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https://github.com/klzgrad/naiveproxy.git
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321 lines
13 KiB
C
321 lines
13 KiB
C
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// 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_PROXY_RESOLUTION_PROXY_CONFIG_SERVICE_LINUX_H_
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#define NET_PROXY_RESOLUTION_PROXY_CONFIG_SERVICE_LINUX_H_
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#include <stddef.h>
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#include <memory>
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#include <string>
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#include <vector>
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#include "base/compiler_specific.h"
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#include "base/environment.h"
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#include "base/macros.h"
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#include "base/memory/ref_counted.h"
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#include "base/observer_list.h"
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#include "base/optional.h"
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#include "net/base/net_export.h"
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#include "net/base/proxy_server.h"
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#include "net/proxy_resolution/proxy_config_service.h"
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#include "net/proxy_resolution/proxy_config_with_annotation.h"
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namespace base {
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class SingleThreadTaskRunner;
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class SequencedTaskRunner;
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} // namespace base
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namespace net {
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// Implementation of ProxyConfigService that retrieves the system proxy
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// settings from environment variables, gconf, gsettings, or kioslaverc (KDE).
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class NET_EXPORT_PRIVATE ProxyConfigServiceLinux : public ProxyConfigService {
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public:
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class Delegate;
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class SettingGetter {
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public:
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// Buffer size used in some implementations of this class when reading
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// files. Defined here so unit tests can construct worst-case inputs.
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static const size_t BUFFER_SIZE = 512;
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SettingGetter() {}
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virtual ~SettingGetter() {}
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// Initializes the class: obtains a gconf/gsettings client, or simulates
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// one, in the concrete implementations. Returns true on success. Must be
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// called before using other methods, and should be called on the thread
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// running the glib main loop.
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// This interface supports both GNOME and KDE implementations. In the
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// case of GNOME, the glib_task_runner will be used for interacting with
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// gconf/gsettings as those APIs have thread affinity. Whereas in the case
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// of KDE, its configuration files will be monitored at well-known locations
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// and glib_task_runner will not be used. Instead, blocking file I/O
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// operations will be posted directly using the task scheduler.
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virtual bool Init(const scoped_refptr<base::SingleThreadTaskRunner>&
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glib_task_runner) = 0;
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// Releases the gconf/gsettings client, which clears cached directories and
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// stops notifications.
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virtual void ShutDown() = 0;
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// Requests notification of gconf/gsettings changes for proxy
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// settings. Returns true on success.
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virtual bool SetUpNotifications(Delegate* delegate) = 0;
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// Returns the message loop for the thread on which this object
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// handles notifications, and also on which it must be destroyed.
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// Returns NULL if it does not matter.
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virtual const scoped_refptr<base::SequencedTaskRunner>&
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GetNotificationTaskRunner() = 0;
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// These are all the values that can be fetched. We used to just use the
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// corresponding paths in gconf for these, but gconf is now obsolete and
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// in the future we'll be using mostly gsettings/kioslaverc so we
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// enumerate them instead to avoid unnecessary string operations.
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enum StringSetting {
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PROXY_MODE,
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PROXY_AUTOCONF_URL,
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PROXY_HTTP_HOST,
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PROXY_HTTPS_HOST,
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PROXY_FTP_HOST,
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PROXY_SOCKS_HOST,
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};
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enum BoolSetting {
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PROXY_USE_HTTP_PROXY,
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PROXY_USE_SAME_PROXY,
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PROXY_USE_AUTHENTICATION,
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};
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enum IntSetting {
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PROXY_HTTP_PORT,
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PROXY_HTTPS_PORT,
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PROXY_FTP_PORT,
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PROXY_SOCKS_PORT,
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};
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enum StringListSetting {
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PROXY_IGNORE_HOSTS,
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};
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// Given a PROXY_*_HOST value, return the corresponding PROXY_*_PORT value.
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static IntSetting HostSettingToPortSetting(StringSetting host) {
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switch (host) {
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case PROXY_HTTP_HOST:
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return PROXY_HTTP_PORT;
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case PROXY_HTTPS_HOST:
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return PROXY_HTTPS_PORT;
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case PROXY_FTP_HOST:
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return PROXY_FTP_PORT;
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case PROXY_SOCKS_HOST:
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return PROXY_SOCKS_PORT;
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default:
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NOTREACHED();
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return PROXY_HTTP_PORT; // Placate compiler.
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}
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}
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// Gets a string type value from the data source and stores it in
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// |*result|. Returns false if the key is unset or on error. Must only be
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// called after a successful call to Init(), and not after a failed call
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// to SetUpNotifications() or after calling Release().
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virtual bool GetString(StringSetting key, std::string* result) = 0;
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// Same thing for a bool typed value.
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virtual bool GetBool(BoolSetting key, bool* result) = 0;
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// Same for an int typed value.
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virtual bool GetInt(IntSetting key, int* result) = 0;
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// And for a string list.
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virtual bool GetStringList(StringListSetting key,
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std::vector<std::string>* result) = 0;
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// Returns true if the bypass list should be interpreted as a proxy
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// whitelist rather than blacklist. (This is KDE-specific.)
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virtual bool BypassListIsReversed() = 0;
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// Returns true if the bypass rules should be interpreted as
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// suffix-matching rules.
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virtual bool MatchHostsUsingSuffixMatching() = 0;
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private:
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DISALLOW_COPY_AND_ASSIGN(SettingGetter);
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};
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// ProxyConfigServiceLinux is created on the glib thread, and
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// SetUpAndFetchInitialConfig() is immediately called to synchronously
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// fetch the original configuration and set up change notifications on
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// the ProxyConfigService's main SequencedTaskRunner, which is passed to its
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// constructor (Which may or may not run tasks on the glib thread).
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//
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// Past that point, it is accessed periodically through the
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// ProxyConfigService interface (GetLatestProxyConfig, AddObserver,
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// RemoveObserver) from the main TaskRunner.
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//
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// Setting change notification callbacks can occur at any time and are
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// run on either the glib thread (gconf/gsettings) or a separate file thread
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// (KDE). The new settings are fetched on that thread, and the resulting proxy
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// config is posted to the main TaskRunner through
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// Delegate::SetNewProxyConfig(). We then notify observers on that TaskRunner
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// of the configuration change.
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//
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// ProxyConfigServiceLinux is deleted from the main TaskRunner.
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//
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// The substance of the ProxyConfigServiceLinux implementation is
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// wrapped in the Delegate ref counted class. On deleting the
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// ProxyConfigServiceLinux, Delegate::OnDestroy() is posted to either
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// the glib thread (gconf/gsettings) or a file thread (KDE) where change
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// notifications will be safely stopped before releasing Delegate.
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class Delegate : public base::RefCountedThreadSafe<Delegate> {
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public:
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// Test code can set |setting_getter| and |traffic_annotation|. If left
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// unspecified, reasonable defaults will be used.
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Delegate(std::unique_ptr<base::Environment> env_var_getter,
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base::Optional<std::unique_ptr<SettingGetter>> setting_getter,
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base::Optional<NetworkTrafficAnnotationTag> traffic_annotation);
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// Synchronously obtains the proxy configuration. If gconf,
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// gsettings, or kioslaverc are used, also enables notifications for
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// setting changes. gconf/gsettings must only be accessed from the
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// thread running the default glib main loop, and so this method
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// must be called from the glib thread. The message loop for the
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// ProxyConfigService's main SequencedTaskRunner is specified so that
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// notifications can post tasks to it (and for assertions).
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void SetUpAndFetchInitialConfig(
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const scoped_refptr<base::SingleThreadTaskRunner>& glib_task_runner,
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const scoped_refptr<base::SequencedTaskRunner>& main_task_runner,
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const NetworkTrafficAnnotationTag& traffic_annotation);
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// Handler for setting change notifications: fetches a new proxy
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// configuration from settings, and if this config is different
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// than what we had before, posts a task to have it stored in
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// cached_config_.
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// Left public for simplicity.
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void OnCheckProxyConfigSettings();
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// Called on the service's main TaskRunner.
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void AddObserver(Observer* observer);
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void RemoveObserver(Observer* observer);
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ProxyConfigService::ConfigAvailability GetLatestProxyConfig(
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ProxyConfigWithAnnotation* config);
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// Posts a call to OnDestroy() to the glib or a file task runner,
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// depending on the setting getter in use. Called from
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// ProxyConfigServiceLinux's destructor.
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void PostDestroyTask();
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// Safely stops change notifications. Posted to either the glib thread or
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// sequenced task runner, depending on the setting getter in use.
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void OnDestroy();
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private:
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friend class base::RefCountedThreadSafe<Delegate>;
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~Delegate();
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// Obtains an environment variable's value. Parses a proxy server
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// specification from it and puts it in result. Returns true if the
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// requested variable is defined and the value valid.
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bool GetProxyFromEnvVarForScheme(base::StringPiece variable,
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ProxyServer::Scheme scheme,
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ProxyServer* result_server);
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// As above but with scheme set to HTTP, for convenience.
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bool GetProxyFromEnvVar(base::StringPiece variable,
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ProxyServer* result_server);
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// Returns a proxy config based on the environment variables, or empty value
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// on failure.
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base::Optional<ProxyConfigWithAnnotation> GetConfigFromEnv();
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// Obtains host and port config settings and parses a proxy server
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// specification from it and puts it in result. Returns true if the
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// requested variable is defined and the value valid.
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bool GetProxyFromSettings(SettingGetter::StringSetting host_key,
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ProxyServer* result_server);
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// Returns a proxy config based on the settings, or empty value
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// on failure.
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base::Optional<ProxyConfigWithAnnotation> GetConfigFromSettings();
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// This method is posted from the glib thread to the main TaskRunner to
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// carry the new config information.
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void SetNewProxyConfig(
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const base::Optional<ProxyConfigWithAnnotation>& new_config);
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// This method is run on the getter's notification thread.
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void SetUpNotifications();
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std::unique_ptr<base::Environment> env_var_getter_;
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std::unique_ptr<SettingGetter> setting_getter_;
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// Cached proxy configuration, to be returned by
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// GetLatestProxyConfig. Initially populated from the glib thread, but
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// afterwards only accessed from the main TaskRunner.
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base::Optional<ProxyConfigWithAnnotation> cached_config_;
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// A copy kept on the glib thread of the last seen proxy config, so as
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// to avoid posting a call to SetNewProxyConfig when we get a
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// notification but the config has not actually changed.
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base::Optional<ProxyConfigWithAnnotation> reference_config_;
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// The task runner for the glib thread, aka main browser thread. This thread
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// is where we run the glib main loop (see
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// base/message_loop/message_pump_glib.h). It is the glib default loop in
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// the sense that it runs the glib default context: as in the context where
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// sources are added by g_timeout_add and g_idle_add, and returned by
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// g_main_context_default. gconf uses glib timeouts and idles and possibly
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// other callbacks that will all be dispatched on this thread. Since gconf
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// is not thread safe, any use of gconf must be done on the thread running
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// this loop.
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scoped_refptr<base::SingleThreadTaskRunner> glib_task_runner_;
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// Task runner for the main TaskRunner. GetLatestProxyConfig() is called
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// from the thread running this loop.
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scoped_refptr<base::SequencedTaskRunner> main_task_runner_;
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base::ObserverList<Observer> observers_;
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MutableNetworkTrafficAnnotationTag traffic_annotation_;
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DISALLOW_COPY_AND_ASSIGN(Delegate);
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};
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// Thin wrapper shell around Delegate.
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// Usual constructor
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ProxyConfigServiceLinux();
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// For testing: take alternate setting and env var getter implementations.
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explicit ProxyConfigServiceLinux(
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std::unique_ptr<base::Environment> env_var_getter,
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const NetworkTrafficAnnotationTag& traffic_annotation);
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ProxyConfigServiceLinux(
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std::unique_ptr<base::Environment> env_var_getter,
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SettingGetter* setting_getter, // TODO(eroman): Use std::unique_ptr.
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const NetworkTrafficAnnotationTag& traffic_annotation);
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~ProxyConfigServiceLinux() override;
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void SetupAndFetchInitialConfig(
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const scoped_refptr<base::SingleThreadTaskRunner>& glib_task_runner,
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const scoped_refptr<base::SequencedTaskRunner>& main_task_runner,
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const NetworkTrafficAnnotationTag& traffic_annotation) {
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delegate_->SetUpAndFetchInitialConfig(glib_task_runner, main_task_runner,
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traffic_annotation);
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}
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void OnCheckProxyConfigSettings() {
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delegate_->OnCheckProxyConfigSettings();
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}
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// ProxyConfigService methods:
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// Called from main TaskRunner.
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void AddObserver(Observer* observer) override;
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void RemoveObserver(Observer* observer) override;
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ProxyConfigService::ConfigAvailability GetLatestProxyConfig(
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ProxyConfigWithAnnotation* config) override;
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private:
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scoped_refptr<Delegate> delegate_;
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DISALLOW_COPY_AND_ASSIGN(ProxyConfigServiceLinux);
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};
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} // namespace net
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#endif // NET_PROXY_RESOLUTION_PROXY_CONFIG_SERVICE_LINUX_H_
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