auth_srv_unittest.cc 74 KB

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  1. // Copyright (C) 2010 Internet Systems Consortium, Inc. ("ISC")
  2. //
  3. // Permission to use, copy, modify, and/or distribute this software for any
  4. // purpose with or without fee is hereby granted, provided that the above
  5. // copyright notice and this permission notice appear in all copies.
  6. //
  7. // THE SOFTWARE IS PROVIDED "AS IS" AND ISC DISCLAIMS ALL WARRANTIES WITH
  8. // REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY
  9. // AND FITNESS. IN NO EVENT SHALL ISC BE LIABLE FOR ANY SPECIAL, DIRECT,
  10. // INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM
  11. // LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE
  12. // OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
  13. // PERFORMANCE OF THIS SOFTWARE.
  14. #include <config.h>
  15. #include <util/io/sockaddr_util.h>
  16. #include <dns/message.h>
  17. #include <dns/messagerenderer.h>
  18. #include <dns/name.h>
  19. #include <dns/opcode.h>
  20. #include <dns/rrclass.h>
  21. #include <dns/rrtype.h>
  22. #include <dns/rrttl.h>
  23. #include <dns/rdataclass.h>
  24. #include <dns/tsig.h>
  25. #include <server_common/portconfig.h>
  26. #include <server_common/keyring.h>
  27. #include <datasrc/memory_datasrc.h>
  28. #include <datasrc/client_list.h>
  29. #include <auth/auth_srv.h>
  30. #include <auth/command.h>
  31. #include <auth/common.h>
  32. #include <auth/statistics.h>
  33. #include <auth/datasrc_configurator.h>
  34. #include <util/unittests/mock_socketsession.h>
  35. #include <util/threads/lock.h>
  36. #include <dns/tests/unittest_util.h>
  37. #include <testutils/dnsmessage_test.h>
  38. #include <testutils/srv_test.h>
  39. #include <testutils/mockups.h>
  40. #include <testutils/portconfig.h>
  41. #include <testutils/socket_request.h>
  42. #include <gtest/gtest.h>
  43. #include <boost/lexical_cast.hpp>
  44. #include <boost/shared_ptr.hpp>
  45. #include <boost/scoped_ptr.hpp>
  46. #include <boost/foreach.hpp>
  47. #include <vector>
  48. #include <sys/types.h>
  49. #include <sys/socket.h>
  50. #include <netdb.h>
  51. using namespace std;
  52. using namespace isc::cc;
  53. using namespace isc::dns;
  54. using namespace isc::util;
  55. using namespace isc::util::io::internal;
  56. using namespace isc::util::unittests;
  57. using namespace isc::dns::rdata;
  58. using namespace isc::data;
  59. using namespace isc::xfr;
  60. using namespace isc::asiodns;
  61. using namespace isc::asiolink;
  62. using namespace isc::testutils;
  63. using namespace isc::server_common::portconfig;
  64. using isc::UnitTestUtil;
  65. using boost::scoped_ptr;
  66. namespace {
  67. const char* const CONFIG_TESTDB =
  68. "{\"database_file\": \"" TEST_DATA_DIR "/example.sqlite3\"}";
  69. // The following file must be non existent and must be non"creatable" (see
  70. // the sqlite3 test).
  71. const char* const BADCONFIG_TESTDB =
  72. "{ \"database_file\": \"" TEST_DATA_DIR "/nodir/notexist\"}";
  73. const char* const STATIC_DSRC_FILE = DSRC_DIR "/static.zone";
  74. // This is a configuration that uses the in-memory data source containing
  75. // a signed example zone.
  76. const char* const CONFIG_INMEMORY_EXAMPLE = TEST_DATA_DIR "/rfc5155-example.zone.signed";
  77. class AuthSrvTest : public SrvTestBase {
  78. protected:
  79. AuthSrvTest() :
  80. dnss_(),
  81. server(xfrout, ddns_forwarder),
  82. // The empty string is expected value of the parameter of
  83. // requestSocket, not the app_name (there's no fallback, it checks
  84. // the empty string is passed).
  85. sock_requestor_(dnss_, address_store_, 53210, "")
  86. {
  87. server.setDNSService(dnss_);
  88. server.setXfrinSession(&notify_session);
  89. server.createDDNSForwarder();
  90. }
  91. ~AuthSrvTest() {
  92. // Clear the message now; depending on the RTTI implementation,
  93. // type information may be lost if the message is cleared
  94. // automatically later, so as a precaution we do it now.
  95. parse_message->clear(Message::PARSE);
  96. server.destroyDDNSForwarder();
  97. }
  98. virtual void processMessage() {
  99. // If processMessage has been called before, parse_message needs
  100. // to be reset. If it hasn't, there's no harm in doing so
  101. parse_message->clear(Message::PARSE);
  102. server.processMessage(*io_message, *parse_message, *response_obuffer,
  103. &dnsserv);
  104. }
  105. // Helper for checking Rcode statistic counters;
  106. // Checks for one specific Rcode statistics counter value
  107. void checkRcodeCounter(const Rcode& rcode, int expected_value) const {
  108. EXPECT_EQ(expected_value, server.getCounter(rcode)) <<
  109. "Expected Rcode count for " << rcode.toText() <<
  110. " " << expected_value << ", was: " <<
  111. server.getCounter(rcode);
  112. }
  113. // Checks whether all Rcode counters are set to zero
  114. void checkAllRcodeCountersZero() const {
  115. for (int i = 0; i < 17; i++) {
  116. checkRcodeCounter(Rcode(i), 0);
  117. }
  118. }
  119. // Checks whether all Rcode counters are set to zero except the given
  120. // rcode (it is checked to be set to 'value')
  121. void checkAllRcodeCountersZeroExcept(const Rcode& rcode, int value) const {
  122. for (int i = 0; i < 17; i++) {
  123. const Rcode rc(i);
  124. if (rc == rcode) {
  125. checkRcodeCounter(Rcode(i), value);
  126. } else {
  127. checkRcodeCounter(Rcode(i), 0);
  128. }
  129. }
  130. }
  131. // Convenience method for tests that expect to return SERVFAIL
  132. // It calls processMessage, checks if there is an answer, and
  133. // check the header for default SERVFAIL data
  134. void processAndCheckSERVFAIL() {
  135. processMessage();
  136. EXPECT_TRUE(dnsserv.hasAnswer());
  137. headerCheck(*parse_message, default_qid, Rcode::SERVFAIL(),
  138. opcode.getCode(), QR_FLAG, 1, 0, 0, 0);
  139. }
  140. // Convenient shortcut of creating a simple request and having the
  141. // server process it.
  142. void createAndSendRequest(RRType req_type, Opcode opcode = Opcode::QUERY(),
  143. const Name& req_name = Name("example.com"),
  144. RRClass req_class = RRClass::IN(),
  145. int protocol = IPPROTO_UDP,
  146. const char* const remote_address =
  147. DEFAULT_REMOTE_ADDRESS,
  148. uint16_t remote_port = DEFAULT_REMOTE_PORT)
  149. {
  150. UnitTestUtil::createRequestMessage(request_message, opcode,
  151. default_qid, req_name,
  152. req_class, req_type);
  153. createRequestPacket(request_message, protocol, NULL,
  154. remote_address, remote_port);
  155. parse_message->clear(Message::PARSE);
  156. server.processMessage(*io_message, *parse_message, *response_obuffer,
  157. &dnsserv);
  158. }
  159. MockDNSService dnss_;
  160. MockXfroutClient xfrout;
  161. MockSocketSessionForwarder ddns_forwarder;
  162. AuthSrv server;
  163. vector<uint8_t> response_data;
  164. AddressList address_store_;
  165. TestSocketRequestor sock_requestor_;
  166. };
  167. // A helper function that builds a response to version.bind/TXT/CH that
  168. // should be identical to the response from our builtin (static) data source
  169. // by default. The resulting wire-format data will be stored in 'data'.
  170. void
  171. createBuiltinVersionResponse(const qid_t qid, vector<uint8_t>& data) {
  172. const Name version_name("VERSION.BIND.");
  173. const Name apex_name("BIND.");
  174. Message message(Message::RENDER);
  175. UnitTestUtil::createRequestMessage(message, Opcode::QUERY(),
  176. qid, version_name,
  177. RRClass::CH(), RRType::TXT());
  178. message.setHeaderFlag(Message::HEADERFLAG_QR);
  179. message.setHeaderFlag(Message::HEADERFLAG_AA);
  180. RRsetPtr rrset_version = RRsetPtr(new RRset(version_name, RRClass::CH(),
  181. RRType::TXT(), RRTTL(0)));
  182. rrset_version->addRdata(generic::TXT(PACKAGE_STRING));
  183. message.addRRset(Message::SECTION_ANSWER, rrset_version);
  184. RRsetPtr rrset_version_ns = RRsetPtr(new RRset(apex_name, RRClass::CH(),
  185. RRType::NS(), RRTTL(0)));
  186. rrset_version_ns->addRdata(generic::NS(apex_name));
  187. message.addRRset(Message::SECTION_AUTHORITY, rrset_version_ns);
  188. MessageRenderer renderer;
  189. message.toWire(renderer);
  190. data.clear();
  191. data.assign(static_cast<const uint8_t*>(renderer.getData()),
  192. static_cast<const uint8_t*>(renderer.getData()) +
  193. renderer.getLength());
  194. }
  195. // We did not configure any client lists. Therefore it should be REFUSED
  196. TEST_F(AuthSrvTest, noClientList) {
  197. UnitTestUtil::createRequestMessage(request_message, Opcode::QUERY(),
  198. default_qid, Name("version.bind"),
  199. RRClass::CH(), RRType::TXT());
  200. createRequestPacket(request_message, IPPROTO_UDP);
  201. server.processMessage(*io_message, *parse_message, *response_obuffer,
  202. &dnsserv);
  203. EXPECT_TRUE(dnsserv.hasAnswer());
  204. headerCheck(*parse_message, default_qid, Rcode::REFUSED(),
  205. opcode.getCode(), QR_FLAG, 1, 0, 0, 0);
  206. }
  207. // Unsupported requests. Should result in NOTIMP.
  208. TEST_F(AuthSrvTest, unsupportedRequest) {
  209. unsupportedRequest();
  210. // unsupportedRequest tries 13 different opcodes
  211. checkAllRcodeCountersZeroExcept(Rcode::NOTIMP(), 13);
  212. }
  213. // Multiple questions. Should result in FORMERR.
  214. TEST_F(AuthSrvTest, multiQuestion) {
  215. multiQuestion();
  216. checkAllRcodeCountersZeroExcept(Rcode::FORMERR(), 1);
  217. }
  218. // Incoming data doesn't even contain the complete header. Must be silently
  219. // dropped.
  220. TEST_F(AuthSrvTest, shortMessage) {
  221. shortMessage();
  222. checkAllRcodeCountersZero();
  223. }
  224. // Response messages. Must be silently dropped, whether it's a valid response
  225. // or malformed or could otherwise cause a protocol error.
  226. TEST_F(AuthSrvTest, response) {
  227. response();
  228. checkAllRcodeCountersZero();
  229. }
  230. // Query with a broken question
  231. TEST_F(AuthSrvTest, shortQuestion) {
  232. shortQuestion();
  233. checkAllRcodeCountersZeroExcept(Rcode::FORMERR(), 1);
  234. }
  235. // Query with a broken answer section
  236. TEST_F(AuthSrvTest, shortAnswer) {
  237. shortAnswer();
  238. checkAllRcodeCountersZeroExcept(Rcode::FORMERR(), 1);
  239. }
  240. // Query with unsupported version of EDNS.
  241. TEST_F(AuthSrvTest, ednsBadVers) {
  242. ednsBadVers();
  243. checkAllRcodeCountersZeroExcept(Rcode::BADVERS(), 1);
  244. }
  245. TEST_F(AuthSrvTest, AXFROverUDP) {
  246. axfrOverUDP();
  247. }
  248. TEST_F(AuthSrvTest, AXFRSuccess) {
  249. EXPECT_FALSE(xfrout.isConnected());
  250. UnitTestUtil::createRequestMessage(request_message, opcode, default_qid,
  251. Name("example.com"), RRClass::IN(),
  252. RRType::AXFR());
  253. createRequestPacket(request_message, IPPROTO_TCP);
  254. // On success, the AXFR query has been passed to a separate process,
  255. // so we shouldn't have to respond.
  256. server.processMessage(*io_message, *parse_message, *response_obuffer,
  257. &dnsserv);
  258. EXPECT_FALSE(dnsserv.hasAnswer());
  259. EXPECT_TRUE(xfrout.isConnected());
  260. checkAllRcodeCountersZero();
  261. }
  262. // Give the server a signed request, but don't give it the key. It will
  263. // not be able to verify it, returning BADKEY
  264. TEST_F(AuthSrvTest, TSIGSignedBadKey) {
  265. TSIGKey key("key:c2VjcmV0Cg==:hmac-sha1");
  266. TSIGContext context(key);
  267. UnitTestUtil::createRequestMessage(request_message, opcode, default_qid,
  268. Name("version.bind"), RRClass::CH(),
  269. RRType::TXT());
  270. createRequestPacket(request_message, IPPROTO_UDP, &context);
  271. // Process the message, but use a different key there
  272. boost::shared_ptr<TSIGKeyRing> keyring(new TSIGKeyRing);
  273. server.setTSIGKeyRing(&keyring);
  274. server.processMessage(*io_message, *parse_message, *response_obuffer,
  275. &dnsserv);
  276. EXPECT_TRUE(dnsserv.hasAnswer());
  277. headerCheck(*parse_message, default_qid, TSIGError::BAD_KEY().toRcode(),
  278. opcode.getCode(), QR_FLAG, 1, 0, 0, 0);
  279. // We need to parse the message ourself, or getTSIGRecord won't work
  280. InputBuffer ib(response_obuffer->getData(), response_obuffer->getLength());
  281. Message m(Message::PARSE);
  282. m.fromWire(ib);
  283. const TSIGRecord* tsig = m.getTSIGRecord();
  284. ASSERT_TRUE(tsig != NULL) <<
  285. "Missing TSIG signature (we should have one even at error)";
  286. EXPECT_EQ(TSIGError::BAD_KEY_CODE, tsig->getRdata().getError());
  287. EXPECT_EQ(0, tsig->getRdata().getMACSize()) <<
  288. "It should be unsigned with this error";
  289. checkAllRcodeCountersZeroExcept(Rcode::NOTAUTH(), 1);
  290. }
  291. // Give the server a signed request, but signed by a different key
  292. // (with the same name). It should return BADSIG
  293. TEST_F(AuthSrvTest, TSIGBadSig) {
  294. TSIGKey key("key:c2VjcmV0Cg==:hmac-sha1");
  295. TSIGContext context(key);
  296. UnitTestUtil::createRequestMessage(request_message, opcode, default_qid,
  297. Name("version.bind"), RRClass::CH(),
  298. RRType::TXT());
  299. createRequestPacket(request_message, IPPROTO_UDP, &context);
  300. // Process the message, but use a different key there
  301. boost::shared_ptr<TSIGKeyRing> keyring(new TSIGKeyRing);
  302. keyring->add(TSIGKey("key:QkFECg==:hmac-sha1"));
  303. server.setTSIGKeyRing(&keyring);
  304. server.processMessage(*io_message, *parse_message, *response_obuffer,
  305. &dnsserv);
  306. EXPECT_TRUE(dnsserv.hasAnswer());
  307. headerCheck(*parse_message, default_qid, TSIGError::BAD_SIG().toRcode(),
  308. opcode.getCode(), QR_FLAG, 1, 0, 0, 0);
  309. // We need to parse the message ourself, or getTSIGRecord won't work
  310. InputBuffer ib(response_obuffer->getData(), response_obuffer->getLength());
  311. Message m(Message::PARSE);
  312. m.fromWire(ib);
  313. const TSIGRecord* tsig = m.getTSIGRecord();
  314. ASSERT_TRUE(tsig != NULL) <<
  315. "Missing TSIG signature (we should have one even at error)";
  316. EXPECT_EQ(TSIGError::BAD_SIG_CODE, tsig->getRdata().getError());
  317. EXPECT_EQ(0, tsig->getRdata().getMACSize()) <<
  318. "It should be unsigned with this error";
  319. checkAllRcodeCountersZeroExcept(Rcode::NOTAUTH(), 1);
  320. }
  321. // Give the server a signed unsupported request with a bad signature.
  322. // This checks the server first verifies the signature before anything
  323. // else.
  324. TEST_F(AuthSrvTest, TSIGCheckFirst) {
  325. TSIGKey key("key:c2VjcmV0Cg==:hmac-sha1");
  326. TSIGContext context(key);
  327. // Pass a wrong opcode there. The server shouldn't know what to do
  328. // about it.
  329. UnitTestUtil::createRequestMessage(request_message, Opcode::RESERVED14(),
  330. default_qid, Name("version.bind"),
  331. RRClass::CH(), RRType::TXT());
  332. createRequestPacket(request_message, IPPROTO_UDP, &context);
  333. // Process the message, but use a different key there
  334. boost::shared_ptr<TSIGKeyRing> keyring(new TSIGKeyRing);
  335. keyring->add(TSIGKey("key:QkFECg==:hmac-sha1"));
  336. server.setTSIGKeyRing(&keyring);
  337. server.processMessage(*io_message, *parse_message, *response_obuffer,
  338. &dnsserv);
  339. EXPECT_TRUE(dnsserv.hasAnswer());
  340. headerCheck(*parse_message, default_qid, TSIGError::BAD_SIG().toRcode(),
  341. Opcode::RESERVED14().getCode(), QR_FLAG, 0, 0, 0, 0);
  342. // We need to parse the message ourself, or getTSIGRecord won't work
  343. InputBuffer ib(response_obuffer->getData(), response_obuffer->getLength());
  344. Message m(Message::PARSE);
  345. m.fromWire(ib);
  346. const TSIGRecord* tsig = m.getTSIGRecord();
  347. ASSERT_TRUE(tsig != NULL) <<
  348. "Missing TSIG signature (we should have one even at error)";
  349. EXPECT_EQ(TSIGError::BAD_SIG_CODE, tsig->getRdata().getError());
  350. EXPECT_EQ(0, tsig->getRdata().getMACSize()) <<
  351. "It should be unsigned with this error";
  352. // TSIG should have failed, and so the per opcode counter shouldn't be
  353. // incremented.
  354. EXPECT_EQ(0, server.getCounter(Opcode::RESERVED14()));
  355. checkAllRcodeCountersZeroExcept(Rcode::NOTAUTH(), 1);
  356. }
  357. TEST_F(AuthSrvTest, AXFRConnectFail) {
  358. EXPECT_FALSE(xfrout.isConnected()); // check prerequisite
  359. xfrout.disableConnect();
  360. UnitTestUtil::createRequestMessage(request_message, opcode, default_qid,
  361. Name("example.com"), RRClass::IN(),
  362. RRType::AXFR());
  363. createRequestPacket(request_message, IPPROTO_TCP);
  364. server.processMessage(*io_message, *parse_message, *response_obuffer,
  365. &dnsserv);
  366. EXPECT_TRUE(dnsserv.hasAnswer());
  367. headerCheck(*parse_message, default_qid, Rcode::SERVFAIL(),
  368. opcode.getCode(), QR_FLAG, 1, 0, 0, 0);
  369. EXPECT_FALSE(xfrout.isConnected());
  370. }
  371. TEST_F(AuthSrvTest, AXFRSendFail) {
  372. // first send a valid query, making the connection with the xfr process
  373. // open.
  374. UnitTestUtil::createRequestMessage(request_message, opcode, default_qid,
  375. Name("example.com"), RRClass::IN(),
  376. RRType::AXFR());
  377. createRequestPacket(request_message, IPPROTO_TCP);
  378. server.processMessage(*io_message, *parse_message, *response_obuffer,
  379. &dnsserv);
  380. EXPECT_TRUE(xfrout.isConnected());
  381. xfrout.disableSend();
  382. parse_message->clear(Message::PARSE);
  383. response_obuffer->clear();
  384. UnitTestUtil::createRequestMessage(request_message, opcode, default_qid,
  385. Name("example.com"), RRClass::IN(),
  386. RRType::AXFR());
  387. createRequestPacket(request_message, IPPROTO_TCP);
  388. server.processMessage(*io_message, *parse_message, *response_obuffer,
  389. &dnsserv);
  390. EXPECT_TRUE(dnsserv.hasAnswer());
  391. headerCheck(*parse_message, default_qid, Rcode::SERVFAIL(),
  392. opcode.getCode(), QR_FLAG, 1, 0, 0, 0);
  393. // The connection should have been closed due to the send failure.
  394. EXPECT_FALSE(xfrout.isConnected());
  395. }
  396. TEST_F(AuthSrvTest, AXFRDisconnectFail) {
  397. // In our usage disconnect() shouldn't fail. But even if it does,
  398. // it should not disrupt service (so processMessage should have caught it)
  399. xfrout.disableSend();
  400. xfrout.disableDisconnect();
  401. UnitTestUtil::createRequestMessage(request_message, opcode, default_qid,
  402. Name("example.com"), RRClass::IN(),
  403. RRType::AXFR());
  404. createRequestPacket(request_message, IPPROTO_TCP);
  405. EXPECT_NO_THROW(server.processMessage(*io_message, *parse_message,
  406. *response_obuffer, &dnsserv));
  407. // Since the disconnect failed, we should still be 'connected'
  408. EXPECT_TRUE(xfrout.isConnected());
  409. // XXX: we need to re-enable disconnect. otherwise an exception would be
  410. // thrown via the destructor of the server.
  411. xfrout.enableDisconnect();
  412. }
  413. TEST_F(AuthSrvTest, IXFRConnectFail) {
  414. EXPECT_FALSE(xfrout.isConnected()); // check prerequisite
  415. xfrout.disableConnect();
  416. UnitTestUtil::createRequestMessage(request_message, opcode, default_qid,
  417. Name("example.com"), RRClass::IN(),
  418. RRType::IXFR());
  419. createRequestPacket(request_message, IPPROTO_TCP);
  420. server.processMessage(*io_message, *parse_message, *response_obuffer,
  421. &dnsserv);
  422. EXPECT_TRUE(dnsserv.hasAnswer());
  423. headerCheck(*parse_message, default_qid, Rcode::SERVFAIL(),
  424. opcode.getCode(), QR_FLAG, 1, 0, 0, 0);
  425. EXPECT_FALSE(xfrout.isConnected());
  426. }
  427. TEST_F(AuthSrvTest, IXFRSendFail) {
  428. // first send a valid query, making the connection with the xfr process
  429. // open.
  430. UnitTestUtil::createRequestMessage(request_message, opcode, default_qid,
  431. Name("example.com"), RRClass::IN(),
  432. RRType::IXFR());
  433. createRequestPacket(request_message, IPPROTO_TCP);
  434. server.processMessage(*io_message, *parse_message, *response_obuffer,
  435. &dnsserv);
  436. EXPECT_TRUE(xfrout.isConnected());
  437. xfrout.disableSend();
  438. parse_message->clear(Message::PARSE);
  439. response_obuffer->clear();
  440. UnitTestUtil::createRequestMessage(request_message, opcode, default_qid,
  441. Name("example.com"), RRClass::IN(),
  442. RRType::IXFR());
  443. createRequestPacket(request_message, IPPROTO_TCP);
  444. server.processMessage(*io_message, *parse_message, *response_obuffer,
  445. &dnsserv);
  446. EXPECT_TRUE(dnsserv.hasAnswer());
  447. headerCheck(*parse_message, default_qid, Rcode::SERVFAIL(),
  448. opcode.getCode(), QR_FLAG, 1, 0, 0, 0);
  449. // The connection should have been closed due to the send failure.
  450. EXPECT_FALSE(xfrout.isConnected());
  451. }
  452. TEST_F(AuthSrvTest, IXFRDisconnectFail) {
  453. // In our usage disconnect() shouldn't fail, but even if it does,
  454. // procesMessage() should catch it.
  455. xfrout.disableSend();
  456. xfrout.disableDisconnect();
  457. UnitTestUtil::createRequestMessage(request_message, opcode, default_qid,
  458. Name("example.com"), RRClass::IN(),
  459. RRType::IXFR());
  460. createRequestPacket(request_message, IPPROTO_TCP);
  461. EXPECT_NO_THROW(server.processMessage(*io_message, *parse_message,
  462. *response_obuffer, &dnsserv));
  463. EXPECT_TRUE(xfrout.isConnected());
  464. // XXX: we need to re-enable disconnect. otherwise an exception would be
  465. // thrown via the destructor of the server.
  466. xfrout.enableDisconnect();
  467. }
  468. TEST_F(AuthSrvTest, notify) {
  469. UnitTestUtil::createRequestMessage(request_message, Opcode::NOTIFY(),
  470. default_qid, Name("example.com"),
  471. RRClass::IN(), RRType::SOA());
  472. request_message.setHeaderFlag(Message::HEADERFLAG_AA);
  473. createRequestPacket(request_message, IPPROTO_UDP);
  474. server.processMessage(*io_message, *parse_message, *response_obuffer,
  475. &dnsserv);
  476. EXPECT_TRUE(dnsserv.hasAnswer());
  477. // An internal command message should have been created and sent to an
  478. // external module. Check them.
  479. EXPECT_EQ("Zonemgr", notify_session.getMessageDest());
  480. EXPECT_EQ("notify",
  481. notify_session.getSentMessage()->get("command")->get(0)->stringValue());
  482. ConstElementPtr notify_args =
  483. notify_session.getSentMessage()->get("command")->get(1);
  484. EXPECT_EQ("example.com.", notify_args->get("zone_name")->stringValue());
  485. EXPECT_EQ(DEFAULT_REMOTE_ADDRESS,
  486. notify_args->get("master")->stringValue());
  487. EXPECT_EQ("IN", notify_args->get("zone_class")->stringValue());
  488. // On success, the server should return a response to the notify.
  489. headerCheck(*parse_message, default_qid, Rcode::NOERROR(),
  490. Opcode::NOTIFY().getCode(), QR_FLAG | AA_FLAG, 1, 0, 0, 0);
  491. // The question must be identical to that of the received notify
  492. ConstQuestionPtr question = *parse_message->beginQuestion();
  493. EXPECT_EQ(Name("example.com"), question->getName());
  494. EXPECT_EQ(RRClass::IN(), question->getClass());
  495. EXPECT_EQ(RRType::SOA(), question->getType());
  496. checkAllRcodeCountersZeroExcept(Rcode::NOERROR(), 1);
  497. }
  498. TEST_F(AuthSrvTest, notifyForCHClass) {
  499. // Same as the previous test, but for the CH RRClass.
  500. UnitTestUtil::createRequestMessage(request_message, Opcode::NOTIFY(),
  501. default_qid, Name("example.com"),
  502. RRClass::CH(), RRType::SOA());
  503. request_message.setHeaderFlag(Message::HEADERFLAG_AA);
  504. createRequestPacket(request_message, IPPROTO_UDP);
  505. server.processMessage(*io_message, *parse_message, *response_obuffer,
  506. &dnsserv);
  507. EXPECT_TRUE(dnsserv.hasAnswer());
  508. // Other conditions should be the same, so simply confirm the RR class is
  509. // set correctly.
  510. ConstElementPtr notify_args =
  511. notify_session.getSentMessage()->get("command")->get(1);
  512. EXPECT_EQ("CH", notify_args->get("zone_class")->stringValue());
  513. }
  514. TEST_F(AuthSrvTest, notifyEmptyQuestion) {
  515. request_message.clear(Message::RENDER);
  516. request_message.setOpcode(Opcode::NOTIFY());
  517. request_message.setRcode(Rcode::NOERROR());
  518. request_message.setHeaderFlag(Message::HEADERFLAG_AA);
  519. request_message.setQid(default_qid);
  520. request_message.toWire(request_renderer);
  521. createRequestPacket(request_message, IPPROTO_UDP);
  522. server.processMessage(*io_message, *parse_message, *response_obuffer,
  523. &dnsserv);
  524. EXPECT_TRUE(dnsserv.hasAnswer());
  525. headerCheck(*parse_message, default_qid, Rcode::FORMERR(),
  526. Opcode::NOTIFY().getCode(), QR_FLAG, 0, 0, 0, 0);
  527. }
  528. TEST_F(AuthSrvTest, notifyMultiQuestions) {
  529. UnitTestUtil::createRequestMessage(request_message, Opcode::NOTIFY(),
  530. default_qid, Name("example.com"),
  531. RRClass::IN(), RRType::SOA());
  532. // add one more SOA question
  533. request_message.addQuestion(Question(Name("example.com"), RRClass::IN(),
  534. RRType::SOA()));
  535. request_message.setHeaderFlag(Message::HEADERFLAG_AA);
  536. createRequestPacket(request_message, IPPROTO_UDP);
  537. server.processMessage(*io_message, *parse_message, *response_obuffer,
  538. &dnsserv);
  539. EXPECT_TRUE(dnsserv.hasAnswer());
  540. headerCheck(*parse_message, default_qid, Rcode::FORMERR(),
  541. Opcode::NOTIFY().getCode(), QR_FLAG, 2, 0, 0, 0);
  542. }
  543. TEST_F(AuthSrvTest, notifyNonSOAQuestion) {
  544. UnitTestUtil::createRequestMessage(request_message, Opcode::NOTIFY(),
  545. default_qid, Name("example.com"),
  546. RRClass::IN(), RRType::NS());
  547. request_message.setHeaderFlag(Message::HEADERFLAG_AA);
  548. createRequestPacket(request_message, IPPROTO_UDP);
  549. server.processMessage(*io_message, *parse_message, *response_obuffer,
  550. &dnsserv);
  551. EXPECT_TRUE(dnsserv.hasAnswer());
  552. headerCheck(*parse_message, default_qid, Rcode::FORMERR(),
  553. Opcode::NOTIFY().getCode(), QR_FLAG, 1, 0, 0, 0);
  554. }
  555. TEST_F(AuthSrvTest, notifyWithoutAA) {
  556. // implicitly leave the AA bit off. our implementation will accept it.
  557. UnitTestUtil::createRequestMessage(request_message, Opcode::NOTIFY(),
  558. default_qid, Name("example.com"),
  559. RRClass::IN(), RRType::SOA());
  560. createRequestPacket(request_message, IPPROTO_UDP);
  561. server.processMessage(*io_message, *parse_message, *response_obuffer,
  562. &dnsserv);
  563. EXPECT_TRUE(dnsserv.hasAnswer());
  564. headerCheck(*parse_message, default_qid, Rcode::NOERROR(),
  565. Opcode::NOTIFY().getCode(), QR_FLAG | AA_FLAG, 1, 0, 0, 0);
  566. }
  567. TEST_F(AuthSrvTest, notifyWithErrorRcode) {
  568. UnitTestUtil::createRequestMessage(request_message, Opcode::NOTIFY(),
  569. default_qid, Name("example.com"),
  570. RRClass::IN(), RRType::SOA());
  571. request_message.setHeaderFlag(Message::HEADERFLAG_AA);
  572. request_message.setRcode(Rcode::SERVFAIL());
  573. createRequestPacket(request_message, IPPROTO_UDP);
  574. server.processMessage(*io_message, *parse_message, *response_obuffer,
  575. &dnsserv);
  576. EXPECT_TRUE(dnsserv.hasAnswer());
  577. headerCheck(*parse_message, default_qid, Rcode::NOERROR(),
  578. Opcode::NOTIFY().getCode(), QR_FLAG | AA_FLAG, 1, 0, 0, 0);
  579. }
  580. TEST_F(AuthSrvTest, notifyWithoutSession) {
  581. server.setXfrinSession(NULL);
  582. UnitTestUtil::createRequestMessage(request_message, Opcode::NOTIFY(),
  583. default_qid, Name("example.com"),
  584. RRClass::IN(), RRType::SOA());
  585. request_message.setHeaderFlag(Message::HEADERFLAG_AA);
  586. createRequestPacket(request_message, IPPROTO_UDP);
  587. // we simply ignore the notify and let it be resent if an internal error
  588. // happens.
  589. server.processMessage(*io_message, *parse_message, *response_obuffer,
  590. &dnsserv);
  591. EXPECT_FALSE(dnsserv.hasAnswer());
  592. }
  593. TEST_F(AuthSrvTest, notifySendFail) {
  594. notify_session.disableSend();
  595. UnitTestUtil::createRequestMessage(request_message, Opcode::NOTIFY(),
  596. default_qid, Name("example.com"),
  597. RRClass::IN(), RRType::SOA());
  598. request_message.setHeaderFlag(Message::HEADERFLAG_AA);
  599. createRequestPacket(request_message, IPPROTO_UDP);
  600. server.processMessage(*io_message, *parse_message, *response_obuffer,
  601. &dnsserv);
  602. EXPECT_FALSE(dnsserv.hasAnswer());
  603. }
  604. TEST_F(AuthSrvTest, notifyReceiveFail) {
  605. notify_session.disableReceive();
  606. UnitTestUtil::createRequestMessage(request_message, Opcode::NOTIFY(),
  607. default_qid, Name("example.com"),
  608. RRClass::IN(), RRType::SOA());
  609. request_message.setHeaderFlag(Message::HEADERFLAG_AA);
  610. createRequestPacket(request_message, IPPROTO_UDP);
  611. server.processMessage(*io_message, *parse_message, *response_obuffer,
  612. &dnsserv);
  613. EXPECT_FALSE(dnsserv.hasAnswer());
  614. }
  615. TEST_F(AuthSrvTest, notifyWithBogusSessionMessage) {
  616. notify_session.setMessage(Element::fromJSON("{\"foo\": 1}"));
  617. UnitTestUtil::createRequestMessage(request_message, Opcode::NOTIFY(),
  618. default_qid, Name("example.com"),
  619. RRClass::IN(), RRType::SOA());
  620. request_message.setHeaderFlag(Message::HEADERFLAG_AA);
  621. createRequestPacket(request_message, IPPROTO_UDP);
  622. server.processMessage(*io_message, *parse_message, *response_obuffer,
  623. &dnsserv);
  624. EXPECT_FALSE(dnsserv.hasAnswer());
  625. }
  626. TEST_F(AuthSrvTest, notifyWithSessionMessageError) {
  627. notify_session.setMessage(
  628. Element::fromJSON("{\"result\": [1, \"FAIL\"]}"));
  629. UnitTestUtil::createRequestMessage(request_message, Opcode::NOTIFY(),
  630. default_qid, Name("example.com"),
  631. RRClass::IN(), RRType::SOA());
  632. request_message.setHeaderFlag(Message::HEADERFLAG_AA);
  633. createRequestPacket(request_message, IPPROTO_UDP);
  634. server.processMessage(*io_message, *parse_message, *response_obuffer,
  635. &dnsserv);
  636. EXPECT_FALSE(dnsserv.hasAnswer());
  637. }
  638. void
  639. updateDatabase(AuthSrv* server, const char* params) {
  640. const ConstElementPtr config(Element::fromJSON("{"
  641. "\"IN\": [{"
  642. " \"type\": \"sqlite3\","
  643. " \"params\": " + string(params) +
  644. "}]}"));
  645. DataSourceConfigurator::testReconfigure(server, config);
  646. }
  647. void
  648. updateInMemory(AuthSrv* server, const char* origin, const char* filename) {
  649. const ConstElementPtr config(Element::fromJSON("{"
  650. "\"IN\": [{"
  651. " \"type\": \"MasterFiles\","
  652. " \"params\": {"
  653. " \"" + string(origin) + "\": \"" + string(filename) + "\""
  654. " },"
  655. " \"cache-enable\": true"
  656. "}],"
  657. "\"CH\": [{"
  658. " \"type\": \"static\","
  659. " \"params\": \"" + string(STATIC_DSRC_FILE) + "\""
  660. "}]}"));
  661. DataSourceConfigurator::testReconfigure(server, config);
  662. }
  663. void
  664. updateBuiltin(AuthSrv* server) {
  665. const ConstElementPtr config(Element::fromJSON("{"
  666. "\"CH\": [{"
  667. " \"type\": \"static\","
  668. " \"params\": \"" + string(STATIC_DSRC_FILE) + "\""
  669. "}]}"));
  670. DataSourceConfigurator::testReconfigure(server, config);
  671. }
  672. // Try giving the server a TSIG signed request and see it can anwer signed as
  673. // well
  674. #ifdef USE_STATIC_LINK
  675. TEST_F(AuthSrvTest, DISABLED_TSIGSigned) { // Needs builtin
  676. #else
  677. TEST_F(AuthSrvTest, TSIGSigned) {
  678. #endif
  679. // Prepare key, the client message, etc
  680. updateBuiltin(&server);
  681. const TSIGKey key("key:c2VjcmV0Cg==:hmac-sha1");
  682. TSIGContext context(key);
  683. UnitTestUtil::createRequestMessage(request_message, opcode, default_qid,
  684. Name("VERSION.BIND."), RRClass::CH(),
  685. RRType::TXT());
  686. createRequestPacket(request_message, IPPROTO_UDP, &context);
  687. // Run the message through the server
  688. boost::shared_ptr<TSIGKeyRing> keyring(new TSIGKeyRing);
  689. keyring->add(key);
  690. server.setTSIGKeyRing(&keyring);
  691. server.processMessage(*io_message, *parse_message, *response_obuffer,
  692. &dnsserv);
  693. // What did we get?
  694. EXPECT_TRUE(dnsserv.hasAnswer());
  695. headerCheck(*parse_message, default_qid, Rcode::NOERROR(),
  696. opcode.getCode(), QR_FLAG | AA_FLAG, 1, 1, 1, 0);
  697. // We need to parse the message ourself, or getTSIGRecord won't work
  698. InputBuffer ib(response_obuffer->getData(), response_obuffer->getLength());
  699. Message m(Message::PARSE);
  700. m.fromWire(ib);
  701. const TSIGRecord* tsig = m.getTSIGRecord();
  702. ASSERT_TRUE(tsig != NULL) << "Missing TSIG signature";
  703. TSIGError error(context.verify(tsig, response_obuffer->getData(),
  704. response_obuffer->getLength()));
  705. EXPECT_EQ(TSIGError::NOERROR(), error) <<
  706. "The server signed the response, but it doesn't seem to be valid";
  707. checkAllRcodeCountersZeroExcept(Rcode::NOERROR(), 1);
  708. }
  709. // Same test emulating the UDPServer class behavior (defined in libasiolink).
  710. // This is not a good test in that it assumes internal implementation details
  711. // of UDPServer, but we've encountered a regression due to the introduction
  712. // of that class, so we add a test for that case to prevent such a regression
  713. // in future.
  714. // Besides, the generalization of UDPServer is probably too much for the
  715. // authoritative only server in terms of performance, and it's quite likely
  716. // we need to drop it for the authoritative server implementation.
  717. // At that point we can drop this test, too.
  718. #ifdef USE_STATIC_LINK
  719. TEST_F(AuthSrvTest, DISABLED_builtInQueryViaDNSServer) {
  720. #else
  721. TEST_F(AuthSrvTest, builtInQueryViaDNSServer) {
  722. #endif
  723. updateBuiltin(&server);
  724. UnitTestUtil::createRequestMessage(request_message, Opcode::QUERY(),
  725. default_qid, Name("VERSION.BIND."),
  726. RRClass::CH(), RRType::TXT());
  727. createRequestPacket(request_message, IPPROTO_UDP);
  728. (*server.getDNSLookupProvider())(*io_message, parse_message,
  729. response_message,
  730. response_obuffer, &dnsserv);
  731. (*server.getDNSAnswerProvider())(*io_message, parse_message,
  732. response_message, response_obuffer);
  733. createBuiltinVersionResponse(default_qid, response_data);
  734. EXPECT_PRED_FORMAT4(UnitTestUtil::matchWireData,
  735. response_obuffer->getData(),
  736. response_obuffer->getLength(),
  737. &response_data[0], response_data.size());
  738. }
  739. // In the following tests we confirm the response data is rendered in
  740. // wire format in the expected way.
  741. // The most primitive check: checking the result of the processMessage()
  742. // method
  743. #ifdef USE_STATIC_LINK
  744. TEST_F(AuthSrvTest, DISABLED_builtInQuery) {
  745. #else
  746. TEST_F(AuthSrvTest, builtInQuery) {
  747. #endif
  748. updateBuiltin(&server);
  749. UnitTestUtil::createRequestMessage(request_message, Opcode::QUERY(),
  750. default_qid, Name("VERSION.BIND."),
  751. RRClass::CH(), RRType::TXT());
  752. createRequestPacket(request_message, IPPROTO_UDP);
  753. server.processMessage(*io_message, *parse_message, *response_obuffer,
  754. &dnsserv);
  755. createBuiltinVersionResponse(default_qid, response_data);
  756. EXPECT_PRED_FORMAT4(UnitTestUtil::matchWireData,
  757. response_obuffer->getData(),
  758. response_obuffer->getLength(),
  759. &response_data[0], response_data.size());
  760. checkAllRcodeCountersZeroExcept(Rcode::NOERROR(), 1);
  761. }
  762. // Same type of test as builtInQueryViaDNSServer but for an error response.
  763. #ifdef USE_STATIC_LINK
  764. TEST_F(AuthSrvTest, DISABLED_iqueryViaDNSServer) { // Needs builtin
  765. #else
  766. TEST_F(AuthSrvTest, iqueryViaDNSServer) { // Needs builtin
  767. #endif
  768. updateBuiltin(&server);
  769. createDataFromFile("iquery_fromWire.wire");
  770. (*server.getDNSLookupProvider())(*io_message, parse_message,
  771. response_message,
  772. response_obuffer, &dnsserv);
  773. (*server.getDNSAnswerProvider())(*io_message, parse_message,
  774. response_message, response_obuffer);
  775. UnitTestUtil::readWireData("iquery_response_fromWire.wire",
  776. response_data);
  777. EXPECT_PRED_FORMAT4(UnitTestUtil::matchWireData,
  778. response_obuffer->getData(),
  779. response_obuffer->getLength(),
  780. &response_data[0], response_data.size());
  781. }
  782. // Install a Sqlite3 data source with testing data.
  783. #ifdef USE_STATIC_LINK
  784. TEST_F(AuthSrvTest, DISABLED_updateConfig) {
  785. #else
  786. TEST_F(AuthSrvTest, updateConfig) {
  787. #endif
  788. updateDatabase(&server, CONFIG_TESTDB);
  789. // query for existent data in the installed data source. The resulting
  790. // response should have the AA flag on, and have an RR in each answer
  791. // and authority section.
  792. createDataFromFile("examplequery_fromWire.wire");
  793. server.processMessage(*io_message, *parse_message, *response_obuffer,
  794. &dnsserv);
  795. EXPECT_TRUE(dnsserv.hasAnswer());
  796. headerCheck(*parse_message, default_qid, Rcode::NOERROR(), opcode.getCode(),
  797. QR_FLAG | AA_FLAG, 1, 1, 1, 0);
  798. }
  799. #ifdef USE_STATIC_LINK
  800. TEST_F(AuthSrvTest, DISABLED_datasourceFail) {
  801. #else
  802. TEST_F(AuthSrvTest, datasourceFail) {
  803. #endif
  804. updateDatabase(&server, CONFIG_TESTDB);
  805. // This query will hit a corrupted entry of the data source (the zoneload
  806. // tool and the data source itself naively accept it). This will result
  807. // in a SERVFAIL response, and the answer and authority sections should
  808. // be empty.
  809. createDataFromFile("badExampleQuery_fromWire.wire");
  810. server.processMessage(*io_message, *parse_message, *response_obuffer,
  811. &dnsserv);
  812. EXPECT_TRUE(dnsserv.hasAnswer());
  813. headerCheck(*parse_message, default_qid, Rcode::SERVFAIL(),
  814. opcode.getCode(), QR_FLAG, 1, 0, 0, 0);
  815. }
  816. #ifdef USE_STATIC_LINK
  817. TEST_F(AuthSrvTest, DISABLED_updateConfigFail) {
  818. #else
  819. TEST_F(AuthSrvTest, updateConfigFail) {
  820. #endif
  821. // First, load a valid data source.
  822. updateDatabase(&server, CONFIG_TESTDB);
  823. // Next, try to update it with a non-existent one. This should fail.
  824. EXPECT_THROW(updateDatabase(&server, BADCONFIG_TESTDB),
  825. isc::datasrc::DataSourceError);
  826. // The original data source should still exist.
  827. createDataFromFile("examplequery_fromWire.wire");
  828. server.processMessage(*io_message, *parse_message, *response_obuffer,
  829. &dnsserv);
  830. EXPECT_TRUE(dnsserv.hasAnswer());
  831. headerCheck(*parse_message, default_qid, Rcode::NOERROR(),
  832. opcode.getCode(), QR_FLAG | AA_FLAG, 1, 1, 1, 0);
  833. }
  834. TEST_F(AuthSrvTest, updateWithInMemoryClient) {
  835. // Test configuring memory data source. Detailed test cases are covered
  836. // in the configuration tests. We only check the AuthSrv interface here.
  837. // Create an empty in-memory
  838. const ConstElementPtr config(Element::fromJSON("{"
  839. "\"IN\": [{"
  840. " \"type\": \"MasterFiles\","
  841. " \"params\": {},"
  842. " \"cache-enable\": true"
  843. "}]}"));
  844. DataSourceConfigurator::testReconfigure(&server, config);
  845. // after successful configuration, we should have one (with empty zoneset).
  846. // The memory data source is empty, should return REFUSED rcode.
  847. createDataFromFile("examplequery_fromWire.wire");
  848. server.processMessage(*io_message, *parse_message, *response_obuffer,
  849. &dnsserv);
  850. EXPECT_TRUE(dnsserv.hasAnswer());
  851. headerCheck(*parse_message, default_qid, Rcode::REFUSED(),
  852. opcode.getCode(), QR_FLAG, 1, 0, 0, 0);
  853. }
  854. #ifdef USE_STATIC_LINK
  855. TEST_F(AuthSrvTest, DISABLED_queryWithInMemoryClientNoDNSSEC) {
  856. #else
  857. TEST_F(AuthSrvTest, queryWithInMemoryClientNoDNSSEC) {
  858. #endif
  859. // In this example, we do simple check that query is handled from the
  860. // query handler class, and confirm it returns no error and a non empty
  861. // answer section. Detailed examination on the response content
  862. // for various types of queries are tested in the query tests.
  863. updateInMemory(&server, "example.", CONFIG_INMEMORY_EXAMPLE);
  864. createDataFromFile("nsec3query_nodnssec_fromWire.wire");
  865. server.processMessage(*io_message, *parse_message, *response_obuffer,
  866. &dnsserv);
  867. EXPECT_TRUE(dnsserv.hasAnswer());
  868. headerCheck(*parse_message, default_qid, Rcode::NOERROR(),
  869. opcode.getCode(), QR_FLAG | AA_FLAG, 1, 1, 2, 1);
  870. }
  871. #ifdef USE_STATIC_LINK
  872. TEST_F(AuthSrvTest, DISABLED_queryWithInMemoryClientDNSSEC) {
  873. #else
  874. TEST_F(AuthSrvTest, queryWithInMemoryClientDNSSEC) {
  875. #endif
  876. // Similar to the previous test, but the query has the DO bit on.
  877. // The response should contain RRSIGs, and should have more RRs than
  878. // the previous case.
  879. updateInMemory(&server, "example.", CONFIG_INMEMORY_EXAMPLE);
  880. createDataFromFile("nsec3query_fromWire.wire");
  881. server.processMessage(*io_message, *parse_message, *response_obuffer,
  882. &dnsserv);
  883. EXPECT_TRUE(dnsserv.hasAnswer());
  884. headerCheck(*parse_message, default_qid, Rcode::NOERROR(),
  885. opcode.getCode(), QR_FLAG | AA_FLAG, 1, 2, 3, 3);
  886. }
  887. TEST_F(AuthSrvTest,
  888. #ifdef USE_STATIC_LINK
  889. DISABLED_chQueryWithInMemoryClient
  890. #else
  891. chQueryWithInMemoryClient
  892. #endif
  893. )
  894. {
  895. // Set up the in-memory
  896. updateInMemory(&server, "example.", CONFIG_INMEMORY_EXAMPLE);
  897. // This shouldn't affect the result of class CH query
  898. UnitTestUtil::createRequestMessage(request_message, Opcode::QUERY(),
  899. default_qid, Name("VERSION.BIND."),
  900. RRClass::CH(), RRType::TXT());
  901. createRequestPacket(request_message, IPPROTO_UDP);
  902. server.processMessage(*io_message, *parse_message, *response_obuffer,
  903. &dnsserv);
  904. EXPECT_TRUE(dnsserv.hasAnswer());
  905. headerCheck(*parse_message, default_qid, Rcode::NOERROR(),
  906. opcode.getCode(), QR_FLAG | AA_FLAG, 1, 1, 1, 0);
  907. }
  908. // Submit UDP normal query and check query counter
  909. TEST_F(AuthSrvTest, queryCounterUDPNormal) {
  910. // The counter should be initialized to 0.
  911. EXPECT_EQ(0, server.getCounter(AuthCounters::SERVER_UDP_QUERY));
  912. // Create UDP message and process.
  913. UnitTestUtil::createRequestMessage(request_message, Opcode::QUERY(),
  914. default_qid, Name("example.com"),
  915. RRClass::IN(), RRType::NS());
  916. createRequestPacket(request_message, IPPROTO_UDP);
  917. server.processMessage(*io_message, *parse_message, *response_obuffer,
  918. &dnsserv);
  919. // After processing UDP query, the counter should be 1.
  920. EXPECT_EQ(1, server.getCounter(AuthCounters::SERVER_UDP_QUERY));
  921. // The counter for opcode Query should also be one
  922. EXPECT_EQ(1, server.getCounter(Opcode::QUERY()));
  923. // The counter for REFUSED responses should also be one, the rest zero
  924. checkAllRcodeCountersZeroExcept(Rcode::REFUSED(), 1);
  925. }
  926. // Submit TCP normal query and check query counter
  927. TEST_F(AuthSrvTest, queryCounterTCPNormal) {
  928. // The counter should be initialized to 0.
  929. EXPECT_EQ(0, server.getCounter(AuthCounters::SERVER_TCP_QUERY));
  930. // Create TCP message and process.
  931. UnitTestUtil::createRequestMessage(request_message, Opcode::QUERY(),
  932. default_qid, Name("example.com"),
  933. RRClass::IN(), RRType::NS());
  934. createRequestPacket(request_message, IPPROTO_TCP);
  935. server.processMessage(*io_message, *parse_message, *response_obuffer,
  936. &dnsserv);
  937. // After processing TCP query, the counter should be 1.
  938. EXPECT_EQ(1, server.getCounter(AuthCounters::SERVER_TCP_QUERY));
  939. // The counter for SUCCESS responses should also be one
  940. EXPECT_EQ(1, server.getCounter(Opcode::QUERY()));
  941. // The counter for REFUSED responses should also be one, the rest zero
  942. checkAllRcodeCountersZeroExcept(Rcode::REFUSED(), 1);
  943. }
  944. // Submit TCP AXFR query and check query counter
  945. TEST_F(AuthSrvTest, queryCounterTCPAXFR) {
  946. // The counter should be initialized to 0.
  947. EXPECT_EQ(0, server.getCounter(AuthCounters::SERVER_TCP_QUERY));
  948. UnitTestUtil::createRequestMessage(request_message, opcode, default_qid,
  949. Name("example.com"), RRClass::IN(), RRType::AXFR());
  950. createRequestPacket(request_message, IPPROTO_TCP);
  951. // On success, the AXFR query has been passed to a separate process,
  952. // so auth itself shouldn't respond.
  953. server.processMessage(*io_message, *parse_message, *response_obuffer,
  954. &dnsserv);
  955. EXPECT_FALSE(dnsserv.hasAnswer());
  956. // After processing TCP AXFR query, the counter should be 1.
  957. EXPECT_EQ(1, server.getCounter(AuthCounters::SERVER_TCP_QUERY));
  958. // No rcodes should be incremented
  959. checkAllRcodeCountersZero();
  960. }
  961. // Submit TCP IXFR query and check query counter
  962. TEST_F(AuthSrvTest, queryCounterTCPIXFR) {
  963. // The counter should be initialized to 0.
  964. EXPECT_EQ(0, server.getCounter(AuthCounters::SERVER_TCP_QUERY));
  965. UnitTestUtil::createRequestMessage(request_message, opcode, default_qid,
  966. Name("example.com"), RRClass::IN(), RRType::IXFR());
  967. createRequestPacket(request_message, IPPROTO_TCP);
  968. // On success, the IXFR query has been passed to a separate process,
  969. // so auth itself shouldn't respond.
  970. server.processMessage(*io_message, *parse_message, *response_obuffer,
  971. &dnsserv);
  972. EXPECT_FALSE(dnsserv.hasAnswer());
  973. // After processing TCP IXFR query, the counter should be 1.
  974. EXPECT_EQ(1, server.getCounter(AuthCounters::SERVER_TCP_QUERY));
  975. }
  976. TEST_F(AuthSrvTest, queryCounterOpcodes) {
  977. for (int i = 0; i < 16; ++i) {
  978. // The counter should be initialized to 0.
  979. EXPECT_EQ(0, server.getCounter(Opcode(i)));
  980. // For each possible opcode, create a request message and send it
  981. UnitTestUtil::createRequestMessage(request_message, Opcode(i),
  982. default_qid, Name("example.com"),
  983. RRClass::IN(), RRType::NS());
  984. createRequestPacket(request_message, IPPROTO_UDP);
  985. // "send" the request N-th times where N is i + 1 for i-th code.
  986. // we intentionally use different values for each code
  987. for (int j = 0; j <= i; ++j) {
  988. parse_message->clear(Message::PARSE);
  989. server.processMessage(*io_message, *parse_message,
  990. *response_obuffer,
  991. &dnsserv);
  992. }
  993. // Confirm the counter.
  994. EXPECT_EQ(i + 1, server.getCounter(Opcode(i)));
  995. }
  996. }
  997. // class for queryCounterUnexpected test
  998. // getProtocol() returns IPPROTO_IP
  999. class DummyUnknownSocket : public IOSocket {
  1000. public:
  1001. DummyUnknownSocket() {}
  1002. virtual int getNative() const { return (0); }
  1003. virtual int getProtocol() const { return (IPPROTO_IP); }
  1004. };
  1005. // function for queryCounterUnexpected test
  1006. // returns a reference to a static object of DummyUnknownSocket
  1007. IOSocket&
  1008. getDummyUnknownSocket() {
  1009. static DummyUnknownSocket socket;
  1010. return (socket);
  1011. }
  1012. // Submit unexpected type of query and check it is ignored
  1013. TEST_F(AuthSrvTest, queryCounterUnexpected) {
  1014. // This code isn't exception safe, but we'd rather keep the code
  1015. // simpler and more readable as this is only for tests
  1016. // Create UDP query packet.
  1017. UnitTestUtil::createRequestMessage(request_message, Opcode::QUERY(),
  1018. default_qid, Name("example.com"),
  1019. RRClass::IN(), RRType::NS());
  1020. createRequestPacket(request_message, IPPROTO_UDP);
  1021. // Modify the message.
  1022. delete io_message;
  1023. endpoint = IOEndpoint::create(IPPROTO_UDP,
  1024. IOAddress(DEFAULT_REMOTE_ADDRESS), 53210);
  1025. io_message = new IOMessage(request_renderer.getData(),
  1026. request_renderer.getLength(),
  1027. getDummyUnknownSocket(), *endpoint);
  1028. EXPECT_FALSE(dnsserv.hasAnswer());
  1029. }
  1030. TEST_F(AuthSrvTest, stop) {
  1031. // normal case is covered in command_unittest.cc. we should primarily
  1032. // test it here, but the current design of the stop test takes time,
  1033. // so we consolidate the cases in the command tests.
  1034. // If/when the interval timer has finer granularity we'll probably add
  1035. // our own tests here, so we keep this empty test case.
  1036. }
  1037. TEST_F(AuthSrvTest, listenAddresses) {
  1038. isc::testutils::portconfig::listenAddresses(server);
  1039. // Check it requests the correct addresses
  1040. const char* tokens[] = {
  1041. "TCP:127.0.0.1:53210:1",
  1042. "UDP:127.0.0.1:53210:2",
  1043. "TCP:::1:53210:3",
  1044. "UDP:::1:53210:4",
  1045. NULL
  1046. };
  1047. sock_requestor_.checkTokens(tokens, sock_requestor_.given_tokens_,
  1048. "Given tokens");
  1049. // It returns back to empty set of addresses afterwards, so
  1050. // they should be released
  1051. sock_requestor_.checkTokens(tokens, sock_requestor_.released_tokens_,
  1052. "Released tokens");
  1053. }
  1054. TEST_F(AuthSrvTest, processNormalQuery_reuseRenderer1) {
  1055. UnitTestUtil::createRequestMessage(request_message, Opcode::QUERY(),
  1056. default_qid, Name("example.com"),
  1057. RRClass::IN(), RRType::NS());
  1058. request_message.setHeaderFlag(Message::HEADERFLAG_AA);
  1059. createRequestPacket(request_message, IPPROTO_UDP);
  1060. server.processMessage(*io_message, *parse_message, *response_obuffer,
  1061. &dnsserv);
  1062. EXPECT_NE(request_message.getRcode(), parse_message->getRcode());
  1063. }
  1064. TEST_F(AuthSrvTest, processNormalQuery_reuseRenderer2) {
  1065. UnitTestUtil::createRequestMessage(request_message, Opcode::QUERY(),
  1066. default_qid, Name("example.com"),
  1067. RRClass::IN(), RRType::SOA());
  1068. request_message.setHeaderFlag(Message::HEADERFLAG_AA);
  1069. createRequestPacket(request_message, IPPROTO_UDP);
  1070. server.processMessage(*io_message, *parse_message, *response_obuffer,
  1071. &dnsserv);
  1072. ConstQuestionPtr question = *parse_message->beginQuestion();
  1073. EXPECT_STRNE(question->getType().toText().c_str(),
  1074. RRType::NS().toText().c_str());
  1075. }
  1076. //
  1077. // Tests for catching exceptions in various stages of the query processing
  1078. //
  1079. // These tests work by defining two proxy classes, that act as an in-memory
  1080. // client by default, but can throw exceptions at various points.
  1081. //
  1082. namespace {
  1083. /// The possible methods to throw in, either in FakeClient or
  1084. /// FakeZoneFinder
  1085. enum ThrowWhen {
  1086. THROW_NEVER,
  1087. THROW_AT_FIND_ZONE,
  1088. THROW_AT_GET_ORIGIN,
  1089. THROW_AT_GET_CLASS,
  1090. THROW_AT_FIND,
  1091. THROW_AT_FIND_ALL,
  1092. THROW_AT_FIND_NSEC3
  1093. };
  1094. /// convenience function to check whether and what to throw
  1095. void
  1096. checkThrow(ThrowWhen method, ThrowWhen throw_at, bool isc_exception) {
  1097. if (method == throw_at) {
  1098. if (isc_exception) {
  1099. isc_throw(isc::Exception, "foo");
  1100. } else {
  1101. throw std::exception();
  1102. }
  1103. }
  1104. }
  1105. /// \brief proxy class for the ZoneFinder returned by the Client
  1106. /// proxied by FakeClient
  1107. ///
  1108. /// See the documentation for FakeClient for more information,
  1109. /// all methods simply check whether they should throw, and if not, call
  1110. /// their proxied equivalent.
  1111. class FakeZoneFinder : public isc::datasrc::ZoneFinder {
  1112. public:
  1113. FakeZoneFinder(isc::datasrc::ZoneFinderPtr zone_finder,
  1114. ThrowWhen throw_when, bool isc_exception,
  1115. ConstRRsetPtr fake_rrset) :
  1116. real_zone_finder_(zone_finder),
  1117. throw_when_(throw_when),
  1118. isc_exception_(isc_exception),
  1119. fake_rrset_(fake_rrset)
  1120. {}
  1121. virtual isc::dns::Name
  1122. getOrigin() const {
  1123. checkThrow(THROW_AT_GET_ORIGIN, throw_when_, isc_exception_);
  1124. return (real_zone_finder_->getOrigin());
  1125. }
  1126. virtual isc::dns::RRClass
  1127. getClass() const {
  1128. checkThrow(THROW_AT_GET_CLASS, throw_when_, isc_exception_);
  1129. return (real_zone_finder_->getClass());
  1130. }
  1131. virtual isc::datasrc::ZoneFinderContextPtr
  1132. find(const isc::dns::Name& name,
  1133. const isc::dns::RRType& type,
  1134. isc::datasrc::ZoneFinder::FindOptions options)
  1135. {
  1136. using namespace isc::datasrc;
  1137. checkThrow(THROW_AT_FIND, throw_when_, isc_exception_);
  1138. // If faked RRset was specified on construction and it matches the
  1139. // query, return it instead of searching the real data source.
  1140. if (fake_rrset_ && fake_rrset_->getName() == name &&
  1141. fake_rrset_->getType() == type)
  1142. {
  1143. return (ZoneFinderContextPtr(new ZoneFinder::Context(
  1144. *this, options,
  1145. ResultContext(SUCCESS,
  1146. fake_rrset_))));
  1147. }
  1148. return (real_zone_finder_->find(name, type, options));
  1149. }
  1150. virtual isc::datasrc::ZoneFinderContextPtr
  1151. findAll(const isc::dns::Name& name,
  1152. std::vector<isc::dns::ConstRRsetPtr> &target,
  1153. const FindOptions options = FIND_DEFAULT)
  1154. {
  1155. checkThrow(THROW_AT_FIND_ALL, throw_when_, isc_exception_);
  1156. return (real_zone_finder_->findAll(name, target, options));
  1157. }
  1158. virtual FindNSEC3Result
  1159. findNSEC3(const isc::dns::Name& name, bool recursive) {
  1160. checkThrow(THROW_AT_FIND_NSEC3, throw_when_, isc_exception_);
  1161. return (real_zone_finder_->findNSEC3(name, recursive));
  1162. }
  1163. private:
  1164. isc::datasrc::ZoneFinderPtr real_zone_finder_;
  1165. ThrowWhen throw_when_;
  1166. bool isc_exception_;
  1167. ConstRRsetPtr fake_rrset_;
  1168. };
  1169. /// \brief Proxy FakeClient that can throw exceptions at specified times
  1170. ///
  1171. /// Currently it is used as an 'InMemoryClient' using setInMemoryClient,
  1172. /// but it is in effect a general datasource client.
  1173. class FakeClient : public isc::datasrc::DataSourceClient {
  1174. public:
  1175. /// \brief Create a proxy memory client
  1176. ///
  1177. /// \param real_client The real (in-memory) client to proxy
  1178. /// \param throw_when if set to any value other than never, that is
  1179. /// the method that will throw an exception (either in this
  1180. /// class or the related FakeZoneFinder)
  1181. /// \param isc_exception if true, throw isc::Exception, otherwise,
  1182. /// throw std::exception
  1183. /// \param fake_rrset If non NULL, it will be used as an answer to
  1184. /// find() for that name and type.
  1185. FakeClient(const DataSourceClient* real_client,
  1186. ThrowWhen throw_when, bool isc_exception,
  1187. ConstRRsetPtr fake_rrset = ConstRRsetPtr()) :
  1188. real_client_ptr_(real_client),
  1189. throw_when_(throw_when),
  1190. isc_exception_(isc_exception),
  1191. fake_rrset_(fake_rrset)
  1192. {}
  1193. /// \brief proxy call for findZone
  1194. ///
  1195. /// if this instance was constructed with throw_when set to find_zone,
  1196. /// this method will throw. Otherwise, it will return a FakeZoneFinder
  1197. /// instance which will throw at the method specified at the
  1198. /// construction of this instance.
  1199. virtual FindResult
  1200. findZone(const isc::dns::Name& name) const {
  1201. checkThrow(THROW_AT_FIND_ZONE, throw_when_, isc_exception_);
  1202. const FindResult result =
  1203. real_client_ptr_->findZone(name);
  1204. return (FindResult(result.code, isc::datasrc::ZoneFinderPtr(
  1205. new FakeZoneFinder(result.zone_finder,
  1206. throw_when_,
  1207. isc_exception_,
  1208. fake_rrset_))));
  1209. }
  1210. isc::datasrc::ZoneUpdaterPtr
  1211. getUpdater(const isc::dns::Name&, bool, bool) const {
  1212. isc_throw(isc::NotImplemented,
  1213. "Update attempt on in fake data source");
  1214. }
  1215. std::pair<isc::datasrc::ZoneJournalReader::Result,
  1216. isc::datasrc::ZoneJournalReaderPtr>
  1217. getJournalReader(const isc::dns::Name&, uint32_t, uint32_t) const {
  1218. isc_throw(isc::NotImplemented, "Journaling isn't supported for "
  1219. "fake data source");
  1220. }
  1221. private:
  1222. const DataSourceClient* real_client_ptr_;
  1223. ThrowWhen throw_when_;
  1224. bool isc_exception_;
  1225. ConstRRsetPtr fake_rrset_;
  1226. };
  1227. class FakeList : public isc::datasrc::ConfigurableClientList {
  1228. public:
  1229. /// \brief Creates a fake list for the given in-memory client
  1230. ///
  1231. /// It will create a FakeClient for each client in the original list,
  1232. /// with the given arguments, which is used when searching for the
  1233. /// corresponding data source.
  1234. FakeList(const boost::shared_ptr<isc::datasrc::ConfigurableClientList>
  1235. real_list, ThrowWhen throw_when, bool isc_exception,
  1236. ConstRRsetPtr fake_rrset = ConstRRsetPtr()) :
  1237. ConfigurableClientList(RRClass::IN()),
  1238. real_(real_list)
  1239. {
  1240. BOOST_FOREACH(const DataSourceInfo& info, real_->getDataSources()) {
  1241. const isc::datasrc::DataSourceClientPtr
  1242. client(new FakeClient(info.data_src_client_ != NULL ?
  1243. info.data_src_client_ :
  1244. info.cache_.get(),
  1245. throw_when, isc_exception, fake_rrset));
  1246. clients_.push_back(client);
  1247. data_sources_.push_back(DataSourceInfo(client.get(),
  1248. isc::datasrc::DataSourceClientContainerPtr(), false));
  1249. }
  1250. }
  1251. private:
  1252. const boost::shared_ptr<isc::datasrc::ConfigurableClientList> real_;
  1253. vector<isc::datasrc::DataSourceClientPtr> clients_;
  1254. };
  1255. } // end anonymous namespace for throwing proxy classes
  1256. // Test for the tests
  1257. //
  1258. // Set the proxies to never throw, this should have the same result as
  1259. // queryWithInMemoryClientNoDNSSEC, and serves to test the two proxy classes
  1260. TEST_F(AuthSrvTest,
  1261. #ifdef USE_STATIC_LINK
  1262. DISABLED_queryWithInMemoryClientProxy
  1263. #else
  1264. queryWithInMemoryClientProxy
  1265. #endif
  1266. )
  1267. {
  1268. // Set real inmem client to proxy
  1269. updateInMemory(&server, "example.", CONFIG_INMEMORY_EXAMPLE);
  1270. boost::shared_ptr<isc::datasrc::ConfigurableClientList>
  1271. list(new FakeList(server.getClientList(RRClass::IN()), THROW_NEVER,
  1272. false));
  1273. server.setClientList(RRClass::IN(), list);
  1274. createDataFromFile("nsec3query_nodnssec_fromWire.wire");
  1275. server.processMessage(*io_message, *parse_message, *response_obuffer,
  1276. &dnsserv);
  1277. EXPECT_TRUE(dnsserv.hasAnswer());
  1278. headerCheck(*parse_message, default_qid, Rcode::NOERROR(),
  1279. opcode.getCode(), QR_FLAG | AA_FLAG, 1, 1, 2, 1);
  1280. }
  1281. // Convenience function for the rest of the tests, set up a proxy
  1282. // to throw in the given method
  1283. // If isc_exception is true, it will throw isc::Exception, otherwise
  1284. // it will throw std::exception
  1285. // If non null rrset is given, it will be passed to the proxy so it can
  1286. // return some faked response.
  1287. void
  1288. setupThrow(AuthSrv* server, ThrowWhen throw_when, bool isc_exception,
  1289. ConstRRsetPtr rrset = ConstRRsetPtr())
  1290. {
  1291. updateInMemory(server, "example.", CONFIG_INMEMORY_EXAMPLE);
  1292. boost::shared_ptr<isc::datasrc::ConfigurableClientList>
  1293. list(new FakeList(server->getClientList(RRClass::IN()), throw_when,
  1294. isc_exception, rrset));
  1295. server->setClientList(RRClass::IN(), list);
  1296. }
  1297. TEST_F(AuthSrvTest,
  1298. #ifdef USE_STATIC_LINK
  1299. DISABLED_queryWithThrowingProxyServfails
  1300. #else
  1301. queryWithThrowingProxyServfails
  1302. #endif
  1303. )
  1304. {
  1305. // Test the common cases, all of which should simply return SERVFAIL
  1306. // Use THROW_NEVER as end marker
  1307. ThrowWhen throws[] = { THROW_AT_FIND_ZONE,
  1308. THROW_AT_GET_ORIGIN,
  1309. THROW_AT_FIND,
  1310. THROW_AT_FIND_NSEC3,
  1311. THROW_NEVER };
  1312. UnitTestUtil::createDNSSECRequestMessage(request_message, opcode,
  1313. default_qid, Name("foo.example."),
  1314. RRClass::IN(), RRType::TXT());
  1315. for (ThrowWhen* when(throws); *when != THROW_NEVER; ++when) {
  1316. createRequestPacket(request_message, IPPROTO_UDP);
  1317. setupThrow(&server, *when, true);
  1318. processAndCheckSERVFAIL();
  1319. // To be sure, check same for non-isc-exceptions
  1320. createRequestPacket(request_message, IPPROTO_UDP);
  1321. setupThrow(&server, *when, false);
  1322. processAndCheckSERVFAIL();
  1323. }
  1324. }
  1325. // Throw isc::Exception in getClass(). (Currently?) getClass is not called
  1326. // in the processMessage path, so this should result in a normal answer
  1327. TEST_F(AuthSrvTest,
  1328. #ifdef USE_STATIC_LINK
  1329. DISABLED_queryWithInMemoryClientProxyGetClass
  1330. #else
  1331. queryWithInMemoryClientProxyGetClass
  1332. #endif
  1333. )
  1334. {
  1335. createDataFromFile("nsec3query_nodnssec_fromWire.wire");
  1336. setupThrow(&server, THROW_AT_GET_CLASS, true);
  1337. // getClass is not called so it should just answer
  1338. server.processMessage(*io_message, *parse_message, *response_obuffer,
  1339. &dnsserv);
  1340. EXPECT_TRUE(dnsserv.hasAnswer());
  1341. headerCheck(*parse_message, default_qid, Rcode::NOERROR(),
  1342. opcode.getCode(), QR_FLAG | AA_FLAG, 1, 1, 2, 1);
  1343. }
  1344. TEST_F(AuthSrvTest,
  1345. #ifdef USE_STATIC_LINK
  1346. DISABLED_queryWithThrowingInToWire
  1347. #else
  1348. queryWithThrowingInToWire
  1349. #endif
  1350. )
  1351. {
  1352. // Set up a faked data source. It will return an empty RRset for the
  1353. // query.
  1354. ConstRRsetPtr empty_rrset(new RRset(Name("foo.example"),
  1355. RRClass::IN(), RRType::TXT(),
  1356. RRTTL(0)));
  1357. setupThrow(&server, THROW_NEVER, true, empty_rrset);
  1358. // Repeat the query processing two times. Due to the faked RRset,
  1359. // toWire() should throw, and it should result in SERVFAIL.
  1360. OutputBufferPtr orig_buffer;
  1361. for (int i = 0; i < 2; ++i) {
  1362. UnitTestUtil::createDNSSECRequestMessage(request_message, opcode,
  1363. default_qid,
  1364. Name("foo.example."),
  1365. RRClass::IN(), RRType::TXT());
  1366. createRequestPacket(request_message, IPPROTO_UDP);
  1367. server.processMessage(*io_message, *parse_message, *response_obuffer,
  1368. &dnsserv);
  1369. headerCheck(*parse_message, default_qid, Rcode::SERVFAIL(),
  1370. opcode.getCode(), QR_FLAG, 1, 0, 0, 0);
  1371. // Make a backup of the original buffer for latest tests and replace
  1372. // it with a new one
  1373. if (!orig_buffer) {
  1374. orig_buffer = response_obuffer;
  1375. response_obuffer.reset(new OutputBuffer(0));
  1376. }
  1377. request_message.clear(Message::RENDER);
  1378. parse_message->clear(Message::PARSE);
  1379. }
  1380. // Now check if the original buffer is intact
  1381. parse_message->clear(Message::PARSE);
  1382. InputBuffer ibuffer(orig_buffer->getData(), orig_buffer->getLength());
  1383. parse_message->fromWire(ibuffer);
  1384. headerCheck(*parse_message, default_qid, Rcode::SERVFAIL(),
  1385. opcode.getCode(), QR_FLAG, 1, 0, 0, 0);
  1386. }
  1387. //
  1388. // DDNS related tests
  1389. //
  1390. // Helper subroutine to check if the given socket address has the expected
  1391. // address and port. It depends on specific output of getnameinfo() (while
  1392. // there can be multiple textual representation of the same address) but
  1393. // in practice it should be reliable.
  1394. void
  1395. checkAddrPort(const struct sockaddr& actual_sa,
  1396. const string& expected_addr, uint16_t expected_port)
  1397. {
  1398. char hbuf[NI_MAXHOST], sbuf[NI_MAXSERV];
  1399. const int error = getnameinfo(&actual_sa, getSALength(actual_sa), hbuf,
  1400. sizeof(hbuf), sbuf, sizeof(sbuf),
  1401. NI_NUMERICHOST | NI_NUMERICSERV);
  1402. if (error != 0) {
  1403. isc_throw(isc::Unexpected, "getnameinfo failed: " <<
  1404. gai_strerror(error));
  1405. }
  1406. EXPECT_EQ(expected_addr, hbuf);
  1407. EXPECT_EQ(boost::lexical_cast<string>(expected_port), sbuf);
  1408. }
  1409. TEST_F(AuthSrvTest, DDNSForward) {
  1410. EXPECT_FALSE(ddns_forwarder.isConnected());
  1411. // Repeat sending an update request 4 times, differing some network
  1412. // parameters: UDP/IPv4, TCP/IPv4, UDP/IPv6, TCP/IPv6, in this order.
  1413. // By doing that we can also confirm the forwarder connection will be
  1414. // established exactly once, and kept established.
  1415. for (size_t i = 0; i < 4; ++i) {
  1416. // Use different names for some different cases
  1417. const Name zone_name = Name(i < 2 ? "example.com" : "example.org");
  1418. const socklen_t family = (i < 2) ? AF_INET : AF_INET6;
  1419. const char* const remote_addr =
  1420. (family == AF_INET) ? "192.0.2.1" : "2001:db8::1";
  1421. const uint16_t remote_port =
  1422. (family == AF_INET) ? 53214 : 53216;
  1423. const int protocol = ((i % 2) == 0) ? IPPROTO_UDP : IPPROTO_TCP;
  1424. createAndSendRequest(RRType::SOA(), Opcode::UPDATE(), zone_name,
  1425. RRClass::IN(), protocol, remote_addr,
  1426. remote_port);
  1427. EXPECT_FALSE(dnsserv.hasAnswer());
  1428. EXPECT_TRUE(ddns_forwarder.isConnected());
  1429. // Examine the pushed data (note: currently "local end" has a dummy
  1430. // value equal to remote)
  1431. EXPECT_EQ(family, ddns_forwarder.getPushedFamily());
  1432. const int expected_type =
  1433. (protocol == IPPROTO_UDP) ? SOCK_DGRAM : SOCK_STREAM;
  1434. EXPECT_EQ(expected_type, ddns_forwarder.getPushedType());
  1435. EXPECT_EQ(protocol, ddns_forwarder.getPushedProtocol());
  1436. checkAddrPort(ddns_forwarder.getPushedRemoteend(),
  1437. remote_addr, remote_port);
  1438. checkAddrPort(ddns_forwarder.getPushedLocalend(),
  1439. remote_addr, remote_port);
  1440. EXPECT_EQ(io_message->getDataSize(),
  1441. ddns_forwarder.getPushedData().size());
  1442. EXPECT_EQ(0, memcmp(io_message->getData(),
  1443. &ddns_forwarder.getPushedData()[0],
  1444. ddns_forwarder.getPushedData().size()));
  1445. }
  1446. }
  1447. TEST_F(AuthSrvTest, DDNSForwardConnectFail) {
  1448. // make connect attempt fail. It should result in SERVFAIL. Note that
  1449. // the question (zone) section should be cleared for opcode of update.
  1450. ddns_forwarder.disableConnect();
  1451. createAndSendRequest(RRType::SOA(), Opcode::UPDATE());
  1452. EXPECT_TRUE(dnsserv.hasAnswer());
  1453. headerCheck(*parse_message, default_qid, Rcode::SERVFAIL(),
  1454. Opcode::UPDATE().getCode(), QR_FLAG, 0, 0, 0, 0);
  1455. EXPECT_FALSE(ddns_forwarder.isConnected());
  1456. // Now make connect okay again. Despite the previous failure the new
  1457. // connection should now be established.
  1458. ddns_forwarder.enableConnect();
  1459. createAndSendRequest(RRType::SOA(), Opcode::UPDATE());
  1460. EXPECT_FALSE(dnsserv.hasAnswer());
  1461. EXPECT_TRUE(ddns_forwarder.isConnected());
  1462. }
  1463. TEST_F(AuthSrvTest, DDNSForwardPushFail) {
  1464. // Make first request succeed, which will establish the connection.
  1465. EXPECT_FALSE(ddns_forwarder.isConnected());
  1466. createAndSendRequest(RRType::SOA(), Opcode::UPDATE());
  1467. EXPECT_TRUE(ddns_forwarder.isConnected());
  1468. // make connect attempt fail. It should result in SERVFAIL. The
  1469. // connection should be closed. Use IPv6 address for varying log output.
  1470. ddns_forwarder.disablePush();
  1471. createAndSendRequest(RRType::SOA(), Opcode::UPDATE(), Name("example.com"),
  1472. RRClass::IN(), IPPROTO_UDP, "2001:db8::2");
  1473. EXPECT_TRUE(dnsserv.hasAnswer());
  1474. headerCheck(*parse_message, default_qid, Rcode::SERVFAIL(),
  1475. Opcode::UPDATE().getCode(), QR_FLAG, 0, 0, 0, 0);
  1476. EXPECT_FALSE(ddns_forwarder.isConnected());
  1477. // Allow push again. Connection will be reopened, and the request will
  1478. // be forwarded successfully.
  1479. ddns_forwarder.enablePush();
  1480. createAndSendRequest(RRType::SOA(), Opcode::UPDATE());
  1481. EXPECT_FALSE(dnsserv.hasAnswer());
  1482. EXPECT_TRUE(ddns_forwarder.isConnected());
  1483. }
  1484. TEST_F(AuthSrvTest, DDNSForwardClose) {
  1485. scoped_ptr<AuthSrv> tmp_server(new AuthSrv(xfrout, ddns_forwarder));
  1486. tmp_server->createDDNSForwarder();
  1487. UnitTestUtil::createRequestMessage(request_message, Opcode::UPDATE(),
  1488. default_qid, Name("example.com"),
  1489. RRClass::IN(), RRType::SOA());
  1490. createRequestPacket(request_message, IPPROTO_UDP);
  1491. tmp_server->processMessage(*io_message, *parse_message, *response_obuffer,
  1492. &dnsserv);
  1493. EXPECT_FALSE(dnsserv.hasAnswer());
  1494. EXPECT_TRUE(ddns_forwarder.isConnected());
  1495. // Destroy the server. The forwarder should close the connection.
  1496. tmp_server.reset();
  1497. EXPECT_FALSE(ddns_forwarder.isConnected());
  1498. }
  1499. namespace {
  1500. // Send a basic command without arguments, and check the response has
  1501. // result code 0
  1502. void sendSimpleCommand(AuthSrv& server, const std::string& command) {
  1503. ConstElementPtr response = execAuthServerCommand(server, command,
  1504. ConstElementPtr());
  1505. int command_result = -1;
  1506. isc::config::parseAnswer(command_result, response);
  1507. EXPECT_EQ(0, command_result);
  1508. }
  1509. } // end anonymous namespace
  1510. TEST_F(AuthSrvTest, DDNSForwardCreateDestroy) {
  1511. // Test that AuthSrv returns NOTIMP before ddns forwarder is created,
  1512. // that the ddns_forwarder is connected when the 'start_ddns_forwarder'
  1513. // command has been sent, and that it is no longer connected and auth
  1514. // returns NOTIMP after the stop_ddns_forwarding command is sent.
  1515. scoped_ptr<AuthSrv> tmp_server(new AuthSrv(xfrout, ddns_forwarder));
  1516. // Prepare update message to send
  1517. UnitTestUtil::createRequestMessage(request_message, Opcode::UPDATE(),
  1518. default_qid, Name("example.com"),
  1519. RRClass::IN(), RRType::SOA());
  1520. createRequestPacket(request_message, IPPROTO_UDP);
  1521. // before creating forwarder. isConnected() should be false and
  1522. // rcode to UPDATE should be NOTIMP
  1523. parse_message->clear(Message::PARSE);
  1524. tmp_server->processMessage(*io_message, *parse_message, *response_obuffer,
  1525. &dnsserv);
  1526. EXPECT_FALSE(ddns_forwarder.isConnected());
  1527. EXPECT_TRUE(dnsserv.hasAnswer());
  1528. headerCheck(*parse_message, default_qid, Rcode::NOTIMP(),
  1529. Opcode::UPDATE().getCode(), QR_FLAG, 0, 0, 0, 0);
  1530. // now create forwarder
  1531. sendSimpleCommand(*tmp_server, "start_ddns_forwarder");
  1532. // our mock does not respond, and since auth is supposed to send it on,
  1533. // there should now be no result when an UPDATE is sent
  1534. parse_message->clear(Message::PARSE);
  1535. tmp_server->processMessage(*io_message, *parse_message, *response_obuffer,
  1536. &dnsserv);
  1537. EXPECT_FALSE(dnsserv.hasAnswer());
  1538. EXPECT_TRUE(ddns_forwarder.isConnected());
  1539. // If we send a start again, the connection should be recreated,
  1540. // visible because isConnected() reports false until an actual message
  1541. // has been forwarded
  1542. sendSimpleCommand(*tmp_server, "start_ddns_forwarder");
  1543. EXPECT_FALSE(ddns_forwarder.isConnected());
  1544. parse_message->clear(Message::PARSE);
  1545. tmp_server->processMessage(*io_message, *parse_message, *response_obuffer,
  1546. &dnsserv);
  1547. EXPECT_FALSE(dnsserv.hasAnswer());
  1548. EXPECT_TRUE(ddns_forwarder.isConnected());
  1549. // Now tell it to stop forwarder, should respond with NOTIMP again
  1550. sendSimpleCommand(*tmp_server, "stop_ddns_forwarder");
  1551. parse_message->clear(Message::PARSE);
  1552. tmp_server->processMessage(*io_message, *parse_message, *response_obuffer,
  1553. &dnsserv);
  1554. EXPECT_FALSE(ddns_forwarder.isConnected());
  1555. EXPECT_TRUE(dnsserv.hasAnswer());
  1556. headerCheck(*parse_message, default_qid, Rcode::NOTIMP(),
  1557. Opcode::UPDATE().getCode(), QR_FLAG, 0, 0, 0, 0);
  1558. // Sending stop again should make no difference
  1559. sendSimpleCommand(*tmp_server, "stop_ddns_forwarder");
  1560. parse_message->clear(Message::PARSE);
  1561. tmp_server->processMessage(*io_message, *parse_message, *response_obuffer,
  1562. &dnsserv);
  1563. EXPECT_FALSE(ddns_forwarder.isConnected());
  1564. EXPECT_TRUE(dnsserv.hasAnswer());
  1565. headerCheck(*parse_message, default_qid, Rcode::NOTIMP(),
  1566. Opcode::UPDATE().getCode(), QR_FLAG, 0, 0, 0, 0);
  1567. }
  1568. // Check the client list accessors
  1569. TEST_F(AuthSrvTest, clientList) {
  1570. // The lists don't exist. Therefore, the list of RRClasses is empty.
  1571. // We also have no IN list.
  1572. EXPECT_TRUE(server.getClientListClasses().empty());
  1573. EXPECT_EQ(boost::shared_ptr<const isc::datasrc::ClientList>(),
  1574. server.getClientList(RRClass::IN()));
  1575. // Put something in.
  1576. const boost::shared_ptr<isc::datasrc::ConfigurableClientList>
  1577. list(new isc::datasrc::ConfigurableClientList(RRClass::IN()));
  1578. const boost::shared_ptr<isc::datasrc::ConfigurableClientList>
  1579. list2(new isc::datasrc::ConfigurableClientList(RRClass::CH()));
  1580. server.setClientList(RRClass::IN(), list);
  1581. server.setClientList(RRClass::CH(), list2);
  1582. // There are two things in the list and they are IN and CH
  1583. vector<RRClass> classes(server.getClientListClasses());
  1584. ASSERT_EQ(2, classes.size());
  1585. EXPECT_EQ(RRClass::IN(), classes[0]);
  1586. EXPECT_EQ(RRClass::CH(), classes[1]);
  1587. // And the lists can be retrieved.
  1588. EXPECT_EQ(list, server.getClientList(RRClass::IN()));
  1589. EXPECT_EQ(list2, server.getClientList(RRClass::CH()));
  1590. // Remove one of them
  1591. server.setClientList(RRClass::CH(),
  1592. boost::shared_ptr<isc::datasrc::ConfigurableClientList>());
  1593. // This really got deleted, including the class.
  1594. classes = server.getClientListClasses();
  1595. ASSERT_EQ(1, classes.size());
  1596. EXPECT_EQ(RRClass::IN(), classes[0]);
  1597. EXPECT_EQ(list, server.getClientList(RRClass::IN()));
  1598. }
  1599. // We just test the mutex can be locked (exactly once).
  1600. TEST_F(AuthSrvTest, mutex) {
  1601. isc::util::thread::Mutex::Locker l1(server.getClientListMutex());
  1602. // TODO: Once we have non-debug build, this one will not work.
  1603. // Skip then.
  1604. EXPECT_THROW({
  1605. isc::util::thread::Mutex::Locker l2(server.getClientListMutex());
  1606. }, isc::InvalidOperation);
  1607. }
  1608. }