blob: 238eef7b4afaac83d90b900f8193c8c23aac7415 [file] [log] [blame]
Mattias Falk89c1e972011-04-29 14:48:51 +02001/*
2 * Copyright (C) 2011 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 "ResolverController"
18#define DBG 0
19
Pierre Imaibeedec32016-04-13 06:44:51 +090020#include <algorithm>
21#include <cstdlib>
Ben Schwartze7601812017-04-28 16:38:29 -040022#include <map>
23#include <mutex>
24#include <set>
Pierre Imaibeedec32016-04-13 06:44:51 +090025#include <string>
Ben Schwartze7601812017-04-28 16:38:29 -040026#include <thread>
27#include <utility>
Pierre Imaibeedec32016-04-13 06:44:51 +090028#include <vector>
Mattias Falk89c1e972011-04-29 14:48:51 +020029#include <cutils/log.h>
Elliott Hughes970274a2012-09-11 18:56:36 -070030#include <net/if.h>
Pierre Imaibeedec32016-04-13 06:44:51 +090031#include <sys/socket.h>
32#include <netdb.h>
David 'Digit' Turner4da10dd2012-01-13 13:43:43 +010033
Ben Schwartze7601812017-04-28 16:38:29 -040034#include <arpa/inet.h>
Szymon Jakubczaka0efaec2014-02-14 17:09:43 -050035// NOTE: <resolv_netid.h> is a private C library header that provides
36// declarations for _resolv_set_nameservers_for_net and
37// _resolv_flush_cache_for_net
38#include <resolv_netid.h>
Pierre Imai95f5f942016-03-09 18:09:25 +090039#include <resolv_params.h>
Pierre Imaibeedec32016-04-13 06:44:51 +090040#include <resolv_stats.h>
41
Pierre Imai3a272072016-04-19 16:17:07 +090042#include <android-base/strings.h>
Pierre Imaibeedec32016-04-13 06:44:51 +090043#include <android/net/INetd.h>
Mattias Falk89c1e972011-04-29 14:48:51 +020044
Pierre Imai3a272072016-04-19 16:17:07 +090045#include "DumpWriter.h"
Ben Schwartze7601812017-04-28 16:38:29 -040046#include "NetdConstants.h"
Mattias Falk89c1e972011-04-29 14:48:51 +020047#include "ResolverController.h"
Pierre Imaibeedec32016-04-13 06:44:51 +090048#include "ResolverStats.h"
Ben Schwartze7601812017-04-28 16:38:29 -040049#include "dns/DnsTlsTransport.h"
Mattias Falk89c1e972011-04-29 14:48:51 +020050
Lorenzo Colitti7035f222017-02-13 18:29:00 +090051namespace android {
52namespace net {
53
Ben Schwartze7601812017-04-28 16:38:29 -040054namespace {
55
Ben Schwartze7601812017-04-28 16:38:29 -040056// This comparison ignores ports and fingerprints.
Ben Schwartz52504622017-07-11 12:21:13 -040057struct AddressComparator {
58 bool operator() (const DnsTlsTransport::Server& x, const DnsTlsTransport::Server& y) const {
59 if (x.ss.ss_family != y.ss.ss_family) {
60 return x.ss.ss_family < y.ss.ss_family;
61 }
62 // Same address family. Compare IP addresses.
63 if (x.ss.ss_family == AF_INET) {
64 const sockaddr_in& x_sin = reinterpret_cast<const sockaddr_in&>(x.ss);
65 const sockaddr_in& y_sin = reinterpret_cast<const sockaddr_in&>(y.ss);
66 return x_sin.sin_addr.s_addr < y_sin.sin_addr.s_addr;
67 } else if (x.ss.ss_family == AF_INET6) {
68 const sockaddr_in6& x_sin6 = reinterpret_cast<const sockaddr_in6&>(x.ss);
69 const sockaddr_in6& y_sin6 = reinterpret_cast<const sockaddr_in6&>(y.ss);
70 return std::memcmp(x_sin6.sin6_addr.s6_addr, y_sin6.sin6_addr.s6_addr, 16) < 0;
71 }
72 return false; // Unknown address type. This is an error.
Ben Schwartze7601812017-04-28 16:38:29 -040073 }
Ben Schwartz52504622017-07-11 12:21:13 -040074};
Ben Schwartze7601812017-04-28 16:38:29 -040075
76bool parseServer(const char* server, in_port_t port, sockaddr_storage* parsed) {
77 sockaddr_in* sin = reinterpret_cast<sockaddr_in*>(parsed);
78 if (inet_pton(AF_INET, server, &(sin->sin_addr)) == 1) {
79 // IPv4 parse succeeded, so it's IPv4
80 sin->sin_family = AF_INET;
81 sin->sin_port = htons(port);
82 return true;
83 }
84 sockaddr_in6* sin6 = reinterpret_cast<sockaddr_in6*>(parsed);
85 if (inet_pton(AF_INET6, server, &(sin6->sin6_addr)) == 1){
86 // IPv6 parse succeeded, so it's IPv6.
87 sin6->sin6_family = AF_INET6;
88 sin6->sin6_port = htons(port);
89 return true;
90 }
91 if (DBG) {
92 ALOGW("Failed to parse server address: %s", server);
93 }
94 return false;
95}
96
97// Structure for tracking the entire set of known Private DNS servers.
98std::mutex privateDnsLock;
Ben Schwartz52504622017-07-11 12:21:13 -040099typedef std::set<DnsTlsTransport::Server, AddressComparator> PrivateDnsSet;
Ben Schwartze7601812017-04-28 16:38:29 -0400100PrivateDnsSet privateDnsServers;
101
102// Structure for tracking the validation status of servers on a specific netid.
103// Servers that fail validation are removed from the tracker, and can be retried.
104enum class Validation : bool { in_process, success };
Ben Schwartz52504622017-07-11 12:21:13 -0400105typedef std::map<DnsTlsTransport::Server, Validation, AddressComparator> PrivateDnsTracker;
Ben Schwartze7601812017-04-28 16:38:29 -0400106std::map<unsigned, PrivateDnsTracker> privateDnsTransports;
107
108PrivateDnsSet parseServers(const char** servers, int numservers, in_port_t port) {
109 PrivateDnsSet set;
110 for (int i = 0; i < numservers; ++i) {
111 sockaddr_storage parsed;
112 if (parseServer(servers[i], port, &parsed)) {
113 set.insert(parsed);
114 }
115 }
116 return set;
117}
118
119void checkPrivateDnsProviders(const unsigned netId, const char** servers, int numservers) {
120 if (DBG) {
121 ALOGD("checkPrivateDnsProviders(%u)", netId);
122 }
123
124 std::lock_guard<std::mutex> guard(privateDnsLock);
125 if (privateDnsServers.empty()) {
126 return;
127 }
128
129 // First compute the intersection of the servers to check with the
130 // servers that are permitted to use DNS over TLS. The intersection
131 // will contain the port number to be used for Private DNS.
132 PrivateDnsSet serversToCheck = parseServers(servers, numservers, 53);
133 PrivateDnsSet intersection;
134 std::set_intersection(privateDnsServers.begin(), privateDnsServers.end(),
135 serversToCheck.begin(), serversToCheck.end(),
Ben Schwartz52504622017-07-11 12:21:13 -0400136 std::inserter(intersection, intersection.begin()),
137 AddressComparator());
Ben Schwartze7601812017-04-28 16:38:29 -0400138 if (intersection.empty()) {
139 return;
140 }
141
142 auto netPair = privateDnsTransports.find(netId);
143 if (netPair == privateDnsTransports.end()) {
144 // New netId
145 bool added;
146 std::tie(netPair, added) = privateDnsTransports.emplace(netId, PrivateDnsTracker());
147 if (!added) {
148 ALOGE("Memory error while checking private DNS for netId %d", netId);
149 return;
150 }
151 }
152
153 auto& tracker = netPair->second;
154 for (const auto& privateServer : intersection) {
155 if (tracker.count(privateServer) != 0) {
156 continue;
157 }
158 tracker[privateServer] = Validation::in_process;
159 std::thread validate_thread([privateServer, netId] {
Ben Schwartz52504622017-07-11 12:21:13 -0400160 // ::validate() is a blocking call that performs network operations.
Ben Schwartze7601812017-04-28 16:38:29 -0400161 // It can take milliseconds to minutes, up to the SYN retry limit.
Ben Schwartz52504622017-07-11 12:21:13 -0400162 bool success = DnsTlsTransport::validate(privateServer, netId);
Ben Schwartze7601812017-04-28 16:38:29 -0400163 std::lock_guard<std::mutex> guard(privateDnsLock);
164 auto netPair = privateDnsTransports.find(netId);
165 if (netPair == privateDnsTransports.end()) {
166 ALOGW("netId %u was erased during private DNS validation", netId);
167 return;
168 }
169 auto& tracker = netPair->second;
170 if (privateDnsServers.count(privateServer) == 0) {
171 ALOGW("Server was removed during private DNS validation");
172 success = false;
173 }
174 if (success) {
175 tracker[privateServer] = Validation::success;
176 } else {
177 // Validation failure is expected if a user is on a captive portal.
178 // TODO: Trigger a second validation attempt after captive portal login
179 // succeeds.
180 tracker.erase(privateServer);
181 }
182 });
183 validate_thread.detach();
184 }
185}
186
187void clearPrivateDnsProviders(unsigned netId) {
188 if (DBG) {
189 ALOGD("clearPrivateDnsProviders(%u)", netId);
190 }
191 std::lock_guard<std::mutex> guard(privateDnsLock);
192 privateDnsTransports.erase(netId);
193}
194
195} // namespace
196
Pierre Imai95f5f942016-03-09 18:09:25 +0900197int ResolverController::setDnsServers(unsigned netId, const char* searchDomains,
198 const char** servers, int numservers, const __res_params* params) {
Mattias Falk89c1e972011-04-29 14:48:51 +0200199 if (DBG) {
Szymon Jakubczaka0efaec2014-02-14 17:09:43 -0500200 ALOGD("setDnsServers netId = %u\n", netId);
Mattias Falk89c1e972011-04-29 14:48:51 +0200201 }
Ben Schwartze7601812017-04-28 16:38:29 -0400202 checkPrivateDnsProviders(netId, servers, numservers);
Pierre Imaibeedec32016-04-13 06:44:51 +0900203 return -_resolv_set_nameservers_for_net(netId, servers, numservers, searchDomains, params);
Mattias Falk89c1e972011-04-29 14:48:51 +0200204}
Paul Jensen6a46f332014-08-06 18:42:27 +0000205
Ben Schwartze7601812017-04-28 16:38:29 -0400206bool ResolverController::shouldUseTls(unsigned netId, const sockaddr_storage& insecureServer,
Ben Schwartz52504622017-07-11 12:21:13 -0400207 DnsTlsTransport::Server* secureServer) {
Ben Schwartze7601812017-04-28 16:38:29 -0400208 // This mutex is on the critical path of every DNS lookup that doesn't hit a local cache.
209 // If the overhead of mutex acquisition proves too high, we could reduce it by maintaining
210 // an atomic_int32_t counter of validated connections, and returning early if it's zero.
211 std::lock_guard<std::mutex> guard(privateDnsLock);
212 const auto netPair = privateDnsTransports.find(netId);
213 if (netPair == privateDnsTransports.end()) {
214 return false;
215 }
216 const auto& tracker = netPair->second;
217 const auto serverPair = tracker.find(insecureServer);
218 if (serverPair == tracker.end() || serverPair->second != Validation::success) {
219 return false;
220 }
221 const auto& validatedServer = serverPair->first;
Ben Schwartz52504622017-07-11 12:21:13 -0400222 *secureServer = validatedServer;
Ben Schwartze7601812017-04-28 16:38:29 -0400223 return true;
224}
225
Lorenzo Colittidadc5f82014-11-29 13:54:25 +0900226int ResolverController::clearDnsServers(unsigned netId) {
Pierre Imai95f5f942016-03-09 18:09:25 +0900227 _resolv_set_nameservers_for_net(netId, NULL, 0, "", NULL);
Lorenzo Colittidadc5f82014-11-29 13:54:25 +0900228 if (DBG) {
229 ALOGD("clearDnsServers netId = %u\n", netId);
230 }
Ben Schwartze7601812017-04-28 16:38:29 -0400231 clearPrivateDnsProviders(netId);
Lorenzo Colittidadc5f82014-11-29 13:54:25 +0900232 return 0;
233}
234
Paul Jensen6a46f332014-08-06 18:42:27 +0000235int ResolverController::flushDnsCache(unsigned netId) {
236 if (DBG) {
237 ALOGD("flushDnsCache netId = %u\n", netId);
238 }
239
240 _resolv_flush_cache_for_net(netId);
241
242 return 0;
243}
Pierre Imaibeedec32016-04-13 06:44:51 +0900244
245int ResolverController::getDnsInfo(unsigned netId, std::vector<std::string>* servers,
246 std::vector<std::string>* domains, __res_params* params,
247 std::vector<android::net::ResolverStats>* stats) {
248 using android::net::ResolverStats;
249 using android::net::INetd;
250 static_assert(ResolverStats::STATS_SUCCESSES == INetd::RESOLVER_STATS_SUCCESSES &&
251 ResolverStats::STATS_ERRORS == INetd::RESOLVER_STATS_ERRORS &&
252 ResolverStats::STATS_TIMEOUTS == INetd::RESOLVER_STATS_TIMEOUTS &&
253 ResolverStats::STATS_INTERNAL_ERRORS == INetd::RESOLVER_STATS_INTERNAL_ERRORS &&
254 ResolverStats::STATS_RTT_AVG == INetd::RESOLVER_STATS_RTT_AVG &&
255 ResolverStats::STATS_LAST_SAMPLE_TIME == INetd::RESOLVER_STATS_LAST_SAMPLE_TIME &&
256 ResolverStats::STATS_USABLE == INetd::RESOLVER_STATS_USABLE &&
257 ResolverStats::STATS_COUNT == INetd::RESOLVER_STATS_COUNT,
258 "AIDL and ResolverStats.h out of sync");
259 int nscount = -1;
260 sockaddr_storage res_servers[MAXNS];
261 int dcount = -1;
262 char res_domains[MAXDNSRCH][MAXDNSRCHPATH];
263 __res_stats res_stats[MAXNS];
264 servers->clear();
265 domains->clear();
266 *params = __res_params{};
267 stats->clear();
268 int revision_id = android_net_res_stats_get_info_for_net(netId, &nscount, res_servers, &dcount,
269 res_domains, params, res_stats);
270
271 // If the netId is unknown (which can happen for valid net IDs for which no DNS servers have
272 // yet been configured), there is no revision ID. In this case there is no data to return.
273 if (revision_id < 0) {
274 return 0;
275 }
276
277 // Verify that the returned data is sane.
278 if (nscount < 0 || nscount > MAXNS || dcount < 0 || dcount > MAXDNSRCH) {
279 ALOGE("%s: nscount=%d, dcount=%d", __FUNCTION__, nscount, dcount);
280 return -ENOTRECOVERABLE;
281 }
282
283 // Determine which servers are considered usable by the resolver.
284 bool valid_servers[MAXNS];
285 std::fill_n(valid_servers, MAXNS, false);
286 android_net_res_stats_get_usable_servers(params, res_stats, nscount, valid_servers);
287
288 // Convert the server sockaddr structures to std::string.
289 stats->resize(nscount);
290 for (int i = 0 ; i < nscount ; ++i) {
291 char hbuf[NI_MAXHOST];
292 int rv = getnameinfo(reinterpret_cast<const sockaddr*>(&res_servers[i]),
293 sizeof(res_servers[i]), hbuf, sizeof(hbuf), nullptr, 0, NI_NUMERICHOST);
294 std::string server_str;
295 if (rv == 0) {
296 server_str.assign(hbuf);
297 } else {
298 ALOGE("getnameinfo() failed for server #%d: %s", i, gai_strerror(rv));
299 server_str.assign("<invalid>");
300 }
301 servers->push_back(std::move(server_str));
302 android::net::ResolverStats& cur_stats = (*stats)[i];
303 android_net_res_stats_aggregate(&res_stats[i], &cur_stats.successes, &cur_stats.errors,
304 &cur_stats.timeouts, &cur_stats.internal_errors, &cur_stats.rtt_avg,
305 &cur_stats.last_sample_time);
306 cur_stats.usable = valid_servers[i];
307 }
308
309 // Convert the stack-allocated search domain strings to std::string.
310 for (int i = 0 ; i < dcount ; ++i) {
311 domains->push_back(res_domains[i]);
312 }
313 return 0;
314}
315
316int ResolverController::setResolverConfiguration(int32_t netId,
317 const std::vector<std::string>& servers, const std::vector<std::string>& domains,
318 const std::vector<int32_t>& params) {
319 using android::net::INetd;
320 if (params.size() != INetd::RESOLVER_PARAMS_COUNT) {
321 ALOGE("%s: params.size()=%zu", __FUNCTION__, params.size());
322 return -EINVAL;
323 }
324
Pierre Imai0452cb52016-05-30 16:42:34 +0900325 auto server_count = std::min<size_t>(MAXNS, servers.size());
Pierre Imaibeedec32016-04-13 06:44:51 +0900326 std::vector<const char*> server_ptrs;
Pierre Imai0452cb52016-05-30 16:42:34 +0900327 for (size_t i = 0 ; i < server_count ; ++i) {
328 server_ptrs.push_back(servers[i].c_str());
Pierre Imaibeedec32016-04-13 06:44:51 +0900329 }
330
331 std::string domains_str;
332 if (!domains.empty()) {
333 domains_str = domains[0];
334 for (size_t i = 1 ; i < domains.size() ; ++i) {
335 domains_str += " " + domains[i];
336 }
337 }
338
339 __res_params res_params;
340 res_params.sample_validity = params[INetd::RESOLVER_PARAMS_SAMPLE_VALIDITY];
341 res_params.success_threshold = params[INetd::RESOLVER_PARAMS_SUCCESS_THRESHOLD];
342 res_params.min_samples = params[INetd::RESOLVER_PARAMS_MIN_SAMPLES];
343 res_params.max_samples = params[INetd::RESOLVER_PARAMS_MAX_SAMPLES];
344
345 return setDnsServers(netId, domains_str.c_str(), server_ptrs.data(), server_ptrs.size(),
346 &res_params);
347}
348
349int ResolverController::getResolverInfo(int32_t netId, std::vector<std::string>* servers,
350 std::vector<std::string>* domains, std::vector<int32_t>* params,
351 std::vector<int32_t>* stats) {
352 using android::net::ResolverStats;
353 using android::net::INetd;
354 __res_params res_params;
355 std::vector<ResolverStats> res_stats;
356 int ret = getDnsInfo(netId, servers, domains, &res_params, &res_stats);
357 if (ret != 0) {
358 return ret;
359 }
360
361 // Serialize the information for binder.
362 ResolverStats::encodeAll(res_stats, stats);
363
364 params->resize(INetd::RESOLVER_PARAMS_COUNT);
365 (*params)[INetd::RESOLVER_PARAMS_SAMPLE_VALIDITY] = res_params.sample_validity;
366 (*params)[INetd::RESOLVER_PARAMS_SUCCESS_THRESHOLD] = res_params.success_threshold;
367 (*params)[INetd::RESOLVER_PARAMS_MIN_SAMPLES] = res_params.min_samples;
368 (*params)[INetd::RESOLVER_PARAMS_MAX_SAMPLES] = res_params.max_samples;
369 return 0;
370}
Pierre Imai3a272072016-04-19 16:17:07 +0900371
372void ResolverController::dump(DumpWriter& dw, unsigned netId) {
373 // No lock needed since Bionic's resolver locks all accessed data structures internally.
374 using android::net::ResolverStats;
375 std::vector<std::string> servers;
376 std::vector<std::string> domains;
377 __res_params params;
378 std::vector<ResolverStats> stats;
379 time_t now = time(nullptr);
380 int rv = getDnsInfo(netId, &servers, &domains, &params, &stats);
381 dw.incIndent();
382 if (rv != 0) {
383 dw.println("getDnsInfo() failed for netid %u", netId);
384 } else {
385 if (servers.empty()) {
386 dw.println("No DNS servers defined");
387 } else {
388 dw.println("DNS servers: # IP (total, successes, errors, timeouts, internal errors, "
389 "RTT avg, last sample)");
390 dw.incIndent();
391 for (size_t i = 0 ; i < servers.size() ; ++i) {
392 if (i < stats.size()) {
393 const ResolverStats& s = stats[i];
394 int total = s.successes + s.errors + s.timeouts + s.internal_errors;
395 if (total > 0) {
396 int time_delta = (s.last_sample_time > 0) ? now - s.last_sample_time : -1;
397 dw.println("%s (%d, %d, %d, %d, %d, %dms, %ds)%s", servers[i].c_str(),
398 total, s.successes, s.errors, s.timeouts, s.internal_errors,
399 s.rtt_avg, time_delta, s.usable ? "" : " BROKEN");
400 } else {
401 dw.println("%s <no data>", servers[i].c_str());
402 }
403 } else {
404 dw.println("%s <no stats>", servers[i].c_str());
405 }
406 }
407 dw.decIndent();
408 }
409 if (domains.empty()) {
410 dw.println("No search domains defined");
411 } else {
412 std::string domains_str = android::base::Join(domains, ", ");
413 dw.println("search domains: %s", domains_str.c_str());
414 }
415 if (params.sample_validity != 0) {
416 dw.println("DNS parameters: sample validity = %us, success threshold = %u%%, "
417 "samples (min, max) = (%u, %u)", params.sample_validity,
418 static_cast<unsigned>(params.success_threshold),
419 static_cast<unsigned>(params.min_samples),
420 static_cast<unsigned>(params.max_samples));
421 }
422 }
423 dw.decIndent();
424}
Lorenzo Colitti7035f222017-02-13 18:29:00 +0900425
Ben Schwartze7601812017-04-28 16:38:29 -0400426int ResolverController::addPrivateDnsServer(const std::string& server, int32_t port,
427 const std::string& fingerprintAlgorithm,
428 const std::set<std::vector<uint8_t>>& fingerprints) {
429 using android::net::INetd;
430 if (fingerprintAlgorithm.empty()) {
431 if (!fingerprints.empty()) {
432 return INetd::PRIVATE_DNS_BAD_FINGERPRINT;
433 }
434 } else if (fingerprintAlgorithm.compare("SHA-256") == 0) {
435 if (fingerprints.empty()) {
436 return INetd::PRIVATE_DNS_BAD_FINGERPRINT;
437 }
438 for (const auto& fingerprint : fingerprints) {
439 if (fingerprint.size() != SHA256_SIZE) {
440 return INetd::PRIVATE_DNS_BAD_FINGERPRINT;
441 }
442 }
443 } else {
444 return INetd::PRIVATE_DNS_UNKNOWN_ALGORITHM;
445 }
446 if (port <= 0 || port > 0xFFFF) {
447 return INetd::PRIVATE_DNS_BAD_PORT;
448 }
449 sockaddr_storage parsed;
450 if (!parseServer(server.c_str(), port, &parsed)) {
451 return INetd::PRIVATE_DNS_BAD_ADDRESS;
452 }
Ben Schwartz52504622017-07-11 12:21:13 -0400453 DnsTlsTransport::Server privateServer(parsed);
Ben Schwartze7601812017-04-28 16:38:29 -0400454 privateServer.fingerprints = fingerprints;
455 std::lock_guard<std::mutex> guard(privateDnsLock);
456 // Ensure we overwrite any previous matching server. This is necessary because equality is
457 // based only on the IP address, not the port or fingerprints.
458 privateDnsServers.erase(privateServer);
459 privateDnsServers.insert(privateServer);
Ben Schwartz52504622017-07-11 12:21:13 -0400460 if (DBG) {
461 ALOGD("Recorded private DNS server: %s", server.c_str());
462 }
Ben Schwartze7601812017-04-28 16:38:29 -0400463 return INetd::PRIVATE_DNS_SUCCESS;
464}
465
466int ResolverController::removePrivateDnsServer(const std::string& server) {
467 using android::net::INetd;
468 sockaddr_storage parsed;
469 if (!parseServer(server.c_str(), 0, &parsed)) {
470 return INetd::PRIVATE_DNS_BAD_ADDRESS;
471 }
472 std::lock_guard<std::mutex> guard(privateDnsLock);
473 privateDnsServers.erase(parsed);
474 for (auto& pair : privateDnsTransports) {
475 pair.second.erase(parsed);
476 }
477 return INetd::PRIVATE_DNS_SUCCESS;
478}
479
Lorenzo Colitti7035f222017-02-13 18:29:00 +0900480} // namespace net
481} // namespace android