mirror of
https://github.com/mozilla/gecko-dev.git
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5ebdbedf21
Differential Revision: https://phabricator.services.mozilla.com/D165441
280 lines
8.5 KiB
C++
280 lines
8.5 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 "MIDIPlatformService.h"
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#include "MIDIMessageQueue.h"
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#include "TestMIDIPlatformService.h"
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#ifdef MOZ_WEBMIDI_MIDIR_IMPL
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# include "midirMIDIPlatformService.h"
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#endif // MOZ_WEBMIDI_MIDIR_IMPL
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#include "mozilla/ErrorResult.h"
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#include "mozilla/StaticPrefs_midi.h"
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#include "mozilla/StaticPtr.h"
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#include "mozilla/Unused.h"
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#include "mozilla/dom/MIDIManagerParent.h"
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#include "mozilla/dom/MIDIPlatformRunnables.h"
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#include "mozilla/dom/MIDIUtils.h"
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#include "mozilla/dom/PMIDIManagerParent.h"
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#include "mozilla/ipc/BackgroundParent.h"
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#include "mozilla/dom/MIDIPortParent.h"
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using namespace mozilla;
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using namespace mozilla::dom;
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MIDIPlatformService::MIDIPlatformService()
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: mHasSentPortList(false),
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mMessageQueueMutex("MIDIPlatformServce::mMessageQueueMutex") {}
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MIDIPlatformService::~MIDIPlatformService() = default;
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void MIDIPlatformService::CheckAndReceive(const nsAString& aPortId,
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const nsTArray<MIDIMessage>& aMsgs) {
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AssertThread();
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for (auto& port : mPorts) {
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// TODO Clean this up when we split input/output port arrays
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if (port->MIDIPortInterface::Id() != aPortId ||
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port->Type() != MIDIPortType::Input ||
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port->ConnectionState() != MIDIPortConnectionState::Open) {
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continue;
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}
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if (!port->SysexEnabled()) {
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nsTArray<MIDIMessage> msgs;
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for (const auto& msg : aMsgs) {
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if (!MIDIUtils::IsSysexMessage(msg)) {
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msgs.AppendElement(msg);
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}
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}
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Unused << port->SendReceive(msgs);
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} else {
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Unused << port->SendReceive(aMsgs);
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}
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}
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}
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void MIDIPlatformService::AddPort(MIDIPortParent* aPort) {
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MOZ_ASSERT(aPort);
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AssertThread();
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mPorts.AppendElement(aPort);
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}
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void MIDIPlatformService::RemovePort(MIDIPortParent* aPort) {
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// This should only be called from the background thread, when a MIDIPort
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// actor has been destroyed.
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AssertThread();
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MOZ_ASSERT(aPort);
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mPorts.RemoveElement(aPort);
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MaybeStop();
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}
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void MIDIPlatformService::BroadcastState(const MIDIPortInfo& aPortInfo,
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const MIDIPortDeviceState& aState) {
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AssertThread();
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for (auto& p : mPorts) {
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if (p->MIDIPortInterface::Id() == aPortInfo.id() &&
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p->DeviceState() != aState) {
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p->SendUpdateStatus(aState, p->ConnectionState());
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}
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}
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}
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void MIDIPlatformService::QueueMessages(const nsAString& aId,
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nsTArray<MIDIMessage>& aMsgs) {
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AssertThread();
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{
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MutexAutoLock lock(mMessageQueueMutex);
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MIDIMessageQueue* msgQueue = mMessageQueues.GetOrInsertNew(aId);
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msgQueue->Add(aMsgs);
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}
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ScheduleSend(aId);
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}
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void MIDIPlatformService::SendPortList() {
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AssertThread();
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mHasSentPortList = true;
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MIDIPortList l;
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for (auto& el : mPortInfo) {
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l.ports().AppendElement(el);
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}
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for (auto& mgr : mManagers) {
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Unused << mgr->SendMIDIPortListUpdate(l);
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}
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}
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void MIDIPlatformService::Clear(MIDIPortParent* aPort) {
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AssertThread();
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MOZ_ASSERT(aPort);
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{
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MutexAutoLock lock(mMessageQueueMutex);
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MIDIMessageQueue* msgQueue =
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mMessageQueues.Get(aPort->MIDIPortInterface::Id());
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if (msgQueue) {
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msgQueue->Clear();
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}
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}
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}
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void MIDIPlatformService::AddPortInfo(MIDIPortInfo& aPortInfo) {
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AssertThread();
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MOZ_ASSERT(XRE_IsParentProcess());
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mPortInfo.AppendElement(aPortInfo);
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// ORDER MATTERS HERE.
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//
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// When MIDI hardware is disconnected, all open MIDIPort objects revert to a
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// "pending" state, and they are removed from the port maps of MIDIAccess
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// objects. We need to send connection updates to all living ports first, THEN
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// we can send port list updates to all of the live MIDIAccess objects. We
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// have to go in this order because if a port object is still held live but is
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// disconnected, it needs to readd itself to its originating MIDIAccess
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// object. Running SendPortList first would cause MIDIAccess to create a new
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// MIDIPort object, which would conflict (i.e. old disconnected object != new
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// object in port map, which is against spec).
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for (auto& port : mPorts) {
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if (port->MIDIPortInterface::Id() == aPortInfo.id()) {
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port->SendUpdateStatus(MIDIPortDeviceState::Connected,
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port->ConnectionState());
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}
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}
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if (mHasSentPortList) {
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SendPortList();
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}
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}
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void MIDIPlatformService::RemovePortInfo(MIDIPortInfo& aPortInfo) {
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AssertThread();
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mPortInfo.RemoveElement(aPortInfo);
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BroadcastState(aPortInfo, MIDIPortDeviceState::Disconnected);
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if (mHasSentPortList) {
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SendPortList();
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}
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}
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StaticRefPtr<nsISerialEventTarget> gMIDITaskQueue;
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// static
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void MIDIPlatformService::InitStatics() {
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nsCOMPtr<nsISerialEventTarget> queue;
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MOZ_ALWAYS_SUCCEEDS(
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NS_CreateBackgroundTaskQueue("MIDITaskQueue", getter_AddRefs(queue)));
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gMIDITaskQueue = queue.forget();
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ClearOnShutdown(&gMIDITaskQueue);
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}
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// static
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nsISerialEventTarget* MIDIPlatformService::OwnerThread() {
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return gMIDITaskQueue;
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}
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StaticRefPtr<MIDIPlatformService> gMIDIPlatformService;
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// static
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bool MIDIPlatformService::IsRunning() {
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return gMIDIPlatformService != nullptr;
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}
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void MIDIPlatformService::Close(mozilla::dom::MIDIPortParent* aPort) {
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AssertThread();
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{
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MutexAutoLock lock(mMessageQueueMutex);
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MIDIMessageQueue* msgQueue =
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mMessageQueues.Get(aPort->MIDIPortInterface::Id());
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if (msgQueue) {
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msgQueue->ClearAfterNow();
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}
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}
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// Send all messages before sending a close request
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ScheduleSend(aPort->MIDIPortInterface::Id());
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// TODO We should probably have the send function schedule closing
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ScheduleClose(aPort);
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}
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// static
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MIDIPlatformService* MIDIPlatformService::Get() {
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// We should never touch the platform service in a child process.
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MOZ_ASSERT(XRE_IsParentProcess());
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AssertThread();
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if (!IsRunning()) {
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if (StaticPrefs::midi_testing()) {
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gMIDIPlatformService = new TestMIDIPlatformService();
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}
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#ifdef MOZ_WEBMIDI_MIDIR_IMPL
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else {
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gMIDIPlatformService = new midirMIDIPlatformService();
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}
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#endif // MOZ_WEBMIDI_MIDIR_IMPL
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gMIDIPlatformService->Init();
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}
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return gMIDIPlatformService;
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}
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void MIDIPlatformService::MaybeStop() {
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AssertThread();
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if (!IsRunning()) {
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// Service already stopped or never started. Exit.
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return;
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}
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// If we have any ports or managers left, we should still be alive.
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if (!mPorts.IsEmpty() || !mManagers.IsEmpty()) {
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return;
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}
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Stop();
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gMIDIPlatformService = nullptr;
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}
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void MIDIPlatformService::AddManager(MIDIManagerParent* aManager) {
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AssertThread();
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mManagers.AppendElement(aManager);
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// Managers add themselves during construction. We have to wait for the
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// protocol construction to finish before we send them a port list. The
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// runnable calls SendPortList, which iterates through the live manager list,
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// so this saves us from having to worry about Manager pointer validity at
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// time of runnable execution.
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nsCOMPtr<nsIRunnable> r(new SendPortListRunnable());
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OwnerThread()->Dispatch(r.forget());
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}
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void MIDIPlatformService::RemoveManager(MIDIManagerParent* aManager) {
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AssertThread();
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mManagers.RemoveElement(aManager);
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MaybeStop();
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}
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void MIDIPlatformService::UpdateStatus(
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MIDIPortParent* aPort, const MIDIPortDeviceState& aDeviceState,
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const MIDIPortConnectionState& aConnectionState) {
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AssertThread();
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aPort->SendUpdateStatus(aDeviceState, aConnectionState);
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}
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void MIDIPlatformService::GetMessages(const nsAString& aPortId,
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nsTArray<MIDIMessage>& aMsgs) {
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// Can run on either background thread or platform specific IO Thread.
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{
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MutexAutoLock lock(mMessageQueueMutex);
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MIDIMessageQueue* msgQueue;
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if (!mMessageQueues.Get(aPortId, &msgQueue)) {
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return;
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}
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msgQueue->GetMessages(aMsgs);
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}
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}
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void MIDIPlatformService::GetMessagesBefore(const nsAString& aPortId,
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const TimeStamp& aTimeStamp,
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nsTArray<MIDIMessage>& aMsgs) {
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// Can run on either background thread or platform specific IO Thread.
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{
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MutexAutoLock lock(mMessageQueueMutex);
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MIDIMessageQueue* msgQueue;
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if (!mMessageQueues.Get(aPortId, &msgQueue)) {
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return;
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}
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msgQueue->GetMessagesBefore(aTimeStamp, aMsgs);
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}
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}
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