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1 // Copyright 2012 The Chromium Authors
2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file.
4 
5 #include "net/dns/mock_host_resolver.h"
6 
7 #include <stdint.h>
8 
9 #include <memory>
10 #include <string>
11 #include <utility>
12 #include <vector>
13 
14 #include "base/check_op.h"
15 #include "base/functional/bind.h"
16 #include "base/functional/callback_helpers.h"
17 #include "base/location.h"
18 #include "base/logging.h"
19 #include "base/memory/ptr_util.h"
20 #include "base/memory/raw_ptr.h"
21 #include "base/memory/ref_counted.h"
22 #include "base/no_destructor.h"
23 #include "base/notreached.h"
24 #include "base/strings/pattern.h"
25 #include "base/strings/string_piece.h"
26 #include "base/strings/string_split.h"
27 #include "base/strings/string_util.h"
28 #include "base/task/single_thread_task_runner.h"
29 #include "base/threading/platform_thread.h"
30 #include "base/time/default_tick_clock.h"
31 #include "base/time/tick_clock.h"
32 #include "base/time/time.h"
33 #include "base/types/optional_util.h"
34 #include "build/build_config.h"
35 #include "net/base/address_family.h"
36 #include "net/base/address_list.h"
37 #include "net/base/host_port_pair.h"
38 #include "net/base/ip_address.h"
39 #include "net/base/ip_endpoint.h"
40 #include "net/base/net_errors.h"
41 #include "net/base/net_export.h"
42 #include "net/base/network_anonymization_key.h"
43 #include "net/base/test_completion_callback.h"
44 #include "net/dns/dns_alias_utility.h"
45 #include "net/dns/dns_names_util.h"
46 #include "net/dns/dns_util.h"
47 #include "net/dns/host_cache.h"
48 #include "net/dns/host_resolver.h"
49 #include "net/dns/host_resolver_manager.h"
50 #include "net/dns/host_resolver_system_task.h"
51 #include "net/dns/https_record_rdata.h"
52 #include "net/dns/public/dns_query_type.h"
53 #include "net/dns/public/host_resolver_results.h"
54 #include "net/dns/public/host_resolver_source.h"
55 #include "net/dns/public/mdns_listener_update_type.h"
56 #include "net/dns/public/resolve_error_info.h"
57 #include "net/dns/public/secure_dns_policy.h"
58 #include "net/log/net_log_with_source.h"
59 #include "net/url_request/url_request_context.h"
60 #include "third_party/abseil-cpp/absl/types/optional.h"
61 #include "third_party/abseil-cpp/absl/types/variant.h"
62 #include "url/scheme_host_port.h"
63 
64 #if BUILDFLAG(IS_WIN)
65 #include "net/base/winsock_init.h"
66 #endif
67 
68 namespace net {
69 
70 namespace {
71 
72 // Cache size for the MockCachingHostResolver.
73 const unsigned kMaxCacheEntries = 100;
74 // TTL for the successful resolutions. Failures are not cached.
75 const unsigned kCacheEntryTTLSeconds = 60;
76 
GetCacheHost(const HostResolver::Host & endpoint)77 absl::variant<url::SchemeHostPort, std::string> GetCacheHost(
78     const HostResolver::Host& endpoint) {
79   if (endpoint.HasScheme()) {
80     return endpoint.AsSchemeHostPort();
81   }
82 
83   return endpoint.GetHostname();
84 }
85 
CreateCacheEntry(base::StringPiece canonical_name,const std::vector<HostResolverEndpointResult> & endpoint_results,const std::set<std::string> & aliases)86 absl::optional<HostCache::Entry> CreateCacheEntry(
87     base::StringPiece canonical_name,
88     const std::vector<HostResolverEndpointResult>& endpoint_results,
89     const std::set<std::string>& aliases) {
90   absl::optional<std::vector<net::IPEndPoint>> ip_endpoints;
91   std::multimap<HttpsRecordPriority, ConnectionEndpointMetadata>
92       endpoint_metadatas;
93   for (const auto& endpoint_result : endpoint_results) {
94     if (!ip_endpoints) {
95       ip_endpoints = endpoint_result.ip_endpoints;
96     } else {
97       // TODO(crbug.com/1264933): Support caching different IP endpoints
98       // resutls.
99       CHECK(*ip_endpoints == endpoint_result.ip_endpoints)
100           << "Currently caching MockHostResolver only supports same IP "
101              "endpoints results.";
102     }
103 
104     if (!endpoint_result.metadata.supported_protocol_alpns.empty()) {
105       endpoint_metadatas.emplace(/*priority=*/1, endpoint_result.metadata);
106     }
107   }
108   DCHECK(ip_endpoints);
109   auto endpoint_entry = HostCache::Entry(OK, *ip_endpoints, aliases,
110                                          HostCache::Entry::SOURCE_UNKNOWN);
111   endpoint_entry.set_canonical_names(std::set{std::string(canonical_name)});
112   if (endpoint_metadatas.empty()) {
113     return endpoint_entry;
114   }
115   return HostCache::Entry::MergeEntries(
116       HostCache::Entry(OK, std::move(endpoint_metadatas),
117                        HostCache::Entry::SOURCE_UNKNOWN),
118       endpoint_entry);
119 }
120 }  // namespace
121 
ParseAddressList(base::StringPiece host_list,std::vector<net::IPEndPoint> * ip_endpoints)122 int ParseAddressList(base::StringPiece host_list,
123                      std::vector<net::IPEndPoint>* ip_endpoints) {
124   ip_endpoints->clear();
125   for (base::StringPiece address : base::SplitStringPiece(
126            host_list, ",", base::TRIM_WHITESPACE, base::SPLIT_WANT_ALL)) {
127     IPAddress ip_address;
128     if (!ip_address.AssignFromIPLiteral(address)) {
129       LOG(WARNING) << "Not a supported IP literal: " << address;
130       return ERR_UNEXPECTED;
131     }
132     ip_endpoints->push_back(IPEndPoint(ip_address, 0));
133   }
134   return OK;
135 }
136 
137 class MockHostResolverBase::RequestImpl
138     : public HostResolver::ResolveHostRequest {
139  public:
RequestImpl(Host request_endpoint,const NetworkAnonymizationKey & network_anonymization_key,const absl::optional<ResolveHostParameters> & optional_parameters,base::WeakPtr<MockHostResolverBase> resolver)140   RequestImpl(Host request_endpoint,
141               const NetworkAnonymizationKey& network_anonymization_key,
142               const absl::optional<ResolveHostParameters>& optional_parameters,
143               base::WeakPtr<MockHostResolverBase> resolver)
144       : request_endpoint_(std::move(request_endpoint)),
145         network_anonymization_key_(network_anonymization_key),
146         parameters_(optional_parameters ? optional_parameters.value()
147                                         : ResolveHostParameters()),
148         priority_(parameters_.initial_priority),
149         host_resolver_flags_(ParametersToHostResolverFlags(parameters_)),
150         resolve_error_info_(ResolveErrorInfo(ERR_IO_PENDING)),
151         resolver_(resolver) {}
152 
153   RequestImpl(const RequestImpl&) = delete;
154   RequestImpl& operator=(const RequestImpl&) = delete;
155 
~RequestImpl()156   ~RequestImpl() override {
157     if (id_ > 0) {
158       if (resolver_)
159         resolver_->DetachRequest(id_);
160       id_ = 0;
161       resolver_ = nullptr;
162     }
163   }
164 
DetachFromResolver()165   void DetachFromResolver() {
166     id_ = 0;
167     resolver_ = nullptr;
168   }
169 
Start(CompletionOnceCallback callback)170   int Start(CompletionOnceCallback callback) override {
171     DCHECK(callback);
172     // Start() may only be called once per request.
173     DCHECK_EQ(0u, id_);
174     DCHECK(!complete_);
175     DCHECK(!callback_);
176     // Parent HostResolver must still be alive to call Start().
177     DCHECK(resolver_);
178 
179     int rv = resolver_->Resolve(this);
180     DCHECK(!complete_);
181     if (rv == ERR_IO_PENDING) {
182       DCHECK_GT(id_, 0u);
183       callback_ = std::move(callback);
184     } else {
185       DCHECK_EQ(0u, id_);
186       complete_ = true;
187     }
188 
189     return rv;
190   }
191 
GetAddressResults() const192   const AddressList* GetAddressResults() const override {
193     DCHECK(complete_);
194     return base::OptionalToPtr(address_results_);
195   }
196 
GetEndpointResults() const197   const std::vector<HostResolverEndpointResult>* GetEndpointResults()
198       const override {
199     DCHECK(complete_);
200     return base::OptionalToPtr(endpoint_results_);
201   }
202 
GetTextResults() const203   const std::vector<std::string>* GetTextResults() const override {
204     DCHECK(complete_);
205     static const base::NoDestructor<std::vector<std::string>> empty_result;
206     return empty_result.get();
207   }
208 
GetHostnameResults() const209   const std::vector<HostPortPair>* GetHostnameResults() const override {
210     DCHECK(complete_);
211     static const base::NoDestructor<std::vector<HostPortPair>> empty_result;
212     return empty_result.get();
213   }
214 
GetDnsAliasResults() const215   const std::set<std::string>* GetDnsAliasResults() const override {
216     DCHECK(complete_);
217     return base::OptionalToPtr(fixed_up_dns_alias_results_);
218   }
219 
GetResolveErrorInfo() const220   net::ResolveErrorInfo GetResolveErrorInfo() const override {
221     DCHECK(complete_);
222     return resolve_error_info_;
223   }
224 
GetStaleInfo() const225   const absl::optional<HostCache::EntryStaleness>& GetStaleInfo()
226       const override {
227     DCHECK(complete_);
228     return staleness_;
229   }
230 
ChangeRequestPriority(RequestPriority priority)231   void ChangeRequestPriority(RequestPriority priority) override {
232     priority_ = priority;
233   }
234 
SetError(int error)235   void SetError(int error) {
236     // Should only be called before request is marked completed.
237     DCHECK(!complete_);
238     resolve_error_info_ = ResolveErrorInfo(error);
239   }
240 
241   // Sets `endpoint_results_`, `fixed_up_dns_alias_results_`,
242   // `address_results_` and `staleness_` after fixing them up.
243   // Also sets `error` to OK.
SetEndpointResults(std::vector<HostResolverEndpointResult> endpoint_results,std::set<std::string> aliases,absl::optional<HostCache::EntryStaleness> staleness)244   void SetEndpointResults(
245       std::vector<HostResolverEndpointResult> endpoint_results,
246       std::set<std::string> aliases,
247       absl::optional<HostCache::EntryStaleness> staleness) {
248     DCHECK(!complete_);
249     DCHECK(!endpoint_results_);
250     DCHECK(!parameters_.is_speculative);
251 
252     endpoint_results_ = std::move(endpoint_results);
253     for (auto& result : *endpoint_results_) {
254       result.ip_endpoints = FixupEndPoints(result.ip_endpoints);
255     }
256 
257     fixed_up_dns_alias_results_ = FixupAliases(aliases);
258 
259     // `HostResolver` implementations are expected to provide an `AddressList`
260     // result whenever `HostResolverEndpointResult` is also available.
261     address_results_ = EndpointResultToAddressList(
262         *endpoint_results_, *fixed_up_dns_alias_results_);
263 
264     staleness_ = std::move(staleness);
265 
266     SetError(OK);
267   }
268 
OnAsyncCompleted(size_t id,int error)269   void OnAsyncCompleted(size_t id, int error) {
270     DCHECK_EQ(id_, id);
271     id_ = 0;
272 
273     // Check that error information has been set and that the top-level error
274     // code is valid.
275     DCHECK(resolve_error_info_.error != ERR_IO_PENDING);
276     DCHECK(error == OK || error == ERR_NAME_NOT_RESOLVED ||
277            error == ERR_DNS_NAME_HTTPS_ONLY);
278 
279     DCHECK(!complete_);
280     complete_ = true;
281 
282     DCHECK(callback_);
283     std::move(callback_).Run(error);
284   }
285 
request_endpoint() const286   const Host& request_endpoint() const { return request_endpoint_; }
287 
network_anonymization_key() const288   const NetworkAnonymizationKey& network_anonymization_key() const {
289     return network_anonymization_key_;
290   }
291 
parameters() const292   const ResolveHostParameters& parameters() const { return parameters_; }
293 
host_resolver_flags() const294   int host_resolver_flags() const { return host_resolver_flags_; }
295 
id()296   size_t id() { return id_; }
297 
priority() const298   RequestPriority priority() const { return priority_; }
299 
set_id(size_t id)300   void set_id(size_t id) {
301     DCHECK_GT(id, 0u);
302     DCHECK_EQ(0u, id_);
303 
304     id_ = id;
305   }
306 
complete()307   bool complete() { return complete_; }
308 
309   // Similar get GetAddressResults() and GetResolveErrorInfo(), but only exposed
310   // through the HostResolver::ResolveHostRequest interface, and don't have the
311   // DCHECKs that `complete_` is true.
address_results() const312   const absl::optional<AddressList>& address_results() const {
313     return address_results_;
314   }
resolve_error_info() const315   ResolveErrorInfo resolve_error_info() const { return resolve_error_info_; }
316 
317  private:
FixupEndPoints(const std::vector<IPEndPoint> & endpoints)318   std::vector<IPEndPoint> FixupEndPoints(
319       const std::vector<IPEndPoint>& endpoints) {
320     std::vector<IPEndPoint> corrected;
321     for (const IPEndPoint& endpoint : endpoints) {
322       DCHECK_NE(endpoint.GetFamily(), ADDRESS_FAMILY_UNSPECIFIED);
323       if (parameters_.dns_query_type == DnsQueryType::UNSPECIFIED ||
324           parameters_.dns_query_type ==
325               AddressFamilyToDnsQueryType(endpoint.GetFamily())) {
326         if (endpoint.port() == 0) {
327           corrected.emplace_back(endpoint.address(),
328                                  request_endpoint_.GetPort());
329         } else {
330           corrected.push_back(endpoint);
331         }
332       }
333     }
334     return corrected;
335   }
FixupAliases(const std::set<std::string> aliases)336   std::set<std::string> FixupAliases(const std::set<std::string> aliases) {
337     if (aliases.empty())
338       return std::set<std::string>{
339           std::string(request_endpoint_.GetHostnameWithoutBrackets())};
340     return aliases;
341   }
342 
343   const Host request_endpoint_;
344   const NetworkAnonymizationKey network_anonymization_key_;
345   const ResolveHostParameters parameters_;
346   RequestPriority priority_;
347   int host_resolver_flags_;
348 
349   absl::optional<AddressList> address_results_;
350   absl::optional<std::vector<HostResolverEndpointResult>> endpoint_results_;
351   absl::optional<std::set<std::string>> fixed_up_dns_alias_results_;
352   absl::optional<HostCache::EntryStaleness> staleness_;
353   ResolveErrorInfo resolve_error_info_;
354 
355   // Used while stored with the resolver for async resolution.  Otherwise 0.
356   size_t id_ = 0;
357 
358   CompletionOnceCallback callback_;
359   // Use a WeakPtr as the resolver may be destroyed while there are still
360   // outstanding request objects.
361   base::WeakPtr<MockHostResolverBase> resolver_;
362   bool complete_ = false;
363 };
364 
365 class MockHostResolverBase::ProbeRequestImpl
366     : public HostResolver::ProbeRequest {
367  public:
ProbeRequestImpl(base::WeakPtr<MockHostResolverBase> resolver)368   explicit ProbeRequestImpl(base::WeakPtr<MockHostResolverBase> resolver)
369       : resolver_(std::move(resolver)) {}
370 
371   ProbeRequestImpl(const ProbeRequestImpl&) = delete;
372   ProbeRequestImpl& operator=(const ProbeRequestImpl&) = delete;
373 
~ProbeRequestImpl()374   ~ProbeRequestImpl() override {
375     if (resolver_) {
376       resolver_->state_->ClearDohProbeRequestIfMatching(this);
377     }
378   }
379 
Start()380   int Start() override {
381     DCHECK(resolver_);
382     resolver_->state_->set_doh_probe_request(this);
383 
384     return ERR_IO_PENDING;
385   }
386 
387  private:
388   base::WeakPtr<MockHostResolverBase> resolver_;
389 };
390 
391 class MockHostResolverBase::MdnsListenerImpl
392     : public HostResolver::MdnsListener {
393  public:
MdnsListenerImpl(const HostPortPair & host,DnsQueryType query_type,base::WeakPtr<MockHostResolverBase> resolver)394   MdnsListenerImpl(const HostPortPair& host,
395                    DnsQueryType query_type,
396                    base::WeakPtr<MockHostResolverBase> resolver)
397       : host_(host), query_type_(query_type), resolver_(resolver) {
398     DCHECK_NE(DnsQueryType::UNSPECIFIED, query_type_);
399     DCHECK(resolver_);
400   }
401 
~MdnsListenerImpl()402   ~MdnsListenerImpl() override {
403     if (resolver_)
404       resolver_->RemoveCancelledListener(this);
405   }
406 
Start(Delegate * delegate)407   int Start(Delegate* delegate) override {
408     DCHECK(delegate);
409     DCHECK(!delegate_);
410     DCHECK(resolver_);
411 
412     delegate_ = delegate;
413     resolver_->AddListener(this);
414 
415     return OK;
416   }
417 
TriggerAddressResult(MdnsListenerUpdateType update_type,IPEndPoint address)418   void TriggerAddressResult(MdnsListenerUpdateType update_type,
419                             IPEndPoint address) {
420     delegate_->OnAddressResult(update_type, query_type_, std::move(address));
421   }
422 
TriggerTextResult(MdnsListenerUpdateType update_type,std::vector<std::string> text_records)423   void TriggerTextResult(MdnsListenerUpdateType update_type,
424                          std::vector<std::string> text_records) {
425     delegate_->OnTextResult(update_type, query_type_, std::move(text_records));
426   }
427 
TriggerHostnameResult(MdnsListenerUpdateType update_type,HostPortPair host)428   void TriggerHostnameResult(MdnsListenerUpdateType update_type,
429                              HostPortPair host) {
430     delegate_->OnHostnameResult(update_type, query_type_, std::move(host));
431   }
432 
TriggerUnhandledResult(MdnsListenerUpdateType update_type)433   void TriggerUnhandledResult(MdnsListenerUpdateType update_type) {
434     delegate_->OnUnhandledResult(update_type, query_type_);
435   }
436 
host() const437   const HostPortPair& host() const { return host_; }
query_type() const438   DnsQueryType query_type() const { return query_type_; }
439 
440  private:
441   const HostPortPair host_;
442   const DnsQueryType query_type_;
443 
444   raw_ptr<Delegate> delegate_ = nullptr;
445 
446   // Use a WeakPtr as the resolver may be destroyed while there are still
447   // outstanding listener objects.
448   base::WeakPtr<MockHostResolverBase> resolver_;
449 };
450 
451 MockHostResolverBase::RuleResolver::RuleKey::RuleKey() = default;
452 
453 MockHostResolverBase::RuleResolver::RuleKey::~RuleKey() = default;
454 
455 MockHostResolverBase::RuleResolver::RuleKey::RuleKey(const RuleKey&) = default;
456 
457 MockHostResolverBase::RuleResolver::RuleKey&
458 MockHostResolverBase::RuleResolver::RuleKey::operator=(const RuleKey&) =
459     default;
460 
461 MockHostResolverBase::RuleResolver::RuleKey::RuleKey(RuleKey&&) = default;
462 
463 MockHostResolverBase::RuleResolver::RuleKey&
464 MockHostResolverBase::RuleResolver::RuleKey::operator=(RuleKey&&) = default;
465 
466 MockHostResolverBase::RuleResolver::RuleResult::RuleResult() = default;
467 
RuleResult(std::vector<HostResolverEndpointResult> endpoints,std::set<std::string> aliases)468 MockHostResolverBase::RuleResolver::RuleResult::RuleResult(
469     std::vector<HostResolverEndpointResult> endpoints,
470     std::set<std::string> aliases)
471     : endpoints(std::move(endpoints)), aliases(std::move(aliases)) {}
472 
473 MockHostResolverBase::RuleResolver::RuleResult::~RuleResult() = default;
474 
475 MockHostResolverBase::RuleResolver::RuleResult::RuleResult(const RuleResult&) =
476     default;
477 
478 MockHostResolverBase::RuleResolver::RuleResult&
479 MockHostResolverBase::RuleResolver::RuleResult::operator=(const RuleResult&) =
480     default;
481 
482 MockHostResolverBase::RuleResolver::RuleResult::RuleResult(RuleResult&&) =
483     default;
484 
485 MockHostResolverBase::RuleResolver::RuleResult&
486 MockHostResolverBase::RuleResolver::RuleResult::operator=(RuleResult&&) =
487     default;
488 
RuleResolver(absl::optional<RuleResultOrError> default_result)489 MockHostResolverBase::RuleResolver::RuleResolver(
490     absl::optional<RuleResultOrError> default_result)
491     : default_result_(std::move(default_result)) {}
492 
493 MockHostResolverBase::RuleResolver::~RuleResolver() = default;
494 
495 MockHostResolverBase::RuleResolver::RuleResolver(const RuleResolver&) = default;
496 
497 MockHostResolverBase::RuleResolver&
498 MockHostResolverBase::RuleResolver::operator=(const RuleResolver&) = default;
499 
500 MockHostResolverBase::RuleResolver::RuleResolver(RuleResolver&&) = default;
501 
502 MockHostResolverBase::RuleResolver&
503 MockHostResolverBase::RuleResolver::operator=(RuleResolver&&) = default;
504 
505 const MockHostResolverBase::RuleResolver::RuleResultOrError&
Resolve(const Host & request_endpoint,DnsQueryTypeSet request_types,HostResolverSource request_source) const506 MockHostResolverBase::RuleResolver::Resolve(
507     const Host& request_endpoint,
508     DnsQueryTypeSet request_types,
509     HostResolverSource request_source) const {
510   for (const auto& rule : rules_) {
511     const RuleKey& key = rule.first;
512     const RuleResultOrError& result = rule.second;
513 
514     if (absl::holds_alternative<RuleKey::NoScheme>(key.scheme) &&
515         request_endpoint.HasScheme()) {
516       continue;
517     }
518 
519     if (key.port.has_value() &&
520         key.port.value() != request_endpoint.GetPort()) {
521       continue;
522     }
523 
524     DCHECK(!key.query_type.has_value() ||
525            key.query_type.value() != DnsQueryType::UNSPECIFIED);
526     if (key.query_type.has_value() &&
527         !request_types.Has(key.query_type.value())) {
528       continue;
529     }
530 
531     if (key.query_source.has_value() &&
532         request_source != key.query_source.value()) {
533       continue;
534     }
535 
536     if (absl::holds_alternative<RuleKey::Scheme>(key.scheme) &&
537         (!request_endpoint.HasScheme() ||
538          request_endpoint.GetScheme() !=
539              absl::get<RuleKey::Scheme>(key.scheme))) {
540       continue;
541     }
542 
543     if (!base::MatchPattern(request_endpoint.GetHostnameWithoutBrackets(),
544                             key.hostname_pattern)) {
545       continue;
546     }
547 
548     return result;
549   }
550 
551   if (default_result_)
552     return default_result_.value();
553 
554   NOTREACHED() << "Request " << request_endpoint.GetHostname()
555                << " did not match any MockHostResolver rules.";
556   static const RuleResultOrError kUnexpected = ERR_UNEXPECTED;
557   return kUnexpected;
558 }
559 
ClearRules()560 void MockHostResolverBase::RuleResolver::ClearRules() {
561   rules_.clear();
562 }
563 
564 // static
565 MockHostResolverBase::RuleResolver::RuleResultOrError
GetLocalhostResult()566 MockHostResolverBase::RuleResolver::GetLocalhostResult() {
567   HostResolverEndpointResult endpoint;
568   endpoint.ip_endpoints = {IPEndPoint(IPAddress::IPv4Localhost(), /*port=*/0)};
569   return RuleResult(std::vector{endpoint});
570 }
571 
AddRule(RuleKey key,RuleResultOrError result)572 void MockHostResolverBase::RuleResolver::AddRule(RuleKey key,
573                                                  RuleResultOrError result) {
574   // Literals are always resolved to themselves by MockHostResolverBase,
575   // consequently we do not support remapping them.
576   IPAddress ip_address;
577   DCHECK(!ip_address.AssignFromIPLiteral(key.hostname_pattern));
578 
579   CHECK(rules_.emplace(std::move(key), std::move(result)).second)
580       << "Duplicate rule key";
581 }
582 
AddRule(RuleKey key,base::StringPiece ip_literal)583 void MockHostResolverBase::RuleResolver::AddRule(RuleKey key,
584                                                  base::StringPiece ip_literal) {
585   std::vector<HostResolverEndpointResult> endpoints;
586   endpoints.emplace_back();
587   CHECK_EQ(ParseAddressList(ip_literal, &endpoints[0].ip_endpoints), OK);
588   AddRule(std::move(key), RuleResult(std::move(endpoints)));
589 }
590 
AddRule(base::StringPiece hostname_pattern,RuleResultOrError result)591 void MockHostResolverBase::RuleResolver::AddRule(
592     base::StringPiece hostname_pattern,
593     RuleResultOrError result) {
594   RuleKey key;
595   key.hostname_pattern = std::string(hostname_pattern);
596   AddRule(std::move(key), std::move(result));
597 }
598 
AddRule(base::StringPiece hostname_pattern,base::StringPiece ip_literal)599 void MockHostResolverBase::RuleResolver::AddRule(
600     base::StringPiece hostname_pattern,
601     base::StringPiece ip_literal) {
602   std::vector<HostResolverEndpointResult> endpoints;
603   endpoints.emplace_back();
604   CHECK_EQ(ParseAddressList(ip_literal, &endpoints[0].ip_endpoints), OK);
605   AddRule(hostname_pattern, RuleResult(std::move(endpoints)));
606 }
607 
AddRule(base::StringPiece hostname_pattern,Error error)608 void MockHostResolverBase::RuleResolver::AddRule(
609     base::StringPiece hostname_pattern,
610     Error error) {
611   RuleKey key;
612   key.hostname_pattern = std::string(hostname_pattern);
613 
614   AddRule(std::move(key), error);
615 }
616 
AddIPLiteralRule(base::StringPiece hostname_pattern,base::StringPiece ip_literal,base::StringPiece canonical_name)617 void MockHostResolverBase::RuleResolver::AddIPLiteralRule(
618     base::StringPiece hostname_pattern,
619     base::StringPiece ip_literal,
620     base::StringPiece canonical_name) {
621   RuleKey key;
622   key.hostname_pattern = std::string(hostname_pattern);
623 
624   std::set<std::string> aliases;
625   if (!canonical_name.empty())
626     aliases.emplace(canonical_name);
627 
628   std::vector<HostResolverEndpointResult> endpoints;
629   endpoints.emplace_back();
630   CHECK_EQ(ParseAddressList(ip_literal, &endpoints[0].ip_endpoints), OK);
631   AddRule(std::move(key), RuleResult(std::move(endpoints), std::move(aliases)));
632 }
633 
AddIPLiteralRuleWithDnsAliases(base::StringPiece hostname_pattern,base::StringPiece ip_literal,std::vector<std::string> dns_aliases)634 void MockHostResolverBase::RuleResolver::AddIPLiteralRuleWithDnsAliases(
635     base::StringPiece hostname_pattern,
636     base::StringPiece ip_literal,
637     std::vector<std::string> dns_aliases) {
638   std::vector<HostResolverEndpointResult> endpoints;
639   endpoints.emplace_back();
640   CHECK_EQ(ParseAddressList(ip_literal, &endpoints[0].ip_endpoints), OK);
641   AddRule(hostname_pattern,
642           RuleResult(
643               std::move(endpoints),
644               std::set<std::string>(dns_aliases.begin(), dns_aliases.end())));
645 }
646 
AddIPLiteralRuleWithDnsAliases(base::StringPiece hostname_pattern,base::StringPiece ip_literal,std::set<std::string> dns_aliases)647 void MockHostResolverBase::RuleResolver::AddIPLiteralRuleWithDnsAliases(
648     base::StringPiece hostname_pattern,
649     base::StringPiece ip_literal,
650     std::set<std::string> dns_aliases) {
651   std::vector<std::string> aliases_vector;
652   base::ranges::move(dns_aliases, std::back_inserter(aliases_vector));
653 
654   AddIPLiteralRuleWithDnsAliases(hostname_pattern, ip_literal,
655                                  std::move(aliases_vector));
656 }
657 
AddSimulatedFailure(base::StringPiece hostname_pattern)658 void MockHostResolverBase::RuleResolver::AddSimulatedFailure(
659     base::StringPiece hostname_pattern) {
660   AddRule(hostname_pattern, ERR_NAME_NOT_RESOLVED);
661 }
662 
AddSimulatedTimeoutFailure(base::StringPiece hostname_pattern)663 void MockHostResolverBase::RuleResolver::AddSimulatedTimeoutFailure(
664     base::StringPiece hostname_pattern) {
665   AddRule(hostname_pattern, ERR_DNS_TIMED_OUT);
666 }
667 
AddRuleWithFlags(base::StringPiece host_pattern,base::StringPiece ip_literal,HostResolverFlags,std::vector<std::string> dns_aliases)668 void MockHostResolverBase::RuleResolver::AddRuleWithFlags(
669     base::StringPiece host_pattern,
670     base::StringPiece ip_literal,
671     HostResolverFlags /*flags*/,
672     std::vector<std::string> dns_aliases) {
673   std::vector<HostResolverEndpointResult> endpoints;
674   endpoints.emplace_back();
675   CHECK_EQ(ParseAddressList(ip_literal, &endpoints[0].ip_endpoints), OK);
676   AddRule(host_pattern, RuleResult(std::move(endpoints),
677                                    std::set<std::string>(dns_aliases.begin(),
678                                                          dns_aliases.end())));
679 }
680 
681 MockHostResolverBase::State::State() = default;
682 MockHostResolverBase::State::~State() = default;
683 
~MockHostResolverBase()684 MockHostResolverBase::~MockHostResolverBase() {
685   DCHECK_CALLED_ON_VALID_THREAD(thread_checker_);
686 
687   // Sanity check that pending requests are always cleaned up, by waiting for
688   // completion, manually cancelling, or calling OnShutdown().
689   DCHECK(!state_->has_pending_requests());
690 }
691 
OnShutdown()692 void MockHostResolverBase::OnShutdown() {
693   DCHECK_CALLED_ON_VALID_THREAD(thread_checker_);
694 
695   // Cancel all pending requests.
696   for (auto& request : state_->mutable_requests()) {
697     request.second->DetachFromResolver();
698   }
699   state_->mutable_requests().clear();
700 
701   // Prevent future requests by clearing resolution rules and the cache.
702   rule_resolver_.ClearRules();
703   cache_ = nullptr;
704 
705   state_->ClearDohProbeRequest();
706 }
707 
708 std::unique_ptr<HostResolver::ResolveHostRequest>
CreateRequest(url::SchemeHostPort host,NetworkAnonymizationKey network_anonymization_key,NetLogWithSource net_log,absl::optional<ResolveHostParameters> optional_parameters)709 MockHostResolverBase::CreateRequest(
710     url::SchemeHostPort host,
711     NetworkAnonymizationKey network_anonymization_key,
712     NetLogWithSource net_log,
713     absl::optional<ResolveHostParameters> optional_parameters) {
714   return std::make_unique<RequestImpl>(Host(std::move(host)),
715                                        network_anonymization_key,
716                                        optional_parameters, AsWeakPtr());
717 }
718 
719 std::unique_ptr<HostResolver::ResolveHostRequest>
CreateRequest(const HostPortPair & host,const NetworkAnonymizationKey & network_anonymization_key,const NetLogWithSource & source_net_log,const absl::optional<ResolveHostParameters> & optional_parameters)720 MockHostResolverBase::CreateRequest(
721     const HostPortPair& host,
722     const NetworkAnonymizationKey& network_anonymization_key,
723     const NetLogWithSource& source_net_log,
724     const absl::optional<ResolveHostParameters>& optional_parameters) {
725   return std::make_unique<RequestImpl>(Host(host), network_anonymization_key,
726                                        optional_parameters, AsWeakPtr());
727 }
728 
729 std::unique_ptr<HostResolver::ProbeRequest>
CreateDohProbeRequest()730 MockHostResolverBase::CreateDohProbeRequest() {
731   return std::make_unique<ProbeRequestImpl>(AsWeakPtr());
732 }
733 
734 std::unique_ptr<HostResolver::MdnsListener>
CreateMdnsListener(const HostPortPair & host,DnsQueryType query_type)735 MockHostResolverBase::CreateMdnsListener(const HostPortPair& host,
736                                          DnsQueryType query_type) {
737   return std::make_unique<MdnsListenerImpl>(host, query_type, AsWeakPtr());
738 }
739 
GetHostCache()740 HostCache* MockHostResolverBase::GetHostCache() {
741   return cache_.get();
742 }
743 
LoadIntoCache(absl::variant<url::SchemeHostPort,HostPortPair> endpoint,const NetworkAnonymizationKey & network_anonymization_key,const absl::optional<ResolveHostParameters> & optional_parameters)744 int MockHostResolverBase::LoadIntoCache(
745     absl::variant<url::SchemeHostPort, HostPortPair> endpoint,
746     const NetworkAnonymizationKey& network_anonymization_key,
747     const absl::optional<ResolveHostParameters>& optional_parameters) {
748   return LoadIntoCache(Host(std::move(endpoint)), network_anonymization_key,
749                        optional_parameters);
750 }
751 
LoadIntoCache(const Host & endpoint,const NetworkAnonymizationKey & network_anonymization_key,const absl::optional<ResolveHostParameters> & optional_parameters)752 int MockHostResolverBase::LoadIntoCache(
753     const Host& endpoint,
754     const NetworkAnonymizationKey& network_anonymization_key,
755     const absl::optional<ResolveHostParameters>& optional_parameters) {
756   DCHECK_CALLED_ON_VALID_THREAD(thread_checker_);
757   DCHECK(cache_);
758 
759   ResolveHostParameters parameters =
760       optional_parameters.value_or(ResolveHostParameters());
761 
762   std::vector<HostResolverEndpointResult> endpoints;
763   std::set<std::string> aliases;
764   absl::optional<HostCache::EntryStaleness> stale_info;
765   int rv = ResolveFromIPLiteralOrCache(
766       endpoint, network_anonymization_key, parameters.dns_query_type,
767       ParametersToHostResolverFlags(parameters), parameters.source,
768       parameters.cache_usage, &endpoints, &aliases, &stale_info);
769   if (rv != ERR_DNS_CACHE_MISS) {
770     // Request already in cache (or IP literal). No need to load it.
771     return rv;
772   }
773 
774   // Just like the real resolver, refuse to do anything with invalid
775   // hostnames.
776   if (!dns_names_util::IsValidDnsName(endpoint.GetHostnameWithoutBrackets()))
777     return ERR_NAME_NOT_RESOLVED;
778 
779   RequestImpl request(endpoint, network_anonymization_key, optional_parameters,
780                       AsWeakPtr());
781   return DoSynchronousResolution(request);
782 }
783 
ResolveAllPending()784 void MockHostResolverBase::ResolveAllPending() {
785   DCHECK_CALLED_ON_VALID_THREAD(thread_checker_);
786   DCHECK(ondemand_mode_);
787   for (auto& [id, request] : state_->mutable_requests()) {
788     base::SingleThreadTaskRunner::GetCurrentDefault()->PostTask(
789         FROM_HERE,
790         base::BindOnce(&MockHostResolverBase::ResolveNow, AsWeakPtr(), id));
791   }
792 }
793 
last_id()794 size_t MockHostResolverBase::last_id() {
795   if (!has_pending_requests())
796     return 0;
797   return state_->mutable_requests().rbegin()->first;
798 }
799 
ResolveNow(size_t id)800 void MockHostResolverBase::ResolveNow(size_t id) {
801   auto it = state_->mutable_requests().find(id);
802   if (it == state_->mutable_requests().end())
803     return;  // was canceled
804 
805   RequestImpl* req = it->second;
806   state_->mutable_requests().erase(it);
807 
808   int error = DoSynchronousResolution(*req);
809   req->OnAsyncCompleted(id, error);
810 }
811 
DetachRequest(size_t id)812 void MockHostResolverBase::DetachRequest(size_t id) {
813   auto it = state_->mutable_requests().find(id);
814   CHECK(it != state_->mutable_requests().end());
815   state_->mutable_requests().erase(it);
816 }
817 
request_host(size_t id)818 base::StringPiece MockHostResolverBase::request_host(size_t id) {
819   DCHECK(request(id));
820   return request(id)->request_endpoint().GetHostnameWithoutBrackets();
821 }
822 
request_priority(size_t id)823 RequestPriority MockHostResolverBase::request_priority(size_t id) {
824   DCHECK(request(id));
825   return request(id)->priority();
826 }
827 
828 const NetworkAnonymizationKey&
request_network_anonymization_key(size_t id)829 MockHostResolverBase::request_network_anonymization_key(size_t id) {
830   DCHECK(request(id));
831   return request(id)->network_anonymization_key();
832 }
833 
ResolveOnlyRequestNow()834 void MockHostResolverBase::ResolveOnlyRequestNow() {
835   DCHECK_EQ(1u, state_->mutable_requests().size());
836   ResolveNow(state_->mutable_requests().begin()->first);
837 }
838 
TriggerMdnsListeners(const HostPortPair & host,DnsQueryType query_type,MdnsListenerUpdateType update_type,const IPEndPoint & address_result)839 void MockHostResolverBase::TriggerMdnsListeners(
840     const HostPortPair& host,
841     DnsQueryType query_type,
842     MdnsListenerUpdateType update_type,
843     const IPEndPoint& address_result) {
844   for (auto* listener : listeners_) {
845     if (listener->host() == host && listener->query_type() == query_type)
846       listener->TriggerAddressResult(update_type, address_result);
847   }
848 }
849 
TriggerMdnsListeners(const HostPortPair & host,DnsQueryType query_type,MdnsListenerUpdateType update_type,const std::vector<std::string> & text_result)850 void MockHostResolverBase::TriggerMdnsListeners(
851     const HostPortPair& host,
852     DnsQueryType query_type,
853     MdnsListenerUpdateType update_type,
854     const std::vector<std::string>& text_result) {
855   for (auto* listener : listeners_) {
856     if (listener->host() == host && listener->query_type() == query_type)
857       listener->TriggerTextResult(update_type, text_result);
858   }
859 }
860 
TriggerMdnsListeners(const HostPortPair & host,DnsQueryType query_type,MdnsListenerUpdateType update_type,const HostPortPair & host_result)861 void MockHostResolverBase::TriggerMdnsListeners(
862     const HostPortPair& host,
863     DnsQueryType query_type,
864     MdnsListenerUpdateType update_type,
865     const HostPortPair& host_result) {
866   for (auto* listener : listeners_) {
867     if (listener->host() == host && listener->query_type() == query_type)
868       listener->TriggerHostnameResult(update_type, host_result);
869   }
870 }
871 
TriggerMdnsListeners(const HostPortPair & host,DnsQueryType query_type,MdnsListenerUpdateType update_type)872 void MockHostResolverBase::TriggerMdnsListeners(
873     const HostPortPair& host,
874     DnsQueryType query_type,
875     MdnsListenerUpdateType update_type) {
876   for (auto* listener : listeners_) {
877     if (listener->host() == host && listener->query_type() == query_type)
878       listener->TriggerUnhandledResult(update_type);
879   }
880 }
881 
request(size_t id)882 MockHostResolverBase::RequestImpl* MockHostResolverBase::request(size_t id) {
883   RequestMap::iterator request = state_->mutable_requests().find(id);
884   CHECK(request != state_->mutable_requests().end());
885   CHECK_EQ(request->second->id(), id);
886   return (*request).second;
887 }
888 
889 // start id from 1 to distinguish from NULL RequestHandle
MockHostResolverBase(bool use_caching,int cache_invalidation_num,RuleResolver rule_resolver)890 MockHostResolverBase::MockHostResolverBase(bool use_caching,
891                                            int cache_invalidation_num,
892                                            RuleResolver rule_resolver)
893     : rule_resolver_(std::move(rule_resolver)),
894       initial_cache_invalidation_num_(cache_invalidation_num),
895       tick_clock_(base::DefaultTickClock::GetInstance()),
896       state_(base::MakeRefCounted<State>()) {
897   if (use_caching)
898     cache_ = std::make_unique<HostCache>(kMaxCacheEntries);
899   else
900     DCHECK_GE(0, cache_invalidation_num);
901 }
902 
Resolve(RequestImpl * request)903 int MockHostResolverBase::Resolve(RequestImpl* request) {
904   DCHECK_CALLED_ON_VALID_THREAD(thread_checker_);
905 
906   last_request_priority_ = request->parameters().initial_priority;
907   last_request_network_anonymization_key_ =
908       request->network_anonymization_key();
909   last_secure_dns_policy_ = request->parameters().secure_dns_policy;
910   state_->IncrementNumResolve();
911   std::vector<HostResolverEndpointResult> endpoints;
912   std::set<std::string> aliases;
913   absl::optional<HostCache::EntryStaleness> stale_info;
914   // TODO(crbug.com/1264933): Allow caching `ConnectionEndpoint` results.
915   int rv = ResolveFromIPLiteralOrCache(
916       request->request_endpoint(), request->network_anonymization_key(),
917       request->parameters().dns_query_type, request->host_resolver_flags(),
918       request->parameters().source, request->parameters().cache_usage,
919       &endpoints, &aliases, &stale_info);
920 
921   if (rv == OK && !request->parameters().is_speculative) {
922     request->SetEndpointResults(std::move(endpoints), std::move(aliases),
923                                 std::move(stale_info));
924   } else {
925     request->SetError(rv);
926   }
927 
928   if (rv != ERR_DNS_CACHE_MISS ||
929       request->parameters().source == HostResolverSource::LOCAL_ONLY) {
930     return SquashErrorCode(rv);
931   }
932 
933   // Just like the real resolver, refuse to do anything with invalid
934   // hostnames.
935   if (!dns_names_util::IsValidDnsName(
936           request->request_endpoint().GetHostnameWithoutBrackets())) {
937     request->SetError(ERR_NAME_NOT_RESOLVED);
938     return ERR_NAME_NOT_RESOLVED;
939   }
940 
941   if (synchronous_mode_)
942     return DoSynchronousResolution(*request);
943 
944   // Store the request for asynchronous resolution
945   size_t id = next_request_id_++;
946   request->set_id(id);
947   state_->mutable_requests()[id] = request;
948 
949   if (!ondemand_mode_) {
950     base::SingleThreadTaskRunner::GetCurrentDefault()->PostTask(
951         FROM_HERE,
952         base::BindOnce(&MockHostResolverBase::ResolveNow, AsWeakPtr(), id));
953   }
954 
955   return ERR_IO_PENDING;
956 }
957 
ResolveFromIPLiteralOrCache(const Host & endpoint,const NetworkAnonymizationKey & network_anonymization_key,DnsQueryType dns_query_type,HostResolverFlags flags,HostResolverSource source,HostResolver::ResolveHostParameters::CacheUsage cache_usage,std::vector<HostResolverEndpointResult> * out_endpoints,std::set<std::string> * out_aliases,absl::optional<HostCache::EntryStaleness> * out_stale_info)958 int MockHostResolverBase::ResolveFromIPLiteralOrCache(
959     const Host& endpoint,
960     const NetworkAnonymizationKey& network_anonymization_key,
961     DnsQueryType dns_query_type,
962     HostResolverFlags flags,
963     HostResolverSource source,
964     HostResolver::ResolveHostParameters::CacheUsage cache_usage,
965     std::vector<HostResolverEndpointResult>* out_endpoints,
966     std::set<std::string>* out_aliases,
967     absl::optional<HostCache::EntryStaleness>* out_stale_info) {
968   DCHECK(out_endpoints);
969   DCHECK(out_aliases);
970   DCHECK(out_stale_info);
971   out_endpoints->clear();
972   out_aliases->clear();
973   *out_stale_info = absl::nullopt;
974 
975   IPAddress ip_address;
976   if (ip_address.AssignFromIPLiteral(endpoint.GetHostnameWithoutBrackets())) {
977     const DnsQueryType desired_address_query =
978         AddressFamilyToDnsQueryType(GetAddressFamily(ip_address));
979     DCHECK_NE(desired_address_query, DnsQueryType::UNSPECIFIED);
980 
981     // This matches the behavior HostResolverImpl.
982     if (dns_query_type != DnsQueryType::UNSPECIFIED &&
983         dns_query_type != desired_address_query) {
984       return ERR_NAME_NOT_RESOLVED;
985     }
986 
987     *out_endpoints = std::vector<HostResolverEndpointResult>(1);
988     (*out_endpoints)[0].ip_endpoints.emplace_back(ip_address,
989                                                   endpoint.GetPort());
990     if (flags & HOST_RESOLVER_CANONNAME)
991       *out_aliases = {ip_address.ToString()};
992     return OK;
993   }
994 
995   std::vector<IPEndPoint> localhost_endpoints;
996   // Immediately resolve any "localhost" or recognized similar names.
997   if (IsAddressType(dns_query_type) &&
998       ResolveLocalHostname(endpoint.GetHostnameWithoutBrackets(),
999                            &localhost_endpoints)) {
1000     *out_endpoints = std::vector<HostResolverEndpointResult>(1);
1001     (*out_endpoints)[0].ip_endpoints = localhost_endpoints;
1002     return OK;
1003   }
1004   int rv = ERR_DNS_CACHE_MISS;
1005   bool cache_allowed =
1006       cache_usage == HostResolver::ResolveHostParameters::CacheUsage::ALLOWED ||
1007       cache_usage ==
1008           HostResolver::ResolveHostParameters::CacheUsage::STALE_ALLOWED;
1009   if (cache_.get() && cache_allowed) {
1010     // Local-only requests search the cache for non-local-only results.
1011     HostResolverSource effective_source =
1012         source == HostResolverSource::LOCAL_ONLY ? HostResolverSource::ANY
1013                                                  : source;
1014     HostCache::Key key(GetCacheHost(endpoint), dns_query_type, flags,
1015                        effective_source, network_anonymization_key);
1016     const std::pair<const HostCache::Key, HostCache::Entry>* cache_result;
1017     HostCache::EntryStaleness stale_info = HostCache::kNotStale;
1018     if (cache_usage ==
1019         HostResolver::ResolveHostParameters::CacheUsage::STALE_ALLOWED) {
1020       cache_result = cache_->LookupStale(key, tick_clock_->NowTicks(),
1021                                          &stale_info, true /* ignore_secure */);
1022     } else {
1023       cache_result = cache_->Lookup(key, tick_clock_->NowTicks(),
1024                                     true /* ignore_secure */);
1025     }
1026     if (cache_result) {
1027       rv = cache_result->second.error();
1028       if (rv == OK) {
1029         *out_endpoints = cache_result->second.GetEndpoints();
1030 
1031         *out_aliases = cache_result->second.aliases();
1032         *out_stale_info = std::move(stale_info);
1033       }
1034 
1035       auto cache_invalidation_iterator = cache_invalidation_nums_.find(key);
1036       if (cache_invalidation_iterator != cache_invalidation_nums_.end()) {
1037         DCHECK_LE(1, cache_invalidation_iterator->second);
1038         cache_invalidation_iterator->second--;
1039         if (cache_invalidation_iterator->second == 0) {
1040           HostCache::Entry new_entry(cache_result->second);
1041           cache_->Set(key, new_entry, tick_clock_->NowTicks(),
1042                       base::TimeDelta());
1043           cache_invalidation_nums_.erase(cache_invalidation_iterator);
1044         }
1045       }
1046     }
1047   }
1048   return rv;
1049 }
1050 
DoSynchronousResolution(RequestImpl & request)1051 int MockHostResolverBase::DoSynchronousResolution(RequestImpl& request) {
1052   state_->IncrementNumNonLocalResolves();
1053 
1054   const RuleResolver::RuleResultOrError& result = rule_resolver_.Resolve(
1055       request.request_endpoint(), {request.parameters().dns_query_type},
1056       request.parameters().source);
1057 
1058   int error = ERR_UNEXPECTED;
1059   absl::optional<HostCache::Entry> cache_entry;
1060   if (absl::holds_alternative<RuleResolver::RuleResult>(result)) {
1061     const auto& rule_result = absl::get<RuleResolver::RuleResult>(result);
1062     const auto& endpoint_results = rule_result.endpoints;
1063     const auto& aliases = rule_result.aliases;
1064     request.SetEndpointResults(endpoint_results, aliases,
1065                                /*staleness=*/absl::nullopt);
1066     // TODO(crbug.com/1264933): Change `error` on empty results?
1067     error = OK;
1068     if (cache_.get()) {
1069       cache_entry = CreateCacheEntry(request.request_endpoint().GetHostname(),
1070                                      endpoint_results, aliases);
1071     }
1072   } else {
1073     DCHECK(absl::holds_alternative<RuleResolver::ErrorResult>(result));
1074     error = absl::get<RuleResolver::ErrorResult>(result);
1075     request.SetError(error);
1076     if (cache_.get()) {
1077       cache_entry.emplace(error, HostCache::Entry::SOURCE_UNKNOWN);
1078     }
1079   }
1080   if (cache_.get() && cache_entry.has_value()) {
1081     HostCache::Key key(
1082         GetCacheHost(request.request_endpoint()),
1083         request.parameters().dns_query_type, request.host_resolver_flags(),
1084         request.parameters().source, request.network_anonymization_key());
1085     // Storing a failure with TTL 0 so that it overwrites previous value.
1086     base::TimeDelta ttl;
1087     if (error == OK) {
1088       ttl = base::Seconds(kCacheEntryTTLSeconds);
1089       if (initial_cache_invalidation_num_ > 0)
1090         cache_invalidation_nums_[key] = initial_cache_invalidation_num_;
1091     }
1092     cache_->Set(key, cache_entry.value(), tick_clock_->NowTicks(), ttl);
1093   }
1094 
1095   return SquashErrorCode(error);
1096 }
1097 
AddListener(MdnsListenerImpl * listener)1098 void MockHostResolverBase::AddListener(MdnsListenerImpl* listener) {
1099   listeners_.insert(listener);
1100 }
1101 
RemoveCancelledListener(MdnsListenerImpl * listener)1102 void MockHostResolverBase::RemoveCancelledListener(MdnsListenerImpl* listener) {
1103   listeners_.erase(listener);
1104 }
1105 
MockHostResolverFactory(MockHostResolverBase::RuleResolver rules,bool use_caching,int cache_invalidation_num)1106 MockHostResolverFactory::MockHostResolverFactory(
1107     MockHostResolverBase::RuleResolver rules,
1108     bool use_caching,
1109     int cache_invalidation_num)
1110     : rules_(std::move(rules)),
1111       use_caching_(use_caching),
1112       cache_invalidation_num_(cache_invalidation_num) {}
1113 
1114 MockHostResolverFactory::~MockHostResolverFactory() = default;
1115 
CreateResolver(HostResolverManager * manager,base::StringPiece host_mapping_rules,bool enable_caching)1116 std::unique_ptr<HostResolver> MockHostResolverFactory::CreateResolver(
1117     HostResolverManager* manager,
1118     base::StringPiece host_mapping_rules,
1119     bool enable_caching) {
1120   DCHECK(host_mapping_rules.empty());
1121 
1122   // Explicit new to access private constructor.
1123   auto resolver = base::WrapUnique(new MockHostResolverBase(
1124       enable_caching && use_caching_, cache_invalidation_num_, rules_));
1125   return resolver;
1126 }
1127 
CreateStandaloneResolver(NetLog * net_log,const HostResolver::ManagerOptions & options,base::StringPiece host_mapping_rules,bool enable_caching)1128 std::unique_ptr<HostResolver> MockHostResolverFactory::CreateStandaloneResolver(
1129     NetLog* net_log,
1130     const HostResolver::ManagerOptions& options,
1131     base::StringPiece host_mapping_rules,
1132     bool enable_caching) {
1133   return CreateResolver(nullptr, host_mapping_rules, enable_caching);
1134 }
1135 
1136 //-----------------------------------------------------------------------------
1137 
Rule(ResolverType resolver_type,base::StringPiece host_pattern,AddressFamily address_family,HostResolverFlags host_resolver_flags,base::StringPiece replacement,std::vector<std::string> dns_aliases,int latency_ms)1138 RuleBasedHostResolverProc::Rule::Rule(ResolverType resolver_type,
1139                                       base::StringPiece host_pattern,
1140                                       AddressFamily address_family,
1141                                       HostResolverFlags host_resolver_flags,
1142                                       base::StringPiece replacement,
1143                                       std::vector<std::string> dns_aliases,
1144                                       int latency_ms)
1145     : resolver_type(resolver_type),
1146       host_pattern(host_pattern),
1147       address_family(address_family),
1148       host_resolver_flags(host_resolver_flags),
1149       replacement(replacement),
1150       dns_aliases(std::move(dns_aliases)),
1151       latency_ms(latency_ms) {
1152   DCHECK(this->dns_aliases != std::vector<std::string>({""}));
1153 }
1154 
1155 RuleBasedHostResolverProc::Rule::Rule(const Rule& other) = default;
1156 
1157 RuleBasedHostResolverProc::Rule::~Rule() = default;
1158 
RuleBasedHostResolverProc(scoped_refptr<HostResolverProc> previous,bool allow_fallback)1159 RuleBasedHostResolverProc::RuleBasedHostResolverProc(
1160     scoped_refptr<HostResolverProc> previous,
1161     bool allow_fallback)
1162     : HostResolverProc(std::move(previous), allow_fallback) {}
1163 
AddRule(base::StringPiece host_pattern,base::StringPiece replacement)1164 void RuleBasedHostResolverProc::AddRule(base::StringPiece host_pattern,
1165                                         base::StringPiece replacement) {
1166   AddRuleForAddressFamily(host_pattern, ADDRESS_FAMILY_UNSPECIFIED,
1167                           replacement);
1168 }
1169 
AddRuleForAddressFamily(base::StringPiece host_pattern,AddressFamily address_family,base::StringPiece replacement)1170 void RuleBasedHostResolverProc::AddRuleForAddressFamily(
1171     base::StringPiece host_pattern,
1172     AddressFamily address_family,
1173     base::StringPiece replacement) {
1174   DCHECK(!replacement.empty());
1175   HostResolverFlags flags = HOST_RESOLVER_LOOPBACK_ONLY;
1176   Rule rule(Rule::kResolverTypeSystem, host_pattern, address_family, flags,
1177             replacement, {} /* dns_aliases */, 0);
1178   AddRuleInternal(rule);
1179 }
1180 
AddRuleWithFlags(base::StringPiece host_pattern,base::StringPiece replacement,HostResolverFlags flags,std::vector<std::string> dns_aliases)1181 void RuleBasedHostResolverProc::AddRuleWithFlags(
1182     base::StringPiece host_pattern,
1183     base::StringPiece replacement,
1184     HostResolverFlags flags,
1185     std::vector<std::string> dns_aliases) {
1186   DCHECK(!replacement.empty());
1187   Rule rule(Rule::kResolverTypeSystem, host_pattern, ADDRESS_FAMILY_UNSPECIFIED,
1188             flags, replacement, std::move(dns_aliases), 0);
1189   AddRuleInternal(rule);
1190 }
1191 
AddIPLiteralRule(base::StringPiece host_pattern,base::StringPiece ip_literal,base::StringPiece canonical_name)1192 void RuleBasedHostResolverProc::AddIPLiteralRule(
1193     base::StringPiece host_pattern,
1194     base::StringPiece ip_literal,
1195     base::StringPiece canonical_name) {
1196   // Literals are always resolved to themselves by HostResolverImpl,
1197   // consequently we do not support remapping them.
1198   IPAddress ip_address;
1199   DCHECK(!ip_address.AssignFromIPLiteral(host_pattern));
1200   HostResolverFlags flags = HOST_RESOLVER_LOOPBACK_ONLY;
1201   std::vector<std::string> aliases;
1202   if (!canonical_name.empty()) {
1203     flags |= HOST_RESOLVER_CANONNAME;
1204     aliases.emplace_back(canonical_name);
1205   }
1206 
1207   Rule rule(Rule::kResolverTypeIPLiteral, host_pattern,
1208             ADDRESS_FAMILY_UNSPECIFIED, flags, ip_literal, std::move(aliases),
1209             0);
1210   AddRuleInternal(rule);
1211 }
1212 
AddIPLiteralRuleWithDnsAliases(base::StringPiece host_pattern,base::StringPiece ip_literal,std::vector<std::string> dns_aliases)1213 void RuleBasedHostResolverProc::AddIPLiteralRuleWithDnsAliases(
1214     base::StringPiece host_pattern,
1215     base::StringPiece ip_literal,
1216     std::vector<std::string> dns_aliases) {
1217   // Literals are always resolved to themselves by HostResolverImpl,
1218   // consequently we do not support remapping them.
1219   IPAddress ip_address;
1220   DCHECK(!ip_address.AssignFromIPLiteral(host_pattern));
1221   HostResolverFlags flags = HOST_RESOLVER_LOOPBACK_ONLY;
1222   if (!dns_aliases.empty())
1223     flags |= HOST_RESOLVER_CANONNAME;
1224 
1225   Rule rule(Rule::kResolverTypeIPLiteral, host_pattern,
1226             ADDRESS_FAMILY_UNSPECIFIED, flags, ip_literal,
1227             std::move(dns_aliases), 0);
1228   AddRuleInternal(rule);
1229 }
1230 
AddRuleWithLatency(base::StringPiece host_pattern,base::StringPiece replacement,int latency_ms)1231 void RuleBasedHostResolverProc::AddRuleWithLatency(
1232     base::StringPiece host_pattern,
1233     base::StringPiece replacement,
1234     int latency_ms) {
1235   DCHECK(!replacement.empty());
1236   HostResolverFlags flags = HOST_RESOLVER_LOOPBACK_ONLY;
1237   Rule rule(Rule::kResolverTypeSystem, host_pattern, ADDRESS_FAMILY_UNSPECIFIED,
1238             flags, replacement, /*dns_aliases=*/{}, latency_ms);
1239   AddRuleInternal(rule);
1240 }
1241 
AllowDirectLookup(base::StringPiece host_pattern)1242 void RuleBasedHostResolverProc::AllowDirectLookup(
1243     base::StringPiece host_pattern) {
1244   HostResolverFlags flags = HOST_RESOLVER_LOOPBACK_ONLY;
1245   Rule rule(Rule::kResolverTypeSystem, host_pattern, ADDRESS_FAMILY_UNSPECIFIED,
1246             flags, std::string(), /*dns_aliases=*/{}, 0);
1247   AddRuleInternal(rule);
1248 }
1249 
AddSimulatedFailure(base::StringPiece host_pattern,HostResolverFlags flags)1250 void RuleBasedHostResolverProc::AddSimulatedFailure(
1251     base::StringPiece host_pattern,
1252     HostResolverFlags flags) {
1253   Rule rule(Rule::kResolverTypeFail, host_pattern, ADDRESS_FAMILY_UNSPECIFIED,
1254             flags, std::string(), /*dns_aliases=*/{}, 0);
1255   AddRuleInternal(rule);
1256 }
1257 
AddSimulatedTimeoutFailure(base::StringPiece host_pattern,HostResolverFlags flags)1258 void RuleBasedHostResolverProc::AddSimulatedTimeoutFailure(
1259     base::StringPiece host_pattern,
1260     HostResolverFlags flags) {
1261   Rule rule(Rule::kResolverTypeFailTimeout, host_pattern,
1262             ADDRESS_FAMILY_UNSPECIFIED, flags, std::string(),
1263             /*dns_aliases=*/{}, 0);
1264   AddRuleInternal(rule);
1265 }
1266 
ClearRules()1267 void RuleBasedHostResolverProc::ClearRules() {
1268   CHECK(modifications_allowed_);
1269   base::AutoLock lock(rule_lock_);
1270   rules_.clear();
1271 }
1272 
DisableModifications()1273 void RuleBasedHostResolverProc::DisableModifications() {
1274   modifications_allowed_ = false;
1275 }
1276 
GetRules()1277 RuleBasedHostResolverProc::RuleList RuleBasedHostResolverProc::GetRules() {
1278   RuleList rv;
1279   {
1280     base::AutoLock lock(rule_lock_);
1281     rv = rules_;
1282   }
1283   return rv;
1284 }
1285 
NumResolvesForHostPattern(base::StringPiece host_pattern)1286 size_t RuleBasedHostResolverProc::NumResolvesForHostPattern(
1287     base::StringPiece host_pattern) {
1288   base::AutoLock lock(rule_lock_);
1289   return num_resolves_per_host_pattern_[host_pattern];
1290 }
1291 
Resolve(const std::string & host,AddressFamily address_family,HostResolverFlags host_resolver_flags,AddressList * addrlist,int * os_error)1292 int RuleBasedHostResolverProc::Resolve(const std::string& host,
1293                                        AddressFamily address_family,
1294                                        HostResolverFlags host_resolver_flags,
1295                                        AddressList* addrlist,
1296                                        int* os_error) {
1297   base::AutoLock lock(rule_lock_);
1298   RuleList::iterator r;
1299   for (r = rules_.begin(); r != rules_.end(); ++r) {
1300     bool matches_address_family =
1301         r->address_family == ADDRESS_FAMILY_UNSPECIFIED ||
1302         r->address_family == address_family;
1303     // Ignore HOST_RESOLVER_DEFAULT_FAMILY_SET_DUE_TO_NO_IPV6, since it should
1304     // have no impact on whether a rule matches.
1305     HostResolverFlags flags =
1306         host_resolver_flags & ~HOST_RESOLVER_DEFAULT_FAMILY_SET_DUE_TO_NO_IPV6;
1307     // Flags match if all of the bitflags in host_resolver_flags are enabled
1308     // in the rule's host_resolver_flags. However, the rule may have additional
1309     // flags specified, in which case the flags should still be considered a
1310     // match.
1311     bool matches_flags = (r->host_resolver_flags & flags) == flags;
1312     if (matches_flags && matches_address_family &&
1313         base::MatchPattern(host, r->host_pattern)) {
1314       num_resolves_per_host_pattern_[r->host_pattern]++;
1315 
1316       if (r->latency_ms != 0) {
1317         base::PlatformThread::Sleep(base::Milliseconds(r->latency_ms));
1318       }
1319 
1320       // Remap to a new host.
1321       const std::string& effective_host =
1322           r->replacement.empty() ? host : r->replacement;
1323 
1324       // Apply the resolving function to the remapped hostname.
1325       switch (r->resolver_type) {
1326         case Rule::kResolverTypeFail:
1327           return ERR_NAME_NOT_RESOLVED;
1328         case Rule::kResolverTypeFailTimeout:
1329           return ERR_DNS_TIMED_OUT;
1330         case Rule::kResolverTypeSystem:
1331           EnsureSystemHostResolverCallReady();
1332           return SystemHostResolverCall(effective_host, address_family,
1333                                         host_resolver_flags, addrlist,
1334                                         os_error);
1335         case Rule::kResolverTypeIPLiteral: {
1336           AddressList raw_addr_list;
1337           std::vector<std::string> aliases;
1338           aliases = (!r->dns_aliases.empty())
1339                         ? r->dns_aliases
1340                         : std::vector<std::string>({host});
1341           std::vector<net::IPEndPoint> ip_endpoints;
1342           int result = ParseAddressList(effective_host, &ip_endpoints);
1343           // Filter out addresses with the wrong family.
1344           *addrlist = AddressList();
1345           for (const auto& address : ip_endpoints) {
1346             if (address_family == ADDRESS_FAMILY_UNSPECIFIED ||
1347                 address_family == address.GetFamily()) {
1348               addrlist->push_back(address);
1349             }
1350           }
1351           addrlist->SetDnsAliases(aliases);
1352 
1353           if (result == OK && addrlist->empty())
1354             return ERR_NAME_NOT_RESOLVED;
1355           return result;
1356         }
1357         default:
1358           NOTREACHED();
1359           return ERR_UNEXPECTED;
1360       }
1361     }
1362   }
1363 
1364   return ResolveUsingPrevious(host, address_family, host_resolver_flags,
1365                               addrlist, os_error);
1366 }
1367 
1368 RuleBasedHostResolverProc::~RuleBasedHostResolverProc() = default;
1369 
AddRuleInternal(const Rule & rule)1370 void RuleBasedHostResolverProc::AddRuleInternal(const Rule& rule) {
1371   Rule fixed_rule = rule;
1372   // SystemResolverProc expects valid DNS addresses.
1373   // So for kResolverTypeSystem rules:
1374   // * CHECK that replacement is empty (empty domain names mean use a direct
1375   //   lookup) or a valid DNS name (which includes IP addresses).
1376   // * If the replacement is an IP address, switch to an IP literal rule.
1377   if (fixed_rule.resolver_type == Rule::kResolverTypeSystem) {
1378     CHECK(fixed_rule.replacement.empty() ||
1379           dns_names_util::IsValidDnsName(fixed_rule.replacement));
1380 
1381     IPAddress ip_address;
1382     bool valid_address = ip_address.AssignFromIPLiteral(fixed_rule.replacement);
1383     if (valid_address) {
1384       fixed_rule.resolver_type = Rule::kResolverTypeIPLiteral;
1385     }
1386   }
1387 
1388   CHECK(modifications_allowed_);
1389   base::AutoLock lock(rule_lock_);
1390   rules_.push_back(fixed_rule);
1391 }
1392 
CreateCatchAllHostResolverProc()1393 scoped_refptr<RuleBasedHostResolverProc> CreateCatchAllHostResolverProc() {
1394   auto catchall =
1395       base::MakeRefCounted<RuleBasedHostResolverProc>(/*previous=*/nullptr,
1396                                                       /*allow_fallback=*/false);
1397   // Note that IPv6 lookups fail.
1398   catchall->AddIPLiteralRule("*", "127.0.0.1", "localhost");
1399 
1400   // Next add a rules-based layer that the test controls.
1401   return base::MakeRefCounted<RuleBasedHostResolverProc>(
1402       std::move(catchall), /*allow_fallback=*/false);
1403 }
1404 
1405 //-----------------------------------------------------------------------------
1406 
1407 // Implementation of ResolveHostRequest that tracks cancellations when the
1408 // request is destroyed after being started.
1409 class HangingHostResolver::RequestImpl
1410     : public HostResolver::ResolveHostRequest,
1411       public HostResolver::ProbeRequest {
1412  public:
RequestImpl(base::WeakPtr<HangingHostResolver> resolver)1413   explicit RequestImpl(base::WeakPtr<HangingHostResolver> resolver)
1414       : resolver_(resolver) {}
1415 
1416   RequestImpl(const RequestImpl&) = delete;
1417   RequestImpl& operator=(const RequestImpl&) = delete;
1418 
~RequestImpl()1419   ~RequestImpl() override {
1420     if (is_running_ && resolver_)
1421       resolver_->state_->IncrementNumCancellations();
1422   }
1423 
Start(CompletionOnceCallback callback)1424   int Start(CompletionOnceCallback callback) override { return Start(); }
1425 
Start()1426   int Start() override {
1427     DCHECK(resolver_);
1428     is_running_ = true;
1429     return ERR_IO_PENDING;
1430   }
1431 
GetAddressResults() const1432   const AddressList* GetAddressResults() const override {
1433     base::ImmediateCrash();
1434   }
1435 
GetEndpointResults() const1436   const std::vector<HostResolverEndpointResult>* GetEndpointResults()
1437       const override {
1438     base::ImmediateCrash();
1439   }
1440 
GetTextResults() const1441   const std::vector<std::string>* GetTextResults() const override {
1442     base::ImmediateCrash();
1443   }
1444 
GetHostnameResults() const1445   const std::vector<HostPortPair>* GetHostnameResults() const override {
1446     base::ImmediateCrash();
1447   }
1448 
GetDnsAliasResults() const1449   const std::set<std::string>* GetDnsAliasResults() const override {
1450     base::ImmediateCrash();
1451   }
1452 
GetResolveErrorInfo() const1453   net::ResolveErrorInfo GetResolveErrorInfo() const override {
1454     base::ImmediateCrash();
1455   }
1456 
GetStaleInfo() const1457   const absl::optional<HostCache::EntryStaleness>& GetStaleInfo()
1458       const override {
1459     base::ImmediateCrash();
1460   }
1461 
ChangeRequestPriority(RequestPriority priority)1462   void ChangeRequestPriority(RequestPriority priority) override {}
1463 
1464  private:
1465   // Use a WeakPtr as the resolver may be destroyed while there are still
1466   // outstanding request objects.
1467   base::WeakPtr<HangingHostResolver> resolver_;
1468   bool is_running_ = false;
1469 };
1470 
1471 HangingHostResolver::State::State() = default;
1472 HangingHostResolver::State::~State() = default;
1473 
HangingHostResolver()1474 HangingHostResolver::HangingHostResolver()
1475     : state_(base::MakeRefCounted<State>()) {}
1476 
1477 HangingHostResolver::~HangingHostResolver() = default;
1478 
OnShutdown()1479 void HangingHostResolver::OnShutdown() {
1480   shutting_down_ = true;
1481 }
1482 
1483 std::unique_ptr<HostResolver::ResolveHostRequest>
CreateRequest(url::SchemeHostPort host,NetworkAnonymizationKey network_anonymization_key,NetLogWithSource net_log,absl::optional<ResolveHostParameters> optional_parameters)1484 HangingHostResolver::CreateRequest(
1485     url::SchemeHostPort host,
1486     NetworkAnonymizationKey network_anonymization_key,
1487     NetLogWithSource net_log,
1488     absl::optional<ResolveHostParameters> optional_parameters) {
1489   // TODO(crbug.com/1206799): Propagate scheme and make affect behavior.
1490   return CreateRequest(HostPortPair::FromSchemeHostPort(host),
1491                        network_anonymization_key, net_log, optional_parameters);
1492 }
1493 
1494 std::unique_ptr<HostResolver::ResolveHostRequest>
CreateRequest(const HostPortPair & host,const NetworkAnonymizationKey & network_anonymization_key,const NetLogWithSource & source_net_log,const absl::optional<ResolveHostParameters> & optional_parameters)1495 HangingHostResolver::CreateRequest(
1496     const HostPortPair& host,
1497     const NetworkAnonymizationKey& network_anonymization_key,
1498     const NetLogWithSource& source_net_log,
1499     const absl::optional<ResolveHostParameters>& optional_parameters) {
1500   last_host_ = host;
1501   last_network_anonymization_key_ = network_anonymization_key;
1502 
1503   if (shutting_down_)
1504     return CreateFailingRequest(ERR_CONTEXT_SHUT_DOWN);
1505 
1506   if (optional_parameters &&
1507       optional_parameters.value().source == HostResolverSource::LOCAL_ONLY) {
1508     return CreateFailingRequest(ERR_DNS_CACHE_MISS);
1509   }
1510 
1511   return std::make_unique<RequestImpl>(weak_ptr_factory_.GetWeakPtr());
1512 }
1513 
1514 std::unique_ptr<HostResolver::ProbeRequest>
CreateDohProbeRequest()1515 HangingHostResolver::CreateDohProbeRequest() {
1516   if (shutting_down_)
1517     return CreateFailingProbeRequest(ERR_CONTEXT_SHUT_DOWN);
1518 
1519   return std::make_unique<RequestImpl>(weak_ptr_factory_.GetWeakPtr());
1520 }
1521 
SetRequestContext(URLRequestContext * url_request_context)1522 void HangingHostResolver::SetRequestContext(
1523     URLRequestContext* url_request_context) {}
1524 
1525 //-----------------------------------------------------------------------------
1526 
1527 ScopedDefaultHostResolverProc::ScopedDefaultHostResolverProc() = default;
1528 
ScopedDefaultHostResolverProc(HostResolverProc * proc)1529 ScopedDefaultHostResolverProc::ScopedDefaultHostResolverProc(
1530     HostResolverProc* proc) {
1531   Init(proc);
1532 }
1533 
~ScopedDefaultHostResolverProc()1534 ScopedDefaultHostResolverProc::~ScopedDefaultHostResolverProc() {
1535   HostResolverProc* old_proc =
1536       HostResolverProc::SetDefault(previous_proc_.get());
1537   // The lifetimes of multiple instances must be nested.
1538   CHECK_EQ(old_proc, current_proc_.get());
1539 }
1540 
Init(HostResolverProc * proc)1541 void ScopedDefaultHostResolverProc::Init(HostResolverProc* proc) {
1542   current_proc_ = proc;
1543   previous_proc_ = HostResolverProc::SetDefault(current_proc_.get());
1544   current_proc_->SetLastProc(previous_proc_);
1545 }
1546 
1547 }  // namespace net
1548