/* 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 "GMPPlatform.h"
#include "GMPChild.h"
#include "GMPStorageChild.h"
#include "GMPTimerChild.h"
#include "base/task.h"
#include "base/thread.h"
#include "base/time.h"
#include "mozilla/Monitor.h"
#include "mozilla/Mutex.h"
#include "mozilla/ReentrantMonitor.h"
#include "nsThreadUtils.h"
#ifdef XP_WIN
# include
"mozilla/UntrustedModulesProcessor.h"
#endif
#include <ctime>
namespace mozilla::gmp {
static GMPChild* sChild = nullptr;
// We just need a refcounted wrapper for GMPTask objects.
class GMPRunnable final : public Runnable {
public:
explicit GMPRunnable(GMPTask* aTask)
: Runnable(
"mozilla::gmp::GMPRunnable"), mTask(aTask) {
MOZ_ASSERT(mTask);
}
NS_IMETHOD Run() override {
mTask->Run();
mTask->Destroy();
mTask = nullptr;
return NS_OK;
}
private:
GMPTask* mTask;
};
class GMPSyncRunnable final : public Runnable {
public:
explicit GMPSyncRunnable(GMPTask* aTask)
: Runnable(
"mozilla::gmp::GMPSyncRunnable"), mTask(aTask) {
MOZ_ASSERT(mTask);
}
void WaitUntilDone() {
// We assert here for two reasons.
// 1) Nobody should be blocking the main thread.
// 2) This prevents deadlocks when doing sync calls to main which if the
// main thread tries to do a sync call back to the calling thread.
MOZ_ASSERT(!NS_IsMainThread());
MonitorAutoLock lock(mMonitor);
while (!mDone) {
lock.Wait();
}
}
NS_IMETHOD Run() override {
mTask->Run();
mTask->Destroy();
mTask = nullptr;
MonitorAutoLock lock(mMonitor);
mDone = true;
lock.Notify();
return NS_OK;
}
private:
bool mDone MOZ_GUARDED_BY(mMonitor) =
false;
GMPTask* mTask;
Monitor mMonitor{
"GMPSyncRunnable"};
};
class GMPThreadImpl final : public GMPThread {
public:
GMPThreadImpl();
virtual ~GMPThreadImpl();
// GMPThread
void Post(GMPTask* aTask) override;
void Join() override;
private:
Mutex mMutex{
"GMPThreadImpl"};
base::Thread mThread MOZ_GUARDED_BY(mMutex){
"GMPThread"};
};
GMPErr CreateThread(GMPThread** aThread) {
if (!aThread) {
return GMPGenericErr;
}
*aThread =
new GMPThreadImpl();
return GMPNoErr;
}
GMPErr RunOnMainThread(GMPTask* aTask) {
if (!aTask) {
return GMPGenericErr;
}
if (NS_FAILED(NS_DispatchToMainThread(MakeAndAddRef<GMPRunnable>(aTask)))) {
return GMPGenericErr;
}
return GMPNoErr;
}
GMPErr SyncRunOnMainThread(GMPTask* aTask) {
if (!aTask || NS_IsMainThread()) {
return GMPGenericErr;
}
RefPtr<GMPSyncRunnable> r =
new GMPSyncRunnable(aTask);
if (NS_FAILED(NS_DispatchToMainThread(r))) {
return GMPGenericErr;
}
r->WaitUntilDone();
return GMPNoErr;
}
class MOZ_CAPABILITY(
"mutex") GMPMutexImpl final : public GMPMutex {
public:
GMPMutexImpl();
virtual ~GMPMutexImpl();
// GMPMutex
void Acquire() override MOZ_CAPABILITY_ACQUIRE();
void Release() override MOZ_CAPABILITY_RELEASE();
void Destroy() override;
private:
ReentrantMonitor mMonitor{
"gmp-mutex"};
};
GMPErr CreateMutex(GMPMutex** aMutex) {
if (!aMutex) {
return GMPGenericErr;
}
*aMutex =
new GMPMutexImpl();
return GMPNoErr;
}
GMPErr CreateRecord(
const char* aRecordName, uint32_t aRecordNameSize,
GMPRecord** aOutRecord, GMPRecordClient* aClient) {
if (aRecordNameSize > GMP_MAX_RECORD_NAME_SIZE || aRecordNameSize ==
0) {
NS_WARNING(
"GMP tried to CreateRecord with too long or 0 record name");
return GMPGenericErr;
}
GMPStorageChild* storage = sChild->GetGMPStorage();
if (!storage) {
return GMPGenericErr;
}
MOZ_ASSERT(storage);
return storage->CreateRecord(nsDependentCString(aRecordName, aRecordNameSize),
aOutRecord, aClient);
}
GMPErr SetTimerOnMainThread(GMPTask* aTask, int64_t aTimeoutMS) {
if (!aTask || !NS_IsMainThread()) {
return GMPGenericErr;
}
GMPTimerChild* timers = sChild->GetGMPTimers();
NS_ENSURE_TRUE(timers, GMPGenericErr);
return timers->SetTimer(aTask, aTimeoutMS);
}
GMPErr GetClock(GMPTimestamp* aOutTime) {
if (!aOutTime) {
return GMPGenericErr;
}
*aOutTime = base::Time::Now().ToDoubleT() *
1000.
0;
return GMPNoErr;
}
void InitPlatformAPI(GMPPlatformAPI& aPlatformAPI, GMPChild* aChild) {
if (!sChild) {
sChild = aChild;
}
aPlatformAPI.version =
0;
aPlatformAPI.createthread = &CreateThread;
aPlatformAPI.runonmainthread = &RunOnMainThread;
aPlatformAPI.syncrunonmainthread = &SyncRunOnMainThread;
aPlatformAPI.createmutex = &CreateMutex;
aPlatformAPI.createrecord = &CreateRecord;
aPlatformAPI.settimer = &SetTimerOnMainThread;
aPlatformAPI.getcurrenttime = &GetClock;
}
void SendFOGData(ipc::ByteBuf&& buf) {
if (sChild) {
sChild->SendFOGData(std::move(buf));
}
}
#ifdef XP_WIN
RefPtr<PGMPChild::GetModulesTrustPromise> SendGetModulesTrust(
ModulePaths&& aModules,
bool aRunAtNormalPriority) {
if (!sChild) {
return PGMPChild::GetModulesTrustPromise::CreateAndReject(
ipc::ResponseRejectReason::SendError, __func__);
}
return sChild->SendGetModulesTrust(std::move(aModules), aRunAtNormalPriority);
}
#endif
GMPThreadImpl::GMPThreadImpl() { MOZ_COUNT_CTOR(GMPThread); }
GMPThreadImpl::~GMPThreadImpl() { MOZ_COUNT_DTOR(GMPThread); }
void GMPThreadImpl::Post(GMPTask* aTask) {
MutexAutoLock lock(mMutex);
if (!mThread.IsRunning()) {
bool started = mThread.Start();
if (!started) {
NS_WARNING(
"Unable to start GMPThread!");
return;
}
}
RefPtr<GMPRunnable> r =
new GMPRunnable(aTask);
mThread.message_loop()->PostTask(
NewRunnableMethod(
"gmp::GMPRunnable::Run", r.get(), &GMPRunnable::Run));
}
void GMPThreadImpl::Join() {
{
MutexAutoLock lock(mMutex);
if (mThread.IsRunning()) {
mThread.Stop();
}
}
delete this;
}
GMPMutexImpl::GMPMutexImpl() { MOZ_COUNT_CTOR(GMPMutexImpl); }
GMPMutexImpl::~GMPMutexImpl() { MOZ_COUNT_DTOR(GMPMutexImpl); }
void GMPMutexImpl::Destroy() {
delete this; }
MOZ_PUSH_IGNORE_THREAD_SAFETY
void GMPMutexImpl::Acquire() { mMonitor.Enter(); }
void GMPMutexImpl::Release() { mMonitor.
Exit(); }
MOZ_POP_THREAD_SAFETY
GMPTask* NewGMPTask(std::function<
void()>&& aFunction) {
class Task : public GMPTask {
public:
explicit Task(std::function<
void()>&& aFunction)
: mFunction(std::move(aFunction)) {}
void Destroy() override {
delete this; }
~Task() override =
default;
void Run() override { mFunction(); }
private:
std::function<
void()> mFunction;
};
return new Task(std::move(aFunction));
}
}
// namespace mozilla::gmp