mirror of
https://github.com/mozilla/gecko-dev.git
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417 lines
12 KiB
C++
417 lines
12 KiB
C++
/* 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
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "mozilla/Hal.h"
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#include "mozilla/HalSensor.h"
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#include "nsDeviceSensors.h"
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#include "nsAutoPtr.h"
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#include "nsIDOMEvent.h"
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#include "nsIDOMWindow.h"
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#include "nsPIDOMWindow.h"
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#include "nsIDOMDocument.h"
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#include "nsIServiceManager.h"
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#include "nsIServiceManager.h"
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#include "GeneratedEvents.h"
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#include "mozilla/Preferences.h"
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#include "mozilla/Attributes.h"
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#include "nsIPermissionManager.h"
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#include "mozilla/dom/DeviceLightEvent.h"
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#include "mozilla/dom/DeviceProximityEvent.h"
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#include "mozilla/dom/UserProximityEvent.h"
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using namespace mozilla;
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using namespace mozilla::dom;
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using namespace hal;
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#undef near
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// also see sDefaultSensorHint in mobile/android/base/GeckoAppShell.java
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#define DEFAULT_SENSOR_POLL 100
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static const nsTArray<nsIDOMWindow*>::index_type NoIndex =
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nsTArray<nsIDOMWindow*>::NoIndex;
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class nsDeviceSensorData MOZ_FINAL : public nsIDeviceSensorData
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{
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public:
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NS_DECL_ISUPPORTS
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NS_DECL_NSIDEVICESENSORDATA
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nsDeviceSensorData(unsigned long type, double x, double y, double z);
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private:
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~nsDeviceSensorData();
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protected:
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unsigned long mType;
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double mX, mY, mZ;
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};
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nsDeviceSensorData::nsDeviceSensorData(unsigned long type, double x, double y, double z)
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: mType(type), mX(x), mY(y), mZ(z)
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{
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}
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NS_INTERFACE_MAP_BEGIN(nsDeviceSensorData)
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NS_INTERFACE_MAP_ENTRY_AMBIGUOUS(nsISupports, nsIDeviceSensorData)
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NS_INTERFACE_MAP_END
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NS_IMPL_ADDREF(nsDeviceSensorData)
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NS_IMPL_RELEASE(nsDeviceSensorData)
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nsDeviceSensorData::~nsDeviceSensorData()
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{
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}
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NS_IMETHODIMP nsDeviceSensorData::GetType(uint32_t *aType)
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{
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NS_ENSURE_ARG_POINTER(aType);
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*aType = mType;
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return NS_OK;
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}
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NS_IMETHODIMP nsDeviceSensorData::GetX(double *aX)
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{
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NS_ENSURE_ARG_POINTER(aX);
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*aX = mX;
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return NS_OK;
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}
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NS_IMETHODIMP nsDeviceSensorData::GetY(double *aY)
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{
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NS_ENSURE_ARG_POINTER(aY);
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*aY = mY;
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return NS_OK;
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}
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NS_IMETHODIMP nsDeviceSensorData::GetZ(double *aZ)
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{
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NS_ENSURE_ARG_POINTER(aZ);
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*aZ = mZ;
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return NS_OK;
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}
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NS_IMPL_ISUPPORTS1(nsDeviceSensors, nsIDeviceSensors)
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nsDeviceSensors::nsDeviceSensors()
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{
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mIsUserProximityNear = false;
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mLastDOMMotionEventTime = TimeStamp::Now();
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mEnabled = Preferences::GetBool("device.sensors.enabled", true);
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for (int i = 0; i < NUM_SENSOR_TYPE; i++) {
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nsTArray<nsIDOMWindow*> *windows = new nsTArray<nsIDOMWindow*>();
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mWindowListeners.AppendElement(windows);
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}
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mLastDOMMotionEventTime = TimeStamp::Now();
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}
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nsDeviceSensors::~nsDeviceSensors()
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{
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for (int i = 0; i < NUM_SENSOR_TYPE; i++) {
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if (IsSensorEnabled(i))
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UnregisterSensorObserver((SensorType)i, this);
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}
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for (int i = 0; i < NUM_SENSOR_TYPE; i++) {
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delete mWindowListeners[i];
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}
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}
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NS_IMETHODIMP nsDeviceSensors::HasWindowListener(uint32_t aType, nsIDOMWindow *aWindow, bool *aRetVal)
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{
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if (!mEnabled)
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*aRetVal = false;
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else
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*aRetVal = mWindowListeners[aType]->IndexOf(aWindow) != NoIndex;
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return NS_OK;
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}
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NS_IMETHODIMP nsDeviceSensors::AddWindowListener(uint32_t aType, nsIDOMWindow *aWindow)
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{
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if (!mEnabled)
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return NS_OK;
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if (mWindowListeners[aType]->IndexOf(aWindow) != NoIndex)
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return NS_OK;
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if (!IsSensorEnabled(aType)) {
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RegisterSensorObserver((SensorType)aType, this);
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}
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mWindowListeners[aType]->AppendElement(aWindow);
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return NS_OK;
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}
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NS_IMETHODIMP nsDeviceSensors::RemoveWindowListener(uint32_t aType, nsIDOMWindow *aWindow)
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{
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if (mWindowListeners[aType]->IndexOf(aWindow) == NoIndex)
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return NS_OK;
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mWindowListeners[aType]->RemoveElement(aWindow);
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if (mWindowListeners[aType]->Length() == 0)
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UnregisterSensorObserver((SensorType)aType, this);
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return NS_OK;
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}
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NS_IMETHODIMP nsDeviceSensors::RemoveWindowAsListener(nsIDOMWindow *aWindow)
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{
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for (int i = 0; i < NUM_SENSOR_TYPE; i++) {
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RemoveWindowListener((SensorType)i, aWindow);
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}
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return NS_OK;
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}
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static bool
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WindowCannotReceiveSensorEvent (nsPIDOMWindow* aWindow)
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{
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// Check to see if this window is in the background. If
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// it is and it does not have the "background-sensors" permission,
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// don't send any device motion events to it.
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if (!aWindow || !aWindow->IsCurrentInnerWindow()) {
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return true;
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}
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if (aWindow->GetOuterWindow()->IsBackground()) {
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nsCOMPtr<nsIPermissionManager> permMgr =
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do_GetService(NS_PERMISSIONMANAGER_CONTRACTID);
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NS_ENSURE_TRUE(permMgr, false);
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uint32_t permission = nsIPermissionManager::DENY_ACTION;
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permMgr->TestPermissionFromWindow(aWindow, "background-sensors", &permission);
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return permission != nsIPermissionManager::ALLOW_ACTION;
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}
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return false;
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}
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void
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nsDeviceSensors::Notify(const mozilla::hal::SensorData& aSensorData)
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{
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uint32_t type = aSensorData.sensor();
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const InfallibleTArray<float>& values = aSensorData.values();
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size_t len = values.Length();
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double x = len > 0 ? values[0] : 0.0;
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double y = len > 1 ? values[1] : 0.0;
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double z = len > 2 ? values[2] : 0.0;
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nsCOMArray<nsIDOMWindow> windowListeners;
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for (uint32_t i = 0; i < mWindowListeners[type]->Length(); i++) {
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windowListeners.AppendObject(mWindowListeners[type]->SafeElementAt(i));
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}
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for (uint32_t i = windowListeners.Count(); i > 0 ; ) {
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--i;
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nsCOMPtr<nsPIDOMWindow> pwindow = do_QueryInterface(windowListeners[i]);
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if (WindowCannotReceiveSensorEvent(pwindow)) {
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continue;
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}
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nsCOMPtr<nsIDOMDocument> domdoc;
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windowListeners[i]->GetDocument(getter_AddRefs(domdoc));
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if (domdoc) {
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nsCOMPtr<mozilla::dom::EventTarget> target = do_QueryInterface(windowListeners[i]);
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if (type == nsIDeviceSensorData::TYPE_ACCELERATION ||
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type == nsIDeviceSensorData::TYPE_LINEAR_ACCELERATION ||
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type == nsIDeviceSensorData::TYPE_GYROSCOPE)
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FireDOMMotionEvent(domdoc, target, type, x, y, z);
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else if (type == nsIDeviceSensorData::TYPE_ORIENTATION)
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FireDOMOrientationEvent(domdoc, target, x, y, z);
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else if (type == nsIDeviceSensorData::TYPE_PROXIMITY)
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FireDOMProximityEvent(target, x, y, z);
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else if (type == nsIDeviceSensorData::TYPE_LIGHT)
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FireDOMLightEvent(target, x);
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}
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}
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}
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void
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nsDeviceSensors::FireDOMLightEvent(mozilla::dom::EventTarget* aTarget,
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double aValue)
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{
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DeviceLightEventInit init;
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init.mBubbles = true;
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init.mCancelable = false;
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init.mValue = aValue;
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nsRefPtr<DeviceLightEvent> event =
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DeviceLightEvent::Constructor(aTarget, NS_LITERAL_STRING("devicelight"), init);
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event->SetTrusted(true);
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bool defaultActionEnabled;
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aTarget->DispatchEvent(event, &defaultActionEnabled);
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}
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void
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nsDeviceSensors::FireDOMProximityEvent(mozilla::dom::EventTarget* aTarget,
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double aValue,
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double aMin,
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double aMax)
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{
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DeviceProximityEventInit init;
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init.mBubbles = true;
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init.mCancelable = false;
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init.mValue = aValue;
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init.mMin = aMin;
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init.mMax = aMax;
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nsRefPtr<DeviceProximityEvent> event =
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DeviceProximityEvent::Constructor(aTarget,
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NS_LITERAL_STRING("deviceproximity"),
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init);
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event->SetTrusted(true);
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bool defaultActionEnabled;
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aTarget->DispatchEvent(event, &defaultActionEnabled);
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// Some proximity sensors only support a binary near or
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// far measurement. In this case, the sensor should report
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// its maximum range value in the far state and a lesser
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// value in the near state.
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bool near = (aValue < aMax);
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if (mIsUserProximityNear != near) {
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mIsUserProximityNear = near;
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FireDOMUserProximityEvent(aTarget, mIsUserProximityNear);
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}
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}
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void
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nsDeviceSensors::FireDOMUserProximityEvent(mozilla::dom::EventTarget* aTarget,
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bool aNear)
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{
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UserProximityEventInit init;
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init.mBubbles = true;
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init.mCancelable = false;
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init.mNear = aNear;
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nsRefPtr<UserProximityEvent> event =
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UserProximityEvent::Constructor(aTarget,
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NS_LITERAL_STRING("userproximity"),
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init);
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event->SetTrusted(true);
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bool defaultActionEnabled;
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aTarget->DispatchEvent(event, &defaultActionEnabled);
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}
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void
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nsDeviceSensors::FireDOMOrientationEvent(nsIDOMDocument* domdoc,
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EventTarget* target,
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double alpha,
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double beta,
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double gamma)
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{
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nsCOMPtr<nsIDOMEvent> event;
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bool defaultActionEnabled = true;
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domdoc->CreateEvent(NS_LITERAL_STRING("DeviceOrientationEvent"), getter_AddRefs(event));
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nsCOMPtr<nsIDOMDeviceOrientationEvent> oe = do_QueryInterface(event);
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if (!oe) {
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return;
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}
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oe->InitDeviceOrientationEvent(NS_LITERAL_STRING("deviceorientation"),
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true,
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false,
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alpha,
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beta,
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gamma,
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true);
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event->SetTrusted(true);
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target->DispatchEvent(event, &defaultActionEnabled);
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}
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void
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nsDeviceSensors::FireDOMMotionEvent(nsIDOMDocument *domdoc,
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EventTarget* target,
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uint32_t type,
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double x,
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double y,
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double z)
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{
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// Attempt to coalesce events
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bool fireEvent = TimeStamp::Now() > mLastDOMMotionEventTime + TimeDuration::FromMilliseconds(DEFAULT_SENSOR_POLL);
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switch (type) {
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case nsIDeviceSensorData::TYPE_LINEAR_ACCELERATION:
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if (mLastAcceleration.empty()) {
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mLastAcceleration.construct();
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}
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mLastAcceleration.ref().mX.SetValue(x);
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mLastAcceleration.ref().mY.SetValue(y);
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mLastAcceleration.ref().mZ.SetValue(z);
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break;
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case nsIDeviceSensorData::TYPE_ACCELERATION:
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if (mLastAccelerationIncluduingGravity.empty()) {
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mLastAccelerationIncluduingGravity.construct();
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}
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mLastAccelerationIncluduingGravity.ref().mX.SetValue(x);
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mLastAccelerationIncluduingGravity.ref().mY.SetValue(y);
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mLastAccelerationIncluduingGravity.ref().mZ.SetValue(z);
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break;
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case nsIDeviceSensorData::TYPE_GYROSCOPE:
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if (mLastRotationRate.empty()) {
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mLastRotationRate.construct();
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}
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mLastRotationRate.ref().mAlpha.SetValue(x);
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mLastRotationRate.ref().mBeta.SetValue(y);
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mLastRotationRate.ref().mGamma.SetValue(z);
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break;
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}
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if (fireEvent) {
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if (mLastAcceleration.empty()) {
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mLastAcceleration.construct();
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}
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if (mLastAccelerationIncluduingGravity.empty()) {
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mLastAccelerationIncluduingGravity.construct();
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}
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if (mLastRotationRate.empty()) {
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mLastRotationRate.construct();
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}
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} else if (mLastAcceleration.empty() ||
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mLastAccelerationIncluduingGravity.empty() ||
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mLastRotationRate.empty()) {
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return;
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}
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nsCOMPtr<nsIDOMEvent> event;
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domdoc->CreateEvent(NS_LITERAL_STRING("DeviceMotionEvent"), getter_AddRefs(event));
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nsDOMDeviceMotionEvent* me = static_cast<nsDOMDeviceMotionEvent*>(event.get());
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ErrorResult rv;
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me->InitDeviceMotionEvent(NS_LITERAL_STRING("devicemotion"),
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true,
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false,
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mLastAcceleration.ref(),
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mLastAccelerationIncluduingGravity.ref(),
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mLastRotationRate.ref(),
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Nullable<double>(DEFAULT_SENSOR_POLL),
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rv);
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event->SetTrusted(true);
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bool defaultActionEnabled = true;
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target->DispatchEvent(event, &defaultActionEnabled);
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mLastRotationRate.destroy();
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mLastAccelerationIncluduingGravity.destroy();
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mLastAcceleration.destroy();
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mLastDOMMotionEventTime = TimeStamp::Now();
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}
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