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568 lines
19 KiB
568 lines
19 KiB
// test_etcp_router_unit.c — Юнит-тест etcp_router: reorder, seq, ACK, conn lifecycle |
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// Без ETCP-соединений, без сокетов, без BGP. |
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// Инжектит SVC_ROUTE пакеты напрямую через etcp_router_recv_cb из api_bindings. |
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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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#include <unistd.h> |
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#include <sys/time.h> |
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#include "../src/etcp.h" |
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#include "../src/etcp_api.h" |
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#include "../src/etcp_router.h" |
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#include "../src/utun_instance.h" |
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#include "../lib/u_async.h" |
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#include "../lib/ll_queue.h" |
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#include "../lib/debug_config.h" |
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#include "../lib/mem.h" |
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#define TEST_SVC_ID 0x42 |
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#define TEST_SVC_ID2 0x43 |
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#define TEST_REMOTE_NODE 0xAAAA000000000001ULL |
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#define TEST_REMOTE_NODE2 0xAAAA000000000002ULL |
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// ======================== Test handler state ======================== |
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static struct { |
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int delivered; |
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int errors; |
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uint32_t expected_seq; |
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uint32_t last_seq; |
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uint8_t marker; |
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} rx; |
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static void test_handler(struct ETCP_CONN* conn, struct ll_entry* entry) { |
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(void)conn; |
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if (!entry || !entry->dgram || entry->len < 2) { |
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if (entry) { queue_entry_free(entry); queue_dgram_free(entry); } |
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rx.errors++; |
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return; |
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} |
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if (entry->dgram[1] != rx.marker) { rx.errors++; } else { rx.delivered++; rx.last_seq = rx.expected_seq; rx.expected_seq++; } |
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queue_entry_free(entry); queue_dgram_free(entry); |
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} |
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static void rx_reset(uint8_t marker) { |
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memset(&rx, 0, sizeof(rx)); |
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rx.marker = marker; |
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} |
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// ======================== Inject helper ======================== |
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static struct ETCP_CONN fake_conn; |
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static void inject(etcp_recv_fn recv_cb, struct UTUN_INSTANCE* inst, |
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uint64_t src, uint8_t svc_id, uint32_t seq, |
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const uint8_t* pl, size_t pl_len, int is_ack) { |
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struct SVC_ROUTE_HDR hdr; |
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memset(&hdr, 0, sizeof(hdr)); |
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hdr.cmd = ETCP_ID_SVC_ROUTE; |
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hdr.dst_node_id = inst->node_id; |
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hdr.src_node_id = src; |
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hdr.seq = seq; |
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hdr.svc_id = svc_id; |
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size_t total = SVC_ROUTE_HDR_SIZE + (is_ack ? 0 : pl_len); |
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struct ll_entry* e = queue_entry_new(0); |
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if (!e) { printf(" inject: queue_entry_new failed\n"); return; } |
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e->dgram = u_malloc(total); |
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if (!e->dgram) { queue_entry_free(e); return; } |
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memcpy(e->dgram, &hdr, SVC_ROUTE_HDR_SIZE); |
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if (!is_ack && pl_len > 0) |
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memcpy(e->dgram + SVC_ROUTE_HDR_SIZE, pl, pl_len); |
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e->len = total; |
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recv_cb(&fake_conn, e); |
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} |
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// ======================== Setup ======================== |
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#define SETUP() do { \ |
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ua = uasync_create(); \ |
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if (!ua) { printf(" SETUP: uasync_create failed\n"); return -1; } \ |
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memset(&inst, 0, sizeof(inst)); \ |
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inst.ua = ua; \ |
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inst.node_id = 0xBBBB000000000001ULL; \ |
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debug_config_init(); \ |
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debug_set_level(DEBUG_LEVEL_ERROR); \ |
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debug_set_categories(DEBUG_CATEGORY_ALL); \ |
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memset(&fake_conn, 0, sizeof(fake_conn)); \ |
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fake_conn.instance = &inst; \ |
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TESTASSERT(etcp_router_init(&inst) == 0); \ |
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TESTASSERT(etcp_router_bind(&inst, TEST_SVC_ID, test_handler) == 0); \ |
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recv_cb = inst.api_bindings.callbacks[ETCP_ID_SVC_ROUTE]; \ |
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TESTASSERT(recv_cb != NULL); \ |
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} while(0) |
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#define TEARDOWN() do { \ |
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etcp_router_destroy(&inst); \ |
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uasync_destroy(ua, 0); \ |
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ua = NULL; \ |
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} while(0) |
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// ======================== Macros ======================== |
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static int test_total = 0, test_passed = 0, test_failed = 0; |
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#define TESTASSERT(cond) do { \ |
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if (!(cond)) { printf(" FAIL: %s:%d — %s\n", __FILE__, __LINE__, #cond); return -1; } \ |
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} while(0) |
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#define TEST(name) do { \ |
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test_total++; \ |
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printf("TEST %d: %-50s ", test_total, name); fflush(stdout); \ |
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} while(0) |
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#define PASS() do { puts("PASS"); test_passed++; } while(0) |
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#define FAIL(msg) do { printf("FAIL: %s\n", msg); test_failed++; return; } while(0) |
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// ======================== Tests ======================== |
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static int test_init_destroy(void) { |
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TEST("init/destroy"); |
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struct UASYNC* ua = uasync_create(); |
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if (!ua) FAIL("uasync_create"); |
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struct UTUN_INSTANCE inst; |
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memset(&inst, 0, sizeof(inst)); |
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inst.ua = ua; |
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inst.node_id = 1; |
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debug_config_init(); |
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debug_set_level(DEBUG_LEVEL_ERROR); |
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debug_set_categories(DEBUG_CATEGORY_ALL); |
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memset(&fake_conn, 0, sizeof(fake_conn)); |
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fake_conn.instance = &inst; |
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if (etcp_router_init(&inst) != 0) FAIL("init"); |
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if (inst.router_conns == NULL) FAIL("router_conns NULL after init"); |
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if (inst.api_bindings.callbacks[ETCP_ID_SVC_ROUTE] == NULL) FAIL("recv_cb not bound"); |
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etcp_router_destroy(&inst); |
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if (inst.router_conns != NULL) FAIL("router_conns not NULL after destroy"); |
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if (inst.api_bindings.callbacks[ETCP_ID_SVC_ROUTE] != NULL) FAIL("recv_cb still bound"); |
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uasync_destroy(ua, 0); |
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PASS(); |
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return 0; |
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} |
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static int test_bind_unbind(void) { |
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TEST("bind/unbind API"); |
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struct UASYNC* ua = uasync_create(); |
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struct UTUN_INSTANCE inst; |
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memset(&inst, 0, sizeof(inst)); |
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inst.ua = ua; |
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inst.node_id = 1; |
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debug_config_init(); |
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debug_set_level(DEBUG_LEVEL_ERROR); |
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debug_set_categories(DEBUG_CATEGORY_ALL); |
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if (etcp_router_init(&inst) != 0) FAIL("init"); |
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// bind |
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if (etcp_router_bind(&inst, 0xEE, test_handler) != 0) FAIL("bind"); |
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if (inst.router_bindings.callbacks[0xEE] != test_handler) FAIL("cb not set"); |
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// rebind (overwrite) |
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if (etcp_router_bind(&inst, 0xEE, test_handler) != 0) FAIL("rebind"); |
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// unbind |
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if (etcp_router_unbind(&inst, 0xEE) != 0) FAIL("unbind"); |
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if (inst.router_bindings.callbacks[0xEE] != NULL) FAIL("cb not cleared"); |
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// double unbind |
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if (etcp_router_unbind(&inst, 0xEE) == 0) FAIL("double unbind should fail"); |
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// null args |
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if (etcp_router_bind(NULL, 0, test_handler) == 0) FAIL("bind null inst"); |
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etcp_router_destroy(&inst); |
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uasync_destroy(ua, 0); |
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PASS(); |
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return 0; |
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} |
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static int test_conn_get_create(void) { |
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TEST("conn_get — create"); |
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struct UASYNC* ua; struct UTUN_INSTANCE inst; etcp_recv_fn recv_cb; |
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SETUP(); |
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struct ETCP_ROUTER_CONN* c = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (!c) FAIL("conn_get returned NULL"); |
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if (c->remote_node_id != TEST_REMOTE_NODE) FAIL("wrong remote_node_id"); |
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if (c->svc_id != TEST_SVC_ID) FAIL("wrong svc_id"); |
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if (c->tx_seq != 0) FAIL("tx_seq != 0"); |
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if (c->rx_seq != 0) FAIL("rx_seq != 0"); |
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if (c->rx_acked != 0) FAIL("rx_acked != 0"); |
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if (c->recv_q == NULL) FAIL("recv_q is NULL"); |
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if (c->last_dgram_ts == 0) FAIL("last_dgram_ts not set"); |
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if (c->ack_timer != NULL) FAIL("ack_timer set at creation"); |
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etcp_router_conn_close(c); |
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TEARDOWN(); |
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PASS(); |
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return 0; |
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} |
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static int test_conn_get_reuse(void) { |
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TEST("conn_get — reuse / different"); |
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struct UASYNC* ua; struct UTUN_INSTANCE inst; etcp_recv_fn recv_cb; |
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SETUP(); |
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struct ETCP_ROUTER_CONN* c1 = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (!c1) FAIL("c1 NULL"); |
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struct ETCP_ROUTER_CONN* c2 = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (c1 != c2) FAIL("reuse: different pointers"); |
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struct ETCP_ROUTER_CONN* c3 = etcp_router_conn_get(&inst, TEST_REMOTE_NODE2, TEST_SVC_ID); |
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if (c3 == c1) FAIL("different remote, same pointer"); |
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struct ETCP_ROUTER_CONN* c4 = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID2); |
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if (c4 == c1) FAIL("different svc, same pointer"); |
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etcp_router_conn_close(c1); |
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etcp_router_conn_close(c3); |
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etcp_router_conn_close(c4); |
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TEARDOWN(); |
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PASS(); |
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return 0; |
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} |
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static int test_conn_close(void) { |
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TEST("conn_close — new after close"); |
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struct UASYNC* ua; struct UTUN_INSTANCE inst; etcp_recv_fn recv_cb; |
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SETUP(); |
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struct ETCP_ROUTER_CONN* c1 = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (!c1) FAIL("c1 NULL"); |
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c1->tx_seq = 99; // mark |
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etcp_router_conn_close(c1); |
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struct ETCP_ROUTER_CONN* c2 = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (!c2) FAIL("c2 NULL"); |
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if (c2->tx_seq != 0 || c2->rx_seq != 0) FAIL("not fresh after close+reopen"); |
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etcp_router_conn_close(c2); |
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TEARDOWN(); |
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PASS(); |
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return 0; |
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} |
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// ======================== Seq/reorder tests ======================== |
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static int test_in_order(void) { |
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TEST("in-order delivery (seq 0,1,2)"); |
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struct UASYNC* ua; struct UTUN_INSTANCE inst; etcp_recv_fn recv_cb; |
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SETUP(); |
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struct ETCP_ROUTER_CONN* c = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (!c) FAIL("conn_get failed"); |
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rx_reset(0xAA); |
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uint8_t data[] = { TEST_SVC_ID, 0xAA, 0 }; |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 0, data + 1, 2, 0); |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 1, data + 1, 2, 0); |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 2, data + 1, 2, 0); |
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if (rx.delivered != 3) FAIL("delivered != 3"); |
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if (rx.errors != 0) FAIL("errors != 0"); |
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if (c->rx_seq != 3) FAIL("rx_seq != 3"); |
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etcp_router_conn_close(c); |
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TEARDOWN(); |
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PASS(); |
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return 0; |
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} |
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static int test_out_of_order(void) { |
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TEST("out-of-order (0,2,3 then 1 → assembly to 3)"); |
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struct UASYNC* ua; struct UTUN_INSTANCE inst; etcp_recv_fn recv_cb; |
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SETUP(); |
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struct ETCP_ROUTER_CONN* c = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (!c) FAIL("conn_get failed"); |
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rx_reset(0xBB); |
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uint8_t data[] = { TEST_SVC_ID, 0xBB, 0 }; |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 0, data + 1, 2, 0); |
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if (rx.delivered != 1) FAIL("after seq 0: delivered != 1"); |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 2, data + 1, 2, 0); |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 3, data + 1, 2, 0); |
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if (rx.delivered != 1) FAIL("after seq 2,3: still delivered != 1 (gap at 1)"); |
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// Fill the gap |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 1, data + 1, 2, 0); |
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if (rx.delivered != 4) FAIL("after seq 1 fill: delivered != 4"); |
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if (rx.errors != 0) FAIL("errors != 0"); |
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if (c->rx_seq != 4) FAIL("rx_seq != 4"); |
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etcp_router_conn_close(c); |
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TEARDOWN(); |
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PASS(); |
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return 0; |
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} |
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static int test_duplicate_same(void) { |
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TEST("duplicate — same seq injected twice"); |
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struct UASYNC* ua; struct UTUN_INSTANCE inst; etcp_recv_fn recv_cb; |
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SETUP(); |
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struct ETCP_ROUTER_CONN* c = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (!c) FAIL("conn_get failed"); |
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rx_reset(0xCC); |
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uint8_t data[] = { TEST_SVC_ID, 0xCC, 0 }; |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 0, data + 1, 2, 0); |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 1, data + 1, 2, 0); |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 1, data + 1, 2, 0); // dup |
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if (rx.delivered != 2) FAIL("delivered != 2 (dup dropped)"); |
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if (c->rx_seq != 2) FAIL("rx_seq != 2"); |
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etcp_router_conn_close(c); |
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TEARDOWN(); |
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PASS(); |
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return 0; |
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} |
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static int test_duplicate_past(void) { |
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TEST("duplicate — past seq (already delivered)"); |
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struct UASYNC* ua; struct UTUN_INSTANCE inst; etcp_recv_fn recv_cb; |
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SETUP(); |
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struct ETCP_ROUTER_CONN* c = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (!c) FAIL("conn_get failed"); |
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rx_reset(0xDD); |
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uint8_t data[] = { TEST_SVC_ID, 0xDD, 0 }; |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 0, data + 1, 2, 0); |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 1, data + 1, 2, 0); |
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if (rx.delivered != 2) FAIL("delivered != 2"); |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 0, data + 1, 2, 0); // past |
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if (rx.delivered != 2) FAIL("delivered != 2 (past dup dropped)"); |
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if (c->rx_seq != 2) FAIL("rx_seq != 2"); |
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etcp_router_conn_close(c); |
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TEARDOWN(); |
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PASS(); |
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return 0; |
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} |
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static int test_out_of_bounds(void) { |
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TEST("out of bounds — seq too far ahead"); |
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struct UASYNC* ua; struct UTUN_INSTANCE inst; etcp_recv_fn recv_cb; |
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SETUP(); |
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struct ETCP_ROUTER_CONN* c = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (!c) FAIL("conn_get failed"); |
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rx_reset(0xEE); |
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uint8_t data[] = { TEST_SVC_ID, 0xEE, 0 }; |
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uint32_t bad_seq = ROUTER_MAX_INFLIGHT + 2; |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, bad_seq, data + 1, 2, 0); |
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if (rx.delivered != 0) FAIL("out-of-bounds delivered"); |
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if (c->rx_seq != 0) FAIL("rx_seq changed on bounds drop"); |
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etcp_router_conn_close(c); |
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TEARDOWN(); |
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PASS(); |
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return 0; |
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} |
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static int test_circular_wrap(void) { |
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TEST("32-bit circular wrap-around"); |
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struct UASYNC* ua; struct UTUN_INSTANCE inst; etcp_recv_fn recv_cb; |
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SETUP(); |
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struct ETCP_ROUTER_CONN* c = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (!c) FAIL("conn_get failed"); |
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c->rx_seq = 0xFFFFFFFE; |
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rx_reset(0x11); |
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rx.expected_seq = 0xFFFFFFFE; |
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uint8_t data[] = { TEST_SVC_ID, 0x11, 0 }; |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 0xFFFFFFFE, data + 1, 2, 0); |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 0xFFFFFFFF, data + 1, 2, 0); |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 0, data + 1, 2, 0); |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 1, data + 1, 2, 0); |
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if (rx.delivered != 4) FAIL("delivered != 4 (wrap)"); |
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if (c->rx_seq != 2) FAIL("rx_seq != 2 after wrap (wrapped)"); |
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etcp_router_conn_close(c); |
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TEARDOWN(); |
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PASS(); |
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return 0; |
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} |
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static int test_data_integrity(void) { |
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TEST("data integrity — payload preserved"); |
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struct UASYNC* ua; struct UTUN_INSTANCE inst; etcp_recv_fn recv_cb; |
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SETUP(); |
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struct ETCP_ROUTER_CONN* c = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (!c) FAIL("conn_get failed"); |
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rx_reset(0x77); |
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uint8_t payload[10] = { 0x77, 0xA1, 0xB2, 0xC3, 0xD4, 0xE5, 0xF6, 0x07, 0x18, 0x29 }; |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 0, payload, 10, 0); |
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if (rx.delivered != 1) FAIL("delivered != 1"); |
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if (rx.errors != 0) FAIL("data mismatch"); |
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etcp_router_conn_close(c); |
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TEARDOWN(); |
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PASS(); |
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return 0; |
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} |
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static int test_ack_receive(void) { |
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TEST("ACK receive — rx_acked updated"); |
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struct UASYNC* ua; struct UTUN_INSTANCE inst; etcp_recv_fn recv_cb; |
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SETUP(); |
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struct ETCP_ROUTER_CONN* c = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (!c) FAIL("conn_get failed"); |
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rx_reset(0x00); |
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// Send ACK: is_ack=1, seq=7 means remote has rx_seq=7 |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 7, NULL, 0, 1); |
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if (c->rx_acked != 7) FAIL("rx_acked not updated from ACK"); |
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if (rx.delivered != 0) FAIL("ACK delivered to handler (should not)"); |
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if (c->last_dgram_ts == 0) FAIL("last_dgram_ts not updated on ACK"); |
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etcp_router_conn_close(c); |
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TEARDOWN(); |
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PASS(); |
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return 0; |
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} |
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static int test_ack_timer(void) { |
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TEST("ACK timer scheduled on data receive"); |
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struct UASYNC* ua; struct UTUN_INSTANCE inst; etcp_recv_fn recv_cb; |
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SETUP(); |
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struct ETCP_ROUTER_CONN* c = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (!c) FAIL("conn_get failed"); |
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if (c->ack_timer != NULL) FAIL("ack_timer set before any data"); |
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rx_reset(0x55); |
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uint8_t data[] = { TEST_SVC_ID, 0x55, 0 }; |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 0, data + 1, 2, 0); |
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if (c->ack_timer == NULL) FAIL("ack_timer not scheduled after data"); |
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if (c->rx_acked != 0) FAIL("rx_acked changed before timer fired"); |
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// Cancel timer manually (it would fire in real event loop) |
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if (c->ack_timer) uasync_cancel_timeout(ua, c->ack_timer); |
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c->ack_timer = NULL; |
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etcp_router_conn_close(c); |
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TEARDOWN(); |
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PASS(); |
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return 0; |
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} |
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static int test_send_q(void) { |
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TEST("send_q — inflight full queues, not lost"); |
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struct UASYNC* ua; struct UTUN_INSTANCE inst; etcp_recv_fn recv_cb; |
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SETUP(); |
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struct ETCP_ROUTER_CONN* c = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (!c) FAIL("conn_get failed"); |
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|
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// Simulate full inflight: set rx_acked far behind tx_seq |
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c->tx_seq = ROUTER_MAX_INFLIGHT; |
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c->rx_acked = 0; |
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if (c->send_q == NULL) FAIL("send_q is NULL"); |
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|
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// Send via conn_send — should queue, not drop |
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uint8_t data[4] = { 1, 2, 3, 4 }; |
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int ret = etcp_router_conn_send(c, data, sizeof(data)); |
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if (ret != 0) FAIL("conn_send should return 0 (queued in send_q)"); |
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if (c->send_blocked == 0) FAIL("send_blocked not set"); |
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if (c->send_resume_timer == NULL) FAIL("send_resume_timer not set"); |
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if (queue_entry_count(c->send_q) != 1) FAIL("send_q count != 1"); |
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if (c->tx_seq != ROUTER_MAX_INFLIGHT) FAIL("tx_seq advanced while queued"); |
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|
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// Cancel timers manually |
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if (c->send_resume_timer) { uasync_cancel_timeout(ua, c->send_resume_timer); c->send_resume_timer = NULL; } |
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|
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etcp_router_conn_close(c); |
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TEARDOWN(); |
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PASS(); |
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return 0; |
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} |
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|
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static int test_loopback(void) { |
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TEST("loopback — etcp_route_send to self"); |
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struct UASYNC* ua; struct UTUN_INSTANCE inst; etcp_recv_fn recv_cb; |
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SETUP(); |
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|
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rx_reset(0x66); |
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uint8_t buf[4] = { TEST_SVC_ID, 0x66, 0x00, 0x00 }; |
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struct ll_entry* e = queue_entry_new(0); |
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if (!e) FAIL("queue_entry_new"); |
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e->dgram = u_malloc(4); |
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if (!e->dgram) { queue_entry_free(e); FAIL("u_malloc"); } |
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memcpy(e->dgram, buf, 4); |
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e->len = 4; |
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|
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if (etcp_route_send(&inst, inst.node_id, e) != 0) FAIL("loopback send failed"); |
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if (rx.delivered != 1) FAIL("loopback not delivered"); |
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if (rx.errors != 0) FAIL("loopback data mismatch"); |
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|
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TEARDOWN(); |
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PASS(); |
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return 0; |
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} |
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|
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static int test_timestamp(void) { |
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TEST("last_dgram_ts updated on data"); |
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struct UASYNC* ua; struct UTUN_INSTANCE inst; etcp_recv_fn recv_cb; |
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SETUP(); |
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struct ETCP_ROUTER_CONN* c = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (!c) FAIL("conn_get failed"); |
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|
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uint16_t before = c->last_dgram_ts; |
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|
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rx_reset(0x99); |
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uint8_t data[] = { TEST_SVC_ID, 0x99, 0 }; |
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inject(recv_cb, &inst, TEST_REMOTE_NODE, TEST_SVC_ID, 0, data + 1, 2, 0); |
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|
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if (c->last_dgram_ts == 0) FAIL("last_dgram_ts zero after data"); |
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// Cancel ack_timer |
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if (c->ack_timer) { uasync_cancel_timeout(ua, c->ack_timer); c->ack_timer = NULL; } |
|
|
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etcp_router_conn_close(c); |
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TEARDOWN(); |
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PASS(); |
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return 0; |
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} |
|
|
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static int test_conn_send_no_bgp(void) { |
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TEST("conn_send — no BGP returns error"); |
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struct UASYNC* ua; struct UTUN_INSTANCE inst; etcp_recv_fn recv_cb; |
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SETUP(); |
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struct ETCP_ROUTER_CONN* c = etcp_router_conn_get(&inst, TEST_REMOTE_NODE, TEST_SVC_ID); |
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if (!c) FAIL("conn_get failed"); |
|
|
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uint8_t data[4] = { 1, 2, 3, 4 }; |
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int ret = etcp_router_conn_send(c, data, sizeof(data)); |
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if (ret == 0) FAIL("conn_send should fail without BGP"); |
|
|
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etcp_router_conn_close(c); |
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TEARDOWN(); |
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PASS(); |
|
return 0; |
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} |
|
|
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// ======================== Main ======================== |
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int main(void) { |
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// Run all tests |
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test_init_destroy(); |
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test_bind_unbind(); |
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test_conn_get_create(); |
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test_conn_get_reuse(); |
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test_conn_close(); |
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test_in_order(); |
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test_out_of_order(); |
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test_duplicate_same(); |
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test_duplicate_past(); |
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test_out_of_bounds(); |
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test_circular_wrap(); |
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test_data_integrity(); |
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test_ack_receive(); |
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test_ack_timer(); |
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test_send_q(); |
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test_loopback(); |
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test_timestamp(); |
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test_conn_send_no_bgp(); |
|
|
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printf("\n=== Results: %d/%d passed, %d failed ===\n", test_passed, test_total, test_failed); |
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return test_failed > 0 ? 1 : 0; |
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}
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