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.
317 lines
12 KiB
317 lines
12 KiB
#include <stdio.h> |
|
#include <stdlib.h> |
|
#include <string.h> |
|
#include <stdint.h> |
|
#include <sys/time.h> |
|
#include <unistd.h> |
|
#include <arpa/inet.h> |
|
|
|
#include "../lib/u_async.h" |
|
#include "../lib/ll_queue.h" |
|
#include "../lib/memory_pool.h" |
|
#include "../lib/debug_config.h" |
|
#include "../lib/platform_compat.h" |
|
#include "../lib/mem.h" |
|
#include "../src/dummynet.h" |
|
#include "../src/config_parser.h" |
|
#include "../src/utun_instance.h" |
|
#include "../src/etcp.h" |
|
#include "../src/etcp_api.h" |
|
#include "../src/etcp_connections.h" |
|
#include "../src/secure_channel.h" |
|
#include "../src/config_updater.h" |
|
#include "../src/routing.h" |
|
|
|
#define CLI_PORT 31000 |
|
#define DN_PORT 31001 |
|
#define SRV_PORT 31002 |
|
|
|
#define PACKET_SIZE 100 |
|
#define TOTAL_PACKETS 500 |
|
#define POLL_INTERVAL_TB 10 |
|
#define TEST_TIMEOUT_TB 100000 // 10s |
|
|
|
struct test_ctx { |
|
struct UASYNC* ua; |
|
struct UTUN_INSTANCE* sender; |
|
struct UTUN_INSTANCE* receiver; |
|
struct dummynet* dn; |
|
uint8_t received_bitmap[TOTAL_PACKETS / 8 + 1]; |
|
uint16_t packets_received; |
|
uint16_t total_packets_sent; |
|
int test_done; |
|
int phase; |
|
int sender_reinit_detected; |
|
}; |
|
|
|
static struct test_ctx* g_ctx; |
|
|
|
static struct UTUN_INSTANCE* create_instance(struct UASYNC* u, uint64_t node_id, |
|
const char* priv_hex, const char* pub_hex) { |
|
struct UTUN_INSTANCE* inst = u_calloc(1, sizeof(*inst)); |
|
if (!inst) return NULL; |
|
inst->ua = u; |
|
inst->node_id = node_id; |
|
if (sc_init_local_keys(&inst->my_keys, pub_hex, priv_hex) != SC_OK) { u_free(inst); return NULL; } |
|
inst->ack_pool = memory_pool_init(sizeof(struct ACK_PACKET), "ack_pool"); |
|
inst->data_pool = memory_pool_init(PACKET_DATA_SIZE, "data_pool"); |
|
inst->pkt_pool = memory_pool_init(sizeof(struct ETCP_DGRAM) + PACKET_DATA_SIZE, "pkt_pool"); |
|
if (!inst->ack_pool || !inst->data_pool || !inst->pkt_pool) { u_free(inst); return NULL; } |
|
struct utun_config* cfg = u_calloc(1, sizeof(*cfg)); |
|
if (!cfg) { u_free(inst); return NULL; } |
|
strncpy(cfg->global.my_public_key_hex, pub_hex, MAX_KEY_LEN - 1); |
|
strncpy(cfg->global.my_private_key_hex, priv_hex, MAX_KEY_LEN - 1); |
|
cfg->global.my_node_id = node_id; |
|
cfg->global.mtu = 1400; |
|
cfg->global.keepalive_timeout = 500; |
|
cfg->global.keepalive_interval = 1000; |
|
cfg->global.inflight_min_bytes = 2000; |
|
cfg->global.inflight_max_bytes = 8000; |
|
cfg->global.allowed_keys_allow_all = 1; |
|
inst->config = cfg; |
|
return inst; |
|
} |
|
|
|
static int add_server(struct UTUN_INSTANCE* inst, const char* name, int port) { |
|
struct CFG_SERVER* srv = u_calloc(1, sizeof(*srv)); |
|
if (!srv) return -1; |
|
strncpy(srv->name, name, MAX_CONN_NAME_LEN - 1); |
|
srv->ip.ss_family = AF_INET; |
|
((struct sockaddr_in*)&srv->ip)->sin_addr.s_addr = inet_addr("127.0.0.1"); |
|
((struct sockaddr_in*)&srv->ip)->sin_port = htons(port); |
|
srv->type = CFG_SERVER_TYPE_PUBLIC; |
|
srv->next = inst->config->servers; |
|
inst->config->servers = srv; |
|
return 0; |
|
} |
|
|
|
static int add_client(struct UTUN_INSTANCE* inst, const char* peer_pubkey) { |
|
struct CFG_CLIENT* cli = u_calloc(1, sizeof(*cli)); |
|
if (!cli) return -1; |
|
strncpy(cli->name, "peer", MAX_CONN_NAME_LEN - 1); |
|
strncpy(cli->peer_public_key_hex, peer_pubkey, MAX_KEY_LEN - 1); |
|
cli->keepalive = 1; |
|
cli->next = inst->config->clients; |
|
inst->config->clients = cli; |
|
return 0; |
|
} |
|
|
|
static struct CFG_CLIENT_LINK* add_link_to_client(struct CFG_CLIENT* cli, struct CFG_SERVER* srv, int remote_port) { |
|
struct CFG_CLIENT_LINK* link = u_calloc(1, sizeof(*link)); |
|
if (!link) return NULL; |
|
link->remote_addr.ss_family = AF_INET; |
|
((struct sockaddr_in*)&link->remote_addr)->sin_addr.s_addr = inet_addr("127.0.0.1"); |
|
((struct sockaddr_in*)&link->remote_addr)->sin_port = htons(remote_port); |
|
link->local_srv = srv; |
|
struct CFG_CLIENT_LINK** tail = &cli->links; |
|
while (*tail) tail = &(*tail)->next; |
|
*tail = link; |
|
return link; |
|
} |
|
|
|
static void dummynet_set_both(struct dummynet* dn, uint32_t loss, int fwd_port, int back_port) { |
|
dummynet_set_direction(dn, DUMMYNET_FORWARD, 0, 0, 0, 200, loss, "127.0.0.1", fwd_port); |
|
dummynet_set_direction(dn, DUMMYNET_BACKWARD, 0, 0, 0, 200, loss, "127.0.0.1", back_port); |
|
} |
|
|
|
static void on_recv(struct ETCP_CONN* conn, struct ll_entry* entry) { |
|
struct test_ctx* ctx = g_ctx; |
|
if (!entry || !ctx) { if (entry) { queue_dgram_free(entry); queue_entry_free(entry); } return; } |
|
if (entry->len >= 3 && entry->dgram[0] == 0x00) { |
|
uint16_t seq = (entry->dgram[1] << 8) | entry->dgram[2]; |
|
if (seq < TOTAL_PACKETS) { |
|
if (!(ctx->received_bitmap[seq / 8] & (1 << (seq % 8)))) { |
|
ctx->received_bitmap[seq / 8] |= (1 << (seq % 8)); |
|
ctx->packets_received++; |
|
} |
|
} |
|
} |
|
queue_dgram_free(entry); |
|
queue_entry_free(entry); |
|
} |
|
|
|
static int links_initialized(struct UTUN_INSTANCE* inst) { |
|
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 int buffers_full(struct test_ctx* ctx) { |
|
struct ETCP_CONN* conn = ctx->sender->connections; |
|
if (!conn) return 0; |
|
struct ETCP_LINK* link = conn->links; |
|
return link && link->send_blocked_inflight |
|
&& conn->input_wait_ack->count > 5 |
|
&& ctx->total_packets_sent >= TOTAL_PACKETS; |
|
} |
|
|
|
static void send_one_packet(struct test_ctx* ctx) { |
|
struct ETCP_CONN* conn = ctx->sender->connections; |
|
if (!conn || !conn->initialized) return; |
|
if (ctx->total_packets_sent >= TOTAL_PACKETS) return; |
|
if (conn->input_queue && queue_entry_count(conn->input_queue) > 200) return; |
|
|
|
struct ll_entry* e = ll_alloc_lldgram(PACKET_SIZE); |
|
if (!e) return; |
|
uint16_t seq = ctx->total_packets_sent; |
|
e->dgram[0] = 0x00; |
|
e->dgram[1] = (seq >> 8) & 0xFF; |
|
e->dgram[2] = seq & 0xFF; |
|
for (int i = 3; i < PACKET_SIZE; i++) e->dgram[i] = (uint8_t)(seq + i); |
|
e->len = PACKET_SIZE; |
|
if (etcp_send(conn, e) == 0) ctx->total_packets_sent++; |
|
else { queue_dgram_free(e); queue_entry_free(e); } |
|
} |
|
|
|
static void send_fill(void* arg) { |
|
struct test_ctx* ctx = (struct test_ctx*)arg; |
|
if (ctx->phase != 2 || ctx->test_done) return; |
|
for (int i = 0; i < 20 && ctx->total_packets_sent < TOTAL_PACKETS; i++) send_one_packet(ctx); |
|
if (ctx->total_packets_sent < TOTAL_PACKETS && ctx->phase == 2) |
|
uasync_set_timeout(ctx->ua, 10, ctx, send_fill, "fill"); |
|
} |
|
|
|
static void monitor(void* arg) { |
|
struct test_ctx* ctx = (struct test_ctx*)arg; |
|
struct ETCP_CONN* conn; |
|
|
|
switch (ctx->phase) { |
|
case 1: // wait init |
|
if (links_initialized(ctx->sender) && links_initialized(ctx->receiver)) { |
|
printf(" links initialized, blocking traffic...\n"); |
|
dummynet_set_both(ctx->dn, 1000, SRV_PORT, CLI_PORT); |
|
ctx->phase = 2; |
|
uasync_set_timeout(ctx->ua, 10, ctx, send_fill, "fill"); |
|
} |
|
break; |
|
case 2: // fill buffers |
|
if (buffers_full(ctx)) { |
|
printf(" buffers full: inflight_blocked=%d wait_ack=%d sent=%d\n", |
|
ctx->sender->connections->links->send_blocked_inflight, |
|
ctx->sender->connections->input_wait_ack->count, |
|
ctx->total_packets_sent); |
|
ctx->phase = 3; |
|
} |
|
break; |
|
case 3: // destroy + recreate receiver |
|
printf(" destroying and recreating receiver...\n"); |
|
ctx->receiver->running = 0; |
|
utun_instance_destroy(ctx->receiver); |
|
ctx->receiver = NULL; |
|
{ |
|
const char* s_priv = "67b705a92b41bcaae105af2d6a17743faa7b26ccebba8b3b9b0af05e9cd1d5fb"; |
|
const char* s_pub = "1c55e4ccae7c4470707759086738b10681bf88b81f198cc2ab54a647d1556e17c65e6b1833e0c771e5a39382c03067c388915a4c732191bc130480f20f8e00b9"; |
|
ctx->receiver = create_instance(ctx->ua, 0x2222222222222222ULL, s_priv, s_pub); |
|
add_server(ctx->receiver, "srv1", SRV_PORT); |
|
utun_instance_init(ctx->receiver); |
|
etcp_bind(ctx->receiver, ETCP_ID_DATA, on_recv); |
|
} |
|
ctx->phase = 4; |
|
break; |
|
case 4: // unblock |
|
printf(" unblocking traffic...\n"); |
|
dummynet_set_both(ctx->dn, 0, SRV_PORT, CLI_PORT); |
|
ctx->phase = 5; |
|
break; |
|
case 5: // wait delivery |
|
conn = ctx->sender->connections; |
|
if (conn && conn->reinit_count > 0 && !ctx->sender_reinit_detected) { |
|
ctx->sender_reinit_detected = 1; |
|
printf(" reinit detected (count=%u)\n", conn->reinit_count); |
|
} |
|
if (ctx->packets_received >= TOTAL_PACKETS && links_initialized(ctx->sender)) { |
|
printf(" all %u packets received\n", ctx->packets_received); |
|
ctx->phase = 6; |
|
} |
|
break; |
|
case 6: // verify |
|
conn = ctx->sender->connections; |
|
if (conn && conn->reinit_count < 1) { |
|
printf("\n[FAIL] Reinit not triggered (reinit_count=%u)\n", conn->reinit_count); |
|
ctx->test_done = 2; |
|
} else { |
|
int missing = 0; |
|
for (int i = 0; i < TOTAL_PACKETS; i++) |
|
if (!(ctx->received_bitmap[i / 8] & (1 << (i % 8)))) missing++; |
|
if (missing > 0) { |
|
printf("\n[FAIL] %d packets missing, received=%d sent=%d\n", |
|
missing, ctx->packets_received, ctx->total_packets_sent); |
|
ctx->test_done = 2; |
|
} else { |
|
printf("\n[PASS] All %d packets delivered, reinit_count=%u\n", |
|
TOTAL_PACKETS, conn->reinit_count); |
|
ctx->test_done = 1; |
|
} |
|
} |
|
return; |
|
} |
|
|
|
if (!ctx->test_done) uasync_set_timeout(ctx->ua, POLL_INTERVAL_TB * 50, ctx, monitor, "mon"); |
|
} |
|
|
|
static void test_timeout(void* arg) { |
|
struct test_ctx* ctx = (struct test_ctx*)arg; |
|
printf("\n[FAIL] Test timeout (phase=%d sent=%d recv=%d)\n", |
|
ctx->phase, ctx->total_packets_sent, ctx->packets_received); |
|
ctx->test_done = 2; |
|
} |
|
|
|
int main(void) { |
|
printf("=== ETCP Reinit Inflight Preserve Test ===\n\n"); |
|
srand((unsigned)time(NULL)); |
|
debug_config_init(); |
|
debug_set_level(DEBUG_LEVEL_ERROR); |
|
socket_platform_init(); |
|
|
|
struct test_ctx ctx; |
|
memset(&ctx, 0, sizeof(ctx)); |
|
g_ctx = &ctx; |
|
|
|
ctx.ua = uasync_create(); |
|
if (!ctx.ua) { printf("uasync_create failed\n"); return 1; } |
|
|
|
const char* s_priv = "67b705a92b41bcaae105af2d6a17743faa7b26ccebba8b3b9b0af05e9cd1d5fb"; |
|
const char* s_pub = "1c55e4ccae7c4470707759086738b10681bf88b81f198cc2ab54a647d1556e17c65e6b1833e0c771e5a39382c03067c388915a4c732191bc130480f20f8e00b9"; |
|
const char* c_priv = "4813d31d28b7e9829247f488c6be7672f2bdf61b2508333128e386d1759afed2"; |
|
const char* c_pub = "c594f33c91f3a2222795c2c110c527bf214ad1009197ce14556cb13df3c461b3c373bed8f205a8dd1fc0c364f90bf471d7c6f5db49564c33e4235d268569ac71"; |
|
|
|
ctx.sender = create_instance(ctx.ua, 0x1111111111111111ULL, c_priv, c_pub); |
|
ctx.receiver = create_instance(ctx.ua, 0x2222222222222222ULL, s_priv, s_pub); |
|
if (!ctx.sender || !ctx.receiver) { printf("create_instance failed\n"); return 1; } |
|
|
|
utun_instance_set_tun_init_enabled(0); |
|
|
|
add_server(ctx.receiver, "srv1", SRV_PORT); |
|
add_server(ctx.sender, "cli1", CLI_PORT); |
|
add_client(ctx.sender, s_pub); |
|
struct CFG_CLIENT* cli = ctx.sender->config->clients; |
|
add_link_to_client(cli, ctx.sender->config->servers, DN_PORT); |
|
|
|
printf("Init instances...\n"); |
|
if (utun_instance_init(ctx.receiver) < 0) { printf("receiver init failed\n"); return 1; } |
|
if (utun_instance_init(ctx.sender) < 0) { printf("sender init failed\n"); return 1; } |
|
|
|
etcp_bind(ctx.receiver, ETCP_ID_DATA, on_recv); |
|
|
|
printf("Creating dummynet...\n"); |
|
ctx.dn = dummynet_create(ctx.ua, "127.0.0.1", DN_PORT); |
|
if (!ctx.dn) { printf("dummynet_create failed\n"); return 1; } |
|
dummynet_set_both(ctx.dn, 0, SRV_PORT, CLI_PORT); |
|
|
|
ctx.phase = 1; |
|
uasync_set_timeout(ctx.ua, POLL_INTERVAL_TB * 50, &ctx, monitor, "mon"); |
|
uasync_set_timeout(ctx.ua, TEST_TIMEOUT_TB, &ctx, test_timeout, "timeout"); |
|
|
|
while (!ctx.test_done) uasync_poll(ctx.ua, POLL_INTERVAL_TB); |
|
|
|
dummynet_destroy(ctx.dn); |
|
if (ctx.receiver) { ctx.receiver->running = 0; utun_instance_destroy(ctx.receiver); } |
|
if (ctx.sender) { ctx.sender->running = 0; utun_instance_destroy(ctx.sender); } |
|
uasync_destroy(ctx.ua, 1); |
|
|
|
return ctx.test_done == 1 ? 0 : 1; |
|
}
|
|
|