• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
1 // Copyright 2013 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/mdns_client_impl.h"
6 
7 #include <algorithm>
8 #include <cstdint>
9 #include <memory>
10 #include <utility>
11 #include <vector>
12 
13 #include "base/functional/bind.h"
14 #include "base/location.h"
15 #include "base/observer_list.h"
16 #include "base/strings/string_util.h"
17 #include "base/task/single_thread_task_runner.h"
18 #include "base/time/clock.h"
19 #include "base/time/default_clock.h"
20 #include "base/time/time.h"
21 #include "base/timer/timer.h"
22 #include "net/base/net_errors.h"
23 #include "net/base/rand_callback.h"
24 #include "net/dns/dns_names_util.h"
25 #include "net/dns/public/dns_protocol.h"
26 #include "net/dns/public/util.h"
27 #include "net/dns/record_rdata.h"
28 #include "net/socket/datagram_socket.h"
29 #include "third_party/abseil-cpp/absl/types/optional.h"
30 
31 // TODO(gene): Remove this temporary method of disabling NSEC support once it
32 // becomes clear whether this feature should be
33 // supported. http://crbug.com/255232
34 #define ENABLE_NSEC
35 
36 namespace net {
37 
38 namespace {
39 
40 // The fractions of the record's original TTL after which an active listener
41 // (one that had |SetActiveRefresh(true)| called) will send a query to refresh
42 // its cache. This happens both at 85% of the original TTL and again at 95% of
43 // the original TTL.
44 const double kListenerRefreshRatio1 = 0.85;
45 const double kListenerRefreshRatio2 = 0.95;
46 
47 }  // namespace
48 
CreateSockets(std::vector<std::unique_ptr<DatagramServerSocket>> * sockets)49 void MDnsSocketFactoryImpl::CreateSockets(
50     std::vector<std::unique_ptr<DatagramServerSocket>>* sockets) {
51   InterfaceIndexFamilyList interfaces(GetMDnsInterfacesToBind());
52   for (const auto& interface : interfaces) {
53     DCHECK(interface.second == ADDRESS_FAMILY_IPV4 ||
54            interface.second == ADDRESS_FAMILY_IPV6);
55     std::unique_ptr<DatagramServerSocket> socket(
56         CreateAndBindMDnsSocket(interface.second, interface.first, net_log_));
57     if (socket)
58       sockets->push_back(std::move(socket));
59   }
60 }
61 
SocketHandler(std::unique_ptr<DatagramServerSocket> socket,MDnsConnection * connection)62 MDnsConnection::SocketHandler::SocketHandler(
63     std::unique_ptr<DatagramServerSocket> socket,
64     MDnsConnection* connection)
65     : socket_(std::move(socket)),
66       connection_(connection),
67       response_(dns_protocol::kMaxMulticastSize) {}
68 
69 MDnsConnection::SocketHandler::~SocketHandler() = default;
70 
Start()71 int MDnsConnection::SocketHandler::Start() {
72   IPEndPoint end_point;
73   int rv = socket_->GetLocalAddress(&end_point);
74   if (rv != OK)
75     return rv;
76   DCHECK(end_point.GetFamily() == ADDRESS_FAMILY_IPV4 ||
77          end_point.GetFamily() == ADDRESS_FAMILY_IPV6);
78   multicast_addr_ = dns_util::GetMdnsGroupEndPoint(end_point.GetFamily());
79   return DoLoop(0);
80 }
81 
DoLoop(int rv)82 int MDnsConnection::SocketHandler::DoLoop(int rv) {
83   do {
84     if (rv > 0)
85       connection_->OnDatagramReceived(&response_, recv_addr_, rv);
86 
87     rv = socket_->RecvFrom(
88         response_.io_buffer(), response_.io_buffer_size(), &recv_addr_,
89         base::BindOnce(&MDnsConnection::SocketHandler::OnDatagramReceived,
90                        base::Unretained(this)));
91   } while (rv > 0);
92 
93   if (rv != ERR_IO_PENDING)
94     return rv;
95 
96   return OK;
97 }
98 
OnDatagramReceived(int rv)99 void MDnsConnection::SocketHandler::OnDatagramReceived(int rv) {
100   if (rv >= OK)
101     rv = DoLoop(rv);
102 
103   if (rv != OK)
104     connection_->PostOnError(this, rv);
105 }
106 
Send(const scoped_refptr<IOBuffer> & buffer,unsigned size)107 void MDnsConnection::SocketHandler::Send(const scoped_refptr<IOBuffer>& buffer,
108                                          unsigned size) {
109   if (send_in_progress_) {
110     send_queue_.push(std::make_pair(buffer, size));
111     return;
112   }
113   int rv =
114       socket_->SendTo(buffer.get(), size, multicast_addr_,
115                       base::BindOnce(&MDnsConnection::SocketHandler::SendDone,
116                                      base::Unretained(this)));
117   if (rv == ERR_IO_PENDING) {
118     send_in_progress_ = true;
119   } else if (rv < OK) {
120     connection_->PostOnError(this, rv);
121   }
122 }
123 
SendDone(int rv)124 void MDnsConnection::SocketHandler::SendDone(int rv) {
125   DCHECK(send_in_progress_);
126   send_in_progress_ = false;
127   if (rv != OK)
128     connection_->PostOnError(this, rv);
129   while (!send_in_progress_ && !send_queue_.empty()) {
130     std::pair<scoped_refptr<IOBuffer>, unsigned> buffer = send_queue_.front();
131     send_queue_.pop();
132     Send(buffer.first, buffer.second);
133   }
134 }
135 
MDnsConnection(MDnsConnection::Delegate * delegate)136 MDnsConnection::MDnsConnection(MDnsConnection::Delegate* delegate)
137     : delegate_(delegate) {}
138 
139 MDnsConnection::~MDnsConnection() = default;
140 
Init(MDnsSocketFactory * socket_factory)141 int MDnsConnection::Init(MDnsSocketFactory* socket_factory) {
142   std::vector<std::unique_ptr<DatagramServerSocket>> sockets;
143   socket_factory->CreateSockets(&sockets);
144 
145   for (std::unique_ptr<DatagramServerSocket>& socket : sockets) {
146     socket_handlers_.push_back(std::make_unique<MDnsConnection::SocketHandler>(
147         std::move(socket), this));
148   }
149 
150   // All unbound sockets need to be bound before processing untrusted input.
151   // This is done for security reasons, so that an attacker can't get an unbound
152   // socket.
153   int last_failure = ERR_FAILED;
154   for (size_t i = 0; i < socket_handlers_.size();) {
155     int rv = socket_handlers_[i]->Start();
156     if (rv != OK) {
157       last_failure = rv;
158       socket_handlers_.erase(socket_handlers_.begin() + i);
159       VLOG(1) << "Start failed, socket=" << i << ", error=" << rv;
160     } else {
161       ++i;
162     }
163   }
164   VLOG(1) << "Sockets ready:" << socket_handlers_.size();
165   DCHECK_NE(ERR_IO_PENDING, last_failure);
166   return socket_handlers_.empty() ? last_failure : OK;
167 }
168 
Send(const scoped_refptr<IOBuffer> & buffer,unsigned size)169 void MDnsConnection::Send(const scoped_refptr<IOBuffer>& buffer,
170                           unsigned size) {
171   for (std::unique_ptr<SocketHandler>& handler : socket_handlers_)
172     handler->Send(buffer, size);
173 }
174 
PostOnError(SocketHandler * loop,int rv)175 void MDnsConnection::PostOnError(SocketHandler* loop, int rv) {
176   int id = 0;
177   for (const auto& it : socket_handlers_) {
178     if (it.get() == loop)
179       break;
180     id++;
181   }
182   VLOG(1) << "Socket error. id=" << id << ", error=" << rv;
183   // Post to allow deletion of this object by delegate.
184   base::SingleThreadTaskRunner::GetCurrentDefault()->PostTask(
185       FROM_HERE, base::BindOnce(&MDnsConnection::OnError,
186                                 weak_ptr_factory_.GetWeakPtr(), rv));
187 }
188 
OnError(int rv)189 void MDnsConnection::OnError(int rv) {
190   // TODO(noamsml): Specific handling of intermittent errors that can be handled
191   // in the connection.
192   delegate_->OnConnectionError(rv);
193 }
194 
OnDatagramReceived(DnsResponse * response,const IPEndPoint & recv_addr,int bytes_read)195 void MDnsConnection::OnDatagramReceived(
196     DnsResponse* response,
197     const IPEndPoint& recv_addr,
198     int bytes_read) {
199   // TODO(noamsml): More sophisticated error handling.
200   DCHECK_GT(bytes_read, 0);
201   delegate_->HandlePacket(response, bytes_read);
202 }
203 
Core(base::Clock * clock,base::OneShotTimer * timer)204 MDnsClientImpl::Core::Core(base::Clock* clock, base::OneShotTimer* timer)
205     : clock_(clock),
206       cleanup_timer_(timer),
207       connection_(
208           std::make_unique<MDnsConnection>((MDnsConnection::Delegate*)this)) {
209   DCHECK(cleanup_timer_);
210   DCHECK(!cleanup_timer_->IsRunning());
211 }
212 
~Core()213 MDnsClientImpl::Core::~Core() {
214   cleanup_timer_->Stop();
215 }
216 
Init(MDnsSocketFactory * socket_factory)217 int MDnsClientImpl::Core::Init(MDnsSocketFactory* socket_factory) {
218   CHECK(!cleanup_timer_->IsRunning());
219   return connection_->Init(socket_factory);
220 }
221 
SendQuery(uint16_t rrtype,const std::string & name)222 bool MDnsClientImpl::Core::SendQuery(uint16_t rrtype, const std::string& name) {
223   absl::optional<std::vector<uint8_t>> name_dns =
224       dns_names_util::DottedNameToNetwork(name);
225   if (!name_dns.has_value())
226     return false;
227 
228   DnsQuery query(0, name_dns.value(), rrtype);
229   query.set_flags(0);  // Remove the RD flag from the query. It is unneeded.
230 
231   connection_->Send(query.io_buffer(), query.io_buffer()->size());
232   return true;
233 }
234 
HandlePacket(DnsResponse * response,int bytes_read)235 void MDnsClientImpl::Core::HandlePacket(DnsResponse* response,
236                                         int bytes_read) {
237   unsigned offset;
238   // Note: We store cache keys rather than record pointers to avoid
239   // erroneous behavior in case a packet contains multiple exclusive
240   // records with the same type and name.
241   std::map<MDnsCache::Key, MDnsCache::UpdateType> update_keys;
242   DCHECK_GT(bytes_read, 0);
243   if (!response->InitParseWithoutQuery(bytes_read)) {
244     DVLOG(1) << "Could not understand an mDNS packet.";
245     return;  // Message is unreadable.
246   }
247 
248   // TODO(noamsml): duplicate query suppression.
249   if (!(response->flags() & dns_protocol::kFlagResponse))
250     return;  // Message is a query. ignore it.
251 
252   DnsRecordParser parser = response->Parser();
253   unsigned answer_count = response->answer_count() +
254       response->additional_answer_count();
255 
256   for (unsigned i = 0; i < answer_count; i++) {
257     offset = parser.GetOffset();
258     std::unique_ptr<const RecordParsed> record =
259         RecordParsed::CreateFrom(&parser, clock_->Now());
260 
261     if (!record) {
262       DVLOG(1) << "Could not understand an mDNS record.";
263 
264       if (offset == parser.GetOffset()) {
265         DVLOG(1) << "Abandoned parsing the rest of the packet.";
266         return;  // The parser did not advance, abort reading the packet.
267       } else {
268         continue;  // We may be able to extract other records from the packet.
269       }
270     }
271 
272     if ((record->klass() & dns_protocol::kMDnsClassMask) !=
273         dns_protocol::kClassIN) {
274       DVLOG(1) << "Received an mDNS record with non-IN class. Ignoring.";
275       continue;  // Ignore all records not in the IN class.
276     }
277 
278     MDnsCache::Key update_key = MDnsCache::Key::CreateFor(record.get());
279     MDnsCache::UpdateType update = cache_.UpdateDnsRecord(std::move(record));
280 
281     // Cleanup time may have changed.
282     ScheduleCleanup(cache_.next_expiration());
283 
284     update_keys.insert(std::make_pair(update_key, update));
285   }
286 
287   for (const auto& update_key : update_keys) {
288     const RecordParsed* record = cache_.LookupKey(update_key.first);
289     if (!record)
290       continue;
291 
292     if (record->type() == dns_protocol::kTypeNSEC) {
293 #if defined(ENABLE_NSEC)
294       NotifyNsecRecord(record);
295 #endif
296     } else {
297       AlertListeners(update_key.second,
298                      ListenerKey(record->name(), record->type()), record);
299     }
300   }
301 }
302 
NotifyNsecRecord(const RecordParsed * record)303 void MDnsClientImpl::Core::NotifyNsecRecord(const RecordParsed* record) {
304   DCHECK_EQ(dns_protocol::kTypeNSEC, record->type());
305   const NsecRecordRdata* rdata = record->rdata<NsecRecordRdata>();
306   DCHECK(rdata);
307 
308   // Remove all cached records matching the nonexistent RR types.
309   std::vector<const RecordParsed*> records_to_remove;
310 
311   cache_.FindDnsRecords(0, record->name(), &records_to_remove, clock_->Now());
312 
313   for (const auto* record_to_remove : records_to_remove) {
314     if (record_to_remove->type() == dns_protocol::kTypeNSEC)
315       continue;
316     if (!rdata->GetBit(record_to_remove->type())) {
317       std::unique_ptr<const RecordParsed> record_removed =
318           cache_.RemoveRecord(record_to_remove);
319       DCHECK(record_removed);
320       OnRecordRemoved(record_removed.get());
321     }
322   }
323 
324   // Alert all listeners waiting for the nonexistent RR types.
325   ListenerKey key(record->name(), 0);
326   auto i = listeners_.upper_bound(key);
327   for (; i != listeners_.end() &&
328          i->first.name_lowercase() == key.name_lowercase();
329        i++) {
330     if (!rdata->GetBit(i->first.type())) {
331       for (auto& observer : *i->second)
332         observer.AlertNsecRecord();
333     }
334   }
335 }
336 
OnConnectionError(int error)337 void MDnsClientImpl::Core::OnConnectionError(int error) {
338   // TODO(noamsml): On connection error, recreate connection and flush cache.
339   VLOG(1) << "MDNS OnConnectionError (code: " << error << ")";
340 }
341 
ListenerKey(const std::string & name,uint16_t type)342 MDnsClientImpl::Core::ListenerKey::ListenerKey(const std::string& name,
343                                                uint16_t type)
344     : name_lowercase_(base::ToLowerASCII(name)), type_(type) {}
345 
operator <(const MDnsClientImpl::Core::ListenerKey & key) const346 bool MDnsClientImpl::Core::ListenerKey::operator<(
347     const MDnsClientImpl::Core::ListenerKey& key) const {
348   if (name_lowercase_ == key.name_lowercase_)
349     return type_ < key.type_;
350   return name_lowercase_ < key.name_lowercase_;
351 }
352 
AlertListeners(MDnsCache::UpdateType update_type,const ListenerKey & key,const RecordParsed * record)353 void MDnsClientImpl::Core::AlertListeners(
354     MDnsCache::UpdateType update_type,
355     const ListenerKey& key,
356     const RecordParsed* record) {
357   auto listener_map_iterator = listeners_.find(key);
358   if (listener_map_iterator == listeners_.end()) return;
359 
360   for (auto& observer : *listener_map_iterator->second)
361     observer.HandleRecordUpdate(update_type, record);
362 }
363 
AddListener(MDnsListenerImpl * listener)364 void MDnsClientImpl::Core::AddListener(
365     MDnsListenerImpl* listener) {
366   ListenerKey key(listener->GetName(), listener->GetType());
367 
368   auto& observer_list = listeners_[key];
369   if (!observer_list)
370     observer_list = std::make_unique<ObserverListType>();
371 
372   observer_list->AddObserver(listener);
373 }
374 
RemoveListener(MDnsListenerImpl * listener)375 void MDnsClientImpl::Core::RemoveListener(MDnsListenerImpl* listener) {
376   ListenerKey key(listener->GetName(), listener->GetType());
377   auto observer_list_iterator = listeners_.find(key);
378 
379   DCHECK(observer_list_iterator != listeners_.end());
380   DCHECK(observer_list_iterator->second->HasObserver(listener));
381 
382   observer_list_iterator->second->RemoveObserver(listener);
383 
384   // Remove the observer list from the map if it is empty
385   if (observer_list_iterator->second->empty()) {
386     // Schedule the actual removal for later in case the listener removal
387     // happens while iterating over the observer list.
388     base::SingleThreadTaskRunner::GetCurrentDefault()->PostTask(
389         FROM_HERE, base::BindOnce(&MDnsClientImpl::Core::CleanupObserverList,
390                                   AsWeakPtr(), key));
391   }
392 }
393 
CleanupObserverList(const ListenerKey & key)394 void MDnsClientImpl::Core::CleanupObserverList(const ListenerKey& key) {
395   auto found = listeners_.find(key);
396   if (found != listeners_.end() && found->second->empty()) {
397     listeners_.erase(found);
398   }
399 }
400 
ScheduleCleanup(base::Time cleanup)401 void MDnsClientImpl::Core::ScheduleCleanup(base::Time cleanup) {
402   // If cache is overfilled. Force an immediate cleanup.
403   if (cache_.IsCacheOverfilled())
404     cleanup = clock_->Now();
405 
406   // Cleanup is already scheduled, no need to do anything.
407   if (cleanup == scheduled_cleanup_) {
408     return;
409   }
410   scheduled_cleanup_ = cleanup;
411 
412   // This cancels the previously scheduled cleanup.
413   cleanup_timer_->Stop();
414 
415   // If |cleanup| is empty, then no cleanup necessary.
416   if (cleanup != base::Time()) {
417     cleanup_timer_->Start(FROM_HERE,
418                           std::max(base::TimeDelta(), cleanup - clock_->Now()),
419                           base::BindOnce(&MDnsClientImpl::Core::DoCleanup,
420                                          base::Unretained(this)));
421   }
422 }
423 
DoCleanup()424 void MDnsClientImpl::Core::DoCleanup() {
425   cache_.CleanupRecords(
426       clock_->Now(), base::BindRepeating(&MDnsClientImpl::Core::OnRecordRemoved,
427                                          base::Unretained(this)));
428 
429   ScheduleCleanup(cache_.next_expiration());
430 }
431 
OnRecordRemoved(const RecordParsed * record)432 void MDnsClientImpl::Core::OnRecordRemoved(
433     const RecordParsed* record) {
434   AlertListeners(MDnsCache::RecordRemoved,
435                  ListenerKey(record->name(), record->type()), record);
436 }
437 
QueryCache(uint16_t rrtype,const std::string & name,std::vector<const RecordParsed * > * records) const438 void MDnsClientImpl::Core::QueryCache(
439     uint16_t rrtype,
440     const std::string& name,
441     std::vector<const RecordParsed*>* records) const {
442   cache_.FindDnsRecords(rrtype, name, records, clock_->Now());
443 }
444 
MDnsClientImpl()445 MDnsClientImpl::MDnsClientImpl()
446     : clock_(base::DefaultClock::GetInstance()),
447       cleanup_timer_(std::make_unique<base::OneShotTimer>()) {}
448 
MDnsClientImpl(base::Clock * clock,std::unique_ptr<base::OneShotTimer> timer)449 MDnsClientImpl::MDnsClientImpl(base::Clock* clock,
450                                std::unique_ptr<base::OneShotTimer> timer)
451     : clock_(clock), cleanup_timer_(std::move(timer)) {}
452 
~MDnsClientImpl()453 MDnsClientImpl::~MDnsClientImpl() {
454   StopListening();
455 }
456 
StartListening(MDnsSocketFactory * socket_factory)457 int MDnsClientImpl::StartListening(MDnsSocketFactory* socket_factory) {
458   DCHECK(!core_.get());
459   core_ = std::make_unique<Core>(clock_, cleanup_timer_.get());
460   int rv = core_->Init(socket_factory);
461   if (rv != OK) {
462     DCHECK_NE(ERR_IO_PENDING, rv);
463     core_.reset();
464   }
465   return rv;
466 }
467 
StopListening()468 void MDnsClientImpl::StopListening() {
469   core_.reset();
470 }
471 
IsListening() const472 bool MDnsClientImpl::IsListening() const {
473   return core_.get() != nullptr;
474 }
475 
CreateListener(uint16_t rrtype,const std::string & name,MDnsListener::Delegate * delegate)476 std::unique_ptr<MDnsListener> MDnsClientImpl::CreateListener(
477     uint16_t rrtype,
478     const std::string& name,
479     MDnsListener::Delegate* delegate) {
480   return std::make_unique<MDnsListenerImpl>(rrtype, name, clock_, delegate,
481                                             this);
482 }
483 
CreateTransaction(uint16_t rrtype,const std::string & name,int flags,const MDnsTransaction::ResultCallback & callback)484 std::unique_ptr<MDnsTransaction> MDnsClientImpl::CreateTransaction(
485     uint16_t rrtype,
486     const std::string& name,
487     int flags,
488     const MDnsTransaction::ResultCallback& callback) {
489   return std::make_unique<MDnsTransactionImpl>(rrtype, name, flags, callback,
490                                                this);
491 }
492 
MDnsListenerImpl(uint16_t rrtype,const std::string & name,base::Clock * clock,MDnsListener::Delegate * delegate,MDnsClientImpl * client)493 MDnsListenerImpl::MDnsListenerImpl(uint16_t rrtype,
494                                    const std::string& name,
495                                    base::Clock* clock,
496                                    MDnsListener::Delegate* delegate,
497                                    MDnsClientImpl* client)
498     : rrtype_(rrtype),
499       name_(name),
500       clock_(clock),
501       client_(client),
502       delegate_(delegate) {}
503 
~MDnsListenerImpl()504 MDnsListenerImpl::~MDnsListenerImpl() {
505   if (started_) {
506     DCHECK(client_->core());
507     client_->core()->RemoveListener(this);
508   }
509 }
510 
Start()511 bool MDnsListenerImpl::Start() {
512   DCHECK(!started_);
513 
514   started_ = true;
515 
516   DCHECK(client_->core());
517   client_->core()->AddListener(this);
518 
519   return true;
520 }
521 
SetActiveRefresh(bool active_refresh)522 void MDnsListenerImpl::SetActiveRefresh(bool active_refresh) {
523   active_refresh_ = active_refresh;
524 
525   if (started_) {
526     if (!active_refresh_) {
527       next_refresh_.Cancel();
528     } else if (last_update_ != base::Time()) {
529       ScheduleNextRefresh();
530     }
531   }
532 }
533 
GetName() const534 const std::string& MDnsListenerImpl::GetName() const {
535   return name_;
536 }
537 
GetType() const538 uint16_t MDnsListenerImpl::GetType() const {
539   return rrtype_;
540 }
541 
HandleRecordUpdate(MDnsCache::UpdateType update_type,const RecordParsed * record)542 void MDnsListenerImpl::HandleRecordUpdate(MDnsCache::UpdateType update_type,
543                                           const RecordParsed* record) {
544   DCHECK(started_);
545 
546   if (update_type != MDnsCache::RecordRemoved) {
547     ttl_ = record->ttl();
548     last_update_ = record->time_created();
549 
550     ScheduleNextRefresh();
551   }
552 
553   if (update_type != MDnsCache::NoChange) {
554     MDnsListener::UpdateType update_external;
555 
556     switch (update_type) {
557       case MDnsCache::RecordAdded:
558         update_external = MDnsListener::RECORD_ADDED;
559         break;
560       case MDnsCache::RecordChanged:
561         update_external = MDnsListener::RECORD_CHANGED;
562         break;
563       case MDnsCache::RecordRemoved:
564         update_external = MDnsListener::RECORD_REMOVED;
565         break;
566       case MDnsCache::NoChange:
567       default:
568         NOTREACHED();
569         // Dummy assignment to suppress compiler warning.
570         update_external = MDnsListener::RECORD_CHANGED;
571         break;
572     }
573 
574     delegate_->OnRecordUpdate(update_external, record);
575   }
576 }
577 
AlertNsecRecord()578 void MDnsListenerImpl::AlertNsecRecord() {
579   DCHECK(started_);
580   delegate_->OnNsecRecord(name_, rrtype_);
581 }
582 
ScheduleNextRefresh()583 void MDnsListenerImpl::ScheduleNextRefresh() {
584   DCHECK(last_update_ != base::Time());
585 
586   if (!active_refresh_)
587     return;
588 
589   // A zero TTL is a goodbye packet and should not be refreshed.
590   if (ttl_ == 0) {
591     next_refresh_.Cancel();
592     return;
593   }
594 
595   next_refresh_.Reset(
596       base::BindRepeating(&MDnsListenerImpl::DoRefresh, AsWeakPtr()));
597 
598   // Schedule refreshes at both 85% and 95% of the original TTL. These will both
599   // be canceled and rescheduled if the record's TTL is updated due to a
600   // response being received.
601   base::Time next_refresh1 =
602       last_update_ +
603       base::Milliseconds(static_cast<int>(base::Time::kMillisecondsPerSecond *
604                                           kListenerRefreshRatio1 * ttl_));
605 
606   base::Time next_refresh2 =
607       last_update_ +
608       base::Milliseconds(static_cast<int>(base::Time::kMillisecondsPerSecond *
609                                           kListenerRefreshRatio2 * ttl_));
610 
611   base::SingleThreadTaskRunner::GetCurrentDefault()->PostDelayedTask(
612       FROM_HERE, next_refresh_.callback(), next_refresh1 - clock_->Now());
613 
614   base::SingleThreadTaskRunner::GetCurrentDefault()->PostDelayedTask(
615       FROM_HERE, next_refresh_.callback(), next_refresh2 - clock_->Now());
616 }
617 
DoRefresh()618 void MDnsListenerImpl::DoRefresh() {
619   client_->core()->SendQuery(rrtype_, name_);
620 }
621 
MDnsTransactionImpl(uint16_t rrtype,const std::string & name,int flags,const MDnsTransaction::ResultCallback & callback,MDnsClientImpl * client)622 MDnsTransactionImpl::MDnsTransactionImpl(
623     uint16_t rrtype,
624     const std::string& name,
625     int flags,
626     const MDnsTransaction::ResultCallback& callback,
627     MDnsClientImpl* client)
628     : rrtype_(rrtype),
629       name_(name),
630       callback_(callback),
631       client_(client),
632       flags_(flags) {
633   DCHECK((flags_ & MDnsTransaction::FLAG_MASK) == flags_);
634   DCHECK(flags_ & MDnsTransaction::QUERY_CACHE ||
635          flags_ & MDnsTransaction::QUERY_NETWORK);
636 }
637 
~MDnsTransactionImpl()638 MDnsTransactionImpl::~MDnsTransactionImpl() {
639   timeout_.Cancel();
640 }
641 
Start()642 bool MDnsTransactionImpl::Start() {
643   DCHECK(!started_);
644   started_ = true;
645 
646   base::WeakPtr<MDnsTransactionImpl> weak_this = AsWeakPtr();
647   if (flags_ & MDnsTransaction::QUERY_CACHE) {
648     ServeRecordsFromCache();
649 
650     if (!weak_this || !is_active()) return true;
651   }
652 
653   if (flags_ & MDnsTransaction::QUERY_NETWORK) {
654     return QueryAndListen();
655   }
656 
657   // If this is a cache only query, signal that the transaction is over
658   // immediately.
659   SignalTransactionOver();
660   return true;
661 }
662 
GetName() const663 const std::string& MDnsTransactionImpl::GetName() const {
664   return name_;
665 }
666 
GetType() const667 uint16_t MDnsTransactionImpl::GetType() const {
668   return rrtype_;
669 }
670 
CacheRecordFound(const RecordParsed * record)671 void MDnsTransactionImpl::CacheRecordFound(const RecordParsed* record) {
672   DCHECK(started_);
673   OnRecordUpdate(MDnsListener::RECORD_ADDED, record);
674 }
675 
TriggerCallback(MDnsTransaction::Result result,const RecordParsed * record)676 void MDnsTransactionImpl::TriggerCallback(MDnsTransaction::Result result,
677                                           const RecordParsed* record) {
678   DCHECK(started_);
679   if (!is_active()) return;
680 
681   // Ensure callback is run after touching all class state, so that
682   // the callback can delete the transaction.
683   MDnsTransaction::ResultCallback callback = callback_;
684 
685   // Reset the transaction if it expects a single result, or if the result
686   // is a final one (everything except for a record).
687   if (flags_ & MDnsTransaction::SINGLE_RESULT ||
688       result != MDnsTransaction::RESULT_RECORD) {
689     Reset();
690   }
691 
692   callback.Run(result, record);
693 }
694 
Reset()695 void MDnsTransactionImpl::Reset() {
696   callback_.Reset();
697   listener_.reset();
698   timeout_.Cancel();
699 }
700 
OnRecordUpdate(MDnsListener::UpdateType update,const RecordParsed * record)701 void MDnsTransactionImpl::OnRecordUpdate(MDnsListener::UpdateType update,
702                                          const RecordParsed* record) {
703   DCHECK(started_);
704   if (update ==  MDnsListener::RECORD_ADDED ||
705       update == MDnsListener::RECORD_CHANGED)
706     TriggerCallback(MDnsTransaction::RESULT_RECORD, record);
707 }
708 
SignalTransactionOver()709 void MDnsTransactionImpl::SignalTransactionOver() {
710   DCHECK(started_);
711   if (flags_ & MDnsTransaction::SINGLE_RESULT) {
712     TriggerCallback(MDnsTransaction::RESULT_NO_RESULTS, nullptr);
713   } else {
714     TriggerCallback(MDnsTransaction::RESULT_DONE, nullptr);
715   }
716 }
717 
ServeRecordsFromCache()718 void MDnsTransactionImpl::ServeRecordsFromCache() {
719   std::vector<const RecordParsed*> records;
720   base::WeakPtr<MDnsTransactionImpl> weak_this = AsWeakPtr();
721 
722   if (client_->core()) {
723     client_->core()->QueryCache(rrtype_, name_, &records);
724     for (auto i = records.begin(); i != records.end() && weak_this; ++i) {
725       weak_this->TriggerCallback(MDnsTransaction::RESULT_RECORD, *i);
726     }
727 
728 #if defined(ENABLE_NSEC)
729     if (records.empty()) {
730       DCHECK(weak_this);
731       client_->core()->QueryCache(dns_protocol::kTypeNSEC, name_, &records);
732       if (!records.empty()) {
733         const NsecRecordRdata* rdata =
734             records.front()->rdata<NsecRecordRdata>();
735         DCHECK(rdata);
736         if (!rdata->GetBit(rrtype_))
737           weak_this->TriggerCallback(MDnsTransaction::RESULT_NSEC, nullptr);
738       }
739     }
740 #endif
741   }
742 }
743 
QueryAndListen()744 bool MDnsTransactionImpl::QueryAndListen() {
745   listener_ = client_->CreateListener(rrtype_, name_, this);
746   if (!listener_->Start())
747     return false;
748 
749   DCHECK(client_->core());
750   if (!client_->core()->SendQuery(rrtype_, name_))
751     return false;
752 
753   timeout_.Reset(
754       base::BindOnce(&MDnsTransactionImpl::SignalTransactionOver, AsWeakPtr()));
755   base::SingleThreadTaskRunner::GetCurrentDefault()->PostDelayedTask(
756       FROM_HERE, timeout_.callback(), kTransactionTimeout);
757 
758   return true;
759 }
760 
OnNsecRecord(const std::string & name,unsigned type)761 void MDnsTransactionImpl::OnNsecRecord(const std::string& name, unsigned type) {
762   TriggerCallback(RESULT_NSEC, nullptr);
763 }
764 
OnCachePurged()765 void MDnsTransactionImpl::OnCachePurged() {
766   // TODO(noamsml): Cache purge situations not yet implemented
767 }
768 
769 }  // namespace net
770