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433 lines
17 KiB
C++
433 lines
17 KiB
C++
// Copyright (c) 2012 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#ifndef NET_DNS_HOST_RESOLVER_IMPL_H_
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#define NET_DNS_HOST_RESOLVER_IMPL_H_
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#include <stddef.h>
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#include <stdint.h>
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#include <map>
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#include <memory>
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#include <set>
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#include <string>
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#include <vector>
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#include "base/memory/weak_ptr.h"
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#include "base/time/time.h"
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#include "base/timer/timer.h"
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#include "net/base/completion_once_callback.h"
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#include "net/base/network_change_notifier.h"
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#include "net/dns/dns_config_service.h"
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#include "net/dns/host_cache.h"
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#include "net/dns/host_resolver.h"
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#include "net/dns/host_resolver_proc.h"
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#include "net/url_request/url_request_context.h"
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#include "url/gurl.h"
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namespace base {
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class TickClock;
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} // namespace base
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namespace net {
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class AddressList;
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class DnsClient;
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class IPAddress;
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class NetLog;
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class NetLogWithSource;
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// For each hostname that is requested, HostResolver creates a
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// HostResolverImpl::Job. When this job gets dispatched it creates a task
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// (ProcTask for the system resolver or DnsTask for the async resolver) which
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// resolves the hostname. If requests for that same host are made during the
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// job's lifetime, they are attached to the existing job rather than creating a
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// new one. This avoids doing parallel resolves for the same host.
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//
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// The way these classes fit together is illustrated by:
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//
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//
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// +----------- HostResolverImpl -------------+
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// | | |
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// Job Job Job
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// (for host1, fam1) (for host2, fam2) (for hostx, famx)
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// / | | / | | / | |
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// Request ... Request Request ... Request Request ... Request
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// (port1) (port2) (port3) (port4) (port5) (portX)
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//
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// When a HostResolverImpl::Job finishes, the callbacks of each waiting request
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// are run on the origin thread.
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//
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// Thread safety: This class is not threadsafe, and must only be called
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// from one thread!
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//
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// The HostResolverImpl enforces limits on the maximum number of concurrent
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// threads using PrioritizedDispatcher::Limits.
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//
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// Jobs are ordered in the queue based on their priority and order of arrival.
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class NET_EXPORT HostResolverImpl
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: public HostResolver,
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public NetworkChangeNotifier::IPAddressObserver,
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public NetworkChangeNotifier::ConnectionTypeObserver,
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public NetworkChangeNotifier::DNSObserver {
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public:
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// Parameters for ProcTask which resolves hostnames using HostResolveProc.
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//
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// |resolver_proc| is used to perform the actual resolves; it must be
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// thread-safe since it may be run from multiple worker threads. If
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// |resolver_proc| is NULL then the default host resolver procedure is
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// used (which is SystemHostResolverProc except if overridden).
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//
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// For each attempt, we could start another attempt if host is not resolved
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// within |unresponsive_delay| time. We keep attempting to resolve the host
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// for |max_retry_attempts|. For every retry attempt, we grow the
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// |unresponsive_delay| by the |retry_factor| amount (that is retry interval
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// is multiplied by the retry factor each time). Once we have retried
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// |max_retry_attempts|, we give up on additional attempts.
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//
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struct NET_EXPORT_PRIVATE ProcTaskParams {
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// Sets up defaults.
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ProcTaskParams(HostResolverProc* resolver_proc, size_t max_retry_attempts);
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ProcTaskParams(const ProcTaskParams& other);
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~ProcTaskParams();
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// The procedure to use for resolving host names. This will be NULL, except
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// in the case of unit-tests which inject custom host resolving behaviors.
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scoped_refptr<HostResolverProc> resolver_proc;
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// Maximum number retry attempts to resolve the hostname.
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// Pass HostResolver::kDefaultRetryAttempts to choose a default value.
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size_t max_retry_attempts;
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// This is the limit after which we make another attempt to resolve the host
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// if the worker thread has not responded yet.
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base::TimeDelta unresponsive_delay;
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// Factor to grow |unresponsive_delay| when we re-re-try.
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uint32_t retry_factor;
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};
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// Creates a HostResolver as specified by |options|. Blocking tasks are run in
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// TaskScheduler.
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//
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// If Options.enable_caching is true, a cache is created using
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// HostCache::CreateDefaultCache(). Otherwise no cache is used.
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//
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// Options.GetDispatcherLimits() determines the maximum number of jobs that
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// the resolver will run at once. This upper-bounds the total number of
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// outstanding DNS transactions (not counting retransmissions and retries).
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//
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// |net_log| must remain valid for the life of the HostResolverImpl.
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HostResolverImpl(const Options& options, NetLog* net_log);
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// If any completion callbacks are pending when the resolver is destroyed,
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// the host resolutions are cancelled, and the completion callbacks will not
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// be called.
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~HostResolverImpl() override;
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// Set the DnsClient to be used for resolution. In case of failure, the
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// HostResolverProc from ProcTaskParams will be queried. If the DnsClient is
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// not pre-configured with a valid DnsConfig, a new config is fetched from
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// NetworkChangeNotifier.
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void SetDnsClient(std::unique_ptr<DnsClient> dns_client);
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// HostResolver methods:
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std::unique_ptr<ResolveHostRequest> CreateRequest(
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const HostPortPair& host,
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const NetLogWithSource& net_log,
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const base::Optional<ResolveHostParameters>& optional_parameters)
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override;
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int Resolve(const RequestInfo& info,
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RequestPriority priority,
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AddressList* addresses,
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CompletionOnceCallback callback,
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std::unique_ptr<Request>* out_req,
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const NetLogWithSource& source_net_log) override;
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int ResolveFromCache(const RequestInfo& info,
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AddressList* addresses,
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const NetLogWithSource& source_net_log) override;
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int ResolveStaleFromCache(const RequestInfo& info,
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AddressList* addresses,
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HostCache::EntryStaleness* stale_info,
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const NetLogWithSource& source_net_log) override;
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void SetDnsClientEnabled(bool enabled) override;
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HostCache* GetHostCache() override;
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bool HasCached(base::StringPiece hostname,
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HostCache::Entry::Source* source_out,
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HostCache::EntryStaleness* stale_out) const override;
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std::unique_ptr<base::Value> GetDnsConfigAsValue() const override;
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// Returns the number of host cache entries that were restored, or 0 if there
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// is no cache.
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size_t LastRestoredCacheSize() const;
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// Returns the number of entries in the host cache, or 0 if there is no cache.
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size_t CacheSize() const;
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void SetNoIPv6OnWifi(bool no_ipv6_on_wifi) override;
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bool GetNoIPv6OnWifi() override;
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void SetRequestContext(URLRequestContext* request_context) override;
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void AddDnsOverHttpsServer(std::string uri_template, bool use_post) override;
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void ClearDnsOverHttpsServers() override;
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const std::vector<DnsConfig::DnsOverHttpsServerConfig>*
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GetDnsOverHttpsServersForTesting() const override;
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void set_proc_params_for_test(const ProcTaskParams& proc_params) {
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proc_params_ = proc_params;
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}
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void SetTickClockForTesting(const base::TickClock* tick_clock);
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// Configures maximum number of Jobs in the queue. Exposed for testing.
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// Only allowed when the queue is empty.
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void SetMaxQueuedJobsForTesting(size_t value);
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protected:
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// Callback from HaveOnlyLoopbackAddresses probe.
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void SetHaveOnlyLoopbackAddresses(bool result);
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// Sets the task runner used for HostResolverProc tasks.
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void SetTaskRunnerForTesting(scoped_refptr<base::TaskRunner> task_runner);
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private:
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friend class HostResolverImplTest;
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class Job;
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class ProcTask;
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class LoopbackProbeJob;
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class DnsTask;
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class RequestImpl;
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class LegacyRequestImpl;
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using Key = HostCache::Key;
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using JobMap = std::map<Key, std::unique_ptr<Job>>;
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// Number of consecutive failures of DnsTask (with successful fallback to
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// ProcTask) before the DnsClient is disabled until the next DNS change.
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static const unsigned kMaximumDnsFailures;
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// Attempts host resolution for |request|. Generally only expected to be
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// called from RequestImpl::Start().
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int Resolve(RequestImpl* request);
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// Attempts host resolution using fast local sources: IP literal resolution,
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// cache lookup, HOSTS lookup (if enabled), and localhost. Returns OK if
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// successful, ERR_NAME_NOT_RESOLVED if input is invalid, or
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// ERR_DNS_CACHE_MISS if the host could not be resolved using local sources.
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//
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// On success, the resulting addresses are written to |addresses|.
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//
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// On ERR_DNS_CACHE_MISS and OK, the cache key for the request is written to
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// |key|. On other errors, it may not be.
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//
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// If |allow_stale| is true, then stale cache entries can be returned.
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// |stale_info| must be non-null, and will be filled in with details of the
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// entry's staleness (if an entry is returned).
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//
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// If |allow_stale| is false, then stale cache entries will not be returned,
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// and |stale_info| must be null.
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int ResolveLocally(const HostPortPair& host,
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DnsQueryType requested_address_family,
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HostResolverSource source,
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HostResolverFlags flags,
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bool allow_cache,
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bool allow_stale,
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HostCache::EntryStaleness* stale_info,
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const NetLogWithSource& request_net_log,
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AddressList* addresses,
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Key* key);
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// Attempts to create and start a Job to asynchronously attempt to resolve
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// |key|. On success, returns ERR_IO_PENDING and attaches the Job to
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// |request|. On error, marks |request| completed and returns the error.
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int CreateAndStartJob(const Key& key, RequestImpl* request);
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// Tries to resolve |key| as an IP, returns true and sets |net_error| if
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// succeeds, returns false otherwise.
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bool ResolveAsIP(const Key& key,
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uint16_t host_port,
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const IPAddress* ip_address,
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int* net_error,
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AddressList* addresses);
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// If |key| is not found in cache returns false, otherwise returns
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// true, sets |net_error| to the cached error code and fills |addresses|
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// if it is a positive entry.
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//
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// If |allow_stale| is true, then stale cache entries can be returned.
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// |stale_info| must be non-null, and will be filled in with details of the
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// entry's staleness (if an entry is returned).
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//
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// If |allow_stale| is false, then stale cache entries will not be returned,
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// and |stale_info| must be null.
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bool ServeFromCache(const Key& key,
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uint16_t host_port,
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int* net_error,
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AddressList* addresses,
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bool allow_stale,
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HostCache::EntryStaleness* stale_info);
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// If we have a DnsClient with a valid DnsConfig, and |key| is found in the
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// HOSTS file, returns true and fills |addresses|. Otherwise returns false.
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bool ServeFromHosts(const Key& key,
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uint16_t host_port,
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AddressList* addresses);
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// If |key| is for a localhost name (RFC 6761), returns true and fills
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// |addresses| with the loopback IP. Otherwise returns false.
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bool ServeLocalhost(const Key& key,
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uint16_t host_port,
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AddressList* addresses);
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// Returns the (hostname, address_family) key to use for |info|, choosing an
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// "effective" address family by inheriting the resolver's default address
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// family when the request leaves it unspecified.
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Key GetEffectiveKeyForRequest(const std::string& hostname,
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DnsQueryType dns_query_type,
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HostResolverSource source,
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HostResolverFlags flags,
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const IPAddress* ip_address,
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const NetLogWithSource& net_log);
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// Probes IPv6 support and returns true if IPv6 support is enabled.
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// Results are cached, i.e. when called repeatedly this method returns result
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// from the first probe for some time before probing again.
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bool IsIPv6Reachable(const NetLogWithSource& net_log);
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// Attempts to connect a UDP socket to |dest|:53. Virtual for testing.
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virtual bool IsGloballyReachable(const IPAddress& dest,
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const NetLogWithSource& net_log);
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// Asynchronously checks if only loopback IPs are available.
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virtual void RunLoopbackProbeJob();
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// Records the result in cache if cache is present.
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void CacheResult(const Key& key,
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const HostCache::Entry& entry,
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base::TimeDelta ttl);
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// Removes |job| from |jobs_| and return, only if it exists.
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std::unique_ptr<Job> RemoveJob(Job* job);
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// Aborts all in progress jobs with ERR_NETWORK_CHANGED and notifies their
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// requests. Might start new jobs.
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void AbortAllInProgressJobs();
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// Aborts all in progress DnsTasks. In-progress jobs will fall back to
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// ProcTasks. Might start new jobs, if any jobs were taking up two dispatcher
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// slots.
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void AbortDnsTasks();
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// Attempts to serve each Job in |jobs_| from the HOSTS file if we have
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// a DnsClient with a valid DnsConfig.
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void TryServingAllJobsFromHosts();
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// NetworkChangeNotifier::IPAddressObserver:
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void OnIPAddressChanged() override;
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// NetworkChangeNotifier::ConnectionTypeObserver:
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void OnConnectionTypeChanged(
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NetworkChangeNotifier::ConnectionType type) override;
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// NetworkChangeNotifier::DNSObserver:
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void OnDNSChanged() override;
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void OnInitialDNSConfigRead() override;
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void UpdateDNSConfig(bool config_changed);
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// True if have a DnsClient with a valid DnsConfig.
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bool HaveDnsConfig() const;
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// Called when a host name is successfully resolved and DnsTask was run on it
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// and resulted in |net_error|.
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void OnDnsTaskResolve(int net_error);
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// Allows the tests to catch slots leaking out of the dispatcher. One
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// HostResolverImpl::Job could occupy multiple PrioritizedDispatcher job
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// slots.
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size_t num_running_dispatcher_jobs_for_tests() const {
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return dispatcher_->num_running_jobs();
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}
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// Cache of host resolution results.
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std::unique_ptr<HostCache> cache_;
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// Map from HostCache::Key to a Job.
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JobMap jobs_;
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// Starts Jobs according to their priority and the configured limits.
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std::unique_ptr<PrioritizedDispatcher> dispatcher_;
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// Limit on the maximum number of jobs queued in |dispatcher_|.
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size_t max_queued_jobs_;
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// Parameters for ProcTask.
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ProcTaskParams proc_params_;
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NetLog* net_log_;
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// If present, used by DnsTask and ServeFromHosts to resolve requests.
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std::unique_ptr<DnsClient> dns_client_;
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// True if received valid config from |dns_config_service_|. Temporary, used
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// to measure performance of DnsConfigService: http://crbug.com/125599
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bool received_dns_config_;
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// Number of consecutive failures of DnsTask, counted when fallback succeeds.
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unsigned num_dns_failures_;
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// True if IPv6 should not be attempted when on a WiFi connection. See
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// https://crbug.com/696569 for further context.
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bool assume_ipv6_failure_on_wifi_;
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// True if DnsConfigService detected that system configuration depends on
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// local IPv6 connectivity. Disables probing.
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bool use_local_ipv6_;
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base::TimeTicks last_ipv6_probe_time_;
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bool last_ipv6_probe_result_;
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// Any resolver flags that should be added to a request by default.
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HostResolverFlags additional_resolver_flags_;
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// Allow fallback to ProcTask if DnsTask fails.
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bool fallback_to_proctask_;
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// Task runner used for DNS lookups using the system resolver. Normally a
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// TaskScheduler task runner, but can be overridden for tests.
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scoped_refptr<base::TaskRunner> proc_task_runner_;
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URLRequestContext* url_request_context_;
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std::vector<DnsConfig::DnsOverHttpsServerConfig> dns_over_https_servers_;
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// Shared tick clock, overridden for testing.
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const base::TickClock* tick_clock_;
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THREAD_CHECKER(thread_checker_);
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base::WeakPtrFactory<HostResolverImpl> weak_ptr_factory_;
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base::WeakPtrFactory<HostResolverImpl> probe_weak_ptr_factory_;
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DISALLOW_COPY_AND_ASSIGN(HostResolverImpl);
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};
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// Resolves a local hostname (such as "localhost" or "localhost6") into
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// IP endpoints with the given port. Returns true if |host| is a local
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// hostname and false otherwise. Special IPv6 names (e.g. "localhost6")
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// will resolve to an IPv6 address only, whereas other names will
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// resolve to both IPv4 and IPv6.
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// This function is only exposed so it can be unit-tested.
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// TODO(tfarina): It would be better to change the tests so this function
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// gets exercised indirectly through HostResolverImpl.
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NET_EXPORT_PRIVATE bool ResolveLocalHostname(base::StringPiece host,
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uint16_t port,
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AddressList* address_list);
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} // namespace net
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#endif // NET_DNS_HOST_RESOLVER_IMPL_H_
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