079-peer.cpp 13 KB

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  1. // SPDX-License-Identifier: GPL-3.0-or-later
  2. // SPDX-FileCopyrightText: 2019-2024 Ivan Baidakou
  3. #include "test-utils.h"
  4. #include "access.h"
  5. #include "utils/tls.h"
  6. #include "utils/format.hpp"
  7. #include "proto/bep_support.h"
  8. #include "model/cluster.h"
  9. #include "model/messages.h"
  10. #include "model/diff/cluster_visitor.h"
  11. #include "net/names.h"
  12. #include "net/messages.h"
  13. #include "net/peer_actor.h"
  14. #include "transport/stream.h"
  15. #include "diff-builder.h"
  16. #include "constants.h"
  17. #include <rotor/asio.hpp>
  18. #include <boost/algorithm/string/replace.hpp>
  19. using namespace syncspirit;
  20. using namespace syncspirit::test;
  21. using namespace syncspirit::model;
  22. using namespace syncspirit::net;
  23. namespace asio = boost::asio;
  24. namespace sys = boost::system;
  25. namespace r = rotor;
  26. namespace ra = r::asio;
  27. using configure_callback_t = std::function<void(r::plugin::plugin_base_t &)>;
  28. auto timeout = r::pt::time_duration{r::pt::millisec{1500}};
  29. auto host = "127.0.0.1";
  30. struct supervisor_t : ra::supervisor_asio_t {
  31. using parent_t = ra::supervisor_asio_t;
  32. using parent_t::parent_t;
  33. void configure(r::plugin::plugin_base_t &plugin) noexcept override {
  34. parent_t::configure(plugin);
  35. plugin.with_casted<r::plugin::registry_plugin_t>([&](auto &p) {
  36. p.register_name(names::coordinator, get_address());
  37. p.register_name(names::peer_supervisor, get_address());
  38. });
  39. if (configure_callback) {
  40. configure_callback(plugin);
  41. }
  42. }
  43. void on_child_shutdown(actor_base_t *actor) noexcept override {
  44. if (actor) {
  45. spdlog::info("child shutdown: {}, reason: {}", actor->get_identity(),
  46. actor->get_shutdown_reason()->message());
  47. }
  48. parent_t::on_child_shutdown(actor);
  49. }
  50. void shutdown_finish() noexcept override {
  51. parent_t::shutdown_finish();
  52. if (acceptor) {
  53. acceptor->cancel();
  54. }
  55. }
  56. auto get_state() noexcept { return state; }
  57. asio::ip::tcp::acceptor *acceptor = nullptr;
  58. configure_callback_t configure_callback;
  59. };
  60. using supervisor_ptr_t = r::intrusive_ptr_t<supervisor_t>;
  61. using actor_ptr_t = r::intrusive_ptr_t<peer_actor_t>;
  62. struct fixture_t : private model::diff::cluster_visitor_t {
  63. using acceptor_t = asio::ip::tcp::acceptor;
  64. fixture_t() noexcept : ctx(io_ctx), acceptor(io_ctx), peer_sock(io_ctx) {
  65. utils::set_default("trace");
  66. log = utils::get_logger("fixture");
  67. }
  68. virtual void run(bool add_peer = true) noexcept {
  69. known_peer = add_peer;
  70. auto strand = std::make_shared<asio::io_context::strand>(io_ctx);
  71. sup = ctx.create_supervisor<supervisor_t>().strand(strand).timeout(timeout).create_registry().finish();
  72. sup->configure_callback = [&](r::plugin::plugin_base_t &plugin) {
  73. plugin.template with_casted<r::plugin::starter_plugin_t>([&](auto &p) {
  74. using cluster_diff_ptr_t = r::intrusive_ptr_t<model::message::model_update_t>;
  75. using cluster_diff_t = typename cluster_diff_ptr_t::element_type;
  76. p.subscribe_actor(r::lambda<cluster_diff_t>([&](cluster_diff_t &msg) {
  77. LOG_INFO(log, "received cluster diff message");
  78. auto &diff = msg.payload.diff;
  79. auto r = diff->apply(*cluster);
  80. if (!r) {
  81. LOG_ERROR(log, "error updating model: {}", r.assume_error().message());
  82. sup->do_shutdown();
  83. }
  84. }));
  85. });
  86. };
  87. sup->start();
  88. sup->do_process();
  89. my_keys = utils::generate_pair("my").value();
  90. auto md = model::device_id_t::from_cert(my_keys.cert_data).value();
  91. my_device = device_t::create(md, "my-device").value();
  92. peer_keys = utils::generate_pair("peer").value();
  93. auto pd = model::device_id_t::from_cert(peer_keys.cert_data).value();
  94. peer_device = device_t::create(pd, "peer-device").value();
  95. cluster = new cluster_t(my_device, 1);
  96. cluster->get_devices().put(my_device);
  97. if (add_peer) {
  98. cluster->get_devices().put(peer_device);
  99. }
  100. auto ep = asio::ip::tcp::endpoint(asio::ip::make_address(host), 0);
  101. acceptor.open(ep.protocol());
  102. acceptor.bind(ep);
  103. acceptor.listen();
  104. auto local_ep = acceptor.local_endpoint();
  105. acceptor.async_accept(peer_sock, [this](auto ec) { this->accept(ec); });
  106. sup->acceptor = &acceptor;
  107. auto uri_str = fmt::format("tcp://{}:{}/", local_ep.address(), local_ep.port());
  108. LOG_TRACE(log, "Connecting to {}", uri_str);
  109. auto uri = utils::parse(uri_str);
  110. auto cfg = transport::transport_config_t{{}, uri, *sup, {}, true};
  111. client_trans = transport::initiate_stream(cfg);
  112. auto ip = asio::ip::make_address(host);
  113. auto peer_ep = tcp::endpoint(ip, local_ep.port());
  114. auto addresses = std::vector<tcp::endpoint>{peer_ep};
  115. auto addresses_ptr = std::make_shared<decltype(addresses)>(addresses);
  116. transport::error_fn_t on_error = [&](auto &ec) { on_client_error(ec); };
  117. transport::connect_fn_t on_connect = [addresses_ptr, this](const tcp::endpoint &ep) {
  118. LOG_INFO(log, "active/connected");
  119. // main();
  120. };
  121. client_trans->async_connect(addresses_ptr, on_connect, on_error);
  122. io_ctx.run();
  123. CHECK(sup->get_state() == r::state_t::SHUT_DOWN);
  124. }
  125. virtual void main() noexcept {}
  126. virtual actor_ptr_t create_actor(uint32_t rx_timeout = 2000) noexcept {
  127. if (known_peer) {
  128. auto builder = diff_builder_t(*cluster);
  129. builder.update_state(*peer_device, {}, model::device_state_t::connecting).apply(*sup);
  130. }
  131. auto bep_config = config::bep_config_t();
  132. bep_config.rx_buff_size = 1024;
  133. bep_config.rx_buff_size = rx_timeout;
  134. return sup->create_actor<actor_ptr_t::element_type>()
  135. .timeout(timeout)
  136. .cluster(cluster)
  137. .coordinator(sup->get_address())
  138. .bep_config(bep_config)
  139. .transport(peer_trans)
  140. .peer_device_id(peer_device->device_id())
  141. .device_name("peer-device")
  142. .peer_proto("tcp")
  143. .autoshutdown_supervisor(true)
  144. .finish();
  145. }
  146. virtual void on_client_error(const sys::error_code &ec) noexcept { LOG_WARN(log, "client err: {}", ec.message()); }
  147. virtual void accept(const sys::error_code &ec) noexcept {
  148. LOG_INFO(log, "accept, ec: {}, remote = {}", ec.message(), peer_sock.remote_endpoint());
  149. auto uri = utils::parse("tcp://127.0.0.1:0/");
  150. auto cfg = transport::transport_config_t{{}, uri, *sup, std::move(peer_sock), false};
  151. peer_trans = transport::initiate_stream(cfg);
  152. main();
  153. }
  154. virtual void on_client_write(std::size_t bytes) noexcept { LOG_INFO(log, "client sent {} bytes", bytes); }
  155. virtual void on_client_read(std::size_t bytes) noexcept {
  156. LOG_INFO(log, "client received {} bytes", bytes);
  157. auto result = proto::parse_bep(asio::buffer(rx_buff, bytes)).value();
  158. auto hello = std::get_if<proto::message::Hello>(&result.message);
  159. if (hello) {
  160. return on_hello(std::move(*hello));
  161. }
  162. }
  163. virtual void on_hello(proto::message::Hello msg) noexcept {
  164. LOG_INFO(log, "client received hello message from {}, {}/{}", msg->device_name(), msg->client_name(),
  165. msg->client_version());
  166. }
  167. virtual void send_hello() noexcept {
  168. proto::make_hello_message(tx_buff, "self-name");
  169. transport::io_fn_t on_write = [&](size_t bytes) { on_client_write(bytes); };
  170. transport::io_fn_t on_read = [&](size_t bytes) { on_client_read(bytes); };
  171. transport::error_fn_t on_error = [&](auto &ec) { on_client_error(ec); };
  172. auto tx_buff_ = asio::buffer(tx_buff.data(), tx_buff.size());
  173. auto rx_buff_ = asio::buffer(rx_buff, sizeof(rx_buff));
  174. client_trans->async_recv(rx_buff_, on_read, on_error);
  175. client_trans->async_send(tx_buff_, on_write, on_error);
  176. }
  177. cluster_ptr_t cluster;
  178. supervisor_ptr_t sup;
  179. asio::io_context io_ctx;
  180. ra::system_context_asio_t ctx;
  181. acceptor_t acceptor;
  182. asio::ip::tcp::socket peer_sock;
  183. utils::logger_t log;
  184. utils::key_pair_t peer_keys;
  185. utils::key_pair_t my_keys;
  186. model::device_ptr_t peer_device;
  187. model::device_ptr_t my_device;
  188. transport::stream_sp_t peer_trans;
  189. transport::stream_sp_t client_trans;
  190. fmt::memory_buffer tx_buff;
  191. char rx_buff[2000];
  192. bool known_peer = false;
  193. };
  194. void test_shutdown_on_hello_timeout() {
  195. struct F : fixture_t {
  196. void main() noexcept override { auto act = create_actor(1); }
  197. void run(bool add_peer = true) noexcept override {
  198. fixture_t::run(add_peer);
  199. CHECK(sup->get_state() == r::state_t::SHUT_DOWN);
  200. }
  201. };
  202. F().run();
  203. }
  204. void test_online_on_hello() {
  205. struct F : fixture_t {
  206. void main() noexcept override {
  207. create_actor();
  208. send_hello();
  209. }
  210. void on_hello(proto::message::Hello msg) noexcept override {
  211. auto peer = cluster->get_devices().by_sha256(peer_device->device_id().get_sha256());
  212. CHECK(peer->get_state() == device_state_t::online);
  213. }
  214. };
  215. F().run();
  216. }
  217. void test_hello_from_unknown() {
  218. struct F : fixture_t {
  219. void main() noexcept override {
  220. create_actor();
  221. send_hello();
  222. }
  223. void on_hello(proto::message::Hello msg) noexcept override {
  224. CHECK(cluster->get_devices().size() == 1);
  225. auto &unknown_devices = cluster->get_pending_devices();
  226. CHECK(unknown_devices.size() == 1);
  227. auto peer = unknown_devices.by_sha256(peer_device->device_id().get_sha256());
  228. REQUIRE(peer);
  229. CHECK(peer->get_name() == "self-name");
  230. CHECK(peer->get_client_name() == constants::client_name);
  231. CHECK(peer->get_client_version() == constants::client_version);
  232. CHECK(peer->get_address() == "tcp://0.0.0.0:0");
  233. auto delta = pt::microsec_clock::local_time() - peer->get_last_seen();
  234. CHECK(delta.seconds() <= 2);
  235. }
  236. };
  237. F().run(false);
  238. }
  239. void test_hello_from_known_unknown() {
  240. struct F : fixture_t {
  241. void main() noexcept override {
  242. diff_builder_t(*cluster).add_unknown_device(peer_device->device_id(), {}).apply(*sup);
  243. REQUIRE(cluster->get_pending_devices().size() == 1);
  244. create_actor();
  245. send_hello();
  246. }
  247. void on_hello(proto::message::Hello msg) noexcept override {
  248. CHECK(cluster->get_devices().size() == 1);
  249. auto &unknown_devices = cluster->get_pending_devices();
  250. CHECK(unknown_devices.size() == 1);
  251. auto peer = unknown_devices.by_sha256(peer_device->device_id().get_sha256());
  252. REQUIRE(peer);
  253. CHECK(peer->get_name() == "self-name");
  254. CHECK(peer->get_client_name() == constants::client_name);
  255. CHECK(peer->get_client_version() == constants::client_version);
  256. CHECK(peer->get_address() == "tcp://0.0.0.0:0");
  257. auto delta = pt::microsec_clock::local_time() - peer->get_last_seen();
  258. CHECK(delta.seconds() <= 2);
  259. }
  260. };
  261. F().run(false);
  262. }
  263. void test_hello_from_ignored() {
  264. struct F : fixture_t {
  265. void main() noexcept override {
  266. diff_builder_t(*cluster).add_ignored_device(peer_device->device_id(), {}).apply(*sup);
  267. REQUIRE(cluster->get_ignored_devices().size() == 1);
  268. create_actor();
  269. send_hello();
  270. }
  271. void on_hello(proto::message::Hello msg) noexcept override {
  272. CHECK(cluster->get_devices().size() == 1);
  273. auto &ignored_devices = cluster->get_ignored_devices();
  274. CHECK(ignored_devices.size() == 1);
  275. auto peer = ignored_devices.by_sha256(peer_device->device_id().get_sha256());
  276. REQUIRE(peer);
  277. CHECK(peer->get_name() == "self-name");
  278. CHECK(peer->get_client_name() == constants::client_name);
  279. CHECK(peer->get_client_version() == constants::client_version);
  280. CHECK(peer->get_address() == "tcp://0.0.0.0:0");
  281. auto delta = pt::microsec_clock::local_time() - peer->get_last_seen();
  282. CHECK(delta.seconds() <= 2);
  283. REQUIRE(cluster->get_pending_devices().size() == 0);
  284. }
  285. };
  286. F().run(false);
  287. }
  288. int _init() {
  289. REGISTER_TEST_CASE(test_shutdown_on_hello_timeout, "test_shutdown_on_hello_timeout", "[peer]");
  290. REGISTER_TEST_CASE(test_online_on_hello, "test_online_on_hello", "[peer]");
  291. REGISTER_TEST_CASE(test_hello_from_unknown, "test_hello_from_unknown", "[peer]");
  292. REGISTER_TEST_CASE(test_hello_from_known_unknown, "test_hello_from_known_unknown", "[peer]");
  293. REGISTER_TEST_CASE(test_hello_from_ignored, "test_hello_from_ignored", "[peer]");
  294. return 1;
  295. }
  296. static int v = _init();