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394 lines
19 KiB
394 lines
19 KiB
// test_media_delivery_full.c — полный сценарий: создание, передача, сборка, репликация |
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// |
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// 4 узла: n1 (автор), n2 (получатель), s1 (суперузел), s2 (суперузел) |
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// Топология: цепь 0→1 1→2 2→3 |
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// Фазы: |
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// P1: CHAT-группа (topo_groups_create_group + member_sync_put) |
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// A1: SUPER_HELLO, HAVE_BLOCK, репликация |
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// A2: admission control (OVERLOADED) |
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// B1: n1 создаёт файл → n2 инициирует загрузку → стриминг → сборка → проверка |
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#include "media_delivery.h" |
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#include "media_delivery_proto.h" |
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#include "media_download.h" |
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#include "media_index.h" |
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#include "member_sync.h" |
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#include "../routing_layer/topo_node_sqlite.h" |
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#include "../utun_instance.h" |
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#include "../transport_layer/etcp.h" |
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#include "../config_parser.h" |
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#include "../config_updater.h" |
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#include "../routing_layer/topo_group.h" |
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#include "../lib/u_async.h" |
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#include "../lib/debug_config.h" |
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#include "../lib/mem.h" |
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#include <sqlite3.h> |
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#define OPENSSL_API_COMPAT 0x10100000L |
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#include <openssl/evp.h> |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <string.h> |
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#include <time.h> |
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static int G_PASSED = 0, G_FAILED = 0, G_TOTAL = 0; |
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#define TEST(n) do { G_TOTAL++; printf(" %-60s", n); fflush(stdout); } while(0) |
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#define OK() do { G_PASSED++; printf("OK\n"); } while(0) |
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#define FAIL(f,...) do { G_FAILED++; printf("FAIL: " f "\n", ##__VA_ARGS__); } while(0) |
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#define TIMEOUT_TB 300000 |
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#define POLL_MS 5 |
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#define N_NODES 4 /* n1=0, n2=1, s1=2, s2=3 */ |
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#define CH_ID "31415926535" |
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static struct UASYNC* g_ua = NULL; |
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static struct UTUN_INSTANCE* g_inst[N_NODES]; |
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static uint64_t g_nid[N_NODES]; |
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static uint64_t g_group_id = 0; |
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static uint8_t g_test_mid[16], g_test_bid0[16], g_test_bid1[16]; |
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static char g_tdir[256] = "/tmp/utun_mdf_XXXXXX"; |
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static char g_cfg[N_NODES][256]; |
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static char g_db_dir[N_NODES][320]; |
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static int g_port[N_NODES]; |
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static int g_connected = 0, g_result = 0; |
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static int wf(const char* p, const char* f, ...) { |
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va_list ap; FILE* fp = fopen(p, "w"); if (!fp) return -1; |
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va_start(ap, f); vfprintf(fp, f, ap); va_end(ap); fclose(fp); return 0; |
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} |
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static char* gv(const char* p, const char* k) { |
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struct utun_config* c = parse_config(p); if (!c) return NULL; |
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char* r = (strcmp(k, "pub") == 0) ? u_strdup(c->global.my_public_key_hex) : u_strdup(c->global.my_private_key_hex); |
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free_config(c); return r; |
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} |
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static void t_mkdtemp(char* t) { |
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#ifdef _WIN32 |
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char tmp_path[512]; GetTempPathA(sizeof(tmp_path), tmp_path); |
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snprintf(t, 256, "%s\\utun_test_%08x", tmp_path, (unsigned)rand()); |
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_mkdir(t); |
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#else |
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(void)!mkdtemp(t); |
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#endif |
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} |
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static void t_rmdir(const char* p) { char cmd[512]; snprintf(cmd, sizeof(cmd), "rm -rf %s", p); system(cmd); } |
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static int db_count(sqlite3* db, const char* tbl, const char* wh, uint64_t val) { |
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char sql[256]; |
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if (wh) snprintf(sql, sizeof(sql), "SELECT COUNT(*) FROM %s WHERE %s=%llu", tbl, wh, (unsigned long long)val); |
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else snprintf(sql, sizeof(sql), "SELECT COUNT(*) FROM %s", tbl); |
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sqlite3_stmt* s = NULL; |
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if (sqlite3_prepare_v2(db, sql, -1, &s, NULL) != SQLITE_OK) return -1; |
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int n = -1; |
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if (sqlite3_step(s) == SQLITE_ROW) n = sqlite3_column_int(s, 0); |
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sqlite3_finalize(s); return n; |
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} |
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static void to_cb(void* arg) { (void)arg; fprintf(stderr, " TIMEOUT\n"); g_result = 2; } |
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static void mon(void* arg) { |
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(void)arg; |
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if (g_result) return; |
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int ok = 0; |
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for (int i = 0; i < N_NODES; i++) { |
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struct ll_entry* e = g_inst[i]->connections->head; |
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while (e) { struct conn_queue_entry* ce = (struct conn_queue_entry*)e->data; |
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if (ce->conn && ce->conn->links) { struct ETCP_LINK* l; for (l = ce->conn->links; l; l = l->next) |
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if (l->initialized && ce->conn->crypto_ctx.initialized) ok++; } e = e->next; } |
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} |
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if (ok >= N_NODES * 2 - 2) g_connected = 1; |
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if (!g_result) uasync_set_timeout(g_ua, 10, NULL, mon, "md_mon"); |
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} |
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static int msend(struct UTUN_INSTANCE* inst, uint64_t dst, const uint8_t* data, size_t len) { |
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struct ll_entry* e = queue_entry_new(0); if (!e) return -1; |
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e->dgram = u_malloc(len + 1); if (!e->dgram) { queue_entry_free(e); return -1; } |
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e->dgram[0] = ETCP_RT_ID_MEDIA_DELIVERY; memcpy(e->dgram + 1, data, len); e->len = (uint16_t)(len + 1); |
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DEBUG_INFO(DEBUG_CATEGORY_DEBUG, "[msend] 0x%016llx → 0x%016llx svc=0x%02x subcmd=0x%02x len=%zu", |
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(unsigned long long)inst->node_id, (unsigned long long)dst, e->dgram[0], data[0], len); |
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int rc = etcp_route_send(inst, TOPO_GROUP_UTUN, dst, e, 1); |
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if (rc != 0) { DEBUG_ERROR(DEBUG_CATEGORY_DEBUG, "[msend] FAILED rc=%d", rc); u_free(e->dgram); queue_entry_free(e); } |
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return rc; |
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} |
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/* ── Phase P1: create CHAT group + members on all nodes ── */ |
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static void setup_chat_group(void) { |
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uint8_t x25519_pub[32] = {0}, ed_pub[32] = {0}, ch_sig[64] = {0}; |
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int i; |
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TEST("generate channel keys"); { |
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EVP_PKEY* xpkey = NULL, *epkey = NULL; |
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EVP_PKEY_CTX* ctx = EVP_PKEY_CTX_new_id(EVP_PKEY_X25519, NULL); |
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if (ctx) { EVP_PKEY_keygen_init(ctx); EVP_PKEY_keygen(ctx, &xpkey); EVP_PKEY_CTX_free(ctx); } |
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if (xpkey) { size_t l = 32; EVP_PKEY_get_raw_public_key(xpkey, x25519_pub, &l); EVP_PKEY_free(xpkey); } |
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ctx = EVP_PKEY_CTX_new_id(EVP_PKEY_ED25519, NULL); |
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if (ctx) { EVP_PKEY_keygen_init(ctx); EVP_PKEY_keygen(ctx, &epkey); EVP_PKEY_CTX_free(ctx); } |
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if (epkey) { size_t l = 32; EVP_PKEY_get_raw_public_key(epkey, ed_pub, &l); |
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/* sign channel */ |
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EVP_MD_CTX* mctx = EVP_MD_CTX_new(); |
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if (mctx) { EVP_DigestSignInit(mctx, NULL, NULL, NULL, epkey); |
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size_t sl = 64; EVP_DigestSign(mctx, ch_sig, &sl, (const uint8_t*)CH_ID, strlen(CH_ID)); EVP_MD_CTX_free(mctx); } |
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EVP_PKEY_free(epkey); |
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} |
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if (x25519_pub[0] || ed_pub[0]) OK(); else FAIL(); |
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} |
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TEST("create CHAT groups + peers tables"); { |
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for (i = 0; i < N_NODES; i++) { |
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sqlite3* db = g_inst[i]->topo_sqlite_db; |
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struct TOPO_GROUPS* tg = g_inst[i]->topo_groups; |
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if (!db || !tg) continue; |
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topo_node_sqlite_channel_put(db, CH_ID, "test", g_nid[0], x25519_pub, NULL, ed_pub, NULL, ch_sig); |
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if (topo_groups_find(tg, g_group_id)) continue; |
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topo_groups_create_group(tg, g_group_id, TOPO_GROUP_TYPE_CHAT, CH_ID); |
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} |
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OK(); |
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} |
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TEST("add all 4 members (n1, n2, s1 supernode, s2 supernode)"); { |
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const char* adm[4] = { NULL, NULL, "supernode=yes", "supernode=yes" }; |
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for (i = 0; i < N_NODES; i++) { |
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sqlite3* db = g_inst[i]->topo_sqlite_db; |
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if (!db) continue; |
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for (int m = 0; m < N_NODES; m++) { |
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member_sync_put(g_inst[i], CH_ID, g_nid[m], |
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g_inst[m]->my_keys.public_key, g_inst[m]->my_ed25519_pubkey, |
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NULL, 0, NULL, 0, "{\"name\":\"node\"}", |
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NULL, 0, adm[m], NULL, 0); |
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} |
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} |
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int ok = 1; |
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for (i = 0; i < N_NODES; i++) if (member_sync_count(g_inst[i], CH_ID) < N_NODES) ok = 0; |
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if (ok) OK(); else FAIL(); |
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} |
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} |
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/* ── Phase A1: SUPER_HELLO ── */ |
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static void phase_a1_super_hello(void) { |
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TEST("s1,s2 are supernodes"); { |
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media_delivery_set_supernode(g_inst[2], 1); |
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media_delivery_set_supernode(g_inst[3], 1); |
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topo_node_sqlite_nodeinfo_updated(g_inst[2]->topo_sqlite_db, g_nid[2]); |
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topo_node_sqlite_nodeinfo_updated(g_inst[3]->topo_sqlite_db, g_nid[3]); |
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if (g_inst[2]->md.is_supernode && g_inst[3]->md.is_supernode) OK(); else FAIL(); |
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} |
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TEST("SUPER_HELLO s1↔s2"); { |
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struct media_pkt_super_hello h; h.subcmd = MEDIA_SUBCMD_SUPER_HELLO; h.last_recv_id = 0; |
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msend(g_inst[2], g_nid[3], (const uint8_t*)&h, sizeof(h)); |
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msend(g_inst[3], g_nid[2], (const uint8_t*)&h, sizeof(h)); |
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int a = 0; while (a < 500) { uasync_poll(g_ua, POLL_MS); a++; } |
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int ok1 = g_inst[2]->md.super_peers && g_inst[2]->md.super_peers->head != NULL; |
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int ok2 = g_inst[3]->md.super_peers && g_inst[3]->md.super_peers->head != NULL; |
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if (ok1 && ok2) OK(); else FAIL("s1=%d s2=%d", ok1, ok2); |
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} |
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} |
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/* ── Phase A2: HAVE_BLOCK + replication ── */ |
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static void phase_a2_have_block_replication(void) { |
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uint8_t uuid[16]; memset(uuid, 0xAB, 16); |
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TEST("HAVE_BLOCK n2→s1"); { |
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struct media_pkt_have_block hb; memset(&hb, 0, sizeof(hb)); |
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hb.subcmd = MEDIA_SUBCMD_HAVE_BLOCK; hb.group_id = g_group_id; |
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memcpy(hb.block_id, uuid, 16); memcpy(hb.media_id, uuid, 16); |
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hb.chunk = 0; hb.timestamp = (int64_t)time(NULL); |
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msend(g_inst[1], g_nid[2], (const uint8_t*)&hb, sizeof(hb)); |
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int a = 0; while (a < 500) { if (db_count(g_inst[2]->topo_sqlite_db, "block_availability", "node_id", g_nid[1]) >= 1) break; uasync_poll(g_ua, POLL_MS); a++; } |
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if (db_count(g_inst[2]->topo_sqlite_db, "block_availability", "node_id", g_nid[1]) >= 1) OK(); else FAIL(); |
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} |
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TEST("SUPER_REPL s1→s2"); { |
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int a = 0; while (a < 500) { uasync_poll(g_ua, POLL_MS); a++; } |
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if (db_count(g_inst[3]->topo_sqlite_db, "block_availability", NULL, 0) >= 1) OK(); else FAIL(); |
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} |
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TEST("s2 super_sync updated"); { |
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sqlite3_stmt* st = NULL; uint64_t lr = 0; |
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sqlite3_prepare_v2(g_inst[3]->topo_sqlite_db, "SELECT last_recv_id FROM super_sync WHERE peer_node_id=?", -1, &st, NULL); |
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sqlite3_bind_int64(st, 1, (sqlite3_int64)g_nid[2]); |
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if (sqlite3_step(st) == SQLITE_ROW) lr = (uint64_t)sqlite3_column_int64(st, 0); |
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sqlite3_finalize(st); |
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if (lr > 0) OK(); else FAIL(); |
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} |
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} |
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/* ── helper: create test file + index before admission ── */ |
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static int create_test_file(void) { |
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char src_tmp[512]; snprintf(src_tmp, sizeof(src_tmp), "/tmp/mdl_test_%d.bin", getpid()); |
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char media_dir[512]; snprintf(media_dir, sizeof(media_dir), "%s/media", g_db_dir[0]); |
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utun_mkdir(media_dir, 0755); |
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char dst_path[512]; snprintf(dst_path, sizeof(dst_path), "%s/test_src.bin", media_dir); |
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char media_base[512]; snprintf(media_base, sizeof(media_base), "%s", g_db_dir[0]); |
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uint8_t file_data[10240]; |
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for (int i = 0; i < 10240; i++) file_data[i] = (uint8_t)(i & 0xFF); |
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FILE* f = fopen(src_tmp, "wb"); |
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if (!f) return -1; |
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fwrite(file_data, 1, 10240, f); fclose(f); |
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{ FILE* fin = fopen(src_tmp, "rb"), *fout = fopen(dst_path, "wb"); |
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if (fin && fout) { uint8_t buf[4096]; size_t rd; while ((rd = fread(buf, 1, sizeof(buf), fin)) > 0) fwrite(buf, 1, rd, fout); } |
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if (fin) fclose(fin); if (fout) fclose(fout); } |
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/* set media_base in ui_state */ |
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sqlite3_exec(g_inst[0]->topo_sqlite_db, "CREATE TABLE IF NOT EXISTS ui_state(key TEXT PRIMARY KEY, value TEXT)", NULL, NULL, NULL); |
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{ sqlite3_stmt* us = NULL; |
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sqlite3_prepare_v2(g_inst[0]->topo_sqlite_db, "INSERT OR REPLACE INTO ui_state(key,value) VALUES('media_base',?)", -1, &us, NULL); |
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sqlite3_bind_text(us, 1, media_base, -1, SQLITE_STATIC); sqlite3_step(us); sqlite3_finalize(us); } |
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/* index the file */ |
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uint8_t hash[32]; |
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{ EVP_MD_CTX* ctx = EVP_MD_CTX_new(); EVP_DigestInit_ex(ctx, EVP_sha256(), NULL); |
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EVP_DigestUpdate(ctx, file_data, 10240); EVP_DigestFinal_ex(ctx, hash, NULL); EVP_MD_CTX_free(ctx); } |
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media_index_init(g_inst[0]->topo_sqlite_db); |
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struct media_index_result result; memset(&result, 0, sizeof(result)); |
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media_index_generate_uuid(result.media_id); |
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memcpy(result.content_hash, hash, 32); |
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result.file_size = 10240; result.block_size = 5120; result.num_blocks = 2; |
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result.block_ids = u_malloc(32); result.block_sigs = u_malloc(128); |
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for (int i = 0; i < 2; i++) { |
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media_index_generate_uuid(result.block_ids + i * 16); |
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uint8_t smsg[5128]; size_t soff = 0; |
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memcpy(smsg + soff, file_data + i * 5120, 5120); soff += 5120; |
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uint64_t nid = g_nid[0]; memcpy(smsg + soff, &nid, 8); soff += 8; |
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sc_ed25519_sign(g_inst[0]->my_ed25519_privkey, smsg, soff, result.block_sigs + i * 64); |
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} |
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int rc = media_index_commit(g_inst[0]->topo_sqlite_db, &result, g_nid[0], |
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g_inst[0]->my_ed25519_privkey, "test_ch", dst_path, media_base); |
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if (rc != 0) { media_index_result_free(&result); return -1; } |
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memcpy(g_test_mid, result.media_id, 16); |
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memcpy(g_test_bid0, result.block_ids, 16); |
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memcpy(g_test_bid1, result.block_ids + 16, 16); |
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media_index_result_free(&result); |
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return 0; |
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} |
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/* ── Phase A3: admission control (uses real file after create_test_file) ── */ |
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static void phase_a3_admission(void) { |
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/* wait for UTUN-group routing to be established (NODEINFO exchange complete) */ |
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{ int a = 0; while (a < 1000) { |
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struct TOPO_GROUP* g = topo_groups_find(g_inst[1]->topo_groups, TOPO_GROUP_UTUN); |
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struct ETCP_CONN* c = g ? topo_group_find_conn_for_node(g, g_nid[0]) : NULL; |
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if (c) break; |
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uasync_poll(g_ua, POLL_MS); a++; |
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}} |
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TEST("1st BLOCK_REQ → stream"); { |
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struct media_pkt_block_req req; memset(&req, 0, sizeof(req)); |
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req.subcmd = MEDIA_SUBCMD_BLOCK_REQ; req.group_id = g_group_id; |
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memcpy(req.media_id, g_test_mid, 16); memcpy(req.block_id, g_test_bid0, 16); |
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msend(g_inst[1], g_nid[0], (const uint8_t*)&req, sizeof(req)); |
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int a = 0; while (a < 500) { uasync_poll(g_ua, POLL_MS); a++; } |
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if (g_inst[0]->md.streams_started >= 1) OK(); else FAIL("started=%d", g_inst[0]->md.streams_started); |
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} |
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TEST("fill → 3 → OVERLOADED"); { |
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int before = g_inst[0]->md.streams_started; |
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for (int i = 0; i < 3; i++) { |
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struct media_pkt_block_req req; memset(&req, 0, sizeof(req)); |
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req.subcmd = MEDIA_SUBCMD_BLOCK_REQ; req.group_id = g_group_id; req.chunk = (uint32_t)i; |
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memcpy(req.media_id, g_test_mid, 16); memcpy(req.block_id, g_test_bid0, 16); |
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msend(g_inst[1], g_nid[0], (const uint8_t*)&req, sizeof(req)); |
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} |
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int a = 0; while (a < 500) { uasync_poll(g_ua, POLL_MS); a++; } |
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int started = g_inst[0]->md.streams_started - before; |
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if (started == 3) OK(); else FAIL("started=%d (expected 3, total=%d)", started, g_inst[0]->md.streams_started); |
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} |
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g_inst[0]->md.active_streams = 0; |
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} |
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/* ══════════════════════════════════════════════════════════ |
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Phase B1: BLOCK_REQ → stream → verify |
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══════════════════════════════════════════════════════════ */ |
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static void phase_b1_stream_test(void) { |
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TEST("n2→n1 BLOCK_REQ streams data"); { |
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struct media_pkt_block_req req; memset(&req, 0, sizeof(req)); |
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req.subcmd = MEDIA_SUBCMD_BLOCK_REQ; req.group_id = g_group_id; |
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memcpy(req.media_id, g_test_mid, 16); memcpy(req.block_id, g_test_bid1, 16); |
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req.chunk = 0; |
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g_inst[0]->md.stream_completed = 0; |
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msend(g_inst[1], g_nid[0], (const uint8_t*)&req, sizeof(req)); |
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int a = 0; |
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while (a < 3000 && !g_inst[0]->md.stream_completed) { uasync_poll(g_ua, POLL_MS); a++; } |
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if (g_inst[0]->md.stream_completed) OK(); else FAIL("stream not completed after %dms", 3000 * POLL_MS); |
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} |
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} |
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/* ── main ── */ |
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int main(void) { |
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debug_config_init(); debug_set_level(DEBUG_LEVEL_ERROR); |
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utun_instance_set_tun_init_enabled(0); |
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srand((unsigned)time(NULL)); |
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printf("=== test_media_delivery_full ===\n"); |
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t_mkdtemp(g_tdir); |
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for (int i = 0; i < N_NODES; i++) { |
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snprintf(g_cfg[i], sizeof(g_cfg[i]), "%s/n%d.conf", g_tdir, i); |
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snprintf(g_db_dir[i], sizeof(g_db_dir[i]), "%s/db%d", g_tdir, i); |
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utun_mkdir(g_db_dir[i], 0755); |
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g_port[i] = 51000 + (getpid() % 5000) + i * 1000; |
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} |
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g_ua = uasync_create(); |
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for (int i = 0; i < N_NODES; i++) |
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wf(g_cfg[i], "[global]\ntun_ip=10.99.%d.1/24\ntun_ifname=tun%d0\ndb_path=%s\n" |
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"[server: s1]\naddr=127.0.0.1:%d\ntype=public\n[allowed_keys]\nallow_all=1\n", |
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i, i, g_db_dir[i], g_port[i]); |
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for (int i = 0; i < N_NODES; i++) { |
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config_ensure_keys_and_node_id(g_cfg[i]); |
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struct utun_config* c = parse_config(g_cfg[i]); g_nid[i] = c->global.my_node_id; free_config(c); |
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} |
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for (int i = 0; i < N_NODES; i++) { |
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char *pr = gv(g_cfg[i], "priv"), *pu = gv(g_cfg[i], "pub"); |
|
if (i == 0) { |
|
wf(g_cfg[i], "[global]\nmy_private_key=%s\nmy_public_key=%s\ntun_ip=10.99.%d.1/24\ntun_ifname=tun%d0\n" |
|
"db_path=%s\n[server: s1]\naddr=127.0.0.1:%d\ntype=public\n[allowed_keys]\nallow_all=1\n", |
|
pr, pu, i, i, g_db_dir[i], g_port[i]); |
|
} else { |
|
int prev = i - 1; char *pv_pu = gv(g_cfg[prev], "pub"); |
|
char link[256]; snprintf(link, sizeof(link), |
|
"[client: to_n%d]\nkeepalive=1\npeer_public_key=%s\nlink=s1:127.0.0.1:%d\n", prev, pv_pu, g_port[prev]); |
|
wf(g_cfg[i], "[global]\nmy_private_key=%s\nmy_public_key=%s\ntun_ip=10.99.%d.1/24\ntun_ifname=tun%d0\n" |
|
"db_path=%s\n[server: s1]\naddr=127.0.0.1:%d\ntype=public\n%s[allowed_keys]\nallow_all=1\n", |
|
pr, pu, i, i, g_db_dir[i], g_port[i], link); |
|
u_free(pv_pu); |
|
} |
|
u_free(pr); u_free(pu); |
|
} |
|
|
|
for (int i = 0; i < N_NODES; i++) { |
|
g_inst[i] = utun_instance_create(g_ua, g_cfg[i]); |
|
if (!g_inst[i]) { printf("FAIL: create n%d\n", i); goto done; } |
|
utun_instance_init(g_inst[i]); |
|
} |
|
|
|
mon(NULL); |
|
uasync_set_timeout(g_ua, TIMEOUT_TB, NULL, (timeout_callback_t)to_cb, "md_to"); |
|
{ int el = 0; while (!g_connected && !g_result && el < TIMEOUT_TB + 5000) { uasync_poll(g_ua, POLL_MS); el += POLL_MS; } |
|
if (!g_connected) { printf("FAIL: connection timeout\n"); goto done; } } |
|
printf(" connected\n"); |
|
|
|
g_group_id = strtoull(CH_ID, NULL, 10); |
|
/* ══ Phase P1: create CHAT groups + members ══ */ |
|
setup_chat_group(); |
|
|
|
phase_a1_super_hello(); |
|
phase_a2_have_block_replication(); |
|
|
|
/* create test file + index before admission tests (needed for real BLOCK_REQ to find files) */ |
|
{ TEST("media_index_commit + ui_state"); { |
|
if (create_test_file() == 0 && db_count(g_inst[0]->topo_sqlite_db, "media_files", NULL, 0) == 2) OK(); |
|
else FAIL("create_test_file failed"); |
|
}} |
|
|
|
phase_a3_admission(); |
|
phase_b1_stream_test(); |
|
|
|
fflush(stdout); fflush(stderr); |
|
printf("\n%d/%d passed, %d failed\n", G_PASSED, G_TOTAL, G_FAILED); fflush(stdout); |
|
|
|
done: |
|
g_result = 1; |
|
for (int i = 0; i < N_NODES; i++) { if (g_inst[i]) { g_inst[i]->running = 0; utun_instance_destroy(g_inst[i]); g_inst[i] = NULL; } } |
|
if (g_ua) { uasync_destroy(g_ua, 0); g_ua = NULL; } |
|
t_rmdir(g_tdir); |
|
return G_FAILED > 0 ? 1 : 0; |
|
}
|
|
|