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640 lines
18 KiB
C++
640 lines
18 KiB
C++
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set sw=2 ts=8 et ft=cpp : */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this file,
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* You can obtain one at http://mozilla.org/MPL/2.0/. */
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#ifndef mozilla_Hal_h
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#define mozilla_Hal_h
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#include "mozilla/hal_sandbox/PHal.h"
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#include "mozilla/HalTypes.h"
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#include "base/basictypes.h"
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#include "mozilla/Observer.h"
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#include "mozilla/Types.h"
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#include "nsTArray.h"
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#include "prlog.h"
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#include "mozilla/dom/MozPowerManagerBinding.h"
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#include "mozilla/dom/battery/Types.h"
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#include "mozilla/dom/network/Types.h"
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#include "mozilla/dom/power/Types.h"
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#include "mozilla/hal_sandbox/PHal.h"
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#include "mozilla/dom/ScreenOrientation.h"
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#include "mozilla/HalScreenConfiguration.h"
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/*
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* Hal.h contains the public Hal API.
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*
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* By default, this file defines its functions in the hal namespace, but if
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* MOZ_HAL_NAMESPACE is defined, we'll define our functions in that namespace.
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*
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* This is used by HalImpl.h and HalSandbox.h, which define copies of all the
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* functions here in the hal_impl and hal_sandbox namespaces.
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*/
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class nsIDOMWindow;
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#ifndef MOZ_HAL_NAMESPACE
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# define MOZ_HAL_NAMESPACE hal
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# define MOZ_DEFINED_HAL_NAMESPACE 1
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#endif
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namespace mozilla {
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namespace hal {
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typedef Observer<void_t> AlarmObserver;
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class WindowIdentifier;
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extern PRLogModuleInfo *GetHalLog();
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#define HAL_LOG(msg) PR_LOG(mozilla::hal::GetHalLog(), PR_LOG_DEBUG, msg)
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#define HAL_ERR(msg) PR_LOG(mozilla::hal::GetHalLog(), PR_LOG_ERROR, msg)
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typedef Observer<int64_t> SystemClockChangeObserver;
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typedef Observer<SystemTimezoneChangeInformation> SystemTimezoneChangeObserver;
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} // namespace hal
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namespace MOZ_HAL_NAMESPACE {
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/**
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* Turn the default vibrator device on/off per the pattern specified
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* by |pattern|. Each element in the pattern is the number of
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* milliseconds to turn the vibrator on or off. The first element in
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* |pattern| is an "on" element, the next is "off", and so on.
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*
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* If |pattern| is empty, any in-progress vibration is canceled.
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*
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* Only an active window within an active tab may call Vibrate; calls
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* from inactive windows and windows on inactive tabs do nothing.
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*
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* If you're calling hal::Vibrate from the outside world, pass an
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* nsIDOMWindow* in place of the WindowIdentifier parameter.
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* The method with WindowIdentifier will be called automatically.
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*/
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void Vibrate(const nsTArray<uint32_t>& pattern,
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nsIDOMWindow* aWindow);
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void Vibrate(const nsTArray<uint32_t>& pattern,
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const hal::WindowIdentifier &id);
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/**
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* Cancel a vibration started by the content window identified by
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* WindowIdentifier.
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*
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* If the window was the last window to start a vibration, the
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* cancellation request will go through even if the window is not
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* active.
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*
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* As with hal::Vibrate(), if you're calling hal::CancelVibrate from the outside
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* world, pass an nsIDOMWindow*. The method with WindowIdentifier will be called
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* automatically.
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*/
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void CancelVibrate(nsIDOMWindow* aWindow);
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void CancelVibrate(const hal::WindowIdentifier &id);
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/**
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* Inform the battery backend there is a new battery observer.
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* @param aBatteryObserver The observer that should be added.
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*/
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void RegisterBatteryObserver(BatteryObserver* aBatteryObserver);
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/**
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* Inform the battery backend a battery observer unregistered.
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* @param aBatteryObserver The observer that should be removed.
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*/
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void UnregisterBatteryObserver(BatteryObserver* aBatteryObserver);
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/**
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* Returns the current battery information.
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*/
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void GetCurrentBatteryInformation(hal::BatteryInformation* aBatteryInfo);
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/**
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* Notify of a change in the battery state.
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* @param aBatteryInfo The new battery information.
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*/
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void NotifyBatteryChange(const hal::BatteryInformation& aBatteryInfo);
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/**
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* Determine whether the device's screen is currently enabled.
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*/
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bool GetScreenEnabled();
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/**
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* Enable or disable the device's screen.
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*
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* Note that it may take a few seconds for the screen to turn on or off.
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*/
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void SetScreenEnabled(bool aEnabled);
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/**
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* Determine whether the device's keypad/button backlight is currently enabled.
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*/
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bool GetKeyLightEnabled();
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/**
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* Enable or disable the device's keypad/button backlight.
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*/
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void SetKeyLightEnabled(bool aEnabled);
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/**
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* Get the brightness of the device's screen's backlight, on a scale from 0
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* (very dim) to 1 (full blast).
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*
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* If the display is currently disabled, this returns the brightness the
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* backlight will have when the display is re-enabled.
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*/
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double GetScreenBrightness();
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/**
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* Set the brightness of the device's screen's backlight, on a scale from 0
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* (very dimm) to 1 (full blast). Values larger than 1 are treated like 1, and
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* values smaller than 0 are treated like 0.
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*
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* Note that we may reduce the resolution of the given brightness value before
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* sending it to the screen. Therefore if you call SetScreenBrightness(x)
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* followed by GetScreenBrightness(), the value returned by
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* GetScreenBrightness() may not be exactly x.
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*/
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void SetScreenBrightness(double aBrightness);
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/**
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* Determine whether the device is allowed to sleep.
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*/
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bool GetCpuSleepAllowed();
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/**
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* Set whether the device is allowed to suspend automatically after
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* the screen is disabled.
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*/
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void SetCpuSleepAllowed(bool aAllowed);
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/**
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* Register an observer for the sensor of given type.
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*
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* The observer will receive data whenever the data generated by the
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* sensor is avaiable.
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*/
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void RegisterSensorObserver(hal::SensorType aSensor,
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hal::ISensorObserver *aObserver);
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/**
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* Unregister an observer for the sensor of given type.
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*/
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void UnregisterSensorObserver(hal::SensorType aSensor,
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hal::ISensorObserver *aObserver);
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/**
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* Post a value generated by a sensor.
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*
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* This API is internal to hal; clients shouldn't call it directly.
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*/
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void NotifySensorChange(const hal::SensorData &aSensorData);
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/**
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* Enable sensor notifications from the backend
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*
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* This method is only visible from implementation of sensor manager.
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* Rest of the system should not try this.
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*/
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void EnableSensorNotifications(hal::SensorType aSensor);
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/**
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* Disable sensor notifications from the backend
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*
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* This method is only visible from implementation of sensor manager.
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* Rest of the system should not try this.
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*/
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void DisableSensorNotifications(hal::SensorType aSensor);
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/**
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* Inform the network backend there is a new network observer.
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* @param aNetworkObserver The observer that should be added.
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*/
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void RegisterNetworkObserver(NetworkObserver* aNetworkObserver);
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/**
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* Inform the network backend a network observer unregistered.
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* @param aNetworkObserver The observer that should be removed.
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*/
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void UnregisterNetworkObserver(NetworkObserver* aNetworkObserver);
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/**
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* Returns the current network information.
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*/
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void GetCurrentNetworkInformation(hal::NetworkInformation* aNetworkInfo);
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/**
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* Notify of a change in the network state.
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* @param aNetworkInfo The new network information.
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*/
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void NotifyNetworkChange(const hal::NetworkInformation& aNetworkInfo);
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/**
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* Adjusting system clock.
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* @param aDeltaMilliseconds The difference compared with current system clock.
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*/
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void AdjustSystemClock(int64_t aDeltaMilliseconds);
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/**
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* Set timezone
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* @param aTimezoneSpec The definition can be found in
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* http://en.wikipedia.org/wiki/List_of_tz_database_time_zones
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*/
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void SetTimezone(const nsCString& aTimezoneSpec);
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/**
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* Get timezone
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* http://en.wikipedia.org/wiki/List_of_tz_database_time_zones
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*/
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nsCString GetTimezone();
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/**
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* Get timezone offset
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* returns the timezone offset relative to UTC in minutes (DST effect included)
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*/
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int32_t GetTimezoneOffset();
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/**
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* Register observer for system clock changed notification.
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* @param aObserver The observer that should be added.
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*/
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void RegisterSystemClockChangeObserver(
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hal::SystemClockChangeObserver* aObserver);
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/**
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* Unregister the observer for system clock changed.
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* @param aObserver The observer that should be removed.
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*/
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void UnregisterSystemClockChangeObserver(
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hal::SystemClockChangeObserver* aObserver);
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/**
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* Notify of a change in the system clock.
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* @param aClockDeltaMS
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*/
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void NotifySystemClockChange(const int64_t& aClockDeltaMS);
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/**
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* Register observer for system timezone changed notification.
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* @param aObserver The observer that should be added.
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*/
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void RegisterSystemTimezoneChangeObserver(
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hal::SystemTimezoneChangeObserver* aObserver);
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/**
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* Unregister the observer for system timezone changed.
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* @param aObserver The observer that should be removed.
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*/
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void UnregisterSystemTimezoneChangeObserver(
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hal::SystemTimezoneChangeObserver* aObserver);
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/**
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* Notify of a change in the system timezone.
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* @param aSystemTimezoneChangeInfo
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*/
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void NotifySystemTimezoneChange(
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const hal::SystemTimezoneChangeInformation& aSystemTimezoneChangeInfo);
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/**
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* Reboot the device.
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*
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* This API is currently only allowed to be used from the main process.
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*/
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void Reboot();
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/**
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* Power off the device.
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*
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* This API is currently only allowed to be used from the main process.
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*/
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void PowerOff();
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/**
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* Enable wake lock notifications from the backend.
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*
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* This method is only used by WakeLockObserversManager.
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*/
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void EnableWakeLockNotifications();
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/**
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* Disable wake lock notifications from the backend.
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*
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* This method is only used by WakeLockObserversManager.
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*/
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void DisableWakeLockNotifications();
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/**
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* Inform the wake lock backend there is a new wake lock observer.
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* @param aWakeLockObserver The observer that should be added.
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*/
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void RegisterWakeLockObserver(WakeLockObserver* aObserver);
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/**
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* Inform the wake lock backend a wake lock observer unregistered.
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* @param aWakeLockObserver The observer that should be removed.
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*/
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void UnregisterWakeLockObserver(WakeLockObserver* aObserver);
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/**
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* Adjust a wake lock's counts on behalf of a given process.
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*
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* In most cases, you shouldn't need to pass the aProcessID argument; the
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* default of CONTENT_PROCESS_ID_UNKNOWN is probably what you want.
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*
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* @param aTopic lock topic
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* @param aLockAdjust to increase or decrease active locks
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* @param aHiddenAdjust to increase or decrease hidden locks
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* @param aProcessID indicates which process we're modifying the wake lock
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* on behalf of. It is interpreted as
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*
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* CONTENT_PROCESS_ID_UNKNOWN: The current process
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* CONTENT_PROCESS_ID_MAIN: The root process
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* X: The process with ContentChild::GetID() == X
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*/
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void ModifyWakeLock(const nsAString &aTopic,
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hal::WakeLockControl aLockAdjust,
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hal::WakeLockControl aHiddenAdjust,
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uint64_t aProcessID = hal::CONTENT_PROCESS_ID_UNKNOWN);
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/**
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* Query the wake lock numbers of aTopic.
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* @param aTopic lock topic
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* @param aWakeLockInfo wake lock numbers
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*/
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void GetWakeLockInfo(const nsAString &aTopic, hal::WakeLockInformation *aWakeLockInfo);
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/**
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* Notify of a change in the wake lock state.
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* @param aWakeLockInfo The new wake lock information.
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*/
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void NotifyWakeLockChange(const hal::WakeLockInformation& aWakeLockInfo);
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/**
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* Inform the backend there is a new screen configuration observer.
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* @param aScreenConfigurationObserver The observer that should be added.
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*/
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void RegisterScreenConfigurationObserver(hal::ScreenConfigurationObserver* aScreenConfigurationObserver);
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/**
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* Inform the backend a screen configuration observer unregistered.
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* @param aScreenConfigurationObserver The observer that should be removed.
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*/
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void UnregisterScreenConfigurationObserver(hal::ScreenConfigurationObserver* aScreenConfigurationObserver);
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/**
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* Returns the current screen configuration.
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*/
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void GetCurrentScreenConfiguration(hal::ScreenConfiguration* aScreenConfiguration);
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/**
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* Notify of a change in the screen configuration.
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* @param aScreenConfiguration The new screen orientation.
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*/
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void NotifyScreenConfigurationChange(const hal::ScreenConfiguration& aScreenConfiguration);
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/**
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* Lock the screen orientation to the specific orientation.
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* @return Whether the lock has been accepted.
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*/
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bool LockScreenOrientation(const dom::ScreenOrientation& aOrientation);
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/**
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* Unlock the screen orientation.
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*/
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void UnlockScreenOrientation();
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/**
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* Register an observer for the switch of given SwitchDevice.
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*
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* The observer will receive data whenever the data generated by the
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* given switch.
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*/
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void RegisterSwitchObserver(hal::SwitchDevice aDevice, hal::SwitchObserver *aSwitchObserver);
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/**
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* Unregister an observer for the switch of given SwitchDevice.
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*/
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void UnregisterSwitchObserver(hal::SwitchDevice aDevice, hal::SwitchObserver *aSwitchObserver);
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/**
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* Notify the state of the switch.
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*
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* This API is internal to hal; clients shouldn't call it directly.
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*/
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void NotifySwitchChange(const hal::SwitchEvent& aEvent);
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/**
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* Get current switch information.
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*/
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hal::SwitchState GetCurrentSwitchState(hal::SwitchDevice aDevice);
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/**
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* Notify switch status change from input device.
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*/
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void NotifySwitchStateFromInputDevice(hal::SwitchDevice aDevice,
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hal::SwitchState aState);
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/**
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* Register an observer that is notified when a programmed alarm
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* expires.
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*
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* Currently, there can only be 0 or 1 alarm observers.
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*/
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bool RegisterTheOneAlarmObserver(hal::AlarmObserver* aObserver);
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/**
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* Unregister the alarm observer. Doing so will implicitly cancel any
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* programmed alarm.
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*/
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void UnregisterTheOneAlarmObserver();
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/**
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* Notify that the programmed alarm has expired.
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*
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* This API is internal to hal; clients shouldn't call it directly.
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*/
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void NotifyAlarmFired();
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/**
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* Program the real-time clock to expire at the time |aSeconds|,
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* |aNanoseconds|. These specify a point in real time relative to the
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* UNIX epoch. The alarm will fire at this time point even if the
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* real-time clock is changed; that is, this alarm respects changes to
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* the real-time clock. Return true iff the alarm was programmed.
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*
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* The alarm can be reprogrammed at any time.
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*
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* This API is currently only allowed to be used from non-sandboxed
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* contexts.
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*/
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bool SetAlarm(int32_t aSeconds, int32_t aNanoseconds);
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/**
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* Set the priority of the given process. A process's priority is a two-tuple
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* consisting of a hal::ProcessPriority value and a hal::ProcessCPUPriority
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* value.
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*
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* Two processes with the same ProcessCPUPriority value don't necessarily have
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* the same CPU priority; the CPU priority we assign to a process is a function
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* of its ProcessPriority and ProcessCPUPriority.
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*
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* Exactly what this does will vary between platforms. On *nix we might give
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* background processes higher nice values. On other platforms, we might
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* ignore this call entirely.
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*/
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void SetProcessPriority(int aPid,
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hal::ProcessPriority aPriority,
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hal::ProcessCPUPriority aCPUPriority,
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uint32_t aLRU = 0);
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/**
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* Set the current thread's priority to appropriate platform-specific value for
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* given functionality. Instead of providing arbitrary priority numbers you
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* must specify a type of function like THREAD_PRIORITY_COMPOSITOR.
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*/
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void SetCurrentThreadPriority(hal::ThreadPriority aThreadPriority);
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/**
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* Register an observer for the FM radio.
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*/
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void RegisterFMRadioObserver(hal::FMRadioObserver* aRadioObserver);
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/**
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* Unregister the observer for the FM radio.
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*/
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void UnregisterFMRadioObserver(hal::FMRadioObserver* aRadioObserver);
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/**
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* Notify observers that a call to EnableFMRadio, DisableFMRadio, or FMRadioSeek
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* has completed, and indicate what the call returned.
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*/
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void NotifyFMRadioStatus(const hal::FMRadioOperationInformation& aRadioState);
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/**
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* Enable the FM radio and configure it according to the settings in aInfo.
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*/
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void EnableFMRadio(const hal::FMRadioSettings& aInfo);
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/**
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* Disable the FM radio.
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*/
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void DisableFMRadio();
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/**
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* Seek to an available FM radio station.
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*
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* This can be called off main thread, but all calls must be completed
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* before calling DisableFMRadio.
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*/
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void FMRadioSeek(const hal::FMRadioSeekDirection& aDirection);
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/**
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* Get the current FM radio settings.
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*/
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void GetFMRadioSettings(hal::FMRadioSettings* aInfo);
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/**
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* Set the FM radio's frequency.
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*
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* This can be called off main thread, but all calls must be completed
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* before calling DisableFMRadio.
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*/
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void SetFMRadioFrequency(const uint32_t frequency);
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/**
|
|
* Get the FM radio's frequency.
|
|
*/
|
|
uint32_t GetFMRadioFrequency();
|
|
|
|
/**
|
|
* Get FM radio power state
|
|
*/
|
|
bool IsFMRadioOn();
|
|
|
|
/**
|
|
* Get FM radio signal strength
|
|
*/
|
|
uint32_t GetFMRadioSignalStrength();
|
|
|
|
/**
|
|
* Cancel FM radio seeking
|
|
*/
|
|
void CancelFMRadioSeek();
|
|
|
|
/**
|
|
* Get FM radio band settings by country.
|
|
*/
|
|
hal::FMRadioSettings GetFMBandSettings(hal::FMRadioCountry aCountry);
|
|
|
|
/**
|
|
* Start a watchdog to compulsively shutdown the system if it hangs.
|
|
* @param aMode Specify how to shutdown the system.
|
|
* @param aTimeoutSecs Specify the delayed seconds to shutdown the system.
|
|
*
|
|
* This API is currently only allowed to be used from the main process.
|
|
*/
|
|
void StartForceQuitWatchdog(hal::ShutdownMode aMode, int32_t aTimeoutSecs);
|
|
|
|
/**
|
|
* Perform Factory Reset to wipe out all user data.
|
|
*/
|
|
void FactoryReset(mozilla::dom::FactoryResetReason& aReason);
|
|
|
|
/**
|
|
* Start monitoring the status of gamepads attached to the system.
|
|
*/
|
|
void StartMonitoringGamepadStatus();
|
|
|
|
/**
|
|
* Stop monitoring the status of gamepads attached to the system.
|
|
*/
|
|
void StopMonitoringGamepadStatus();
|
|
|
|
/**
|
|
* Start monitoring disk space for low space situations.
|
|
*
|
|
* This API is currently only allowed to be used from the main process.
|
|
*/
|
|
void StartDiskSpaceWatcher();
|
|
|
|
/**
|
|
* Stop monitoring disk space for low space situations.
|
|
*
|
|
* This API is currently only allowed to be used from the main process.
|
|
*/
|
|
void StopDiskSpaceWatcher();
|
|
|
|
/**
|
|
* Get total system memory of device being run on in bytes.
|
|
*
|
|
* Returns 0 if we are unable to determine this information from /proc/meminfo.
|
|
*/
|
|
uint32_t GetTotalSystemMemory();
|
|
|
|
/**
|
|
* Get the level of total system memory on device in MiB.
|
|
* (round the value up to the next power of two)
|
|
*
|
|
* Returns 0 if we are unable to determine this information from /proc/meminfo.
|
|
*/
|
|
uint32_t GetTotalSystemMemoryLevel();
|
|
|
|
/**
|
|
* Determine whether the headphone switch event is from input device
|
|
*/
|
|
bool IsHeadphoneEventFromInputDev();
|
|
|
|
} // namespace MOZ_HAL_NAMESPACE
|
|
} // namespace mozilla
|
|
|
|
#ifdef MOZ_DEFINED_HAL_NAMESPACE
|
|
# undef MOZ_DEFINED_HAL_NAMESPACE
|
|
# undef MOZ_HAL_NAMESPACE
|
|
#endif
|
|
|
|
#endif // mozilla_Hal_h
|