socket.cpp 22 KB

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  1. #include <catch.hpp>
  2. #include <zmq.hpp>
  3. #ifdef ZMQ_CPP11
  4. #include <future>
  5. #endif
  6. #if (__cplusplus >= 201703L)
  7. static_assert(std::is_nothrow_swappable<zmq::socket_t>::value,
  8. "socket_t should be nothrow swappable");
  9. #endif
  10. TEST_CASE("socket default ctor", "[socket]")
  11. {
  12. zmq::socket_t socket;
  13. }
  14. TEST_CASE("socket create destroy", "[socket]")
  15. {
  16. zmq::context_t context;
  17. zmq::socket_t socket(context, ZMQ_ROUTER);
  18. }
  19. #ifdef ZMQ_CPP11
  20. TEST_CASE("socket create assign", "[socket]")
  21. {
  22. zmq::context_t context;
  23. zmq::socket_t socket(context, ZMQ_ROUTER);
  24. CHECK(static_cast<bool>(socket));
  25. CHECK(socket.handle() != nullptr);
  26. socket = {};
  27. CHECK(!static_cast<bool>(socket));
  28. CHECK(socket.handle() == nullptr);
  29. }
  30. TEST_CASE("socket create by enum and destroy", "[socket]")
  31. {
  32. zmq::context_t context;
  33. zmq::socket_t socket(context, zmq::socket_type::router);
  34. }
  35. TEST_CASE("socket swap", "[socket]")
  36. {
  37. zmq::context_t context;
  38. zmq::socket_t socket1(context, zmq::socket_type::router);
  39. zmq::socket_t socket2(context, zmq::socket_type::dealer);
  40. using std::swap;
  41. swap(socket1, socket2);
  42. }
  43. #ifdef ZMQ_CPP11
  44. TEST_CASE("socket options", "[socket]")
  45. {
  46. zmq::context_t context;
  47. zmq::socket_t socket(context, zmq::socket_type::router);
  48. #ifdef ZMQ_IMMEDIATE
  49. socket.set(zmq::sockopt::immediate, 0);
  50. socket.set(zmq::sockopt::immediate, false);
  51. CHECK(socket.get(zmq::sockopt::immediate) == false);
  52. // unit out of range
  53. CHECK_THROWS_AS(socket.set(zmq::sockopt::immediate, 80), const zmq::error_t &);
  54. #endif
  55. #ifdef ZMQ_LINGER
  56. socket.set(zmq::sockopt::linger, 55);
  57. CHECK(socket.get(zmq::sockopt::linger) == 55);
  58. #endif
  59. #ifdef ZMQ_ROUTING_ID
  60. const std::string id = "foobar";
  61. socket.set(zmq::sockopt::routing_id, "foobar");
  62. socket.set(zmq::sockopt::routing_id, zmq::buffer(id));
  63. socket.set(zmq::sockopt::routing_id, id);
  64. #if CPPZMQ_HAS_STRING_VIEW
  65. socket.set(zmq::sockopt::routing_id, std::string_view{id});
  66. #endif
  67. std::string id_ret(10, ' ');
  68. auto size = socket.get(zmq::sockopt::routing_id, zmq::buffer(id_ret));
  69. id_ret.resize(size);
  70. CHECK(id == id_ret);
  71. auto stropt = socket.get(zmq::sockopt::routing_id);
  72. CHECK(id == stropt);
  73. std::string id_ret_small(3, ' ');
  74. // truncated
  75. CHECK_THROWS_AS(socket.get(zmq::sockopt::routing_id, zmq::buffer(id_ret_small)),
  76. const zmq::error_t &);
  77. #endif
  78. }
  79. template<class T>
  80. void check_array_opt(T opt,
  81. zmq::socket_t &sock,
  82. std::string info,
  83. bool set_only = false)
  84. {
  85. const std::string val = "foobar";
  86. INFO("setting " + info);
  87. sock.set(opt, val);
  88. if (set_only)
  89. return;
  90. INFO("getting " + info);
  91. auto s = sock.get(opt);
  92. CHECK(s == val);
  93. }
  94. template<class T>
  95. void check_array_opt_get(T opt, zmq::socket_t &sock, std::string info)
  96. {
  97. INFO("getting " + info);
  98. (void) sock.get(opt);
  99. }
  100. #if ZMQ_VERSION >= ZMQ_MAKE_VERSION(4, 0, 0)
  101. template<class T> void check_bin_z85(T opt, zmq::socket_t &sock, std::string str_val)
  102. {
  103. std::vector<uint8_t> bin_val(32);
  104. const auto dret = zmq_z85_decode(bin_val.data(), str_val.c_str());
  105. CHECK(dret != nullptr);
  106. sock.set(opt, str_val);
  107. sock.set(opt, zmq::buffer(bin_val));
  108. auto sv = sock.get(opt);
  109. CHECK(sv == str_val);
  110. auto bv = sock.get(opt, 32);
  111. REQUIRE(bv.size() == bin_val.size());
  112. CHECK(std::memcmp(bv.data(), bin_val.data(), bin_val.size()) == 0);
  113. }
  114. #endif
  115. TEST_CASE("socket check array options", "[socket]")
  116. {
  117. zmq::context_t context;
  118. zmq::socket_t router(context, zmq::socket_type::router);
  119. zmq::socket_t xpub(context, zmq::socket_type::xpub);
  120. zmq::socket_t sub(context, zmq::socket_type::sub);
  121. #ifdef ZMQ_BINDTODEVICE
  122. // requires setting CAP_NET_RAW
  123. //check_array_opt(zmq::sockopt::bindtodevice, router, "bindtodevice");
  124. #endif
  125. #ifdef ZMQ_CONNECT_ROUTING_ID
  126. check_array_opt(zmq::sockopt::connect_routing_id, router, "connect_routing_id",
  127. true);
  128. #endif
  129. #ifdef ZMQ_LAST_ENDPOINT
  130. check_array_opt_get(zmq::sockopt::last_endpoint, router, "last_endpoint");
  131. #endif
  132. #ifdef ZMQ_METADATA
  133. router.set(zmq::sockopt::metadata, zmq::str_buffer("X-foo:bar"));
  134. #endif
  135. #ifdef ZMQ_PLAIN_PASSWORD
  136. check_array_opt(zmq::sockopt::plain_password, router, "plain_password");
  137. #endif
  138. #ifdef ZMQ_PLAIN_USERNAME
  139. check_array_opt(zmq::sockopt::plain_username, router, "plain_username");
  140. #endif
  141. #ifdef ZMQ_ROUTING_ID
  142. check_array_opt(zmq::sockopt::routing_id, router, "routing_id");
  143. #endif
  144. #ifdef ZMQ_SOCKS_PROXY
  145. check_array_opt(zmq::sockopt::socks_proxy, router, "socks_proxy");
  146. #endif
  147. #ifdef ZMQ_SUBSCRIBE
  148. check_array_opt(zmq::sockopt::subscribe, sub, "subscribe", true);
  149. #endif
  150. #ifdef ZMQ_UNSUBSCRIBE
  151. check_array_opt(zmq::sockopt::unsubscribe, sub, "unsubscribe", true);
  152. #endif
  153. #ifdef ZMQ_XPUB_WELCOME_MSG
  154. check_array_opt(zmq::sockopt::xpub_welcome_msg, xpub, "xpub_welcome_msg", true);
  155. #endif
  156. #ifdef ZMQ_ZAP_DOMAIN
  157. check_array_opt(zmq::sockopt::zap_domain, router, "zap_domain");
  158. #endif
  159. // curve
  160. #if ZMQ_VERSION >= ZMQ_MAKE_VERSION(4, 0, 0) && defined(ZMQ_HAS_CAPABILITIES)
  161. if (zmq_has("curve") == 1) {
  162. const std::string spk = "rq:rM>}U?@Lns47E1%kR.o@n%FcmmsL/@{H8]yf7";
  163. const std::string ssk = "JTKVSB%%)wK0E.X)V>+}o?pNmC{O&4W4b!Ni{Lh6";
  164. const std::string cpk = "Yne@$w-vo<fVvi]a<NY6T1ed:M$fCG*[IaLV{hID";
  165. const std::string csk = "D:)Q[IlAW!ahhC2ac:9*A}h:p?([4%wOTJ%JR%cs";
  166. zmq::socket_t curve_server(context, zmq::socket_type::router);
  167. curve_server.set(zmq::sockopt::curve_server, true);
  168. CHECK(curve_server.get(zmq::sockopt::curve_server));
  169. check_bin_z85(zmq::sockopt::curve_secretkey, curve_server, ssk);
  170. zmq::socket_t curve_client(context, zmq::socket_type::router);
  171. curve_client.set(zmq::sockopt::curve_server, false);
  172. CHECK_FALSE(curve_client.get(zmq::sockopt::curve_server));
  173. check_bin_z85(zmq::sockopt::curve_serverkey, curve_client, spk);
  174. check_bin_z85(zmq::sockopt::curve_publickey, curve_client, cpk);
  175. check_bin_z85(zmq::sockopt::curve_secretkey, curve_client, csk);
  176. }
  177. #endif
  178. // gssapi
  179. #if ZMQ_VERSION >= ZMQ_MAKE_VERSION(4, 1, 0) && defined(ZMQ_HAS_CAPABILITIES)
  180. if (zmq_has("gssapi") == 1 && false) // TODO enable
  181. {
  182. zmq::socket_t gss_server(context, zmq::socket_type::router);
  183. gss_server.set(zmq::sockopt::gssapi_server, true);
  184. CHECK(gss_server.get(zmq::sockopt::gssapi_server) == 1);
  185. gss_server.set(zmq::sockopt::gssapi_plaintext, false);
  186. CHECK(gss_server.get(zmq::sockopt::gssapi_plaintext) == 0);
  187. check_array_opt(zmq::sockopt::gssapi_principal, gss_server,
  188. "gssapi_principal");
  189. zmq::socket_t gss_client(context, zmq::socket_type::router);
  190. CHECK(gss_client.get(zmq::sockopt::gssapi_server) == 0);
  191. check_array_opt(zmq::sockopt::gssapi_principal, gss_client,
  192. "gssapi_principal");
  193. check_array_opt(zmq::sockopt::gssapi_service_principal, gss_client,
  194. "gssapi_service_principal");
  195. }
  196. #endif
  197. }
  198. template<class T, class Opt>
  199. void check_integral_opt(Opt opt,
  200. zmq::socket_t &sock,
  201. std::string info,
  202. bool set_only = false)
  203. {
  204. const T val = 1;
  205. INFO("setting " + info);
  206. sock.set(opt, val);
  207. if (set_only)
  208. return;
  209. INFO("getting " + info);
  210. auto s = sock.get(opt);
  211. CHECK(s == val);
  212. }
  213. template<class T, class Opt>
  214. void check_integral_opt_get(Opt opt, zmq::socket_t &sock, std::string info)
  215. {
  216. INFO("getting " + info);
  217. (void) sock.get(opt);
  218. }
  219. TEST_CASE("socket check integral options", "[socket]")
  220. {
  221. zmq::context_t context;
  222. zmq::socket_t router(context, zmq::socket_type::router);
  223. zmq::socket_t xpub(context, zmq::socket_type::xpub);
  224. zmq::socket_t req(context, zmq::socket_type::req);
  225. #ifdef ZMQ_STREAM_NOTIFY
  226. zmq::socket_t stream(context, zmq::socket_type::stream);
  227. #endif
  228. #ifdef ZMQ_AFFINITY
  229. check_integral_opt<uint64_t>(zmq::sockopt::affinity, router, "affinity");
  230. #endif
  231. #ifdef ZMQ_BACKLOG
  232. check_integral_opt<int>(zmq::sockopt::backlog, router, "backlog");
  233. #endif
  234. #ifdef ZMQ_CONFLATE
  235. check_integral_opt<int>(zmq::sockopt::conflate, router, "conflate");
  236. #endif
  237. #ifdef ZMQ_CONNECT_TIMEOUT
  238. check_integral_opt<int>(zmq::sockopt::connect_timeout, router,
  239. "connect_timeout");
  240. #endif
  241. #ifdef ZMQ_EVENTS
  242. check_integral_opt_get<int>(zmq::sockopt::events, router, "events");
  243. #endif
  244. #ifdef ZMQ_FD
  245. check_integral_opt_get<zmq::sockopt::cppzmq_fd_t>(zmq::sockopt::fd, router,
  246. "fd");
  247. #endif
  248. #ifdef ZMQ_HANDSHAKE_IVL
  249. check_integral_opt<int>(zmq::sockopt::handshake_ivl, router, "handshake_ivl");
  250. #endif
  251. #ifdef ZMQ_HEARTBEAT_IVL
  252. check_integral_opt<int>(zmq::sockopt::heartbeat_ivl, router, "heartbeat_ivl");
  253. #endif
  254. #ifdef ZMQ_HEARTBEAT_TIMEOUT
  255. check_integral_opt<int>(zmq::sockopt::heartbeat_timeout, router,
  256. "heartbeat_timeout");
  257. #endif
  258. #ifdef ZMQ_HEARTBEAT_TTL
  259. router.set(zmq::sockopt::heartbeat_ttl, 100);
  260. CHECK(router.get(zmq::sockopt::heartbeat_ttl) == 100);
  261. #endif
  262. #ifdef ZMQ_IMMEDIATE
  263. check_integral_opt<int>(zmq::sockopt::immediate, router, "immediate");
  264. #endif
  265. #ifdef ZMQ_INVERT_MATCHING
  266. check_integral_opt<int>(zmq::sockopt::invert_matching, router,
  267. "invert_matching");
  268. #endif
  269. #ifdef ZMQ_IPV6
  270. check_integral_opt<int>(zmq::sockopt::ipv6, router, "ipv6");
  271. #endif
  272. #ifdef ZMQ_LINGER
  273. check_integral_opt<int>(zmq::sockopt::linger, router, "linger");
  274. #endif
  275. #ifdef ZMQ_MAXMSGSIZE
  276. check_integral_opt<int64_t>(zmq::sockopt::maxmsgsize, router, "maxmsgsize");
  277. #endif
  278. #ifdef ZMQ_MECHANISM
  279. check_integral_opt_get<int>(zmq::sockopt::mechanism, router, "mechanism");
  280. #endif
  281. #ifdef ZMQ_MULTICAST_HOPS
  282. check_integral_opt<int>(zmq::sockopt::multicast_hops, router, "multicast_hops");
  283. #endif
  284. #ifdef ZMQ_MULTICAST_LOOP
  285. check_integral_opt<int>(zmq::sockopt::multicast_loop, router, "multicast_loop");
  286. #endif
  287. #ifdef ZMQ_MULTICAST_MAXTPDU
  288. check_integral_opt<int>(zmq::sockopt::multicast_maxtpdu, router,
  289. "multicast_maxtpdu");
  290. #endif
  291. #ifdef ZMQ_PLAIN_SERVER
  292. check_integral_opt<int>(zmq::sockopt::plain_server, router, "plain_server");
  293. #endif
  294. #ifdef ZMQ_USE_FD
  295. check_integral_opt<int>(zmq::sockopt::use_fd, router, "use_fd");
  296. #endif
  297. #ifdef ZMQ_PROBE_ROUTER
  298. check_integral_opt<int>(zmq::sockopt::probe_router, router, "probe_router",
  299. true);
  300. #endif
  301. #ifdef ZMQ_RATE
  302. check_integral_opt<int>(zmq::sockopt::rate, router, "rate");
  303. #endif
  304. #ifdef ZMQ_RCVBUF
  305. check_integral_opt<int>(zmq::sockopt::rcvbuf, router, "rcvbuf");
  306. #endif
  307. #ifdef ZMQ_RCVHWM
  308. check_integral_opt<int>(zmq::sockopt::rcvhwm, router, "rcvhwm");
  309. #endif
  310. #ifdef ZMQ_RCVMORE
  311. check_integral_opt_get<int>(zmq::sockopt::rcvmore, router, "rcvmore");
  312. #endif
  313. #ifdef ZMQ_RCVTIMEO
  314. check_integral_opt<int>(zmq::sockopt::rcvtimeo, router, "rcvtimeo");
  315. #endif
  316. #ifdef ZMQ_RECONNECT_IVL
  317. check_integral_opt<int>(zmq::sockopt::reconnect_ivl, router, "reconnect_ivl");
  318. #endif
  319. #ifdef ZMQ_RECONNECT_IVL_MAX
  320. check_integral_opt<int>(zmq::sockopt::reconnect_ivl_max, router,
  321. "reconnect_ivl_max");
  322. #endif
  323. #ifdef ZMQ_RECOVERY_IVL
  324. check_integral_opt<int>(zmq::sockopt::recovery_ivl, router, "recovery_ivl");
  325. #endif
  326. #ifdef ZMQ_REQ_CORRELATE
  327. check_integral_opt<int>(zmq::sockopt::req_correlate, req, "req_correlate", true);
  328. #endif
  329. #ifdef ZMQ_REQ_RELAXED
  330. check_integral_opt<int>(zmq::sockopt::req_relaxed, req, "req_relaxed", true);
  331. #endif
  332. #ifdef ZMQ_ROUTER_HANDOVER
  333. check_integral_opt<int>(zmq::sockopt::router_handover, router, "router_handover",
  334. true);
  335. #endif
  336. #ifdef ZMQ_ROUTER_MANDATORY
  337. check_integral_opt<int>(zmq::sockopt::router_mandatory, router,
  338. "router_mandatory", true);
  339. #endif
  340. #ifdef ZMQ_ROUTER_NOTIFY
  341. check_integral_opt<int>(zmq::sockopt::router_notify, router, "router_notify");
  342. #endif
  343. #ifdef ZMQ_SNDBUF
  344. check_integral_opt<int>(zmq::sockopt::sndbuf, router, "sndbuf");
  345. #endif
  346. #ifdef ZMQ_SNDHWM
  347. check_integral_opt<int>(zmq::sockopt::sndhwm, router, "sndhwm");
  348. #endif
  349. #ifdef ZMQ_SNDTIMEO
  350. check_integral_opt<int>(zmq::sockopt::sndtimeo, router, "sndtimeo");
  351. #endif
  352. #ifdef ZMQ_STREAM_NOTIFY
  353. check_integral_opt<int>(zmq::sockopt::stream_notify, stream, "stream_notify",
  354. true);
  355. #endif
  356. #ifdef ZMQ_TCP_KEEPALIVE
  357. check_integral_opt<int>(zmq::sockopt::tcp_keepalive, router, "tcp_keepalive");
  358. #endif
  359. #ifdef ZMQ_TCP_KEEPALIVE_CNT
  360. check_integral_opt<int>(zmq::sockopt::tcp_keepalive_cnt, router,
  361. "tcp_keepalive_cnt");
  362. #endif
  363. #ifdef ZMQ_TCP_KEEPALIVE_IDLE
  364. check_integral_opt<int>(zmq::sockopt::tcp_keepalive_idle, router,
  365. "tcp_keepalive_idle");
  366. #endif
  367. #ifdef ZMQ_TCP_KEEPALIVE_INTVL
  368. check_integral_opt<int>(zmq::sockopt::tcp_keepalive_intvl, router,
  369. "tcp_keepalive_intvl");
  370. #endif
  371. #ifdef ZMQ_TCP_MAXRT
  372. check_integral_opt<int>(zmq::sockopt::tcp_maxrt, router, "tcp_maxrt");
  373. #endif
  374. #ifdef ZMQ_THREAD_SAFE
  375. check_integral_opt_get<bool>(zmq::sockopt::thread_safe, router, "thread_safe");
  376. #endif
  377. #ifdef ZMQ_TOS
  378. check_integral_opt<int>(zmq::sockopt::tos, router, "tos");
  379. #endif
  380. #ifdef ZMQ_TYPE
  381. check_integral_opt_get<int>(zmq::sockopt::type, router, "type");
  382. #endif
  383. #ifdef ZMQ_HAVE_VMCI
  384. #ifdef ZMQ_VMCI_BUFFER_SIZE
  385. check_integral_opt<uint64_t>(zmq::sockopt::vmci_buffer_size, router,
  386. "vmci_buffer_size");
  387. #endif
  388. #ifdef ZMQ_VMCI_BUFFER_MIN_SIZE
  389. check_integral_opt<uint64_t>(zmq::sockopt::vmci_buffer_min_size, router,
  390. "vmci_buffer_min_size");
  391. #endif
  392. #ifdef ZMQ_VMCI_BUFFER_MAX_SIZE
  393. check_integral_opt<uint64_t>(zmq::sockopt::vmci_buffer_max_size, router,
  394. "vmci_buffer_max_size");
  395. #endif
  396. #ifdef ZMQ_VMCI_CONNECT_TIMEOUT
  397. check_integral_opt<int>(zmq::sockopt::vmci_connect_timeout, router,
  398. "vmci_connect_timeout");
  399. #endif
  400. #endif
  401. #ifdef ZMQ_XPUB_VERBOSE
  402. check_integral_opt<int>(zmq::sockopt::xpub_verbose, xpub, "xpub_verbose", true);
  403. #endif
  404. #ifdef ZMQ_XPUB_VERBOSER
  405. check_integral_opt<int>(zmq::sockopt::xpub_verboser, xpub, "xpub_verboser",
  406. true);
  407. #endif
  408. #ifdef ZMQ_XPUB_MANUAL
  409. check_integral_opt<int>(zmq::sockopt::xpub_manual, xpub, "xpub_manual", true);
  410. #endif
  411. #ifdef ZMQ_XPUB_NODROP
  412. check_integral_opt<int>(zmq::sockopt::xpub_nodrop, xpub, "xpub_nodrop", true);
  413. #endif
  414. #ifdef ZMQ_ZAP_ENFORCE_DOMAIN
  415. check_integral_opt<int>(zmq::sockopt::zap_enforce_domain, router,
  416. "zap_enforce_domain");
  417. #endif
  418. }
  419. #endif
  420. TEST_CASE("socket flags", "[socket]")
  421. {
  422. CHECK((zmq::recv_flags::dontwait | zmq::recv_flags::none)
  423. == static_cast<zmq::recv_flags>(ZMQ_DONTWAIT | 0));
  424. CHECK((zmq::recv_flags::dontwait & zmq::recv_flags::none)
  425. == static_cast<zmq::recv_flags>(ZMQ_DONTWAIT & 0));
  426. CHECK((zmq::recv_flags::dontwait ^ zmq::recv_flags::none)
  427. == static_cast<zmq::recv_flags>(ZMQ_DONTWAIT ^ 0));
  428. CHECK(~zmq::recv_flags::dontwait == static_cast<zmq::recv_flags>(~ZMQ_DONTWAIT));
  429. CHECK((zmq::send_flags::dontwait | zmq::send_flags::sndmore)
  430. == static_cast<zmq::send_flags>(ZMQ_DONTWAIT | ZMQ_SNDMORE));
  431. CHECK((zmq::send_flags::dontwait & zmq::send_flags::sndmore)
  432. == static_cast<zmq::send_flags>(ZMQ_DONTWAIT & ZMQ_SNDMORE));
  433. CHECK((zmq::send_flags::dontwait ^ zmq::send_flags::sndmore)
  434. == static_cast<zmq::send_flags>(ZMQ_DONTWAIT ^ ZMQ_SNDMORE));
  435. CHECK(~zmq::send_flags::dontwait == static_cast<zmq::send_flags>(~ZMQ_DONTWAIT));
  436. }
  437. TEST_CASE("socket readme example", "[socket]")
  438. {
  439. zmq::context_t ctx;
  440. zmq::socket_t sock(ctx, zmq::socket_type::push);
  441. sock.bind("inproc://test");
  442. sock.send(zmq::str_buffer("Hello, world"), zmq::send_flags::dontwait);
  443. }
  444. #endif
  445. TEST_CASE("socket sends and receives const buffer", "[socket]")
  446. {
  447. zmq::context_t context;
  448. zmq::socket_t sender(context, ZMQ_PAIR);
  449. zmq::socket_t receiver(context, ZMQ_PAIR);
  450. receiver.bind("inproc://test");
  451. sender.connect("inproc://test");
  452. const char *str = "Hi";
  453. #ifdef ZMQ_CPP11
  454. CHECK(2 == *sender.send(zmq::buffer(str, 2)));
  455. char buf[2];
  456. const auto res = receiver.recv(zmq::buffer(buf));
  457. CHECK(res);
  458. CHECK(!res->truncated());
  459. CHECK(2 == res->size);
  460. #else
  461. CHECK(2 == sender.send(str, 2));
  462. char buf[2];
  463. CHECK(2 == receiver.recv(buf, 2));
  464. #endif
  465. CHECK(0 == memcmp(buf, str, 2));
  466. }
  467. #ifdef ZMQ_CPP11
  468. TEST_CASE("socket send none sndmore", "[socket]")
  469. {
  470. zmq::context_t context;
  471. zmq::socket_t s(context, zmq::socket_type::router);
  472. s.bind("inproc://test");
  473. std::vector<char> buf(4);
  474. auto res = s.send(zmq::buffer(buf), zmq::send_flags::sndmore);
  475. CHECK(res);
  476. CHECK(*res == buf.size());
  477. res = s.send(zmq::buffer(buf));
  478. CHECK(res);
  479. CHECK(*res == buf.size());
  480. }
  481. TEST_CASE("socket send dontwait", "[socket]")
  482. {
  483. zmq::context_t context;
  484. zmq::socket_t s(context, zmq::socket_type::push);
  485. s.bind("inproc://test");
  486. std::vector<char> buf(4);
  487. auto res = s.send(zmq::buffer(buf), zmq::send_flags::dontwait);
  488. CHECK(!res);
  489. res =
  490. s.send(zmq::buffer(buf), zmq::send_flags::dontwait | zmq::send_flags::sndmore);
  491. CHECK(!res);
  492. zmq::message_t msg;
  493. auto resm = s.send(msg, zmq::send_flags::dontwait);
  494. CHECK(!resm);
  495. CHECK(msg.size() == 0);
  496. }
  497. TEST_CASE("socket send exception", "[socket]")
  498. {
  499. zmq::context_t context;
  500. zmq::socket_t s(context, zmq::socket_type::pull);
  501. s.bind("inproc://test");
  502. std::vector<char> buf(4);
  503. CHECK_THROWS_AS(s.send(zmq::buffer(buf)), const zmq::error_t &);
  504. }
  505. TEST_CASE("socket recv none", "[socket]")
  506. {
  507. zmq::context_t context;
  508. zmq::socket_t s(context, zmq::socket_type::pair);
  509. zmq::socket_t s2(context, zmq::socket_type::pair);
  510. s2.bind("inproc://test");
  511. s.connect("inproc://test");
  512. std::vector<char> sbuf(4);
  513. const auto res_send = s2.send(zmq::buffer(sbuf));
  514. CHECK(res_send);
  515. CHECK(res_send.has_value());
  516. std::vector<char> buf(2);
  517. const auto res = s.recv(zmq::buffer(buf));
  518. CHECK(res.has_value());
  519. CHECK(res->truncated());
  520. CHECK(res->untruncated_size == sbuf.size());
  521. CHECK(res->size == buf.size());
  522. const auto res_send2 = s2.send(zmq::buffer(sbuf));
  523. CHECK(res_send2.has_value());
  524. std::vector<char> buf2(10);
  525. const auto res2 = s.recv(zmq::buffer(buf2));
  526. CHECK(res2.has_value());
  527. CHECK(!res2->truncated());
  528. CHECK(res2->untruncated_size == sbuf.size());
  529. CHECK(res2->size == sbuf.size());
  530. }
  531. TEST_CASE("socket send recv message_t", "[socket]")
  532. {
  533. zmq::context_t context;
  534. zmq::socket_t s(context, zmq::socket_type::pair);
  535. zmq::socket_t s2(context, zmq::socket_type::pair);
  536. s2.bind("inproc://test");
  537. s.connect("inproc://test");
  538. zmq::message_t smsg(10);
  539. const auto res_send = s2.send(smsg, zmq::send_flags::none);
  540. CHECK(res_send);
  541. CHECK(*res_send == 10);
  542. CHECK(smsg.size() == 0);
  543. zmq::message_t rmsg;
  544. const auto res = s.recv(rmsg);
  545. CHECK(res);
  546. CHECK(*res == 10);
  547. CHECK(res.value() == 10);
  548. CHECK(rmsg.size() == *res);
  549. }
  550. TEST_CASE("socket send recv message_t by pointer", "[socket]")
  551. {
  552. zmq::context_t context;
  553. zmq::socket_t s(context, zmq::socket_type::pair);
  554. zmq::socket_t s2(context, zmq::socket_type::pair);
  555. s2.bind("inproc://test");
  556. s.connect("inproc://test");
  557. zmq::message_t smsg(size_t{10});
  558. const auto res_send = s2.send(smsg, zmq::send_flags::none);
  559. CHECK(res_send);
  560. CHECK(*res_send == 10);
  561. CHECK(smsg.size() == 0);
  562. zmq::message_t rmsg;
  563. const bool res = s.recv(&rmsg);
  564. CHECK(res);
  565. }
  566. TEST_CASE("socket recv dontwait", "[socket]")
  567. {
  568. zmq::context_t context;
  569. zmq::socket_t s(context, zmq::socket_type::pull);
  570. s.bind("inproc://test");
  571. std::vector<char> buf(4);
  572. constexpr auto flags = zmq::recv_flags::none | zmq::recv_flags::dontwait;
  573. auto res = s.recv(zmq::buffer(buf), flags);
  574. CHECK(!res);
  575. zmq::message_t msg;
  576. auto resm = s.recv(msg, flags);
  577. CHECK(!resm);
  578. CHECK_THROWS_AS(resm.value(), const std::exception &);
  579. CHECK(msg.size() == 0);
  580. }
  581. TEST_CASE("socket recv exception", "[socket]")
  582. {
  583. zmq::context_t context;
  584. zmq::socket_t s(context, zmq::socket_type::push);
  585. s.bind("inproc://test");
  586. std::vector<char> buf(4);
  587. CHECK_THROWS_AS(s.recv(zmq::buffer(buf)), const zmq::error_t &);
  588. }
  589. TEST_CASE("socket proxy", "[socket]")
  590. {
  591. zmq::context_t context;
  592. zmq::socket_t front(context, ZMQ_ROUTER);
  593. zmq::socket_t back(context, ZMQ_ROUTER);
  594. zmq::socket_t capture(context, ZMQ_DEALER);
  595. front.bind("inproc://test1");
  596. back.bind("inproc://test2");
  597. capture.bind("inproc://test3");
  598. auto f = std::async(std::launch::async, [&]() {
  599. auto s1 = std::move(front);
  600. auto s2 = std::move(back);
  601. auto s3 = std::move(capture);
  602. try {
  603. zmq::proxy(s1, s2, zmq::socket_ref(s3));
  604. }
  605. catch (const zmq::error_t &e) {
  606. return e.num() == ETERM;
  607. }
  608. return false;
  609. });
  610. context.close();
  611. CHECK(f.get());
  612. }
  613. TEST_CASE("socket proxy steerable", "[socket]")
  614. {
  615. zmq::context_t context;
  616. zmq::socket_t front(context, ZMQ_ROUTER);
  617. zmq::socket_t back(context, ZMQ_ROUTER);
  618. zmq::socket_t control(context, ZMQ_SUB);
  619. front.bind("inproc://test1");
  620. back.bind("inproc://test2");
  621. control.connect("inproc://test3");
  622. auto f = std::async(std::launch::async, [&]() {
  623. auto s1 = std::move(front);
  624. auto s2 = std::move(back);
  625. auto s3 = std::move(control);
  626. try {
  627. zmq::proxy_steerable(s1, s2, zmq::socket_ref(), s3);
  628. }
  629. catch (const zmq::error_t &e) {
  630. return e.num() == ETERM;
  631. }
  632. return false;
  633. });
  634. context.close();
  635. CHECK(f.get());
  636. }
  637. #endif