257 lines
9.8 KiB
C++
257 lines
9.8 KiB
C++
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/*
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* test_m1_integration — M1 exit criterion.
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*
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* Two clients connect to a real voicecat-server over TLS 1.3:
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* Client A authenticates as guest "GuestBob"
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* Client B authenticates as password user "alice"
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* Both receive the channel list, A sends a channel message that B receives,
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* then B sends a private message that A receives.
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*/
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#include <cstdio>
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#include <cstring>
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#ifdef VOICECAT_HAS_NET
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#include <atomic>
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#include <chrono>
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#include <condition_variable>
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#include <filesystem>
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#include <mutex>
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#include <string>
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#include <thread>
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#include <vector>
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#include "voicecat.h"
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#include "server.h"
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#include "db.h"
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// ── Event tracking ────────────────────────────────────────────────────────────
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struct EventStore {
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std::mutex mu;
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std::condition_variable cv;
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bool auth_ok{false};
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vc_result auth_result{VC_ERR_INTERNAL};
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uint32_t self_user_id{0};
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bool channel_list_received{false};
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std::vector<std::string> messages; // copies of received text bodies
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// For diagnostics
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const char* label{nullptr};
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std::string last_error;
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bool disconnected{false};
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vc_connection_state last_state{VC_STATE_DISCONNECTED};
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};
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static void on_event(void* user, const vc_event* ev) {
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auto* s = static_cast<EventStore*>(user);
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std::lock_guard lk(s->mu);
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s->last_state = ev->connection_state;
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switch (ev->type) {
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case VC_EVENT_AUTH_RESULT:
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s->auth_result = static_cast<vc_result>(ev->result);
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s->auth_ok = (ev->result == VC_OK);
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s->self_user_id = ev->user_id;
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if (!s->auth_ok) std::fprintf(stderr, "[%s] AUTH FAILED: %s\n",
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s->label ? s->label : "?", ev->text ? ev->text : "(no msg)");
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break;
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case VC_EVENT_CHANNEL_LIST:
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s->channel_list_received = true;
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break;
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case VC_EVENT_TEXT_MESSAGE:
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if (ev->text) s->messages.emplace_back(ev->text);
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break;
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case VC_EVENT_ERROR:
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s->last_error = ev->text ? ev->text : "";
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std::fprintf(stderr, "[%s] ERROR rc=%d: %s\n",
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s->label ? s->label : "?", ev->result, s->last_error.c_str());
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break;
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case VC_EVENT_DISCONNECTED:
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s->disconnected = true;
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std::fprintf(stderr, "[%s] DISCONNECTED rc=%d: %s\n",
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s->label ? s->label : "?", ev->result, ev->text ? ev->text : "");
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break;
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case VC_EVENT_CONNECTION_STATE:
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std::fprintf(stderr, "[%s] STATE -> %d\n",
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s->label ? s->label : "?", (int)ev->connection_state);
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break;
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default:
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break;
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}
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s->cv.notify_all();
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}
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template<typename Pred>
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static bool wait_for(EventStore& s, Pred pred, int timeout_ms) {
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auto deadline = std::chrono::steady_clock::now() +
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std::chrono::milliseconds(timeout_ms);
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std::unique_lock lk(s.mu);
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return s.cv.wait_until(lk, deadline, [&] { return pred(s); });
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}
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// ── Test harness ──────────────────────────────────────────────────────────────
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static int g_failures = 0;
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#define CHECK(cond) \
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do { \
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if (!(cond)) { \
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std::printf("FAIL: %s (%s:%d)\n", #cond, __FILE__, __LINE__); \
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++g_failures; \
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} \
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} while (0)
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// ── main ──────────────────────────────────────────────────────────────────────
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int main() {
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// ── Isolated temp dir for this test run ──────────────────────────────────
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auto tmp = std::filesystem::temp_directory_path() /
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("vctest_" + std::to_string(
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std::chrono::steady_clock::now().time_since_epoch().count()));
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std::filesystem::create_directories(tmp);
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std::string data_dir = tmp.string();
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// ── Pre-provision alice's account before the server starts ───────────────
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{
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voicecat::server::Database db(data_dir + "/voicecat.db");
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std::string err;
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if (!db.open(err)) {
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std::printf("FAIL: db.open: %s\n", err.c_str());
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std::filesystem::remove_all(tmp);
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return 1;
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}
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auto acc = db.create_account("alice", "test-pass-alice", false, err);
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if (!acc) {
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std::printf("FAIL: create_account: %s\n", err.c_str());
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std::filesystem::remove_all(tmp);
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return 1;
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}
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}
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// ── Start server on an OS-assigned port ───────────────────────────────────
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std::atomic<uint16_t> bound_port{0};
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std::mutex ready_mu;
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std::condition_variable ready_cv;
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bool ready{false};
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voicecat::server::Config cfg;
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cfg.data_dir = data_dir;
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cfg.bind_port = 0; // OS picks port
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cfg.server_name = "VoiceCat-IntTest";
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cfg.allow_guests = true;
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cfg.on_ready = [&](uint16_t p) {
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bound_port.store(p);
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{ std::lock_guard lk(ready_mu); ready = true; }
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ready_cv.notify_all();
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};
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voicecat::server::Server server(cfg);
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std::thread server_thread([&] { server.run(); });
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{
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std::unique_lock lk(ready_mu);
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bool ok = ready_cv.wait_for(lk, std::chrono::seconds(10),
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[&] { return ready; });
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if (!ok) {
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std::printf("FAIL: server did not become ready within 10s\n");
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server.stop();
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server_thread.join();
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std::filesystem::remove_all(tmp);
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return 1;
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}
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}
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uint16_t port = bound_port.load();
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std::printf("m1_integration: server ready on :%u\n", port);
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// ── Client A: guest "GuestBob" ────────────────────────────────────────────
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EventStore evA;
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evA.label = "clientA";
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vc_callbacks cbA{on_event, nullptr, &evA};
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vc_config cfgA{"test-clientA", "0.1", VC_LOG_OFF};
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vc_client* clientA = vc_client_create(&cfgA, cbA);
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CHECK(clientA != nullptr);
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CHECK(vc_connect(clientA, "127.0.0.1", port) == VC_OK);
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CHECK(vc_authenticate_guest(clientA, "GuestBob") == VC_OK);
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// Guest auth is fast; 8s is generous.
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bool authA_ok = wait_for(evA, [](EventStore& s){ return s.auth_ok; }, 8000);
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CHECK(authA_ok);
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if (!authA_ok) std::printf(" (client A auth timed out)\n");
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bool clA_ok = wait_for(evA, [](EventStore& s){ return s.channel_list_received; }, 3000);
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CHECK(clA_ok);
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// ── Client B: password user "alice" ───────────────────────────────────────
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EventStore evB;
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evB.label = "clientB";
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vc_callbacks cbB{on_event, nullptr, &evB};
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vc_config cfgB{"test-clientB", "0.1", VC_LOG_OFF};
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vc_client* clientB = vc_client_create(&cfgB, cbB);
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CHECK(clientB != nullptr);
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CHECK(vc_connect(clientB, "127.0.0.1", port) == VC_OK);
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CHECK(vc_authenticate_user(clientB, "alice", "test-pass-alice") == VC_OK);
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// Argon2id (INTERACTIVE) takes ~0.5-2 s; allow 20 s.
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bool authB_ok = wait_for(evB, [](EventStore& s){ return s.auth_ok; }, 20000);
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CHECK(authB_ok);
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if (!authB_ok) std::printf(" (client B auth timed out — Argon2id may be slow)\n");
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bool clB_ok = wait_for(evB, [](EventStore& s){ return s.channel_list_received; }, 3000);
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CHECK(clB_ok);
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// ── A sends channel text → B receives it ─────────────────────────────────
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const char* chan_msg = "Hello from GuestBob!";
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CHECK(vc_send_text(clientA, VC_TEXT_CHANNEL, 1, chan_msg) == VC_OK);
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bool B_got_chan = wait_for(evB, [&](EventStore& s) {
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for (auto& m : s.messages)
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if (m == chan_msg) return true;
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return false;
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}, 5000);
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CHECK(B_got_chan);
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// ── B sends private text to A ─────────────────────────────────────────────
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uint32_t a_uid = 0;
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{ std::lock_guard lk(evA.mu); a_uid = evA.self_user_id; }
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const char* priv_msg = "Private reply from alice!";
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CHECK(vc_send_text(clientB, VC_TEXT_PRIVATE, a_uid, priv_msg) == VC_OK);
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bool A_got_priv = wait_for(evA, [&](EventStore& s) {
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for (auto& m : s.messages)
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if (m == priv_msg) return true;
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return false;
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}, 5000);
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CHECK(A_got_priv);
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// ── Cleanup ───────────────────────────────────────────────────────────────
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vc_disconnect(clientA);
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vc_disconnect(clientB);
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vc_client_destroy(clientA);
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vc_client_destroy(clientB);
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server.stop();
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server_thread.join();
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std::filesystem::remove_all(tmp);
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if (g_failures == 0) {
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std::printf("m1_integration: all checks passed\n");
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return 0;
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}
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std::printf("m1_integration: %d failure(s)\n", g_failures);
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return 1;
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}
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#else // !VOICECAT_HAS_NET
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int main() {
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std::printf("m1_integration: SKIP (VOICECAT_HAS_NET not defined)\n");
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return 0;
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}
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#endif // VOICECAT_HAS_NET
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