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538bb4f04a
MozReview-Commit-ID: H0Tpax4ntFn --HG-- extra : rebase_source : b03f5b80652fb348212b1c45f1e91c405055b553
404 lines
12 KiB
C++
404 lines
12 KiB
C++
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim:set ts=2 sw=2 sts=2 et cindent: */
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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
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include <stdint.h>
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#include <algorithm>
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#include "nsIStringBundle.h"
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#include "nsDebug.h"
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#include "nsString.h"
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#include "mozilla/Preferences.h"
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#include "mozilla/StaticMutex.h"
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#include "mozilla/StaticPtr.h"
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#include "mozilla/Telemetry.h"
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#include "mozilla/Logging.h"
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#include "nsThreadUtils.h"
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#include "CubebUtils.h"
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#include "nsAutoRef.h"
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#include "prdtoa.h"
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#define PREF_VOLUME_SCALE "media.volume_scale"
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#define PREF_CUBEB_LATENCY_PLAYBACK "media.cubeb_latency_playback_ms"
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#define PREF_CUBEB_LATENCY_MSG "media.cubeb_latency_msg_frames"
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#define PREF_CUBEB_LOG_LEVEL "media.cubeb.log_level"
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namespace mozilla {
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namespace {
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LazyLogModule gCubebLog("cubeb");
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void CubebLogCallback(const char* aFmt, ...)
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{
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char buffer[256];
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va_list arglist;
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va_start(arglist, aFmt);
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VsprintfLiteral (buffer, aFmt, arglist);
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MOZ_LOG(gCubebLog, LogLevel::Error, ("%s", buffer));
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va_end(arglist);
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}
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// This mutex protects the variables below.
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StaticMutex sMutex;
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enum class CubebState {
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Uninitialized = 0,
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Initialized,
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Shutdown
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} sCubebState = CubebState::Uninitialized;
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cubeb* sCubebContext;
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double sVolumeScale;
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uint32_t sCubebPlaybackLatencyInMilliseconds;
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uint32_t sCubebMSGLatencyInFrames;
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bool sCubebPlaybackLatencyPrefSet;
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bool sCubebMSGLatencyPrefSet;
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bool sAudioStreamInitEverSucceeded = false;
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StaticAutoPtr<char> sBrandName;
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const char kBrandBundleURL[] = "chrome://branding/locale/brand.properties";
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const char* AUDIOSTREAM_BACKEND_ID_STR[] = {
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"jack",
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"pulse",
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"alsa",
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"audiounit",
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"audioqueue",
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"wasapi",
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"winmm",
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"directsound",
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"sndio",
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"opensl",
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"audiotrack",
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"kai"
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};
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/* Index for failures to create an audio stream the first time. */
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const int CUBEB_BACKEND_INIT_FAILURE_FIRST =
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ArrayLength(AUDIOSTREAM_BACKEND_ID_STR);
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/* Index for failures to create an audio stream after the first time */
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const int CUBEB_BACKEND_INIT_FAILURE_OTHER = CUBEB_BACKEND_INIT_FAILURE_FIRST + 1;
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/* Index for an unknown backend. */
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const int CUBEB_BACKEND_UNKNOWN = CUBEB_BACKEND_INIT_FAILURE_FIRST + 2;
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// Prefered samplerate, in Hz (characteristic of the hardware, mixer, platform,
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// and API used).
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//
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// sMutex protects *initialization* of this, which must be performed from each
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// thread before fetching, after which it is safe to fetch without holding the
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// mutex because it is only written once per process execution (by the first
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// initialization to complete). Since the init must have been called on a
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// given thread before fetching the value, it's guaranteed (via the mutex) that
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// sufficient memory barriers have occurred to ensure the correct value is
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// visible on the querying thread/CPU.
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uint32_t sPreferredSampleRate;
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} // namespace
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extern LazyLogModule gAudioStreamLog;
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static const uint32_t CUBEB_NORMAL_LATENCY_MS = 100;
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// Consevative default that can work on all platforms.
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static const uint32_t CUBEB_NORMAL_LATENCY_FRAMES = 1024;
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namespace CubebUtils {
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void PrefChanged(const char* aPref, void* aClosure)
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{
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if (strcmp(aPref, PREF_VOLUME_SCALE) == 0) {
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nsAdoptingString value = Preferences::GetString(aPref);
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StaticMutexAutoLock lock(sMutex);
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if (value.IsEmpty()) {
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sVolumeScale = 1.0;
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} else {
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NS_ConvertUTF16toUTF8 utf8(value);
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sVolumeScale = std::max<double>(0, PR_strtod(utf8.get(), nullptr));
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}
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} else if (strcmp(aPref, PREF_CUBEB_LATENCY_PLAYBACK) == 0) {
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// Arbitrary default stream latency of 100ms. The higher this
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// value, the longer stream volume changes will take to become
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// audible.
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sCubebPlaybackLatencyPrefSet = Preferences::HasUserValue(aPref);
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uint32_t value = Preferences::GetUint(aPref, CUBEB_NORMAL_LATENCY_MS);
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StaticMutexAutoLock lock(sMutex);
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sCubebPlaybackLatencyInMilliseconds = std::min<uint32_t>(std::max<uint32_t>(value, 1), 1000);
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} else if (strcmp(aPref, PREF_CUBEB_LATENCY_MSG) == 0) {
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sCubebMSGLatencyPrefSet = Preferences::HasUserValue(aPref);
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uint32_t value = Preferences::GetUint(aPref, CUBEB_NORMAL_LATENCY_FRAMES);
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StaticMutexAutoLock lock(sMutex);
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// 128 is the block size for the Web Audio API, which limits how low the
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// latency can be here.
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// We don't want to limit the upper limit too much, so that people can
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// experiment.
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sCubebMSGLatencyInFrames = std::min<uint32_t>(std::max<uint32_t>(value, 128), 1e6);
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} else if (strcmp(aPref, PREF_CUBEB_LOG_LEVEL) == 0) {
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nsAdoptingString value = Preferences::GetString(aPref);
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NS_ConvertUTF16toUTF8 utf8(value);
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LogModule* cubebLog = LogModule::Get("cubeb");
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if (strcmp(utf8.get(), "verbose") == 0) {
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cubeb_set_log_callback(CUBEB_LOG_VERBOSE, CubebLogCallback);
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cubebLog->SetLevel(LogLevel::Verbose);
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} else if (strcmp(utf8.get(), "normal") == 0) {
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cubeb_set_log_callback(CUBEB_LOG_NORMAL, CubebLogCallback);
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cubebLog->SetLevel(LogLevel::Error);
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} else if (utf8.IsEmpty()) {
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cubeb_set_log_callback(CUBEB_LOG_DISABLED, nullptr);
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cubebLog->SetLevel(LogLevel::Disabled);
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}
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}
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}
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bool GetFirstStream()
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{
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static bool sFirstStream = true;
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StaticMutexAutoLock lock(sMutex);
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bool result = sFirstStream;
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sFirstStream = false;
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return result;
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}
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double GetVolumeScale()
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{
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StaticMutexAutoLock lock(sMutex);
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return sVolumeScale;
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}
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cubeb* GetCubebContext()
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{
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StaticMutexAutoLock lock(sMutex);
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return GetCubebContextUnlocked();
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}
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bool InitPreferredSampleRate()
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{
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StaticMutexAutoLock lock(sMutex);
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if (sPreferredSampleRate != 0) {
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return true;
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}
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cubeb* context = GetCubebContextUnlocked();
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if (!context) {
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return false;
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}
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if (cubeb_get_preferred_sample_rate(context,
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&sPreferredSampleRate) != CUBEB_OK) {
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return false;
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}
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MOZ_ASSERT(sPreferredSampleRate);
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return true;
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}
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uint32_t PreferredSampleRate()
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{
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if (!InitPreferredSampleRate()) {
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return 44100;
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}
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MOZ_ASSERT(sPreferredSampleRate);
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return sPreferredSampleRate;
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}
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void InitBrandName()
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{
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if (sBrandName) {
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return;
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}
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nsXPIDLString brandName;
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nsCOMPtr<nsIStringBundleService> stringBundleService =
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mozilla::services::GetStringBundleService();
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if (stringBundleService) {
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nsCOMPtr<nsIStringBundle> brandBundle;
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nsresult rv = stringBundleService->CreateBundle(kBrandBundleURL,
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getter_AddRefs(brandBundle));
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if (NS_SUCCEEDED(rv)) {
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rv = brandBundle->GetStringFromName(u"brandShortName",
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getter_Copies(brandName));
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NS_WARNING_ASSERTION(
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NS_SUCCEEDED(rv), "Could not get the program name for a cubeb stream.");
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}
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}
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/* cubeb expects a c-string. */
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const char* ascii = NS_LossyConvertUTF16toASCII(brandName).get();
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sBrandName = new char[brandName.Length() + 1];
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PodCopy(sBrandName.get(), ascii, brandName.Length());
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sBrandName[brandName.Length()] = 0;
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}
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cubeb* GetCubebContextUnlocked()
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{
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sMutex.AssertCurrentThreadOwns();
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if (sCubebState != CubebState::Uninitialized) {
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// If we have already passed the initialization point (below), just return
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// the current context, which may be null (e.g., after error or shutdown.)
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return sCubebContext;
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}
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if (!sBrandName && NS_IsMainThread()) {
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InitBrandName();
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} else {
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NS_WARNING_ASSERTION(
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sBrandName, "Did not initialize sbrandName, and not on the main thread?");
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}
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int rv = cubeb_init(&sCubebContext, sBrandName);
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NS_WARNING_ASSERTION(rv == CUBEB_OK, "Could not get a cubeb context.");
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sCubebState = (rv == CUBEB_OK) ? CubebState::Initialized : CubebState::Uninitialized;
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if (MOZ_LOG_TEST(gCubebLog, LogLevel::Verbose)) {
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cubeb_set_log_callback(CUBEB_LOG_VERBOSE, CubebLogCallback);
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} else if (MOZ_LOG_TEST(gCubebLog, LogLevel::Error)) {
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cubeb_set_log_callback(CUBEB_LOG_NORMAL, CubebLogCallback);
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}
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return sCubebContext;
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}
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void ReportCubebBackendUsed()
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{
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StaticMutexAutoLock lock(sMutex);
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sAudioStreamInitEverSucceeded = true;
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bool foundBackend = false;
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for (uint32_t i = 0; i < ArrayLength(AUDIOSTREAM_BACKEND_ID_STR); i++) {
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if (!strcmp(cubeb_get_backend_id(sCubebContext), AUDIOSTREAM_BACKEND_ID_STR[i])) {
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Telemetry::Accumulate(Telemetry::AUDIOSTREAM_BACKEND_USED, i);
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foundBackend = true;
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}
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}
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if (!foundBackend) {
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Telemetry::Accumulate(Telemetry::AUDIOSTREAM_BACKEND_USED,
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CUBEB_BACKEND_UNKNOWN);
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}
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}
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void ReportCubebStreamInitFailure(bool aIsFirst)
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{
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StaticMutexAutoLock lock(sMutex);
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if (!aIsFirst && !sAudioStreamInitEverSucceeded) {
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// This machine has no audio hardware, or it's in really bad shape, don't
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// send this info, since we want CUBEB_BACKEND_INIT_FAILURE_OTHER to detect
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// failures to open multiple streams in a process over time.
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return;
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}
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Telemetry::Accumulate(Telemetry::AUDIOSTREAM_BACKEND_USED,
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aIsFirst ? CUBEB_BACKEND_INIT_FAILURE_FIRST
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: CUBEB_BACKEND_INIT_FAILURE_OTHER);
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}
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uint32_t GetCubebPlaybackLatencyInMilliseconds()
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{
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StaticMutexAutoLock lock(sMutex);
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return sCubebPlaybackLatencyInMilliseconds;
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}
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bool CubebPlaybackLatencyPrefSet()
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{
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StaticMutexAutoLock lock(sMutex);
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return sCubebPlaybackLatencyPrefSet;
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}
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bool CubebMSGLatencyPrefSet()
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{
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StaticMutexAutoLock lock(sMutex);
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return sCubebMSGLatencyPrefSet;
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}
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Maybe<uint32_t> GetCubebMSGLatencyInFrames()
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{
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StaticMutexAutoLock lock(sMutex);
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if (!sCubebMSGLatencyPrefSet) {
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return Maybe<uint32_t>();
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}
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MOZ_ASSERT(sCubebMSGLatencyInFrames > 0);
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return Some(sCubebMSGLatencyInFrames);
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}
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void InitLibrary()
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{
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PrefChanged(PREF_VOLUME_SCALE, nullptr);
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Preferences::RegisterCallback(PrefChanged, PREF_VOLUME_SCALE);
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PrefChanged(PREF_CUBEB_LATENCY_PLAYBACK, nullptr);
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PrefChanged(PREF_CUBEB_LATENCY_MSG, nullptr);
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Preferences::RegisterCallback(PrefChanged, PREF_CUBEB_LATENCY_PLAYBACK);
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Preferences::RegisterCallback(PrefChanged, PREF_CUBEB_LATENCY_MSG);
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Preferences::RegisterCallback(PrefChanged, PREF_CUBEB_LOG_LEVEL);
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#ifndef MOZ_WIDGET_ANDROID
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NS_DispatchToMainThread(NS_NewRunnableFunction(&InitBrandName));
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#endif
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}
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void ShutdownLibrary()
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{
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Preferences::UnregisterCallback(PrefChanged, PREF_VOLUME_SCALE);
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Preferences::UnregisterCallback(PrefChanged, PREF_CUBEB_LATENCY_PLAYBACK);
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Preferences::UnregisterCallback(PrefChanged, PREF_CUBEB_LATENCY_MSG);
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Preferences::UnregisterCallback(PrefChanged, PREF_CUBEB_LOG_LEVEL);
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StaticMutexAutoLock lock(sMutex);
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if (sCubebContext) {
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cubeb_destroy(sCubebContext);
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sCubebContext = nullptr;
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}
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sBrandName = nullptr;
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// This will ensure we don't try to re-create a context.
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sCubebState = CubebState::Shutdown;
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}
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uint32_t MaxNumberOfChannels()
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{
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cubeb* cubebContext = GetCubebContext();
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uint32_t maxNumberOfChannels;
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if (cubebContext &&
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cubeb_get_max_channel_count(cubebContext,
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&maxNumberOfChannels) == CUBEB_OK) {
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return maxNumberOfChannels;
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}
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return 0;
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}
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#if defined(__ANDROID__) && defined(MOZ_B2G)
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cubeb_stream_type ConvertChannelToCubebType(dom::AudioChannel aChannel)
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{
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switch(aChannel) {
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case dom::AudioChannel::Normal:
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/* FALLTHROUGH */
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case dom::AudioChannel::Content:
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return CUBEB_STREAM_TYPE_MUSIC;
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case dom::AudioChannel::Notification:
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return CUBEB_STREAM_TYPE_NOTIFICATION;
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case dom::AudioChannel::Alarm:
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return CUBEB_STREAM_TYPE_ALARM;
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case dom::AudioChannel::Telephony:
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return CUBEB_STREAM_TYPE_VOICE_CALL;
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case dom::AudioChannel::Ringer:
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return CUBEB_STREAM_TYPE_RING;
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case dom::AudioChannel::System:
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return CUBEB_STREAM_TYPE_SYSTEM;
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case dom::AudioChannel::Publicnotification:
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return CUBEB_STREAM_TYPE_SYSTEM_ENFORCED;
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default:
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NS_ERROR("The value of AudioChannel is invalid");
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return CUBEB_STREAM_TYPE_MAX;
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}
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}
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#endif
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void GetCurrentBackend(nsAString& aBackend)
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{
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cubeb* cubebContext = GetCubebContext();
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if (cubebContext) {
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const char* backend = cubeb_get_backend_id(cubebContext);
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if (backend) {
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aBackend.AssignASCII(backend);
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return;
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}
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}
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aBackend.AssignLiteral("unknown");
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}
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} // namespace CubebUtils
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} // namespace mozilla
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