mirror of
https://gitlab.winehq.org/wine/wine-gecko.git
synced 2024-09-13 09:24:08 -07:00
574 lines
18 KiB
C++
574 lines
18 KiB
C++
/* -*- Mode: c++; c-basic-offset: 2; indent-tabs-mode: nil; tab-width: 40 -*- */
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/* vim: set ts=2 et sw=2 tw=80: */
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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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#include "AudioChannelService.h"
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#include "AudioChannelServiceChild.h"
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#include "base/basictypes.h"
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#include "mozilla/Services.h"
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#include "mozilla/StaticPtr.h"
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#include "mozilla/unused.h"
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#include "mozilla/Util.h"
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#include "mozilla/dom/ContentParent.h"
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#include "nsThreadUtils.h"
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#include "nsHashPropertyBag.h"
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#ifdef MOZ_WIDGET_GONK
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#include "nsIAudioManager.h"
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#endif
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using namespace mozilla;
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using namespace mozilla::dom;
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using namespace mozilla::hal;
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StaticRefPtr<AudioChannelService> gAudioChannelService;
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// static
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AudioChannelService*
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AudioChannelService::GetAudioChannelService()
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{
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MOZ_ASSERT(NS_IsMainThread());
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if (XRE_GetProcessType() != GeckoProcessType_Default) {
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return AudioChannelServiceChild::GetAudioChannelService();
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}
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// If we already exist, exit early
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if (gAudioChannelService) {
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return gAudioChannelService;
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}
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// Create new instance, register, return
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nsRefPtr<AudioChannelService> service = new AudioChannelService();
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NS_ENSURE_TRUE(service, nullptr);
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gAudioChannelService = service;
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return gAudioChannelService;
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}
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void
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AudioChannelService::Shutdown()
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{
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if (XRE_GetProcessType() != GeckoProcessType_Default) {
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return AudioChannelServiceChild::Shutdown();
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}
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if (gAudioChannelService) {
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gAudioChannelService = nullptr;
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}
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}
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NS_IMPL_ISUPPORTS2(AudioChannelService, nsIObserver, nsITimerCallback)
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AudioChannelService::AudioChannelService()
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: mCurrentHigherChannel(AUDIO_CHANNEL_LAST)
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, mCurrentVisibleHigherChannel(AUDIO_CHANNEL_LAST)
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, mActiveContentChildIDsFrozen(false)
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{
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// Creation of the hash table.
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mAgents.Init();
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if (XRE_GetProcessType() == GeckoProcessType_Default) {
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nsCOMPtr<nsIObserverService> obs = mozilla::services::GetObserverService();
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if (obs) {
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obs->AddObserver(this, "ipc:content-shutdown", false);
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}
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}
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}
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AudioChannelService::~AudioChannelService()
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{
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}
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void
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AudioChannelService::RegisterAudioChannelAgent(AudioChannelAgent* aAgent,
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AudioChannelType aType)
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{
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AudioChannelAgentData* data = new AudioChannelAgentData(aType,
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true /* mElementHidden */,
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true /* mMuted */);
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mAgents.Put(aAgent, data);
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RegisterType(aType, CONTENT_PROCESS_ID_MAIN);
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}
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void
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AudioChannelService::RegisterType(AudioChannelType aType, uint64_t aChildID)
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{
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AudioChannelInternalType type = GetInternalType(aType, true);
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mChannelCounters[type].AppendElement(aChildID);
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if (XRE_GetProcessType() == GeckoProcessType_Default) {
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// Since there is another telephony registered, we can unregister old one
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// immediately.
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if (mDeferTelChannelTimer && aType == AUDIO_CHANNEL_TELEPHONY) {
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mDeferTelChannelTimer->Cancel();
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mDeferTelChannelTimer = nullptr;
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UnregisterTypeInternal(aType, mTimerElementHidden, mTimerChildID);
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}
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// In order to avoid race conditions, it's safer to notify any existing
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// agent any time a new one is registered.
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SendAudioChannelChangedNotification(aChildID);
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Notify();
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}
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}
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void
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AudioChannelService::UnregisterAudioChannelAgent(AudioChannelAgent* aAgent)
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{
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nsAutoPtr<AudioChannelAgentData> data;
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mAgents.RemoveAndForget(aAgent, data);
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if (data) {
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UnregisterType(data->mType, data->mElementHidden, CONTENT_PROCESS_ID_MAIN);
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}
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}
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void
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AudioChannelService::UnregisterType(AudioChannelType aType,
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bool aElementHidden,
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uint64_t aChildID)
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{
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// There are two reasons to defer the decrease of telephony channel.
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// 1. User can have time to remove device from his ear before music resuming.
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// 2. Give BT SCO to be disconnected before starting to connect A2DP.
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if (XRE_GetProcessType() == GeckoProcessType_Default &&
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aType == AUDIO_CHANNEL_TELEPHONY &&
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(mChannelCounters[AUDIO_CHANNEL_INT_TELEPHONY_HIDDEN].Length() +
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mChannelCounters[AUDIO_CHANNEL_INT_TELEPHONY].Length()) == 1) {
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mTimerElementHidden = aElementHidden;
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mTimerChildID = aChildID;
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mDeferTelChannelTimer = do_CreateInstance("@mozilla.org/timer;1");
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mDeferTelChannelTimer->InitWithCallback(this, 1500, nsITimer::TYPE_ONE_SHOT);
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return;
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}
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UnregisterTypeInternal(aType, aElementHidden, aChildID);
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}
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void
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AudioChannelService::UnregisterTypeInternal(AudioChannelType aType,
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bool aElementHidden,
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uint64_t aChildID)
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{
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// The array may contain multiple occurrence of this appId but
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// this should remove only the first one.
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AudioChannelInternalType type = GetInternalType(aType, aElementHidden);
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MOZ_ASSERT(mChannelCounters[type].Contains(aChildID));
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mChannelCounters[type].RemoveElement(aChildID);
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// In order to avoid race conditions, it's safer to notify any existing
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// agent any time a new one is registered.
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if (XRE_GetProcessType() == GeckoProcessType_Default) {
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// We only remove ChildID when it is in the foreground.
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// If in the background, we kept ChildID for allowing it to play next song.
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if (aType == AUDIO_CHANNEL_CONTENT &&
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mActiveContentChildIDs.Contains(aChildID) &&
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!aElementHidden &&
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!mChannelCounters[AUDIO_CHANNEL_INT_CONTENT].Contains(aChildID)) {
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mActiveContentChildIDs.RemoveElement(aChildID);
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}
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SendAudioChannelChangedNotification(aChildID);
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Notify();
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}
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}
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void
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AudioChannelService::UpdateChannelType(AudioChannelType aType,
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uint64_t aChildID,
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bool aElementHidden,
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bool aElementWasHidden)
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{
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// Calculate the new and old internal type and update the hashtable if needed.
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AudioChannelInternalType newType = GetInternalType(aType, aElementHidden);
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AudioChannelInternalType oldType = GetInternalType(aType, aElementWasHidden);
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if (newType != oldType) {
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mChannelCounters[newType].AppendElement(aChildID);
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MOZ_ASSERT(mChannelCounters[oldType].Contains(aChildID));
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mChannelCounters[oldType].RemoveElement(aChildID);
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}
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}
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bool
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AudioChannelService::GetMuted(AudioChannelAgent* aAgent, bool aElementHidden)
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{
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AudioChannelAgentData* data;
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if (!mAgents.Get(aAgent, &data)) {
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return true;
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}
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bool oldElementHidden = data->mElementHidden;
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// Update visibility.
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data->mElementHidden = aElementHidden;
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bool muted = GetMutedInternal(data->mType, CONTENT_PROCESS_ID_MAIN,
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aElementHidden, oldElementHidden);
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data->mMuted = muted;
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return muted;
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}
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bool
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AudioChannelService::GetMutedInternal(AudioChannelType aType, uint64_t aChildID,
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bool aElementHidden, bool aElementWasHidden)
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{
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UpdateChannelType(aType, aChildID, aElementHidden, aElementWasHidden);
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// Calculating the new and old type and update the hashtable if needed.
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AudioChannelInternalType newType = GetInternalType(aType, aElementHidden);
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AudioChannelInternalType oldType = GetInternalType(aType, aElementWasHidden);
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// If the audio content channel is visible, let's remember this ChildID.
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if (newType == AUDIO_CHANNEL_INT_CONTENT &&
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oldType == AUDIO_CHANNEL_INT_CONTENT_HIDDEN) {
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if (mActiveContentChildIDsFrozen) {
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mActiveContentChildIDsFrozen = false;
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mActiveContentChildIDs.Clear();
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}
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if (!mActiveContentChildIDs.Contains(aChildID)) {
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mActiveContentChildIDs.AppendElement(aChildID);
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}
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}
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else if (newType == AUDIO_CHANNEL_INT_CONTENT_HIDDEN &&
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oldType == AUDIO_CHANNEL_INT_CONTENT &&
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!mActiveContentChildIDsFrozen) {
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// If nothing is visible, the list has to been frozen.
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// Or if there is still any one with other ChildID in foreground then
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// it should be removed from list and left other ChildIDs in the foreground
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// to keep playing. Finally only last one childID which go to background
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// will be in list.
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if (mChannelCounters[AUDIO_CHANNEL_INT_CONTENT].IsEmpty()) {
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mActiveContentChildIDsFrozen = true;
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} else if (!mChannelCounters[AUDIO_CHANNEL_INT_CONTENT].Contains(aChildID)) {
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MOZ_ASSERT(mActiveContentChildIDs.Contains(aChildID));
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mActiveContentChildIDs.RemoveElement(aChildID);
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}
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}
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if (newType != oldType && aType == AUDIO_CHANNEL_CONTENT) {
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Notify();
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}
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SendAudioChannelChangedNotification(aChildID);
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// Let play any visible audio channel.
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if (!aElementHidden) {
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return false;
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}
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bool muted = false;
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// We are not visible, maybe we have to mute.
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if (newType == AUDIO_CHANNEL_INT_NORMAL_HIDDEN ||
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(newType == AUDIO_CHANNEL_INT_CONTENT_HIDDEN &&
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!mActiveContentChildIDs.Contains(aChildID))) {
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muted = true;
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}
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if (!muted) {
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MOZ_ASSERT(newType != AUDIO_CHANNEL_INT_NORMAL_HIDDEN);
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muted = ChannelsActiveWithHigherPriorityThan(newType);
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}
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return muted;
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}
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bool
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AudioChannelService::ContentOrNormalChannelIsActive()
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{
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return !mChannelCounters[AUDIO_CHANNEL_INT_CONTENT].IsEmpty() ||
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!mChannelCounters[AUDIO_CHANNEL_INT_CONTENT_HIDDEN].IsEmpty() ||
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!mChannelCounters[AUDIO_CHANNEL_INT_NORMAL].IsEmpty();
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}
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bool
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AudioChannelService::ProcessContentOrNormalChannelIsActive(uint64_t aChildID)
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{
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return mChannelCounters[AUDIO_CHANNEL_INT_CONTENT].Contains(aChildID) ||
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mChannelCounters[AUDIO_CHANNEL_INT_CONTENT_HIDDEN].Contains(aChildID) ||
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mChannelCounters[AUDIO_CHANNEL_INT_NORMAL].Contains(aChildID);
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}
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void
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AudioChannelService::SendAudioChannelChangedNotification(uint64_t aChildID)
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{
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if (XRE_GetProcessType() != GeckoProcessType_Default) {
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return;
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}
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nsRefPtr<nsHashPropertyBag> props = new nsHashPropertyBag();
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props->Init();
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props->SetPropertyAsUint64(NS_LITERAL_STRING("childID"), aChildID);
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nsCOMPtr<nsIObserverService> obs = mozilla::services::GetObserverService();
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obs->NotifyObservers(static_cast<nsIWritablePropertyBag*>(props),
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"audio-channel-process-changed", nullptr);
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// Calculating the most important active channel.
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AudioChannelType higher = AUDIO_CHANNEL_LAST;
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// Top-Down in the hierarchy for visible elements
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if (!mChannelCounters[AUDIO_CHANNEL_INT_PUBLICNOTIFICATION].IsEmpty()) {
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higher = AUDIO_CHANNEL_PUBLICNOTIFICATION;
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}
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else if (!mChannelCounters[AUDIO_CHANNEL_INT_RINGER].IsEmpty()) {
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higher = AUDIO_CHANNEL_RINGER;
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}
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else if (!mChannelCounters[AUDIO_CHANNEL_INT_TELEPHONY].IsEmpty()) {
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higher = AUDIO_CHANNEL_TELEPHONY;
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}
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else if (!mChannelCounters[AUDIO_CHANNEL_INT_ALARM].IsEmpty()) {
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higher = AUDIO_CHANNEL_ALARM;
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}
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else if (!mChannelCounters[AUDIO_CHANNEL_INT_NOTIFICATION].IsEmpty()) {
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higher = AUDIO_CHANNEL_NOTIFICATION;
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}
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else if (!mChannelCounters[AUDIO_CHANNEL_INT_CONTENT].IsEmpty()) {
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higher = AUDIO_CHANNEL_CONTENT;
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}
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else if (!mChannelCounters[AUDIO_CHANNEL_INT_NORMAL].IsEmpty()) {
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higher = AUDIO_CHANNEL_NORMAL;
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}
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AudioChannelType visibleHigher = higher;
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// Top-Down in the hierarchy for non-visible elements
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if (higher == AUDIO_CHANNEL_LAST) {
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if (!mChannelCounters[AUDIO_CHANNEL_INT_PUBLICNOTIFICATION_HIDDEN].IsEmpty()) {
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higher = AUDIO_CHANNEL_PUBLICNOTIFICATION;
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}
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else if (!mChannelCounters[AUDIO_CHANNEL_INT_RINGER_HIDDEN].IsEmpty()) {
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higher = AUDIO_CHANNEL_RINGER;
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}
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else if (!mChannelCounters[AUDIO_CHANNEL_INT_TELEPHONY_HIDDEN].IsEmpty()) {
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higher = AUDIO_CHANNEL_TELEPHONY;
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}
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else if (!mChannelCounters[AUDIO_CHANNEL_INT_ALARM_HIDDEN].IsEmpty()) {
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higher = AUDIO_CHANNEL_ALARM;
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}
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else if (!mChannelCounters[AUDIO_CHANNEL_INT_NOTIFICATION_HIDDEN].IsEmpty()) {
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higher = AUDIO_CHANNEL_NOTIFICATION;
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}
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// There is only one Child can play content channel in the background.
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// And need to check whether there is any content channels under playing
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// now.
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else if (!mActiveContentChildIDs.IsEmpty() &&
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mChannelCounters[AUDIO_CHANNEL_INT_CONTENT_HIDDEN].Contains(
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mActiveContentChildIDs[0])) {
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higher = AUDIO_CHANNEL_CONTENT;
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}
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}
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if (higher != mCurrentHigherChannel) {
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mCurrentHigherChannel = higher;
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nsString channelName;
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if (mCurrentHigherChannel != AUDIO_CHANNEL_LAST) {
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channelName.AssignASCII(ChannelName(mCurrentHigherChannel));
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} else {
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channelName.AssignLiteral("none");
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}
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obs->NotifyObservers(nullptr, "audio-channel-changed", channelName.get());
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}
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if (visibleHigher != mCurrentVisibleHigherChannel) {
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mCurrentVisibleHigherChannel = visibleHigher;
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nsString channelName;
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if (mCurrentVisibleHigherChannel != AUDIO_CHANNEL_LAST) {
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channelName.AssignASCII(ChannelName(mCurrentVisibleHigherChannel));
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} else {
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channelName.AssignLiteral("none");
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}
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obs->NotifyObservers(nullptr, "visible-audio-channel-changed", channelName.get());
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}
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}
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PLDHashOperator
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AudioChannelService::NotifyEnumerator(AudioChannelAgent* aAgent,
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AudioChannelAgentData* aData, void* aUnused)
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{
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MOZ_ASSERT(aAgent);
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aAgent->NotifyAudioChannelStateChanged();
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return PL_DHASH_NEXT;
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}
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void
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AudioChannelService::Notify()
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{
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MOZ_ASSERT(NS_IsMainThread());
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// Notify any agent for the main process.
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mAgents.EnumerateRead(NotifyEnumerator, nullptr);
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// Notify for the child processes.
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nsTArray<ContentParent*> children;
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ContentParent::GetAll(children);
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for (uint32_t i = 0; i < children.Length(); i++) {
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unused << children[i]->SendAudioChannelNotify();
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}
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}
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NS_IMETHODIMP
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AudioChannelService::Notify(nsITimer* aTimer)
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{
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UnregisterTypeInternal(AUDIO_CHANNEL_TELEPHONY, mTimerElementHidden, mTimerChildID);
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mDeferTelChannelTimer = nullptr;
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return NS_OK;
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}
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bool
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AudioChannelService::ChannelsActiveWithHigherPriorityThan(AudioChannelInternalType aType)
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{
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for (int i = AUDIO_CHANNEL_INT_LAST - 1;
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i != AUDIO_CHANNEL_INT_CONTENT_HIDDEN; --i) {
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if (i == aType) {
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return false;
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}
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if (!mChannelCounters[i].IsEmpty()) {
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return true;
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}
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}
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return false;
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}
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const char*
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AudioChannelService::ChannelName(AudioChannelType aType)
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{
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static struct {
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int32_t type;
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const char* value;
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} ChannelNameTable[] = {
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{ AUDIO_CHANNEL_NORMAL, "normal" },
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{ AUDIO_CHANNEL_CONTENT, "content" },
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{ AUDIO_CHANNEL_NOTIFICATION, "notification" },
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{ AUDIO_CHANNEL_ALARM, "alarm" },
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{ AUDIO_CHANNEL_TELEPHONY, "telephony" },
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{ AUDIO_CHANNEL_RINGER, "ringer" },
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{ AUDIO_CHANNEL_PUBLICNOTIFICATION, "publicnotification" },
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{ -1, "unknown" }
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};
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for (int i = AUDIO_CHANNEL_NORMAL; ; ++i) {
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if (ChannelNameTable[i].type == aType ||
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ChannelNameTable[i].type == -1) {
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return ChannelNameTable[i].value;
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}
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}
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NS_NOTREACHED("Execution should not reach here!");
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return nullptr;
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}
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NS_IMETHODIMP
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AudioChannelService::Observe(nsISupports* aSubject, const char* aTopic, const PRUnichar* data)
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{
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MOZ_ASSERT(!strcmp(aTopic, "ipc:content-shutdown"));
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nsCOMPtr<nsIPropertyBag2> props = do_QueryInterface(aSubject);
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if (!props) {
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NS_WARNING("ipc:content-shutdown message without property bag as subject");
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return NS_OK;
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}
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uint64_t childID = 0;
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nsresult rv = props->GetPropertyAsUint64(NS_LITERAL_STRING("childID"),
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&childID);
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if (NS_SUCCEEDED(rv)) {
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for (int32_t type = AUDIO_CHANNEL_INT_NORMAL;
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type < AUDIO_CHANNEL_INT_LAST;
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++type) {
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int32_t index;
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while ((index = mChannelCounters[type].IndexOf(childID)) != -1) {
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mChannelCounters[type].RemoveElementAt(index);
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}
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if ((index = mActiveContentChildIDs.IndexOf(childID)) != -1) {
|
|
mActiveContentChildIDs.RemoveElementAt(index);
|
|
}
|
|
}
|
|
|
|
// We don't have to remove the agents from the mAgents hashtable because if
|
|
// that table contains only agents running on the same process.
|
|
|
|
SendAudioChannelChangedNotification(childID);
|
|
Notify();
|
|
} else {
|
|
NS_WARNING("ipc:content-shutdown message without childID property");
|
|
}
|
|
|
|
return NS_OK;
|
|
}
|
|
|
|
AudioChannelService::AudioChannelInternalType
|
|
AudioChannelService::GetInternalType(AudioChannelType aType,
|
|
bool aElementHidden)
|
|
{
|
|
switch (aType) {
|
|
case AUDIO_CHANNEL_NORMAL:
|
|
return aElementHidden
|
|
? AUDIO_CHANNEL_INT_NORMAL_HIDDEN
|
|
: AUDIO_CHANNEL_INT_NORMAL;
|
|
|
|
case AUDIO_CHANNEL_CONTENT:
|
|
return aElementHidden
|
|
? AUDIO_CHANNEL_INT_CONTENT_HIDDEN
|
|
: AUDIO_CHANNEL_INT_CONTENT;
|
|
|
|
case AUDIO_CHANNEL_NOTIFICATION:
|
|
return aElementHidden
|
|
? AUDIO_CHANNEL_INT_NOTIFICATION_HIDDEN
|
|
: AUDIO_CHANNEL_INT_NOTIFICATION;
|
|
|
|
case AUDIO_CHANNEL_ALARM:
|
|
return aElementHidden
|
|
? AUDIO_CHANNEL_INT_ALARM_HIDDEN
|
|
: AUDIO_CHANNEL_INT_ALARM;
|
|
|
|
case AUDIO_CHANNEL_TELEPHONY:
|
|
return aElementHidden
|
|
? AUDIO_CHANNEL_INT_TELEPHONY_HIDDEN
|
|
: AUDIO_CHANNEL_INT_TELEPHONY;
|
|
|
|
case AUDIO_CHANNEL_RINGER:
|
|
return aElementHidden
|
|
? AUDIO_CHANNEL_INT_RINGER_HIDDEN
|
|
: AUDIO_CHANNEL_INT_RINGER;
|
|
|
|
case AUDIO_CHANNEL_PUBLICNOTIFICATION:
|
|
return aElementHidden
|
|
? AUDIO_CHANNEL_INT_PUBLICNOTIFICATION_HIDDEN
|
|
: AUDIO_CHANNEL_INT_PUBLICNOTIFICATION;
|
|
|
|
case AUDIO_CHANNEL_LAST:
|
|
default:
|
|
break;
|
|
}
|
|
|
|
MOZ_NOT_REACHED("unexpected audio channel type");
|
|
return AUDIO_CHANNEL_INT_LAST;
|
|
}
|