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720 lines
29 KiB
720 lines
29 KiB
/* |
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* instance_lite.c — lightweight uTun instance lifecycle for Android |
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* |
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* Kotlin sends INI config text → parse_config_from_buf → |
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* utun_instance_create_from_config → sqlite3_open → utun_instance_init → |
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* pthread with uasync_poll loop. |
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* |
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* Mirrors UtunNode::runLoop() from tools/chatgui/transport/utun_node.cpp:221-372. |
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*/ |
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#define _GNU_SOURCE 1 /* dladdr (Linux); no-op on Android/bionic */ |
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#include "instance_lite.h" |
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#include "utun_instance.h" |
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#include "config_parser.h" |
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#include "config_updater.h" |
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#include "secure_channel.h" |
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#include "etcp_router.h" |
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#include "topo_node_sqlite.h" |
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#include "chat/chat_core.h" |
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#include "chat/chat_sync.h" |
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#include "chat/chat_event.h" |
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#include "chat/db_sync.h" |
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#include "u_async.h" |
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#include "sqlite3.h" |
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#include "mem.h" |
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#include "debug_config.h" |
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#include "transport_layer/etcp_connections.h" |
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#include "transport_layer/etcp.h" |
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#include "transport_layer/auto_socket.h" |
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#include "../jni_bridge/android_udp_log.h" |
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#include "../jni_bridge/android_jni_bridge.h" |
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#include "standby.h" |
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#include <pthread.h> |
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#include <stdio.h> |
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#include <string.h> |
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#include <stdlib.h> |
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#include <unistd.h> |
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#include <signal.h> |
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#include <unwind.h> |
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#include <dlfcn.h> |
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#include <time.h> |
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#include <errno.h> |
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#include <openssl/evp.h> |
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#ifdef __ANDROID__ |
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#include <android/log.h> |
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#define IL_LOGV(fmt, ...) __android_log_print(ANDROID_LOG_VERBOSE, "utun-inst", fmt, ##__VA_ARGS__) |
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#define IL_LOGI(fmt, ...) __android_log_print(ANDROID_LOG_INFO, "utun-inst", fmt, ##__VA_ARGS__) |
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#define IL_LOGE(fmt, ...) __android_log_print(ANDROID_LOG_ERROR, "utun-inst", fmt, ##__VA_ARGS__) |
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#else |
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#define IL_LOGV(fmt, ...) fprintf(stderr, fmt "\n", ##__VA_ARGS__) |
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#define IL_LOGI(fmt, ...) fprintf(stderr, fmt "\n", ##__VA_ARGS__) |
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#define IL_LOGE(fmt, ...) fprintf(stderr, fmt "\n", ##__VA_ARGS__) |
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#endif |
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/* ── Static state ── |
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* |
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* Thread model: one Kotlin thread, one C worker thread. |
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* Each variable has exactly ONE writer — no data races by construction. |
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* |
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* Kotlin-writes (signals/commands to C): |
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* g_stop, g_do_restart, g_restart_config, g_event_handler, g_db_path |
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* C-writes (state to Kotlin): |
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* g_ua, g_inst, g_running, g_thread_exited, g_thread_running |
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*/ |
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static struct UASYNC* g_ua = NULL; /* C-write, Kotlin-read via __atomic */ |
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static struct UTUN_INSTANCE* g_inst = NULL; /* C-write, Kotlin-read via __atomic */ |
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static pthread_t g_thread; |
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static volatile int g_stop = 0; /* Kotlin-write, C-read (poll loop) */ |
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static volatile int g_do_restart = 0; /* Kotlin-write, C atomic-xchg→0 */ |
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static volatile char* g_restart_config = NULL; /* Kotlin-write, C atomic-xchg→NULL (ownership transfer) */ |
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static volatile int g_running = 0; /* C-write, Kotlin-read */ |
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static volatile int g_thread_running = 0; /* C-write + Kotlin CAS-guard for start() */ |
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static volatile int g_thread_exited = 0; /* C-write (under mutex), Kotlin-read */ |
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static volatile int g_generation = 0; /* Kotlin-write, C-read */ |
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static char g_db_path[512]; /* Kotlin-write (start), C-read (init) */ |
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static instance_lite_event_fn g_event_handler = NULL; /* Kotlin-write, C-read+call */ |
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static char g_generated_pub[65]; |
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static char g_generated_priv[65]; |
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static pthread_mutex_t g_stop_mutex = PTHREAD_MUTEX_INITIALIZER; |
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static pthread_cond_t g_stop_cond = PTHREAD_COND_INITIALIZER; |
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/* ── Generate X25519 key pair, hex-encode to out buffers ── */ |
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static int generate_x25519_keys(char pub_hex[65], char priv_hex[65]) { |
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EVP_PKEY* pkey = NULL; |
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EVP_PKEY_CTX* ctx = EVP_PKEY_CTX_new_id(EVP_PKEY_X25519, NULL); |
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if (!ctx) return -1; |
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if (EVP_PKEY_keygen_init(ctx) <= 0 || EVP_PKEY_generate(ctx, &pkey) <= 0) { |
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EVP_PKEY_CTX_free(ctx); |
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return -1; |
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} |
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EVP_PKEY_CTX_free(ctx); |
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size_t pkLen = 32, skLen = 32; |
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uint8_t pk[32], sk[32]; |
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EVP_PKEY_get_raw_public_key(pkey, pk, &pkLen); |
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EVP_PKEY_get_raw_private_key(pkey, sk, &skLen); |
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EVP_PKEY_free(pkey); |
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for (int i = 0; i < 32; i++) snprintf(pub_hex + i * 2, 3, "%02x", pk[i]); |
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for (int i = 0; i < 32; i++) snprintf(priv_hex + i * 2, 3, "%02x", sk[i]); |
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pub_hex[64] = '\0'; |
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priv_hex[64] = '\0'; |
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return 0; |
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} |
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static void save_keys_to_file(const char* pub, const char* priv) { |
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if (!g_db_path[0]) { IL_LOGE("save_keys_to_file: g_db_path is empty, keys not saved to disk"); return; } |
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char fname[512]; |
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snprintf(fname, sizeof(fname), "%s/keys.conf", g_db_path); |
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FILE* f = fopen(fname, "w"); |
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if (!f) { IL_LOGE("cannot write %s: %s", fname, strerror(errno)); return; } |
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fchmod(fileno(f), 0600); |
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fprintf(f, "public_key=%s\nprivate_key=%s\n", pub, priv); |
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fclose(f); |
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IL_LOGI("keys saved to %s", fname); |
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} |
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/* ── Ensure valid keys in config, generate if missing ── */ |
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static void ensure_keys(struct utun_config* config) { |
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if (strlen(config->global.my_private_key_hex) != 64 || |
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strlen(config->global.my_public_key_hex) != 64) { |
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IL_LOGI("config keys missing or invalid, generating new X25519 keypair"); |
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if (generate_x25519_keys(g_generated_pub, g_generated_priv) == 0) { |
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memcpy(config->global.my_public_key_hex, g_generated_pub, 65); |
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memcpy(config->global.my_private_key_hex, g_generated_priv, 65); |
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IL_LOGI("new keys generated pub=%s", g_generated_pub); |
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save_keys_to_file(g_generated_pub, g_generated_priv); |
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} else { |
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IL_LOGE("key generation failed"); |
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} |
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} |
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} |
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/* ── Helper: extract single config value by key ── */ |
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static const char* cfg_get(const char* text, const char* key) { |
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size_t klen = strlen(key); |
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const char* p = text; |
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while (*p) { |
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if (strncmp(p, key, klen) == 0 && p[klen] == '=') { |
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return p + klen + 1; |
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} |
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while (*p && *p != '\n') p++; |
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if (*p == '\n') p++; |
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} |
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return NULL; |
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} |
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static void cfg_get_val(const char* text, const char* key, char* out, size_t out_sz) { |
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const char* v = cfg_get(text, key); |
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if (!v) { out[0] = '\0'; return; } |
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size_t i = 0; |
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while (*v && *v != '\n' && *v != '\r' && i < out_sz - 1) |
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out[i++] = *v++; |
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out[i] = '\0'; |
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} |
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/* ── Chat event forward → Kotlin callback ── */ |
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static void chat_event_forward(struct UTUN_INSTANCE* inst, int type, const uint8_t* data, int len) { |
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(void)inst; |
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if (g_event_handler) { g_event_handler(type, data, len); return; } |
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IL_LOGE("[EVT_DIAG] chat_event_forward: g_event_handler is NULL! type=%d len=%d", type, len); |
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} |
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static void nodeinfo_event_cb(struct TOPO_GROUP* group, struct TOPO_GROUP_NODE* nq, void* arg) { |
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(void)group; (void)arg; |
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if (!nq || !g_event_handler) return; |
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uint16_t best_rtt = topo_get_chain_rtt(nq); |
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uint8_t hc = 0; |
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topo_node_best_hop_list(nq, &hc, NULL); |
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uint16_t bgp_nodes = (hc > 0) ? (uint16_t)(hc - 1) : 0; |
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DEBUG_INFO(DEBUG_CATEGORY_DEBUG, "nodeinfo_cb: nid=%016llx pres=%02x up=%02x rtt=%u(0x%04X) hc=%u bgp_nodes=%u paths=%zu", |
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(unsigned long long)nq->node_id, nq->conn_presence, nq->conn_up, |
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best_rtt, best_rtt, hc, bgp_nodes, nq->paths ? queue_entry_count(nq->paths) : 0); |
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uint8_t data[16]; |
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memcpy(data, &nq->node_id, 8); |
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data[8] = nq->conn_presence; |
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data[9] = nq->conn_up; |
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memcpy(data + 10, &best_rtt, 2); |
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memcpy(data + 12, &best_rtt, 2); |
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memcpy(data + 14, &bgp_nodes, 2); |
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g_event_handler(CHAT_EVT_NODEINFO_UPDATED, data, sizeof(data)); |
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} |
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static void fire_local_sockets_event(void) { |
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if (!g_event_handler) return; |
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char* json = utun_bridge_get_local_sockets_json(); |
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if (!json) return; |
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g_event_handler(CHAT_EVT_LOCAL_SOCKETS, (const uint8_t*)json, (int)strlen(json)); |
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u_free(json); |
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} |
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static void on_link_status_changed(struct ETCP_CONN* conn, struct ETCP_LINK* link, |
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int old_state, int old_status, void* arg) { |
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(void)old_state; (void)old_status; (void)arg; |
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if (!g_event_handler || !conn || conn->peer_node_id == 0) return; |
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uint8_t data[13]; |
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memcpy(data, &conn->peer_node_id, 8); |
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data[8] = link->local_link_id; |
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data[9] = link->link_state; |
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data[10] = link->link_status; |
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data[11] = conn->links_up; |
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data[12] = conn->initialized ? 1 : 0; |
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g_event_handler(CHAT_EVT_LINK_STATUS_CHANGED, data, sizeof(data)); |
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fire_local_sockets_event(); |
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} |
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/* ── Crash handler ── */ |
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static volatile int g_signal_caught = 0; |
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static volatile int g_signal_num = 0; |
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struct crash_bt_state { void** frames; int count; int max; }; |
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static _Unwind_Reason_Code crash_bt_cb(struct _Unwind_Context* ctx, void* arg) { |
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struct crash_bt_state* st = (struct crash_bt_state*)arg; |
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if (st->count < st->max) { |
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void* pc = (void*)_Unwind_GetIP(ctx); |
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if (pc) st->frames[st->count++] = pc; |
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return _URC_NO_REASON; |
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} |
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return _URC_END_OF_STACK; |
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} |
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static void crash_signal_handler(int sig, siginfo_t* info, void* ctx) { |
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(void)ctx; |
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g_signal_caught = 1; g_signal_num = sig; |
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DEBUG_ERROR(DEBUG_CATEGORY_GENERAL, "CRASH signal=%d code=%d addr=%p thread still alive", sig, info->si_code, info->si_addr); |
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void* frames[64]; |
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struct crash_bt_state st = { frames, 0, 64 }; |
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_Unwind_Backtrace(crash_bt_cb, &st); |
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IL_LOGE("CRASH backtrace %d frames:", st.count); |
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for (int i = 0; i < st.count; i++) { |
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Dl_info dli; |
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if (dladdr(frames[i], &dli) && dli.dli_sname) { |
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IL_LOGE(" #%02d %p %s+%p (%s)", i, frames[i], dli.dli_sname, |
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(void*)((char*)frames[i] - (char*)dli.dli_saddr), |
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dli.dli_fname ? dli.dli_fname : "?"); |
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} else { |
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IL_LOGE(" #%02d %p (no symbol)", i, frames[i]); |
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} |
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} |
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signal(sig, SIG_DFL); |
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raise(sig); |
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} |
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static void install_crash_handlers(void) { |
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struct sigaction sa; |
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memset(&sa, 0, sizeof(sa)); |
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sa.sa_sigaction = crash_signal_handler; |
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sa.sa_flags = SA_SIGINFO; |
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sigaction(SIGSEGV, &sa, NULL); |
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sigaction(SIGABRT, &sa, NULL); |
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sigaction(SIGBUS, &sa, NULL); |
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} |
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/* ── Thread function ── */ |
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static void* instance_thread(void* arg) { |
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char* config_text = (char*)arg; |
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int my_gen = g_generation; |
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struct UASYNC* my_ua = NULL; /* поток-локальная копия — для cleanup stale-потока */ |
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struct UTUN_INSTANCE* my_inst = NULL; |
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struct utun_config* config = parse_config_from_buf(config_text, strlen(config_text), "android"); |
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u_free(config_text); |
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if (!config) { IL_LOGE("parse_config_from_buf failed"); __atomic_store_n(&g_thread_running, 0, __ATOMIC_RELEASE); pthread_detach(pthread_self()); return NULL; } |
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config->global.client_type = CLIENT_TYPE_MOBILE; /* Android — всегда мобильный узел (keepalive standby/normal) */ |
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install_crash_handlers(); |
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g_ua = uasync_create(); |
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my_ua = g_ua; |
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if (!g_ua) { IL_LOGE("uasync_create failed"); free_config(config); __atomic_store_n(&g_thread_running, 0, __ATOMIC_RELEASE); pthread_detach(pthread_self()); return NULL; } |
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standby_init(g_ua); |
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if (config->global.log_udp_ip[0] && config->global.log_udp_port > 0) { |
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udp_log_set_target(config->global.log_udp_ip, config->global.log_udp_port); |
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} |
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IL_LOGI("[EVT_DIAG] thread: about to set chat_event handler, g_event_handler=%p", (void*)g_event_handler); |
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ensure_keys(config); |
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g_inst = utun_instance_create_from_config(g_ua, config); |
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my_inst = g_inst; |
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if (!g_inst) { |
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IL_LOGE("utun_instance_create_from_config failed"); |
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standby_deinit(); |
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uasync_destroy(g_ua, 0); |
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g_ua = NULL; |
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u_report_unfreed_blocks(); |
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__atomic_store_n(&g_thread_running, 0, __ATOMIC_RELEASE); |
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pthread_detach(pthread_self()); |
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return NULL; |
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} |
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chat_event_set_handler(g_inst, chat_event_forward); |
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IL_LOGI("instance created, node_id=0x%016llx", (unsigned long long)g_inst->node_id); |
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/* Core owns SQLite and transport; this frontend starts only the chat service. */ |
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if (utun_core_start(g_inst) != 0 || chat_service_start(g_inst) != 0) { |
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IL_LOGE("core/chat start failed"); |
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utun_instance_destroy(g_inst); |
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g_inst = NULL; |
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standby_deinit(); |
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uasync_destroy(g_ua, 0); |
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g_ua = NULL; |
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u_report_unfreed_blocks(); |
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__atomic_store_n(&g_thread_running, 0, __ATOMIC_RELEASE); |
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pthread_detach(pthread_self()); |
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return NULL; |
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} |
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/* sockets are now created — sync my addresses to DB */ |
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chat_core_sync_my_addresses(g_inst); |
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fire_local_sockets_event(); |
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/* Bind chat sync via etcp_router */ |
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etcp_router_bind(g_inst, ETCP_RT_ID_CHAT_SYNC, NULL); |
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utun_add_nodeinfo_cbk(g_inst, nodeinfo_event_cb, NULL); |
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etcp_add_link_status_cbk(g_inst, on_link_status_changed, NULL); |
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/* Set my_name from config */ |
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if (g_inst->config->global.name[0]) { |
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chat_core_update_my_name(g_inst, g_inst->config->global.name); |
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IL_LOGI("my_name set to '%s'", g_inst->config->global.name); |
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} |
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IL_LOGI("all init done, entering poll loop"); |
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/* Notify GUI of current public key (initial generation or existing) */ |
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if (strlen(config->global.my_public_key_hex) == 64) { |
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chat_event_post(g_inst, CHAT_EVT_KEYS_GENERATED, |
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(const uint8_t*)config->global.my_public_key_hex, 64); |
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} |
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__atomic_store_n(&g_running, 1, __ATOMIC_RELEASE); |
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uasync_mark_running(g_ua); |
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chat_event_post(g_inst, CHAT_EVT_SERVICE_STARTED, NULL, 0); |
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while (!__atomic_load_n(&g_stop, __ATOMIC_ACQUIRE)) { |
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uasync_poll(g_ua, -1); |
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} |
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while (__atomic_load_n(&g_do_restart, __ATOMIC_ACQUIRE)) { |
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IL_LOGI("poll exit: restart requested, destroying old instance"); |
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__atomic_store_n(&g_do_restart, 0, __ATOMIC_RELEASE); |
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IL_LOGI("pre-destroy: g_inst=%p node_id=0x%016llx ua=%p running=%d sockets=%p conns=%p", |
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g_inst, g_inst ? (unsigned long long)g_inst->node_id : 0ULL, |
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g_ua, g_running, |
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g_inst ? g_inst->etcp_sockets : NULL, |
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g_inst ? g_inst->connections : NULL); |
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uasync_mark_stopped(g_ua); |
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__atomic_store_n(&g_running, 0, __ATOMIC_RELEASE); |
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struct UTUN_INSTANCE* old_inst = g_inst; |
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g_inst = NULL; |
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utun_instance_destroy(old_inst); |
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my_inst = NULL; |
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uasync_print_resources(g_ua, "AFTER_DESTROY"); |
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u_report_unfreed_blocks(); |
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standby_deinit(); |
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uasync_destroy(g_ua, 0); |
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my_ua = NULL; |
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g_ua = uasync_create(); |
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my_ua = g_ua; |
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if (!g_ua) { IL_LOGE("poll exit: uasync_create failed"); break; } |
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standby_init(g_ua); |
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char* cfg = (char*)__atomic_exchange_n(&g_restart_config, NULL, __ATOMIC_ACQUIRE); |
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if (!cfg) { IL_LOGE("poll exit: restart_config is NULL"); break; } |
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__atomic_store_n(&g_stop, 0, __ATOMIC_RELEASE); |
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IL_LOGI("poll exit: creating new instance from restart config"); |
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struct utun_config* config = parse_config_from_buf(cfg, strlen(cfg), "android"); |
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u_free(cfg); |
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if (!config) { IL_LOGE("poll exit: parse_config failed"); break; } |
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config->global.client_type = CLIENT_TYPE_MOBILE; /* Android — всегда мобильный узел */ |
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g_inst = utun_instance_create_from_config(g_ua, config); |
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my_inst = g_inst; |
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if (!g_inst) { IL_LOGE("poll exit: create_from_config failed"); break; } |
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chat_event_set_handler(g_inst, chat_event_forward); |
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/* Recreate core and chat independently of UTUN. */ |
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if (utun_core_start(g_inst) != 0 || chat_service_start(g_inst) != 0) { IL_LOGE("poll exit: core/chat start failed"); break; } |
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chat_core_sync_my_addresses(g_inst); |
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fire_local_sockets_event(); |
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if (g_inst->config->global.name[0]) chat_core_update_my_name(g_inst, g_inst->config->global.name); |
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etcp_router_bind(g_inst, ETCP_RT_ID_CHAT_SYNC, NULL); |
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utun_add_nodeinfo_cbk(g_inst, nodeinfo_event_cb, NULL); |
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etcp_add_link_status_cbk(g_inst, on_link_status_changed, NULL); |
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chat_event_post(g_inst, CHAT_EVT_KEYS_GENERATED, (const uint8_t*)config->global.my_public_key_hex, 64); |
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__atomic_store_n(&g_running, 1, __ATOMIC_RELEASE); |
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uasync_mark_running(g_ua); |
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chat_event_post(g_inst, CHAT_EVT_SERVICE_STARTED, NULL, 0); |
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IL_LOGI("poll exit: restart done, entering new poll loop"); |
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while (!__atomic_load_n(&g_stop, __ATOMIC_ACQUIRE)) uasync_poll(g_ua, -1); |
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} |
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IL_LOGI("poll exit: final cleanup"); |
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if (my_gen == g_generation) { |
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__atomic_store_n(&g_running, 0, __ATOMIC_RELEASE); |
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if (my_inst) { |
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chat_event_post(my_inst, CHAT_EVT_SERVICE_STOPPED, NULL, 0); |
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g_inst = NULL; |
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utun_instance_destroy(my_inst); |
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my_inst = NULL; |
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} |
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if (my_ua) { |
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standby_deinit(); |
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uasync_destroy(my_ua, 0); |
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g_ua = NULL; |
|
my_ua = NULL; |
|
} |
|
char* stale_cfg = (char*)__atomic_exchange_n(&g_restart_config, NULL, __ATOMIC_ACQUIRE); |
|
u_free(stale_cfg); |
|
u_report_unfreed_blocks(); |
|
IL_LOGI("cleanup complete (gen=%d)", my_gen); |
|
} else { |
|
/* stale-поток: глобальные g_inst/g_ua уже принадлежат новому потоку, |
|
но собственные объекты этого потока надо закрыть, иначе течёт fd. */ |
|
IL_LOGI("cleanup (stale thread gen=%d vs %d): destroying own inst=%p ua=%p to avoid fd leak", |
|
my_gen, g_generation, (void*)my_inst, (void*)my_ua); |
|
if (my_inst) { utun_instance_destroy(my_inst); my_inst = NULL; } |
|
if (my_ua) { uasync_destroy(my_ua, 0); my_ua = NULL; } |
|
} |
|
__atomic_store_n(&g_thread_running, 0, __ATOMIC_RELEASE); |
|
pthread_mutex_lock(&g_stop_mutex); |
|
g_thread_exited = 1; |
|
pthread_cond_signal(&g_stop_cond); |
|
pthread_mutex_unlock(&g_stop_mutex); |
|
IL_LOGI("thread exit signalled"); |
|
return NULL; |
|
} |
|
|
|
/* ── Public API ── */ |
|
|
|
int instance_lite_start(const char* config_text) { |
|
if (!config_text) return -1; |
|
|
|
/* CAS: prevent double-start race between multiple Kotlin restart calls */ |
|
int expected = 0; |
|
if (!__atomic_compare_exchange_n(&g_thread_running, &expected, 1, 0, |
|
__ATOMIC_ACQUIRE, __ATOMIC_RELAXED)) |
|
return 0; |
|
|
|
if (__atomic_load_n(&g_inst, __ATOMIC_ACQUIRE)) { |
|
__atomic_store_n(&g_thread_running, 0, __ATOMIC_RELEASE); |
|
return 0; |
|
} |
|
|
|
debug_config_init(); |
|
debug_set_level(DEBUG_LEVEL_INFO); |
|
debug_set_category_level(DEBUG_CATEGORY_SYS, DEBUG_LEVEL_INFO); |
|
debug_set_category_level(DEBUG_CATEGORY_CHAT_SYNC, DEBUG_LEVEL_INFO); |
|
debug_set_category_level(DEBUG_CATEGORY_MEMBER_SYNC, DEBUG_LEVEL_INFO); |
|
debug_set_category_level(DEBUG_CATEGORY_DEBUG, DEBUG_LEVEL_DEBUG); |
|
debug_set_category_level(DEBUG_CATEGORY_ETCP, DEBUG_LEVEL_INFO); |
|
debug_set_category_level(DEBUG_CATEGORY_DUMP, DEBUG_LEVEL_WARN); |
|
debug_enable_function_name(0); |
|
|
|
cfg_get_val(config_text, "db_path", g_db_path, sizeof(g_db_path)); |
|
|
|
char* config_copy = u_strdup(config_text); |
|
if (!config_copy) { __atomic_store_n(&g_thread_running, 0, __ATOMIC_RELEASE); return -1; } |
|
|
|
g_generation++; |
|
g_thread_exited = 0; |
|
__atomic_store_n(&g_stop, 0, __ATOMIC_RELEASE); |
|
int rc = pthread_create(&g_thread, NULL, instance_thread, config_copy); |
|
if (rc != 0) { |
|
u_free(config_copy); |
|
__atomic_store_n(&g_thread_running, 0, __ATOMIC_RELEASE); |
|
IL_LOGE("pthread_create failed rc=%d", rc); |
|
return -1; |
|
} |
|
|
|
IL_LOGI("started OK"); |
|
return 0; |
|
} |
|
|
|
void instance_lite_stop(void) { |
|
struct UTUN_INSTANCE* inst = (struct UTUN_INSTANCE*)__atomic_load_n(&g_inst, __ATOMIC_ACQUIRE); |
|
if (!inst) return; |
|
IL_LOGI("stopping..."); |
|
|
|
__atomic_store_n(&g_stop, 1, __ATOMIC_RELEASE); |
|
struct UASYNC* ua = (struct UASYNC*)__atomic_load_n(&g_ua, __ATOMIC_ACQUIRE); |
|
if (ua) uasync_wakeup(ua); |
|
|
|
struct timespec ts; |
|
clock_gettime(CLOCK_REALTIME, &ts); |
|
ts.tv_sec += 2; |
|
|
|
int timedout = 0; |
|
pthread_mutex_lock(&g_stop_mutex); |
|
while (!g_thread_exited) { |
|
int rc = pthread_cond_timedwait(&g_stop_cond, &g_stop_mutex, &ts); |
|
if (rc == ETIMEDOUT) { |
|
IL_LOGE("stop timeout (2s), detaching thread and bumping generation to prevent stale writes"); |
|
pthread_detach(g_thread); |
|
g_generation++; |
|
timedout = 1; |
|
break; |
|
} |
|
} |
|
pthread_mutex_unlock(&g_stop_mutex); |
|
|
|
if (!timedout) { |
|
int join_rc = pthread_join(g_thread, NULL); |
|
if (join_rc != 0) IL_LOGE("pthread_join failed rc=%d errno=%d", join_rc, errno); |
|
IL_LOGI("thread joined"); |
|
} |
|
|
|
/* C-thread cleanup already set g_inst=NULL, g_ua=NULL, g_running=0. |
|
Reset thread sync state only. */ |
|
g_thread_exited = 0; |
|
} |
|
|
|
/* Логирует текущие активные сокеты (имя=ip:port(протокол)) — состояние ДО изменения. */ |
|
static void log_active_sockets(struct UTUN_INSTANCE* inst, const char* label) { |
|
if (!inst) { DEBUG_INFO(DEBUG_CATEGORY_SOCKET, "%s: (no instance)", label); return; } |
|
char buf[768] = ""; |
|
int off = 0; |
|
for (struct ETCP_SOCKET* s = inst->etcp_sockets; s; s = s->next) { |
|
const struct sockaddr_storage* a = s->interface_addr.ss_family ? &s->interface_addr : &s->local_addr; |
|
const char* addr = sockaddr_storage_to_str(a).str; |
|
if (off < (int)sizeof(buf) - 96) |
|
off += snprintf(buf + off, sizeof(buf) - (size_t)off, " %s=%s(%s)", |
|
s->name, addr, s->is_tcp ? "TCP" : "UDP"); |
|
} |
|
DEBUG_INFO(DEBUG_CATEGORY_SOCKET, "%s:%s", label, buf[0] ? buf : " (none)"); |
|
} |
|
|
|
/* Логирует [server:...]/addr= секции нового конфига — состояние ПОСЛЕ изменения. */ |
|
static void log_config_servers(const char* cfg, const char* label) { |
|
char buf[768] = ""; |
|
int off = 0; |
|
char srvname[64] = ""; |
|
const char* p = cfg; |
|
while (p && *p) { |
|
if (strncmp(p, "[server:", 8) == 0) { |
|
const char* end = strchr(p, ']'); |
|
if (end && end > p + 8) { |
|
int n = (int)(end - p) - 8; if (n > 63) n = 63; |
|
memcpy(srvname, p + 8, (size_t)n); srvname[n] = '\0'; |
|
} else srvname[0] = '\0'; |
|
} else if (strncmp(p, "addr=", 5) == 0 && srvname[0]) { |
|
const char* eol = p; while (*eol && *eol != '\n' && *eol != '\r') eol++; |
|
int alen = (int)(eol - p) - 5; char addr[128]; |
|
if (alen < 1) alen = 0; if (alen > 127) alen = 127; |
|
memcpy(addr, p + 5, (size_t)alen); addr[alen] = '\0'; |
|
if (off < (int)sizeof(buf) - 96) |
|
off += snprintf(buf + off, sizeof(buf) - (size_t)off, " %s=%s", srvname, addr); |
|
srvname[0] = '\0'; |
|
} |
|
while (*p && *p != '\n') p++; |
|
if (*p == '\n') p++; |
|
} |
|
DEBUG_INFO(DEBUG_CATEGORY_SOCKET, "%s:%s", label, buf[0] ? buf : " (none)"); |
|
} |
|
|
|
void instance_lite_restart(const char* new_config_text) { |
|
if (!new_config_text) return; |
|
struct UASYNC* ua = (struct UASYNC*)__atomic_load_n(&g_ua, __ATOMIC_ACQUIRE); |
|
struct UTUN_INSTANCE* inst = (struct UTUN_INSTANCE*)__atomic_load_n(&g_inst, __ATOMIC_ACQUIRE); |
|
int running = __atomic_load_n(&g_running, __ATOMIC_ACQUIRE); |
|
|
|
/* Диагностика смены сети: какие сокеты/адреса были → какие будут */ |
|
log_active_sockets(inst, "restart OLD sockets"); |
|
log_config_servers(new_config_text, "restart NEW config"); |
|
|
|
if (!ua || !inst || !running) { |
|
IL_LOGI("restart: instance dead, doing hard restart via stop+start"); |
|
if (inst) instance_lite_stop(); |
|
instance_lite_start(new_config_text); |
|
return; |
|
} |
|
IL_LOGI("restart: signaling poll loop to exit"); |
|
char* copy = u_strdup(new_config_text); |
|
if (!copy) return; |
|
char* old_cfg = (char*)__atomic_exchange_n(&g_restart_config, copy, __ATOMIC_RELEASE); |
|
u_free(old_cfg); |
|
__atomic_store_n(&g_do_restart, 1, __ATOMIC_RELEASE); |
|
__atomic_store_n(&g_stop, 1, __ATOMIC_RELEASE); |
|
uasync_wakeup(ua); |
|
} |
|
|
|
/* ── Лёгкое обновление сокетов (auto_sockets=android) ── */ |
|
|
|
static void update_sockets_trampoline(void* arg) { |
|
char* cfg_text = (char*)arg; |
|
struct UTUN_INSTANCE* inst = (struct UTUN_INSTANCE*)__atomic_load_n(&g_inst, __ATOMIC_ACQUIRE); |
|
if (!inst) { |
|
IL_LOGE("update_sockets: instance gone in trampoline — dropping update"); |
|
u_free(cfg_text); |
|
return; |
|
} |
|
struct utun_config* cfg = parse_config_from_buf(cfg_text, strlen(cfg_text), "android-update"); |
|
u_free(cfg_text); |
|
if (!cfg) { IL_LOGE("update_sockets: parse_config_from_buf failed"); return; } |
|
auto_socket_reload_config(inst, cfg); /* cfg владеет auto_socket: servers переносятся, остальное освобождается */ |
|
} |
|
|
|
void instance_lite_update_sockets(const char* config_text) { |
|
if (!config_text) return; |
|
struct UASYNC* ua = (struct UASYNC*)__atomic_load_n(&g_ua, __ATOMIC_ACQUIRE); |
|
struct UTUN_INSTANCE* inst = (struct UTUN_INSTANCE*)__atomic_load_n(&g_inst, __ATOMIC_ACQUIRE); |
|
int running = __atomic_load_n(&g_running, __ATOMIC_ACQUIRE); |
|
|
|
/* Диагностика смены сети: какие сокеты/адреса были → какие будут (без полного рестарта). */ |
|
log_active_sockets(inst, "update OLD sockets"); |
|
log_config_servers(config_text, "update NEW config"); |
|
|
|
if (!ua || !inst || !running) { |
|
IL_LOGE("update_sockets: instance not running (ua=%p inst=%p running=%d) — update dropped (no fallback restart)", |
|
(void*)ua, (void*)inst, running); |
|
return; |
|
} |
|
char* copy = u_strdup(config_text); |
|
if (!copy) { IL_LOGE("update_sockets: u_strdup failed"); return; } |
|
uasync_post(ua, update_sockets_trampoline, copy); |
|
} |
|
|
|
/* ── Health check ping ── */ |
|
|
|
static volatile int g_ping_id = 0; |
|
static volatile int g_pong_id = 0; |
|
|
|
static void ping_trampoline(void* arg) { |
|
(void)arg; |
|
g_pong_id = g_ping_id; |
|
} |
|
|
|
void instance_lite_ping(void) { |
|
struct UASYNC* ua = (struct UASYNC*)__atomic_load_n(&g_ua, __ATOMIC_ACQUIRE); |
|
struct UTUN_INSTANCE* inst = (struct UTUN_INSTANCE*)__atomic_load_n(&g_inst, __ATOMIC_ACQUIRE); |
|
if (!ua || !inst) return; |
|
g_ping_id++; |
|
uasync_post(ua, ping_trampoline, NULL); |
|
} |
|
|
|
int instance_lite_is_responsive(void) { |
|
struct UASYNC* ua = (struct UASYNC*)__atomic_load_n(&g_ua, __ATOMIC_ACQUIRE); |
|
struct UTUN_INSTANCE* inst = (struct UTUN_INSTANCE*)__atomic_load_n(&g_inst, __ATOMIC_ACQUIRE); |
|
if (!ua || !inst || !__atomic_load_n(&g_running, __ATOMIC_ACQUIRE)) return 0; |
|
if (g_ping_id == 0) return 0; |
|
return (g_pong_id == g_ping_id) ? 1 : 0; |
|
} |
|
|
|
void instance_lite_collect_conn_list(void) { |
|
struct UASYNC* ua = (struct UASYNC*)__atomic_load_n(&g_ua, __ATOMIC_ACQUIRE); |
|
struct UTUN_INSTANCE* inst = (struct UTUN_INSTANCE*)__atomic_load_n(&g_inst, __ATOMIC_ACQUIRE); |
|
if (!ua || !inst) return; |
|
uasync_post(ua, chat_core_collect_conn_list_trampoline, inst); |
|
} |
|
|
|
void instance_lite_collect_conn_metrics(uint64_t peer_node_id) { |
|
struct UASYNC* ua = (struct UASYNC*)__atomic_load_n(&g_ua, __ATOMIC_ACQUIRE); |
|
struct UTUN_INSTANCE* inst = (struct UTUN_INSTANCE*)__atomic_load_n(&g_inst, __ATOMIC_ACQUIRE); |
|
if (!ua || !inst) return; |
|
struct chat_node_arg* arg = (struct chat_node_arg*)u_malloc(sizeof(struct chat_node_arg)); |
|
if (!arg) return; |
|
arg->inst = inst; |
|
arg->node_id = peer_node_id; |
|
uasync_post(ua, chat_core_collect_conn_metrics_trampoline, arg); |
|
} |
|
|
|
int instance_lite_is_running(void) { |
|
struct UTUN_INSTANCE* inst = (struct UTUN_INSTANCE*)__atomic_load_n(&g_inst, __ATOMIC_ACQUIRE); |
|
return (inst != NULL && __atomic_load_n(&g_running, __ATOMIC_ACQUIRE)) ? 1 : 0; |
|
} |
|
|
|
struct UASYNC* instance_lite_get_uasync(void) { |
|
return (struct UASYNC*)__atomic_load_n(&g_ua, __ATOMIC_ACQUIRE); |
|
} |
|
|
|
struct UTUN_INSTANCE* instance_lite_get_instance(void) { |
|
return (struct UTUN_INSTANCE*)__atomic_load_n(&g_inst, __ATOMIC_ACQUIRE); |
|
} |
|
|
|
static void regenerate_trampoline(void* arg) { |
|
(void)arg; |
|
if (!g_inst || !g_inst->config) { IL_LOGE("regenerate_keys: instance not running"); return; } |
|
struct utun_config* config = g_inst->config; |
|
IL_LOGI("regenerating keys..."); |
|
config->global.my_public_key_hex[0] = '\0'; |
|
config->global.my_private_key_hex[0] = '\0'; |
|
ensure_keys(config); |
|
if (g_generated_pub[0]) { |
|
uint8_t pk_bin[32]; |
|
for (int i = 0; i < 32; i++) { unsigned int b; sscanf(g_generated_pub + i * 2, "%2x", &b); pk_bin[i] = (uint8_t)b; } |
|
g_inst->node_id = sc_derive_node_id_from_pubkey(pk_bin); |
|
sc_init_local_keys(&g_inst->my_keys, g_generated_pub, g_generated_priv); |
|
IL_LOGI("keys regenerated, node_id=0x%016llx", (unsigned long long)g_inst->node_id); |
|
chat_event_post(g_inst, CHAT_EVT_KEYS_GENERATED, (const uint8_t*)g_generated_pub, 64); |
|
} |
|
} |
|
|
|
void instance_lite_regenerate_keys(void) { |
|
struct UASYNC* ua = (struct UASYNC*)__atomic_load_n(&g_ua, __ATOMIC_ACQUIRE); |
|
struct UTUN_INSTANCE* inst = (struct UTUN_INSTANCE*)__atomic_load_n(&g_inst, __ATOMIC_ACQUIRE); |
|
if (!ua || !inst) return; |
|
uasync_post(ua, regenerate_trampoline, NULL); |
|
} |
|
|
|
void instance_lite_set_event_handler(instance_lite_event_fn handler) { |
|
IL_LOGI("[EVT_DIAG] instance_lite_set_event_handler handler=%p g_running=%d", (void*)handler, g_running); |
|
g_event_handler = handler; |
|
if (__atomic_load_n(&g_running, __ATOMIC_ACQUIRE)) { |
|
struct UTUN_INSTANCE* inst = (struct UTUN_INSTANCE*)__atomic_load_n(&g_inst, __ATOMIC_ACQUIRE); |
|
if (inst) chat_event_set_handler(inst, chat_event_forward); |
|
} |
|
}
|
|
|