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Ken Chenb9fa2062018-11-13 21:51:13 +08001/*
2 * Copyright (C) 2016 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
Lorenzo Colitti0a8b4aa2019-06-26 22:31:03 +090010 * Unless required by applicable law or agreed to in writing, software
Ken Chenb9fa2062018-11-13 21:51:13 +080011 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 *
16 */
17
Bernie Innocenti3952ccc2019-03-03 19:39:53 +090018#define LOG_TAG "resolv_integration_test"
Ken Chenb9fa2062018-11-13 21:51:13 +080019
Hungming Chen5bf09772019-04-25 11:16:13 +080020#include <android-base/logging.h>
Bernie Innocenti41b82c42019-06-05 22:38:25 +090021#include <android-base/parseint.h>
Mike Yu40e67072019-10-09 21:14:09 +080022#include <android-base/properties.h>
Bernie Innocenti41b82c42019-06-05 22:38:25 +090023#include <android-base/stringprintf.h>
24#include <android-base/unique_fd.h>
25#include <android/multinetwork.h> // ResNsendFlags
Ken Chenb9fa2062018-11-13 21:51:13 +080026#include <arpa/inet.h>
Luke Huang94b10b92018-11-21 20:13:38 +080027#include <arpa/nameser.h>
Hungming Chene8f970c2019-04-10 17:34:06 +080028#include <binder/ProcessState.h>
Lorenzo Colittieb9aeec2019-06-26 19:53:55 +090029#include <bpf/BpfUtils.h>
Bernie Innocenti41b82c42019-06-05 22:38:25 +090030#include <cutils/sockets.h>
31#include <gmock/gmock-matchers.h>
32#include <gtest/gtest.h>
Ken Chenb9fa2062018-11-13 21:51:13 +080033#include <netdb.h>
Luke Huang9d2d25b2019-06-14 00:34:05 +080034#include <netdutils/InternetAddresses.h>
Luke Huang579ddc72019-06-14 00:59:39 +080035#include <netdutils/NetworkConstants.h> // SHA256_SIZE
Luke Huang9d2d25b2019-06-14 00:34:05 +080036#include <netdutils/ResponseCode.h>
Hungming Chen63779052019-10-30 15:06:13 +080037#include <netdutils/Slice.h>
Luke Huang9d2d25b2019-06-14 00:34:05 +080038#include <netdutils/SocketOption.h>
Mike Yu40e67072019-10-09 21:14:09 +080039#include <netdutils/Stopwatch.h>
Luke Huang94b10b92018-11-21 20:13:38 +080040#include <netinet/in.h>
41#include <poll.h> /* poll */
Bernie Innocenti41b82c42019-06-05 22:38:25 +090042#include <private/android_filesystem_config.h>
Luke Huang94b10b92018-11-21 20:13:38 +080043#include <resolv.h>
Ken Chenb9fa2062018-11-13 21:51:13 +080044#include <stdarg.h>
Ken Chenb9fa2062018-11-13 21:51:13 +080045#include <stdlib.h>
Luke Huang94b10b92018-11-21 20:13:38 +080046#include <sys/socket.h>
47#include <sys/un.h>
Ken Chenb9fa2062018-11-13 21:51:13 +080048#include <unistd.h>
49
50#include <algorithm>
51#include <chrono>
52#include <iterator>
53#include <numeric>
54#include <thread>
55
Luke Huangf8215372019-11-22 11:53:41 +080056#include <aidl/android/net/IDnsResolver.h>
57#include <android/binder_manager.h>
58#include <android/binder_process.h>
Bernie Innocenti41b82c42019-06-05 22:38:25 +090059#include "NetdClient.h"
Bernie Innocenti41b82c42019-06-05 22:38:25 +090060#include "ResolverStats.h"
Luke Huangf8215372019-11-22 11:53:41 +080061#include "netid_client.h" // NETID_UNSET
62#include "params.h" // MAXNS
Lorenzo Colittieb9aeec2019-06-26 19:53:55 +090063#include "test_utils.h"
Hungming Chene8f970c2019-04-10 17:34:06 +080064#include "tests/dns_metrics_listener/dns_metrics_listener.h"
chenbruceb43ec752019-07-24 20:19:41 +080065#include "tests/dns_responder/dns_responder.h"
Luke Huangf8215372019-11-22 11:53:41 +080066#include "tests/dns_responder/dns_responder_client_ndk.h"
Hungming Chenc6556622019-10-02 16:01:07 +080067#include "tests/dns_responder/dns_tls_certificate.h"
chenbruceb43ec752019-07-24 20:19:41 +080068#include "tests/dns_responder/dns_tls_frontend.h"
Luke Huangfde82482019-06-04 01:04:53 +080069#include "tests/resolv_test_utils.h"
Ken Chenb9fa2062018-11-13 21:51:13 +080070
Luke Huang0d592bc2019-05-25 18:24:03 +080071// Valid VPN netId range is 100 ~ 65535
72constexpr int TEST_VPN_NETID = 65502;
Luke Huang94b10b92018-11-21 20:13:38 +080073constexpr int MAXPACKET = (8 * 1024);
Ken Chenb9fa2062018-11-13 21:51:13 +080074
Sehee Park2c118782019-05-07 13:02:45 +090075// Use maximum reserved appId for applications to avoid conflict with existing uids.
76static const int TEST_UID = 99999;
77
Ken Chenb9fa2062018-11-13 21:51:13 +080078// Semi-public Bionic hook used by the NDK (frameworks/base/native/android/net.c)
79// Tested here for convenience.
80extern "C" int android_getaddrinfofornet(const char* hostname, const char* servname,
81 const addrinfo* hints, unsigned netid, unsigned mark,
82 struct addrinfo** result);
83
Luke Huang70070852019-11-25 18:25:50 +080084using aidl::android::net::IDnsResolver;
Luke Huangf8215372019-11-22 11:53:41 +080085using aidl::android::net::INetd;
Mike Yu8ac63402019-12-02 15:28:38 +080086using aidl::android::net::ResolverParamsParcel;
Luke Huang9807e6b2019-05-20 16:17:12 +080087using android::base::ParseInt;
Ken Chenb9fa2062018-11-13 21:51:13 +080088using android::base::StringPrintf;
Luke Huang9807e6b2019-05-20 16:17:12 +080089using android::base::unique_fd;
Ken Chenb9fa2062018-11-13 21:51:13 +080090using android::net::ResolverStats;
Hungming Chene8f970c2019-04-10 17:34:06 +080091using android::net::metrics::DnsMetricsListener;
Ken Chenb9fa2062018-11-13 21:51:13 +080092using android::netdutils::enableSockopt;
Hungming Chen63779052019-10-30 15:06:13 +080093using android::netdutils::makeSlice;
Luke Huang9807e6b2019-05-20 16:17:12 +080094using android::netdutils::ResponseCode;
Luke Huang9d2d25b2019-06-14 00:34:05 +080095using android::netdutils::ScopedAddrinfo;
Mike Yu40e67072019-10-09 21:14:09 +080096using android::netdutils::Stopwatch;
Hungming Chen63779052019-10-30 15:06:13 +080097using android::netdutils::toHex;
Ken Chenb9fa2062018-11-13 21:51:13 +080098
99// TODO: move into libnetdutils?
100namespace {
Luke Huangfde82482019-06-04 01:04:53 +0800101
Ken Chenb9fa2062018-11-13 21:51:13 +0800102ScopedAddrinfo safe_getaddrinfo(const char* node, const char* service,
103 const struct addrinfo* hints) {
104 addrinfo* result = nullptr;
105 if (getaddrinfo(node, service, hints, &result) != 0) {
106 result = nullptr; // Should already be the case, but...
107 }
108 return ScopedAddrinfo(result);
109}
Luke Huangfde82482019-06-04 01:04:53 +0800110
Mike Yu40e67072019-10-09 21:14:09 +0800111std::pair<ScopedAddrinfo, int> safe_getaddrinfo_time_taken(const char* node, const char* service,
112 const addrinfo& hints) {
113 Stopwatch s;
114 ScopedAddrinfo result = safe_getaddrinfo(node, service, &hints);
115 return {std::move(result), s.timeTakenUs() / 1000};
116}
117
Ken Chenb9fa2062018-11-13 21:51:13 +0800118} // namespace
119
Bernie Innocentia5c7b7b2019-01-17 21:28:24 +0900120class ResolverTest : public ::testing::Test {
Hungming Chene8f970c2019-04-10 17:34:06 +0800121 public:
Hungming Chen5bf09772019-04-25 11:16:13 +0800122 static void SetUpTestCase() {
123 // Get binder service.
124 // Note that |mDnsClient| is not used for getting binder service in this static function.
125 // The reason is that wants to keep |mDnsClient| as a non-static data member. |mDnsClient|
126 // which sets up device network configuration could be independent from every test.
Luke Huangf8215372019-11-22 11:53:41 +0800127 // TODO: Perhaps add a static function in resolv_test_binder_utils.{cpp,h} to get binder
128 // service.
129
130 AIBinder* binder = AServiceManager_getService("dnsresolver");
131 ndk::SpAIBinder resolvBinder = ndk::SpAIBinder(binder);
132 auto resolvService = aidl::android::net::IDnsResolver::fromBinder(resolvBinder);
Hungming Chen5bf09772019-04-25 11:16:13 +0800133 ASSERT_NE(nullptr, resolvService.get());
134
135 // Subscribe the death recipient to the service IDnsResolver for detecting Netd death.
Luke Huang70070852019-11-25 18:25:50 +0800136 // GTEST assertion macros are not invoked for generating a test failure in the death
137 // recipient because the macros can't indicate failed test if Netd died between tests.
138 // Moreover, continuing testing may have no meaningful after Netd death. Therefore, the
139 // death recipient aborts process by GTEST_LOG_(FATAL) once Netd died.
Luke Huangf8215372019-11-22 11:53:41 +0800140 sResolvDeathRecipient = AIBinder_DeathRecipient_new([](void*) {
141 constexpr char errorMessage[] = "Netd died";
142 LOG(ERROR) << errorMessage;
143 GTEST_LOG_(FATAL) << errorMessage;
144 });
145 ASSERT_EQ(STATUS_OK, AIBinder_linkToDeath(binder, sResolvDeathRecipient, nullptr));
Hungming Chen5bf09772019-04-25 11:16:13 +0800146
147 // Subscribe the DNS listener for verifying DNS metrics event contents.
Luke Huangf8215372019-11-22 11:53:41 +0800148 sDnsMetricsListener = ndk::SharedRefBase::make<DnsMetricsListener>(
149 TEST_NETID /*monitor specific network*/);
Hungming Chen5bf09772019-04-25 11:16:13 +0800150 ASSERT_TRUE(resolvService->registerEventListener(sDnsMetricsListener).isOk());
151
152 // Start the binder thread pool for listening DNS metrics events and receiving death
153 // recipient.
Luke Huangf8215372019-11-22 11:53:41 +0800154 ABinderProcess_startThreadPool();
Hungming Chene8f970c2019-04-10 17:34:06 +0800155 }
Luke Huangf8215372019-11-22 11:53:41 +0800156 static void TearDownTestCase() { AIBinder_DeathRecipient_delete(sResolvDeathRecipient); }
Hungming Chene8f970c2019-04-10 17:34:06 +0800157
Ken Chenb9fa2062018-11-13 21:51:13 +0800158 protected:
Hungming Chen5bf09772019-04-25 11:16:13 +0800159 void SetUp() { mDnsClient.SetUp(); }
Mike Yu960243d2020-01-17 19:02:15 +0800160 void TearDown() {
161 // Ensure the dump works at the end of each test.
162 DumpResolverService();
163
164 mDnsClient.TearDown();
165 }
nuccachena26cc2a2018-07-17 18:07:23 +0800166
Xiao Ma09b71022018-12-11 17:56:32 +0900167 void StartDns(test::DNSResponder& dns, const std::vector<DnsRecord>& records) {
168 for (const auto& r : records) {
169 dns.addMapping(r.host_name, r.type, r.addr);
170 }
171
172 ASSERT_TRUE(dns.startServer());
173 dns.clearQueries();
174 }
Bernie Innocentia5c7b7b2019-01-17 21:28:24 +0900175
Mike Yu960243d2020-01-17 19:02:15 +0800176 void DumpResolverService() {
177 unique_fd fd(open("/dev/null", O_WRONLY));
178 EXPECT_EQ(mDnsClient.resolvService()->dump(fd, nullptr, 0), 0);
179
180 const char* querylogCmd[] = {"querylog"}; // Keep it sync with DnsQueryLog::DUMP_KEYWORD.
181 EXPECT_EQ(mDnsClient.resolvService()->dump(fd, querylogCmd, std::size(querylogCmd)), 0);
182 }
183
Hungming Chene8f970c2019-04-10 17:34:06 +0800184 bool WaitForNat64Prefix(ExpectNat64PrefixStatus status,
185 std::chrono::milliseconds timeout = std::chrono::milliseconds(1000)) {
Hungming Chen5bf09772019-04-25 11:16:13 +0800186 return sDnsMetricsListener->waitForNat64Prefix(status, timeout);
Hungming Chene8f970c2019-04-10 17:34:06 +0800187 }
188
Mike Yu724f77d2019-08-16 11:14:50 +0800189 bool WaitForPrivateDnsValidation(std::string serverAddr, bool validated) {
190 return sDnsMetricsListener->waitForPrivateDnsValidation(serverAddr, validated);
191 }
192
Bernie Innocentia5c7b7b2019-01-17 21:28:24 +0900193 DnsResponderClient mDnsClient;
Xiao Ma09b71022018-12-11 17:56:32 +0900194
Hungming Chen5bf09772019-04-25 11:16:13 +0800195 // Use a shared static DNS listener for all tests to avoid registering lots of listeners
196 // which may be released late until process terminated. Currently, registered DNS listener
197 // is removed by binder death notification which is fired when the process hosting an
198 // IBinder has gone away. If every test in ResolverTest registers its DNS listener, Netd
199 // may temporarily hold lots of dead listeners until the unit test process terminates.
200 // TODO: Perhaps add an unregistering listener binder call or fork a listener process which
201 // could be terminated earlier.
Luke Huangf8215372019-11-22 11:53:41 +0800202 static std::shared_ptr<DnsMetricsListener>
203 sDnsMetricsListener; // Initialized in SetUpTestCase.
Hungming Chen5bf09772019-04-25 11:16:13 +0800204
205 // Use a shared static death recipient to monitor the service death. The static death
206 // recipient could monitor the death not only during the test but also between tests.
Luke Huangf8215372019-11-22 11:53:41 +0800207 static AIBinder_DeathRecipient* sResolvDeathRecipient; // Initialized in SetUpTestCase.
Ken Chenb9fa2062018-11-13 21:51:13 +0800208};
209
Hungming Chen5bf09772019-04-25 11:16:13 +0800210// Initialize static member of class.
Luke Huangf8215372019-11-22 11:53:41 +0800211std::shared_ptr<DnsMetricsListener> ResolverTest::sDnsMetricsListener;
212AIBinder_DeathRecipient* ResolverTest::sResolvDeathRecipient;
Hungming Chen5bf09772019-04-25 11:16:13 +0800213
Ken Chenb9fa2062018-11-13 21:51:13 +0800214TEST_F(ResolverTest, GetHostByName) {
Xiao Ma09b71022018-12-11 17:56:32 +0900215 constexpr char nonexistent_host_name[] = "nonexistent.example.com.";
216
217 test::DNSResponder dns;
218 StartDns(dns, {{kHelloExampleCom, ns_type::ns_t_a, "1.2.3.3"}});
219 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
Ken Chenb9fa2062018-11-13 21:51:13 +0800220
221 const hostent* result;
Ken Chenb9fa2062018-11-13 21:51:13 +0800222 result = gethostbyname("nonexistent");
223 EXPECT_EQ(1U, GetNumQueriesForType(dns, ns_type::ns_t_a, nonexistent_host_name));
224 ASSERT_TRUE(result == nullptr);
225 ASSERT_EQ(HOST_NOT_FOUND, h_errno);
226
227 dns.clearQueries();
228 result = gethostbyname("hello");
Xiao Ma09b71022018-12-11 17:56:32 +0900229 EXPECT_EQ(1U, GetNumQueriesForType(dns, ns_type::ns_t_a, kHelloExampleCom));
Ken Chenb9fa2062018-11-13 21:51:13 +0800230 ASSERT_FALSE(result == nullptr);
231 ASSERT_EQ(4, result->h_length);
232 ASSERT_FALSE(result->h_addr_list[0] == nullptr);
233 EXPECT_EQ("1.2.3.3", ToString(result));
234 EXPECT_TRUE(result->h_addr_list[1] == nullptr);
Ken Chenb9fa2062018-11-13 21:51:13 +0800235}
236
lifr4e4a2e02019-01-29 16:53:51 +0800237TEST_F(ResolverTest, GetHostByName_cnames) {
238 constexpr char host_name[] = "host.example.com.";
239 size_t cnamecount = 0;
240 test::DNSResponder dns;
241
242 const std::vector<DnsRecord> records = {
243 {kHelloExampleCom, ns_type::ns_t_cname, "a.example.com."},
244 {"a.example.com.", ns_type::ns_t_cname, "b.example.com."},
245 {"b.example.com.", ns_type::ns_t_cname, "c.example.com."},
246 {"c.example.com.", ns_type::ns_t_cname, "d.example.com."},
247 {"d.example.com.", ns_type::ns_t_cname, "e.example.com."},
248 {"e.example.com.", ns_type::ns_t_cname, host_name},
249 {host_name, ns_type::ns_t_a, "1.2.3.3"},
250 {host_name, ns_type::ns_t_aaaa, "2001:db8::42"},
251 };
252 StartDns(dns, records);
253 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
254
255 // using gethostbyname2() to resolve ipv4 hello.example.com. to 1.2.3.3
256 // Ensure the v4 address and cnames are correct
257 const hostent* result;
258 result = gethostbyname2("hello", AF_INET);
259 ASSERT_FALSE(result == nullptr);
260
261 for (int i = 0; result != nullptr && result->h_aliases[i] != nullptr; i++) {
262 std::string domain_name = records[i].host_name.substr(0, records[i].host_name.size() - 1);
263 EXPECT_EQ(result->h_aliases[i], domain_name);
264 cnamecount++;
265 }
266 // The size of "Non-cname type" record in DNS records is 2
267 ASSERT_EQ(cnamecount, records.size() - 2);
268 ASSERT_EQ(4, result->h_length);
269 ASSERT_FALSE(result->h_addr_list[0] == nullptr);
270 EXPECT_EQ("1.2.3.3", ToString(result));
271 EXPECT_TRUE(result->h_addr_list[1] == nullptr);
272 EXPECT_EQ(1U, dns.queries().size()) << dns.dumpQueries();
273
274 // using gethostbyname2() to resolve ipv6 hello.example.com. to 2001:db8::42
275 // Ensure the v6 address and cnames are correct
276 cnamecount = 0;
277 dns.clearQueries();
278 result = gethostbyname2("hello", AF_INET6);
279 for (unsigned i = 0; result != nullptr && result->h_aliases[i] != nullptr; i++) {
280 std::string domain_name = records[i].host_name.substr(0, records[i].host_name.size() - 1);
281 EXPECT_EQ(result->h_aliases[i], domain_name);
282 cnamecount++;
283 }
284 // The size of "Non-cname type" DNS record in records is 2
285 ASSERT_EQ(cnamecount, records.size() - 2);
286 ASSERT_FALSE(result == nullptr);
287 ASSERT_EQ(16, result->h_length);
288 ASSERT_FALSE(result->h_addr_list[0] == nullptr);
289 EXPECT_EQ("2001:db8::42", ToString(result));
290 EXPECT_TRUE(result->h_addr_list[1] == nullptr);
291}
292
293TEST_F(ResolverTest, GetHostByName_cnamesInfiniteLoop) {
294 test::DNSResponder dns;
295 const std::vector<DnsRecord> records = {
296 {kHelloExampleCom, ns_type::ns_t_cname, "a.example.com."},
297 {"a.example.com.", ns_type::ns_t_cname, kHelloExampleCom},
298 };
299 StartDns(dns, records);
300 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
301
302 const hostent* result;
303 result = gethostbyname2("hello", AF_INET);
304 ASSERT_TRUE(result == nullptr);
305
306 dns.clearQueries();
307 result = gethostbyname2("hello", AF_INET6);
308 ASSERT_TRUE(result == nullptr);
309}
310
Ken Chenb9fa2062018-11-13 21:51:13 +0800311TEST_F(ResolverTest, GetHostByName_localhost) {
Ken Chenb9fa2062018-11-13 21:51:13 +0800312 constexpr char name_camelcase[] = "LocalHost";
Ken Chenb9fa2062018-11-13 21:51:13 +0800313 constexpr char name_ip6_dot[] = "ip6-localhost.";
314 constexpr char name_ip6_fqdn[] = "ip6-localhost.example.com.";
315
316 // Add a dummy nameserver which shouldn't receive any queries
Xiao Ma09b71022018-12-11 17:56:32 +0900317 test::DNSResponder dns;
318 StartDns(dns, {});
319 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
Ken Chenb9fa2062018-11-13 21:51:13 +0800320
321 // Expect no DNS queries; localhost is resolved via /etc/hosts
Xiao Ma09b71022018-12-11 17:56:32 +0900322 const hostent* result = gethostbyname(kLocalHost);
Ken Chenb9fa2062018-11-13 21:51:13 +0800323 EXPECT_TRUE(dns.queries().empty()) << dns.dumpQueries();
324 ASSERT_FALSE(result == nullptr);
325 ASSERT_EQ(4, result->h_length);
326 ASSERT_FALSE(result->h_addr_list[0] == nullptr);
Xiao Ma09b71022018-12-11 17:56:32 +0900327 EXPECT_EQ(kLocalHostAddr, ToString(result));
Ken Chenb9fa2062018-11-13 21:51:13 +0800328 EXPECT_TRUE(result->h_addr_list[1] == nullptr);
329
330 // Ensure the hosts file resolver ignores case of hostnames
331 result = gethostbyname(name_camelcase);
332 EXPECT_TRUE(dns.queries().empty()) << dns.dumpQueries();
333 ASSERT_FALSE(result == nullptr);
334 ASSERT_EQ(4, result->h_length);
335 ASSERT_FALSE(result->h_addr_list[0] == nullptr);
Xiao Ma09b71022018-12-11 17:56:32 +0900336 EXPECT_EQ(kLocalHostAddr, ToString(result));
Ken Chenb9fa2062018-11-13 21:51:13 +0800337 EXPECT_TRUE(result->h_addr_list[1] == nullptr);
338
339 // The hosts file also contains ip6-localhost, but gethostbyname() won't
chenbruce018fdb22019-06-12 18:08:04 +0800340 // return it. This would be easy to
Ken Chenb9fa2062018-11-13 21:51:13 +0800341 // change, but there's no point in changing the legacy behavior; new code
342 // should be calling getaddrinfo() anyway.
343 // So we check the legacy behavior, which results in amusing A-record
344 // lookups for ip6-localhost, with and without search domains appended.
345 dns.clearQueries();
Xiao Ma09b71022018-12-11 17:56:32 +0900346 result = gethostbyname(kIp6LocalHost);
Sehee Parkbbca0202018-11-16 10:53:16 +0900347 EXPECT_EQ(2U, dns.queries().size()) << dns.dumpQueries();
348 EXPECT_EQ(1U, GetNumQueriesForType(dns, ns_type::ns_t_a, name_ip6_dot)) << dns.dumpQueries();
349 EXPECT_EQ(1U, GetNumQueriesForType(dns, ns_type::ns_t_a, name_ip6_fqdn)) << dns.dumpQueries();
Ken Chenb9fa2062018-11-13 21:51:13 +0800350 ASSERT_TRUE(result == nullptr);
351
352 // Finally, use gethostbyname2() to resolve ip6-localhost to ::1 from
353 // the hosts file.
354 dns.clearQueries();
Xiao Ma09b71022018-12-11 17:56:32 +0900355 result = gethostbyname2(kIp6LocalHost, AF_INET6);
Ken Chenb9fa2062018-11-13 21:51:13 +0800356 EXPECT_TRUE(dns.queries().empty()) << dns.dumpQueries();
357 ASSERT_FALSE(result == nullptr);
358 ASSERT_EQ(16, result->h_length);
359 ASSERT_FALSE(result->h_addr_list[0] == nullptr);
Xiao Ma09b71022018-12-11 17:56:32 +0900360 EXPECT_EQ(kIp6LocalHostAddr, ToString(result));
Ken Chenb9fa2062018-11-13 21:51:13 +0800361 EXPECT_TRUE(result->h_addr_list[1] == nullptr);
Ken Chenb9fa2062018-11-13 21:51:13 +0800362}
363
364TEST_F(ResolverTest, GetHostByName_numeric) {
365 // Add a dummy nameserver which shouldn't receive any queries
Xiao Ma09b71022018-12-11 17:56:32 +0900366 test::DNSResponder dns;
367 StartDns(dns, {});
368 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
Ken Chenb9fa2062018-11-13 21:51:13 +0800369
370 // Numeric v4 address: expect no DNS queries
371 constexpr char numeric_v4[] = "192.168.0.1";
Ken Chenb9fa2062018-11-13 21:51:13 +0800372 const hostent* result = gethostbyname(numeric_v4);
Sehee Parkbbca0202018-11-16 10:53:16 +0900373 EXPECT_EQ(0U, dns.queries().size());
Ken Chenb9fa2062018-11-13 21:51:13 +0800374 ASSERT_FALSE(result == nullptr);
375 ASSERT_EQ(4, result->h_length); // v4
376 ASSERT_FALSE(result->h_addr_list[0] == nullptr);
377 EXPECT_EQ(numeric_v4, ToString(result));
378 EXPECT_TRUE(result->h_addr_list[1] == nullptr);
379
380 // gethostbyname() recognizes a v6 address, and fails with no DNS queries
381 constexpr char numeric_v6[] = "2001:db8::42";
382 dns.clearQueries();
383 result = gethostbyname(numeric_v6);
Sehee Parkbbca0202018-11-16 10:53:16 +0900384 EXPECT_EQ(0U, dns.queries().size());
Ken Chenb9fa2062018-11-13 21:51:13 +0800385 EXPECT_TRUE(result == nullptr);
386
387 // Numeric v6 address with gethostbyname2(): succeeds with no DNS queries
388 dns.clearQueries();
389 result = gethostbyname2(numeric_v6, AF_INET6);
Sehee Parkbbca0202018-11-16 10:53:16 +0900390 EXPECT_EQ(0U, dns.queries().size());
Ken Chenb9fa2062018-11-13 21:51:13 +0800391 ASSERT_FALSE(result == nullptr);
392 ASSERT_EQ(16, result->h_length); // v6
393 ASSERT_FALSE(result->h_addr_list[0] == nullptr);
394 EXPECT_EQ(numeric_v6, ToString(result));
395 EXPECT_TRUE(result->h_addr_list[1] == nullptr);
396
397 // Numeric v6 address with scope work with getaddrinfo(),
398 // but gethostbyname2() does not understand them; it issues two dns
399 // queries, then fails. This hardly ever happens, there's no point
400 // in fixing this. This test simply verifies the current (bogus)
401 // behavior to avoid further regressions (like crashes, or leaks).
402 constexpr char numeric_v6_scope[] = "fe80::1%lo";
403 dns.clearQueries();
404 result = gethostbyname2(numeric_v6_scope, AF_INET6);
Sehee Parkbbca0202018-11-16 10:53:16 +0900405 EXPECT_EQ(2U, dns.queries().size()); // OUCH!
Ken Chenb9fa2062018-11-13 21:51:13 +0800406 ASSERT_TRUE(result == nullptr);
Ken Chenb9fa2062018-11-13 21:51:13 +0800407}
408
409TEST_F(ResolverTest, BinderSerialization) {
Ken Chenb9fa2062018-11-13 21:51:13 +0800410 std::vector<int> params_offsets = {
Luke Huang5bd827c2019-03-14 16:10:04 +0800411 IDnsResolver::RESOLVER_PARAMS_SAMPLE_VALIDITY,
412 IDnsResolver::RESOLVER_PARAMS_SUCCESS_THRESHOLD,
413 IDnsResolver::RESOLVER_PARAMS_MIN_SAMPLES,
414 IDnsResolver::RESOLVER_PARAMS_MAX_SAMPLES,
415 IDnsResolver::RESOLVER_PARAMS_BASE_TIMEOUT_MSEC,
416 IDnsResolver::RESOLVER_PARAMS_RETRY_COUNT,
Ken Chenb9fa2062018-11-13 21:51:13 +0800417 };
Bernie Innocentib102dd22018-12-04 14:57:48 +0900418 const int size = static_cast<int>(params_offsets.size());
Luke Huang5bd827c2019-03-14 16:10:04 +0800419 EXPECT_EQ(size, IDnsResolver::RESOLVER_PARAMS_COUNT);
Ken Chenb9fa2062018-11-13 21:51:13 +0800420 std::sort(params_offsets.begin(), params_offsets.end());
Bernie Innocentib102dd22018-12-04 14:57:48 +0900421 for (int i = 0; i < size; ++i) {
Ken Chenb9fa2062018-11-13 21:51:13 +0800422 EXPECT_EQ(params_offsets[i], i);
423 }
424}
425
426TEST_F(ResolverTest, GetHostByName_Binder) {
Luke Huangf8215372019-11-22 11:53:41 +0800427 std::vector<std::string> domains = {"example.com"};
Ken Chenb9fa2062018-11-13 21:51:13 +0800428 std::vector<std::unique_ptr<test::DNSResponder>> dns;
429 std::vector<std::string> servers;
Bernie Innocentia5c7b7b2019-01-17 21:28:24 +0900430 std::vector<DnsResponderClient::Mapping> mappings;
431 ASSERT_NO_FATAL_FAILURE(mDnsClient.SetupMappings(1, domains, &mappings));
432 ASSERT_NO_FATAL_FAILURE(mDnsClient.SetupDNSServers(4, mappings, &dns, &servers));
Ken Chenb9fa2062018-11-13 21:51:13 +0800433 ASSERT_EQ(1U, mappings.size());
Bernie Innocentia5c7b7b2019-01-17 21:28:24 +0900434 const DnsResponderClient::Mapping& mapping = mappings[0];
Ken Chenb9fa2062018-11-13 21:51:13 +0800435
Xiao Ma09b71022018-12-11 17:56:32 +0900436 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers, domains, kDefaultParams));
Ken Chenb9fa2062018-11-13 21:51:13 +0800437
438 const hostent* result = gethostbyname(mapping.host.c_str());
Bernie Innocentib102dd22018-12-04 14:57:48 +0900439 const size_t total_queries =
Luke Huangfde82482019-06-04 01:04:53 +0800440 std::accumulate(dns.begin(), dns.end(), 0, [&mapping](size_t total, auto& d) {
Ken Chenb9fa2062018-11-13 21:51:13 +0800441 return total + GetNumQueriesForType(*d, ns_type::ns_t_a, mapping.entry.c_str());
442 });
443
444 EXPECT_LE(1U, total_queries);
445 ASSERT_FALSE(result == nullptr);
446 ASSERT_EQ(4, result->h_length);
447 ASSERT_FALSE(result->h_addr_list[0] == nullptr);
448 EXPECT_EQ(mapping.ip4, ToString(result));
449 EXPECT_TRUE(result->h_addr_list[1] == nullptr);
450
451 std::vector<std::string> res_servers;
452 std::vector<std::string> res_domains;
Mike Yu0a1c53d2018-11-26 13:26:21 +0900453 std::vector<std::string> res_tls_servers;
Bernie Innocenti758005f2019-02-19 18:08:36 +0900454 res_params res_params;
Ken Chenb9fa2062018-11-13 21:51:13 +0800455 std::vector<ResolverStats> res_stats;
Ken Chen92bed612018-12-22 21:46:55 +0800456 int wait_for_pending_req_timeout_count;
Luke Huangf8215372019-11-22 11:53:41 +0800457 ASSERT_TRUE(DnsResponderClient::GetResolverInfo(
458 mDnsClient.resolvService(), TEST_NETID, &res_servers, &res_domains, &res_tls_servers,
459 &res_params, &res_stats, &wait_for_pending_req_timeout_count));
Ken Chenb9fa2062018-11-13 21:51:13 +0800460 EXPECT_EQ(servers.size(), res_servers.size());
461 EXPECT_EQ(domains.size(), res_domains.size());
Mike Yu0a1c53d2018-11-26 13:26:21 +0900462 EXPECT_EQ(0U, res_tls_servers.size());
Luke Huang5bd827c2019-03-14 16:10:04 +0800463 ASSERT_EQ(static_cast<size_t>(IDnsResolver::RESOLVER_PARAMS_COUNT), kDefaultParams.size());
464 EXPECT_EQ(kDefaultParams[IDnsResolver::RESOLVER_PARAMS_SAMPLE_VALIDITY],
465 res_params.sample_validity);
466 EXPECT_EQ(kDefaultParams[IDnsResolver::RESOLVER_PARAMS_SUCCESS_THRESHOLD],
Bernie Innocentia5c7b7b2019-01-17 21:28:24 +0900467 res_params.success_threshold);
Luke Huang5bd827c2019-03-14 16:10:04 +0800468 EXPECT_EQ(kDefaultParams[IDnsResolver::RESOLVER_PARAMS_MIN_SAMPLES], res_params.min_samples);
469 EXPECT_EQ(kDefaultParams[IDnsResolver::RESOLVER_PARAMS_MAX_SAMPLES], res_params.max_samples);
470 EXPECT_EQ(kDefaultParams[IDnsResolver::RESOLVER_PARAMS_BASE_TIMEOUT_MSEC],
Ken Chenb9fa2062018-11-13 21:51:13 +0800471 res_params.base_timeout_msec);
472 EXPECT_EQ(servers.size(), res_stats.size());
473
Bernie Innocenti0c067e42019-04-01 15:33:16 +0900474 EXPECT_THAT(res_servers, testing::UnorderedElementsAreArray(servers));
475 EXPECT_THAT(res_domains, testing::UnorderedElementsAreArray(domains));
Ken Chenb9fa2062018-11-13 21:51:13 +0800476}
477
478TEST_F(ResolverTest, GetAddrInfo) {
Xiao Ma09b71022018-12-11 17:56:32 +0900479 constexpr char listen_addr[] = "127.0.0.4";
480 constexpr char listen_addr2[] = "127.0.0.5";
481 constexpr char host_name[] = "howdy.example.com.";
Ken Chenb9fa2062018-11-13 21:51:13 +0800482
Xiao Ma09b71022018-12-11 17:56:32 +0900483 const std::vector<DnsRecord> records = {
484 {host_name, ns_type::ns_t_a, "1.2.3.4"},
485 {host_name, ns_type::ns_t_aaaa, "::1.2.3.4"},
486 };
487 test::DNSResponder dns(listen_addr);
488 test::DNSResponder dns2(listen_addr2);
489 StartDns(dns, records);
490 StartDns(dns2, records);
Ken Chenb9fa2062018-11-13 21:51:13 +0800491
Xiao Ma09b71022018-12-11 17:56:32 +0900492 ASSERT_TRUE(mDnsClient.SetResolversForNetwork({listen_addr}));
Ken Chenb9fa2062018-11-13 21:51:13 +0800493 dns.clearQueries();
494 dns2.clearQueries();
495
496 ScopedAddrinfo result = safe_getaddrinfo("howdy", nullptr, nullptr);
497 EXPECT_TRUE(result != nullptr);
498 size_t found = GetNumQueries(dns, host_name);
499 EXPECT_LE(1U, found);
500 // Could be A or AAAA
501 std::string result_str = ToString(result);
502 EXPECT_TRUE(result_str == "1.2.3.4" || result_str == "::1.2.3.4")
Luke Huangf8215372019-11-22 11:53:41 +0800503 << ", result_str='" << result_str << "'";
Ken Chenb9fa2062018-11-13 21:51:13 +0800504
505 // Verify that the name is cached.
506 size_t old_found = found;
507 result = safe_getaddrinfo("howdy", nullptr, nullptr);
508 EXPECT_TRUE(result != nullptr);
509 found = GetNumQueries(dns, host_name);
510 EXPECT_LE(1U, found);
511 EXPECT_EQ(old_found, found);
512 result_str = ToString(result);
Luke Huangf8215372019-11-22 11:53:41 +0800513 EXPECT_TRUE(result_str == "1.2.3.4" || result_str == "::1.2.3.4") << result_str;
Ken Chenb9fa2062018-11-13 21:51:13 +0800514
515 // Change the DNS resolver, ensure that queries are still cached.
Xiao Ma09b71022018-12-11 17:56:32 +0900516 ASSERT_TRUE(mDnsClient.SetResolversForNetwork({listen_addr2}));
Ken Chenb9fa2062018-11-13 21:51:13 +0800517 dns.clearQueries();
518 dns2.clearQueries();
519
520 result = safe_getaddrinfo("howdy", nullptr, nullptr);
521 EXPECT_TRUE(result != nullptr);
522 found = GetNumQueries(dns, host_name);
523 size_t found2 = GetNumQueries(dns2, host_name);
524 EXPECT_EQ(0U, found);
525 EXPECT_LE(0U, found2);
526
527 // Could be A or AAAA
528 result_str = ToString(result);
529 EXPECT_TRUE(result_str == "1.2.3.4" || result_str == "::1.2.3.4")
Luke Huangf8215372019-11-22 11:53:41 +0800530 << ", result_str='" << result_str << "'";
Ken Chenb9fa2062018-11-13 21:51:13 +0800531}
532
533TEST_F(ResolverTest, GetAddrInfoV4) {
Xiao Ma09b71022018-12-11 17:56:32 +0900534 test::DNSResponder dns;
535 StartDns(dns, {{kHelloExampleCom, ns_type::ns_t_a, "1.2.3.5"}});
536 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
Ken Chenb9fa2062018-11-13 21:51:13 +0800537
Xiao Ma09b71022018-12-11 17:56:32 +0900538 const addrinfo hints = {.ai_family = AF_INET};
539 ScopedAddrinfo result = safe_getaddrinfo("hello", nullptr, &hints);
Ken Chenb9fa2062018-11-13 21:51:13 +0800540 EXPECT_TRUE(result != nullptr);
Xiao Ma09b71022018-12-11 17:56:32 +0900541 EXPECT_EQ(1U, GetNumQueries(dns, kHelloExampleCom));
Ken Chenb9fa2062018-11-13 21:51:13 +0800542 EXPECT_EQ("1.2.3.5", ToString(result));
543}
544
545TEST_F(ResolverTest, GetAddrInfo_localhost) {
Ken Chenb9fa2062018-11-13 21:51:13 +0800546 // Add a dummy nameserver which shouldn't receive any queries
Xiao Ma09b71022018-12-11 17:56:32 +0900547 test::DNSResponder dns;
548 StartDns(dns, {});
549 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
Ken Chenb9fa2062018-11-13 21:51:13 +0800550
Xiao Ma09b71022018-12-11 17:56:32 +0900551 ScopedAddrinfo result = safe_getaddrinfo(kLocalHost, nullptr, nullptr);
Ken Chenb9fa2062018-11-13 21:51:13 +0800552 EXPECT_TRUE(result != nullptr);
553 // Expect no DNS queries; localhost is resolved via /etc/hosts
554 EXPECT_TRUE(dns.queries().empty()) << dns.dumpQueries();
Xiao Ma09b71022018-12-11 17:56:32 +0900555 EXPECT_EQ(kLocalHostAddr, ToString(result));
Ken Chenb9fa2062018-11-13 21:51:13 +0800556
Xiao Ma09b71022018-12-11 17:56:32 +0900557 result = safe_getaddrinfo(kIp6LocalHost, nullptr, nullptr);
Ken Chenb9fa2062018-11-13 21:51:13 +0800558 EXPECT_TRUE(result != nullptr);
559 // Expect no DNS queries; ip6-localhost is resolved via /etc/hosts
560 EXPECT_TRUE(dns.queries().empty()) << dns.dumpQueries();
Xiao Ma09b71022018-12-11 17:56:32 +0900561 EXPECT_EQ(kIp6LocalHostAddr, ToString(result));
Ken Chenb9fa2062018-11-13 21:51:13 +0800562}
563
Luke Huangd8ac4752019-06-18 17:05:47 +0800564TEST_F(ResolverTest, GetAddrInfo_InvalidSocketType) {
565 test::DNSResponder dns;
566 StartDns(dns, {{kHelloExampleCom, ns_type::ns_t_a, "1.2.3.5"}});
567 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
568
569 // TODO: Test other invalid socket types.
570 const addrinfo hints = {
571 .ai_family = AF_UNSPEC,
Luke Huangd8ac4752019-06-18 17:05:47 +0800572 .ai_socktype = SOCK_PACKET,
573 };
574 addrinfo* result = nullptr;
575 // This is a valid hint, but the query won't be sent because the socket type is
576 // not supported.
577 EXPECT_EQ(EAI_NODATA, getaddrinfo("hello", nullptr, &hints, &result));
578 ScopedAddrinfo result_cleanup(result);
579 EXPECT_EQ(nullptr, result);
580}
581
Ken Chen92bed612018-12-22 21:46:55 +0800582// Verify if the resolver correctly handle multiple queries simultaneously
583// step 1: set dns server#1 into deferred responding mode.
584// step 2: thread#1 query "hello.example.com." --> resolver send query to server#1.
585// step 3: thread#2 query "hello.example.com." --> resolver hold the request and wait for
586// response of previous pending query sent by thread#1.
587// step 4: thread#3 query "konbanha.example.com." --> resolver send query to server#3. Server
588// respond to resolver immediately.
589// step 5: check if server#1 get 1 query by thread#1, server#2 get 0 query, server#3 get 1 query.
590// step 6: resume dns server#1 to respond dns query in step#2.
591// step 7: thread#1 and #2 should get returned from DNS query after step#6. Also, check the
592// number of queries in server#2 is 0 to ensure thread#2 does not wake up unexpectedly
593// before signaled by thread#1.
594TEST_F(ResolverTest, GetAddrInfoV4_deferred_resp) {
595 const char* listen_addr1 = "127.0.0.9";
596 const char* listen_addr2 = "127.0.0.10";
597 const char* listen_addr3 = "127.0.0.11";
598 const char* listen_srv = "53";
599 const char* host_name_deferred = "hello.example.com.";
600 const char* host_name_normal = "konbanha.example.com.";
Mike Yufc125e42019-05-15 20:41:28 +0800601 test::DNSResponder dns1(listen_addr1, listen_srv, ns_rcode::ns_r_servfail);
602 test::DNSResponder dns2(listen_addr2, listen_srv, ns_rcode::ns_r_servfail);
603 test::DNSResponder dns3(listen_addr3, listen_srv, ns_rcode::ns_r_servfail);
Ken Chen92bed612018-12-22 21:46:55 +0800604 dns1.addMapping(host_name_deferred, ns_type::ns_t_a, "1.2.3.4");
605 dns2.addMapping(host_name_deferred, ns_type::ns_t_a, "1.2.3.4");
606 dns3.addMapping(host_name_normal, ns_type::ns_t_a, "1.2.3.5");
607 ASSERT_TRUE(dns1.startServer());
608 ASSERT_TRUE(dns2.startServer());
609 ASSERT_TRUE(dns3.startServer());
610 const std::vector<std::string> servers_for_t1 = {listen_addr1};
611 const std::vector<std::string> servers_for_t2 = {listen_addr2};
612 const std::vector<std::string> servers_for_t3 = {listen_addr3};
613 addrinfo hints = {.ai_family = AF_INET};
614 const std::vector<int> params = {300, 25, 8, 8, 5000};
615 bool t3_task_done = false;
616
617 dns1.setDeferredResp(true);
618 std::thread t1([&, this]() {
619 ASSERT_TRUE(
620 mDnsClient.SetResolversForNetwork(servers_for_t1, kDefaultSearchDomains, params));
621 ScopedAddrinfo result = safe_getaddrinfo(host_name_deferred, nullptr, &hints);
622 // t3's dns query should got returned first
623 EXPECT_TRUE(t3_task_done);
624 EXPECT_EQ(1U, GetNumQueries(dns1, host_name_deferred));
625 EXPECT_TRUE(result != nullptr);
626 EXPECT_EQ("1.2.3.4", ToString(result));
627 });
628
629 // ensuring t1 and t2 handler functions are processed in order
630 usleep(100 * 1000);
631 std::thread t2([&, this]() {
632 ASSERT_TRUE(
633 mDnsClient.SetResolversForNetwork(servers_for_t2, kDefaultSearchDomains, params));
634 ScopedAddrinfo result = safe_getaddrinfo(host_name_deferred, nullptr, &hints);
635 EXPECT_TRUE(t3_task_done);
636 EXPECT_EQ(0U, GetNumQueries(dns2, host_name_deferred));
637 EXPECT_TRUE(result != nullptr);
638 EXPECT_EQ("1.2.3.4", ToString(result));
639
640 std::vector<std::string> res_servers;
641 std::vector<std::string> res_domains;
642 std::vector<std::string> res_tls_servers;
Bernie Innocenti758005f2019-02-19 18:08:36 +0900643 res_params res_params;
Ken Chen92bed612018-12-22 21:46:55 +0800644 std::vector<ResolverStats> res_stats;
645 int wait_for_pending_req_timeout_count;
Luke Huangf8215372019-11-22 11:53:41 +0800646 ASSERT_TRUE(DnsResponderClient::GetResolverInfo(
647 mDnsClient.resolvService(), TEST_NETID, &res_servers, &res_domains,
648 &res_tls_servers, &res_params, &res_stats, &wait_for_pending_req_timeout_count));
Ken Chen92bed612018-12-22 21:46:55 +0800649 EXPECT_EQ(0, wait_for_pending_req_timeout_count);
650 });
651
652 // ensuring t2 and t3 handler functions are processed in order
653 usleep(100 * 1000);
654 std::thread t3([&, this]() {
655 ASSERT_TRUE(
656 mDnsClient.SetResolversForNetwork(servers_for_t3, kDefaultSearchDomains, params));
657 ScopedAddrinfo result = safe_getaddrinfo(host_name_normal, nullptr, &hints);
658 EXPECT_EQ(1U, GetNumQueries(dns1, host_name_deferred));
659 EXPECT_EQ(0U, GetNumQueries(dns2, host_name_deferred));
660 EXPECT_EQ(1U, GetNumQueries(dns3, host_name_normal));
661 EXPECT_TRUE(result != nullptr);
662 EXPECT_EQ("1.2.3.5", ToString(result));
663
664 t3_task_done = true;
665 dns1.setDeferredResp(false);
666 });
667 t3.join();
668 t1.join();
669 t2.join();
670}
671
lifr4e4a2e02019-01-29 16:53:51 +0800672TEST_F(ResolverTest, GetAddrInfo_cnames) {
673 constexpr char host_name[] = "host.example.com.";
674 test::DNSResponder dns;
675 const std::vector<DnsRecord> records = {
676 {kHelloExampleCom, ns_type::ns_t_cname, "a.example.com."},
677 {"a.example.com.", ns_type::ns_t_cname, "b.example.com."},
678 {"b.example.com.", ns_type::ns_t_cname, "c.example.com."},
679 {"c.example.com.", ns_type::ns_t_cname, "d.example.com."},
680 {"d.example.com.", ns_type::ns_t_cname, "e.example.com."},
681 {"e.example.com.", ns_type::ns_t_cname, host_name},
682 {host_name, ns_type::ns_t_a, "1.2.3.3"},
683 {host_name, ns_type::ns_t_aaaa, "2001:db8::42"},
684 };
685 StartDns(dns, records);
686 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
687
688 addrinfo hints = {.ai_family = AF_INET};
689 ScopedAddrinfo result = safe_getaddrinfo("hello", nullptr, &hints);
690 EXPECT_TRUE(result != nullptr);
691 EXPECT_EQ("1.2.3.3", ToString(result));
692
693 dns.clearQueries();
694 hints = {.ai_family = AF_INET6};
695 result = safe_getaddrinfo("hello", nullptr, &hints);
696 EXPECT_TRUE(result != nullptr);
697 EXPECT_EQ("2001:db8::42", ToString(result));
698}
699
700TEST_F(ResolverTest, GetAddrInfo_cnamesNoIpAddress) {
701 test::DNSResponder dns;
702 const std::vector<DnsRecord> records = {
703 {kHelloExampleCom, ns_type::ns_t_cname, "a.example.com."},
704 };
705 StartDns(dns, records);
706 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
707
708 addrinfo hints = {.ai_family = AF_INET};
709 ScopedAddrinfo result = safe_getaddrinfo("hello", nullptr, &hints);
710 EXPECT_TRUE(result == nullptr);
711
712 dns.clearQueries();
713 hints = {.ai_family = AF_INET6};
714 result = safe_getaddrinfo("hello", nullptr, &hints);
715 EXPECT_TRUE(result == nullptr);
716}
717
718TEST_F(ResolverTest, GetAddrInfo_cnamesIllegalRdata) {
719 test::DNSResponder dns;
720 const std::vector<DnsRecord> records = {
721 {kHelloExampleCom, ns_type::ns_t_cname, ".!#?"},
722 };
723 StartDns(dns, records);
724 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
725
726 addrinfo hints = {.ai_family = AF_INET};
727 ScopedAddrinfo result = safe_getaddrinfo("hello", nullptr, &hints);
728 EXPECT_TRUE(result == nullptr);
729
730 dns.clearQueries();
731 hints = {.ai_family = AF_INET6};
732 result = safe_getaddrinfo("hello", nullptr, &hints);
733 EXPECT_TRUE(result == nullptr);
734}
735
Ken Chenb9fa2062018-11-13 21:51:13 +0800736TEST_F(ResolverTest, MultidomainResolution) {
Xiao Ma09b71022018-12-11 17:56:32 +0900737 constexpr char host_name[] = "nihao.example2.com.";
Luke Huangf8215372019-11-22 11:53:41 +0800738 std::vector<std::string> searchDomains = {"example1.com", "example2.com", "example3.com"};
Ken Chenb9fa2062018-11-13 21:51:13 +0800739
Xiao Ma09b71022018-12-11 17:56:32 +0900740 test::DNSResponder dns("127.0.0.6");
741 StartDns(dns, {{host_name, ns_type::ns_t_a, "1.2.3.3"}});
742 ASSERT_TRUE(mDnsClient.SetResolversForNetwork({"127.0.0.6"}, searchDomains));
743
Ken Chenb9fa2062018-11-13 21:51:13 +0800744 const hostent* result = gethostbyname("nihao");
Xiao Ma09b71022018-12-11 17:56:32 +0900745
Ken Chenb9fa2062018-11-13 21:51:13 +0800746 EXPECT_EQ(1U, GetNumQueriesForType(dns, ns_type::ns_t_a, host_name));
747 ASSERT_FALSE(result == nullptr);
748 ASSERT_EQ(4, result->h_length);
749 ASSERT_FALSE(result->h_addr_list[0] == nullptr);
750 EXPECT_EQ("1.2.3.3", ToString(result));
751 EXPECT_TRUE(result->h_addr_list[1] == nullptr);
Ken Chenb9fa2062018-11-13 21:51:13 +0800752}
753
754TEST_F(ResolverTest, GetAddrInfoV6_numeric) {
Ken Chenb9fa2062018-11-13 21:51:13 +0800755 constexpr char host_name[] = "ohayou.example.com.";
756 constexpr char numeric_addr[] = "fe80::1%lo";
757
Xiao Ma09b71022018-12-11 17:56:32 +0900758 test::DNSResponder dns;
Ken Chenb9fa2062018-11-13 21:51:13 +0800759 dns.setResponseProbability(0.0);
Xiao Ma09b71022018-12-11 17:56:32 +0900760 StartDns(dns, {{host_name, ns_type::ns_t_aaaa, "2001:db8::5"}});
761 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
Ken Chenb9fa2062018-11-13 21:51:13 +0800762
763 addrinfo hints = {.ai_family = AF_INET6};
764 ScopedAddrinfo result = safe_getaddrinfo(numeric_addr, nullptr, &hints);
765 EXPECT_TRUE(result != nullptr);
766 EXPECT_EQ(numeric_addr, ToString(result));
767 EXPECT_TRUE(dns.queries().empty()); // Ensure no DNS queries were sent out
768
769 // Now try a non-numeric hostname query with the AI_NUMERICHOST flag set.
770 // We should fail without sending out a DNS query.
771 hints.ai_flags |= AI_NUMERICHOST;
772 result = safe_getaddrinfo(host_name, nullptr, &hints);
773 EXPECT_TRUE(result == nullptr);
774 EXPECT_TRUE(dns.queries().empty()); // Ensure no DNS queries were sent out
775}
776
777TEST_F(ResolverTest, GetAddrInfoV6_failing) {
Xiao Ma09b71022018-12-11 17:56:32 +0900778 constexpr char listen_addr0[] = "127.0.0.7";
779 constexpr char listen_addr1[] = "127.0.0.8";
Ken Chenb9fa2062018-11-13 21:51:13 +0800780 const char* host_name = "ohayou.example.com.";
Xiao Ma09b71022018-12-11 17:56:32 +0900781
782 test::DNSResponder dns0(listen_addr0);
783 test::DNSResponder dns1(listen_addr1);
Ken Chenb9fa2062018-11-13 21:51:13 +0800784 dns0.setResponseProbability(0.0);
Xiao Ma09b71022018-12-11 17:56:32 +0900785 StartDns(dns0, {{host_name, ns_type::ns_t_aaaa, "2001:db8::5"}});
786 StartDns(dns1, {{host_name, ns_type::ns_t_aaaa, "2001:db8::6"}});
787
Luke Huangf8215372019-11-22 11:53:41 +0800788 std::vector<std::string> servers = {listen_addr0, listen_addr1};
Ken Chenb9fa2062018-11-13 21:51:13 +0800789 // <sample validity in s> <success threshold in percent> <min samples> <max samples>
790 int sample_count = 8;
Luke Huangf8215372019-11-22 11:53:41 +0800791 const std::vector<int> params = {300, 25, sample_count, sample_count};
Xiao Ma09b71022018-12-11 17:56:32 +0900792 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers, kDefaultSearchDomains, params));
Ken Chenb9fa2062018-11-13 21:51:13 +0800793
794 // Repeatedly perform resolutions for non-existing domains until MAXNSSAMPLES resolutions have
795 // reached the dns0, which is set to fail. No more requests should then arrive at that server
796 // for the next sample_lifetime seconds.
797 // TODO: This approach is implementation-dependent, change once metrics reporting is available.
Xiao Ma09b71022018-12-11 17:56:32 +0900798 const addrinfo hints = {.ai_family = AF_INET6};
Bernie Innocentib102dd22018-12-04 14:57:48 +0900799 for (int i = 0; i < sample_count; ++i) {
Ken Chenb9fa2062018-11-13 21:51:13 +0800800 std::string domain = StringPrintf("nonexistent%d", i);
801 ScopedAddrinfo result = safe_getaddrinfo(domain.c_str(), nullptr, &hints);
802 }
803 // Due to 100% errors for all possible samples, the server should be ignored from now on and
804 // only the second one used for all following queries, until NSSAMPLE_VALIDITY is reached.
805 dns0.clearQueries();
806 dns1.clearQueries();
807 ScopedAddrinfo result = safe_getaddrinfo("ohayou", nullptr, &hints);
808 EXPECT_TRUE(result != nullptr);
809 EXPECT_EQ(0U, GetNumQueries(dns0, host_name));
810 EXPECT_EQ(1U, GetNumQueries(dns1, host_name));
811}
812
813TEST_F(ResolverTest, GetAddrInfoV6_nonresponsive) {
Xiao Ma09b71022018-12-11 17:56:32 +0900814 constexpr char listen_addr0[] = "127.0.0.7";
815 constexpr char listen_addr1[] = "127.0.0.8";
816 constexpr char listen_srv[] = "53";
817 constexpr char host_name1[] = "ohayou.example.com.";
818 constexpr char host_name2[] = "ciao.example.com.";
Luke Huang483cf332019-06-03 17:24:51 +0800819 const std::vector<std::string> defaultSearchDomain = {"example.com"};
820 // The minimal timeout is 1000ms, so we can't decrease timeout
821 // So reduce retry count.
822 const std::vector<int> reduceRetryParams = {
823 300, // sample validity in seconds
824 25, // success threshod in percent
825 8, 8, // {MIN,MAX}_SAMPLES
826 1000, // BASE_TIMEOUT_MSEC
827 1, // retry count
828 };
Xiao Ma09b71022018-12-11 17:56:32 +0900829 const std::vector<DnsRecord> records0 = {
830 {host_name1, ns_type::ns_t_aaaa, "2001:db8::5"},
831 {host_name2, ns_type::ns_t_aaaa, "2001:db8::5"},
832 };
833 const std::vector<DnsRecord> records1 = {
834 {host_name1, ns_type::ns_t_aaaa, "2001:db8::6"},
835 {host_name2, ns_type::ns_t_aaaa, "2001:db8::6"},
836 };
Ken Chenb9fa2062018-11-13 21:51:13 +0800837
838 // dns0 does not respond with 100% probability, while
839 // dns1 responds normally, at least initially.
Mike Yufc125e42019-05-15 20:41:28 +0800840 test::DNSResponder dns0(listen_addr0, listen_srv, static_cast<ns_rcode>(-1));
841 test::DNSResponder dns1(listen_addr1, listen_srv, static_cast<ns_rcode>(-1));
Ken Chenb9fa2062018-11-13 21:51:13 +0800842 dns0.setResponseProbability(0.0);
Xiao Ma09b71022018-12-11 17:56:32 +0900843 StartDns(dns0, records0);
844 StartDns(dns1, records1);
Luke Huang483cf332019-06-03 17:24:51 +0800845 ASSERT_TRUE(mDnsClient.SetResolversForNetwork({listen_addr0, listen_addr1}, defaultSearchDomain,
846 reduceRetryParams));
Ken Chenb9fa2062018-11-13 21:51:13 +0800847
Luke Huang483cf332019-06-03 17:24:51 +0800848 // Specify ai_socktype to make getaddrinfo will only query 1 time
849 const addrinfo hints = {.ai_family = AF_INET6, .ai_socktype = SOCK_STREAM};
Ken Chenb9fa2062018-11-13 21:51:13 +0800850
851 // dns0 will ignore the request, and we'll fallback to dns1 after the first
852 // retry.
853 ScopedAddrinfo result = safe_getaddrinfo(host_name1, nullptr, &hints);
854 EXPECT_TRUE(result != nullptr);
855 EXPECT_EQ(1U, GetNumQueries(dns0, host_name1));
856 EXPECT_EQ(1U, GetNumQueries(dns1, host_name1));
857
858 // Now make dns1 also ignore 100% requests... The resolve should alternate
Luke Huang483cf332019-06-03 17:24:51 +0800859 // queries between the nameservers and fail
Ken Chenb9fa2062018-11-13 21:51:13 +0800860 dns1.setResponseProbability(0.0);
861 addrinfo* result2 = nullptr;
862 EXPECT_EQ(EAI_NODATA, getaddrinfo(host_name2, nullptr, &hints, &result2));
863 EXPECT_EQ(nullptr, result2);
Luke Huang483cf332019-06-03 17:24:51 +0800864 EXPECT_EQ(1U, GetNumQueries(dns0, host_name2));
865 EXPECT_EQ(1U, GetNumQueries(dns1, host_name2));
Ken Chenb9fa2062018-11-13 21:51:13 +0800866}
867
868TEST_F(ResolverTest, GetAddrInfoV6_concurrent) {
Xiao Ma09b71022018-12-11 17:56:32 +0900869 constexpr char listen_addr0[] = "127.0.0.9";
870 constexpr char listen_addr1[] = "127.0.0.10";
871 constexpr char listen_addr2[] = "127.0.0.11";
872 constexpr char host_name[] = "konbanha.example.com.";
873
874 test::DNSResponder dns0(listen_addr0);
875 test::DNSResponder dns1(listen_addr1);
876 test::DNSResponder dns2(listen_addr2);
877 StartDns(dns0, {{host_name, ns_type::ns_t_aaaa, "2001:db8::5"}});
878 StartDns(dns1, {{host_name, ns_type::ns_t_aaaa, "2001:db8::6"}});
879 StartDns(dns2, {{host_name, ns_type::ns_t_aaaa, "2001:db8::7"}});
880
Luke Huangf8215372019-11-22 11:53:41 +0800881 const std::vector<std::string> servers = {listen_addr0, listen_addr1, listen_addr2};
Ken Chenb9fa2062018-11-13 21:51:13 +0800882 std::vector<std::thread> threads(10);
883 for (std::thread& thread : threads) {
Luke Huangf8215372019-11-22 11:53:41 +0800884 thread = std::thread([this, &servers]() {
885 unsigned delay = arc4random_uniform(1 * 1000 * 1000); // <= 1s
Ken Chenb9fa2062018-11-13 21:51:13 +0800886 usleep(delay);
887 std::vector<std::string> serverSubset;
888 for (const auto& server : servers) {
889 if (arc4random_uniform(2)) {
890 serverSubset.push_back(server);
891 }
892 }
893 if (serverSubset.empty()) serverSubset = servers;
Xiao Ma09b71022018-12-11 17:56:32 +0900894 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(serverSubset));
895 const addrinfo hints = {.ai_family = AF_INET6};
Ken Chenb9fa2062018-11-13 21:51:13 +0800896 addrinfo* result = nullptr;
897 int rv = getaddrinfo("konbanha", nullptr, &hints, &result);
898 EXPECT_EQ(0, rv) << "error [" << rv << "] " << gai_strerror(rv);
899 if (result) {
900 freeaddrinfo(result);
901 result = nullptr;
902 }
903 });
904 }
905 for (std::thread& thread : threads) {
906 thread.join();
907 }
Ken Chen92bed612018-12-22 21:46:55 +0800908
909 std::vector<std::string> res_servers;
910 std::vector<std::string> res_domains;
911 std::vector<std::string> res_tls_servers;
Bernie Innocenti758005f2019-02-19 18:08:36 +0900912 res_params res_params;
Ken Chen92bed612018-12-22 21:46:55 +0800913 std::vector<ResolverStats> res_stats;
914 int wait_for_pending_req_timeout_count;
Luke Huangf8215372019-11-22 11:53:41 +0800915 ASSERT_TRUE(DnsResponderClient::GetResolverInfo(
916 mDnsClient.resolvService(), TEST_NETID, &res_servers, &res_domains, &res_tls_servers,
917 &res_params, &res_stats, &wait_for_pending_req_timeout_count));
Ken Chen92bed612018-12-22 21:46:55 +0800918 EXPECT_EQ(0, wait_for_pending_req_timeout_count);
Ken Chenb9fa2062018-11-13 21:51:13 +0800919}
920
Mike Yu8ac63402019-12-02 15:28:38 +0800921TEST_F(ResolverTest, SkipBadServersDueToInternalError) {
922 constexpr char listen_addr1[] = "fe80::1";
923 constexpr char listen_addr2[] = "255.255.255.255";
924 constexpr char listen_addr3[] = "127.0.0.3";
925
926 test::DNSResponder dns(listen_addr3);
927 ASSERT_TRUE(dns.startServer());
928
929 ResolverParamsParcel parcel = DnsResponderClient::GetDefaultResolverParamsParcel();
930 parcel.servers = {listen_addr1, listen_addr2, listen_addr3};
931
932 // Bad servers can be distinguished after two attempts.
933 parcel.minSamples = 2;
934 ASSERT_TRUE(mDnsClient.SetResolversFromParcel(parcel));
935
936 // Start querying five times.
937 for (int i = 0; i < 5; i++) {
938 std::string hostName = StringPrintf("hello%d.com.", i);
939 dns.addMapping(hostName, ns_type::ns_t_a, "1.2.3.4");
940 const addrinfo hints = {.ai_family = AF_INET, .ai_socktype = SOCK_DGRAM};
941 EXPECT_TRUE(safe_getaddrinfo(hostName.c_str(), nullptr, &hints) != nullptr);
942 }
943
944 std::vector<std::string> res_servers;
945 std::vector<std::string> res_domains;
946 std::vector<std::string> res_tls_servers;
947 res_params res_params;
948 std::vector<ResolverStats> res_stats;
949 int wait_for_pending_req_timeout_count;
950 ASSERT_TRUE(DnsResponderClient::GetResolverInfo(
951 mDnsClient.resolvService(), TEST_NETID, &res_servers, &res_domains, &res_tls_servers,
952 &res_params, &res_stats, &wait_for_pending_req_timeout_count));
953
954 // Verify the result by means of the statistics.
955 EXPECT_EQ(res_stats[0].successes, 0);
956 EXPECT_EQ(res_stats[1].successes, 0);
957 EXPECT_EQ(res_stats[2].successes, 5);
958 EXPECT_EQ(res_stats[0].internal_errors, 2);
959 EXPECT_EQ(res_stats[1].internal_errors, 2);
960 EXPECT_EQ(res_stats[2].internal_errors, 0);
961}
962
963TEST_F(ResolverTest, SkipBadServersDueToTimeout) {
964 constexpr char listen_addr1[] = "127.0.0.3";
965 constexpr char listen_addr2[] = "127.0.0.4";
966
967 // Set dns1 non-responsive and dns2 workable.
968 test::DNSResponder dns1(listen_addr1, test::kDefaultListenService, static_cast<ns_rcode>(-1));
969 test::DNSResponder dns2(listen_addr2);
970 dns1.setResponseProbability(0.0);
971 ASSERT_TRUE(dns1.startServer());
972 ASSERT_TRUE(dns2.startServer());
973
974 ResolverParamsParcel parcel = DnsResponderClient::GetDefaultResolverParamsParcel();
975 parcel.servers = {listen_addr1, listen_addr2};
976
977 // Bad servers can be distinguished after two attempts.
978 parcel.minSamples = 2;
979 ASSERT_TRUE(mDnsClient.SetResolversFromParcel(parcel));
980
981 // Start querying five times.
982 for (int i = 0; i < 5; i++) {
983 std::string hostName = StringPrintf("hello%d.com.", i);
984 dns1.addMapping(hostName, ns_type::ns_t_a, "1.2.3.4");
985 dns2.addMapping(hostName, ns_type::ns_t_a, "1.2.3.5");
986 const addrinfo hints = {.ai_family = AF_INET, .ai_socktype = SOCK_DGRAM};
987 EXPECT_TRUE(safe_getaddrinfo(hostName.c_str(), nullptr, &hints) != nullptr);
988 }
989
990 std::vector<std::string> res_servers;
991 std::vector<std::string> res_domains;
992 std::vector<std::string> res_tls_servers;
993 res_params res_params;
994 std::vector<ResolverStats> res_stats;
995 int wait_for_pending_req_timeout_count;
996 ASSERT_TRUE(DnsResponderClient::GetResolverInfo(
997 mDnsClient.resolvService(), TEST_NETID, &res_servers, &res_domains, &res_tls_servers,
998 &res_params, &res_stats, &wait_for_pending_req_timeout_count));
999
1000 // Verify the result by means of the statistics as well as the query counts.
1001 EXPECT_EQ(res_stats[0].successes, 0);
1002 EXPECT_EQ(res_stats[1].successes, 5);
1003 EXPECT_EQ(res_stats[0].timeouts, 2);
1004 EXPECT_EQ(res_stats[1].timeouts, 0);
1005 EXPECT_EQ(dns1.queries().size(), 2U);
1006 EXPECT_EQ(dns2.queries().size(), 5U);
1007}
1008
chenbrucefd837fa2019-10-29 18:35:36 +08001009TEST_F(ResolverTest, GetAddrInfoFromCustTable_InvalidInput) {
1010 constexpr char hostnameNoip[] = "noip.example.com.";
1011 constexpr char hostnameInvalidip[] = "invalidip.example.com.";
1012 const std::vector<aidl::android::net::ResolverHostsParcel> invalidCustHosts = {
1013 {"", hostnameNoip},
1014 {"wrong IP", hostnameInvalidip},
1015 };
1016 test::DNSResponder dns;
1017 StartDns(dns, {});
1018 auto resolverParams = DnsResponderClient::GetDefaultResolverParamsParcel();
Ken Chen99344882020-01-01 14:59:38 +08001019 resolverParams.experimentalOptions.hosts = invalidCustHosts;
chenbrucefd837fa2019-10-29 18:35:36 +08001020 ASSERT_TRUE(mDnsClient.resolvService()->setResolverConfiguration(resolverParams).isOk());
1021 for (const auto& hostname : {hostnameNoip, hostnameInvalidip}) {
1022 // The query won't get data from customized table because of invalid customized table
1023 // and DNSResponder also has no records. hostnameNoip has never registered and
1024 // hostnameInvalidip has registered but wrong IP.
1025 const addrinfo hints = {.ai_family = AF_UNSPEC};
1026 ScopedAddrinfo result = safe_getaddrinfo(hostname, nullptr, &hints);
1027 ASSERT_TRUE(result == nullptr);
1028 EXPECT_EQ(4U, GetNumQueries(dns, hostname));
1029 }
1030}
1031
1032TEST_F(ResolverTest, GetAddrInfoFromCustTable) {
1033 constexpr char hostnameV4[] = "v4only.example.com.";
1034 constexpr char hostnameV6[] = "v6only.example.com.";
1035 constexpr char hostnameV4V6[] = "v4v6.example.com.";
1036 constexpr char custAddrV4[] = "1.2.3.4";
1037 constexpr char custAddrV6[] = "::1.2.3.4";
1038 constexpr char dnsSvAddrV4[] = "1.2.3.5";
1039 constexpr char dnsSvAddrV6[] = "::1.2.3.5";
1040 const std::vector<aidl::android::net::ResolverHostsParcel> custHostV4 = {
1041 {custAddrV4, hostnameV4},
1042 };
1043 const std::vector<aidl::android::net::ResolverHostsParcel> custHostV6 = {
1044 {custAddrV6, hostnameV6},
1045 };
1046 const std::vector<aidl::android::net::ResolverHostsParcel> custHostV4V6 = {
1047 {custAddrV4, hostnameV4V6},
1048 {custAddrV6, hostnameV4V6},
1049 };
1050 const std::vector<DnsRecord> dnsSvHostV4 = {
1051 {hostnameV4, ns_type::ns_t_a, dnsSvAddrV4},
1052 };
1053 const std::vector<DnsRecord> dnsSvHostV6 = {
1054 {hostnameV6, ns_type::ns_t_aaaa, dnsSvAddrV6},
1055 };
1056 const std::vector<DnsRecord> dnsSvHostV4V6 = {
1057 {hostnameV4V6, ns_type::ns_t_a, dnsSvAddrV4},
1058 {hostnameV4V6, ns_type::ns_t_aaaa, dnsSvAddrV6},
1059 };
1060 struct TestConfig {
1061 const std::string name;
1062 const std::vector<aidl::android::net::ResolverHostsParcel> customizedHosts;
1063 const std::vector<DnsRecord> dnsserverHosts;
1064 const std::vector<std::string> queryResult;
1065 std::string asParameters() const {
1066 return StringPrintf("name: %s, customizedHosts: %s, dnsserverHosts: %s", name.c_str(),
1067 customizedHosts.empty() ? "No" : "Yes",
1068 dnsserverHosts.empty() ? "No" : "Yes");
1069 }
1070 } testConfigs[]{
1071 // clang-format off
1072 {hostnameV4, {}, {}, {}},
1073 {hostnameV4, {}, dnsSvHostV4, {dnsSvAddrV4}},
1074 {hostnameV4, custHostV4, {}, {custAddrV4}},
1075 {hostnameV4, custHostV4, dnsSvHostV4, {custAddrV4}},
1076 {hostnameV6, {}, {}, {}},
1077 {hostnameV6, {}, dnsSvHostV6, {dnsSvAddrV6}},
1078 {hostnameV6, custHostV6, {}, {custAddrV6}},
1079 {hostnameV6, custHostV6, dnsSvHostV6, {custAddrV6}},
1080 {hostnameV4V6, {}, {}, {}},
1081 {hostnameV4V6, {}, dnsSvHostV4V6, {dnsSvAddrV4, dnsSvAddrV6}},
1082 {hostnameV4V6, custHostV4V6, {}, {custAddrV4, custAddrV6}},
1083 {hostnameV4V6, custHostV4V6, dnsSvHostV4V6, {custAddrV4, custAddrV6}},
1084 // clang-format on
1085 };
1086
1087 for (const auto& config : testConfigs) {
1088 SCOPED_TRACE(config.asParameters());
1089
1090 test::DNSResponder dns;
1091 StartDns(dns, config.dnsserverHosts);
1092
1093 auto resolverParams = DnsResponderClient::GetDefaultResolverParamsParcel();
Ken Chen99344882020-01-01 14:59:38 +08001094 resolverParams.experimentalOptions.hosts = config.customizedHosts;
chenbrucefd837fa2019-10-29 18:35:36 +08001095 ASSERT_TRUE(mDnsClient.resolvService()->setResolverConfiguration(resolverParams).isOk());
1096 const addrinfo hints = {.ai_family = AF_UNSPEC, .ai_socktype = SOCK_STREAM};
1097 ScopedAddrinfo result = safe_getaddrinfo(config.name.c_str(), nullptr, &hints);
1098 if (config.customizedHosts.empty() && config.dnsserverHosts.empty()) {
1099 ASSERT_TRUE(result == nullptr);
1100 EXPECT_EQ(2U, GetNumQueries(dns, config.name.c_str()));
1101 } else {
1102 ASSERT_TRUE(result != nullptr);
1103 EXPECT_THAT(ToStrings(result), testing::UnorderedElementsAreArray(config.queryResult));
1104 EXPECT_EQ(config.customizedHosts.empty() ? 2U : 0U,
1105 GetNumQueries(dns, config.name.c_str()));
1106 }
1107
1108 EXPECT_TRUE(mDnsClient.resolvService()->flushNetworkCache(TEST_NETID).isOk());
1109 }
1110}
1111
1112TEST_F(ResolverTest, GetAddrInfoFromCustTable_Modify) {
1113 constexpr char hostnameV4V6[] = "v4v6.example.com.";
1114 constexpr char custAddrV4[] = "1.2.3.4";
1115 constexpr char custAddrV6[] = "::1.2.3.4";
1116 constexpr char dnsSvAddrV4[] = "1.2.3.5";
1117 constexpr char dnsSvAddrV6[] = "::1.2.3.5";
1118 const std::vector<DnsRecord> dnsSvHostV4V6 = {
1119 {hostnameV4V6, ns_type::ns_t_a, dnsSvAddrV4},
1120 {hostnameV4V6, ns_type::ns_t_aaaa, dnsSvAddrV6},
1121 };
1122 const std::vector<aidl::android::net::ResolverHostsParcel> custHostV4V6 = {
1123 {custAddrV4, hostnameV4V6},
1124 {custAddrV6, hostnameV4V6},
1125 };
1126 test::DNSResponder dns;
1127 StartDns(dns, dnsSvHostV4V6);
1128 auto resolverParams = DnsResponderClient::GetDefaultResolverParamsParcel();
1129
Ken Chen99344882020-01-01 14:59:38 +08001130 resolverParams.experimentalOptions.hosts = custHostV4V6;
chenbrucefd837fa2019-10-29 18:35:36 +08001131 ASSERT_TRUE(mDnsClient.resolvService()->setResolverConfiguration(resolverParams).isOk());
1132 const addrinfo hints = {.ai_family = AF_UNSPEC, .ai_socktype = SOCK_STREAM};
1133 ScopedAddrinfo result = safe_getaddrinfo(hostnameV4V6, nullptr, &hints);
1134 ASSERT_TRUE(result != nullptr);
1135 EXPECT_THAT(ToStrings(result), testing::UnorderedElementsAreArray({custAddrV4, custAddrV6}));
1136 EXPECT_EQ(0U, GetNumQueries(dns, hostnameV4V6));
1137
Ken Chen99344882020-01-01 14:59:38 +08001138 resolverParams.experimentalOptions.hosts = {};
chenbrucefd837fa2019-10-29 18:35:36 +08001139 ASSERT_TRUE(mDnsClient.resolvService()->setResolverConfiguration(resolverParams).isOk());
1140 result = safe_getaddrinfo(hostnameV4V6, nullptr, &hints);
1141 ASSERT_TRUE(result != nullptr);
1142 EXPECT_THAT(ToStrings(result), testing::UnorderedElementsAreArray({dnsSvAddrV4, dnsSvAddrV6}));
1143 EXPECT_EQ(2U, GetNumQueries(dns, hostnameV4V6));
1144}
1145
Ken Chenb9fa2062018-11-13 21:51:13 +08001146TEST_F(ResolverTest, EmptySetup) {
Ken Chenb9fa2062018-11-13 21:51:13 +08001147 std::vector<std::string> servers;
1148 std::vector<std::string> domains;
Xiao Ma09b71022018-12-11 17:56:32 +09001149 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers, domains));
Ken Chenb9fa2062018-11-13 21:51:13 +08001150 std::vector<std::string> res_servers;
1151 std::vector<std::string> res_domains;
Mike Yu0a1c53d2018-11-26 13:26:21 +09001152 std::vector<std::string> res_tls_servers;
Bernie Innocenti758005f2019-02-19 18:08:36 +09001153 res_params res_params;
Ken Chenb9fa2062018-11-13 21:51:13 +08001154 std::vector<ResolverStats> res_stats;
Ken Chen92bed612018-12-22 21:46:55 +08001155 int wait_for_pending_req_timeout_count;
Luke Huangf8215372019-11-22 11:53:41 +08001156 ASSERT_TRUE(DnsResponderClient::GetResolverInfo(
1157 mDnsClient.resolvService(), TEST_NETID, &res_servers, &res_domains, &res_tls_servers,
1158 &res_params, &res_stats, &wait_for_pending_req_timeout_count));
Ken Chenb9fa2062018-11-13 21:51:13 +08001159 EXPECT_EQ(0U, res_servers.size());
1160 EXPECT_EQ(0U, res_domains.size());
Mike Yu0a1c53d2018-11-26 13:26:21 +09001161 EXPECT_EQ(0U, res_tls_servers.size());
Luke Huang5bd827c2019-03-14 16:10:04 +08001162 ASSERT_EQ(static_cast<size_t>(IDnsResolver::RESOLVER_PARAMS_COUNT), kDefaultParams.size());
1163 EXPECT_EQ(kDefaultParams[IDnsResolver::RESOLVER_PARAMS_SAMPLE_VALIDITY],
1164 res_params.sample_validity);
1165 EXPECT_EQ(kDefaultParams[IDnsResolver::RESOLVER_PARAMS_SUCCESS_THRESHOLD],
Bernie Innocentia5c7b7b2019-01-17 21:28:24 +09001166 res_params.success_threshold);
Luke Huang5bd827c2019-03-14 16:10:04 +08001167 EXPECT_EQ(kDefaultParams[IDnsResolver::RESOLVER_PARAMS_MIN_SAMPLES], res_params.min_samples);
1168 EXPECT_EQ(kDefaultParams[IDnsResolver::RESOLVER_PARAMS_MAX_SAMPLES], res_params.max_samples);
1169 EXPECT_EQ(kDefaultParams[IDnsResolver::RESOLVER_PARAMS_BASE_TIMEOUT_MSEC],
Ken Chenb9fa2062018-11-13 21:51:13 +08001170 res_params.base_timeout_msec);
Luke Huang5bd827c2019-03-14 16:10:04 +08001171 EXPECT_EQ(kDefaultParams[IDnsResolver::RESOLVER_PARAMS_RETRY_COUNT], res_params.retry_count);
Ken Chenb9fa2062018-11-13 21:51:13 +08001172}
1173
1174TEST_F(ResolverTest, SearchPathChange) {
Xiao Ma09b71022018-12-11 17:56:32 +09001175 constexpr char listen_addr[] = "127.0.0.13";
1176 constexpr char host_name1[] = "test13.domain1.org.";
1177 constexpr char host_name2[] = "test13.domain2.org.";
Luke Huangf8215372019-11-22 11:53:41 +08001178 std::vector<std::string> servers = {listen_addr};
1179 std::vector<std::string> domains = {"domain1.org"};
Xiao Ma09b71022018-12-11 17:56:32 +09001180
1181 const std::vector<DnsRecord> records = {
1182 {host_name1, ns_type::ns_t_aaaa, "2001:db8::13"},
1183 {host_name2, ns_type::ns_t_aaaa, "2001:db8::1:13"},
1184 };
1185 test::DNSResponder dns(listen_addr);
1186 StartDns(dns, records);
1187 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers, domains));
Ken Chenb9fa2062018-11-13 21:51:13 +08001188
1189 const addrinfo hints = {.ai_family = AF_INET6};
1190 ScopedAddrinfo result = safe_getaddrinfo("test13", nullptr, &hints);
1191 EXPECT_TRUE(result != nullptr);
1192 EXPECT_EQ(1U, dns.queries().size());
1193 EXPECT_EQ(1U, GetNumQueries(dns, host_name1));
1194 EXPECT_EQ("2001:db8::13", ToString(result));
1195
1196 // Test that changing the domain search path on its own works.
Luke Huangf8215372019-11-22 11:53:41 +08001197 domains = {"domain2.org"};
Xiao Ma09b71022018-12-11 17:56:32 +09001198 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers, domains));
Ken Chenb9fa2062018-11-13 21:51:13 +08001199 dns.clearQueries();
1200
1201 result = safe_getaddrinfo("test13", nullptr, &hints);
1202 EXPECT_TRUE(result != nullptr);
1203 EXPECT_EQ(1U, dns.queries().size());
1204 EXPECT_EQ(1U, GetNumQueries(dns, host_name2));
1205 EXPECT_EQ("2001:db8::1:13", ToString(result));
1206}
1207
Luke Huang2dac4382019-06-24 13:28:44 +08001208namespace {
1209
Luke Huangf8215372019-11-22 11:53:41 +08001210std::vector<std::string> getResolverDomains(aidl::android::net::IDnsResolver* dnsResolverService,
Luke Huang2dac4382019-06-24 13:28:44 +08001211 unsigned netId) {
1212 std::vector<std::string> res_servers;
1213 std::vector<std::string> res_domains;
1214 std::vector<std::string> res_tls_servers;
1215 res_params res_params;
1216 std::vector<ResolverStats> res_stats;
1217 int wait_for_pending_req_timeout_count;
Luke Huangf8215372019-11-22 11:53:41 +08001218 DnsResponderClient::GetResolverInfo(dnsResolverService, netId, &res_servers, &res_domains,
1219 &res_tls_servers, &res_params, &res_stats,
1220 &wait_for_pending_req_timeout_count);
Luke Huang2dac4382019-06-24 13:28:44 +08001221 return res_domains;
1222}
1223
1224} // namespace
1225
1226TEST_F(ResolverTest, SearchPathPrune) {
1227 constexpr size_t DUPLICATED_DOMAIN_NUM = 3;
1228 constexpr char listen_addr[] = "127.0.0.13";
1229 constexpr char domian_name1[] = "domain13.org.";
1230 constexpr char domian_name2[] = "domain14.org.";
1231 constexpr char host_name1[] = "test13.domain13.org.";
1232 constexpr char host_name2[] = "test14.domain14.org.";
1233 std::vector<std::string> servers = {listen_addr};
1234
1235 std::vector<std::string> testDomains1;
1236 std::vector<std::string> testDomains2;
1237 // Domain length should be <= 255
1238 // Max number of domains in search path is 6
1239 for (size_t i = 0; i < MAXDNSRCH + 1; i++) {
1240 // Fill up with invalid domain
1241 testDomains1.push_back(std::string(300, i + '0'));
1242 // Fill up with valid but duplicated domain
1243 testDomains2.push_back(StringPrintf("domain%zu.org", i % DUPLICATED_DOMAIN_NUM));
1244 }
1245
1246 // Add valid domain used for query.
1247 testDomains1.push_back(domian_name1);
1248
1249 // Add valid domain twice used for query.
1250 testDomains2.push_back(domian_name2);
1251 testDomains2.push_back(domian_name2);
1252
1253 const std::vector<DnsRecord> records = {
1254 {host_name1, ns_type::ns_t_aaaa, "2001:db8::13"},
1255 {host_name2, ns_type::ns_t_aaaa, "2001:db8::1:13"},
1256 };
1257 test::DNSResponder dns(listen_addr);
1258 StartDns(dns, records);
1259 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers, testDomains1));
1260
1261 const addrinfo hints = {.ai_family = AF_INET6};
1262 ScopedAddrinfo result = safe_getaddrinfo("test13", nullptr, &hints);
1263
1264 EXPECT_TRUE(result != nullptr);
1265
1266 EXPECT_EQ(1U, dns.queries().size());
1267 EXPECT_EQ(1U, GetNumQueries(dns, host_name1));
1268 EXPECT_EQ("2001:db8::13", ToString(result));
1269
1270 const auto& res_domains1 = getResolverDomains(mDnsClient.resolvService(), TEST_NETID);
1271 // Expect 1 valid domain, invalid domains are removed.
1272 ASSERT_EQ(1U, res_domains1.size());
1273 EXPECT_EQ(domian_name1, res_domains1[0]);
1274
1275 dns.clearQueries();
1276
1277 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers, testDomains2));
1278
1279 result = safe_getaddrinfo("test14", nullptr, &hints);
1280 EXPECT_TRUE(result != nullptr);
1281
1282 // (3 domains * 2 retries) + 1 success query = 7
1283 EXPECT_EQ(7U, dns.queries().size());
1284 EXPECT_EQ(1U, GetNumQueries(dns, host_name2));
1285 EXPECT_EQ("2001:db8::1:13", ToString(result));
1286
1287 const auto& res_domains2 = getResolverDomains(mDnsClient.resolvService(), TEST_NETID);
1288 // Expect 4 valid domain, duplicate domains are removed.
1289 EXPECT_EQ(DUPLICATED_DOMAIN_NUM + 1U, res_domains2.size());
1290 EXPECT_THAT(
1291 std::vector<std::string>({"domain0.org", "domain1.org", "domain2.org", domian_name2}),
1292 testing::ElementsAreArray(res_domains2));
1293}
1294
Mike Yu0a1c53d2018-11-26 13:26:21 +09001295// If we move this function to dns_responder_client, it will complicate the dependency need of
1296// dns_tls_frontend.h.
1297static void setupTlsServers(const std::vector<std::string>& servers,
waynema0e73c2e2019-07-31 15:04:08 +08001298 std::vector<std::unique_ptr<test::DnsTlsFrontend>>* tls) {
Xiao Ma09b71022018-12-11 17:56:32 +09001299 constexpr char listen_udp[] = "53";
1300 constexpr char listen_tls[] = "853";
Mike Yu0a1c53d2018-11-26 13:26:21 +09001301
1302 for (const auto& server : servers) {
1303 auto t = std::make_unique<test::DnsTlsFrontend>(server, listen_tls, server, listen_udp);
1304 t = std::make_unique<test::DnsTlsFrontend>(server, listen_tls, server, listen_udp);
1305 t->startServer();
Mike Yu0a1c53d2018-11-26 13:26:21 +09001306 tls->push_back(std::move(t));
1307 }
1308}
1309
Mike Yu0a1c53d2018-11-26 13:26:21 +09001310TEST_F(ResolverTest, MaxServerPrune_Binder) {
Mike Yu0a1c53d2018-11-26 13:26:21 +09001311 std::vector<std::string> domains;
1312 std::vector<std::unique_ptr<test::DNSResponder>> dns;
1313 std::vector<std::unique_ptr<test::DnsTlsFrontend>> tls;
1314 std::vector<std::string> servers;
Bernie Innocentia5c7b7b2019-01-17 21:28:24 +09001315 std::vector<DnsResponderClient::Mapping> mappings;
Mike Yu0a1c53d2018-11-26 13:26:21 +09001316
1317 for (unsigned i = 0; i < MAXDNSRCH + 1; i++) {
1318 domains.push_back(StringPrintf("example%u.com", i));
1319 }
Bernie Innocentia5c7b7b2019-01-17 21:28:24 +09001320 ASSERT_NO_FATAL_FAILURE(mDnsClient.SetupMappings(1, domains, &mappings));
1321 ASSERT_NO_FATAL_FAILURE(mDnsClient.SetupDNSServers(MAXNS + 1, mappings, &dns, &servers));
waynema0e73c2e2019-07-31 15:04:08 +08001322 ASSERT_NO_FATAL_FAILURE(setupTlsServers(servers, &tls));
Mike Yu0a1c53d2018-11-26 13:26:21 +09001323
waynema0e73c2e2019-07-31 15:04:08 +08001324 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, domains, kDefaultParams,
1325 kDefaultPrivateDnsHostName));
Mike Yu0a1c53d2018-11-26 13:26:21 +09001326
Mike Yu383855b2019-01-15 17:53:27 +08001327 // If the private DNS validation hasn't completed yet before backend DNS servers stop,
1328 // TLS servers will get stuck in handleOneRequest(), which causes this test stuck in
1329 // ~DnsTlsFrontend() because the TLS server loop threads can't be terminated.
1330 // So, wait for private DNS validation done before stopping backend DNS servers.
1331 for (int i = 0; i < MAXNS; i++) {
chenbruceaff85842019-05-31 15:46:42 +08001332 LOG(INFO) << "Waiting for private DNS validation on " << tls[i]->listen_address() << ".";
Mike Yu724f77d2019-08-16 11:14:50 +08001333 EXPECT_TRUE(WaitForPrivateDnsValidation(tls[i]->listen_address(), true));
chenbruceaff85842019-05-31 15:46:42 +08001334 LOG(INFO) << "private DNS validation on " << tls[i]->listen_address() << " done.";
Mike Yu383855b2019-01-15 17:53:27 +08001335 }
1336
Mike Yu0a1c53d2018-11-26 13:26:21 +09001337 std::vector<std::string> res_servers;
1338 std::vector<std::string> res_domains;
1339 std::vector<std::string> res_tls_servers;
Bernie Innocenti758005f2019-02-19 18:08:36 +09001340 res_params res_params;
Mike Yu0a1c53d2018-11-26 13:26:21 +09001341 std::vector<ResolverStats> res_stats;
Ken Chen92bed612018-12-22 21:46:55 +08001342 int wait_for_pending_req_timeout_count;
Luke Huangf8215372019-11-22 11:53:41 +08001343 ASSERT_TRUE(DnsResponderClient::GetResolverInfo(
1344 mDnsClient.resolvService(), TEST_NETID, &res_servers, &res_domains, &res_tls_servers,
1345 &res_params, &res_stats, &wait_for_pending_req_timeout_count));
Mike Yu0a1c53d2018-11-26 13:26:21 +09001346
1347 // Check the size of the stats and its contents.
1348 EXPECT_EQ(static_cast<size_t>(MAXNS), res_servers.size());
1349 EXPECT_EQ(static_cast<size_t>(MAXNS), res_tls_servers.size());
1350 EXPECT_EQ(static_cast<size_t>(MAXDNSRCH), res_domains.size());
1351 EXPECT_TRUE(std::equal(servers.begin(), servers.begin() + MAXNS, res_servers.begin()));
1352 EXPECT_TRUE(std::equal(servers.begin(), servers.begin() + MAXNS, res_tls_servers.begin()));
1353 EXPECT_TRUE(std::equal(domains.begin(), domains.begin() + MAXDNSRCH, res_domains.begin()));
Mike Yu0a1c53d2018-11-26 13:26:21 +09001354}
1355
1356TEST_F(ResolverTest, ResolverStats) {
Xiao Ma09b71022018-12-11 17:56:32 +09001357 constexpr char listen_addr1[] = "127.0.0.4";
1358 constexpr char listen_addr2[] = "127.0.0.5";
1359 constexpr char listen_addr3[] = "127.0.0.6";
Mike Yu0a1c53d2018-11-26 13:26:21 +09001360
1361 // Set server 1 timeout.
Mike Yufc125e42019-05-15 20:41:28 +08001362 test::DNSResponder dns1(listen_addr1, "53", static_cast<ns_rcode>(-1));
Mike Yu0a1c53d2018-11-26 13:26:21 +09001363 dns1.setResponseProbability(0.0);
1364 ASSERT_TRUE(dns1.startServer());
1365
1366 // Set server 2 responding server failure.
Xiao Ma09b71022018-12-11 17:56:32 +09001367 test::DNSResponder dns2(listen_addr2);
Mike Yu0a1c53d2018-11-26 13:26:21 +09001368 dns2.setResponseProbability(0.0);
1369 ASSERT_TRUE(dns2.startServer());
1370
1371 // Set server 3 workable.
Xiao Ma09b71022018-12-11 17:56:32 +09001372 test::DNSResponder dns3(listen_addr3);
1373 dns3.addMapping(kHelloExampleCom, ns_type::ns_t_a, "1.2.3.4");
Mike Yu0a1c53d2018-11-26 13:26:21 +09001374 ASSERT_TRUE(dns3.startServer());
1375
1376 std::vector<std::string> servers = {listen_addr1, listen_addr2, listen_addr3};
Xiao Ma09b71022018-12-11 17:56:32 +09001377 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
Mike Yu0a1c53d2018-11-26 13:26:21 +09001378
1379 dns3.clearQueries();
Xiao Ma09b71022018-12-11 17:56:32 +09001380 const addrinfo hints = {.ai_family = AF_INET, .ai_socktype = SOCK_DGRAM};
Mike Yu0a1c53d2018-11-26 13:26:21 +09001381 ScopedAddrinfo result = safe_getaddrinfo("hello", nullptr, &hints);
Xiao Ma09b71022018-12-11 17:56:32 +09001382 size_t found = GetNumQueries(dns3, kHelloExampleCom);
Mike Yu0a1c53d2018-11-26 13:26:21 +09001383 EXPECT_LE(1U, found);
1384 std::string result_str = ToString(result);
1385 EXPECT_TRUE(result_str == "1.2.3.4") << ", result_str='" << result_str << "'";
1386
1387 std::vector<std::string> res_servers;
1388 std::vector<std::string> res_domains;
1389 std::vector<std::string> res_tls_servers;
Bernie Innocenti758005f2019-02-19 18:08:36 +09001390 res_params res_params;
Mike Yu0a1c53d2018-11-26 13:26:21 +09001391 std::vector<ResolverStats> res_stats;
Ken Chen92bed612018-12-22 21:46:55 +08001392 int wait_for_pending_req_timeout_count;
Luke Huangf8215372019-11-22 11:53:41 +08001393 ASSERT_TRUE(DnsResponderClient::GetResolverInfo(
1394 mDnsClient.resolvService(), TEST_NETID, &res_servers, &res_domains, &res_tls_servers,
1395 &res_params, &res_stats, &wait_for_pending_req_timeout_count));
Mike Yu0a1c53d2018-11-26 13:26:21 +09001396
1397 EXPECT_EQ(1, res_stats[0].timeouts);
1398 EXPECT_EQ(1, res_stats[1].errors);
1399 EXPECT_EQ(1, res_stats[2].successes);
Mike Yu0a1c53d2018-11-26 13:26:21 +09001400}
1401
Ken Chenb9fa2062018-11-13 21:51:13 +08001402// Test what happens if the specified TLS server is nonexistent.
1403TEST_F(ResolverTest, GetHostByName_TlsMissing) {
Xiao Ma09b71022018-12-11 17:56:32 +09001404 constexpr char listen_addr[] = "127.0.0.3";
1405 constexpr char host_name[] = "tlsmissing.example.com.";
1406
1407 test::DNSResponder dns;
1408 StartDns(dns, {{host_name, ns_type::ns_t_a, "1.2.3.3"}});
Luke Huangf8215372019-11-22 11:53:41 +08001409 std::vector<std::string> servers = {listen_addr};
Ken Chenb9fa2062018-11-13 21:51:13 +08001410
1411 // There's nothing listening on this address, so validation will either fail or
1412 /// hang. Either way, queries will continue to flow to the DNSResponder.
waynema0e73c2e2019-07-31 15:04:08 +08001413 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, kDefaultSearchDomains, kDefaultParams, ""));
Ken Chenb9fa2062018-11-13 21:51:13 +08001414
1415 const hostent* result;
1416
1417 result = gethostbyname("tlsmissing");
1418 ASSERT_FALSE(result == nullptr);
1419 EXPECT_EQ("1.2.3.3", ToString(result));
1420
1421 // Clear TLS bit.
Xiao Ma09b71022018-12-11 17:56:32 +09001422 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
Ken Chenb9fa2062018-11-13 21:51:13 +08001423}
1424
1425// Test what happens if the specified TLS server replies with garbage.
1426TEST_F(ResolverTest, GetHostByName_TlsBroken) {
Xiao Ma09b71022018-12-11 17:56:32 +09001427 constexpr char listen_addr[] = "127.0.0.3";
1428 constexpr char host_name1[] = "tlsbroken1.example.com.";
1429 constexpr char host_name2[] = "tlsbroken2.example.com.";
1430 const std::vector<DnsRecord> records = {
1431 {host_name1, ns_type::ns_t_a, "1.2.3.1"},
1432 {host_name2, ns_type::ns_t_a, "1.2.3.2"},
1433 };
1434
1435 test::DNSResponder dns;
1436 StartDns(dns, records);
Luke Huangf8215372019-11-22 11:53:41 +08001437 std::vector<std::string> servers = {listen_addr};
Ken Chenb9fa2062018-11-13 21:51:13 +08001438
1439 // Bind the specified private DNS socket but don't respond to any client sockets yet.
1440 int s = socket(AF_INET, SOCK_STREAM | SOCK_CLOEXEC, IPPROTO_TCP);
1441 ASSERT_TRUE(s >= 0);
1442 struct sockaddr_in tlsServer = {
Luke Huangf8215372019-11-22 11:53:41 +08001443 .sin_family = AF_INET,
1444 .sin_port = htons(853),
Ken Chenb9fa2062018-11-13 21:51:13 +08001445 };
1446 ASSERT_TRUE(inet_pton(AF_INET, listen_addr, &tlsServer.sin_addr));
1447 ASSERT_TRUE(enableSockopt(s, SOL_SOCKET, SO_REUSEPORT).ok());
1448 ASSERT_TRUE(enableSockopt(s, SOL_SOCKET, SO_REUSEADDR).ok());
1449 ASSERT_FALSE(bind(s, reinterpret_cast<struct sockaddr*>(&tlsServer), sizeof(tlsServer)));
1450 ASSERT_FALSE(listen(s, 1));
1451
1452 // Trigger TLS validation.
waynema0e73c2e2019-07-31 15:04:08 +08001453 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, kDefaultSearchDomains, kDefaultParams, ""));
Ken Chenb9fa2062018-11-13 21:51:13 +08001454
1455 struct sockaddr_storage cliaddr;
1456 socklen_t sin_size = sizeof(cliaddr);
Luke Huangf8215372019-11-22 11:53:41 +08001457 int new_fd = accept4(s, reinterpret_cast<struct sockaddr*>(&cliaddr), &sin_size, SOCK_CLOEXEC);
Ken Chenb9fa2062018-11-13 21:51:13 +08001458 ASSERT_TRUE(new_fd > 0);
1459
1460 // We've received the new file descriptor but not written to it or closed, so the
1461 // validation is still pending. Queries should still flow correctly because the
1462 // server is not used until validation succeeds.
1463 const hostent* result;
1464 result = gethostbyname("tlsbroken1");
1465 ASSERT_FALSE(result == nullptr);
1466 EXPECT_EQ("1.2.3.1", ToString(result));
1467
1468 // Now we cause the validation to fail.
1469 std::string garbage = "definitely not a valid TLS ServerHello";
1470 write(new_fd, garbage.data(), garbage.size());
1471 close(new_fd);
1472
1473 // Validation failure shouldn't interfere with lookups, because lookups won't be sent
1474 // to the TLS server unless validation succeeds.
1475 result = gethostbyname("tlsbroken2");
1476 ASSERT_FALSE(result == nullptr);
1477 EXPECT_EQ("1.2.3.2", ToString(result));
1478
1479 // Clear TLS bit.
Xiao Ma09b71022018-12-11 17:56:32 +09001480 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
Ken Chenb9fa2062018-11-13 21:51:13 +08001481 close(s);
1482}
1483
1484TEST_F(ResolverTest, GetHostByName_Tls) {
Xiao Ma09b71022018-12-11 17:56:32 +09001485 constexpr char listen_addr[] = "127.0.0.3";
1486 constexpr char listen_udp[] = "53";
1487 constexpr char listen_tls[] = "853";
1488 constexpr char host_name1[] = "tls1.example.com.";
1489 constexpr char host_name2[] = "tls2.example.com.";
1490 constexpr char host_name3[] = "tls3.example.com.";
1491 const std::vector<DnsRecord> records = {
1492 {host_name1, ns_type::ns_t_a, "1.2.3.1"},
1493 {host_name2, ns_type::ns_t_a, "1.2.3.2"},
1494 {host_name3, ns_type::ns_t_a, "1.2.3.3"},
1495 };
1496
1497 test::DNSResponder dns;
1498 StartDns(dns, records);
Luke Huangf8215372019-11-22 11:53:41 +08001499 std::vector<std::string> servers = {listen_addr};
Ken Chenb9fa2062018-11-13 21:51:13 +08001500
1501 test::DnsTlsFrontend tls(listen_addr, listen_tls, listen_addr, listen_udp);
1502 ASSERT_TRUE(tls.startServer());
waynema0e73c2e2019-07-31 15:04:08 +08001503 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, kDefaultSearchDomains, kDefaultParams, ""));
Mike Yu724f77d2019-08-16 11:14:50 +08001504 EXPECT_TRUE(WaitForPrivateDnsValidation(tls.listen_address(), true));
Ken Chenb9fa2062018-11-13 21:51:13 +08001505
Mike Yu724f77d2019-08-16 11:14:50 +08001506 const hostent* result = gethostbyname("tls1");
Ken Chenb9fa2062018-11-13 21:51:13 +08001507 ASSERT_FALSE(result == nullptr);
1508 EXPECT_EQ("1.2.3.1", ToString(result));
1509
1510 // Wait for query to get counted.
1511 EXPECT_TRUE(tls.waitForQueries(2, 5000));
1512
1513 // Stop the TLS server. Since we're in opportunistic mode, queries will
1514 // fall back to the locally-assigned (clear text) nameservers.
1515 tls.stopServer();
1516
1517 dns.clearQueries();
1518 result = gethostbyname("tls2");
1519 EXPECT_FALSE(result == nullptr);
1520 EXPECT_EQ("1.2.3.2", ToString(result));
1521 const auto queries = dns.queries();
1522 EXPECT_EQ(1U, queries.size());
waynema29253052019-08-20 11:26:08 +08001523 EXPECT_EQ("tls2.example.com.", queries[0].name);
1524 EXPECT_EQ(ns_t_a, queries[0].type);
Ken Chenb9fa2062018-11-13 21:51:13 +08001525
1526 // Reset the resolvers without enabling TLS. Queries should still be routed
1527 // to the UDP endpoint.
Xiao Ma09b71022018-12-11 17:56:32 +09001528 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
Ken Chenb9fa2062018-11-13 21:51:13 +08001529
1530 result = gethostbyname("tls3");
1531 ASSERT_FALSE(result == nullptr);
1532 EXPECT_EQ("1.2.3.3", ToString(result));
Ken Chenb9fa2062018-11-13 21:51:13 +08001533}
1534
Ken Chenb9fa2062018-11-13 21:51:13 +08001535TEST_F(ResolverTest, GetHostByName_TlsFailover) {
Xiao Ma09b71022018-12-11 17:56:32 +09001536 constexpr char listen_addr1[] = "127.0.0.3";
1537 constexpr char listen_addr2[] = "127.0.0.4";
1538 constexpr char listen_udp[] = "53";
1539 constexpr char listen_tls[] = "853";
1540 constexpr char host_name1[] = "tlsfailover1.example.com.";
1541 constexpr char host_name2[] = "tlsfailover2.example.com.";
1542 const std::vector<DnsRecord> records1 = {
1543 {host_name1, ns_type::ns_t_a, "1.2.3.1"},
1544 {host_name2, ns_type::ns_t_a, "1.2.3.2"},
1545 };
1546 const std::vector<DnsRecord> records2 = {
1547 {host_name1, ns_type::ns_t_a, "1.2.3.3"},
1548 {host_name2, ns_type::ns_t_a, "1.2.3.4"},
1549 };
1550
1551 test::DNSResponder dns1(listen_addr1);
1552 test::DNSResponder dns2(listen_addr2);
1553 StartDns(dns1, records1);
1554 StartDns(dns2, records2);
1555
Luke Huangf8215372019-11-22 11:53:41 +08001556 std::vector<std::string> servers = {listen_addr1, listen_addr2};
Ken Chenb9fa2062018-11-13 21:51:13 +08001557
1558 test::DnsTlsFrontend tls1(listen_addr1, listen_tls, listen_addr1, listen_udp);
1559 test::DnsTlsFrontend tls2(listen_addr2, listen_tls, listen_addr2, listen_udp);
1560 ASSERT_TRUE(tls1.startServer());
1561 ASSERT_TRUE(tls2.startServer());
waynema0e73c2e2019-07-31 15:04:08 +08001562 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, kDefaultSearchDomains, kDefaultParams,
1563 kDefaultPrivateDnsHostName));
Mike Yu724f77d2019-08-16 11:14:50 +08001564 EXPECT_TRUE(WaitForPrivateDnsValidation(tls1.listen_address(), true));
1565 EXPECT_TRUE(WaitForPrivateDnsValidation(tls2.listen_address(), true));
Ken Chenb9fa2062018-11-13 21:51:13 +08001566
Mike Yu724f77d2019-08-16 11:14:50 +08001567 const hostent* result = gethostbyname("tlsfailover1");
Ken Chenb9fa2062018-11-13 21:51:13 +08001568 ASSERT_FALSE(result == nullptr);
1569 EXPECT_EQ("1.2.3.1", ToString(result));
1570
1571 // Wait for query to get counted.
1572 EXPECT_TRUE(tls1.waitForQueries(2, 5000));
1573 // No new queries should have reached tls2.
1574 EXPECT_EQ(1, tls2.queries());
1575
1576 // Stop tls1. Subsequent queries should attempt to reach tls1, fail, and retry to tls2.
1577 tls1.stopServer();
1578
1579 result = gethostbyname("tlsfailover2");
1580 EXPECT_EQ("1.2.3.4", ToString(result));
1581
1582 // Wait for query to get counted.
1583 EXPECT_TRUE(tls2.waitForQueries(2, 5000));
1584
1585 // No additional queries should have reached the insecure servers.
1586 EXPECT_EQ(2U, dns1.queries().size());
1587 EXPECT_EQ(2U, dns2.queries().size());
1588
1589 // Clear TLS bit.
Xiao Ma09b71022018-12-11 17:56:32 +09001590 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
Ken Chenb9fa2062018-11-13 21:51:13 +08001591}
1592
1593TEST_F(ResolverTest, GetHostByName_BadTlsName) {
Xiao Ma09b71022018-12-11 17:56:32 +09001594 constexpr char listen_addr[] = "127.0.0.3";
1595 constexpr char listen_udp[] = "53";
1596 constexpr char listen_tls[] = "853";
1597 constexpr char host_name[] = "badtlsname.example.com.";
1598
1599 test::DNSResponder dns;
1600 StartDns(dns, {{host_name, ns_type::ns_t_a, "1.2.3.1"}});
Luke Huangf8215372019-11-22 11:53:41 +08001601 std::vector<std::string> servers = {listen_addr};
Ken Chenb9fa2062018-11-13 21:51:13 +08001602
1603 test::DnsTlsFrontend tls(listen_addr, listen_tls, listen_addr, listen_udp);
1604 ASSERT_TRUE(tls.startServer());
Xiao Ma09b71022018-12-11 17:56:32 +09001605 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, kDefaultSearchDomains, kDefaultParams,
waynema0e73c2e2019-07-31 15:04:08 +08001606 kDefaultIncorrectPrivateDnsHostName));
Ken Chenb9fa2062018-11-13 21:51:13 +08001607
waynema0e73c2e2019-07-31 15:04:08 +08001608 // The TLS handshake would fail because the name of TLS server doesn't
1609 // match with TLS server's certificate.
Mike Yu724f77d2019-08-16 11:14:50 +08001610 EXPECT_TRUE(WaitForPrivateDnsValidation(tls.listen_address(), false));
Ken Chenb9fa2062018-11-13 21:51:13 +08001611
1612 // The query should fail hard, because a name was specified.
1613 EXPECT_EQ(nullptr, gethostbyname("badtlsname"));
1614
1615 // Clear TLS bit.
Xiao Ma09b71022018-12-11 17:56:32 +09001616 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
Ken Chenb9fa2062018-11-13 21:51:13 +08001617}
1618
1619TEST_F(ResolverTest, GetAddrInfo_Tls) {
Xiao Ma09b71022018-12-11 17:56:32 +09001620 constexpr char listen_addr[] = "127.0.0.3";
1621 constexpr char listen_udp[] = "53";
1622 constexpr char listen_tls[] = "853";
1623 constexpr char host_name[] = "addrinfotls.example.com.";
1624 const std::vector<DnsRecord> records = {
1625 {host_name, ns_type::ns_t_a, "1.2.3.4"},
1626 {host_name, ns_type::ns_t_aaaa, "::1.2.3.4"},
1627 };
1628
1629 test::DNSResponder dns;
1630 StartDns(dns, records);
Luke Huangf8215372019-11-22 11:53:41 +08001631 std::vector<std::string> servers = {listen_addr};
Ken Chenb9fa2062018-11-13 21:51:13 +08001632
1633 test::DnsTlsFrontend tls(listen_addr, listen_tls, listen_addr, listen_udp);
1634 ASSERT_TRUE(tls.startServer());
waynema0e73c2e2019-07-31 15:04:08 +08001635 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, kDefaultSearchDomains, kDefaultParams,
1636 kDefaultPrivateDnsHostName));
Mike Yu724f77d2019-08-16 11:14:50 +08001637 EXPECT_TRUE(WaitForPrivateDnsValidation(tls.listen_address(), true));
Ken Chenb9fa2062018-11-13 21:51:13 +08001638
1639 dns.clearQueries();
1640 ScopedAddrinfo result = safe_getaddrinfo("addrinfotls", nullptr, nullptr);
1641 EXPECT_TRUE(result != nullptr);
1642 size_t found = GetNumQueries(dns, host_name);
1643 EXPECT_LE(1U, found);
1644 // Could be A or AAAA
1645 std::string result_str = ToString(result);
1646 EXPECT_TRUE(result_str == "1.2.3.4" || result_str == "::1.2.3.4")
Luke Huangf8215372019-11-22 11:53:41 +08001647 << ", result_str='" << result_str << "'";
Ken Chenb9fa2062018-11-13 21:51:13 +08001648 // Wait for both A and AAAA queries to get counted.
1649 EXPECT_TRUE(tls.waitForQueries(3, 5000));
1650
1651 // Clear TLS bit.
Xiao Ma09b71022018-12-11 17:56:32 +09001652 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
Ken Chenb9fa2062018-11-13 21:51:13 +08001653}
1654
1655TEST_F(ResolverTest, TlsBypass) {
1656 const char OFF[] = "off";
1657 const char OPPORTUNISTIC[] = "opportunistic";
1658 const char STRICT[] = "strict";
1659
1660 const char GETHOSTBYNAME[] = "gethostbyname";
1661 const char GETADDRINFO[] = "getaddrinfo";
1662 const char GETADDRINFOFORNET[] = "getaddrinfofornet";
1663
1664 const unsigned BYPASS_NETID = NETID_USE_LOCAL_NAMESERVERS | TEST_NETID;
1665
Ken Chenb9fa2062018-11-13 21:51:13 +08001666 const char ADDR4[] = "192.0.2.1";
1667 const char ADDR6[] = "2001:db8::1";
1668
1669 const char cleartext_addr[] = "127.0.0.53";
1670 const char cleartext_port[] = "53";
1671 const char tls_port[] = "853";
Luke Huangf8215372019-11-22 11:53:41 +08001672 const std::vector<std::string> servers = {cleartext_addr};
Ken Chenb9fa2062018-11-13 21:51:13 +08001673
Xiao Ma09b71022018-12-11 17:56:32 +09001674 test::DNSResponder dns(cleartext_addr);
Ken Chenb9fa2062018-11-13 21:51:13 +08001675 ASSERT_TRUE(dns.startServer());
1676
1677 test::DnsTlsFrontend tls(cleartext_addr, tls_port, cleartext_addr, cleartext_port);
Mike Yudd4ac2d2019-05-31 16:52:11 +08001678 ASSERT_TRUE(tls.startServer());
Ken Chenb9fa2062018-11-13 21:51:13 +08001679
Luke Huangf8215372019-11-22 11:53:41 +08001680 // clang-format off
Ken Chenb9fa2062018-11-13 21:51:13 +08001681 struct TestConfig {
1682 const std::string mode;
1683 const bool withWorkingTLS;
1684 const std::string method;
1685
1686 std::string asHostName() const {
Luke Huangf8215372019-11-22 11:53:41 +08001687 return StringPrintf("%s.%s.%s.", mode.c_str(), withWorkingTLS ? "tlsOn" : "tlsOff",
Ken Chenb9fa2062018-11-13 21:51:13 +08001688 method.c_str());
1689 }
1690 } testConfigs[]{
Ken Chenb9fa2062018-11-13 21:51:13 +08001691 {OFF, true, GETHOSTBYNAME},
1692 {OPPORTUNISTIC, true, GETHOSTBYNAME},
1693 {STRICT, true, GETHOSTBYNAME},
Ken Chenb9fa2062018-11-13 21:51:13 +08001694 {OFF, true, GETADDRINFO},
1695 {OPPORTUNISTIC, true, GETADDRINFO},
1696 {STRICT, true, GETADDRINFO},
Ken Chenb9fa2062018-11-13 21:51:13 +08001697 {OFF, true, GETADDRINFOFORNET},
1698 {OPPORTUNISTIC, true, GETADDRINFOFORNET},
1699 {STRICT, true, GETADDRINFOFORNET},
Mike Yudd4ac2d2019-05-31 16:52:11 +08001700 {OFF, false, GETHOSTBYNAME},
1701 {OPPORTUNISTIC, false, GETHOSTBYNAME},
1702 {STRICT, false, GETHOSTBYNAME},
1703 {OFF, false, GETADDRINFO},
1704 {OPPORTUNISTIC, false, GETADDRINFO},
1705 {STRICT, false, GETADDRINFO},
1706 {OFF, false, GETADDRINFOFORNET},
1707 {OPPORTUNISTIC, false, GETADDRINFOFORNET},
1708 {STRICT, false, GETADDRINFOFORNET},
Ken Chenb9fa2062018-11-13 21:51:13 +08001709 };
Luke Huangf8215372019-11-22 11:53:41 +08001710 // clang-format on
Ken Chenb9fa2062018-11-13 21:51:13 +08001711
1712 for (const auto& config : testConfigs) {
1713 const std::string testHostName = config.asHostName();
1714 SCOPED_TRACE(testHostName);
1715
1716 // Don't tempt test bugs due to caching.
1717 const char* host_name = testHostName.c_str();
1718 dns.addMapping(host_name, ns_type::ns_t_a, ADDR4);
1719 dns.addMapping(host_name, ns_type::ns_t_aaaa, ADDR6);
1720
Mike Yudd4ac2d2019-05-31 16:52:11 +08001721 if (config.withWorkingTLS) {
1722 if (!tls.running()) {
1723 ASSERT_TRUE(tls.startServer());
1724 }
1725 } else {
1726 if (tls.running()) {
1727 ASSERT_TRUE(tls.stopServer());
1728 }
1729 }
Ken Chenb9fa2062018-11-13 21:51:13 +08001730
1731 if (config.mode == OFF) {
Xiao Ma09b71022018-12-11 17:56:32 +09001732 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers, kDefaultSearchDomains,
1733 kDefaultParams));
Ken Chenb9fa2062018-11-13 21:51:13 +08001734 } else if (config.mode == OPPORTUNISTIC) {
Xiao Ma09b71022018-12-11 17:56:32 +09001735 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, kDefaultSearchDomains,
waynema0e73c2e2019-07-31 15:04:08 +08001736 kDefaultParams, ""));
Mike Yu724f77d2019-08-16 11:14:50 +08001737
1738 // Wait for the validation event. If the server is running, the validation should
1739 // be successful; otherwise, the validation should be failed.
1740 EXPECT_TRUE(WaitForPrivateDnsValidation(tls.listen_address(), config.withWorkingTLS));
Ken Chenb9fa2062018-11-13 21:51:13 +08001741 } else if (config.mode == STRICT) {
Xiao Ma09b71022018-12-11 17:56:32 +09001742 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, kDefaultSearchDomains,
waynema0e73c2e2019-07-31 15:04:08 +08001743 kDefaultParams, kDefaultPrivateDnsHostName));
Mike Yu724f77d2019-08-16 11:14:50 +08001744
1745 // Wait for the validation event.
1746 EXPECT_TRUE(WaitForPrivateDnsValidation(tls.listen_address(), config.withWorkingTLS));
Ken Chenb9fa2062018-11-13 21:51:13 +08001747 }
Mike Yudd4ac2d2019-05-31 16:52:11 +08001748 tls.clearQueries();
Ken Chenb9fa2062018-11-13 21:51:13 +08001749
1750 const hostent* h_result = nullptr;
1751 ScopedAddrinfo ai_result;
1752
1753 if (config.method == GETHOSTBYNAME) {
1754 ASSERT_EQ(0, setNetworkForResolv(BYPASS_NETID));
1755 h_result = gethostbyname(host_name);
1756
1757 EXPECT_EQ(1U, GetNumQueriesForType(dns, ns_type::ns_t_a, host_name));
1758 ASSERT_FALSE(h_result == nullptr);
1759 ASSERT_EQ(4, h_result->h_length);
1760 ASSERT_FALSE(h_result->h_addr_list[0] == nullptr);
1761 EXPECT_EQ(ADDR4, ToString(h_result));
1762 EXPECT_TRUE(h_result->h_addr_list[1] == nullptr);
1763 } else if (config.method == GETADDRINFO) {
1764 ASSERT_EQ(0, setNetworkForResolv(BYPASS_NETID));
1765 ai_result = safe_getaddrinfo(host_name, nullptr, nullptr);
1766 EXPECT_TRUE(ai_result != nullptr);
1767
1768 EXPECT_LE(1U, GetNumQueries(dns, host_name));
1769 // Could be A or AAAA
1770 const std::string result_str = ToString(ai_result);
1771 EXPECT_TRUE(result_str == ADDR4 || result_str == ADDR6)
Luke Huangf8215372019-11-22 11:53:41 +08001772 << ", result_str='" << result_str << "'";
Ken Chenb9fa2062018-11-13 21:51:13 +08001773 } else if (config.method == GETADDRINFOFORNET) {
1774 addrinfo* raw_ai_result = nullptr;
1775 EXPECT_EQ(0, android_getaddrinfofornet(host_name, /*servname=*/nullptr,
1776 /*hints=*/nullptr, BYPASS_NETID, MARK_UNSET,
1777 &raw_ai_result));
1778 ai_result.reset(raw_ai_result);
1779
1780 EXPECT_LE(1U, GetNumQueries(dns, host_name));
1781 // Could be A or AAAA
1782 const std::string result_str = ToString(ai_result);
1783 EXPECT_TRUE(result_str == ADDR4 || result_str == ADDR6)
Luke Huangf8215372019-11-22 11:53:41 +08001784 << ", result_str='" << result_str << "'";
Ken Chenb9fa2062018-11-13 21:51:13 +08001785 }
1786
Mike Yudd4ac2d2019-05-31 16:52:11 +08001787 EXPECT_EQ(0, tls.queries());
Ken Chenb9fa2062018-11-13 21:51:13 +08001788
1789 // Clear per-process resolv netid.
1790 ASSERT_EQ(0, setNetworkForResolv(NETID_UNSET));
Ken Chenb9fa2062018-11-13 21:51:13 +08001791 dns.clearQueries();
1792 }
Ken Chenb9fa2062018-11-13 21:51:13 +08001793}
1794
1795TEST_F(ResolverTest, StrictMode_NoTlsServers) {
Xiao Ma09b71022018-12-11 17:56:32 +09001796 constexpr char cleartext_addr[] = "127.0.0.53";
Luke Huangf8215372019-11-22 11:53:41 +08001797 const std::vector<std::string> servers = {cleartext_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09001798 constexpr char host_name[] = "strictmode.notlsips.example.com.";
1799 const std::vector<DnsRecord> records = {
1800 {host_name, ns_type::ns_t_a, "1.2.3.4"},
1801 {host_name, ns_type::ns_t_aaaa, "::1.2.3.4"},
1802 };
Ken Chenb9fa2062018-11-13 21:51:13 +08001803
Xiao Ma09b71022018-12-11 17:56:32 +09001804 test::DNSResponder dns(cleartext_addr);
1805 StartDns(dns, records);
Ken Chenb9fa2062018-11-13 21:51:13 +08001806
waynema0e73c2e2019-07-31 15:04:08 +08001807 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, kDefaultSearchDomains, kDefaultParams,
1808 kDefaultIncorrectPrivateDnsHostName));
Ken Chenb9fa2062018-11-13 21:51:13 +08001809
1810 addrinfo* ai_result = nullptr;
1811 EXPECT_NE(0, getaddrinfo(host_name, nullptr, nullptr, &ai_result));
1812 EXPECT_EQ(0U, GetNumQueries(dns, host_name));
1813}
Luke Huang94b10b92018-11-21 20:13:38 +08001814
1815namespace {
1816
Luke Huang70931aa2019-01-31 11:57:41 +08001817int getAsyncResponse(int fd, int* rcode, uint8_t* buf, int bufLen) {
Luke Huang94b10b92018-11-21 20:13:38 +08001818 struct pollfd wait_fd[1];
1819 wait_fd[0].fd = fd;
1820 wait_fd[0].events = POLLIN;
1821 short revents;
1822 int ret;
1823
1824 ret = poll(wait_fd, 1, -1);
1825 revents = wait_fd[0].revents;
1826 if (revents & POLLIN) {
1827 int n = resNetworkResult(fd, rcode, buf, bufLen);
Luke Huangba7bef92018-12-26 16:53:03 +08001828 // Verify that resNetworkResult() closed the fd
1829 char dummy;
1830 EXPECT_EQ(-1, read(fd, &dummy, sizeof dummy));
1831 EXPECT_EQ(EBADF, errno);
Luke Huang94b10b92018-11-21 20:13:38 +08001832 return n;
1833 }
1834 return -1;
1835}
1836
Luke Huang70931aa2019-01-31 11:57:41 +08001837std::string toString(uint8_t* buf, int bufLen, int ipType) {
Luke Huang94b10b92018-11-21 20:13:38 +08001838 ns_msg handle;
1839 int ancount, n = 0;
1840 ns_rr rr;
1841
Luke Huangf8215372019-11-22 11:53:41 +08001842 if (ns_initparse((const uint8_t*)buf, bufLen, &handle) >= 0) {
Luke Huang94b10b92018-11-21 20:13:38 +08001843 ancount = ns_msg_count(handle, ns_s_an);
1844 if (ns_parserr(&handle, ns_s_an, n, &rr) == 0) {
Luke Huang70931aa2019-01-31 11:57:41 +08001845 const uint8_t* rdata = ns_rr_rdata(rr);
Luke Huang94b10b92018-11-21 20:13:38 +08001846 char buffer[INET6_ADDRSTRLEN];
Luke Huangf8215372019-11-22 11:53:41 +08001847 if (inet_ntop(ipType, (const char*)rdata, buffer, sizeof(buffer))) {
Luke Huang94b10b92018-11-21 20:13:38 +08001848 return buffer;
1849 }
1850 }
1851 }
1852 return "";
1853}
1854
1855int dns_open_proxy() {
1856 int s = socket(AF_UNIX, SOCK_STREAM | SOCK_CLOEXEC, 0);
1857 if (s == -1) {
1858 return -1;
1859 }
1860 const int one = 1;
1861 setsockopt(s, SOL_SOCKET, SO_REUSEADDR, &one, sizeof(one));
1862
1863 static const struct sockaddr_un proxy_addr = {
1864 .sun_family = AF_UNIX,
1865 .sun_path = "/dev/socket/dnsproxyd",
1866 };
1867
Luke Huangf8215372019-11-22 11:53:41 +08001868 if (TEMP_FAILURE_RETRY(connect(s, (const struct sockaddr*)&proxy_addr, sizeof(proxy_addr))) !=
Luke Huang94b10b92018-11-21 20:13:38 +08001869 0) {
1870 close(s);
1871 return -1;
1872 }
1873
1874 return s;
1875}
1876
Luke Huangba7bef92018-12-26 16:53:03 +08001877void expectAnswersValid(int fd, int ipType, const std::string& expectedAnswer) {
1878 int rcode = -1;
1879 uint8_t buf[MAXPACKET] = {};
1880
1881 int res = getAsyncResponse(fd, &rcode, buf, MAXPACKET);
1882 EXPECT_GT(res, 0);
1883 EXPECT_EQ(expectedAnswer, toString(buf, res, ipType));
1884}
1885
1886void expectAnswersNotValid(int fd, int expectedErrno) {
1887 int rcode = -1;
1888 uint8_t buf[MAXPACKET] = {};
1889
1890 int res = getAsyncResponse(fd, &rcode, buf, MAXPACKET);
1891 EXPECT_EQ(expectedErrno, res);
1892}
1893
Luke Huang94b10b92018-11-21 20:13:38 +08001894} // namespace
1895
1896TEST_F(ResolverTest, Async_NormalQueryV4V6) {
Xiao Ma09b71022018-12-11 17:56:32 +09001897 constexpr char listen_addr[] = "127.0.0.4";
1898 constexpr char host_name[] = "howdy.example.com.";
1899 const std::vector<DnsRecord> records = {
1900 {host_name, ns_type::ns_t_a, "1.2.3.4"},
1901 {host_name, ns_type::ns_t_aaaa, "::1.2.3.4"},
1902 };
1903
1904 test::DNSResponder dns(listen_addr);
1905 StartDns(dns, records);
Luke Huang94b10b92018-11-21 20:13:38 +08001906 std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09001907 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
Luke Huang94b10b92018-11-21 20:13:38 +08001908
Luke Huangba7bef92018-12-26 16:53:03 +08001909 int fd1 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_a, 0);
1910 int fd2 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_aaaa, 0);
Luke Huang94b10b92018-11-21 20:13:38 +08001911 EXPECT_TRUE(fd1 != -1);
1912 EXPECT_TRUE(fd2 != -1);
1913
Luke Huang70931aa2019-01-31 11:57:41 +08001914 uint8_t buf[MAXPACKET] = {};
Luke Huang94b10b92018-11-21 20:13:38 +08001915 int rcode;
1916 int res = getAsyncResponse(fd2, &rcode, buf, MAXPACKET);
1917 EXPECT_GT(res, 0);
1918 EXPECT_EQ("::1.2.3.4", toString(buf, res, AF_INET6));
1919
1920 res = getAsyncResponse(fd1, &rcode, buf, MAXPACKET);
1921 EXPECT_GT(res, 0);
1922 EXPECT_EQ("1.2.3.4", toString(buf, res, AF_INET));
1923
1924 EXPECT_EQ(2U, GetNumQueries(dns, host_name));
1925
1926 // Re-query verify cache works
Luke Huangba7bef92018-12-26 16:53:03 +08001927 fd1 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_a, 0);
1928 fd2 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_aaaa, 0);
Luke Huang94b10b92018-11-21 20:13:38 +08001929
1930 EXPECT_TRUE(fd1 != -1);
1931 EXPECT_TRUE(fd2 != -1);
1932
1933 res = getAsyncResponse(fd2, &rcode, buf, MAXPACKET);
1934 EXPECT_GT(res, 0);
1935 EXPECT_EQ("::1.2.3.4", toString(buf, res, AF_INET6));
1936
1937 res = getAsyncResponse(fd1, &rcode, buf, MAXPACKET);
1938 EXPECT_GT(res, 0);
1939 EXPECT_EQ("1.2.3.4", toString(buf, res, AF_INET));
1940
1941 EXPECT_EQ(2U, GetNumQueries(dns, host_name));
1942}
1943
1944TEST_F(ResolverTest, Async_BadQuery) {
Xiao Ma09b71022018-12-11 17:56:32 +09001945 constexpr char listen_addr[] = "127.0.0.4";
1946 constexpr char host_name[] = "howdy.example.com.";
1947 const std::vector<DnsRecord> records = {
1948 {host_name, ns_type::ns_t_a, "1.2.3.4"},
1949 {host_name, ns_type::ns_t_aaaa, "::1.2.3.4"},
1950 };
1951
1952 test::DNSResponder dns(listen_addr);
1953 StartDns(dns, records);
Luke Huang94b10b92018-11-21 20:13:38 +08001954 std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09001955 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
Luke Huang94b10b92018-11-21 20:13:38 +08001956
1957 static struct {
1958 int fd;
1959 const char* dname;
1960 const int queryType;
1961 const int expectRcode;
1962 } kTestData[] = {
Luke Huangba7bef92018-12-26 16:53:03 +08001963 {-1, "", ns_t_aaaa, 0},
1964 {-1, "as65ass46", ns_t_aaaa, 0},
1965 {-1, "454564564564", ns_t_aaaa, 0},
1966 {-1, "h645235", ns_t_a, 0},
1967 {-1, "www.google.com", ns_t_a, 0},
Luke Huang94b10b92018-11-21 20:13:38 +08001968 };
1969
1970 for (auto& td : kTestData) {
1971 SCOPED_TRACE(td.dname);
Luke Huangba7bef92018-12-26 16:53:03 +08001972 td.fd = resNetworkQuery(TEST_NETID, td.dname, ns_c_in, td.queryType, 0);
Luke Huang94b10b92018-11-21 20:13:38 +08001973 EXPECT_TRUE(td.fd != -1);
1974 }
1975
1976 // dns_responder return empty resp(packet only contains query part) with no error currently
1977 for (const auto& td : kTestData) {
Luke Huang70931aa2019-01-31 11:57:41 +08001978 uint8_t buf[MAXPACKET] = {};
Luke Huang94b10b92018-11-21 20:13:38 +08001979 int rcode;
1980 SCOPED_TRACE(td.dname);
1981 int res = getAsyncResponse(td.fd, &rcode, buf, MAXPACKET);
1982 EXPECT_GT(res, 0);
1983 EXPECT_EQ(rcode, td.expectRcode);
1984 }
1985}
1986
1987TEST_F(ResolverTest, Async_EmptyAnswer) {
Xiao Ma09b71022018-12-11 17:56:32 +09001988 constexpr char listen_addr[] = "127.0.0.4";
1989 constexpr char host_name[] = "howdy.example.com.";
1990 const std::vector<DnsRecord> records = {
1991 {host_name, ns_type::ns_t_a, "1.2.3.4"},
1992 {host_name, ns_type::ns_t_aaaa, "::1.2.3.4"},
1993 };
1994
1995 test::DNSResponder dns(listen_addr);
1996 StartDns(dns, records);
Luke Huang94b10b92018-11-21 20:13:38 +08001997 std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09001998 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
Luke Huang94b10b92018-11-21 20:13:38 +08001999
Luke Huang9c264bb2018-12-18 16:44:41 +08002000 // TODO: Disable retry to make this test explicit.
2001 auto& cv = dns.getCv();
2002 auto& cvMutex = dns.getCvMutex();
2003 int fd1;
2004 // Wait on the condition variable to ensure that the DNS server has handled our first query.
2005 {
2006 std::unique_lock lk(cvMutex);
Luke Huangba7bef92018-12-26 16:53:03 +08002007 fd1 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_aaaa, 0);
Luke Huang9c264bb2018-12-18 16:44:41 +08002008 EXPECT_TRUE(fd1 != -1);
2009 EXPECT_EQ(std::cv_status::no_timeout, cv.wait_for(lk, std::chrono::seconds(1)));
2010 }
Luke Huang94b10b92018-11-21 20:13:38 +08002011
Luke Huang94b10b92018-11-21 20:13:38 +08002012 dns.setResponseProbability(0.0);
Luke Huang94b10b92018-11-21 20:13:38 +08002013
Luke Huangba7bef92018-12-26 16:53:03 +08002014 int fd2 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_a, 0);
Luke Huang94b10b92018-11-21 20:13:38 +08002015 EXPECT_TRUE(fd2 != -1);
2016
Luke Huangba7bef92018-12-26 16:53:03 +08002017 int fd3 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_a, 0);
Luke Huang94b10b92018-11-21 20:13:38 +08002018 EXPECT_TRUE(fd3 != -1);
2019
Luke Huang9c264bb2018-12-18 16:44:41 +08002020 uint8_t buf[MAXPACKET] = {};
Luke Huang94b10b92018-11-21 20:13:38 +08002021 int rcode;
2022
Luke Huang9c264bb2018-12-18 16:44:41 +08002023 // expect no response
2024 int res = getAsyncResponse(fd3, &rcode, buf, MAXPACKET);
2025 EXPECT_EQ(-ETIMEDOUT, res);
Luke Huang94b10b92018-11-21 20:13:38 +08002026
Luke Huang9c264bb2018-12-18 16:44:41 +08002027 // expect no response
Luke Huang94b10b92018-11-21 20:13:38 +08002028 memset(buf, 0, MAXPACKET);
Luke Huang9c264bb2018-12-18 16:44:41 +08002029 res = getAsyncResponse(fd2, &rcode, buf, MAXPACKET);
2030 EXPECT_EQ(-ETIMEDOUT, res);
Luke Huang94b10b92018-11-21 20:13:38 +08002031
Luke Huang94b10b92018-11-21 20:13:38 +08002032 dns.setResponseProbability(1.0);
Luke Huang94b10b92018-11-21 20:13:38 +08002033
Luke Huangba7bef92018-12-26 16:53:03 +08002034 int fd4 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_a, 0);
Luke Huang94b10b92018-11-21 20:13:38 +08002035 EXPECT_TRUE(fd4 != -1);
2036
2037 memset(buf, 0, MAXPACKET);
2038 res = getAsyncResponse(fd4, &rcode, buf, MAXPACKET);
2039 EXPECT_GT(res, 0);
2040 EXPECT_EQ("1.2.3.4", toString(buf, res, AF_INET));
2041
2042 memset(buf, 0, MAXPACKET);
2043 res = getAsyncResponse(fd1, &rcode, buf, MAXPACKET);
2044 EXPECT_GT(res, 0);
2045 EXPECT_EQ("::1.2.3.4", toString(buf, res, AF_INET6));
2046}
2047
2048TEST_F(ResolverTest, Async_MalformedQuery) {
Xiao Ma09b71022018-12-11 17:56:32 +09002049 constexpr char listen_addr[] = "127.0.0.4";
2050 constexpr char host_name[] = "howdy.example.com.";
2051 const std::vector<DnsRecord> records = {
2052 {host_name, ns_type::ns_t_a, "1.2.3.4"},
2053 {host_name, ns_type::ns_t_aaaa, "::1.2.3.4"},
2054 };
2055
2056 test::DNSResponder dns(listen_addr);
2057 StartDns(dns, records);
Luke Huang94b10b92018-11-21 20:13:38 +08002058 std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09002059 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
Luke Huang94b10b92018-11-21 20:13:38 +08002060
2061 int fd = dns_open_proxy();
2062 EXPECT_TRUE(fd > 0);
2063
2064 const std::string badMsg = "16-52512#";
Xiao Ma09b71022018-12-11 17:56:32 +09002065 static const struct {
Luke Huang94b10b92018-11-21 20:13:38 +08002066 const std::string cmd;
2067 const int expectErr;
2068 } kTestData[] = {
Luke Huangba7bef92018-12-26 16:53:03 +08002069 // Too few arguments
Luke Huang94b10b92018-11-21 20:13:38 +08002070 {"resnsend " + badMsg + '\0', -EINVAL},
2071 // Bad netId
Luke Huangba7bef92018-12-26 16:53:03 +08002072 {"resnsend badnetId 0 " + badMsg + '\0', -EINVAL},
Luke Huang94b10b92018-11-21 20:13:38 +08002073 // Bad raw data
Luke Huangba7bef92018-12-26 16:53:03 +08002074 {"resnsend " + std::to_string(TEST_NETID) + " 0 " + badMsg + '\0', -EILSEQ},
Luke Huang94b10b92018-11-21 20:13:38 +08002075 };
2076
2077 for (unsigned int i = 0; i < std::size(kTestData); i++) {
2078 auto& td = kTestData[i];
2079 SCOPED_TRACE(td.cmd);
2080 ssize_t rc = TEMP_FAILURE_RETRY(write(fd, td.cmd.c_str(), td.cmd.size()));
2081 EXPECT_EQ(rc, static_cast<ssize_t>(td.cmd.size()));
2082
2083 int32_t tmp;
2084 rc = TEMP_FAILURE_RETRY(read(fd, &tmp, sizeof(tmp)));
2085 EXPECT_TRUE(rc > 0);
2086 EXPECT_EQ(static_cast<int>(ntohl(tmp)), td.expectErr);
2087 }
2088 // Normal query with answer buffer
2089 // This is raw data of query "howdy.example.com" type 1 class 1
2090 std::string query = "81sBAAABAAAAAAAABWhvd2R5B2V4YW1wbGUDY29tAAABAAE=";
Luke Huangba7bef92018-12-26 16:53:03 +08002091 std::string cmd = "resnsend " + std::to_string(TEST_NETID) + " 0 " + query + '\0';
Luke Huang94b10b92018-11-21 20:13:38 +08002092 ssize_t rc = TEMP_FAILURE_RETRY(write(fd, cmd.c_str(), cmd.size()));
2093 EXPECT_EQ(rc, static_cast<ssize_t>(cmd.size()));
2094
Luke Huang70931aa2019-01-31 11:57:41 +08002095 uint8_t smallBuf[1] = {};
Luke Huang94b10b92018-11-21 20:13:38 +08002096 int rcode;
2097 rc = getAsyncResponse(fd, &rcode, smallBuf, 1);
Luke Huangba7bef92018-12-26 16:53:03 +08002098 EXPECT_EQ(-EMSGSIZE, rc);
Luke Huang94b10b92018-11-21 20:13:38 +08002099
2100 // Do the normal test with large buffer again
2101 fd = dns_open_proxy();
2102 EXPECT_TRUE(fd > 0);
2103 rc = TEMP_FAILURE_RETRY(write(fd, cmd.c_str(), cmd.size()));
2104 EXPECT_EQ(rc, static_cast<ssize_t>(cmd.size()));
Luke Huang70931aa2019-01-31 11:57:41 +08002105 uint8_t buf[MAXPACKET] = {};
Luke Huang94b10b92018-11-21 20:13:38 +08002106 rc = getAsyncResponse(fd, &rcode, buf, MAXPACKET);
2107 EXPECT_EQ("1.2.3.4", toString(buf, rc, AF_INET));
Mike Yu4f3747b2018-12-02 17:54:29 +09002108}
2109
Luke Huangba7bef92018-12-26 16:53:03 +08002110TEST_F(ResolverTest, Async_CacheFlags) {
Xiao Ma09b71022018-12-11 17:56:32 +09002111 constexpr char listen_addr[] = "127.0.0.4";
2112 constexpr char host_name[] = "howdy.example.com.";
Luke Huang40f5f492019-05-09 19:37:35 +08002113 constexpr char another_host_name[] = "howdy.example2.com.";
Xiao Ma09b71022018-12-11 17:56:32 +09002114 const std::vector<DnsRecord> records = {
2115 {host_name, ns_type::ns_t_a, "1.2.3.4"},
2116 {host_name, ns_type::ns_t_aaaa, "::1.2.3.4"},
Luke Huang40f5f492019-05-09 19:37:35 +08002117 {another_host_name, ns_type::ns_t_a, "1.2.3.5"},
2118 {another_host_name, ns_type::ns_t_aaaa, "::1.2.3.5"},
Xiao Ma09b71022018-12-11 17:56:32 +09002119 };
2120
2121 test::DNSResponder dns(listen_addr);
2122 StartDns(dns, records);
Luke Huangba7bef92018-12-26 16:53:03 +08002123 std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09002124 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
Luke Huangba7bef92018-12-26 16:53:03 +08002125
2126 // ANDROID_RESOLV_NO_CACHE_STORE
2127 int fd1 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_a,
2128 ANDROID_RESOLV_NO_CACHE_STORE);
2129 EXPECT_TRUE(fd1 != -1);
2130 int fd2 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_a,
2131 ANDROID_RESOLV_NO_CACHE_STORE);
2132 EXPECT_TRUE(fd2 != -1);
2133 int fd3 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_a,
2134 ANDROID_RESOLV_NO_CACHE_STORE);
2135 EXPECT_TRUE(fd3 != -1);
2136
2137 expectAnswersValid(fd3, AF_INET, "1.2.3.4");
2138 expectAnswersValid(fd2, AF_INET, "1.2.3.4");
2139 expectAnswersValid(fd1, AF_INET, "1.2.3.4");
2140
2141 // No cache exists, expect 3 queries
2142 EXPECT_EQ(3U, GetNumQueries(dns, host_name));
2143
2144 // Re-query and cache
2145 fd1 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_a, 0);
2146
2147 EXPECT_TRUE(fd1 != -1);
2148
2149 expectAnswersValid(fd1, AF_INET, "1.2.3.4");
2150
2151 // Now we have cache, expect 4 queries
2152 EXPECT_EQ(4U, GetNumQueries(dns, host_name));
2153
2154 // ANDROID_RESOLV_NO_CACHE_LOOKUP
2155 fd1 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_a,
2156 ANDROID_RESOLV_NO_CACHE_LOOKUP);
2157 fd2 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_a,
2158 ANDROID_RESOLV_NO_CACHE_LOOKUP);
2159
2160 EXPECT_TRUE(fd1 != -1);
2161 EXPECT_TRUE(fd2 != -1);
2162
2163 expectAnswersValid(fd2, AF_INET, "1.2.3.4");
2164 expectAnswersValid(fd1, AF_INET, "1.2.3.4");
2165
2166 // Skip cache, expect 6 queries
2167 EXPECT_EQ(6U, GetNumQueries(dns, host_name));
2168
2169 // Re-query verify cache works
2170 fd1 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_a,
2171 ANDROID_RESOLV_NO_CACHE_STORE);
2172 EXPECT_TRUE(fd1 != -1);
2173 expectAnswersValid(fd1, AF_INET, "1.2.3.4");
2174
2175 // Cache hits, expect still 6 queries
2176 EXPECT_EQ(6U, GetNumQueries(dns, host_name));
Luke Huanga1d74182019-03-19 17:30:36 +08002177
2178 // Start to verify if ANDROID_RESOLV_NO_CACHE_LOOKUP does write response into cache
2179 dns.clearQueries();
2180
2181 fd1 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_aaaa,
2182 ANDROID_RESOLV_NO_CACHE_LOOKUP);
2183 fd2 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_aaaa,
2184 ANDROID_RESOLV_NO_CACHE_LOOKUP);
2185
2186 EXPECT_TRUE(fd1 != -1);
2187 EXPECT_TRUE(fd2 != -1);
2188
2189 expectAnswersValid(fd2, AF_INET6, "::1.2.3.4");
2190 expectAnswersValid(fd1, AF_INET6, "::1.2.3.4");
2191
2192 // Skip cache, expect 2 queries
2193 EXPECT_EQ(2U, GetNumQueries(dns, host_name));
2194
2195 // Re-query without flags
2196 fd1 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_aaaa, 0);
2197 fd2 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_aaaa, 0);
2198
2199 EXPECT_TRUE(fd1 != -1);
2200 EXPECT_TRUE(fd2 != -1);
2201
2202 expectAnswersValid(fd2, AF_INET6, "::1.2.3.4");
2203 expectAnswersValid(fd1, AF_INET6, "::1.2.3.4");
2204
2205 // Cache hits, expect still 2 queries
2206 EXPECT_EQ(2U, GetNumQueries(dns, host_name));
Luke Huang40f5f492019-05-09 19:37:35 +08002207
2208 // Test both ANDROID_RESOLV_NO_CACHE_STORE and ANDROID_RESOLV_NO_CACHE_LOOKUP are set
2209 dns.clearQueries();
2210
2211 // Make sure that the cache of "howdy.example2.com" exists.
2212 fd1 = resNetworkQuery(TEST_NETID, "howdy.example2.com", ns_c_in, ns_t_aaaa, 0);
2213 EXPECT_TRUE(fd1 != -1);
2214 expectAnswersValid(fd1, AF_INET6, "::1.2.3.5");
2215 EXPECT_EQ(1U, GetNumQueries(dns, another_host_name));
2216
2217 // Re-query with testFlags
2218 const int testFlag = ANDROID_RESOLV_NO_CACHE_STORE | ANDROID_RESOLV_NO_CACHE_LOOKUP;
2219 fd1 = resNetworkQuery(TEST_NETID, "howdy.example2.com", ns_c_in, ns_t_aaaa, testFlag);
2220 EXPECT_TRUE(fd1 != -1);
2221 expectAnswersValid(fd1, AF_INET6, "::1.2.3.5");
2222 // Expect cache lookup is skipped.
2223 EXPECT_EQ(2U, GetNumQueries(dns, another_host_name));
2224
2225 // Do another query with testFlags
2226 fd1 = resNetworkQuery(TEST_NETID, "howdy.example2.com", ns_c_in, ns_t_a, testFlag);
2227 EXPECT_TRUE(fd1 != -1);
2228 expectAnswersValid(fd1, AF_INET, "1.2.3.5");
2229 // Expect cache lookup is skipped.
2230 EXPECT_EQ(3U, GetNumQueries(dns, another_host_name));
2231
2232 // Re-query with no flags
2233 fd1 = resNetworkQuery(TEST_NETID, "howdy.example2.com", ns_c_in, ns_t_a, 0);
2234 EXPECT_TRUE(fd1 != -1);
2235 expectAnswersValid(fd1, AF_INET, "1.2.3.5");
2236 // Expect no cache hit because cache storing is also skipped in previous query.
2237 EXPECT_EQ(4U, GetNumQueries(dns, another_host_name));
Luke Huangba7bef92018-12-26 16:53:03 +08002238}
2239
2240TEST_F(ResolverTest, Async_NoRetryFlag) {
Luke Huang70931aa2019-01-31 11:57:41 +08002241 constexpr char listen_addr0[] = "127.0.0.4";
2242 constexpr char listen_addr1[] = "127.0.0.6";
Xiao Ma09b71022018-12-11 17:56:32 +09002243 constexpr char host_name[] = "howdy.example.com.";
2244 const std::vector<DnsRecord> records = {
2245 {host_name, ns_type::ns_t_a, "1.2.3.4"},
2246 {host_name, ns_type::ns_t_aaaa, "::1.2.3.4"},
2247 };
2248
Luke Huang70931aa2019-01-31 11:57:41 +08002249 test::DNSResponder dns0(listen_addr0);
2250 test::DNSResponder dns1(listen_addr1);
2251 StartDns(dns0, records);
2252 StartDns(dns1, records);
2253 ASSERT_TRUE(mDnsClient.SetResolversForNetwork({listen_addr0, listen_addr1}));
Luke Huangba7bef92018-12-26 16:53:03 +08002254
Luke Huang70931aa2019-01-31 11:57:41 +08002255 dns0.clearQueries();
2256 dns1.clearQueries();
2257
2258 dns0.setResponseProbability(0.0);
2259 dns1.setResponseProbability(0.0);
Luke Huangba7bef92018-12-26 16:53:03 +08002260
2261 int fd1 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_a,
2262 ANDROID_RESOLV_NO_RETRY);
2263 EXPECT_TRUE(fd1 != -1);
2264
2265 int fd2 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_aaaa,
2266 ANDROID_RESOLV_NO_RETRY);
2267 EXPECT_TRUE(fd2 != -1);
2268
2269 // expect no response
2270 expectAnswersNotValid(fd1, -ETIMEDOUT);
2271 expectAnswersNotValid(fd2, -ETIMEDOUT);
2272
Luke Huang70931aa2019-01-31 11:57:41 +08002273 // No retry case, expect total 2 queries. The server is selected randomly.
2274 EXPECT_EQ(2U, GetNumQueries(dns0, host_name) + GetNumQueries(dns1, host_name));
Luke Huangba7bef92018-12-26 16:53:03 +08002275
Luke Huang70931aa2019-01-31 11:57:41 +08002276 dns0.clearQueries();
2277 dns1.clearQueries();
Luke Huangba7bef92018-12-26 16:53:03 +08002278
2279 fd1 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_a, 0);
2280 EXPECT_TRUE(fd1 != -1);
2281
2282 fd2 = resNetworkQuery(TEST_NETID, "howdy.example.com", ns_c_in, ns_t_aaaa, 0);
2283 EXPECT_TRUE(fd2 != -1);
2284
2285 // expect no response
2286 expectAnswersNotValid(fd1, -ETIMEDOUT);
2287 expectAnswersNotValid(fd2, -ETIMEDOUT);
2288
2289 // Retry case, expect 4 queries
Luke Huang70931aa2019-01-31 11:57:41 +08002290 EXPECT_EQ(4U, GetNumQueries(dns0, host_name));
2291 EXPECT_EQ(4U, GetNumQueries(dns1, host_name));
2292}
2293
2294TEST_F(ResolverTest, Async_VerifyQueryID) {
2295 constexpr char listen_addr[] = "127.0.0.4";
2296 constexpr char host_name[] = "howdy.example.com.";
2297 const std::vector<DnsRecord> records = {
2298 {host_name, ns_type::ns_t_a, "1.2.3.4"},
2299 {host_name, ns_type::ns_t_aaaa, "::1.2.3.4"},
2300 };
2301
2302 test::DNSResponder dns(listen_addr);
2303 StartDns(dns, records);
2304 std::vector<std::string> servers = {listen_addr};
2305 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
2306
2307 const uint8_t queryBuf1[] = {
2308 /* Header */
2309 0x55, 0x66, /* Transaction ID */
2310 0x01, 0x00, /* Flags */
2311 0x00, 0x01, /* Questions */
2312 0x00, 0x00, /* Answer RRs */
2313 0x00, 0x00, /* Authority RRs */
2314 0x00, 0x00, /* Additional RRs */
2315 /* Queries */
2316 0x05, 0x68, 0x6f, 0x77, 0x64, 0x79, 0x07, 0x65, 0x78, 0x61, 0x6d, 0x70, 0x6c, 0x65,
2317 0x03, 0x63, 0x6f, 0x6d, 0x00, /* Name */
2318 0x00, 0x01, /* Type */
2319 0x00, 0x01 /* Class */
2320 };
2321
2322 int fd = resNetworkSend(TEST_NETID, queryBuf1, sizeof(queryBuf1), 0);
2323 EXPECT_TRUE(fd != -1);
2324
2325 uint8_t buf[MAXPACKET] = {};
2326 int rcode;
2327
2328 int res = getAsyncResponse(fd, &rcode, buf, MAXPACKET);
2329 EXPECT_GT(res, 0);
2330 EXPECT_EQ("1.2.3.4", toString(buf, res, AF_INET));
2331
2332 auto hp = reinterpret_cast<HEADER*>(buf);
2333 EXPECT_EQ(21862U, htons(hp->id));
2334
2335 EXPECT_EQ(1U, GetNumQueries(dns, host_name));
2336
2337 const uint8_t queryBuf2[] = {
2338 /* Header */
2339 0x00, 0x53, /* Transaction ID */
2340 0x01, 0x00, /* Flags */
2341 0x00, 0x01, /* Questions */
2342 0x00, 0x00, /* Answer RRs */
2343 0x00, 0x00, /* Authority RRs */
2344 0x00, 0x00, /* Additional RRs */
2345 /* Queries */
2346 0x05, 0x68, 0x6f, 0x77, 0x64, 0x79, 0x07, 0x65, 0x78, 0x61, 0x6d, 0x70, 0x6c, 0x65,
2347 0x03, 0x63, 0x6f, 0x6d, 0x00, /* Name */
2348 0x00, 0x01, /* Type */
2349 0x00, 0x01 /* Class */
2350 };
2351
2352 // Re-query verify cache works and query id is correct
2353 fd = resNetworkSend(TEST_NETID, queryBuf2, sizeof(queryBuf2), 0);
2354
2355 EXPECT_TRUE(fd != -1);
2356
2357 res = getAsyncResponse(fd, &rcode, buf, MAXPACKET);
2358 EXPECT_GT(res, 0);
2359 EXPECT_EQ("1.2.3.4", toString(buf, res, AF_INET));
2360
2361 EXPECT_EQ(0x0053U, htons(hp->id));
2362
2363 EXPECT_EQ(1U, GetNumQueries(dns, host_name));
Luke Huangba7bef92018-12-26 16:53:03 +08002364}
2365
Mike Yu4f3747b2018-12-02 17:54:29 +09002366// This test checks that the resolver should not generate the request containing OPT RR when using
Ken Chen0a015532019-01-02 14:59:38 +08002367// cleartext DNS. If we query the DNS server not supporting EDNS0 and it reponds with
2368// FORMERR_ON_EDNS, we will fallback to no EDNS0 and try again. If the server does no response, we
2369// won't retry so that we get no answer.
Mike Yu4f3747b2018-12-02 17:54:29 +09002370TEST_F(ResolverTest, BrokenEdns) {
2371 typedef test::DNSResponder::Edns Edns;
2372 enum ExpectResult { EXPECT_FAILURE, EXPECT_SUCCESS };
2373
2374 const char OFF[] = "off";
2375 const char OPPORTUNISTIC_UDP[] = "opportunistic_udp";
2376 const char OPPORTUNISTIC_TLS[] = "opportunistic_tls";
2377 const char STRICT[] = "strict";
2378 const char GETHOSTBYNAME[] = "gethostbyname";
2379 const char GETADDRINFO[] = "getaddrinfo";
Mike Yu4f3747b2018-12-02 17:54:29 +09002380 const char ADDR4[] = "192.0.2.1";
2381 const char CLEARTEXT_ADDR[] = "127.0.0.53";
2382 const char CLEARTEXT_PORT[] = "53";
2383 const char TLS_PORT[] = "853";
Luke Huangf8215372019-11-22 11:53:41 +08002384 const std::vector<std::string> servers = {CLEARTEXT_ADDR};
Mike Yu4f3747b2018-12-02 17:54:29 +09002385
Mike Yufc125e42019-05-15 20:41:28 +08002386 test::DNSResponder dns(CLEARTEXT_ADDR, CLEARTEXT_PORT, ns_rcode::ns_r_servfail);
Mike Yu4f3747b2018-12-02 17:54:29 +09002387 ASSERT_TRUE(dns.startServer());
2388
2389 test::DnsTlsFrontend tls(CLEARTEXT_ADDR, TLS_PORT, CLEARTEXT_ADDR, CLEARTEXT_PORT);
2390
Luke Huangf8215372019-11-22 11:53:41 +08002391 // clang-format off
Mike Yu4f3747b2018-12-02 17:54:29 +09002392 static const struct TestConfig {
2393 std::string mode;
2394 std::string method;
2395 Edns edns;
2396 ExpectResult expectResult;
2397
2398 std::string asHostName() const {
2399 const char* ednsString;
2400 switch (edns) {
2401 case Edns::ON:
2402 ednsString = "ednsOn";
2403 break;
Ken Chen0a015532019-01-02 14:59:38 +08002404 case Edns::FORMERR_ON_EDNS:
Mike Yu4f3747b2018-12-02 17:54:29 +09002405 ednsString = "ednsFormerr";
2406 break;
2407 case Edns::DROP:
2408 ednsString = "ednsDrop";
2409 break;
2410 default:
2411 ednsString = "";
2412 break;
2413 }
2414 return StringPrintf("%s.%s.%s.", mode.c_str(), method.c_str(), ednsString);
2415 }
2416 } testConfigs[] = {
2417 // In OPPORTUNISTIC_TLS, we get no answer if the DNS server supports TLS but not EDNS0.
2418 // Could such server exist? if so, we might need to fallback to query cleartext DNS.
2419 // Another thing is that {OPPORTUNISTIC_TLS, Edns::DROP} and {STRICT, Edns::DROP} are
2420 // commented out since TLS timeout is not configurable.
2421 // TODO: Uncomment them after TLS timeout is configurable.
2422 {OFF, GETHOSTBYNAME, Edns::ON, EXPECT_SUCCESS},
2423 {OPPORTUNISTIC_UDP, GETHOSTBYNAME, Edns::ON, EXPECT_SUCCESS},
2424 {OPPORTUNISTIC_TLS, GETHOSTBYNAME, Edns::ON, EXPECT_SUCCESS},
2425 {STRICT, GETHOSTBYNAME, Edns::ON, EXPECT_SUCCESS},
Ken Chen0a015532019-01-02 14:59:38 +08002426 {OFF, GETHOSTBYNAME, Edns::FORMERR_ON_EDNS, EXPECT_SUCCESS},
2427 {OPPORTUNISTIC_UDP, GETHOSTBYNAME, Edns::FORMERR_ON_EDNS, EXPECT_SUCCESS},
2428 {OPPORTUNISTIC_TLS, GETHOSTBYNAME, Edns::FORMERR_ON_EDNS, EXPECT_FAILURE},
2429 {STRICT, GETHOSTBYNAME, Edns::FORMERR_ON_EDNS, EXPECT_FAILURE},
Mike Yu4f3747b2018-12-02 17:54:29 +09002430 {OFF, GETHOSTBYNAME, Edns::DROP, EXPECT_SUCCESS},
2431 {OPPORTUNISTIC_UDP, GETHOSTBYNAME, Edns::DROP, EXPECT_SUCCESS},
2432 //{OPPORTUNISTIC_TLS, GETHOSTBYNAME, Edns::DROP, EXPECT_FAILURE},
2433 //{STRICT, GETHOSTBYNAME, Edns::DROP, EXPECT_FAILURE},
2434 {OFF, GETADDRINFO, Edns::ON, EXPECT_SUCCESS},
2435 {OPPORTUNISTIC_UDP, GETADDRINFO, Edns::ON, EXPECT_SUCCESS},
2436 {OPPORTUNISTIC_TLS, GETADDRINFO, Edns::ON, EXPECT_SUCCESS},
2437 {STRICT, GETADDRINFO, Edns::ON, EXPECT_SUCCESS},
Ken Chen0a015532019-01-02 14:59:38 +08002438 {OFF, GETADDRINFO, Edns::FORMERR_ON_EDNS, EXPECT_SUCCESS},
2439 {OPPORTUNISTIC_UDP, GETADDRINFO, Edns::FORMERR_ON_EDNS, EXPECT_SUCCESS},
2440 {OPPORTUNISTIC_TLS, GETADDRINFO, Edns::FORMERR_ON_EDNS, EXPECT_FAILURE},
2441 {STRICT, GETADDRINFO, Edns::FORMERR_ON_EDNS, EXPECT_FAILURE},
Mike Yu4f3747b2018-12-02 17:54:29 +09002442 {OFF, GETADDRINFO, Edns::DROP, EXPECT_SUCCESS},
2443 {OPPORTUNISTIC_UDP, GETADDRINFO, Edns::DROP, EXPECT_SUCCESS},
2444 //{OPPORTUNISTIC_TLS, GETADDRINFO, Edns::DROP, EXPECT_FAILURE},
2445 //{STRICT, GETADDRINFO, Edns::DROP, EXPECT_FAILURE},
2446 };
Luke Huangf8215372019-11-22 11:53:41 +08002447 // clang-format on
Mike Yu4f3747b2018-12-02 17:54:29 +09002448
2449 for (const auto& config : testConfigs) {
2450 const std::string testHostName = config.asHostName();
2451 SCOPED_TRACE(testHostName);
2452
2453 const char* host_name = testHostName.c_str();
2454 dns.addMapping(host_name, ns_type::ns_t_a, ADDR4);
2455 dns.setEdns(config.edns);
2456
2457 if (config.mode == OFF) {
Mike Yu0f20cdd2019-06-11 11:52:37 +08002458 if (tls.running()) {
2459 ASSERT_TRUE(tls.stopServer());
2460 }
Xiao Ma09b71022018-12-11 17:56:32 +09002461 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
Mike Yu4f3747b2018-12-02 17:54:29 +09002462 } else if (config.mode == OPPORTUNISTIC_UDP) {
Mike Yu0f20cdd2019-06-11 11:52:37 +08002463 if (tls.running()) {
2464 ASSERT_TRUE(tls.stopServer());
2465 }
Xiao Ma09b71022018-12-11 17:56:32 +09002466 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, kDefaultSearchDomains,
waynema0e73c2e2019-07-31 15:04:08 +08002467 kDefaultParams, ""));
Mike Yu724f77d2019-08-16 11:14:50 +08002468 EXPECT_TRUE(WaitForPrivateDnsValidation(tls.listen_address(), false));
Mike Yu4f3747b2018-12-02 17:54:29 +09002469 } else if (config.mode == OPPORTUNISTIC_TLS) {
Mike Yu0f20cdd2019-06-11 11:52:37 +08002470 if (!tls.running()) {
2471 ASSERT_TRUE(tls.startServer());
2472 }
Xiao Ma09b71022018-12-11 17:56:32 +09002473 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, kDefaultSearchDomains,
waynema0e73c2e2019-07-31 15:04:08 +08002474 kDefaultParams, ""));
Mike Yu724f77d2019-08-16 11:14:50 +08002475 EXPECT_TRUE(WaitForPrivateDnsValidation(tls.listen_address(), true));
Mike Yu4f3747b2018-12-02 17:54:29 +09002476 } else if (config.mode == STRICT) {
Mike Yu0f20cdd2019-06-11 11:52:37 +08002477 if (!tls.running()) {
2478 ASSERT_TRUE(tls.startServer());
2479 }
Xiao Ma09b71022018-12-11 17:56:32 +09002480 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, kDefaultSearchDomains,
waynema0e73c2e2019-07-31 15:04:08 +08002481 kDefaultParams, kDefaultPrivateDnsHostName));
Mike Yu724f77d2019-08-16 11:14:50 +08002482 EXPECT_TRUE(WaitForPrivateDnsValidation(tls.listen_address(), true));
Mike Yu4f3747b2018-12-02 17:54:29 +09002483 }
2484
2485 if (config.method == GETHOSTBYNAME) {
2486 const hostent* h_result = gethostbyname(host_name);
2487 if (config.expectResult == EXPECT_SUCCESS) {
2488 EXPECT_LE(1U, GetNumQueries(dns, host_name));
2489 ASSERT_TRUE(h_result != nullptr);
2490 ASSERT_EQ(4, h_result->h_length);
2491 ASSERT_FALSE(h_result->h_addr_list[0] == nullptr);
2492 EXPECT_EQ(ADDR4, ToString(h_result));
2493 EXPECT_TRUE(h_result->h_addr_list[1] == nullptr);
2494 } else {
2495 EXPECT_EQ(0U, GetNumQueriesForType(dns, ns_type::ns_t_a, host_name));
2496 ASSERT_TRUE(h_result == nullptr);
2497 ASSERT_EQ(HOST_NOT_FOUND, h_errno);
2498 }
2499 } else if (config.method == GETADDRINFO) {
2500 ScopedAddrinfo ai_result;
2501 addrinfo hints = {.ai_family = AF_INET, .ai_socktype = SOCK_DGRAM};
2502 ai_result = safe_getaddrinfo(host_name, nullptr, &hints);
2503 if (config.expectResult == EXPECT_SUCCESS) {
2504 EXPECT_TRUE(ai_result != nullptr);
2505 EXPECT_EQ(1U, GetNumQueries(dns, host_name));
2506 const std::string result_str = ToString(ai_result);
2507 EXPECT_EQ(ADDR4, result_str);
2508 } else {
2509 EXPECT_TRUE(ai_result == nullptr);
2510 EXPECT_EQ(0U, GetNumQueries(dns, host_name));
2511 }
2512 } else {
2513 FAIL() << "Unsupported query method: " << config.method;
2514 }
2515
Mike Yudd4ac2d2019-05-31 16:52:11 +08002516 tls.clearQueries();
Mike Yu4f3747b2018-12-02 17:54:29 +09002517 dns.clearQueries();
2518 }
Mike Yu4f3747b2018-12-02 17:54:29 +09002519}
nuccachena26cc2a2018-07-17 18:07:23 +08002520
Ken Chen0a015532019-01-02 14:59:38 +08002521// DNS-over-TLS validation success, but server does not respond to TLS query after a while.
2522// Resolver should have a reasonable number of retries instead of spinning forever. We don't have
2523// an efficient way to know if resolver is stuck in an infinite loop. However, test case will be
2524// failed due to timeout.
2525TEST_F(ResolverTest, UnstableTls) {
2526 const char CLEARTEXT_ADDR[] = "127.0.0.53";
2527 const char CLEARTEXT_PORT[] = "53";
2528 const char TLS_PORT[] = "853";
2529 const char* host_name1 = "nonexistent1.example.com.";
2530 const char* host_name2 = "nonexistent2.example.com.";
2531 const std::vector<std::string> servers = {CLEARTEXT_ADDR};
2532
Mike Yufc125e42019-05-15 20:41:28 +08002533 test::DNSResponder dns(CLEARTEXT_ADDR, CLEARTEXT_PORT, ns_rcode::ns_r_servfail);
Ken Chen0a015532019-01-02 14:59:38 +08002534 ASSERT_TRUE(dns.startServer());
2535 dns.setEdns(test::DNSResponder::Edns::FORMERR_ON_EDNS);
2536 test::DnsTlsFrontend tls(CLEARTEXT_ADDR, TLS_PORT, CLEARTEXT_ADDR, CLEARTEXT_PORT);
2537 ASSERT_TRUE(tls.startServer());
waynema0e73c2e2019-07-31 15:04:08 +08002538 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, kDefaultSearchDomains, kDefaultParams, ""));
Mike Yu724f77d2019-08-16 11:14:50 +08002539 EXPECT_TRUE(WaitForPrivateDnsValidation(tls.listen_address(), true));
2540
Ken Chen0a015532019-01-02 14:59:38 +08002541 // Shutdown TLS server to get an error. It's similar to no response case but without waiting.
2542 tls.stopServer();
2543
2544 const hostent* h_result = gethostbyname(host_name1);
2545 EXPECT_EQ(1U, GetNumQueries(dns, host_name1));
2546 ASSERT_TRUE(h_result == nullptr);
2547 ASSERT_EQ(HOST_NOT_FOUND, h_errno);
2548
2549 addrinfo hints = {.ai_family = AF_INET, .ai_socktype = SOCK_DGRAM};
2550 ScopedAddrinfo ai_result = safe_getaddrinfo(host_name2, nullptr, &hints);
2551 EXPECT_TRUE(ai_result == nullptr);
2552 EXPECT_EQ(1U, GetNumQueries(dns, host_name2));
2553}
2554
2555// DNS-over-TLS validation success, but server does not respond to TLS query after a while.
2556// Moreover, server responds RCODE=FORMERR even on non-EDNS query.
2557TEST_F(ResolverTest, BogusDnsServer) {
2558 const char CLEARTEXT_ADDR[] = "127.0.0.53";
2559 const char CLEARTEXT_PORT[] = "53";
2560 const char TLS_PORT[] = "853";
2561 const char* host_name1 = "nonexistent1.example.com.";
2562 const char* host_name2 = "nonexistent2.example.com.";
2563 const std::vector<std::string> servers = {CLEARTEXT_ADDR};
2564
Mike Yufc125e42019-05-15 20:41:28 +08002565 test::DNSResponder dns(CLEARTEXT_ADDR, CLEARTEXT_PORT, ns_rcode::ns_r_servfail);
Ken Chen0a015532019-01-02 14:59:38 +08002566 ASSERT_TRUE(dns.startServer());
2567 test::DnsTlsFrontend tls(CLEARTEXT_ADDR, TLS_PORT, CLEARTEXT_ADDR, CLEARTEXT_PORT);
2568 ASSERT_TRUE(tls.startServer());
waynema0e73c2e2019-07-31 15:04:08 +08002569 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, kDefaultSearchDomains, kDefaultParams, ""));
Mike Yu724f77d2019-08-16 11:14:50 +08002570 EXPECT_TRUE(WaitForPrivateDnsValidation(tls.listen_address(), true));
2571
Ken Chen0a015532019-01-02 14:59:38 +08002572 // Shutdown TLS server to get an error. It's similar to no response case but without waiting.
2573 tls.stopServer();
2574 dns.setEdns(test::DNSResponder::Edns::FORMERR_UNCOND);
2575
2576 const hostent* h_result = gethostbyname(host_name1);
2577 EXPECT_EQ(0U, GetNumQueries(dns, host_name1));
2578 ASSERT_TRUE(h_result == nullptr);
2579 ASSERT_EQ(HOST_NOT_FOUND, h_errno);
2580
2581 addrinfo hints = {.ai_family = AF_INET, .ai_socktype = SOCK_DGRAM};
2582 ScopedAddrinfo ai_result = safe_getaddrinfo(host_name2, nullptr, &hints);
2583 EXPECT_TRUE(ai_result == nullptr);
2584 EXPECT_EQ(0U, GetNumQueries(dns, host_name2));
2585}
2586
nuccachena26cc2a2018-07-17 18:07:23 +08002587TEST_F(ResolverTest, GetAddrInfo_Dns64Synthesize) {
2588 constexpr char listen_addr[] = "::1";
nuccachena26cc2a2018-07-17 18:07:23 +08002589 constexpr char dns64_name[] = "ipv4only.arpa.";
2590 constexpr char host_name[] = "v4only.example.com.";
Xiao Ma09b71022018-12-11 17:56:32 +09002591 const std::vector<DnsRecord> records = {
2592 {dns64_name, ns_type::ns_t_aaaa, "64:ff9b::192.0.0.170"},
2593 {host_name, ns_type::ns_t_a, "1.2.3.4"},
2594 };
nuccachena26cc2a2018-07-17 18:07:23 +08002595
Xiao Ma09b71022018-12-11 17:56:32 +09002596 test::DNSResponder dns(listen_addr);
Xiao Ma09b71022018-12-11 17:56:32 +09002597 StartDns(dns, records);
nuccachena26cc2a2018-07-17 18:07:23 +08002598
2599 std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09002600 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
nuccachena26cc2a2018-07-17 18:07:23 +08002601
Lorenzo Colittid39345c2019-02-18 10:59:29 +09002602 // Start NAT64 prefix discovery and wait for it to complete.
Luke Huang5bd827c2019-03-14 16:10:04 +08002603 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08002604 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08002605
2606 // hints are necessary in order to let netd know which type of addresses the caller is
2607 // interested in.
Xiao Ma09b71022018-12-11 17:56:32 +09002608 const addrinfo hints = {.ai_family = AF_UNSPEC};
nuccachena26cc2a2018-07-17 18:07:23 +08002609 ScopedAddrinfo result = safe_getaddrinfo("v4only", nullptr, &hints);
2610 EXPECT_TRUE(result != nullptr);
Lorenzo Colittid39345c2019-02-18 10:59:29 +09002611 // TODO: BUG: there should only be two queries, one AAAA (which returns no records) and one A
2612 // (which returns 1.2.3.4). But there is an extra AAAA.
2613 EXPECT_EQ(3U, GetNumQueries(dns, host_name));
nuccachena26cc2a2018-07-17 18:07:23 +08002614
2615 std::string result_str = ToString(result);
2616 EXPECT_EQ(result_str, "64:ff9b::102:304");
2617
Lorenzo Colittid39345c2019-02-18 10:59:29 +09002618 // Stopping NAT64 prefix discovery disables synthesis.
Luke Huang5bd827c2019-03-14 16:10:04 +08002619 EXPECT_TRUE(mDnsClient.resolvService()->stopPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08002620 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_NOT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08002621
Lorenzo Colittid39345c2019-02-18 10:59:29 +09002622 dns.clearQueries();
nuccachena26cc2a2018-07-17 18:07:23 +08002623
2624 result = safe_getaddrinfo("v4only", nullptr, &hints);
2625 EXPECT_TRUE(result != nullptr);
Lorenzo Colittid39345c2019-02-18 10:59:29 +09002626 // TODO: BUG: there should only be one query, an AAAA (which returns no records), because the
2627 // A is already cached. But there is an extra AAAA.
2628 EXPECT_EQ(2U, GetNumQueries(dns, host_name));
nuccachena26cc2a2018-07-17 18:07:23 +08002629
2630 result_str = ToString(result);
2631 EXPECT_EQ(result_str, "1.2.3.4");
2632}
2633
nuccachena26cc2a2018-07-17 18:07:23 +08002634TEST_F(ResolverTest, GetAddrInfo_Dns64QuerySpecified) {
2635 constexpr char listen_addr[] = "::1";
nuccachena26cc2a2018-07-17 18:07:23 +08002636 constexpr char dns64_name[] = "ipv4only.arpa.";
2637 constexpr char host_name[] = "v4only.example.com.";
Xiao Ma09b71022018-12-11 17:56:32 +09002638 const std::vector<DnsRecord> records = {
2639 {dns64_name, ns_type::ns_t_aaaa, "64:ff9b::192.0.0.170"},
2640 {host_name, ns_type::ns_t_a, "1.2.3.4"},
2641 };
nuccachena26cc2a2018-07-17 18:07:23 +08002642
Xiao Ma09b71022018-12-11 17:56:32 +09002643 test::DNSResponder dns(listen_addr);
2644 StartDns(dns, records);
nuccachena26cc2a2018-07-17 18:07:23 +08002645 const std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09002646 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
nuccachena26cc2a2018-07-17 18:07:23 +08002647
Lorenzo Colittid39345c2019-02-18 10:59:29 +09002648 // Start NAT64 prefix discovery and wait for it to complete.
Luke Huang5bd827c2019-03-14 16:10:04 +08002649 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08002650 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08002651
2652 // Ensure to synthesize AAAA if AF_INET6 is specified, and not to synthesize AAAA
2653 // in AF_INET case.
2654 addrinfo hints;
2655 memset(&hints, 0, sizeof(hints));
2656 hints.ai_family = AF_INET6;
2657 ScopedAddrinfo result = safe_getaddrinfo("v4only", nullptr, &hints);
2658 EXPECT_TRUE(result != nullptr);
2659 std::string result_str = ToString(result);
2660 EXPECT_EQ(result_str, "64:ff9b::102:304");
2661
2662 hints.ai_family = AF_INET;
2663 result = safe_getaddrinfo("v4only", nullptr, &hints);
2664 EXPECT_TRUE(result != nullptr);
2665 EXPECT_LE(2U, GetNumQueries(dns, host_name));
2666 result_str = ToString(result);
2667 EXPECT_EQ(result_str, "1.2.3.4");
2668}
nuccachena26cc2a2018-07-17 18:07:23 +08002669
2670TEST_F(ResolverTest, GetAddrInfo_Dns64QueryUnspecifiedV6) {
2671 constexpr char listen_addr[] = "::1";
nuccachena26cc2a2018-07-17 18:07:23 +08002672 constexpr char dns64_name[] = "ipv4only.arpa.";
2673 constexpr char host_name[] = "v4v6.example.com.";
Xiao Ma09b71022018-12-11 17:56:32 +09002674 const std::vector<DnsRecord> records = {
2675 {dns64_name, ns_type::ns_t_aaaa, "64:ff9b::192.0.0.170"},
2676 {host_name, ns_type::ns_t_a, "1.2.3.4"},
2677 {host_name, ns_type::ns_t_aaaa, "2001:db8::1.2.3.4"},
2678 };
nuccachena26cc2a2018-07-17 18:07:23 +08002679
Xiao Ma09b71022018-12-11 17:56:32 +09002680 test::DNSResponder dns(listen_addr);
2681 StartDns(dns, records);
nuccachena26cc2a2018-07-17 18:07:23 +08002682 const std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09002683 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
nuccachena26cc2a2018-07-17 18:07:23 +08002684
Lorenzo Colittid39345c2019-02-18 10:59:29 +09002685 // Start NAT64 prefix discovery and wait for it to complete.
Luke Huang5bd827c2019-03-14 16:10:04 +08002686 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08002687 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08002688
Xiao Ma09b71022018-12-11 17:56:32 +09002689 const addrinfo hints = {.ai_family = AF_UNSPEC};
nuccachena26cc2a2018-07-17 18:07:23 +08002690 ScopedAddrinfo result = safe_getaddrinfo("v4v6", nullptr, &hints);
2691 EXPECT_TRUE(result != nullptr);
2692 EXPECT_LE(2U, GetNumQueries(dns, host_name));
2693
2694 // In AF_UNSPEC case, do not synthesize AAAA if there's at least one AAAA answer.
Xiao Ma09b71022018-12-11 17:56:32 +09002695 const std::vector<std::string> result_strs = ToStrings(result);
nuccachena26cc2a2018-07-17 18:07:23 +08002696 for (const auto& str : result_strs) {
2697 EXPECT_TRUE(str == "1.2.3.4" || str == "2001:db8::102:304")
2698 << ", result_str='" << str << "'";
2699 }
2700}
2701
2702TEST_F(ResolverTest, GetAddrInfo_Dns64QueryUnspecifiedNoV6) {
2703 constexpr char listen_addr[] = "::1";
nuccachena26cc2a2018-07-17 18:07:23 +08002704 constexpr char dns64_name[] = "ipv4only.arpa.";
2705 constexpr char host_name[] = "v4v6.example.com.";
Xiao Ma09b71022018-12-11 17:56:32 +09002706 const std::vector<DnsRecord> records = {
2707 {dns64_name, ns_type::ns_t_aaaa, "64:ff9b::192.0.0.170"},
2708 {host_name, ns_type::ns_t_a, "1.2.3.4"},
2709 };
nuccachena26cc2a2018-07-17 18:07:23 +08002710
Xiao Ma09b71022018-12-11 17:56:32 +09002711 test::DNSResponder dns(listen_addr);
2712 StartDns(dns, records);
nuccachena26cc2a2018-07-17 18:07:23 +08002713 const std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09002714 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
nuccachena26cc2a2018-07-17 18:07:23 +08002715
Lorenzo Colittid39345c2019-02-18 10:59:29 +09002716 // Start NAT64 prefix discovery and wait for it to complete.
Luke Huang5bd827c2019-03-14 16:10:04 +08002717 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08002718 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08002719
Xiao Ma09b71022018-12-11 17:56:32 +09002720 const addrinfo hints = {.ai_family = AF_UNSPEC};
nuccachena26cc2a2018-07-17 18:07:23 +08002721 ScopedAddrinfo result = safe_getaddrinfo("v4v6", nullptr, &hints);
2722 EXPECT_TRUE(result != nullptr);
2723 EXPECT_LE(2U, GetNumQueries(dns, host_name));
2724
2725 // In AF_UNSPEC case, synthesize AAAA if there's no AAAA answer.
2726 std::string result_str = ToString(result);
2727 EXPECT_EQ(result_str, "64:ff9b::102:304");
2728}
2729
2730TEST_F(ResolverTest, GetAddrInfo_Dns64QuerySpecialUseIPv4Addresses) {
2731 constexpr char THIS_NETWORK[] = "this_network";
2732 constexpr char LOOPBACK[] = "loopback";
2733 constexpr char LINK_LOCAL[] = "link_local";
2734 constexpr char MULTICAST[] = "multicast";
2735 constexpr char LIMITED_BROADCAST[] = "limited_broadcast";
2736
2737 constexpr char ADDR_THIS_NETWORK[] = "0.0.0.1";
2738 constexpr char ADDR_LOOPBACK[] = "127.0.0.1";
2739 constexpr char ADDR_LINK_LOCAL[] = "169.254.0.1";
2740 constexpr char ADDR_MULTICAST[] = "224.0.0.1";
2741 constexpr char ADDR_LIMITED_BROADCAST[] = "255.255.255.255";
2742
2743 constexpr char listen_addr[] = "::1";
nuccachena26cc2a2018-07-17 18:07:23 +08002744 constexpr char dns64_name[] = "ipv4only.arpa.";
2745
Xiao Ma09b71022018-12-11 17:56:32 +09002746 test::DNSResponder dns(listen_addr);
2747 StartDns(dns, {{dns64_name, ns_type::ns_t_aaaa, "64:ff9b::"}});
nuccachena26cc2a2018-07-17 18:07:23 +08002748 const std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09002749 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
nuccachena26cc2a2018-07-17 18:07:23 +08002750
Lorenzo Colittid39345c2019-02-18 10:59:29 +09002751 // Start NAT64 prefix discovery and wait for it to complete.
Luke Huang5bd827c2019-03-14 16:10:04 +08002752 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08002753 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08002754
Luke Huangf8215372019-11-22 11:53:41 +08002755 // clang-format off
nuccachena26cc2a2018-07-17 18:07:23 +08002756 static const struct TestConfig {
2757 std::string name;
2758 std::string addr;
2759
2760 std::string asHostName() const { return StringPrintf("%s.example.com.", name.c_str()); }
2761 } testConfigs[]{
2762 {THIS_NETWORK, ADDR_THIS_NETWORK},
2763 {LOOPBACK, ADDR_LOOPBACK},
2764 {LINK_LOCAL, ADDR_LINK_LOCAL},
2765 {MULTICAST, ADDR_MULTICAST},
2766 {LIMITED_BROADCAST, ADDR_LIMITED_BROADCAST}
2767 };
Luke Huangf8215372019-11-22 11:53:41 +08002768 // clang-format on
nuccachena26cc2a2018-07-17 18:07:23 +08002769
2770 for (const auto& config : testConfigs) {
2771 const std::string testHostName = config.asHostName();
2772 SCOPED_TRACE(testHostName);
2773
2774 const char* host_name = testHostName.c_str();
2775 dns.addMapping(host_name, ns_type::ns_t_a, config.addr.c_str());
2776
2777 addrinfo hints;
2778 memset(&hints, 0, sizeof(hints));
2779 hints.ai_family = AF_INET6;
2780 ScopedAddrinfo result = safe_getaddrinfo(config.name.c_str(), nullptr, &hints);
2781 // In AF_INET6 case, don't return IPv4 answers
2782 EXPECT_TRUE(result == nullptr);
2783 EXPECT_LE(2U, GetNumQueries(dns, host_name));
2784 dns.clearQueries();
2785
2786 memset(&hints, 0, sizeof(hints));
2787 hints.ai_family = AF_UNSPEC;
2788 result = safe_getaddrinfo(config.name.c_str(), nullptr, &hints);
2789 EXPECT_TRUE(result != nullptr);
2790 // Expect IPv6 query only. IPv4 answer has been cached in previous query.
2791 EXPECT_LE(1U, GetNumQueries(dns, host_name));
2792 // In AF_UNSPEC case, don't synthesize special use IPv4 address.
2793 std::string result_str = ToString(result);
2794 EXPECT_EQ(result_str, config.addr.c_str());
2795 dns.clearQueries();
2796 }
2797}
2798
2799TEST_F(ResolverTest, GetAddrInfo_Dns64QueryWithNullArgumentHints) {
2800 constexpr char listen_addr[] = "::1";
nuccachena26cc2a2018-07-17 18:07:23 +08002801 constexpr char dns64_name[] = "ipv4only.arpa.";
2802 constexpr char host_name[] = "v4only.example.com.";
2803 constexpr char host_name2[] = "v4v6.example.com.";
Xiao Ma09b71022018-12-11 17:56:32 +09002804 const std::vector<DnsRecord> records = {
2805 {dns64_name, ns_type::ns_t_aaaa, "64:ff9b::192.0.0.170"},
2806 {host_name, ns_type::ns_t_a, "1.2.3.4"},
2807 {host_name2, ns_type::ns_t_a, "1.2.3.4"},
2808 {host_name2, ns_type::ns_t_aaaa, "2001:db8::1.2.3.4"},
2809 };
nuccachena26cc2a2018-07-17 18:07:23 +08002810
Xiao Ma09b71022018-12-11 17:56:32 +09002811 test::DNSResponder dns(listen_addr);
2812 StartDns(dns, records);
nuccachena26cc2a2018-07-17 18:07:23 +08002813 const std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09002814 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
nuccachena26cc2a2018-07-17 18:07:23 +08002815
Lorenzo Colittid39345c2019-02-18 10:59:29 +09002816 // Start NAT64 prefix discovery and wait for it to complete.
Luke Huang5bd827c2019-03-14 16:10:04 +08002817 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08002818 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08002819
2820 // Assign argument hints of getaddrinfo() as null is equivalent to set ai_family AF_UNSPEC.
2821 // In AF_UNSPEC case, synthesize AAAA if there has A answer only.
2822 ScopedAddrinfo result = safe_getaddrinfo("v4only", nullptr, nullptr);
2823 EXPECT_TRUE(result != nullptr);
2824 EXPECT_LE(2U, GetNumQueries(dns, host_name));
2825 std::string result_str = ToString(result);
2826 EXPECT_EQ(result_str, "64:ff9b::102:304");
2827 dns.clearQueries();
2828
2829 // In AF_UNSPEC case, do not synthesize AAAA if there's at least one AAAA answer.
2830 result = safe_getaddrinfo("v4v6", nullptr, nullptr);
2831 EXPECT_TRUE(result != nullptr);
2832 EXPECT_LE(2U, GetNumQueries(dns, host_name2));
2833 std::vector<std::string> result_strs = ToStrings(result);
2834 for (const auto& str : result_strs) {
2835 EXPECT_TRUE(str == "1.2.3.4" || str == "2001:db8::102:304")
2836 << ", result_str='" << str << "'";
2837 }
2838}
2839
2840TEST_F(ResolverTest, GetAddrInfo_Dns64QueryNullArgumentNode) {
2841 constexpr char ADDR_ANYADDR_V4[] = "0.0.0.0";
2842 constexpr char ADDR_ANYADDR_V6[] = "::";
2843 constexpr char ADDR_LOCALHOST_V4[] = "127.0.0.1";
2844 constexpr char ADDR_LOCALHOST_V6[] = "::1";
2845
2846 constexpr char PORT_NAME_HTTP[] = "http";
2847 constexpr char PORT_NUMBER_HTTP[] = "80";
2848
2849 constexpr char listen_addr[] = "::1";
nuccachena26cc2a2018-07-17 18:07:23 +08002850 constexpr char dns64_name[] = "ipv4only.arpa.";
2851
Xiao Ma09b71022018-12-11 17:56:32 +09002852 test::DNSResponder dns(listen_addr);
2853 StartDns(dns, {{dns64_name, ns_type::ns_t_aaaa, "64:ff9b::"}});
nuccachena26cc2a2018-07-17 18:07:23 +08002854 const std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09002855 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
nuccachena26cc2a2018-07-17 18:07:23 +08002856
Lorenzo Colittid39345c2019-02-18 10:59:29 +09002857 // Start NAT64 prefix discovery and wait for it to complete.
Luke Huang5bd827c2019-03-14 16:10:04 +08002858 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08002859 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08002860
Luke Huangf8215372019-11-22 11:53:41 +08002861 // clang-format off
nuccachena26cc2a2018-07-17 18:07:23 +08002862 // If node is null, return address is listed by libc/getaddrinfo.c as follows.
2863 // - passive socket -> anyaddr (0.0.0.0 or ::)
2864 // - non-passive socket -> localhost (127.0.0.1 or ::1)
2865 static const struct TestConfig {
2866 int flag;
2867 std::string addr_v4;
2868 std::string addr_v6;
2869
2870 std::string asParameters() const {
2871 return StringPrintf("flag=%d, addr_v4=%s, addr_v6=%s", flag, addr_v4.c_str(),
2872 addr_v6.c_str());
2873 }
2874 } testConfigs[]{
2875 {0 /* non-passive */, ADDR_LOCALHOST_V4, ADDR_LOCALHOST_V6},
2876 {AI_PASSIVE, ADDR_ANYADDR_V4, ADDR_ANYADDR_V6}
2877 };
Luke Huangf8215372019-11-22 11:53:41 +08002878 // clang-format on
nuccachena26cc2a2018-07-17 18:07:23 +08002879
2880 for (const auto& config : testConfigs) {
2881 SCOPED_TRACE(config.asParameters());
2882
Xiao Ma09b71022018-12-11 17:56:32 +09002883 addrinfo hints = {
Nick Desaulnierscd6395a2019-10-11 09:15:24 -07002884 .ai_flags = config.flag,
Xiao Ma09b71022018-12-11 17:56:32 +09002885 .ai_family = AF_UNSPEC, // any address family
2886 .ai_socktype = 0, // any type
2887 .ai_protocol = 0, // any protocol
Xiao Ma09b71022018-12-11 17:56:32 +09002888 };
nuccachena26cc2a2018-07-17 18:07:23 +08002889
2890 // Assign hostname as null and service as port name.
2891 ScopedAddrinfo result = safe_getaddrinfo(nullptr, PORT_NAME_HTTP, &hints);
2892 ASSERT_TRUE(result != nullptr);
2893
2894 // Can't be synthesized because it should not get into Netd.
2895 std::vector<std::string> result_strs = ToStrings(result);
2896 for (const auto& str : result_strs) {
2897 EXPECT_TRUE(str == config.addr_v4 || str == config.addr_v6)
2898 << ", result_str='" << str << "'";
2899 }
2900
2901 // Assign hostname as null and service as numeric port number.
2902 hints.ai_flags = config.flag | AI_NUMERICSERV;
2903 result = safe_getaddrinfo(nullptr, PORT_NUMBER_HTTP, &hints);
2904 ASSERT_TRUE(result != nullptr);
2905
2906 // Can't be synthesized because it should not get into Netd.
2907 result_strs = ToStrings(result);
2908 for (const auto& str : result_strs) {
2909 EXPECT_TRUE(str == config.addr_v4 || str == config.addr_v6)
2910 << ", result_str='" << str << "'";
2911 }
2912 }
2913}
2914
2915TEST_F(ResolverTest, GetHostByAddr_ReverseDnsQueryWithHavingNat64Prefix) {
2916 struct hostent* result = nullptr;
2917 struct in_addr v4addr;
2918 struct in6_addr v6addr;
2919
2920 constexpr char listen_addr[] = "::1";
nuccachena26cc2a2018-07-17 18:07:23 +08002921 constexpr char dns64_name[] = "ipv4only.arpa.";
2922 constexpr char ptr_name[] = "v4v6.example.com.";
2923 // PTR record for IPv4 address 1.2.3.4
2924 constexpr char ptr_addr_v4[] = "4.3.2.1.in-addr.arpa.";
2925 // PTR record for IPv6 address 2001:db8::102:304
2926 constexpr char ptr_addr_v6[] =
2927 "4.0.3.0.2.0.1.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.8.b.d.0.1.0.0.2.ip6.arpa.";
Xiao Ma09b71022018-12-11 17:56:32 +09002928 const std::vector<DnsRecord> records = {
2929 {dns64_name, ns_type::ns_t_aaaa, "64:ff9b::192.0.0.170"},
2930 {ptr_addr_v4, ns_type::ns_t_ptr, ptr_name},
2931 {ptr_addr_v6, ns_type::ns_t_ptr, ptr_name},
2932 };
nuccachena26cc2a2018-07-17 18:07:23 +08002933
Xiao Ma09b71022018-12-11 17:56:32 +09002934 test::DNSResponder dns(listen_addr);
2935 StartDns(dns, records);
nuccachena26cc2a2018-07-17 18:07:23 +08002936 const std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09002937 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
nuccachena26cc2a2018-07-17 18:07:23 +08002938
Lorenzo Colittid39345c2019-02-18 10:59:29 +09002939 // Start NAT64 prefix discovery and wait for it to complete.
Luke Huang5bd827c2019-03-14 16:10:04 +08002940 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08002941 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08002942
2943 // Reverse IPv4 DNS query. Prefix should have no effect on it.
2944 inet_pton(AF_INET, "1.2.3.4", &v4addr);
2945 result = gethostbyaddr(&v4addr, sizeof(v4addr), AF_INET);
2946 ASSERT_TRUE(result != nullptr);
2947 std::string result_str = result->h_name ? result->h_name : "null";
2948 EXPECT_EQ(result_str, "v4v6.example.com");
2949
2950 // Reverse IPv6 DNS query. Prefix should have no effect on it.
2951 inet_pton(AF_INET6, "2001:db8::102:304", &v6addr);
2952 result = gethostbyaddr(&v6addr, sizeof(v6addr), AF_INET6);
2953 ASSERT_TRUE(result != nullptr);
2954 result_str = result->h_name ? result->h_name : "null";
2955 EXPECT_EQ(result_str, "v4v6.example.com");
2956}
2957
2958TEST_F(ResolverTest, GetHostByAddr_ReverseDns64Query) {
2959 constexpr char listen_addr[] = "::1";
nuccachena26cc2a2018-07-17 18:07:23 +08002960 constexpr char dns64_name[] = "ipv4only.arpa.";
2961 constexpr char ptr_name[] = "v4only.example.com.";
2962 // PTR record for IPv4 address 1.2.3.4
2963 constexpr char ptr_addr_v4[] = "4.3.2.1.in-addr.arpa.";
2964 // PTR record for IPv6 address 64:ff9b::1.2.3.4
2965 constexpr char ptr_addr_v6_nomapping[] =
2966 "4.0.3.0.2.0.1.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.b.9.f.f.4.6.0.0.ip6.arpa.";
2967 constexpr char ptr_name_v6_synthesis[] = "v6synthesis.example.com.";
2968 // PTR record for IPv6 address 64:ff9b::5.6.7.8
2969 constexpr char ptr_addr_v6_synthesis[] =
2970 "8.0.7.0.6.0.5.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.b.9.f.f.4.6.0.0.ip6.arpa.";
Xiao Ma09b71022018-12-11 17:56:32 +09002971 const std::vector<DnsRecord> records = {
2972 {dns64_name, ns_type::ns_t_aaaa, "64:ff9b::192.0.0.170"},
2973 {ptr_addr_v4, ns_type::ns_t_ptr, ptr_name},
2974 {ptr_addr_v6_synthesis, ns_type::ns_t_ptr, ptr_name_v6_synthesis},
2975 };
nuccachena26cc2a2018-07-17 18:07:23 +08002976
Xiao Ma09b71022018-12-11 17:56:32 +09002977 test::DNSResponder dns(listen_addr);
2978 StartDns(dns, records);
nuccachena26cc2a2018-07-17 18:07:23 +08002979 // "ptr_addr_v6_nomapping" is not mapped in DNS server
nuccachena26cc2a2018-07-17 18:07:23 +08002980 const std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09002981 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
nuccachena26cc2a2018-07-17 18:07:23 +08002982
Lorenzo Colittid39345c2019-02-18 10:59:29 +09002983 // Start NAT64 prefix discovery and wait for it to complete.
Luke Huang5bd827c2019-03-14 16:10:04 +08002984 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08002985 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08002986
2987 // Synthesized PTR record doesn't exist on DNS server
2988 // Reverse IPv6 DNS64 query while DNS server doesn't have an answer for synthesized address.
2989 // After querying synthesized address failed, expect that prefix is removed from IPv6
2990 // synthesized address and do reverse IPv4 query instead.
2991 struct in6_addr v6addr;
2992 inet_pton(AF_INET6, "64:ff9b::1.2.3.4", &v6addr);
2993 struct hostent* result = gethostbyaddr(&v6addr, sizeof(v6addr), AF_INET6);
2994 ASSERT_TRUE(result != nullptr);
2995 EXPECT_LE(1U, GetNumQueries(dns, ptr_addr_v6_nomapping)); // PTR record not exist
2996 EXPECT_LE(1U, GetNumQueries(dns, ptr_addr_v4)); // PTR record exist
2997 std::string result_str = result->h_name ? result->h_name : "null";
2998 EXPECT_EQ(result_str, "v4only.example.com");
2999 // Check that return address has been mapped from IPv4 to IPv6 address because Netd
3000 // removes NAT64 prefix and does IPv4 DNS reverse lookup in this case. Then, Netd
3001 // fakes the return IPv4 address as original queried IPv6 address.
3002 result_str = ToString(result);
3003 EXPECT_EQ(result_str, "64:ff9b::102:304");
3004 dns.clearQueries();
3005
3006 // Synthesized PTR record exists on DNS server
3007 // Reverse IPv6 DNS64 query while DNS server has an answer for synthesized address.
3008 // Expect to Netd pass through synthesized address for DNS queries.
3009 inet_pton(AF_INET6, "64:ff9b::5.6.7.8", &v6addr);
3010 result = gethostbyaddr(&v6addr, sizeof(v6addr), AF_INET6);
3011 ASSERT_TRUE(result != nullptr);
3012 EXPECT_LE(1U, GetNumQueries(dns, ptr_addr_v6_synthesis));
3013 result_str = result->h_name ? result->h_name : "null";
3014 EXPECT_EQ(result_str, "v6synthesis.example.com");
3015}
3016
3017TEST_F(ResolverTest, GetHostByAddr_ReverseDns64QueryFromHostFile) {
3018 constexpr char dns64_name[] = "ipv4only.arpa.";
3019 constexpr char host_name[] = "localhost";
3020 // The address is synthesized by prefix64:localhost.
3021 constexpr char host_addr[] = "64:ff9b::7f00:1";
nuccachena26cc2a2018-07-17 18:07:23 +08003022 constexpr char listen_addr[] = "::1";
Xiao Ma09b71022018-12-11 17:56:32 +09003023
3024 test::DNSResponder dns(listen_addr);
3025 StartDns(dns, {{dns64_name, ns_type::ns_t_aaaa, "64:ff9b::192.0.0.170"}});
nuccachena26cc2a2018-07-17 18:07:23 +08003026 const std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09003027 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
nuccachena26cc2a2018-07-17 18:07:23 +08003028
Lorenzo Colittid39345c2019-02-18 10:59:29 +09003029 // Start NAT64 prefix discovery and wait for it to complete.
Luke Huang5bd827c2019-03-14 16:10:04 +08003030 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08003031 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08003032
3033 // Using synthesized "localhost" address to be a trick for resolving host name
3034 // from host file /etc/hosts and "localhost" is the only name in /etc/hosts. Note that this is
3035 // not realistic: the code never synthesizes AAAA records for addresses in 127.0.0.0/8.
3036 struct in6_addr v6addr;
3037 inet_pton(AF_INET6, host_addr, &v6addr);
3038 struct hostent* result = gethostbyaddr(&v6addr, sizeof(v6addr), AF_INET6);
3039 ASSERT_TRUE(result != nullptr);
3040 // Expect no DNS queries; localhost is resolved via /etc/hosts.
3041 EXPECT_EQ(0U, GetNumQueries(dns, host_name));
3042
Luke Huangf8215372019-11-22 11:53:41 +08003043 ASSERT_EQ(sizeof(in6_addr), (unsigned)result->h_length);
nuccachena26cc2a2018-07-17 18:07:23 +08003044 ASSERT_EQ(AF_INET6, result->h_addrtype);
3045 std::string result_str = ToString(result);
3046 EXPECT_EQ(result_str, host_addr);
3047 result_str = result->h_name ? result->h_name : "null";
3048 EXPECT_EQ(result_str, host_name);
3049}
3050
Hungming Chen9e6185a2019-06-04 16:09:19 +08003051TEST_F(ResolverTest, GetHostByAddr_cnamesClasslessReverseDelegation) {
3052 // IPv4 addresses in the subnet with notation '/' or '-'.
3053 constexpr char addr_slash[] = "192.0.2.1";
3054 constexpr char addr_hyphen[] = "192.0.3.1";
3055
3056 // Used to verify DNS reverse query for classless reverse lookup zone. See detail in RFC 2317
3057 // section 4.
3058 const static std::vector<DnsRecord> records = {
3059 // The records for reverse querying "192.0.2.1" in the subnet with notation '/'.
3060 {"1.2.0.192.in-addr.arpa.", ns_type::ns_t_cname, "1.0/25.2.0.192.in-addr.arpa."},
3061 {"1.0/25.2.0.192.in-addr.arpa.", ns_type::ns_t_ptr, kHelloExampleCom},
3062
3063 // The records for reverse querying "192.0.3.1" in the subnet with notation '-'.
3064 {"1.3.0.192.in-addr.arpa.", ns_type::ns_t_cname, "1.0-127.3.0.192.in-addr.arpa."},
3065 {"1.0-127.3.0.192.in-addr.arpa.", ns_type::ns_t_ptr, kHelloExampleCom},
3066 };
3067
3068 test::DNSResponder dns;
3069 StartDns(dns, records);
3070 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
3071
3072 for (const auto& address : {addr_slash, addr_hyphen}) {
3073 SCOPED_TRACE(address);
3074
3075 in_addr v4addr;
3076 ASSERT_TRUE(inet_pton(AF_INET, address, &v4addr));
3077 hostent* result = gethostbyaddr(&v4addr, sizeof(v4addr), AF_INET);
3078 ASSERT_TRUE(result != nullptr);
3079 EXPECT_STREQ("hello.example.com", result->h_name);
3080 }
3081}
3082
nuccachena26cc2a2018-07-17 18:07:23 +08003083TEST_F(ResolverTest, GetNameInfo_ReverseDnsQueryWithHavingNat64Prefix) {
3084 constexpr char listen_addr[] = "::1";
nuccachena26cc2a2018-07-17 18:07:23 +08003085 constexpr char dns64_name[] = "ipv4only.arpa.";
3086 constexpr char ptr_name[] = "v4v6.example.com.";
3087 // PTR record for IPv4 address 1.2.3.4
3088 constexpr char ptr_addr_v4[] = "4.3.2.1.in-addr.arpa.";
3089 // PTR record for IPv6 address 2001:db8::102:304
3090 constexpr char ptr_addr_v6[] =
3091 "4.0.3.0.2.0.1.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.8.b.d.0.1.0.0.2.ip6.arpa.";
Xiao Ma09b71022018-12-11 17:56:32 +09003092 const std::vector<DnsRecord> records = {
3093 {dns64_name, ns_type::ns_t_aaaa, "64:ff9b::192.0.0.170"},
3094 {ptr_addr_v4, ns_type::ns_t_ptr, ptr_name},
3095 {ptr_addr_v6, ns_type::ns_t_ptr, ptr_name},
3096 };
nuccachena26cc2a2018-07-17 18:07:23 +08003097
Xiao Ma09b71022018-12-11 17:56:32 +09003098 test::DNSResponder dns(listen_addr);
3099 StartDns(dns, records);
nuccachena26cc2a2018-07-17 18:07:23 +08003100 const std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09003101 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
nuccachena26cc2a2018-07-17 18:07:23 +08003102
Lorenzo Colittid39345c2019-02-18 10:59:29 +09003103 // Start NAT64 prefix discovery and wait for it to complete.
Luke Huang5bd827c2019-03-14 16:10:04 +08003104 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08003105 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08003106
Luke Huangf8215372019-11-22 11:53:41 +08003107 // clang-format off
nuccachena26cc2a2018-07-17 18:07:23 +08003108 static const struct TestConfig {
3109 int flag;
3110 int family;
3111 std::string addr;
3112 std::string host;
3113
3114 std::string asParameters() const {
3115 return StringPrintf("flag=%d, family=%d, addr=%s, host=%s", flag, family, addr.c_str(),
3116 host.c_str());
3117 }
3118 } testConfigs[]{
3119 {NI_NAMEREQD, AF_INET, "1.2.3.4", "v4v6.example.com"},
3120 {NI_NUMERICHOST, AF_INET, "1.2.3.4", "1.2.3.4"},
3121 {0, AF_INET, "1.2.3.4", "v4v6.example.com"},
3122 {0, AF_INET, "5.6.7.8", "5.6.7.8"}, // unmapped
3123 {NI_NAMEREQD, AF_INET6, "2001:db8::102:304", "v4v6.example.com"},
3124 {NI_NUMERICHOST, AF_INET6, "2001:db8::102:304", "2001:db8::102:304"},
3125 {0, AF_INET6, "2001:db8::102:304", "v4v6.example.com"},
3126 {0, AF_INET6, "2001:db8::506:708", "2001:db8::506:708"}, // unmapped
3127 };
Luke Huangf8215372019-11-22 11:53:41 +08003128 // clang-format on
nuccachena26cc2a2018-07-17 18:07:23 +08003129
3130 // Reverse IPv4/IPv6 DNS query. Prefix should have no effect on it.
3131 for (const auto& config : testConfigs) {
3132 SCOPED_TRACE(config.asParameters());
3133
3134 int rv;
3135 char host[NI_MAXHOST];
3136 struct sockaddr_in sin;
3137 struct sockaddr_in6 sin6;
3138 if (config.family == AF_INET) {
3139 memset(&sin, 0, sizeof(sin));
3140 sin.sin_family = AF_INET;
3141 inet_pton(AF_INET, config.addr.c_str(), &sin.sin_addr);
Luke Huangf8215372019-11-22 11:53:41 +08003142 rv = getnameinfo((const struct sockaddr*)&sin, sizeof(sin), host, sizeof(host), nullptr,
3143 0, config.flag);
nuccachena26cc2a2018-07-17 18:07:23 +08003144 if (config.flag == NI_NAMEREQD) EXPECT_LE(1U, GetNumQueries(dns, ptr_addr_v4));
3145 } else if (config.family == AF_INET6) {
3146 memset(&sin6, 0, sizeof(sin6));
3147 sin6.sin6_family = AF_INET6;
3148 inet_pton(AF_INET6, config.addr.c_str(), &sin6.sin6_addr);
Luke Huangf8215372019-11-22 11:53:41 +08003149 rv = getnameinfo((const struct sockaddr*)&sin6, sizeof(sin6), host, sizeof(host),
nuccachena26cc2a2018-07-17 18:07:23 +08003150 nullptr, 0, config.flag);
3151 if (config.flag == NI_NAMEREQD) EXPECT_LE(1U, GetNumQueries(dns, ptr_addr_v6));
3152 }
3153 ASSERT_EQ(0, rv);
3154 std::string result_str = host;
3155 EXPECT_EQ(result_str, config.host);
3156 dns.clearQueries();
3157 }
3158}
3159
3160TEST_F(ResolverTest, GetNameInfo_ReverseDns64Query) {
3161 constexpr char listen_addr[] = "::1";
nuccachena26cc2a2018-07-17 18:07:23 +08003162 constexpr char dns64_name[] = "ipv4only.arpa.";
3163 constexpr char ptr_name[] = "v4only.example.com.";
3164 // PTR record for IPv4 address 1.2.3.4
3165 constexpr char ptr_addr_v4[] = "4.3.2.1.in-addr.arpa.";
3166 // PTR record for IPv6 address 64:ff9b::1.2.3.4
3167 constexpr char ptr_addr_v6_nomapping[] =
3168 "4.0.3.0.2.0.1.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.b.9.f.f.4.6.0.0.ip6.arpa.";
3169 constexpr char ptr_name_v6_synthesis[] = "v6synthesis.example.com.";
3170 // PTR record for IPv6 address 64:ff9b::5.6.7.8
3171 constexpr char ptr_addr_v6_synthesis[] =
3172 "8.0.7.0.6.0.5.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.b.9.f.f.4.6.0.0.ip6.arpa.";
Xiao Ma09b71022018-12-11 17:56:32 +09003173 const std::vector<DnsRecord> records = {
3174 {dns64_name, ns_type::ns_t_aaaa, "64:ff9b::192.0.0.170"},
3175 {ptr_addr_v4, ns_type::ns_t_ptr, ptr_name},
3176 {ptr_addr_v6_synthesis, ns_type::ns_t_ptr, ptr_name_v6_synthesis},
3177 };
nuccachena26cc2a2018-07-17 18:07:23 +08003178
Xiao Ma09b71022018-12-11 17:56:32 +09003179 test::DNSResponder dns(listen_addr);
3180 StartDns(dns, records);
nuccachena26cc2a2018-07-17 18:07:23 +08003181 const std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09003182 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
nuccachena26cc2a2018-07-17 18:07:23 +08003183
Lorenzo Colittid39345c2019-02-18 10:59:29 +09003184 // Start NAT64 prefix discovery and wait for it to complete.
Luke Huang5bd827c2019-03-14 16:10:04 +08003185 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08003186 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08003187
Luke Huangf8215372019-11-22 11:53:41 +08003188 // clang-format off
nuccachena26cc2a2018-07-17 18:07:23 +08003189 static const struct TestConfig {
3190 bool hasSynthesizedPtrRecord;
3191 int flag;
3192 std::string addr;
3193 std::string host;
3194
3195 std::string asParameters() const {
3196 return StringPrintf("hasSynthesizedPtrRecord=%d, flag=%d, addr=%s, host=%s",
3197 hasSynthesizedPtrRecord, flag, addr.c_str(), host.c_str());
3198 }
3199 } testConfigs[]{
3200 {false, NI_NAMEREQD, "64:ff9b::102:304", "v4only.example.com"},
3201 {false, NI_NUMERICHOST, "64:ff9b::102:304", "64:ff9b::102:304"},
3202 {false, 0, "64:ff9b::102:304", "v4only.example.com"},
3203 {true, NI_NAMEREQD, "64:ff9b::506:708", "v6synthesis.example.com"},
3204 {true, NI_NUMERICHOST, "64:ff9b::506:708", "64:ff9b::506:708"},
3205 {true, 0, "64:ff9b::506:708", "v6synthesis.example.com"}
3206 };
Luke Huangf8215372019-11-22 11:53:41 +08003207 // clang-format on
nuccachena26cc2a2018-07-17 18:07:23 +08003208
3209 // hasSynthesizedPtrRecord = false
3210 // Synthesized PTR record doesn't exist on DNS server
3211 // Reverse IPv6 DNS64 query while DNS server doesn't have an answer for synthesized address.
3212 // After querying synthesized address failed, expect that prefix is removed from IPv6
3213 // synthesized address and do reverse IPv4 query instead.
3214 //
3215 // hasSynthesizedPtrRecord = true
3216 // Synthesized PTR record exists on DNS server
3217 // Reverse IPv6 DNS64 query while DNS server has an answer for synthesized address.
3218 // Expect to just pass through synthesized address for DNS queries.
3219 for (const auto& config : testConfigs) {
3220 SCOPED_TRACE(config.asParameters());
3221
3222 char host[NI_MAXHOST];
3223 struct sockaddr_in6 sin6;
3224 memset(&sin6, 0, sizeof(sin6));
3225 sin6.sin6_family = AF_INET6;
3226 inet_pton(AF_INET6, config.addr.c_str(), &sin6.sin6_addr);
Luke Huangf8215372019-11-22 11:53:41 +08003227 int rv = getnameinfo((const struct sockaddr*)&sin6, sizeof(sin6), host, sizeof(host),
nuccachena26cc2a2018-07-17 18:07:23 +08003228 nullptr, 0, config.flag);
3229 ASSERT_EQ(0, rv);
3230 if (config.flag == NI_NAMEREQD) {
3231 if (config.hasSynthesizedPtrRecord) {
3232 EXPECT_LE(1U, GetNumQueries(dns, ptr_addr_v6_synthesis));
3233 } else {
3234 EXPECT_LE(1U, GetNumQueries(dns, ptr_addr_v6_nomapping)); // PTR record not exist.
3235 EXPECT_LE(1U, GetNumQueries(dns, ptr_addr_v4)); // PTR record exist.
3236 }
3237 }
3238 std::string result_str = host;
3239 EXPECT_EQ(result_str, config.host);
3240 dns.clearQueries();
3241 }
3242}
3243
3244TEST_F(ResolverTest, GetNameInfo_ReverseDns64QueryFromHostFile) {
3245 constexpr char dns64_name[] = "ipv4only.arpa.";
3246 constexpr char host_name[] = "localhost";
3247 // The address is synthesized by prefix64:localhost.
3248 constexpr char host_addr[] = "64:ff9b::7f00:1";
nuccachena26cc2a2018-07-17 18:07:23 +08003249 constexpr char listen_addr[] = "::1";
Xiao Ma09b71022018-12-11 17:56:32 +09003250
3251 test::DNSResponder dns(listen_addr);
3252 StartDns(dns, {{dns64_name, ns_type::ns_t_aaaa, "64:ff9b::192.0.0.170"}});
nuccachena26cc2a2018-07-17 18:07:23 +08003253 const std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09003254 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
nuccachena26cc2a2018-07-17 18:07:23 +08003255
Lorenzo Colittid39345c2019-02-18 10:59:29 +09003256 // Start NAT64 prefix discovery and wait for it to complete.
Luke Huang5bd827c2019-03-14 16:10:04 +08003257 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08003258 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08003259
3260 // Using synthesized "localhost" address to be a trick for resolving host name
3261 // from host file /etc/hosts and "localhost" is the only name in /etc/hosts. Note that this is
3262 // not realistic: the code never synthesizes AAAA records for addresses in 127.0.0.0/8.
3263 char host[NI_MAXHOST];
Xiao Ma09b71022018-12-11 17:56:32 +09003264 struct sockaddr_in6 sin6 = {.sin6_family = AF_INET6};
nuccachena26cc2a2018-07-17 18:07:23 +08003265 inet_pton(AF_INET6, host_addr, &sin6.sin6_addr);
Luke Huangf8215372019-11-22 11:53:41 +08003266 int rv = getnameinfo((const struct sockaddr*)&sin6, sizeof(sin6), host, sizeof(host), nullptr,
nuccachena26cc2a2018-07-17 18:07:23 +08003267 0, NI_NAMEREQD);
3268 ASSERT_EQ(0, rv);
3269 // Expect no DNS queries; localhost is resolved via /etc/hosts.
3270 EXPECT_EQ(0U, GetNumQueries(dns, host_name));
3271
3272 std::string result_str = host;
3273 EXPECT_EQ(result_str, host_name);
3274}
3275
Hungming Chen9e6185a2019-06-04 16:09:19 +08003276TEST_F(ResolverTest, GetNameInfo_cnamesClasslessReverseDelegation) {
3277 // IPv4 addresses in the subnet with notation '/' or '-'.
3278 constexpr char addr_slash[] = "192.0.2.1";
3279 constexpr char addr_hyphen[] = "192.0.3.1";
3280
3281 // Used to verify DNS reverse query for classless reverse lookup zone. See detail in RFC 2317
3282 // section 4.
3283 const static std::vector<DnsRecord> records = {
3284 // The records for reverse querying "192.0.2.1" in the subnet with notation '/'.
3285 {"1.2.0.192.in-addr.arpa.", ns_type::ns_t_cname, "1.0/25.2.0.192.in-addr.arpa."},
3286 {"1.0/25.2.0.192.in-addr.arpa.", ns_type::ns_t_ptr, kHelloExampleCom},
3287
3288 // The records for reverse querying "192.0.3.1" in the subnet with notation '-'.
3289 {"1.3.0.192.in-addr.arpa.", ns_type::ns_t_cname, "1.0-127.3.0.192.in-addr.arpa."},
3290 {"1.0-127.3.0.192.in-addr.arpa.", ns_type::ns_t_ptr, kHelloExampleCom},
3291 };
3292
3293 test::DNSResponder dns;
3294 StartDns(dns, records);
3295 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
3296
3297 for (const auto& address : {addr_slash, addr_hyphen}) {
3298 SCOPED_TRACE(address);
3299
3300 char host[NI_MAXHOST];
3301 sockaddr_in sin = {.sin_family = AF_INET};
3302 ASSERT_TRUE(inet_pton(AF_INET, address, &sin.sin_addr));
3303 int rv = getnameinfo((const sockaddr*)&sin, sizeof(sin), host, sizeof(host), nullptr, 0,
3304 NI_NAMEREQD);
3305 ASSERT_EQ(0, rv);
3306 EXPECT_STREQ("hello.example.com", host);
3307 }
3308}
3309
nuccachena26cc2a2018-07-17 18:07:23 +08003310TEST_F(ResolverTest, GetHostByName2_Dns64Synthesize) {
Xiao Ma09b71022018-12-11 17:56:32 +09003311 constexpr char listen_addr[] = "::1";
nuccachena26cc2a2018-07-17 18:07:23 +08003312 constexpr char dns64_name[] = "ipv4only.arpa.";
3313 constexpr char host_name[] = "ipv4only.example.com.";
Xiao Ma09b71022018-12-11 17:56:32 +09003314 const std::vector<DnsRecord> records = {
3315 {dns64_name, ns_type::ns_t_aaaa, "64:ff9b::192.0.0.170"},
3316 {host_name, ns_type::ns_t_a, "1.2.3.4"},
3317 };
nuccachena26cc2a2018-07-17 18:07:23 +08003318
Xiao Ma09b71022018-12-11 17:56:32 +09003319 test::DNSResponder dns(listen_addr);
3320 StartDns(dns, records);
nuccachena26cc2a2018-07-17 18:07:23 +08003321 const std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09003322 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
nuccachena26cc2a2018-07-17 18:07:23 +08003323
Lorenzo Colittid39345c2019-02-18 10:59:29 +09003324 // Start NAT64 prefix discovery and wait for it to complete.
Luke Huang5bd827c2019-03-14 16:10:04 +08003325 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08003326 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08003327
3328 // Query an IPv4-only hostname. Expect that gets a synthesized address.
3329 struct hostent* result = gethostbyname2("ipv4only", AF_INET6);
3330 ASSERT_TRUE(result != nullptr);
3331 EXPECT_LE(1U, GetNumQueries(dns, host_name));
3332 std::string result_str = ToString(result);
3333 EXPECT_EQ(result_str, "64:ff9b::102:304");
3334}
nuccachena26cc2a2018-07-17 18:07:23 +08003335
3336TEST_F(ResolverTest, GetHostByName2_DnsQueryWithHavingNat64Prefix) {
3337 constexpr char dns64_name[] = "ipv4only.arpa.";
3338 constexpr char host_name[] = "v4v6.example.com.";
nuccachena26cc2a2018-07-17 18:07:23 +08003339 constexpr char listen_addr[] = "::1";
Xiao Ma09b71022018-12-11 17:56:32 +09003340 const std::vector<DnsRecord> records = {
3341 {dns64_name, ns_type::ns_t_aaaa, "64:ff9b::192.0.0.170"},
3342 {host_name, ns_type::ns_t_a, "1.2.3.4"},
3343 {host_name, ns_type::ns_t_aaaa, "2001:db8::1.2.3.4"},
3344 };
3345
3346 test::DNSResponder dns(listen_addr);
3347 StartDns(dns, records);
nuccachena26cc2a2018-07-17 18:07:23 +08003348 const std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09003349 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
nuccachena26cc2a2018-07-17 18:07:23 +08003350
Lorenzo Colittid39345c2019-02-18 10:59:29 +09003351 // Start NAT64 prefix discovery and wait for it to complete.
Luke Huang5bd827c2019-03-14 16:10:04 +08003352 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08003353 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08003354
3355 // IPv4 DNS query. Prefix should have no effect on it.
3356 struct hostent* result = gethostbyname2("v4v6", AF_INET);
3357 ASSERT_TRUE(result != nullptr);
3358 EXPECT_LE(1U, GetNumQueries(dns, host_name));
3359 std::string result_str = ToString(result);
3360 EXPECT_EQ(result_str, "1.2.3.4");
3361 dns.clearQueries();
3362
3363 // IPv6 DNS query. Prefix should have no effect on it.
3364 result = gethostbyname2("v4v6", AF_INET6);
3365 ASSERT_TRUE(result != nullptr);
3366 EXPECT_LE(1U, GetNumQueries(dns, host_name));
3367 result_str = ToString(result);
3368 EXPECT_EQ(result_str, "2001:db8::102:304");
3369}
3370
3371TEST_F(ResolverTest, GetHostByName2_Dns64QuerySpecialUseIPv4Addresses) {
3372 constexpr char THIS_NETWORK[] = "this_network";
3373 constexpr char LOOPBACK[] = "loopback";
3374 constexpr char LINK_LOCAL[] = "link_local";
3375 constexpr char MULTICAST[] = "multicast";
3376 constexpr char LIMITED_BROADCAST[] = "limited_broadcast";
3377
3378 constexpr char ADDR_THIS_NETWORK[] = "0.0.0.1";
3379 constexpr char ADDR_LOOPBACK[] = "127.0.0.1";
3380 constexpr char ADDR_LINK_LOCAL[] = "169.254.0.1";
3381 constexpr char ADDR_MULTICAST[] = "224.0.0.1";
3382 constexpr char ADDR_LIMITED_BROADCAST[] = "255.255.255.255";
3383
3384 constexpr char listen_addr[] = "::1";
nuccachena26cc2a2018-07-17 18:07:23 +08003385 constexpr char dns64_name[] = "ipv4only.arpa.";
3386
Xiao Ma09b71022018-12-11 17:56:32 +09003387 test::DNSResponder dns(listen_addr);
3388 StartDns(dns, {{dns64_name, ns_type::ns_t_aaaa, "64:ff9b::"}});
nuccachena26cc2a2018-07-17 18:07:23 +08003389 const std::vector<std::string> servers = {listen_addr};
Xiao Ma09b71022018-12-11 17:56:32 +09003390 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
nuccachena26cc2a2018-07-17 18:07:23 +08003391
Lorenzo Colittid39345c2019-02-18 10:59:29 +09003392 // Start NAT64 prefix discovery and wait for it to complete.
Luke Huang5bd827c2019-03-14 16:10:04 +08003393 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08003394 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
nuccachena26cc2a2018-07-17 18:07:23 +08003395
Luke Huangf8215372019-11-22 11:53:41 +08003396 // clang-format off
nuccachena26cc2a2018-07-17 18:07:23 +08003397 static const struct TestConfig {
3398 std::string name;
3399 std::string addr;
3400
3401 std::string asHostName() const {
Luke Huangf8215372019-11-22 11:53:41 +08003402 return StringPrintf("%s.example.com.", name.c_str());
nuccachena26cc2a2018-07-17 18:07:23 +08003403 }
3404 } testConfigs[]{
3405 {THIS_NETWORK, ADDR_THIS_NETWORK},
3406 {LOOPBACK, ADDR_LOOPBACK},
3407 {LINK_LOCAL, ADDR_LINK_LOCAL},
3408 {MULTICAST, ADDR_MULTICAST},
3409 {LIMITED_BROADCAST, ADDR_LIMITED_BROADCAST}
3410 };
Luke Huangf8215372019-11-22 11:53:41 +08003411 // clang-format on
nuccachena26cc2a2018-07-17 18:07:23 +08003412
3413 for (const auto& config : testConfigs) {
3414 const std::string testHostName = config.asHostName();
3415 SCOPED_TRACE(testHostName);
3416
3417 const char* host_name = testHostName.c_str();
3418 dns.addMapping(host_name, ns_type::ns_t_a, config.addr.c_str());
3419
3420 struct hostent* result = gethostbyname2(config.name.c_str(), AF_INET6);
3421 EXPECT_LE(1U, GetNumQueries(dns, host_name));
3422
3423 // In AF_INET6 case, don't synthesize special use IPv4 address.
3424 // Expect to have no answer
3425 EXPECT_EQ(nullptr, result);
3426
3427 dns.clearQueries();
3428 }
Bernie Innocenti2fef2b82018-12-20 15:56:40 +09003429}
Mike Yuf14e1a92019-05-10 13:54:58 +08003430
3431TEST_F(ResolverTest, PrefixDiscoveryBypassTls) {
3432 constexpr char listen_addr[] = "::1";
3433 constexpr char cleartext_port[] = "53";
3434 constexpr char tls_port[] = "853";
3435 constexpr char dns64_name[] = "ipv4only.arpa.";
3436 const std::vector<std::string> servers = {listen_addr};
3437
3438 test::DNSResponder dns(listen_addr);
3439 StartDns(dns, {{dns64_name, ns_type::ns_t_aaaa, "64:ff9b::192.0.0.170"}});
3440 test::DnsTlsFrontend tls(listen_addr, tls_port, listen_addr, cleartext_port);
3441 ASSERT_TRUE(tls.startServer());
3442
3443 // Setup OPPORTUNISTIC mode and wait for the validation complete.
waynema0e73c2e2019-07-31 15:04:08 +08003444 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, kDefaultSearchDomains, kDefaultParams, ""));
Mike Yu724f77d2019-08-16 11:14:50 +08003445 EXPECT_TRUE(WaitForPrivateDnsValidation(tls.listen_address(), true));
Mike Yuf14e1a92019-05-10 13:54:58 +08003446 tls.clearQueries();
3447
3448 // Start NAT64 prefix discovery and wait for it complete.
3449 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08003450 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
Mike Yuf14e1a92019-05-10 13:54:58 +08003451
3452 // Verify it bypassed TLS even though there's a TLS server available.
3453 EXPECT_EQ(0, tls.queries());
3454 EXPECT_EQ(1U, GetNumQueries(dns, dns64_name));
3455
3456 // Restart the testing network to reset the cache.
3457 mDnsClient.TearDown();
3458 mDnsClient.SetUp();
3459 dns.clearQueries();
3460
3461 // Setup STRICT mode and wait for the validation complete.
waynema0e73c2e2019-07-31 15:04:08 +08003462 ASSERT_TRUE(mDnsClient.SetResolversWithTls(servers, kDefaultSearchDomains, kDefaultParams,
3463 kDefaultPrivateDnsHostName));
Mike Yu724f77d2019-08-16 11:14:50 +08003464 EXPECT_TRUE(WaitForPrivateDnsValidation(tls.listen_address(), true));
Mike Yuf14e1a92019-05-10 13:54:58 +08003465 tls.clearQueries();
3466
3467 // Start NAT64 prefix discovery and wait for it to complete.
3468 EXPECT_TRUE(mDnsClient.resolvService()->startPrefix64Discovery(TEST_NETID).isOk());
Hungming Chene8f970c2019-04-10 17:34:06 +08003469 EXPECT_TRUE(WaitForNat64Prefix(EXPECT_FOUND));
Mike Yuf14e1a92019-05-10 13:54:58 +08003470
3471 // Verify it bypassed TLS despite STRICT mode.
3472 EXPECT_EQ(0, tls.queries());
3473 EXPECT_EQ(1U, GetNumQueries(dns, dns64_name));
3474}
Luke Huang9807e6b2019-05-20 16:17:12 +08003475
3476namespace {
3477
Luke Huang0d592bc2019-05-25 18:24:03 +08003478class ScopedSetNetworkForProcess {
3479 public:
3480 explicit ScopedSetNetworkForProcess(unsigned netId) {
3481 mStoredNetId = getNetworkForProcess();
3482 if (netId == mStoredNetId) return;
3483 EXPECT_EQ(0, setNetworkForProcess(netId));
3484 }
3485 ~ScopedSetNetworkForProcess() { EXPECT_EQ(0, setNetworkForProcess(mStoredNetId)); }
3486
3487 private:
3488 unsigned mStoredNetId;
3489};
3490
3491class ScopedSetNetworkForResolv {
3492 public:
3493 explicit ScopedSetNetworkForResolv(unsigned netId) { EXPECT_EQ(0, setNetworkForResolv(netId)); }
3494 ~ScopedSetNetworkForResolv() { EXPECT_EQ(0, setNetworkForResolv(NETID_UNSET)); }
3495};
3496
Luke Huang9807e6b2019-05-20 16:17:12 +08003497void sendCommand(int fd, const std::string& cmd) {
3498 ssize_t rc = TEMP_FAILURE_RETRY(write(fd, cmd.c_str(), cmd.size() + 1));
3499 EXPECT_EQ(rc, static_cast<ssize_t>(cmd.size() + 1));
3500}
3501
3502int32_t readBE32(int fd) {
3503 int32_t tmp;
3504 int n = TEMP_FAILURE_RETRY(read(fd, &tmp, sizeof(tmp)));
3505 EXPECT_TRUE(n > 0);
3506 return ntohl(tmp);
3507}
3508
Luke Huang0d592bc2019-05-25 18:24:03 +08003509int readResponseCode(int fd) {
Luke Huang9807e6b2019-05-20 16:17:12 +08003510 char buf[4];
3511 int n = TEMP_FAILURE_RETRY(read(fd, &buf, sizeof(buf)));
3512 EXPECT_TRUE(n > 0);
3513 // The format of response code is that 4 bytes for the code & null.
3514 buf[3] = '\0';
3515 int result;
3516 EXPECT_TRUE(ParseInt(buf, &result));
3517 return result;
3518}
3519
Luke Huang0d592bc2019-05-25 18:24:03 +08003520bool checkAndClearUseLocalNameserversFlag(unsigned* netid) {
3521 if (netid == nullptr || ((*netid) & NETID_USE_LOCAL_NAMESERVERS) == 0) {
3522 return false;
3523 }
3524 *netid = (*netid) & ~NETID_USE_LOCAL_NAMESERVERS;
3525 return true;
3526}
3527
Luke Huangf8215372019-11-22 11:53:41 +08003528aidl::android::net::UidRangeParcel makeUidRangeParcel(int start, int stop) {
3529 aidl::android::net::UidRangeParcel res;
Luke Huang0d592bc2019-05-25 18:24:03 +08003530 res.start = start;
3531 res.stop = stop;
3532
3533 return res;
3534}
3535
3536void expectNetIdWithLocalNameserversFlag(unsigned netId) {
3537 unsigned dnsNetId = 0;
3538 EXPECT_EQ(0, getNetworkForDns(&dnsNetId));
3539 EXPECT_TRUE(checkAndClearUseLocalNameserversFlag(&dnsNetId));
3540 EXPECT_EQ(netId, static_cast<unsigned>(dnsNetId));
3541}
3542
3543void expectDnsNetIdEquals(unsigned netId) {
3544 unsigned dnsNetId = 0;
3545 EXPECT_EQ(0, getNetworkForDns(&dnsNetId));
3546 EXPECT_EQ(netId, static_cast<unsigned>(dnsNetId));
3547}
3548
Lorenzo Colittieb9aeec2019-06-26 19:53:55 +09003549void expectDnsNetIdIsDefaultNetwork(INetd* netdService) {
Luke Huang0d592bc2019-05-25 18:24:03 +08003550 int currentNetid;
3551 EXPECT_TRUE(netdService->networkGetDefault(&currentNetid).isOk());
3552 expectDnsNetIdEquals(currentNetid);
3553}
3554
Lorenzo Colittieb9aeec2019-06-26 19:53:55 +09003555void expectDnsNetIdWithVpn(INetd* netdService, unsigned vpnNetId, unsigned expectedNetId) {
Luke Huang0d592bc2019-05-25 18:24:03 +08003556 EXPECT_TRUE(netdService->networkCreateVpn(vpnNetId, false /* secure */).isOk());
3557 uid_t uid = getuid();
3558 // Add uid to VPN
3559 EXPECT_TRUE(netdService->networkAddUidRanges(vpnNetId, {makeUidRangeParcel(uid, uid)}).isOk());
3560 expectDnsNetIdEquals(expectedNetId);
3561 EXPECT_TRUE(netdService->networkDestroy(vpnNetId).isOk());
3562}
3563
Luke Huang9807e6b2019-05-20 16:17:12 +08003564} // namespace
3565
3566TEST_F(ResolverTest, getDnsNetId) {
3567 // We've called setNetworkForProcess in SetupOemNetwork, so reset to default first.
3568 setNetworkForProcess(NETID_UNSET);
Luke Huang0d592bc2019-05-25 18:24:03 +08003569
3570 expectDnsNetIdIsDefaultNetwork(mDnsClient.netdService());
3571 expectDnsNetIdWithVpn(mDnsClient.netdService(), TEST_VPN_NETID, TEST_VPN_NETID);
Luke Huang9807e6b2019-05-20 16:17:12 +08003572
3573 // Test with setNetworkForProcess
Luke Huang0d592bc2019-05-25 18:24:03 +08003574 {
3575 ScopedSetNetworkForProcess scopedSetNetworkForProcess(TEST_NETID);
3576 expectDnsNetIdEquals(TEST_NETID);
3577 }
3578
3579 // Test with setNetworkForProcess with NETID_USE_LOCAL_NAMESERVERS
3580 {
3581 ScopedSetNetworkForProcess scopedSetNetworkForProcess(TEST_NETID |
3582 NETID_USE_LOCAL_NAMESERVERS);
3583 expectNetIdWithLocalNameserversFlag(TEST_NETID);
3584 }
Luke Huang9807e6b2019-05-20 16:17:12 +08003585
3586 // Test with setNetworkForResolv
Luke Huang0d592bc2019-05-25 18:24:03 +08003587 {
3588 ScopedSetNetworkForResolv scopedSetNetworkForResolv(TEST_NETID);
3589 expectDnsNetIdEquals(TEST_NETID);
3590 }
3591
3592 // Test with setNetworkForResolv with NETID_USE_LOCAL_NAMESERVERS
3593 {
3594 ScopedSetNetworkForResolv scopedSetNetworkForResolv(TEST_NETID |
3595 NETID_USE_LOCAL_NAMESERVERS);
3596 expectNetIdWithLocalNameserversFlag(TEST_NETID);
3597 }
3598
3599 // Test with setNetworkForResolv under bypassable vpn
3600 {
3601 ScopedSetNetworkForResolv scopedSetNetworkForResolv(TEST_NETID);
3602 expectDnsNetIdWithVpn(mDnsClient.netdService(), TEST_VPN_NETID, TEST_NETID);
3603 }
Luke Huang9807e6b2019-05-20 16:17:12 +08003604
3605 // Create socket connected to DnsProxyListener
3606 int fd = dns_open_proxy();
3607 EXPECT_TRUE(fd > 0);
3608 unique_fd ufd(fd);
3609
3610 // Test command with wrong netId
3611 sendCommand(fd, "getdnsnetid abc");
Luke Huang0d592bc2019-05-25 18:24:03 +08003612 EXPECT_EQ(ResponseCode::DnsProxyQueryResult, readResponseCode(fd));
Luke Huang9807e6b2019-05-20 16:17:12 +08003613 EXPECT_EQ(-EINVAL, readBE32(fd));
3614
3615 // Test unsupported command
3616 sendCommand(fd, "getdnsnetidNotSupported");
3617 // Keep in sync with FrameworkListener.cpp (500, "Command not recognized")
Luke Huang0d592bc2019-05-25 18:24:03 +08003618 EXPECT_EQ(500, readResponseCode(fd));
Luke Huang9807e6b2019-05-20 16:17:12 +08003619}
Sehee Park2c118782019-05-07 13:02:45 +09003620
3621TEST_F(ResolverTest, BlockDnsQueryWithUidRule) {
Lorenzo Colittieb9aeec2019-06-26 19:53:55 +09003622 // This test relies on blocking traffic on loopback, which xt_qtaguid does not do.
3623 // See aosp/358413 and b/34444781 for why.
3624 SKIP_IF_BPF_NOT_SUPPORTED;
3625
Sehee Park2c118782019-05-07 13:02:45 +09003626 constexpr char listen_addr1[] = "127.0.0.4";
3627 constexpr char listen_addr2[] = "::1";
3628 constexpr char host_name[] = "howdy.example.com.";
3629 const std::vector<DnsRecord> records = {
3630 {host_name, ns_type::ns_t_a, "1.2.3.4"},
3631 {host_name, ns_type::ns_t_aaaa, "::1.2.3.4"},
3632 };
Lorenzo Colittieb9aeec2019-06-26 19:53:55 +09003633 INetd* netdService = mDnsClient.netdService();
Sehee Park2c118782019-05-07 13:02:45 +09003634
3635 test::DNSResponder dns1(listen_addr1);
3636 test::DNSResponder dns2(listen_addr2);
3637 StartDns(dns1, records);
3638 StartDns(dns2, records);
3639
3640 std::vector<std::string> servers = {listen_addr1, listen_addr2};
3641 ASSERT_TRUE(mDnsClient.SetResolversForNetwork(servers));
3642 dns1.clearQueries();
3643 dns2.clearQueries();
3644
Lorenzo Colittieb9aeec2019-06-26 19:53:55 +09003645 // Add drop rule for TEST_UID. Also enable the standby chain because it might not be enabled.
3646 // Unfortunately we cannot use FIREWALL_CHAIN_NONE, or custom iptables rules, for this purpose
3647 // because netd calls fchown() on the DNS query sockets, and "iptables -m owner" matches the
3648 // UID of the socket creator, not the UID set by fchown().
3649 //
3650 // TODO: migrate FIREWALL_CHAIN_NONE to eBPF as well.
3651 EXPECT_TRUE(netdService->firewallEnableChildChain(INetd::FIREWALL_CHAIN_STANDBY, true).isOk());
3652 EXPECT_TRUE(netdService
Sehee Park2c118782019-05-07 13:02:45 +09003653 ->firewallSetUidRule(INetd::FIREWALL_CHAIN_STANDBY, TEST_UID,
3654 INetd::FIREWALL_RULE_DENY)
3655 .isOk());
3656
3657 // Save uid
3658 int suid = getuid();
3659
3660 // Switch to TEST_UID
3661 EXPECT_TRUE(seteuid(TEST_UID) == 0);
3662
3663 // Dns Query
3664 int fd1 = resNetworkQuery(TEST_NETID, host_name, ns_c_in, ns_t_a, 0);
3665 int fd2 = resNetworkQuery(TEST_NETID, host_name, ns_c_in, ns_t_aaaa, 0);
3666 EXPECT_TRUE(fd1 != -1);
3667 EXPECT_TRUE(fd2 != -1);
3668
3669 uint8_t buf[MAXPACKET] = {};
3670 int rcode;
3671 int res = getAsyncResponse(fd2, &rcode, buf, MAXPACKET);
3672 EXPECT_EQ(-ECONNREFUSED, res);
3673
3674 memset(buf, 0, MAXPACKET);
3675 res = getAsyncResponse(fd1, &rcode, buf, MAXPACKET);
3676 EXPECT_EQ(-ECONNREFUSED, res);
3677
3678 // Restore uid
3679 EXPECT_TRUE(seteuid(suid) == 0);
3680
Lorenzo Colittieb9aeec2019-06-26 19:53:55 +09003681 // Remove drop rule for TEST_UID, and disable the standby chain.
3682 EXPECT_TRUE(netdService
Sehee Park2c118782019-05-07 13:02:45 +09003683 ->firewallSetUidRule(INetd::FIREWALL_CHAIN_STANDBY, TEST_UID,
3684 INetd::FIREWALL_RULE_ALLOW)
3685 .isOk());
Lorenzo Colittieb9aeec2019-06-26 19:53:55 +09003686 EXPECT_TRUE(netdService->firewallEnableChildChain(INetd::FIREWALL_CHAIN_STANDBY, false).isOk());
Sehee Park2c118782019-05-07 13:02:45 +09003687}
Mike Yua772c202019-09-23 17:47:21 +08003688
Mike Yu40e67072019-10-09 21:14:09 +08003689namespace {
3690
3691const std::string kDotConnectTimeoutMsFlag(
3692 "persist.device_config.netd_native.dot_connect_timeout_ms");
3693
3694class ScopedSystemProperties {
3695 public:
3696 explicit ScopedSystemProperties(const std::string& key, const std::string& value)
3697 : mStoredKey(key) {
3698 mStoredValue = android::base::GetProperty(key, "");
3699 android::base::SetProperty(key, value);
3700 }
3701 ~ScopedSystemProperties() { android::base::SetProperty(mStoredKey, mStoredValue); }
3702
3703 private:
3704 std::string mStoredKey;
3705 std::string mStoredValue;
3706};
3707
3708} // namespace
3709
Mike Yua772c202019-09-23 17:47:21 +08003710TEST_F(ResolverTest, ConnectTlsServerTimeout) {
Mike Yu40e67072019-10-09 21:14:09 +08003711 constexpr int expectedTimeout = 1000;
3712 constexpr char hostname1[] = "query1.example.com.";
3713 constexpr char hostname2[] = "query2.example.com.";
Mike Yua772c202019-09-23 17:47:21 +08003714 const std::vector<DnsRecord> records = {
Mike Yu40e67072019-10-09 21:14:09 +08003715 {hostname1, ns_type::ns_t_a, "1.2.3.4"},
3716 {hostname2, ns_type::ns_t_a, "1.2.3.5"},
Mike Yua772c202019-09-23 17:47:21 +08003717 };
3718
3719 test::DNSResponder dns;
3720 StartDns(dns, records);
Mike Yu40e67072019-10-09 21:14:09 +08003721 test::DnsTlsFrontend tls;
Mike Yua772c202019-09-23 17:47:21 +08003722 ASSERT_TRUE(tls.startServer());
3723
Mike Yu40e67072019-10-09 21:14:09 +08003724 // The resolver will adjust the timeout value to 1000ms since the value is too small.
3725 ScopedSystemProperties scopedSystemProperties(kDotConnectTimeoutMsFlag, "100");
Mike Yua772c202019-09-23 17:47:21 +08003726
Mike Yu40e67072019-10-09 21:14:09 +08003727 // Set up resolver to opportunistic mode with the default configuration.
Mike Yu8ac63402019-12-02 15:28:38 +08003728 const ResolverParamsParcel parcel = DnsResponderClient::GetDefaultResolverParamsParcel();
Mike Yu40e67072019-10-09 21:14:09 +08003729 ASSERT_TRUE(mDnsClient.SetResolversFromParcel(parcel));
Mike Yua772c202019-09-23 17:47:21 +08003730 EXPECT_TRUE(WaitForPrivateDnsValidation(tls.listen_address(), true));
3731 dns.clearQueries();
3732 tls.clearQueries();
3733
3734 // The server becomes unresponsive to the handshake request.
3735 tls.setHangOnHandshakeForTesting(true);
3736
3737 // Expect the things happening in getaddrinfo():
3738 // 1. Connect to the private DNS server.
3739 // 2. SSL handshake times out.
3740 // 3. Fallback to UDP transport, and then get the answer.
Mike Yu40e67072019-10-09 21:14:09 +08003741 const addrinfo hints = {.ai_family = AF_INET, .ai_socktype = SOCK_DGRAM};
3742 auto [result, timeTakenMs] = safe_getaddrinfo_time_taken(hostname1, nullptr, hints);
Mike Yua772c202019-09-23 17:47:21 +08003743
Mike Yu40e67072019-10-09 21:14:09 +08003744 EXPECT_NE(nullptr, result);
Mike Yua772c202019-09-23 17:47:21 +08003745 EXPECT_EQ(0, tls.queries());
Mike Yu40e67072019-10-09 21:14:09 +08003746 EXPECT_EQ(1U, GetNumQueries(dns, hostname1));
3747 EXPECT_EQ(records.at(0).addr, ToString(result));
Mike Yua772c202019-09-23 17:47:21 +08003748
Mike Yu40e67072019-10-09 21:14:09 +08003749 // A loose upper bound is set by adding 2000ms buffer time. Theoretically, getaddrinfo()
3750 // should just take a bit more than expetTimeout milliseconds.
3751 EXPECT_GE(timeTakenMs, expectedTimeout);
3752 EXPECT_LE(timeTakenMs, expectedTimeout + 2000);
3753
3754 // Set the server to be responsive. Verify that the resolver will attempt to reconnect
3755 // to the server and then get the result within the timeout.
3756 tls.setHangOnHandshakeForTesting(false);
3757 std::tie(result, timeTakenMs) = safe_getaddrinfo_time_taken(hostname2, nullptr, hints);
3758
3759 EXPECT_NE(nullptr, result);
3760 EXPECT_EQ(1, tls.queries());
3761 EXPECT_EQ(1U, GetNumQueries(dns, hostname2));
3762 EXPECT_EQ(records.at(1).addr, ToString(result));
3763
3764 EXPECT_LE(timeTakenMs, expectedTimeout);
Mike Yua772c202019-09-23 17:47:21 +08003765}
Hungming Chenbb90ab32019-10-28 18:20:31 +08003766
Ken Chen766feae2019-10-30 15:13:44 +08003767TEST_F(ResolverTest, FlushNetworkCache) {
Luke Huang0b5a76c2019-11-23 03:00:00 +08003768 SKIP_IF_REMOTE_VERSION_LESS_THAN(mDnsClient.resolvService(), 4);
Ken Chen766feae2019-10-30 15:13:44 +08003769 test::DNSResponder dns;
3770 StartDns(dns, {{kHelloExampleCom, ns_type::ns_t_a, kHelloExampleComAddrV4}});
3771 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
3772
3773 const hostent* result = gethostbyname("hello");
3774 EXPECT_EQ(1U, GetNumQueriesForType(dns, ns_type::ns_t_a, kHelloExampleCom));
3775
3776 // get result from cache
3777 result = gethostbyname("hello");
3778 EXPECT_EQ(1U, GetNumQueriesForType(dns, ns_type::ns_t_a, kHelloExampleCom));
3779
3780 EXPECT_TRUE(mDnsClient.resolvService()->flushNetworkCache(TEST_NETID).isOk());
3781
3782 result = gethostbyname("hello");
3783 EXPECT_EQ(2U, GetNumQueriesForType(dns, ns_type::ns_t_a, kHelloExampleCom));
3784}
3785
3786TEST_F(ResolverTest, FlushNetworkCache_random) {
Luke Huang0b5a76c2019-11-23 03:00:00 +08003787 SKIP_IF_REMOTE_VERSION_LESS_THAN(mDnsClient.resolvService(), 4);
Ken Chen766feae2019-10-30 15:13:44 +08003788 constexpr int num_flush = 10;
3789 constexpr int num_queries = 20;
3790 test::DNSResponder dns;
3791 StartDns(dns, {{kHelloExampleCom, ns_type::ns_t_a, kHelloExampleComAddrV4}});
3792 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
3793 const addrinfo hints = {.ai_family = AF_INET};
3794
3795 std::thread t([this]() {
3796 for (int i = 0; i < num_flush; ++i) {
3797 unsigned delay = arc4random_uniform(10 * 1000); // 10ms
3798 usleep(delay);
3799 EXPECT_TRUE(mDnsClient.resolvService()->flushNetworkCache(TEST_NETID).isOk());
3800 }
3801 });
3802
3803 for (int i = 0; i < num_queries; ++i) {
3804 ScopedAddrinfo result = safe_getaddrinfo("hello", nullptr, &hints);
3805 EXPECT_TRUE(result != nullptr);
3806 EXPECT_EQ(kHelloExampleComAddrV4, ToString(result));
3807 }
3808 t.join();
3809}
3810
3811// flush cache while one query is wait-for-response, another is pending.
3812TEST_F(ResolverTest, FlushNetworkCache_concurrent) {
Luke Huang0b5a76c2019-11-23 03:00:00 +08003813 SKIP_IF_REMOTE_VERSION_LESS_THAN(mDnsClient.resolvService(), 4);
Ken Chen766feae2019-10-30 15:13:44 +08003814 const char* listen_addr1 = "127.0.0.9";
3815 const char* listen_addr2 = "127.0.0.10";
3816 test::DNSResponder dns1(listen_addr1);
3817 test::DNSResponder dns2(listen_addr2);
3818 StartDns(dns1, {{kHelloExampleCom, ns_type::ns_t_a, kHelloExampleComAddrV4}});
3819 StartDns(dns2, {{kHelloExampleCom, ns_type::ns_t_a, kHelloExampleComAddrV4}});
3820 addrinfo hints = {.ai_family = AF_INET};
3821
3822 // step 1: set server#1 into deferred responding mode
3823 dns1.setDeferredResp(true);
3824 std::thread t1([&listen_addr1, &hints, this]() {
3825 ASSERT_TRUE(mDnsClient.SetResolversForNetwork({listen_addr1}));
3826 // step 3: query
3827 ScopedAddrinfo result = safe_getaddrinfo("hello", nullptr, &hints);
3828 // step 9: check result
3829 EXPECT_TRUE(result != nullptr);
3830 EXPECT_EQ(kHelloExampleComAddrV4, ToString(result));
3831 });
3832
3833 // step 2: wait for the query to reach the server
3834 while (GetNumQueries(dns1, kHelloExampleCom) == 0) {
3835 usleep(1000); // 1ms
3836 }
3837
3838 std::thread t2([&listen_addr2, &hints, &dns2, this]() {
3839 ASSERT_TRUE(mDnsClient.SetResolversForNetwork({listen_addr2}));
3840 // step 5: query (should be blocked in resolver)
3841 ScopedAddrinfo result = safe_getaddrinfo("hello", nullptr, &hints);
3842 // step 7: check result
3843 EXPECT_TRUE(result != nullptr);
3844 EXPECT_EQ(kHelloExampleComAddrV4, ToString(result));
3845 EXPECT_EQ(1U, GetNumQueriesForType(dns2, ns_type::ns_t_a, kHelloExampleCom));
3846 });
3847
3848 // step 4: wait a bit for the 2nd query to enter pending state
3849 usleep(100 * 1000); // 100ms
3850 // step 6: flush cache (will unblock pending queries)
3851 EXPECT_TRUE(mDnsClient.resolvService()->flushNetworkCache(TEST_NETID).isOk());
3852 t2.join();
3853
3854 // step 8: resume server#1
3855 dns1.setDeferredResp(false);
3856 t1.join();
3857
3858 // step 10: verify if result is correctly cached
3859 dns2.clearQueries();
3860 ScopedAddrinfo result = safe_getaddrinfo("hello", nullptr, &hints);
3861 EXPECT_EQ(0U, GetNumQueries(dns2, kHelloExampleCom));
3862 EXPECT_EQ(kHelloExampleComAddrV4, ToString(result));
3863}
3864
waynema29253052019-08-20 11:26:08 +08003865// TODO: Perhaps to have a boundary conditions test for TCP and UDP.
3866TEST_F(ResolverTest, TcpQueryWithOversizePayload) {
3867 test::DNSResponder dns;
3868 StartDns(dns, {{kHelloExampleCom, ns_type::ns_t_a, kHelloExampleComAddrV4}});
3869 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
3870
3871 int fd = dns_open_proxy();
3872 ASSERT_TRUE(fd > 0);
3873
3874 // Sending DNS query over TCP once the packet sizes exceed 512 bytes.
3875 // The raw data is combined with Question section and Additional section
3876 // Question section : query "hello.example.com", type A, class IN
3877 // Additional section : type OPT (41), Option PADDING, Option Length 546
3878 // Padding option which allows DNS clients and servers to artificially
3879 // increase the size of a DNS message by a variable number of bytes.
3880 // See also RFC7830, section 3
3881 const std::string query =
3882 "+c0BAAABAAAAAAABBWhlbGxvB2V4YW1wbGUDY29tAAABAAEAACkgAAAAgAACJgAMAiIAAAAAAAAAAAAAAAAAA"
3883 "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA"
3884 "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA"
3885 "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA"
3886 "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA"
3887 "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA"
3888 "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA"
3889 "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA"
3890 "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA"
3891 "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAA=";
3892 const std::string cmd =
3893 "resnsend " + std::to_string(TEST_NETID) + " 0 " /* ResNsendFlags */ + query + '\0';
3894 ssize_t rc = TEMP_FAILURE_RETRY(write(fd, cmd.c_str(), cmd.size()));
3895 EXPECT_EQ(rc, static_cast<ssize_t>(cmd.size()));
3896 expectAnswersValid(fd, AF_INET, kHelloExampleComAddrV4);
3897 EXPECT_EQ(1U, GetNumQueriesForProtocol(dns, IPPROTO_TCP, kHelloExampleCom));
3898 EXPECT_EQ(0U, GetNumQueriesForProtocol(dns, IPPROTO_UDP, kHelloExampleCom));
3899}
3900
Ken Chen99344882020-01-01 14:59:38 +08003901TEST_F(ResolverTest, TruncatedRspMode) {
3902 constexpr char listen_addr[] = "127.0.0.4";
3903 constexpr char listen_addr2[] = "127.0.0.5";
3904 constexpr char listen_srv[] = "53";
3905
3906 test::DNSResponder dns(listen_addr, listen_srv, static_cast<ns_rcode>(-1));
3907 test::DNSResponder dns2(listen_addr2, listen_srv, static_cast<ns_rcode>(-1));
3908 // dns supports UDP only, dns2 support UDP and TCP
3909 dns.setResponseProbability(0.0, IPPROTO_TCP);
3910 StartDns(dns, kLargeCnameChainRecords);
3911 StartDns(dns2, kLargeCnameChainRecords);
3912
3913 const struct TestConfig {
3914 const std::optional<int32_t> tcMode;
3915 const bool ret;
3916 const unsigned numQueries;
3917 std::string asParameters() const {
3918 return StringPrintf("tcMode: %d, ret: %s, numQueries: %u", tcMode.value_or(-1),
3919 ret ? "true" : "false", numQueries);
3920 }
3921 } testConfigs[]{
3922 // clang-format off
3923 {std::nullopt, true, 0}, /* mode unset */
3924 {aidl::android::net::IDnsResolver::TC_MODE_DEFAULT, true, 0}, /* default mode */
3925 {aidl::android::net::IDnsResolver::TC_MODE_UDP_TCP, true, 1}, /* alternative mode */
3926 {-666, false, 1}, /* invalid input */
3927 // clang-format on
3928 };
3929
3930 for (const auto& config : testConfigs) {
3931 SCOPED_TRACE(config.asParameters());
3932
3933 ResolverParamsParcel parcel = DnsResponderClient::GetDefaultResolverParamsParcel();
3934 parcel.servers = {listen_addr, listen_addr2};
3935 if (config.tcMode) {
3936 parcel.experimentalOptions.tcMode = config.tcMode.value();
3937 }
3938 ASSERT_EQ(mDnsClient.resolvService()->setResolverConfiguration(parcel).isOk(), config.ret);
3939
3940 const addrinfo hints = {.ai_family = AF_INET, .ai_socktype = SOCK_DGRAM};
3941 ScopedAddrinfo result = safe_getaddrinfo("hello", nullptr, &hints);
3942 ASSERT_TRUE(result != nullptr);
3943 EXPECT_EQ(ToString(result), kHelloExampleComAddrV4);
3944 // TC_MODE_DEFAULT: resolver retries on TCP-only on each name server.
3945 // TC_MODE_UDP_TCP: resolver retries on TCP on the same server, falls back to UDP from next.
3946 ASSERT_EQ(GetNumQueriesForProtocol(dns, IPPROTO_UDP, kHelloExampleCom), 1U);
3947 ASSERT_EQ(GetNumQueriesForProtocol(dns, IPPROTO_TCP, kHelloExampleCom), 1U);
3948 ASSERT_EQ(GetNumQueriesForProtocol(dns2, IPPROTO_UDP, kHelloExampleCom), config.numQueries);
3949 ASSERT_EQ(GetNumQueriesForProtocol(dns2, IPPROTO_TCP, kHelloExampleCom), 1U);
3950
3951 dns.clearQueries();
3952 dns2.clearQueries();
3953 ASSERT_TRUE(mDnsClient.resolvService()->flushNetworkCache(TEST_NETID).isOk());
3954 }
3955}
3956
Hungming Chenbb90ab32019-10-28 18:20:31 +08003957// Parameterized tests.
3958// TODO: Merge the existing tests as parameterized test if possible.
3959// TODO: Perhaps move parameterized tests to an independent file.
3960enum class CallType { GETADDRINFO, GETHOSTBYNAME };
3961class ResolverParameterizedTest : public ResolverTest,
Hungming Chen63779052019-10-30 15:06:13 +08003962 public testing::WithParamInterface<CallType> {
3963 protected:
Hungming Chen22617fd2019-12-06 12:15:45 +08003964 void VerifyQueryHelloExampleComV4(const test::DNSResponder& dns, const CallType calltype,
3965 const bool verifyNumQueries = true) {
Hungming Chen63779052019-10-30 15:06:13 +08003966 if (calltype == CallType::GETADDRINFO) {
3967 const addrinfo hints = {.ai_family = AF_INET, .ai_socktype = SOCK_DGRAM};
3968 ScopedAddrinfo result = safe_getaddrinfo("hello", nullptr, &hints);
3969 ASSERT_TRUE(result != nullptr);
3970 EXPECT_EQ(kHelloExampleComAddrV4, ToString(result));
3971 } else if (calltype == CallType::GETHOSTBYNAME) {
3972 const hostent* result = gethostbyname("hello");
3973 ASSERT_TRUE(result != nullptr);
3974 ASSERT_EQ(4, result->h_length);
3975 ASSERT_FALSE(result->h_addr_list[0] == nullptr);
3976 EXPECT_EQ(kHelloExampleComAddrV4, ToString(result));
3977 EXPECT_TRUE(result->h_addr_list[1] == nullptr);
3978 } else {
3979 FAIL() << "Unsupported call type: " << static_cast<uint32_t>(calltype);
3980 }
Hungming Chen22617fd2019-12-06 12:15:45 +08003981 if (verifyNumQueries) EXPECT_EQ(1U, GetNumQueries(dns, kHelloExampleCom));
Hungming Chen63779052019-10-30 15:06:13 +08003982 }
3983};
Hungming Chenbb90ab32019-10-28 18:20:31 +08003984
Hungming Chen63779052019-10-30 15:06:13 +08003985INSTANTIATE_TEST_SUITE_P(QueryCallTest, ResolverParameterizedTest,
Hungming Chenbb90ab32019-10-28 18:20:31 +08003986 testing::Values(CallType::GETADDRINFO, CallType::GETHOSTBYNAME),
3987 [](const testing::TestParamInfo<CallType>& info) {
Hungming Chenbb90ab32019-10-28 18:20:31 +08003988 switch (info.param) {
3989 case CallType::GETADDRINFO:
Hungming Chen63779052019-10-30 15:06:13 +08003990 return "GetAddrInfo";
Hungming Chenbb90ab32019-10-28 18:20:31 +08003991 case CallType::GETHOSTBYNAME:
Hungming Chen63779052019-10-30 15:06:13 +08003992 return "GetHostByName";
Hungming Chenbb90ab32019-10-28 18:20:31 +08003993 default:
Hungming Chen63779052019-10-30 15:06:13 +08003994 return "InvalidParameter"; // Should not happen.
Hungming Chenbb90ab32019-10-28 18:20:31 +08003995 }
Hungming Chenbb90ab32019-10-28 18:20:31 +08003996 });
3997
3998TEST_P(ResolverParameterizedTest, AuthoritySectionAndAdditionalSection) {
3999 // DNS response may have more information in authority section and additional section.
4000 // Currently, getanswer() of packages/modules/DnsResolver/getaddrinfo.cpp doesn't parse the
4001 // content of authority section and additional section. Test these sections if they crash
4002 // the resolver, just in case. See also RFC 1035 section 4.1.
4003 const auto& calltype = GetParam();
4004 test::DNSHeader header(kDefaultDnsHeader);
4005
4006 // Create a DNS response which has a authoritative nameserver record in authority
4007 // section and its relevant address record in additional section.
4008 //
4009 // Question
4010 // hello.example.com. IN A
4011 // Answer
4012 // hello.example.com. IN A 1.2.3.4
4013 // Authority:
4014 // hello.example.com. IN NS ns1.example.com.
4015 // Additional:
4016 // ns1.example.com. IN A 5.6.7.8
4017 //
4018 // A response may have only question, answer, and authority section. Current testing response
4019 // should be able to cover this condition.
4020
4021 // Question section.
4022 test::DNSQuestion question{
4023 .qname = {.name = kHelloExampleCom},
4024 .qtype = ns_type::ns_t_a,
4025 .qclass = ns_c_in,
4026 };
4027 header.questions.push_back(std::move(question));
4028
4029 // Answer section.
4030 test::DNSRecord recordAnswer{
4031 .name = {.name = kHelloExampleCom},
4032 .rtype = ns_type::ns_t_a,
4033 .rclass = ns_c_in,
4034 .ttl = 0, // no cache
4035 };
Hungming Chen63779052019-10-30 15:06:13 +08004036 EXPECT_TRUE(test::DNSResponder::fillRdata(kHelloExampleComAddrV4, recordAnswer));
Hungming Chenbb90ab32019-10-28 18:20:31 +08004037 header.answers.push_back(std::move(recordAnswer));
4038
4039 // Authority section.
4040 test::DNSRecord recordAuthority{
4041 .name = {.name = kHelloExampleCom},
4042 .rtype = ns_type::ns_t_ns,
4043 .rclass = ns_c_in,
4044 .ttl = 0, // no cache
4045 };
4046 EXPECT_TRUE(test::DNSResponder::fillRdata("ns1.example.com.", recordAuthority));
4047 header.authorities.push_back(std::move(recordAuthority));
4048
4049 // Additional section.
4050 test::DNSRecord recordAdditional{
4051 .name = {.name = "ns1.example.com."},
4052 .rtype = ns_type::ns_t_a,
4053 .rclass = ns_c_in,
4054 .ttl = 0, // no cache
4055 };
4056 EXPECT_TRUE(test::DNSResponder::fillRdata("5.6.7.8", recordAdditional));
4057 header.additionals.push_back(std::move(recordAdditional));
4058
4059 // Start DNS server.
4060 test::DNSResponder dns(test::DNSResponder::MappingType::DNS_HEADER);
4061 dns.addMappingDnsHeader(kHelloExampleCom, ns_type::ns_t_a, header);
4062 ASSERT_TRUE(dns.startServer());
4063 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
4064 dns.clearQueries();
4065
4066 // Expect that get the address and the resolver doesn't crash.
Hungming Chen63779052019-10-30 15:06:13 +08004067 VerifyQueryHelloExampleComV4(dns, calltype);
4068}
4069
4070TEST_P(ResolverParameterizedTest, MessageCompression) {
4071 const auto& calltype = GetParam();
4072
4073 // The response with compressed domain name by a pointer. See RFC 1035 section 4.1.4.
4074 //
4075 // Ignoring the other fields of the message, the domain name of question section and answer
4076 // section are presented as:
4077 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4078 // 12 | 5 | h |
4079 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4080 // 14 | e | l |
4081 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4082 // 16 | l | o |
4083 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4084 // 18 | 7 | e |
4085 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4086 // 20 | x | a |
4087 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4088 // 22 | m | p |
4089 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4090 // 24 | l | e |
4091 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4092 // 26 | 3 | c |
4093 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4094 // 28 | o | m |
4095 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4096 // 30 | 0 | ... |
4097 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4098 //
4099 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4100 // 35 | 1 1| 12 |
4101 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4102 const std::vector<uint8_t> kResponseAPointer = {
4103 /* Header */
4104 0x00, 0x00, /* Transaction ID: 0x0000 */
4105 0x81, 0x80, /* Flags: qr rd ra */
4106 0x00, 0x01, /* Questions: 1 */
4107 0x00, 0x01, /* Answer RRs: 1 */
4108 0x00, 0x00, /* Authority RRs: 0 */
4109 0x00, 0x00, /* Additional RRs: 0 */
4110 /* Queries */
4111 0x05, 0x68, 0x65, 0x6c, 0x6c, 0x6f, 0x07, 0x65, 0x78, 0x61, 0x6d, 0x70, 0x6c, 0x65,
4112 0x03, 0x63, 0x6f, 0x6d, 0x00, /* Name: hello.example.com */
4113 0x00, 0x01, /* Type: A */
4114 0x00, 0x01, /* Class: IN */
4115 /* Answers */
4116 0xc0, 0x0c, /* Name: hello.example.com (a pointer) */
4117 0x00, 0x01, /* Type: A */
4118 0x00, 0x01, /* Class: IN */
4119 0x00, 0x00, 0x00, 0x00, /* Time to live: 0 */
4120 0x00, 0x04, /* Data length: 4 */
4121 0x01, 0x02, 0x03, 0x04 /* Address: 1.2.3.4 */
4122 };
4123
4124 // The response with compressed domain name by a sequence of labels ending with a pointer. See
4125 // RFC 1035 section 4.1.4.
4126 //
4127 // Ignoring the other fields of the message, the domain name of question section and answer
4128 // section are presented as:
4129 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4130 // 12 | 5 | h |
4131 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4132 // 14 | e | l |
4133 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4134 // 16 | l | o |
4135 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4136 // 18 | 7 | e |
4137 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4138 // 20 | x | a |
4139 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4140 // 22 | m | p |
4141 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4142 // 24 | l | e |
4143 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4144 // 26 | 3 | c |
4145 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4146 // 28 | o | m |
4147 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4148 // 30 | 0 | ... |
4149 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4150 //
4151 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4152 // 35 | 5 | h |
4153 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4154 // 37 | e | l |
4155 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4156 // 39 | l | o |
4157 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4158 // 41 | 1 1| 18 |
4159 // +--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+--+
4160 const std::vector<uint8_t> kResponseLabelEndingWithAPointer = {
4161 /* Header */
4162 0x00, 0x00, /* Transaction ID: 0x0000 */
4163 0x81, 0x80, /* Flags: qr rd ra */
4164 0x00, 0x01, /* Questions: 1 */
4165 0x00, 0x01, /* Answer RRs: 1 */
4166 0x00, 0x00, /* Authority RRs: 0 */
4167 0x00, 0x00, /* Additional RRs: 0 */
4168 /* Queries */
4169 0x05, 0x68, 0x65, 0x6c, 0x6c, 0x6f, 0x07, 0x65, 0x78, 0x61, 0x6d, 0x70, 0x6c, 0x65,
4170 0x03, 0x63, 0x6f, 0x6d, 0x00, /* Name: hello.example.com */
4171 0x00, 0x01, /* Type: A */
4172 0x00, 0x01, /* Class: IN */
4173 /* Answers */
4174 0x05, 0x68, 0x65, 0x6c, 0x6c, 0x6f, 0xc0,
4175 0x12, /* Name: hello.example.com (a label ending with a pointer) */
4176 0x00, 0x01, /* Type: A */
4177 0x00, 0x01, /* Class: IN */
4178 0x00, 0x00, 0x00, 0x00, /* Time to live: 0 */
4179 0x00, 0x04, /* Data length: 4 */
4180 0x01, 0x02, 0x03, 0x04 /* Address: 1.2.3.4 */
4181 };
4182
4183 for (const auto& response : {kResponseAPointer, kResponseLabelEndingWithAPointer}) {
4184 SCOPED_TRACE(StringPrintf("Hex dump: %s", toHex(makeSlice(response)).c_str()));
4185
4186 test::DNSResponder dns(test::DNSResponder::MappingType::BINARY_PACKET);
4187 dns.addMappingBinaryPacket(kHelloExampleComQueryV4, response);
4188 StartDns(dns, {});
4189 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
4190
4191 // Expect no cache because the TTL of testing responses are 0.
4192 VerifyQueryHelloExampleComV4(dns, calltype);
Hungming Chenbb90ab32019-10-28 18:20:31 +08004193 }
Mike Yu40e67072019-10-09 21:14:09 +08004194}
Hungming Chen22617fd2019-12-06 12:15:45 +08004195
4196TEST_P(ResolverParameterizedTest, TruncatedResponse) {
4197 const auto& calltype = GetParam();
4198
Hungming Chen22617fd2019-12-06 12:15:45 +08004199 test::DNSResponder dns;
Ken Chen99344882020-01-01 14:59:38 +08004200 StartDns(dns, kLargeCnameChainRecords);
Hungming Chen22617fd2019-12-06 12:15:45 +08004201 ASSERT_TRUE(mDnsClient.SetResolversForNetwork());
4202
4203 // Expect UDP response is truncated. The resolver retries over TCP. See RFC 1035 section 4.2.1.
4204 VerifyQueryHelloExampleComV4(dns, calltype, false);
4205 EXPECT_EQ(1U, GetNumQueriesForProtocol(dns, IPPROTO_UDP, kHelloExampleCom));
4206 EXPECT_EQ(1U, GetNumQueriesForProtocol(dns, IPPROTO_TCP, kHelloExampleCom));
4207}