1 /*
2 * Copyright (C) 2019 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 "ResolverController.h"
20
21 #include <set>
22 #include <string>
23 #include <vector>
24
25 #include <aidl/android/net/IDnsResolver.h>
26 #include <android-base/logging.h>
27 #include <android-base/strings.h>
28
29 #include "Dns64Configuration.h"
30 #include "DnsResolver.h"
31 #include "DnsTlsDispatcher.h"
32 #include "PrivateDnsConfiguration.h"
33 #include "ResolverEventReporter.h"
34 #include "ResolverStats.h"
35 #include "resolv_cache.h"
36 #include "stats.h"
37 #include "util.h"
38
39 using aidl::android::net::ResolverParamsParcel;
40 using aidl::android::net::resolv::aidl::IDnsResolverUnsolicitedEventListener;
41 using aidl::android::net::resolv::aidl::Nat64PrefixEventParcel;
42
43 namespace android {
44
45 using netdutils::DumpWriter;
46
47 namespace net {
48
49 namespace {
50
sendNat64PrefixEvent(const Dns64Configuration::Nat64PrefixInfo & args)51 void sendNat64PrefixEvent(const Dns64Configuration::Nat64PrefixInfo& args) {
52 LOG(DEBUG) << "Sending Nat64Prefix " << (args.added ? "added" : "removed") << " event on netId "
53 << args.netId << " with prefix " << args.prefixString << "/"
54 << (int)(args.prefixLength);
55 // Send a nat64 prefix event to NetdEventListenerService.
56 const auto& listeners = ResolverEventReporter::getInstance().getListeners();
57 if (listeners.empty()) {
58 LOG(ERROR) << __func__ << ": No available listener. Skipping NAT64 prefix event";
59 }
60 for (const auto& it : listeners) {
61 it->onNat64PrefixEvent(args.netId, args.added, args.prefixString, args.prefixLength);
62 }
63
64 const auto& unsolEventListeners = ResolverEventReporter::getInstance().getUnsolEventListeners();
65 const Nat64PrefixEventParcel nat64PrefixEvent = {
66 .netId = static_cast<int32_t>(args.netId),
67 .prefixOperation =
68 args.added ? IDnsResolverUnsolicitedEventListener::PREFIX_OPERATION_ADDED
69 : IDnsResolverUnsolicitedEventListener::PREFIX_OPERATION_REMOVED,
70 .prefixAddress = args.prefixString,
71 .prefixLength = args.prefixLength,
72 };
73 for (const auto& it : unsolEventListeners) {
74 it->onNat64PrefixEvent(nat64PrefixEvent);
75 }
76 }
77
getDnsInfo(unsigned netId,std::vector<std::string> * servers,std::vector<std::string> * domains,res_params * params,std::vector<android::net::ResolverStats> * stats,std::vector<int32_t> * wait_for_pending_req_timeout_count)78 int getDnsInfo(unsigned netId, std::vector<std::string>* servers, std::vector<std::string>* domains,
79 res_params* params, std::vector<android::net::ResolverStats>* stats,
80 std::vector<int32_t>* wait_for_pending_req_timeout_count) {
81 using aidl::android::net::IDnsResolver;
82 using android::net::ResolverStats;
83 static_assert(ResolverStats::STATS_SUCCESSES == IDnsResolver::RESOLVER_STATS_SUCCESSES &&
84 ResolverStats::STATS_ERRORS == IDnsResolver::RESOLVER_STATS_ERRORS &&
85 ResolverStats::STATS_TIMEOUTS == IDnsResolver::RESOLVER_STATS_TIMEOUTS &&
86 ResolverStats::STATS_INTERNAL_ERRORS ==
87 IDnsResolver::RESOLVER_STATS_INTERNAL_ERRORS &&
88 ResolverStats::STATS_RTT_AVG == IDnsResolver::RESOLVER_STATS_RTT_AVG &&
89 ResolverStats::STATS_LAST_SAMPLE_TIME ==
90 IDnsResolver::RESOLVER_STATS_LAST_SAMPLE_TIME &&
91 ResolverStats::STATS_USABLE == IDnsResolver::RESOLVER_STATS_USABLE &&
92 ResolverStats::STATS_COUNT == IDnsResolver::RESOLVER_STATS_COUNT,
93 "AIDL and ResolverStats.h out of sync");
94 int nscount = -1;
95 sockaddr_storage res_servers[MAXNS];
96 int dcount = -1;
97 char res_domains[MAXDNSRCH][MAXDNSRCHPATH];
98 res_stats res_stats[MAXNS];
99 servers->clear();
100 domains->clear();
101 *params = res_params{};
102 stats->clear();
103 int res_wait_for_pending_req_timeout_count;
104 int revision_id = android_net_res_stats_get_info_for_net(
105 netId, &nscount, res_servers, &dcount, res_domains, params, res_stats,
106 &res_wait_for_pending_req_timeout_count);
107
108 // If the netId is unknown (which can happen for valid net IDs for which no DNS servers have
109 // yet been configured), there is no revision ID. In this case there is no data to return.
110 if (revision_id < 0) {
111 return 0;
112 }
113
114 // Verify that the returned data is valid.
115 if (nscount < 0 || nscount > MAXNS || dcount < 0 || dcount > MAXDNSRCH) {
116 LOG(ERROR) << __func__ << ": nscount = " << nscount << ", dcount = " << dcount;
117 return -ENOTRECOVERABLE;
118 }
119
120 // Determine which servers are considered usable by the resolver.
121 bool valid_servers[MAXNS];
122 std::fill_n(valid_servers, MAXNS, false);
123 android_net_res_stats_get_usable_servers(params, res_stats, nscount, valid_servers);
124
125 // Convert the server sockaddr structures to std::string.
126 stats->resize(nscount);
127 for (int i = 0; i < nscount; ++i) {
128 char hbuf[NI_MAXHOST];
129 int rv =
130 getnameinfo(reinterpret_cast<const sockaddr*>(&res_servers[i]),
131 sizeof(res_servers[i]), hbuf, sizeof(hbuf), nullptr, 0, NI_NUMERICHOST);
132 std::string server_str;
133 if (rv == 0) {
134 server_str.assign(hbuf);
135 } else {
136 LOG(ERROR) << "getnameinfo() failed for server #" << i << ": " << gai_strerror(rv);
137 server_str.assign("<invalid>");
138 }
139 servers->push_back(std::move(server_str));
140 android::net::ResolverStats& cur_stats = (*stats)[i];
141 android_net_res_stats_aggregate(&res_stats[i], &cur_stats.successes, &cur_stats.errors,
142 &cur_stats.timeouts, &cur_stats.internal_errors,
143 &cur_stats.rtt_avg, &cur_stats.last_sample_time);
144 cur_stats.usable = valid_servers[i];
145 }
146
147 // Convert the stack-allocated search domain strings to std::string.
148 for (int i = 0; i < dcount; ++i) {
149 domains->push_back(res_domains[i]);
150 }
151
152 (*wait_for_pending_req_timeout_count)[0] = res_wait_for_pending_req_timeout_count;
153 return 0;
154 }
155
156 } // namespace
157
ResolverController()158 ResolverController::ResolverController()
159 : mDns64Configuration(
160 [](uint32_t netId, uint32_t uid, android_net_context* netcontext) {
161 gResNetdCallbacks.get_network_context(netId, uid, netcontext);
162 },
163 std::bind(sendNat64PrefixEvent, std::placeholders::_1)) {}
164
destroyNetworkCache(unsigned netId)165 void ResolverController::destroyNetworkCache(unsigned netId) {
166 LOG(VERBOSE) << __func__ << ": netId = " << netId;
167
168 resolv_delete_cache_for_net(netId);
169 mDns64Configuration.stopPrefixDiscovery(netId);
170 PrivateDnsConfiguration::getInstance().clear(netId);
171 if (isDoHEnabled()) PrivateDnsConfiguration::getInstance().clearDoh(netId);
172
173 // Don't get this instance in PrivateDnsConfiguration. It's probe to deadlock.
174 DnsTlsDispatcher::getInstance().forceCleanup(netId);
175 }
176
createNetworkCache(unsigned netId)177 int ResolverController::createNetworkCache(unsigned netId) {
178 LOG(VERBOSE) << __func__ << ": netId = " << netId;
179
180 return resolv_create_cache_for_net(netId);
181 }
182
flushNetworkCache(unsigned netId)183 int ResolverController::flushNetworkCache(unsigned netId) {
184 LOG(VERBOSE) << __func__ << ": netId = " << netId;
185 return resolv_flush_cache_for_net(netId);
186 }
187
setResolverConfiguration(const ResolverParamsParcel & resolverParams)188 int ResolverController::setResolverConfiguration(const ResolverParamsParcel& resolverParams) {
189 using aidl::android::net::IDnsResolver;
190
191 if (!has_named_cache(resolverParams.netId)) {
192 return -ENOENT;
193 }
194
195 // Expect to get the mark with system permission.
196 android_net_context netcontext;
197 gResNetdCallbacks.get_network_context(resolverParams.netId, 0 /* uid */, &netcontext);
198
199 // Allow at most MAXNS private DNS servers in a network to prevent too many broken servers.
200 std::vector<std::string> tlsServers = resolverParams.tlsServers;
201 if (tlsServers.size() > MAXNS) {
202 tlsServers.resize(MAXNS);
203 }
204
205 // Use app_mark for DoT connection. Using dns_mark might result in reaching the DoT servers
206 // through a different network. For example, on a VPN with no DNS servers (Do53), if the VPN
207 // applies to UID 0, dns_mark is assigned for default network rathan the VPN. (note that it's
208 // possible that a VPN doesn't have any DNS servers but DoT servers in DNS strict mode)
209 auto& privateDnsConfiguration = PrivateDnsConfiguration::getInstance();
210 int err = privateDnsConfiguration.set(resolverParams.netId, netcontext.app_mark, tlsServers,
211 resolverParams.tlsName, resolverParams.caCertificate);
212
213 if (err != 0) {
214 return err;
215 }
216
217 if (err = resolv_stats_set_addrs(resolverParams.netId, PROTO_DOT, tlsServers, 853);
218 err != 0) {
219 return err;
220 }
221
222 if (is_mdns_supported_transport_types(resolverParams.transportTypes)) {
223 if (err = resolv_stats_set_addrs(resolverParams.netId, PROTO_MDNS,
224 {"ff02::fb", "224.0.0.251"}, 5353);
225 err != 0) {
226 return err;
227 }
228 }
229
230 if (isDoHEnabled()) {
231 err = privateDnsConfiguration.setDoh(resolverParams.netId, netcontext.app_mark, tlsServers,
232 resolverParams.tlsName, resolverParams.caCertificate);
233
234 if (err != 0) {
235 return err;
236 }
237 }
238
239 res_params res_params = {};
240 res_params.sample_validity = resolverParams.sampleValiditySeconds;
241 res_params.success_threshold = resolverParams.successThreshold;
242 res_params.min_samples = resolverParams.minSamples;
243 res_params.max_samples = resolverParams.maxSamples;
244 res_params.base_timeout_msec = resolverParams.baseTimeoutMsec;
245 res_params.retry_count = resolverParams.retryCount;
246
247 return resolv_set_nameservers(resolverParams.netId, resolverParams.servers,
248 resolverParams.domains, res_params,
249 resolverParams.resolverOptions, resolverParams.transportTypes);
250 }
251
getResolverInfo(int32_t netId,std::vector<std::string> * servers,std::vector<std::string> * domains,std::vector<std::string> * tlsServers,std::vector<int32_t> * params,std::vector<int32_t> * stats,std::vector<int32_t> * wait_for_pending_req_timeout_count)252 int ResolverController::getResolverInfo(int32_t netId, std::vector<std::string>* servers,
253 std::vector<std::string>* domains,
254 std::vector<std::string>* tlsServers,
255 std::vector<int32_t>* params, std::vector<int32_t>* stats,
256 std::vector<int32_t>* wait_for_pending_req_timeout_count) {
257 using aidl::android::net::IDnsResolver;
258 using android::net::ResolverStats;
259 res_params res_params;
260 std::vector<ResolverStats> res_stats;
261 int ret = getDnsInfo(netId, servers, domains, &res_params, &res_stats,
262 wait_for_pending_req_timeout_count);
263 if (ret != 0) {
264 return ret;
265 }
266
267 // Serialize the information for binder.
268 ResolverStats::encodeAll(res_stats, stats);
269
270 const auto privateDnsStatus = PrivateDnsConfiguration::getInstance().getStatus(netId);
271 for (const auto& [server, _] : privateDnsStatus.dotServersMap) {
272 tlsServers->push_back(server.toIpString());
273 }
274
275 params->resize(IDnsResolver::RESOLVER_PARAMS_COUNT);
276 (*params)[IDnsResolver::RESOLVER_PARAMS_SAMPLE_VALIDITY] = res_params.sample_validity;
277 (*params)[IDnsResolver::RESOLVER_PARAMS_SUCCESS_THRESHOLD] = res_params.success_threshold;
278 (*params)[IDnsResolver::RESOLVER_PARAMS_MIN_SAMPLES] = res_params.min_samples;
279 (*params)[IDnsResolver::RESOLVER_PARAMS_MAX_SAMPLES] = res_params.max_samples;
280 (*params)[IDnsResolver::RESOLVER_PARAMS_BASE_TIMEOUT_MSEC] = res_params.base_timeout_msec;
281 (*params)[IDnsResolver::RESOLVER_PARAMS_RETRY_COUNT] = res_params.retry_count;
282 return 0;
283 }
284
startPrefix64Discovery(int32_t netId)285 void ResolverController::startPrefix64Discovery(int32_t netId) {
286 mDns64Configuration.startPrefixDiscovery(netId);
287 }
288
stopPrefix64Discovery(int32_t netId)289 void ResolverController::stopPrefix64Discovery(int32_t netId) {
290 return mDns64Configuration.stopPrefixDiscovery(netId);
291 }
292
293 // TODO: use StatusOr<T> to wrap the result.
getPrefix64(unsigned netId,netdutils::IPPrefix * prefix)294 int ResolverController::getPrefix64(unsigned netId, netdutils::IPPrefix* prefix) {
295 netdutils::IPPrefix p = mDns64Configuration.getPrefix64(netId);
296 if (p.family() != AF_INET6 || p.length() == 0) {
297 return -ENOENT;
298 }
299 *prefix = p;
300 return 0;
301 }
302
dump(DumpWriter & dw,unsigned netId)303 void ResolverController::dump(DumpWriter& dw, unsigned netId) {
304 // No lock needed since Bionic's resolver locks all accessed data structures internally.
305 using android::net::ResolverStats;
306 std::vector<std::string> servers;
307 std::vector<std::string> domains;
308 res_params params = {};
309 std::vector<ResolverStats> stats;
310 std::vector<int32_t> wait_for_pending_req_timeout_count(1, 0);
311 time_t now = time(nullptr);
312 int rv = getDnsInfo(netId, &servers, &domains, ¶ms, &stats,
313 &wait_for_pending_req_timeout_count);
314 dw.incIndent();
315 if (rv != 0) {
316 dw.println("getDnsInfo() failed for netid %u", netId);
317 } else {
318 if (servers.empty()) {
319 dw.println("No DNS servers defined");
320 } else {
321 dw.println("DnsEvent subsampling map: " +
322 android::base::Join(resolv_cache_dump_subsampling_map(netId, false), ' '));
323 dw.println("DnsEvent subsampling map for MDNS: " +
324 android::base::Join(resolv_cache_dump_subsampling_map(netId, true), ' '));
325 dw.println(
326 "DNS servers: # IP (total, successes, errors, timeouts, internal errors, "
327 "RTT avg, last sample)");
328 dw.incIndent();
329 for (size_t i = 0; i < servers.size(); ++i) {
330 if (i < stats.size()) {
331 const ResolverStats& s = stats[i];
332 int total = s.successes + s.errors + s.timeouts + s.internal_errors;
333 if (total > 0) {
334 int time_delta = (s.last_sample_time > 0) ? now - s.last_sample_time : -1;
335 dw.println("%s (%d, %d, %d, %d, %d, %dms, %ds)%s", servers[i].c_str(),
336 total, s.successes, s.errors, s.timeouts, s.internal_errors,
337 s.rtt_avg, time_delta, s.usable ? "" : " BROKEN");
338 } else {
339 dw.println("%s <no data>", servers[i].c_str());
340 }
341 } else {
342 dw.println("%s <no stats>", servers[i].c_str());
343 }
344 }
345 dw.decIndent();
346 }
347 if (domains.empty()) {
348 dw.println("No search domains defined");
349 } else {
350 std::string domains_str = android::base::Join(domains, ", ");
351 dw.println("search domains: %s", domains_str.c_str());
352 }
353 if (params.sample_validity != 0) {
354 dw.println(
355 "DNS parameters: sample validity = %us, success threshold = %u%%, "
356 "samples (min, max) = (%u, %u), base_timeout = %dmsec, retry count = "
357 "%dtimes",
358 params.sample_validity, params.success_threshold, params.min_samples,
359 params.max_samples, params.base_timeout_msec, params.retry_count);
360 }
361
362 mDns64Configuration.dump(dw, netId);
363 const auto privateDnsStatus = PrivateDnsConfiguration::getInstance().getStatus(netId);
364 dw.println("Private DNS mode: %s", getPrivateDnsModeString(privateDnsStatus.mode));
365 if (privateDnsStatus.dotServersMap.size() == 0) {
366 dw.println("No Private DNS servers configured");
367 } else {
368 dw.println("Private DNS configuration (%u entries)",
369 static_cast<uint32_t>(privateDnsStatus.dotServersMap.size()));
370 dw.incIndent();
371 for (const auto& [server, validation] : privateDnsStatus.dotServersMap) {
372 dw.println("%s name{%s} status{%s}", server.toIpString().c_str(),
373 server.name.c_str(), validationStatusToString(validation));
374 }
375 dw.decIndent();
376 }
377 dw.println("Concurrent DNS query timeout: %d", wait_for_pending_req_timeout_count[0]);
378 resolv_netconfig_dump(dw, netId);
379 }
380 dw.decIndent();
381 }
382
383 } // namespace net
384 } // namespace android
385