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.
516 lines
20 KiB
516 lines
20 KiB
/** |
|
* @file test_nat_detection.c |
|
* @brief Интеграционный тест детекции типа NAT через три узла |
|
* |
|
* Топология: C1 -> S <- C2 |
|
* - S получает NODEINFO от C1 (direct peer) |
|
* - S использует C2 как третий узел для NAT-пинга C1 |
|
* - C2 пингует C1, результат возвращается S |
|
* - S отправляет NAT_INFO C1 |
|
* - Проверяем корректность заполнения всех NAT-полей |
|
*/ |
|
|
|
#include <stdio.h> |
|
#include <stdlib.h> |
|
#include <string.h> |
|
#include <unistd.h> |
|
#include "test_utils.h" |
|
#include "../src/etcp.h" |
|
#include "../src/etcp_connections.h" |
|
#include "../src/config_parser.h" |
|
#include "../src/config_updater.h" |
|
#include "../src/utun_instance.h" |
|
#include "../src/routing.h" |
|
#include "../src/topo_group.h" |
|
#include "../src/route_ping.h" |
|
#include "../src/topo_node.h" |
|
#include "../src/tun_if.h" |
|
#include "../src/secure_channel.h" |
|
#include "../lib/u_async.h" |
|
#include "../lib/debug_config.h" |
|
|
|
#define TEST_TIMEOUT_MS 5000 |
|
#define NODE_ID_S 0x1111111111111111ULL |
|
#define NODE_ID_C1 0x2222222222222222ULL |
|
#define NODE_ID_C2 0x3333333333333333ULL |
|
|
|
static struct UTUN_INSTANCE* inst_s = NULL; |
|
static struct UTUN_INSTANCE* inst_c1 = NULL; |
|
static struct UTUN_INSTANCE* inst_c2 = NULL; |
|
static struct UASYNC* ua = NULL; |
|
static int test_timed_out = 0; |
|
static void* test_timeout_id = NULL; |
|
|
|
static char temp_dir[] = "/tmp/utun_nat_test_XXXXXX"; |
|
static char config_s[256]; |
|
static char config_c1[256]; |
|
static char config_c2[256]; |
|
|
|
static struct { |
|
int done; |
|
int success; |
|
uint16_t avg_rtt; |
|
uint8_t count_sent; |
|
uint8_t count_ok; |
|
} nat_ping_result; |
|
|
|
static int write_config(const char* path, const char* content) { |
|
FILE* f = fopen(path, "w"); |
|
if (!f) return -1; |
|
fprintf(f, "%s", content); |
|
fclose(f); |
|
return 0; |
|
} |
|
|
|
static char* get_pubkey_from_config(const char* path) { |
|
struct utun_config* cfg = parse_config(path); |
|
if (!cfg) return NULL; |
|
char* pub = strdup(cfg->global.my_public_key_hex); |
|
free_config(cfg); |
|
return pub; |
|
} |
|
|
|
static int create_temp_configs(void) { |
|
if (test_mkdtemp(temp_dir) != 0) { |
|
fprintf(stderr, "Failed to create temp directory\n"); |
|
return -1; |
|
} |
|
snprintf(config_s, sizeof(config_s), "%s/s.conf", temp_dir); |
|
snprintf(config_c1, sizeof(config_c1), "%s/c1.conf", temp_dir); |
|
snprintf(config_c2, sizeof(config_c2), "%s/c2.conf", temp_dir); |
|
|
|
const char* tpl_s = |
|
"[global]\n" |
|
"my_node_id=0x1111111111111111\n" |
|
"tun_ip=10.100.0.1/24\n" |
|
"tun_ifname=tun100\n" |
|
"\n" |
|
"[server:test_s]\n" |
|
"addr=127.0.0.1:39011\n" |
|
"type=public\n" |
|
"\n" |
|
"[allowed_keys]\n" |
|
"allow_all=1\n"; |
|
if (write_config(config_s, tpl_s) != 0) return -1; |
|
if (config_ensure_keys_and_node_id(config_s) != 0) return -1; |
|
char* pub_s = get_pubkey_from_config(config_s); |
|
if (!pub_s) return -1; |
|
|
|
const char* tpl_c2 = |
|
"[global]\n" |
|
"my_node_id=0x3333333333333333\n" |
|
"tun_ip=10.100.0.3/24\n" |
|
"tun_ifname=tun103\n" |
|
"\n" |
|
"[server:test_c2]\n" |
|
"addr=127.0.0.1:39013\n" |
|
"type=public\n" |
|
"\n" |
|
"[client:to_s]\n" |
|
"keepalive=1\n" |
|
"peer_public_key=%s\n" |
|
"link=test_c2:127.0.0.1:39011\n"; |
|
char tpl_c2_full[4096]; |
|
snprintf(tpl_c2_full, sizeof(tpl_c2_full), tpl_c2, pub_s); |
|
if (write_config(config_c2, tpl_c2_full) != 0) { free(pub_s); return -1; } |
|
if (config_ensure_keys_and_node_id(config_c2) != 0) { free(pub_s); return -1; } |
|
char* pub_c2 = get_pubkey_from_config(config_c2); |
|
if (!pub_c2) { free(pub_s); return -1; } |
|
|
|
const char* tpl_c1 = |
|
"[global]\n" |
|
"my_node_id=0x2222222222222222\n" |
|
"tun_ip=10.100.0.2/24\n" |
|
"tun_ifname=tun102\n" |
|
"\n" |
|
"[server:test_c1]\n" |
|
"addr=127.0.0.1:39012\n" |
|
"type=nat\n" |
|
"\n" |
|
"[client:to_s]\n" |
|
"keepalive=1\n" |
|
"peer_public_key=%s\n" |
|
"link=test_c1:127.0.0.1:39011\n"; |
|
char tpl_c1_full[4096]; |
|
snprintf(tpl_c1_full, sizeof(tpl_c1_full), tpl_c1, pub_s); |
|
free(pub_s); |
|
if (write_config(config_c1, tpl_c1_full) != 0) { free(pub_c2); return -1; } |
|
if (config_ensure_keys_and_node_id(config_c1) != 0) { free(pub_c2); return -1; } |
|
free(pub_c2); |
|
|
|
return 0; |
|
} |
|
|
|
static void cleanup_temp_configs(void) { |
|
test_unlink(config_s); |
|
test_unlink(config_c1); |
|
test_unlink(config_c2); |
|
test_rmdir(temp_dir); |
|
} |
|
|
|
static int has_initialized_link(struct UTUN_INSTANCE* inst) { |
|
if (!inst) return 0; |
|
struct ETCP_CONN* conn = inst->connections; |
|
while (conn) { |
|
struct ETCP_LINK* link = conn->links; |
|
while (link) { |
|
if (link->initialized) return 1; |
|
link = link->next; |
|
} |
|
conn = conn->next; |
|
} |
|
return 0; |
|
} |
|
|
|
static struct ETCP_LINK* find_link_to_node(struct UTUN_INSTANCE* inst, uint64_t node_id) { |
|
if (!inst) return NULL; |
|
struct ETCP_CONN* conn = inst->connections; |
|
while (conn) { |
|
if (conn->peer_node_id == node_id) return conn->links; |
|
conn = conn->next; |
|
} |
|
return NULL; |
|
} |
|
|
|
static void test_timeout_cb(void* arg) { |
|
(void)arg; |
|
test_timed_out = 1; |
|
DEBUG_ERROR(DEBUG_CATEGORY_ETCP, "test_nat_detection: overall test timeout"); |
|
} |
|
|
|
static void nat_ping_resp_cb(int success, uint16_t avg_rtt, uint8_t count_sent, uint8_t count_ok, void* arg) { |
|
(void)arg; |
|
nat_ping_result.done = 1; |
|
nat_ping_result.success = success; |
|
nat_ping_result.avg_rtt = avg_rtt; |
|
nat_ping_result.count_sent = count_sent; |
|
nat_ping_result.count_ok = count_ok; |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "nat_ping_resp_cb: success=%d avg_rtt=%u sent=%u ok=%u", |
|
success, (unsigned)avg_rtt, (unsigned)count_sent, (unsigned)count_ok); |
|
} |
|
|
|
int main(void) { |
|
int test_result = 1; |
|
debug_config_init(); |
|
debug_set_level(DEBUG_LEVEL_INFO); |
|
debug_set_categories(DEBUG_CATEGORY_ETCP | DEBUG_CATEGORY_BGP | DEBUG_CATEGORY_ROUTING); |
|
utun_instance_set_tun_init_enabled(0); |
|
|
|
if (create_temp_configs() != 0) { |
|
fprintf(stderr, "Failed to create temp configs\n"); |
|
return 1; |
|
} |
|
|
|
ua = uasync_create(); |
|
if (!ua) { |
|
cleanup_temp_configs(); |
|
return 1; |
|
} |
|
|
|
inst_s = utun_instance_create(ua, config_s); |
|
inst_c1 = utun_instance_create(ua, config_c1); |
|
inst_c2 = utun_instance_create(ua, config_c2); |
|
if (!inst_s || !inst_c1 || !inst_c2) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_ETCP, "Failed to create instances"); |
|
goto cleanup; |
|
} |
|
|
|
// Разрешаем NAT check для localhost (для теста) |
|
if (topo_groups_get_default(inst_s->topo_groups)) topo_group_set_nat_check_local(topo_groups_get_default(inst_s->topo_groups), 1); |
|
|
|
if (init_connections(inst_s) != 0 || init_connections(inst_c1) != 0 || init_connections(inst_c2) != 0) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_ETCP, "Failed to init connections"); |
|
goto cleanup; |
|
} |
|
|
|
test_timeout_id = uasync_set_timeout(ua, TEST_TIMEOUT_MS * 10, NULL, test_timeout_cb, "test_nat"); |
|
|
|
// 1. Wait for links C1->S and C2->S to initialize |
|
DEBUG_INFO(DEBUG_CATEGORY_ETCP, "Waiting for ETCP links to initialize..."); |
|
// Wait for links to be initialized instead of fixed 100 iterations |
|
while (!test_timed_out) { |
|
if (has_initialized_link(inst_c1) && has_initialized_link(inst_c2)) { |
|
DEBUG_INFO(DEBUG_CATEGORY_ETCP, "Links C1->S and C2->S initialized"); |
|
break; |
|
} |
|
uasync_poll(ua, 10); |
|
} |
|
if (test_timed_out) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_ETCP, "Timeout waiting for links"); |
|
goto cleanup; |
|
} |
|
|
|
// 2. Wait for BGP exchange so S learns about C1 and C2 |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "Waiting for BGP exchange (S learns C1 and C2)..."); |
|
int bgp_wait_cycles = 0; |
|
while (!test_timed_out && bgp_wait_cycles < 500) { |
|
if (topo_groups_get_default(inst_s->topo_groups) && topo_node_find_by_id(topo_groups_get_default(inst_s->topo_groups), NODE_ID_C1) != NULL && |
|
topo_node_find_by_id(topo_groups_get_default(inst_s->topo_groups), NODE_ID_C2) != NULL) { |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "S learned about C1 and C2"); |
|
break; |
|
} |
|
uasync_poll(ua, 10); |
|
bgp_wait_cycles++; |
|
} |
|
if (!topo_groups_get_default(inst_s->topo_groups) || topo_node_find_by_id(topo_groups_get_default(inst_s->topo_groups), NODE_ID_C1) == NULL || |
|
topo_node_find_by_id(topo_groups_get_default(inst_s->topo_groups), NODE_ID_C2) == NULL) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "S did not learn about C1/C2 in time"); |
|
goto cleanup; |
|
} |
|
|
|
// Verify C1 socket has config type before NAT detection |
|
{ |
|
struct ETCP_SOCKET* s = inst_c1->etcp_sockets; |
|
if (!s || s->type != CFG_SERVER_TYPE_NAT) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: C1 socket type=%d, expected CFG_SERVER_TYPE_NAT(%d) before detection", |
|
s ? (int)s->type : -1, CFG_SERVER_TYPE_NAT); |
|
goto cleanup; |
|
} |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "C1 socket has config NAT type before detection"); |
|
} |
|
|
|
// 3. Wait for NAT detection to complete for C1 - check link on server |
|
struct ETCP_LINK* link_sc1 = find_link_to_node(inst_s, NODE_ID_C1); |
|
if (!link_sc1) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "No link to C1 on server"); |
|
goto cleanup; |
|
} |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "Waiting for NAT detection to complete for C1..."); |
|
bgp_wait_cycles = 0; |
|
while (!test_timed_out && bgp_wait_cycles < 1500) { |
|
if (link_sc1->nat_check_status == NAT_CHECK_EIM) { |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "NAT detection completed for C1: EIM"); |
|
break; |
|
} |
|
uasync_poll(ua, 10); |
|
bgp_wait_cycles++; |
|
} |
|
if (!link_sc1 || link_sc1->nat_check_status != NAT_CHECK_EIM) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "NAT detection did not complete for C1"); |
|
goto cleanup; |
|
} |
|
|
|
// 4. Wait for C1 to receive NAT_INFO (verified type) |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "Waiting for C1 to receive NAT_INFO..."); |
|
bgp_wait_cycles = 0; |
|
while (!test_timed_out && bgp_wait_cycles < 500) { |
|
struct ETCP_SOCKET* sock = inst_c1->etcp_sockets; |
|
int found = 0; |
|
while (sock) { |
|
if (sock->nat_type == NAT_VERIFIED_EIM) { found = 1; break; } |
|
sock = sock->next; |
|
} |
|
if (found) { |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "C1 received NAT_INFO"); |
|
/* Даем время для получения NODEINFO с обновленным local_node */ |
|
for (int i = 0; i < 50 && !test_timed_out; i++) { |
|
uasync_poll(ua, 10); |
|
} |
|
break; |
|
} |
|
uasync_poll(ua, 10); |
|
bgp_wait_cycles++; |
|
} |
|
|
|
// 5. Verify all NAT fields on server |
|
struct TOPO_NODEQ* node_c1 = topo_node_find_by_id(topo_groups_get_default(inst_s->topo_groups), NODE_ID_C1); |
|
if (!node_c1) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "TOPO_NODEQ for C1 disappeared"); |
|
goto cleanup; |
|
} |
|
if (link_sc1->nat_check_status != NAT_CHECK_EIM) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: nat_check_status=%d, expected EIM(%d)", |
|
(int)link_sc1->nat_check_status, NAT_CHECK_EIM); |
|
goto cleanup; |
|
} |
|
if (link_sc1->nat_type != NAT_TYPE_EIM) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: nat_type=%d, expected EIM(%d)", |
|
(int)link_sc1->nat_type, NAT_TYPE_EIM); |
|
goto cleanup; |
|
} |
|
if (link_sc1->nat_ip == 0 || link_sc1->nat_port == 0) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: nat_ip/port not set (ip=%08x port=%u)", |
|
(unsigned)link_sc1->nat_ip, (unsigned)link_sc1->nat_port); |
|
goto cleanup; |
|
} |
|
|
|
// Verify link nat_type on server |
|
struct ETCP_CONN* conn_sc1 = inst_s->connections; |
|
while (conn_sc1) { |
|
if (conn_sc1->peer_node_id == NODE_ID_C1) break; |
|
conn_sc1 = conn_sc1->next; |
|
} |
|
if (!link_sc1 || link_sc1->nat_type != NAT_TYPE_EIM) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: link nat_type not EIM on server"); |
|
goto cleanup; |
|
} |
|
|
|
// Verify socket nat_type on C1 |
|
struct ETCP_SOCKET* sock_c1 = NULL; |
|
struct ETCP_SOCKET* sock = inst_c1->etcp_sockets; |
|
while (sock) { |
|
if (sock->nat_type == NAT_VERIFIED_EIM) { |
|
sock_c1 = sock; |
|
break; |
|
} |
|
sock = sock->next; |
|
} |
|
if (!sock_c1) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: no socket with NAT_VERIFIED_EIM on C1"); |
|
goto cleanup; |
|
} |
|
|
|
// Verify local_node socket update on C1 (received NAT_INFO updated nodeinfo) |
|
if (topo_groups_get_default(inst_c1->topo_groups) && topo_groups_get_default(inst_c1->topo_groups)->local_node && topo_groups_get_default(inst_c1->topo_groups)->local_node->node) { |
|
int found = 0; |
|
for (const struct TOPO_SOCKMETA4* m = topo_groups_get_default(inst_c1->topo_groups)->local_node->node->v4_sock_meta; m; m = m->next) { |
|
if (m->id == sock_c1->sock_id) { |
|
if (m->nat_type != NAT_VERIFIED_EIM) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: local_node socket meta not updated on C1: nat_type=%u expected=%u", m->nat_type, NAT_VERIFIED_EIM); |
|
goto cleanup; |
|
} |
|
found = 1; break; |
|
} |
|
} |
|
if (!found) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: socket not found in local_node meta on C1"); goto cleanup; } |
|
// Verify NAT addr in flat address list |
|
int nat_found = 0; |
|
for (const struct TOPO_ADDR4* a = topo_groups_get_default(inst_c1->topo_groups)->local_node->node->v4_addrs; a; a = a->next) { |
|
if (a->type == TOPO_ADDR_NAT && a->socket_id == sock_c1->sock_id) { |
|
uint32_t addr_ip; memcpy(&addr_ip, a->addr, 4); |
|
if (addr_ip != link_sc1->nat_ip || a->port != link_sc1->nat_port) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: NAT addr mismatch in local_node: addr=%08x nat_ip=%08x port=%u nat_port=%u", |
|
addr_ip, link_sc1->nat_ip, a->port, link_sc1->nat_port); |
|
goto cleanup; |
|
} |
|
nat_found = 1; break; |
|
} |
|
} |
|
if (!nat_found) { DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: NAT addr not found in local_node flat addr list on C1"); goto cleanup; } |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "local_node meta+addr check PASSED on C1"); |
|
} |
|
|
|
// Wait for C2 to learn updated C1 nodeinfo (with verified NAT type) |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "Waiting for C2 to learn updated C1 nodeinfo..."); |
|
bgp_wait_cycles = 0; |
|
int c2_verified_nat = 0; |
|
while (!test_timed_out && bgp_wait_cycles < 500) { |
|
struct TOPO_NODEQ* node_c1_on_c2 = topo_groups_get_default(inst_c2->topo_groups) ? topo_node_find_by_id(topo_groups_get_default(inst_c2->topo_groups), NODE_ID_C1) : NULL; |
|
if (node_c1_on_c2 && node_c1_on_c2->node) { |
|
for (const struct TOPO_SOCKMETA4* m = node_c1_on_c2->node->v4_sock_meta; m; m = m->next) { |
|
if (m->nat_type == NAT_VERIFIED_EIM) { c2_verified_nat = 1; break; } |
|
} |
|
if (c2_verified_nat) break; |
|
} |
|
uasync_poll(ua, 10); |
|
bgp_wait_cycles++; |
|
} |
|
if (!c2_verified_nat) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: C2 did not receive updated C1 nodeinfo with verified NAT"); |
|
goto cleanup; |
|
} |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "C2 received updated C1 nodeinfo with verified NAT"); |
|
|
|
// 6. Separate STUN check via explicit route_ping_send_req_addr |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "Performing explicit STUN ping from S via C2 to C1..."); |
|
struct ETCP_CONN* conn_sc2 = NULL; |
|
struct ETCP_CONN* conn = inst_s->connections; |
|
while (conn) { |
|
if (conn->peer_node_id == NODE_ID_C2) { conn_sc2 = conn; break; } |
|
conn = conn->next; |
|
} |
|
if (!conn_sc2) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: S has no connection to C2"); |
|
goto cleanup; |
|
} |
|
|
|
memset(&nat_ping_result, 0, sizeof(nat_ping_result)); |
|
/* nat_ip уже в network byte order, API тоже принимает NBO */ |
|
uint32_t target_ip_net = link_sc1->nat_ip; |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "TEST: sending ping with pubkey, nat_ip_net=0x%08x nat_port=%u", |
|
link_sc1->nat_ip, link_sc1->nat_port); |
|
int ret = route_ping_send_req_addr(topo_groups_get_default(inst_s->topo_groups), conn_sc2, |
|
target_ip_net, link_sc1->nat_port, |
|
3, 10, 200, 3000, nat_ping_resp_cb, NULL, |
|
node_c1->node->public_key); |
|
if (ret != 0) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "route_ping_send_req_addr failed: %d", ret); |
|
goto cleanup; |
|
} |
|
|
|
bgp_wait_cycles = 0; |
|
while (!test_timed_out && bgp_wait_cycles < 500 && !nat_ping_result.done) { |
|
uasync_poll(ua, 10); |
|
bgp_wait_cycles++; |
|
} |
|
if (!nat_ping_result.done) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: STUN ping timeout"); |
|
goto cleanup; |
|
} |
|
if (!nat_ping_result.success || nat_ping_result.count_ok == 0) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: STUN ping failed success=%d ok=%u", |
|
nat_ping_result.success, (unsigned)nat_ping_result.count_ok); |
|
goto cleanup; |
|
} |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "STUN check PASSED"); |
|
|
|
// 7. Test route_ping_send_req_addr WITHOUT embedded pubkey (C2 should resolve pubkey from node_id) |
|
// First wait for C2 to learn C1's nodeinfo via BGP exchange from S |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "Waiting for C2 to learn C1 nodeinfo..."); |
|
bgp_wait_cycles = 0; |
|
while (!test_timed_out && bgp_wait_cycles < 500) { |
|
if (topo_groups_get_default(inst_c2->topo_groups) && topo_node_find_by_id(topo_groups_get_default(inst_c2->topo_groups), NODE_ID_C1) != NULL) { |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "C2 learned C1 nodeinfo"); |
|
break; |
|
} |
|
uasync_poll(ua, 10); |
|
bgp_wait_cycles++; |
|
} |
|
if (!topo_groups_get_default(inst_c2->topo_groups) || topo_node_find_by_id(topo_groups_get_default(inst_c2->topo_groups), NODE_ID_C1) == NULL) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: C2 did not learn C1 nodeinfo in time"); |
|
goto cleanup; |
|
} |
|
|
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "Testing route ping without embedded pubkey..."); |
|
memset(&nat_ping_result, 0, sizeof(nat_ping_result)); |
|
/* nat_ip уже в network byte order, API тоже принимает NBO */ |
|
target_ip_net = link_sc1->nat_ip; |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "TEST: sending ping NO pubkey, nat_ip_net=0x%08x nat_port=%u", |
|
link_sc1->nat_ip, link_sc1->nat_port); |
|
ret = route_ping_send_req_addr(topo_groups_get_default(inst_s->topo_groups), conn_sc2, |
|
target_ip_net, link_sc1->nat_port, |
|
3, 10, 200, 3000, nat_ping_resp_cb, NULL, |
|
node_c1->node->public_key); |
|
if (ret != 0) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "route_ping_send_req_addr (no pubkey) failed: %d", ret); |
|
goto cleanup; |
|
} |
|
|
|
bgp_wait_cycles = 0; |
|
while (!test_timed_out && bgp_wait_cycles < 500 && !nat_ping_result.done) { |
|
uasync_poll(ua, 10); |
|
bgp_wait_cycles++; |
|
} |
|
if (!nat_ping_result.done) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: no-pubkey ping timeout"); |
|
goto cleanup; |
|
} |
|
if (!nat_ping_result.success || nat_ping_result.count_ok == 0) { |
|
DEBUG_ERROR(DEBUG_CATEGORY_BGP, "FAIL: no-pubkey ping failed success=%d ok=%u", |
|
nat_ping_result.success, (unsigned)nat_ping_result.count_ok); |
|
goto cleanup; |
|
} |
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "No-pubkey ping check PASSED"); |
|
|
|
DEBUG_INFO(DEBUG_CATEGORY_BGP, "NAT detection test PASSED"); |
|
test_result = 0; |
|
|
|
cleanup: |
|
if (test_timeout_id) uasync_cancel_timeout(ua, test_timeout_id); |
|
if (inst_s) utun_instance_destroy(inst_s); |
|
if (inst_c1) utun_instance_destroy(inst_c1); |
|
if (inst_c2) utun_instance_destroy(inst_c2); |
|
if (ua) uasync_destroy(ua, 0); |
|
cleanup_temp_configs(); |
|
return test_result; |
|
}
|
|
|