1 /*
2  * Copyright (C) 2018 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  *
10  * Unless required by applicable law or agreed to in writing, software
11  * 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 #define LOG_TAG "resolv"
18 
19 #include "PrivateDnsConfiguration.h"
20 
21 #include <algorithm>
22 
23 #include <android-base/format.h>
24 #include <android-base/logging.h>
25 #include <android/binder_ibinder.h>
26 #include <netdutils/Slice.h>
27 #include <netdutils/ThreadUtil.h>
28 #include <sys/socket.h>
29 
30 #include "DnsTlsTransport.h"
31 #include "ResolverEventReporter.h"
32 #include "doh.h"
33 #include "netd_resolv/resolv.h"
34 #include "resolv_cache.h"
35 #include "resolv_private.h"
36 #include "util.h"
37 
38 using aidl::android::net::resolv::aidl::IDnsResolverUnsolicitedEventListener;
39 using aidl::android::net::resolv::aidl::PrivateDnsValidationEventParcel;
40 using android::netdutils::IPAddress;
41 using android::netdutils::IPSockAddr;
42 using android::netdutils::setThreadName;
43 using android::netdutils::Slice;
44 using std::chrono::milliseconds;
45 
46 namespace android {
47 namespace net {
48 
49 namespace {
50 
ensureNoInvalidIp(const std::vector<std::string> & servers)51 bool ensureNoInvalidIp(const std::vector<std::string>& servers) {
52     IPAddress ip;
53     for (const auto& s : servers) {
54         if (!IPAddress::forString(s, &ip)) {
55             LOG(WARNING) << "Invalid IP address: " << s;
56             return false;
57         }
58     }
59     return true;
60 }
61 
makeDohFeatureFlags()62 FeatureFlags makeDohFeatureFlags() {
63     const Experiments* const instance = Experiments::getInstance();
64     const auto getTimeout = [&](const std::string_view key, int defaultValue) -> uint64_t {
65         static constexpr int kMinTimeoutMs = 1000;
66         uint64_t timeout = instance->getFlag(key, defaultValue);
67         if (timeout < kMinTimeoutMs) {
68             timeout = kMinTimeoutMs;
69         }
70         return timeout;
71     };
72 
73     return FeatureFlags{
74             .probe_timeout_ms = getTimeout("doh_probe_timeout_ms",
75                                            PrivateDnsConfiguration::kDohProbeDefaultTimeoutMs),
76             .idle_timeout_ms = getTimeout("doh_idle_timeout_ms",
77                                           PrivateDnsConfiguration::kDohIdleDefaultTimeoutMs),
78             .use_session_resumption = instance->getFlag("doh_session_resumption", 0) == 1,
79             .enable_early_data = instance->getFlag("doh_early_data", 0) == 1,
80     };
81 }
82 
toString(const FeatureFlags & flags)83 std::string toString(const FeatureFlags& flags) {
84     return fmt::format(
85             "probe_timeout_ms={}, idle_timeout_ms={}, use_session_resumption={}, "
86             "enable_early_data={}",
87             flags.probe_timeout_ms, flags.idle_timeout_ms, flags.use_session_resumption,
88             flags.enable_early_data);
89 }
90 
91 // Returns the sorted (sort IPv6 before IPv4) servers.
sortServers(const std::vector<std::string> & servers)92 std::vector<std::string> sortServers(const std::vector<std::string>& servers) {
93     std::vector<std::string> out = servers;
94     std::sort(out.begin(), out.end(), [](std::string a, std::string b) {
95         return IPAddress::forString(a) > IPAddress::forString(b);
96     });
97     return out;
98 }
99 
100 }  // namespace
101 
convertEnumType(PrivateDnsMode mode)102 PrivateDnsModes convertEnumType(PrivateDnsMode mode) {
103     switch (mode) {
104         case PrivateDnsMode::OFF:
105             return PrivateDnsModes::PDM_OFF;
106         case PrivateDnsMode::OPPORTUNISTIC:
107             return PrivateDnsModes::PDM_OPPORTUNISTIC;
108         case PrivateDnsMode::STRICT:
109             return PrivateDnsModes::PDM_STRICT;
110         default:
111             return PrivateDnsModes::PDM_UNKNOWN;
112     }
113 }
114 
set(int32_t netId,uint32_t mark,const std::vector<std::string> & unencryptedServers,const std::vector<std::string> & encryptedServers,const std::string & name,const std::string & caCert,const std::optional<DohParamsParcel> dohParams)115 int PrivateDnsConfiguration::set(int32_t netId, uint32_t mark,
116                                  const std::vector<std::string>& unencryptedServers,
117                                  const std::vector<std::string>& encryptedServers,
118                                  const std::string& name, const std::string& caCert,
119                                  const std::optional<DohParamsParcel> dohParams) {
120     LOG(DEBUG) << "PrivateDnsConfiguration::set(" << netId << ", 0x" << std::hex << mark << std::dec
121                << ", " << encryptedServers.size() << ", " << name << ")";
122 
123     if (!ensureNoInvalidIp(encryptedServers)) return -EINVAL;
124 
125     std::lock_guard guard(mPrivateDnsLock);
126     mUnorderedDnsTracker[netId] = unencryptedServers;
127     mUnorderedDotTracker[netId] = encryptedServers;
128     mUnorderedDohTracker[netId] = encryptedServers;
129 
130     if (!name.empty()) {
131         mPrivateDnsModes[netId] = PrivateDnsMode::STRICT;
132     } else if (!encryptedServers.empty()) {
133         mPrivateDnsModes[netId] = PrivateDnsMode::OPPORTUNISTIC;
134     } else {
135         mPrivateDnsModes[netId] = PrivateDnsMode::OFF;
136         clearDot(netId);
137         clearDoh(netId);
138         return 0;
139         // TODO: signal validation threads to stop.
140     }
141 
142     if (int n = setDot(netId, mark, encryptedServers, name, caCert); n != 0) {
143         return n;
144     }
145 
146     return setDoh(netId, mark, encryptedServers, name, caCert, dohParams);
147 }
148 
setDot(int32_t netId,uint32_t mark,const std::vector<std::string> & servers,const std::string & name,const std::string & caCert)149 int PrivateDnsConfiguration::setDot(int32_t netId, uint32_t mark,
150                                     const std::vector<std::string>& servers,
151                                     const std::string& name, const std::string& caCert) {
152     // Parse the list of servers that has been passed in
153     std::map<ServerIdentity, DnsTlsServer> tmp;
154     for (const auto& s : servers) {
155         // The IP addresses are guaranteed to be valid.
156         DnsTlsServer server(IPAddress::forString(s));
157         server.name = name;
158         server.certificate = caCert;
159         server.mark = mark;
160         tmp[ServerIdentity(server)] = server;
161     }
162 
163     // Create the tracker if it was not present
164     auto& tracker = mDotTracker[netId];
165 
166     // Add the servers if not contained in tracker.
167     for (const auto& [identity, server] : tmp) {
168         if (tracker.find(identity) == tracker.end()) {
169             tracker[identity] = server;
170         }
171     }
172 
173     for (auto& [identity, server] : tracker) {
174         const bool active = tmp.find(identity) != tmp.end();
175         server.setActive(active);
176 
177         // For simplicity, deem the validation result of inactive servers as unreliable.
178         if (!server.active() && server.validationState() == Validation::success) {
179             updateServerState(identity, Validation::success_but_expired, netId);
180         }
181 
182         if (needsValidation(server)) {
183             updateServerState(identity, Validation::in_process, netId);
184             startDotValidation(identity, netId, false);
185         }
186     }
187 
188     return resolv_stats_set_addrs(netId, PROTO_DOT, servers, kDotPort);
189 }
190 
clearDot(int32_t netId)191 void PrivateDnsConfiguration::clearDot(int32_t netId) {
192     mDotTracker.erase(netId);
193     resolv_stats_set_addrs(netId, PROTO_DOT, {}, kDotPort);
194 }
195 
getStatus(unsigned netId) const196 PrivateDnsStatus PrivateDnsConfiguration::getStatus(unsigned netId) const {
197     std::lock_guard guard(mPrivateDnsLock);
198     return getStatusLocked(netId);
199 }
200 
getStatusLocked(unsigned netId) const201 PrivateDnsStatus PrivateDnsConfiguration::getStatusLocked(unsigned netId) const {
202     PrivateDnsStatus status{
203             .mode = PrivateDnsMode::OFF,
204             .dotServersMap = {},
205             .dohServersMap = {},
206     };
207 
208     const auto mode = mPrivateDnsModes.find(netId);
209     if (mode == mPrivateDnsModes.end()) return status;
210     status.mode = mode->second;
211 
212     const auto netPair = mDotTracker.find(netId);
213     if (netPair != mDotTracker.end()) {
214         for (const auto& [_, server] : netPair->second) {
215             if (server.active()) {
216                 status.dotServersMap.emplace(server, server.validationState());
217             }
218         }
219     }
220 
221     auto it = mDohTracker.find(netId);
222     if (it != mDohTracker.end()) {
223         status.dohServersMap.emplace(IPSockAddr::toIPSockAddr(it->second.ipAddr, kDohPort),
224                                      DohServerInfo(it->second.httpsTemplate, it->second.status));
225     }
226 
227     return status;
228 }
229 
getStatusForMetrics(unsigned netId) const230 NetworkDnsServerSupportReported PrivateDnsConfiguration::getStatusForMetrics(unsigned netId) const {
231     const auto networkType = resolv_get_network_types_for_net(netId);
232     std::lock_guard guard(mPrivateDnsLock);
233 
234     if (mPrivateDnsModes.find(netId) == mPrivateDnsModes.end()) {
235         // Return NetworkDnsServerSupportReported with private_dns_modes set to PDM_UNKNOWN.
236         return {};
237     }
238 
239     const PrivateDnsStatus status = getStatusLocked(netId);
240     NetworkDnsServerSupportReported event = {};
241     event.set_network_type(networkType);
242     event.set_private_dns_modes(convertEnumType(status.mode));
243 
244     if (const auto it = mUnorderedDnsTracker.find(netId); it != mUnorderedDnsTracker.end()) {
245         for (size_t i = 0; i < it->second.size(); i++) {
246             Server* server = event.mutable_servers()->add_server();
247             server->set_protocol(PROTO_UDP);
248             server->set_index(i);
249             server->set_validated(false);
250         }
251     }
252 
253     if (const auto it = mUnorderedDotTracker.find(netId); it != mUnorderedDotTracker.end()) {
254         int index = 0;
255         const std::list<DnsTlsServer> validatedServers = status.validatedServers();
256         for (const std::string& s : it->second) {
257             const IPSockAddr target = IPSockAddr::toIPSockAddr(s, kDotPort);
258             bool validated =
259                     std::any_of(validatedServers.begin(), validatedServers.end(),
260                                 [&target](DnsTlsServer server) { return server.addr() == target; });
261             Server* server = event.mutable_servers()->add_server();
262             server->set_protocol(PROTO_DOT);
263             server->set_index(index++);
264             server->set_validated(validated);
265         }
266     }
267 
268     if (const auto it = mUnorderedDohTracker.find(netId); it != mUnorderedDohTracker.end()) {
269         int index = 0;
270         for (const std::string& s : it->second) {
271             const IPSockAddr target = IPSockAddr::toIPSockAddr(s, kDohPort);
272             bool validated = std::any_of(status.dohServersMap.begin(), status.dohServersMap.end(),
273                                          [&target](const auto& entry) {
274                                              return entry.first == target &&
275                                                     entry.second.status == Validation::success;
276                                          });
277             Server* server = event.mutable_servers()->add_server();
278             server->set_protocol(PROTO_DOH);
279             server->set_index(index++);
280             server->set_validated(validated);
281         }
282     }
283 
284     return event;
285 }
286 
clear(unsigned netId)287 void PrivateDnsConfiguration::clear(unsigned netId) {
288     LOG(DEBUG) << "PrivateDnsConfiguration::clear(" << netId << ")";
289     std::lock_guard guard(mPrivateDnsLock);
290     mPrivateDnsModes.erase(netId);
291     mUnorderedDnsTracker.erase(netId);
292     mUnorderedDotTracker.erase(netId);
293     mUnorderedDohTracker.erase(netId);
294     clearDot(netId);
295     clearDoh(netId);
296 
297     // Notify the relevant private DNS validations, if they are waiting, to finish.
298     mCv.notify_all();
299 }
300 
requestDotValidation(unsigned netId,const ServerIdentity & identity,uint32_t mark)301 base::Result<void> PrivateDnsConfiguration::requestDotValidation(unsigned netId,
302                                                                  const ServerIdentity& identity,
303                                                                  uint32_t mark) {
304     std::lock_guard guard(mPrivateDnsLock);
305 
306     // Running revalidation requires to mark the server as in_process, which means the server
307     // won't be used until the validation passes. It's necessary and safe to run revalidation
308     // when in private DNS opportunistic mode, because there's a fallback mechanics even if
309     // all of the private DNS servers are in in_process state.
310     if (auto it = mPrivateDnsModes.find(netId); it == mPrivateDnsModes.end()) {
311         return Errorf("NetId not found in mPrivateDnsModes");
312     } else if (it->second != PrivateDnsMode::OPPORTUNISTIC) {
313         return Errorf("Private DNS setting is not opportunistic mode");
314     }
315 
316     auto result = getDotServerLocked(identity, netId);
317     if (!result.ok()) {
318         return result.error();
319     }
320 
321     const DnsTlsServer* target = result.value();
322 
323     if (!target->active()) return Errorf("Server is not active");
324 
325     if (target->validationState() != Validation::success) {
326         return Errorf("Server validation state mismatched");
327     }
328 
329     // Don't run the validation if |mark| (from android_net_context.dns_mark) is different.
330     // This is to protect validation from running on unexpected marks.
331     // Validation should be associated with a mark gotten by system permission.
332     if (target->validationMark() != mark) return Errorf("Socket mark mismatched");
333 
334     updateServerState(identity, Validation::in_process, netId);
335     startDotValidation(identity, netId, true);
336     return {};
337 }
338 
startDotValidation(const ServerIdentity & identity,unsigned netId,bool isRevalidation)339 void PrivateDnsConfiguration::startDotValidation(const ServerIdentity& identity, unsigned netId,
340                                                  bool isRevalidation) {
341     // This ensures that the thread sends probe at least once in case
342     // the server is removed before the thread starts running.
343     // TODO: consider moving these code to the thread.
344     const auto result = getDotServerLocked(identity, netId);
345     if (!result.ok()) return;
346     DnsTlsServer server = *result.value();
347 
348     std::thread validate_thread([this, identity, server, netId, isRevalidation] {
349         setThreadName(fmt::format("TlsVerify_{}", netId));
350 
351         // cat /proc/sys/net/ipv4/tcp_syn_retries yields "6".
352         //
353         // Start with a 1 minute delay and backoff to once per hour.
354         //
355         // Assumptions:
356         //     [1] Each TLS validation is ~10KB of certs+handshake+payload.
357         //     [2] Network typically provision clients with <=4 nameservers.
358         //     [3] Average month has 30 days.
359         //
360         // Each validation pass in a given hour is ~1.2MB of data. And 24
361         // such validation passes per day is about ~30MB per month, in the
362         // worst case. Otherwise, this will cost ~600 SYNs per month
363         // (6 SYNs per ip, 4 ips per validation pass, 24 passes per day).
364         auto backoff = mBackoffBuilder.build();
365 
366         while (true) {
367             // ::validate() is a blocking call that performs network operations.
368             // It can take milliseconds to minutes, up to the SYN retry limit.
369             LOG(WARNING) << "Validating DnsTlsServer " << server.toString() << " with mark 0x"
370                          << std::hex << server.validationMark();
371             const bool success = DnsTlsTransport::validate(server, server.validationMark());
372             LOG(WARNING) << "validateDnsTlsServer returned " << success << " for "
373                          << server.toString();
374 
375             const bool needs_reeval =
376                     this->recordDotValidation(identity, netId, success, isRevalidation);
377 
378             if (!needs_reeval || !backoff.hasNextTimeout()) {
379                 break;
380             }
381 
382             std::unique_lock<std::mutex> cvGuard(mPrivateDnsLock);
383             // If the timeout expired and the predicate still evaluates to false, wait_for returns
384             // false.
385             if (mCv.wait_for(cvGuard, backoff.getNextTimeout(),
386                              [this, netId]() REQUIRES(mPrivateDnsLock) {
387                                  return mPrivateDnsModes.find(netId) == mPrivateDnsModes.end();
388                              })) {
389                 break;
390             }
391         }
392     });
393     validate_thread.detach();
394 }
395 
sendPrivateDnsValidationEvent(const ServerIdentity & identity,unsigned netId,bool success) const396 void PrivateDnsConfiguration::sendPrivateDnsValidationEvent(const ServerIdentity& identity,
397                                                             unsigned netId, bool success) const {
398     LOG(DEBUG) << "Sending validation " << (success ? "success" : "failure") << " event on netId "
399                << netId << " for " << identity.sockaddr.toString() << " with hostname {"
400                << identity.provider << "}";
401     // Send a validation event to NetdEventListenerService.
402     const auto& listeners = ResolverEventReporter::getInstance().getListeners();
403     if (listeners.empty()) {
404         LOG(ERROR)
405                 << "Validation event not sent since no INetdEventListener receiver is available.";
406     }
407     for (const auto& it : listeners) {
408         it->onPrivateDnsValidationEvent(netId, identity.sockaddr.ip().toString(), identity.provider,
409                                         success);
410     }
411 
412     // Send a validation event to unsolicited event listeners.
413     const auto& unsolEventListeners = ResolverEventReporter::getInstance().getUnsolEventListeners();
414     const PrivateDnsValidationEventParcel validationEvent = {
415             .netId = static_cast<int32_t>(netId),
416             .ipAddress = identity.sockaddr.ip().toString(),
417             .hostname = identity.provider,
418             .validation = success ? IDnsResolverUnsolicitedEventListener::VALIDATION_RESULT_SUCCESS
419                                   : IDnsResolverUnsolicitedEventListener::VALIDATION_RESULT_FAILURE,
420             .protocol = (identity.sockaddr.port() == kDotPort)
421                                 ? IDnsResolverUnsolicitedEventListener::PROTOCOL_DOT
422                                 : IDnsResolverUnsolicitedEventListener::PROTOCOL_DOH,
423     };
424     for (const auto& it : unsolEventListeners) {
425         it->onPrivateDnsValidationEvent(validationEvent);
426     }
427 }
428 
recordDotValidation(const ServerIdentity & identity,unsigned netId,bool success,bool isRevalidation)429 bool PrivateDnsConfiguration::recordDotValidation(const ServerIdentity& identity, unsigned netId,
430                                                   bool success, bool isRevalidation) {
431     constexpr bool NEEDS_REEVALUATION = true;
432     constexpr bool DONT_REEVALUATE = false;
433 
434     std::lock_guard guard(mPrivateDnsLock);
435 
436     auto netPair = mDotTracker.find(netId);
437     if (netPair == mDotTracker.end()) {
438         LOG(WARNING) << "netId " << netId << " was erased during private DNS validation";
439         notifyValidationStateUpdate(identity.sockaddr, Validation::fail, netId);
440         return DONT_REEVALUATE;
441     }
442 
443     const auto mode = mPrivateDnsModes.find(netId);
444     if (mode == mPrivateDnsModes.end()) {
445         LOG(WARNING) << "netId " << netId << " has no private DNS validation mode";
446         notifyValidationStateUpdate(identity.sockaddr, Validation::fail, netId);
447         return DONT_REEVALUATE;
448     }
449 
450     bool reevaluationStatus = NEEDS_REEVALUATION;
451     if (success || (mode->second == PrivateDnsMode::OFF) ||
452         (mode->second == PrivateDnsMode::OPPORTUNISTIC && !isRevalidation)) {
453         reevaluationStatus = DONT_REEVALUATE;
454     }
455 
456     auto& tracker = netPair->second;
457     auto serverPair = tracker.find(identity);
458     if (serverPair == tracker.end()) {
459         LOG(WARNING) << "Server " << identity.sockaddr.ip().toString()
460                      << " was removed during private DNS validation";
461         success = false;
462         reevaluationStatus = DONT_REEVALUATE;
463     } else if (!serverPair->second.active()) {
464         LOG(WARNING) << "Server " << identity.sockaddr.ip().toString()
465                      << " was removed from the configuration";
466         success = false;
467         reevaluationStatus = DONT_REEVALUATE;
468     }
469 
470     // Send private dns validation result to listeners.
471     if (needReportEvent(netId, identity, success)) {
472         sendPrivateDnsValidationEvent(identity, netId, success);
473     }
474 
475     if (success) {
476         updateServerState(identity, Validation::success, netId);
477     } else {
478         // Validation failure is expected if a user is on a captive portal.
479         // TODO: Trigger a second validation attempt after captive portal login
480         // succeeds.
481         const auto result = (reevaluationStatus == NEEDS_REEVALUATION) ? Validation::in_process
482                                                                        : Validation::fail;
483         updateServerState(identity, result, netId);
484     }
485     LOG(WARNING) << "Validation " << (success ? "success" : "failed");
486 
487     return reevaluationStatus;
488 }
489 
updateServerState(const ServerIdentity & identity,Validation state,uint32_t netId)490 void PrivateDnsConfiguration::updateServerState(const ServerIdentity& identity, Validation state,
491                                                 uint32_t netId) {
492     const auto result = getDotServerLocked(identity, netId);
493     if (!result.ok()) {
494         notifyValidationStateUpdate(identity.sockaddr, Validation::fail, netId);
495         return;
496     }
497 
498     auto* server = result.value();
499 
500     server->setValidationState(state);
501     notifyValidationStateUpdate(identity.sockaddr, state, netId);
502 
503     RecordEntry record(netId, identity, state);
504     mPrivateDnsLog.push(std::move(record));
505 }
506 
needsValidation(const DnsTlsServer & server) const507 bool PrivateDnsConfiguration::needsValidation(const DnsTlsServer& server) const {
508     // The server is not expected to be used on the network.
509     if (!server.active()) return false;
510 
511     // The server is newly added.
512     if (server.validationState() == Validation::unknown_server) return true;
513 
514     // The server has failed at least one validation attempt. Give it another try.
515     if (server.validationState() == Validation::fail) return true;
516 
517     // The previous validation result might be unreliable.
518     if (server.validationState() == Validation::success_but_expired) return true;
519 
520     return false;
521 }
522 
getDotServer(const ServerIdentity & identity,unsigned netId)523 base::Result<DnsTlsServer*> PrivateDnsConfiguration::getDotServer(const ServerIdentity& identity,
524                                                                   unsigned netId) {
525     std::lock_guard guard(mPrivateDnsLock);
526     return getDotServerLocked(identity, netId);
527 }
528 
getDotServerLocked(const ServerIdentity & identity,unsigned netId)529 base::Result<DnsTlsServer*> PrivateDnsConfiguration::getDotServerLocked(
530         const ServerIdentity& identity, unsigned netId) {
531     auto netPair = mDotTracker.find(netId);
532     if (netPair == mDotTracker.end()) {
533         return Errorf("Failed to get private DNS: netId {} not found", netId);
534     }
535 
536     auto iter = netPair->second.find(identity);
537     if (iter == netPair->second.end()) {
538         return Errorf("Failed to get private DNS: server {{{}/{}}} not found",
539                       identity.sockaddr.toString(), identity.provider);
540     }
541 
542     return &iter->second;
543 }
544 
setObserver(PrivateDnsValidationObserver * observer)545 void PrivateDnsConfiguration::setObserver(PrivateDnsValidationObserver* observer) {
546     std::lock_guard guard(mPrivateDnsLock);
547     mObserver = observer;
548 }
549 
getDohServer(unsigned netId) const550 base::Result<netdutils::IPSockAddr> PrivateDnsConfiguration::getDohServer(unsigned netId) const {
551     std::lock_guard guard(mPrivateDnsLock);
552     auto it = mDohTracker.find(netId);
553     if (it != mDohTracker.end()) {
554         return IPSockAddr::toIPSockAddr(it->second.ipAddr, kDohPort);
555     }
556 
557     return Errorf("Failed to get DoH Server: netId {} not found", netId);
558 }
559 
notifyValidationStateUpdate(const netdutils::IPSockAddr & sockaddr,Validation validation,uint32_t netId) const560 void PrivateDnsConfiguration::notifyValidationStateUpdate(const netdutils::IPSockAddr& sockaddr,
561                                                           Validation validation,
562                                                           uint32_t netId) const {
563     if (mObserver) {
564         mObserver->onValidationStateUpdate(sockaddr.ip().toString(), validation, netId);
565     }
566 }
567 
dump(netdutils::DumpWriter & dw) const568 void PrivateDnsConfiguration::dump(netdutils::DumpWriter& dw) const {
569     dw.println("PrivateDnsLog:");
570     netdutils::ScopedIndent indentStats(dw);
571 
572     for (const auto& record : mPrivateDnsLog.copy()) {
573         dw.println(fmt::format(
574                 "{} - netId={} PrivateDns={{{}/{}}} state={}", timestampToString(record.timestamp),
575                 record.netId, record.serverIdentity.sockaddr.toString(),
576                 record.serverIdentity.provider, validationStatusToString(record.state)));
577     }
578     dw.blankline();
579 }
580 
initDoh()581 void PrivateDnsConfiguration::initDoh() {
582     std::lock_guard guard(mPrivateDnsLock);
583     initDohLocked();
584 }
585 
initDohLocked()586 void PrivateDnsConfiguration::initDohLocked() {
587     if (mDohDispatcher != nullptr) return;
588     mDohDispatcher = doh_dispatcher_new(
589             [](uint32_t net_id, bool success, const char* ip_addr, const char* host) {
590                 android::net::PrivateDnsConfiguration::getInstance().onDohStatusUpdate(
591                         net_id, success, ip_addr, host);
592             },
593             [](int32_t sock) { resolv_tag_socket(sock, AID_DNS, NET_CONTEXT_INVALID_PID); });
594 }
595 
setDoh(int32_t netId,uint32_t mark,const std::vector<std::string> & servers,const std::string & name,const std::string & caCert,const std::optional<DohParamsParcel> dohParams)596 int PrivateDnsConfiguration::setDoh(int32_t netId, uint32_t mark,
597                                     const std::vector<std::string>& servers,
598                                     const std::string& name, const std::string& caCert,
599                                     const std::optional<DohParamsParcel> dohParams) {
600     LOG(DEBUG) << "PrivateDnsConfiguration::setDoh(" << netId << ", 0x" << std::hex << mark
601                << std::dec << ", " << servers.size() << ", " << name << ")";
602 
603     const NetworkType networkType = resolv_get_network_types_for_net(netId);
604     const PrivateDnsStatus status = getStatusLocked(netId);
605 
606     // Sort the input servers to prefer IPv6.
607     const std::vector<std::string> sortedServers = sortServers(servers);
608 
609     const auto& doh = makeDohIdentity(sortedServers, name, dohParams);
610     if (!doh.ok()) {
611         LOG(INFO) << __func__ << ": No suitable DoH server found";
612         clearDoh(netId);
613         return 0;
614     }
615 
616     initDohLocked();
617 
618     auto it = mDohTracker.find(netId);
619     // Skip if the same server already exists and its status == success.
620     if (it != mDohTracker.end() && it->second == doh.value() &&
621         it->second.status == Validation::success) {
622         return 0;
623     }
624     const auto& [dohIt, _] = mDohTracker.insert_or_assign(netId, doh.value());
625     const auto& dohId = dohIt->second;
626 
627     RecordEntry record(netId, {IPSockAddr::toIPSockAddr(dohId.ipAddr, kDohPort), name},
628                        dohId.status);
629     mPrivateDnsLog.push(std::move(record));
630     LOG(INFO) << __func__ << ": Upgrading server to DoH: " << name;
631     resolv_stats_set_addrs(netId, PROTO_DOH, {dohId.ipAddr}, kDohPort);
632 
633     const FeatureFlags flags = makeDohFeatureFlags();
634     LOG(DEBUG) << __func__ << ": " << toString(flags);
635 
636     const PrivateDnsModes privateDnsMode = convertEnumType(status.mode);
637     return doh_net_new(mDohDispatcher, netId, dohId.httpsTemplate.c_str(), dohId.host.c_str(),
638                        dohId.ipAddr.c_str(), mark, caCert.c_str(), &flags, networkType,
639                        privateDnsMode);
640 }
641 
clearDoh(unsigned netId)642 void PrivateDnsConfiguration::clearDoh(unsigned netId) {
643     LOG(DEBUG) << "PrivateDnsConfiguration::clearDoh (" << netId << ")";
644     if (mDohDispatcher != nullptr) doh_net_delete(mDohDispatcher, netId);
645     mDohTracker.erase(netId);
646     resolv_stats_set_addrs(netId, PROTO_DOH, {}, kDohPort);
647 }
648 
makeDohIdentity(const std::vector<std::string> & servers,const std::string & name,const std::optional<DohParamsParcel> dohParams) const649 base::Result<PrivateDnsConfiguration::DohIdentity> PrivateDnsConfiguration::makeDohIdentity(
650         const std::vector<std::string>& servers, const std::string& name,
651         const std::optional<DohParamsParcel> dohParams) const {
652     // 1. Use the DoH servers discovered from DDR.
653     // TODO(b/240259333): check whether dohPath is empty instead of whether dohPath equals to
654     // "/dns-query{?dns}".
655     if (dohParams && !dohParams->ips.empty() && !dohParams->name.empty() &&
656         dohParams->dohpath == "/dns-query{?dns}") {
657         // Sort the servers to prefer IPv6.
658         const std::vector<std::string> sortedServers = sortServers(dohParams->ips);
659         return DohIdentity{
660                 .httpsTemplate = fmt::format("https://{}/dns-query", dohParams->name),
661                 .ipAddr = sortedServers[0],
662                 .host = dohParams->name,
663                 .status = Validation::in_process,
664         };
665     }
666 
667     // 2. If DDR is not supported/enabled (dohParams unset), look up `mAvailableDoHProviders`.
668     if (!dohParams) {
669         for (const auto& entry : mAvailableDoHProviders) {
670             const auto& dohId = entry.getDohIdentity(servers, name);
671             if (!dohId.ok()) continue;
672 
673             // Since the DnsResolver is expected to be configured by the system server, add the
674             // restriction to prevent ResolverTestProvider from being used other than testing.
675             if (entry.requireRootPermission && AIBinder_getCallingUid() != AID_ROOT) continue;
676 
677             return dohId;
678         }
679     }
680 
681     return Errorf("Cannot make a DohIdentity from current DNS configuration");
682 }
683 
dohQuery(unsigned netId,const Slice query,const Slice answer,uint64_t timeoutMs)684 ssize_t PrivateDnsConfiguration::dohQuery(unsigned netId, const Slice query, const Slice answer,
685                                           uint64_t timeoutMs) {
686     {
687         std::lock_guard guard(mPrivateDnsLock);
688         // It's safe because mDohDispatcher won't be deleted after initializing.
689         if (mDohDispatcher == nullptr) return DOH_RESULT_CAN_NOT_SEND;
690     }
691     return doh_query(mDohDispatcher, netId, query.base(), query.size(), answer.base(),
692                      answer.size(), timeoutMs);
693 }
694 
onDohStatusUpdate(uint32_t netId,bool success,const char * ipAddr,const char * host)695 void PrivateDnsConfiguration::onDohStatusUpdate(uint32_t netId, bool success, const char* ipAddr,
696                                                 const char* host) {
697     LOG(INFO) << __func__ << ": " << netId << ", " << success << ", " << ipAddr << ", " << host;
698     std::lock_guard guard(mPrivateDnsLock);
699     // Update the server status.
700     auto it = mDohTracker.find(netId);
701     if (it == mDohTracker.end() || (it->second.ipAddr != ipAddr && it->second.host != host)) {
702         LOG(WARNING) << __func__ << ": Obsolete event";
703         return;
704     }
705     Validation status = success ? Validation::success : Validation::fail;
706     it->second.status = status;
707     // Send the events to registered listeners.
708     const ServerIdentity identity = {IPSockAddr::toIPSockAddr(ipAddr, kDohPort), host};
709     if (needReportEvent(netId, identity, success)) {
710         sendPrivateDnsValidationEvent(identity, netId, success);
711     }
712     // Add log.
713     RecordEntry record(netId, identity, status);
714     mPrivateDnsLog.push(std::move(record));
715 }
716 
needReportEvent(uint32_t netId,ServerIdentity identity,bool success) const717 bool PrivateDnsConfiguration::needReportEvent(uint32_t netId, ServerIdentity identity,
718                                               bool success) const {
719     // If the result is success, no concern to report the events.
720     if (success) return true;
721     // If the result is failure, check another transport's status to determine if we should report
722     // the event.
723     switch (identity.sockaddr.port()) {
724         // DoH
725         case kDohPort: {
726             auto netPair = mDotTracker.find(netId);
727             if (netPair == mDotTracker.end()) return true;
728             for (const auto& [id, server] : netPair->second) {
729                 if ((identity.sockaddr.ip() == id.sockaddr.ip()) &&
730                     (identity.sockaddr.port() != id.sockaddr.port()) &&
731                     (server.validationState() == Validation::success)) {
732                     LOG(DEBUG) << __func__
733                                << ": Skip reporting DoH validation failure event, server addr: "
734                                << identity.sockaddr.ip().toString();
735                     return false;
736                 }
737             }
738             break;
739         }
740         // DoT
741         case kDotPort: {
742             auto it = mDohTracker.find(netId);
743             if (it == mDohTracker.end()) return true;
744             if (it->second == identity && it->second.status == Validation::success) {
745                 LOG(DEBUG) << __func__
746                            << ": Skip reporting DoT validation failure event, server addr: "
747                            << identity.sockaddr.ip().toString();
748                 return false;
749             }
750             break;
751         }
752     }
753     return true;
754 }
755 
756 }  // namespace net
757 }  // namespace android
758