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voice-cat/tests/test_m5_admin_accounts.cpp

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/*
* test_m5_admin_accounts Phase 3 of M5: in-app account management over the wire.
*
* Verifies:
* - admin can create an account via vc_create_account.
* - the new account can authenticate.
* - admin can reset the password.
* - the new account can authenticate with the new password.
* - admin can list accounts and sees the new entry.
* - admin can delete the account.
* - the deleted account can no longer authenticate.
*/
#include <cstdio>
#include <cstring>
#include <atomic>
#include <chrono>
#include <condition_variable>
#include <filesystem>
#include <mutex>
#include <string>
#include <thread>
#include <vector>
#include "voicecat.h"
#include "server.h"
#include "db.h"
struct EventStore {
std::mutex mu;
std::condition_variable cv;
bool auth_ok{false};
bool auth_done{false};
uint32_t self_user_id{0};
bool channel_list_received{false};
bool disconnected{false};
struct ResultAck {
bool ok{false};
uint32_t code{0};
std::string message;
};
std::vector<ResultAck> generic_results;
bool account_list_received{false};
vc_client* client{nullptr};
const char* label{nullptr};
};
static void on_event(void* user, const vc_event* ev) {
auto* s = static_cast<EventStore*>(user);
std::lock_guard lk(s->mu);
switch (ev->type) {
case VC_EVENT_SERVER_IDENTITY:
vc_confirm_server_identity(s->client, 1);
break;
case VC_EVENT_AUTH_RESULT:
s->auth_ok = (ev->result == VC_OK);
s->auth_done = true;
s->self_user_id = ev->user_id;
break;
case VC_EVENT_CHANNEL_LIST:
s->channel_list_received = true;
break;
case VC_EVENT_GENERIC_RESULT: {
EventStore::ResultAck gr;
gr.ok = (ev->result == VC_OK);
gr.code = ev->u32a;
gr.message = ev->text ? ev->text : "";
s->generic_results.push_back(std::move(gr));
break;
}
case VC_EVENT_ACCOUNT_LIST:
s->account_list_received = true;
break;
case VC_EVENT_DISCONNECTED:
s->disconnected = true;
break;
default:
break;
}
s->cv.notify_all();
}
template<typename Pred>
static bool wait_for(EventStore& s, Pred pred, int timeout_ms) {
auto deadline = std::chrono::steady_clock::now() + std::chrono::milliseconds(timeout_ms);
std::unique_lock lk(s.mu);
return s.cv.wait_until(lk, deadline, [&] { return pred(s); });
}
static int g_failures = 0;
#define CHECK(cond) \
do { \
if (!(cond)) { \
std::printf("FAIL: %s (%s:%d)\n", #cond, __FILE__, __LINE__); \
++g_failures; \
} \
} while (0)
static bool wait_generic(EventStore& s, int timeout_ms) {
return wait_for(s, [](EventStore& st) { return !st.generic_results.empty(); }, timeout_ms);
}
static bool last_generic_ok(EventStore& s) {
std::lock_guard lk(s.mu);
return !s.generic_results.empty() && s.generic_results.back().ok;
}
static void reset_generic(EventStore& s) {
std::lock_guard lk(s.mu);
s.generic_results.clear();
}
int main() {
auto tmp = std::filesystem::temp_directory_path() /
("vctest_m5_acct_" + std::to_string(
std::chrono::steady_clock::now().time_since_epoch().count()));
std::filesystem::create_directories(tmp);
std::string data_dir = tmp.string();
{
voicecat::server::Database db(data_dir + "/voicecat.db");
std::string err;
if (!db.open(err)) { std::printf("FAIL: db.open: %s\n", err.c_str()); return 1; }
if (!db.create_account("admin", "admin-pass", true, err)) {
std::printf("FAIL: create admin: %s\n", err.c_str());
std::filesystem::remove_all(tmp);
return 1;
}
}
std::atomic<uint16_t> bound_port{0};
std::mutex ready_mu;
std::condition_variable ready_cv;
bool ready{false};
voicecat::server::Config cfg;
cfg.data_dir = data_dir;
cfg.bind_port = 0;
cfg.server_name = "VoiceCat-M5-Acct";
cfg.allow_guests = false;
cfg.on_ready = [&](uint16_t p) {
bound_port.store(p);
{ std::lock_guard lk(ready_mu); ready = true; }
ready_cv.notify_all();
};
voicecat::server::Server server(cfg);
std::thread server_thread([&] { server.run(); });
{
std::unique_lock lk(ready_mu);
if (!ready_cv.wait_for(lk, std::chrono::seconds(10), [&] { return ready; })) {
std::printf("FAIL: server did not become ready\n");
server.stop();
server_thread.join();
std::filesystem::remove_all(tmp);
return 1;
}
}
uint16_t port = bound_port.load();
EventStore evAdmin;
evAdmin.label = "admin";
vc_callbacks cbA{on_event, nullptr, &evAdmin};
vc_config cfgA{"test-admin", "0.1", VC_LOG_OFF};
vc_client* admin = vc_client_create(&cfgA, cbA);
evAdmin.client = admin;
CHECK(admin != nullptr);
CHECK(vc_connect(admin, "127.0.0.1", port) == VC_OK);
CHECK(vc_authenticate_user(admin, "admin", "admin-pass") == VC_OK);
CHECK(wait_for(evAdmin, [](EventStore& s){ return s.auth_ok; }, 20000));
CHECK(wait_for(evAdmin, [](EventStore& s){ return s.channel_list_received; }, 3000));
// Create charlie.
reset_generic(evAdmin);
CHECK(vc_create_account(admin, "charlie", "charlie-pass") == VC_OK);
CHECK(wait_generic(evAdmin, 5000));
CHECK(last_generic_ok(evAdmin));
// Charlie logs in.
{
EventStore evCharlie;
evCharlie.label = "charlie";
vc_callbacks cb{on_event, nullptr, &evCharlie};
vc_config cfgC{"test-charlie", "0.1", VC_LOG_OFF};
vc_client* charlie = vc_client_create(&cfgC, cb);
evCharlie.client = charlie;
CHECK(charlie != nullptr);
CHECK(vc_connect(charlie, "127.0.0.1", port) == VC_OK);
CHECK(vc_authenticate_user(charlie, "charlie", "charlie-pass") == VC_OK);
CHECK(wait_for(evCharlie, [](EventStore& s){ return s.auth_ok; }, 20000));
CHECK(evCharlie.auth_ok);
vc_disconnect(charlie);
vc_client_destroy(charlie);
}
// Reset charlie's password.
reset_generic(evAdmin);
CHECK(vc_reset_password(admin, "charlie", "new-pass") == VC_OK);
CHECK(wait_generic(evAdmin, 5000));
CHECK(last_generic_ok(evAdmin));
// Charlie logs in with new password.
{
EventStore evCharlie;
evCharlie.label = "charlie2";
vc_callbacks cb{on_event, nullptr, &evCharlie};
vc_config cfgC{"test-charlie2", "0.1", VC_LOG_OFF};
vc_client* charlie = vc_client_create(&cfgC, cb);
evCharlie.client = charlie;
CHECK(charlie != nullptr);
CHECK(vc_connect(charlie, "127.0.0.1", port) == VC_OK);
CHECK(vc_authenticate_user(charlie, "charlie", "new-pass") == VC_OK);
CHECK(wait_for(evCharlie, [](EventStore& s){ return s.auth_ok; }, 20000));
CHECK(evCharlie.auth_ok);
vc_disconnect(charlie);
vc_client_destroy(charlie);
}
// List accounts.
reset_generic(evAdmin);
evAdmin.account_list_received = false;
CHECK(vc_list_accounts(admin) == VC_OK);
CHECK(wait_for(evAdmin, [](EventStore& s){ return s.account_list_received; }, 3000));
// Delete charlie.
reset_generic(evAdmin);
CHECK(vc_delete_account(admin, "charlie") == VC_OK);
CHECK(wait_generic(evAdmin, 3000));
CHECK(last_generic_ok(evAdmin));
// Charlie cannot log in anymore.
{
EventStore evCharlie;
evCharlie.label = "charlie3";
vc_callbacks cb{on_event, nullptr, &evCharlie};
vc_config cfgC{"test-charlie3", "0.1", VC_LOG_OFF};
vc_client* charlie = vc_client_create(&cfgC, cb);
evCharlie.client = charlie;
CHECK(charlie != nullptr);
CHECK(vc_connect(charlie, "127.0.0.1", port) == VC_OK);
CHECK(vc_authenticate_user(charlie, "charlie", "new-pass") == VC_OK);
CHECK(wait_for(evCharlie, [](EventStore& s){ return s.auth_done || s.disconnected; }, 20000));
CHECK(!evCharlie.auth_ok);
vc_disconnect(charlie);
vc_client_destroy(charlie);
}
vc_disconnect(admin);
vc_client_destroy(admin);
server.stop();
server_thread.join();
std::filesystem::remove_all(tmp);
if (g_failures == 0) {
std::printf("m5_admin_accounts: all checks passed\n");
return 0;
}
std::printf("m5_admin_accounts: %d failure(s)\n", g_failures);
return 1;
}