeinfo_cbks;
instance->nodeinfo_cbks = e;
}
void utun_remove_nodeinfo_cbk(struct UTUN_INSTANCE* instance, nodeinfo_cbk_fn fn, void* arg) {
if (!instance || !fn) return;
struct nodeinfo_cbk_entry** p = &instance->nodeinfo_cbks;
while (*p) {
if ((*p)->fn == fn && (*p)->arg == arg) {
struct nodeinfo_cbk_entry* r = *p;
*p = r->next; u_free(r);
return;
}
p = &(*p)->next;
}
}
void topo_fire_nodeinfo_cbk(struct UTUN_INSTANCE* instance, struct TOPO_GROUP* group, struct TOPO_GROUP_NODE* node) {
if (!instance || !group || !node) return;
struct nodeinfo_cbk_entry* c = instance->nodeinfo_cbks;
while (c) { c->fn(group, node, c->arg); c = c->next; }
}
void topo_group_send_withdraw(struct TOPO_GROUP* group, uint64_t node_id) {
if (!group) return;
DEBUG_INFO(DEBUG_CATEGORY_BGP, "node=%016llx", (unsigned long long)node_id);
topo_group_broadcast_withdraw(group, node_id, group->instance->node_id, NULL);
}