gecko-dev/dom/media/CubebUtils.cpp
Jean-Yves Avenard 48517afae6 Bug 1512298 - Make IPDL MozPromise exclusive. r=gerald,froydnj
MozPromise most common use is to have an single or exclusive listener. By making the MozPromise generated by IPDL exclusive we can also use move semantics.

While at it, we also use move semantics for the ResponseRejectReason and via the callback's reject method so that the lambda used with the MozPromise::Then can be identical to the one used by the IPDL callback.
As it currently is, it provides no advantage over a copy as it's just an enum; however, this will facilitate future changes where it may not be.

Differential Revision: https://phabricator.services.mozilla.com/D13906

--HG--
extra : moz-landing-system : lando
2018-12-11 19:22:26 +00:00

750 lines
25 KiB
C++

/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
/* vim:set ts=2 sw=2 sts=2 et cindent: */
/* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
#include "CubebUtils.h"
#ifdef MOZ_WEBRTC
#include "CubebDeviceEnumerator.h"
#endif
#include "MediaInfo.h"
#include "mozilla/AbstractThread.h"
#include "mozilla/dom/ContentChild.h"
#include "mozilla/dom/AudioDeviceInfo.h"
#include "mozilla/ipc/FileDescriptor.h"
#include "mozilla/Logging.h"
#include "mozilla/Preferences.h"
#include "mozilla/Services.h"
#include "mozilla/Sprintf.h"
#include "mozilla/StaticMutex.h"
#include "mozilla/StaticPtr.h"
#include "mozilla/Telemetry.h"
#include "nsAutoRef.h"
#include "nsDebug.h"
#include "nsIStringBundle.h"
#include "nsString.h"
#include "nsThreadUtils.h"
#include "prdtoa.h"
#include <algorithm>
#include <stdint.h>
#ifdef MOZ_WIDGET_ANDROID
#include "GeneratedJNIWrappers.h"
#endif
#define AUDIOIPC_POOL_SIZE_DEFAULT 2
#define AUDIOIPC_STACK_SIZE_DEFAULT (64 * 4096)
#define PREF_VOLUME_SCALE "media.volume_scale"
#define PREF_CUBEB_BACKEND "media.cubeb.backend"
#define PREF_CUBEB_OUTPUT_DEVICE "media.cubeb.output_device"
#define PREF_CUBEB_LATENCY_PLAYBACK "media.cubeb_latency_playback_ms"
#define PREF_CUBEB_LATENCY_MSG "media.cubeb_latency_msg_frames"
// Allows to get something non-default for the preferred sample-rate, to allow
// troubleshooting in the field and testing.
#define PREF_CUBEB_FORCE_SAMPLE_RATE "media.cubeb.force_sample_rate"
#define PREF_CUBEB_LOGGING_LEVEL "media.cubeb.logging_level"
// Hidden pref used by tests to force failure to obtain cubeb context
#define PREF_CUBEB_FORCE_NULL_CONTEXT "media.cubeb.force_null_context"
// Hidden pref to disable BMO 1427011 experiment; can be removed once proven.
#define PREF_CUBEB_DISABLE_DEVICE_SWITCHING \
"media.cubeb.disable_device_switching"
#define PREF_CUBEB_SANDBOX "media.cubeb.sandbox"
#define PREF_AUDIOIPC_POOL_SIZE "media.audioipc.pool_size"
#define PREF_AUDIOIPC_STACK_SIZE "media.audioipc.stack_size"
#if (defined(XP_LINUX) && !defined(MOZ_WIDGET_ANDROID)) || defined(XP_MACOSX)
#define MOZ_CUBEB_REMOTING
#endif
extern "C" {
// This must match AudioIpcInitParams in media/audioipc/client/src/lib.rs.
// TODO: Generate this from the Rust definition rather than duplicating it.
struct AudioIpcInitParams {
mozilla::ipc::FileDescriptor::PlatformHandleType mServerConnection;
size_t mPoolSize;
size_t mStackSize;
void (*mThreadCreateCallback)(const char*);
};
// These functions are provided by audioipc-server crate
extern void* audioipc_server_start();
extern mozilla::ipc::FileDescriptor::PlatformHandleType
audioipc_server_new_client(void*);
extern void audioipc_server_stop(void*);
// These functions are provided by audioipc-client crate
extern int audioipc_client_init(cubeb**, const char*,
const AudioIpcInitParams*);
}
namespace mozilla {
namespace {
#ifdef MOZ_CUBEB_REMOTING
////////////////////////////////////////////////////////////////////////////////
// Cubeb Sound Server Thread
void* sServerHandle = nullptr;
// Initialized during early startup, protected by sMutex.
StaticAutoPtr<ipc::FileDescriptor> sIPCConnection;
static bool StartSoundServer() {
sServerHandle = audioipc_server_start();
return sServerHandle != nullptr;
}
static void ShutdownSoundServer() {
if (!sServerHandle) return;
audioipc_server_stop(sServerHandle);
sServerHandle = nullptr;
}
#endif // MOZ_CUBEB_REMOTING
////////////////////////////////////////////////////////////////////////////////
LazyLogModule gCubebLog("cubeb");
void CubebLogCallback(const char* aFmt, ...) {
char buffer[256];
va_list arglist;
va_start(arglist, aFmt);
VsprintfLiteral(buffer, aFmt, arglist);
MOZ_LOG(gCubebLog, LogLevel::Error, ("%s", buffer));
va_end(arglist);
}
// This mutex protects the variables below.
StaticMutex sMutex;
enum class CubebState {
Uninitialized = 0,
Initialized,
Shutdown
} sCubebState = CubebState::Uninitialized;
cubeb* sCubebContext;
double sVolumeScale = 1.0;
uint32_t sCubebPlaybackLatencyInMilliseconds = 100;
uint32_t sCubebMSGLatencyInFrames = 512;
// If sCubebForcedSampleRate is zero, PreferredSampleRate will return the
// preferred sample-rate for the audio backend in use. Otherwise, it will be
// used as the preferred sample-rate.
uint32_t sCubebForcedSampleRate = 0;
bool sCubebPlaybackLatencyPrefSet = false;
bool sCubebMSGLatencyPrefSet = false;
bool sAudioStreamInitEverSucceeded = false;
bool sCubebForceNullContext = false;
bool sCubebDisableDeviceSwitching = true;
#ifdef MOZ_CUBEB_REMOTING
bool sCubebSandbox = false;
size_t sAudioIPCPoolSize;
size_t sAudioIPCStackSize;
#endif
StaticAutoPtr<char> sBrandName;
StaticAutoPtr<char> sCubebBackendName;
StaticAutoPtr<char> sCubebOutputDeviceName;
const char kBrandBundleURL[] = "chrome://branding/locale/brand.properties";
const char* AUDIOSTREAM_BACKEND_ID_STR[] = {
"jack", "pulse", "alsa", "audiounit", "audioqueue", "wasapi",
"winmm", "directsound", "sndio", "opensl", "audiotrack", "kai"};
/* Index for failures to create an audio stream the first time. */
const int CUBEB_BACKEND_INIT_FAILURE_FIRST =
ArrayLength(AUDIOSTREAM_BACKEND_ID_STR);
/* Index for failures to create an audio stream after the first time */
const int CUBEB_BACKEND_INIT_FAILURE_OTHER =
CUBEB_BACKEND_INIT_FAILURE_FIRST + 1;
/* Index for an unknown backend. */
const int CUBEB_BACKEND_UNKNOWN = CUBEB_BACKEND_INIT_FAILURE_FIRST + 2;
// Prefered samplerate, in Hz (characteristic of the hardware, mixer, platform,
// and API used).
//
// sMutex protects *initialization* of this, which must be performed from each
// thread before fetching, after which it is safe to fetch without holding the
// mutex because it is only written once per process execution (by the first
// initialization to complete). Since the init must have been called on a
// given thread before fetching the value, it's guaranteed (via the mutex) that
// sufficient memory barriers have occurred to ensure the correct value is
// visible on the querying thread/CPU.
uint32_t sPreferredSampleRate;
} // namespace
static const uint32_t CUBEB_NORMAL_LATENCY_MS = 100;
// Consevative default that can work on all platforms.
static const uint32_t CUBEB_NORMAL_LATENCY_FRAMES = 1024;
namespace CubebUtils {
cubeb* GetCubebContextUnlocked();
void GetPrefAndSetString(const char* aPref, StaticAutoPtr<char>& aStorage) {
nsAutoCString value;
Preferences::GetCString(aPref, value);
if (value.IsEmpty()) {
aStorage = nullptr;
} else {
aStorage = new char[value.Length() + 1];
PodCopy(aStorage.get(), value.get(), value.Length());
aStorage[value.Length()] = 0;
}
}
void PrefChanged(const char* aPref, void* aClosure) {
if (strcmp(aPref, PREF_VOLUME_SCALE) == 0) {
nsAutoCString value;
Preferences::GetCString(aPref, value);
StaticMutexAutoLock lock(sMutex);
if (value.IsEmpty()) {
sVolumeScale = 1.0;
} else {
sVolumeScale = std::max<double>(0, PR_strtod(value.get(), nullptr));
}
} else if (strcmp(aPref, PREF_CUBEB_LATENCY_PLAYBACK) == 0) {
StaticMutexAutoLock lock(sMutex);
// Arbitrary default stream latency of 100ms. The higher this
// value, the longer stream volume changes will take to become
// audible.
sCubebPlaybackLatencyPrefSet = Preferences::HasUserValue(aPref);
uint32_t value = Preferences::GetUint(aPref, CUBEB_NORMAL_LATENCY_MS);
sCubebPlaybackLatencyInMilliseconds =
std::min<uint32_t>(std::max<uint32_t>(value, 1), 1000);
} else if (strcmp(aPref, PREF_CUBEB_LATENCY_MSG) == 0) {
StaticMutexAutoLock lock(sMutex);
sCubebMSGLatencyPrefSet = Preferences::HasUserValue(aPref);
uint32_t value = Preferences::GetUint(aPref, CUBEB_NORMAL_LATENCY_FRAMES);
// 128 is the block size for the Web Audio API, which limits how low the
// latency can be here.
// We don't want to limit the upper limit too much, so that people can
// experiment.
sCubebMSGLatencyInFrames =
std::min<uint32_t>(std::max<uint32_t>(value, 128), 1e6);
} else if (strcmp(aPref, PREF_CUBEB_FORCE_SAMPLE_RATE) == 0) {
StaticMutexAutoLock lock(sMutex);
sCubebForcedSampleRate = Preferences::GetUint(aPref);
} else if (strcmp(aPref, PREF_CUBEB_LOGGING_LEVEL) == 0) {
nsAutoCString value;
Preferences::GetCString(aPref, value);
LogModule* cubebLog = LogModule::Get("cubeb");
if (value.EqualsLiteral("verbose")) {
cubeb_set_log_callback(CUBEB_LOG_VERBOSE, CubebLogCallback);
cubebLog->SetLevel(LogLevel::Verbose);
} else if (value.EqualsLiteral("normal")) {
cubeb_set_log_callback(CUBEB_LOG_NORMAL, CubebLogCallback);
cubebLog->SetLevel(LogLevel::Error);
} else if (value.IsEmpty()) {
cubeb_set_log_callback(CUBEB_LOG_DISABLED, nullptr);
cubebLog->SetLevel(LogLevel::Disabled);
}
} else if (strcmp(aPref, PREF_CUBEB_BACKEND) == 0) {
StaticMutexAutoLock lock(sMutex);
GetPrefAndSetString(aPref, sCubebBackendName);
} else if (strcmp(aPref, PREF_CUBEB_OUTPUT_DEVICE) == 0) {
StaticMutexAutoLock lock(sMutex);
GetPrefAndSetString(aPref, sCubebOutputDeviceName);
} else if (strcmp(aPref, PREF_CUBEB_FORCE_NULL_CONTEXT) == 0) {
StaticMutexAutoLock lock(sMutex);
sCubebForceNullContext = Preferences::GetBool(aPref, false);
MOZ_LOG(gCubebLog, LogLevel::Verbose,
("%s: %s", PREF_CUBEB_FORCE_NULL_CONTEXT,
sCubebForceNullContext ? "true" : "false"));
} else if (strcmp(aPref, PREF_CUBEB_DISABLE_DEVICE_SWITCHING) == 0) {
StaticMutexAutoLock lock(sMutex);
sCubebDisableDeviceSwitching = Preferences::GetBool(aPref, true);
MOZ_LOG(gCubebLog, LogLevel::Verbose,
("%s: %s", PREF_CUBEB_DISABLE_DEVICE_SWITCHING,
sCubebDisableDeviceSwitching ? "true" : "false"));
}
#ifdef MOZ_CUBEB_REMOTING
else if (strcmp(aPref, PREF_CUBEB_SANDBOX) == 0) {
StaticMutexAutoLock lock(sMutex);
sCubebSandbox = Preferences::GetBool(aPref);
MOZ_LOG(gCubebLog, LogLevel::Verbose,
("%s: %s", PREF_CUBEB_SANDBOX, sCubebSandbox ? "true" : "false"));
if (sCubebSandbox && !sServerHandle && XRE_IsParentProcess()) {
MOZ_LOG(gCubebLog, LogLevel::Debug, ("Starting cubeb server..."));
StartSoundServer();
}
} else if (strcmp(aPref, PREF_AUDIOIPC_POOL_SIZE) == 0) {
StaticMutexAutoLock lock(sMutex);
sAudioIPCPoolSize = Preferences::GetUint(PREF_AUDIOIPC_POOL_SIZE,
AUDIOIPC_POOL_SIZE_DEFAULT);
} else if (strcmp(aPref, PREF_AUDIOIPC_STACK_SIZE) == 0) {
StaticMutexAutoLock lock(sMutex);
sAudioIPCStackSize = Preferences::GetUint(PREF_AUDIOIPC_STACK_SIZE,
AUDIOIPC_STACK_SIZE_DEFAULT);
}
#endif
}
bool GetFirstStream() {
static bool sFirstStream = true;
StaticMutexAutoLock lock(sMutex);
bool result = sFirstStream;
sFirstStream = false;
return result;
}
double GetVolumeScale() {
StaticMutexAutoLock lock(sMutex);
return sVolumeScale;
}
cubeb* GetCubebContext() {
StaticMutexAutoLock lock(sMutex);
return GetCubebContextUnlocked();
}
// This is only exported when running tests.
void ForceSetCubebContext(cubeb* aCubebContext) {
StaticMutexAutoLock lock(sMutex);
sCubebContext = aCubebContext;
sCubebState = CubebState::Initialized;
}
bool InitPreferredSampleRate() {
StaticMutexAutoLock lock(sMutex);
if (sPreferredSampleRate != 0) {
return true;
}
#ifdef MOZ_WIDGET_ANDROID
sPreferredSampleRate = AndroidGetAudioOutputSampleRate();
#else
cubeb* context = GetCubebContextUnlocked();
if (!context) {
return false;
}
if (cubeb_get_preferred_sample_rate(context, &sPreferredSampleRate) !=
CUBEB_OK) {
return false;
}
#endif
MOZ_ASSERT(sPreferredSampleRate);
return true;
}
uint32_t PreferredSampleRate() {
if (sCubebForcedSampleRate) {
return sCubebForcedSampleRate;
}
if (!InitPreferredSampleRate()) {
return 44100;
}
MOZ_ASSERT(sPreferredSampleRate);
return sPreferredSampleRate;
}
void InitBrandName() {
if (sBrandName) {
return;
}
nsAutoString brandName;
nsCOMPtr<nsIStringBundleService> stringBundleService =
mozilla::services::GetStringBundleService();
if (stringBundleService) {
nsCOMPtr<nsIStringBundle> brandBundle;
nsresult rv = stringBundleService->CreateBundle(
kBrandBundleURL, getter_AddRefs(brandBundle));
if (NS_SUCCEEDED(rv)) {
rv = brandBundle->GetStringFromName("brandShortName", brandName);
NS_WARNING_ASSERTION(
NS_SUCCEEDED(rv),
"Could not get the program name for a cubeb stream.");
}
}
NS_LossyConvertUTF16toASCII ascii(brandName);
sBrandName = new char[ascii.Length() + 1];
PodCopy(sBrandName.get(), ascii.get(), ascii.Length());
sBrandName[ascii.Length()] = 0;
}
#ifdef MOZ_CUBEB_REMOTING
void InitAudioIPCConnection() {
MOZ_ASSERT(NS_IsMainThread());
auto contentChild = dom::ContentChild::GetSingleton();
auto promise = contentChild->SendCreateAudioIPCConnection();
promise->Then(
AbstractThread::MainThread(), __func__,
[](ipc::FileDescriptor&& aFD) {
StaticMutexAutoLock lock(sMutex);
MOZ_ASSERT(!sIPCConnection);
sIPCConnection = new ipc::FileDescriptor(std::move(aFD));
},
[](mozilla::ipc::ResponseRejectReason&& aReason) {
MOZ_LOG(gCubebLog, LogLevel::Error,
("SendCreateAudioIPCConnection failed: %d", int(aReason)));
});
}
#endif
ipc::FileDescriptor CreateAudioIPCConnection() {
#ifdef MOZ_CUBEB_REMOTING
MOZ_ASSERT(sServerHandle);
ipc::FileDescriptor::PlatformHandleType rawFD =
audioipc_server_new_client(sServerHandle);
ipc::FileDescriptor fd(rawFD);
if (!fd.IsValid()) {
MOZ_LOG(gCubebLog, LogLevel::Error, ("audioipc_server_new_client failed"));
return ipc::FileDescriptor();
}
// Close rawFD since FileDescriptor's ctor cloned it.
// TODO: Find cleaner cross-platform way to close rawFD.
#ifdef XP_WIN
CloseHandle(rawFD);
#else
close(rawFD);
#endif
return fd;
#else
return ipc::FileDescriptor();
#endif
}
cubeb* GetCubebContextUnlocked() {
sMutex.AssertCurrentThreadOwns();
if (sCubebForceNullContext) {
// Pref set such that we should return a null context
MOZ_LOG(gCubebLog, LogLevel::Debug,
("%s: returning null context due to %s!", __func__,
PREF_CUBEB_FORCE_NULL_CONTEXT));
return nullptr;
}
if (recordreplay::IsRecordingOrReplaying()) {
// Media is not supported when recording or replaying. See bug 1304146.
return nullptr;
}
if (sCubebState != CubebState::Uninitialized) {
// If we have already passed the initialization point (below), just return
// the current context, which may be null (e.g., after error or shutdown.)
return sCubebContext;
}
if (!sBrandName && NS_IsMainThread()) {
InitBrandName();
} else {
NS_WARNING_ASSERTION(
sBrandName,
"Did not initialize sbrandName, and not on the main thread?");
}
#ifdef MOZ_CUBEB_REMOTING
MOZ_LOG(gCubebLog, LogLevel::Info,
("%s: %s", PREF_CUBEB_SANDBOX, sCubebSandbox ? "true" : "false"));
int rv = CUBEB_OK;
if (sCubebSandbox) {
if (XRE_IsParentProcess()) {
// TODO: Don't use audio IPC when within the same process.
MOZ_ASSERT(!sIPCConnection);
sIPCConnection = new ipc::FileDescriptor(CreateAudioIPCConnection());
} else {
MOZ_DIAGNOSTIC_ASSERT(sIPCConnection);
}
AudioIpcInitParams initParams;
initParams.mPoolSize = sAudioIPCPoolSize;
initParams.mStackSize = sAudioIPCStackSize;
initParams.mServerConnection =
sIPCConnection->ClonePlatformHandle().release();
initParams.mThreadCreateCallback = [](const char* aName) {
PROFILER_REGISTER_THREAD(aName);
};
MOZ_LOG(gCubebLog, LogLevel::Debug,
("%s: %d", PREF_AUDIOIPC_POOL_SIZE, (int)initParams.mPoolSize));
MOZ_LOG(gCubebLog, LogLevel::Debug,
("%s: %d", PREF_AUDIOIPC_STACK_SIZE, (int)initParams.mStackSize));
rv = audioipc_client_init(&sCubebContext, sBrandName, &initParams);
} else {
rv = cubeb_init(&sCubebContext, sBrandName, sCubebBackendName.get());
}
sIPCConnection = nullptr;
#else // !MOZ_CUBEB_REMOTING
int rv = cubeb_init(&sCubebContext, sBrandName, sCubebBackendName.get());
#endif // MOZ_CUBEB_REMOTING
NS_WARNING_ASSERTION(rv == CUBEB_OK, "Could not get a cubeb context.");
sCubebState =
(rv == CUBEB_OK) ? CubebState::Initialized : CubebState::Uninitialized;
return sCubebContext;
}
void ReportCubebBackendUsed() {
StaticMutexAutoLock lock(sMutex);
sAudioStreamInitEverSucceeded = true;
bool foundBackend = false;
for (uint32_t i = 0; i < ArrayLength(AUDIOSTREAM_BACKEND_ID_STR); i++) {
if (!strcmp(cubeb_get_backend_id(sCubebContext),
AUDIOSTREAM_BACKEND_ID_STR[i])) {
Telemetry::Accumulate(Telemetry::AUDIOSTREAM_BACKEND_USED, i);
foundBackend = true;
}
}
if (!foundBackend) {
Telemetry::Accumulate(Telemetry::AUDIOSTREAM_BACKEND_USED,
CUBEB_BACKEND_UNKNOWN);
}
}
void ReportCubebStreamInitFailure(bool aIsFirst) {
StaticMutexAutoLock lock(sMutex);
if (!aIsFirst && !sAudioStreamInitEverSucceeded) {
// This machine has no audio hardware, or it's in really bad shape, don't
// send this info, since we want CUBEB_BACKEND_INIT_FAILURE_OTHER to detect
// failures to open multiple streams in a process over time.
return;
}
Telemetry::Accumulate(Telemetry::AUDIOSTREAM_BACKEND_USED,
aIsFirst ? CUBEB_BACKEND_INIT_FAILURE_FIRST
: CUBEB_BACKEND_INIT_FAILURE_OTHER);
}
uint32_t GetCubebPlaybackLatencyInMilliseconds() {
StaticMutexAutoLock lock(sMutex);
return sCubebPlaybackLatencyInMilliseconds;
}
bool CubebPlaybackLatencyPrefSet() {
StaticMutexAutoLock lock(sMutex);
return sCubebPlaybackLatencyPrefSet;
}
bool CubebMSGLatencyPrefSet() {
StaticMutexAutoLock lock(sMutex);
return sCubebMSGLatencyPrefSet;
}
uint32_t GetCubebMSGLatencyInFrames(cubeb_stream_params* params) {
StaticMutexAutoLock lock(sMutex);
if (sCubebMSGLatencyPrefSet) {
MOZ_ASSERT(sCubebMSGLatencyInFrames > 0);
return sCubebMSGLatencyInFrames;
}
#ifdef MOZ_WIDGET_ANDROID
return AndroidGetAudioOutputFramesPerBuffer();
#else
cubeb* context = GetCubebContextUnlocked();
if (!context) {
return sCubebMSGLatencyInFrames; // default 512
}
uint32_t latency_frames = 0;
if (cubeb_get_min_latency(context, params, &latency_frames) != CUBEB_OK) {
NS_WARNING("Could not get minimal latency from cubeb.");
return sCubebMSGLatencyInFrames; // default 512
}
return latency_frames;
#endif
}
static const char* gInitCallbackPrefs[] = {
PREF_VOLUME_SCALE, PREF_CUBEB_OUTPUT_DEVICE,
PREF_CUBEB_LATENCY_PLAYBACK, PREF_CUBEB_LATENCY_MSG,
PREF_CUBEB_BACKEND, PREF_CUBEB_FORCE_NULL_CONTEXT,
PREF_CUBEB_SANDBOX, PREF_AUDIOIPC_POOL_SIZE,
PREF_AUDIOIPC_STACK_SIZE, nullptr,
};
static const char* gCallbackPrefs[] = {
PREF_CUBEB_FORCE_SAMPLE_RATE,
// We don't want to call the callback on startup, because the pref is the
// empty string by default ("", which means "logging disabled"). Because the
// logging can be enabled via environment variables (MOZ_LOG="module:5"),
// calling this callback on init would immediately re-disable the logging.
PREF_CUBEB_LOGGING_LEVEL,
nullptr,
};
void InitLibrary() {
Preferences::RegisterCallbacksAndCall(PrefChanged, gInitCallbackPrefs);
Preferences::RegisterCallbacks(PrefChanged, gCallbackPrefs);
if (MOZ_LOG_TEST(gCubebLog, LogLevel::Verbose)) {
cubeb_set_log_callback(CUBEB_LOG_VERBOSE, CubebLogCallback);
} else if (MOZ_LOG_TEST(gCubebLog, LogLevel::Error)) {
cubeb_set_log_callback(CUBEB_LOG_NORMAL, CubebLogCallback);
}
#ifndef MOZ_WIDGET_ANDROID
AbstractThread::MainThread()->Dispatch(
NS_NewRunnableFunction("CubebUtils::InitLibrary", &InitBrandName));
#endif
#ifdef MOZ_CUBEB_REMOTING
if (sCubebSandbox && XRE_IsContentProcess() && !recordreplay::IsMiddleman()) {
InitAudioIPCConnection();
}
#endif
}
void ShutdownLibrary() {
Preferences::UnregisterCallbacks(PrefChanged, gInitCallbackPrefs);
Preferences::UnregisterCallbacks(PrefChanged, gCallbackPrefs);
#ifdef MOZ_WEBRTC
// This must be done before cubeb destroy.
CubebDeviceEnumerator::Shutdown();
#endif
StaticMutexAutoLock lock(sMutex);
if (sCubebContext) {
cubeb_destroy(sCubebContext);
sCubebContext = nullptr;
}
sBrandName = nullptr;
sCubebBackendName = nullptr;
// This will ensure we don't try to re-create a context.
sCubebState = CubebState::Shutdown;
#ifdef MOZ_CUBEB_REMOTING
sIPCConnection = nullptr;
ShutdownSoundServer();
#endif
}
uint32_t MaxNumberOfChannels() {
cubeb* cubebContext = GetCubebContext();
uint32_t maxNumberOfChannels;
if (cubebContext && cubeb_get_max_channel_count(
cubebContext, &maxNumberOfChannels) == CUBEB_OK) {
return maxNumberOfChannels;
}
return 0;
}
void GetCurrentBackend(nsAString& aBackend) {
cubeb* cubebContext = GetCubebContext();
if (cubebContext) {
const char* backend = cubeb_get_backend_id(cubebContext);
if (backend) {
aBackend.AssignASCII(backend);
return;
}
}
aBackend.AssignLiteral("unknown");
}
char* GetForcedOutputDevice() {
StaticMutexAutoLock lock(sMutex);
return sCubebOutputDeviceName;
}
uint16_t ConvertCubebType(cubeb_device_type aType) {
uint16_t map[] = {
nsIAudioDeviceInfo::TYPE_UNKNOWN, // CUBEB_DEVICE_TYPE_UNKNOWN
nsIAudioDeviceInfo::TYPE_INPUT, // CUBEB_DEVICE_TYPE_INPUT,
nsIAudioDeviceInfo::TYPE_OUTPUT // CUBEB_DEVICE_TYPE_OUTPUT
};
return map[aType];
}
uint16_t ConvertCubebState(cubeb_device_state aState) {
uint16_t map[] = {
nsIAudioDeviceInfo::STATE_DISABLED, // CUBEB_DEVICE_STATE_DISABLED
nsIAudioDeviceInfo::STATE_UNPLUGGED, // CUBEB_DEVICE_STATE_UNPLUGGED
nsIAudioDeviceInfo::STATE_ENABLED // CUBEB_DEVICE_STATE_ENABLED
};
return map[aState];
}
uint16_t ConvertCubebPreferred(cubeb_device_pref aPreferred) {
if (aPreferred == CUBEB_DEVICE_PREF_NONE) {
return nsIAudioDeviceInfo::PREF_NONE;
} else if (aPreferred == CUBEB_DEVICE_PREF_ALL) {
return nsIAudioDeviceInfo::PREF_ALL;
}
uint16_t preferred = 0;
if (aPreferred & CUBEB_DEVICE_PREF_MULTIMEDIA) {
preferred |= nsIAudioDeviceInfo::PREF_MULTIMEDIA;
}
if (aPreferred & CUBEB_DEVICE_PREF_VOICE) {
preferred |= nsIAudioDeviceInfo::PREF_VOICE;
}
if (aPreferred & CUBEB_DEVICE_PREF_NOTIFICATION) {
preferred |= nsIAudioDeviceInfo::PREF_NOTIFICATION;
}
return preferred;
}
uint16_t ConvertCubebFormat(cubeb_device_fmt aFormat) {
uint16_t format = 0;
if (aFormat & CUBEB_DEVICE_FMT_S16LE) {
format |= nsIAudioDeviceInfo::FMT_S16LE;
}
if (aFormat & CUBEB_DEVICE_FMT_S16BE) {
format |= nsIAudioDeviceInfo::FMT_S16BE;
}
if (aFormat & CUBEB_DEVICE_FMT_F32LE) {
format |= nsIAudioDeviceInfo::FMT_F32LE;
}
if (aFormat & CUBEB_DEVICE_FMT_F32BE) {
format |= nsIAudioDeviceInfo::FMT_F32BE;
}
return format;
}
void GetDeviceCollection(nsTArray<RefPtr<AudioDeviceInfo>>& aDeviceInfos,
Side aSide) {
cubeb* context = GetCubebContext();
if (context) {
cubeb_device_collection collection = {nullptr, 0};
if (cubeb_enumerate_devices(
context,
aSide == Input ? CUBEB_DEVICE_TYPE_INPUT : CUBEB_DEVICE_TYPE_OUTPUT,
&collection) == CUBEB_OK) {
for (unsigned int i = 0; i < collection.count; ++i) {
auto device = collection.device[i];
RefPtr<AudioDeviceInfo> info = new AudioDeviceInfo(
device.devid, NS_ConvertUTF8toUTF16(device.friendly_name),
NS_ConvertUTF8toUTF16(device.group_id),
NS_ConvertUTF8toUTF16(device.vendor_name),
ConvertCubebType(device.type), ConvertCubebState(device.state),
ConvertCubebPreferred(device.preferred),
ConvertCubebFormat(device.format),
ConvertCubebFormat(device.default_format), device.max_channels,
device.default_rate, device.max_rate, device.min_rate,
device.latency_hi, device.latency_lo);
aDeviceInfos.AppendElement(info);
}
}
cubeb_device_collection_destroy(context, &collection);
}
}
cubeb_stream_prefs GetDefaultStreamPrefs() {
#ifdef XP_WIN
// Investigation for bug 1427011 - if we're in E10S mode, rely on the
// AudioNotification IPC to detect device changes.
if (sCubebDisableDeviceSwitching &&
(XRE_IsE10sParentProcess() || XRE_IsContentProcess())) {
return CUBEB_STREAM_PREF_DISABLE_DEVICE_SWITCHING;
}
#endif
return CUBEB_STREAM_PREF_NONE;
}
#ifdef MOZ_WIDGET_ANDROID
uint32_t AndroidGetAudioOutputSampleRate() {
int32_t sample_rate = java::GeckoAppShell::GetAudioOutputSampleRate();
MOZ_ASSERT(sample_rate > 0);
return sample_rate;
}
uint32_t AndroidGetAudioOutputFramesPerBuffer() {
int32_t frames = java::GeckoAppShell::GetAudioOutputFramesPerBuffer();
MOZ_ASSERT(frames > 0);
return frames;
}
#endif
} // namespace CubebUtils
} // namespace mozilla