blob: 7cb7e6d30d6f0c2f2c808b21073b9465e5c6c115 [file] [log] [blame]
/*
* Copyright 2018 The Android Open Source Project
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
//#define LOG_NDEBUG 0
#define LOG_TAG "android.hardware.media.c2-service"
#include <android-base/logging.h>
#include <minijail.h>
#include <util/C2InterfaceHelper.h>
#include <C2Component.h>
#include <C2Config.h>
// HIDL
#include <binder/ProcessState.h>
#include <codec2/hidl/1.2/ComponentStore.h>
#include <hidl/HidlTransportSupport.h>
// AIDL
#include <android/binder_manager.h>
#include <android/binder_process.h>
#include <codec2/aidl/ComponentStore.h>
#include <codec2/aidl/ParamTypes.h>
// This is the absolute on-device path of the prebuild_etc module
// "android.hardware.media.c2-default-seccomp_policy" in Android.bp.
static constexpr char kBaseSeccompPolicyPath[] =
"/vendor/etc/seccomp_policy/"
"android.hardware.media.c2-default-seccomp_policy";
// Additional seccomp permissions can be added in this file.
// This file does not exist by default.
static constexpr char kExtSeccompPolicyPath[] =
"/vendor/etc/seccomp_policy/"
"android.hardware.media.c2-extended-seccomp_policy";
// We want multiple threads to be running so that a blocking operation
// on one codec does not block the other codecs.
// For HIDL: Extra threads may be needed to handle a stacked IPC sequence that
// contains alternating binder and hwbinder calls. (See b/35283480.)
static constexpr int kThreadCount = 8;
class StoreImpl : public C2ComponentStore {
public:
StoreImpl()
: mReflectorHelper(std::make_shared<C2ReflectorHelper>()),
mInterface(mReflectorHelper) {
}
virtual ~StoreImpl() override = default;
virtual C2String getName() const override {
return "default";
}
virtual c2_status_t createComponent(
C2String /*name*/,
std::shared_ptr<C2Component>* const /*component*/) override {
return C2_NOT_FOUND;
}
virtual c2_status_t createInterface(
C2String /* name */,
std::shared_ptr<C2ComponentInterface>* const /* interface */) override {
return C2_NOT_FOUND;
}
virtual std::vector<std::shared_ptr<const C2Component::Traits>>
listComponents() override {
return {};
}
virtual c2_status_t copyBuffer(
std::shared_ptr<C2GraphicBuffer> /* src */,
std::shared_ptr<C2GraphicBuffer> /* dst */) override {
return C2_OMITTED;
}
virtual c2_status_t query_sm(
const std::vector<C2Param*>& stackParams,
const std::vector<C2Param::Index>& heapParamIndices,
std::vector<std::unique_ptr<C2Param>>* const heapParams) const override {
return mInterface.query(stackParams, heapParamIndices, C2_MAY_BLOCK, heapParams);
}
virtual c2_status_t config_sm(
const std::vector<C2Param*>& params,
std::vector<std::unique_ptr<C2SettingResult>>* const failures) override {
return mInterface.config(params, C2_MAY_BLOCK, failures);
}
virtual std::shared_ptr<C2ParamReflector> getParamReflector() const override {
return mReflectorHelper;
}
virtual c2_status_t querySupportedParams_nb(
std::vector<std::shared_ptr<C2ParamDescriptor>>* const params) const override {
return mInterface.querySupportedParams(params);
}
virtual c2_status_t querySupportedValues_sm(
std::vector<C2FieldSupportedValuesQuery>& fields) const override {
return mInterface.querySupportedValues(fields, C2_MAY_BLOCK);
}
private:
class Interface : public C2InterfaceHelper {
public:
Interface(const std::shared_ptr<C2ReflectorHelper> &helper)
: C2InterfaceHelper(helper) {
setDerivedInstance(this);
addParameter(
DefineParam(mIonUsageInfo, "ion-usage")
.withDefault(new C2StoreIonUsageInfo())
.withFields({
C2F(mIonUsageInfo, usage).flags(
{C2MemoryUsage::CPU_READ | C2MemoryUsage::CPU_WRITE}),
C2F(mIonUsageInfo, capacity).inRange(0, UINT32_MAX, 1024),
C2F(mIonUsageInfo, heapMask).any(),
C2F(mIonUsageInfo, allocFlags).flags({}),
C2F(mIonUsageInfo, minAlignment).equalTo(0)
})
.withSetter(SetIonUsage)
.build());
addParameter(
DefineParam(mDmaBufUsageInfo, "dmabuf-usage")
.withDefault(C2StoreDmaBufUsageInfo::AllocShared(128))
.withFields({
C2F(mDmaBufUsageInfo, m.usage).flags({C2MemoryUsage::CPU_READ | C2MemoryUsage::CPU_WRITE}),
C2F(mDmaBufUsageInfo, m.capacity).inRange(0, UINT32_MAX, 1024),
C2F(mDmaBufUsageInfo, m.allocFlags).flags({}),
C2F(mDmaBufUsageInfo, m.heapName).any(),
})
.withSetter(SetDmaBufUsage)
.build());
}
virtual ~Interface() = default;
private:
static C2R SetIonUsage(bool /* mayBlock */, C2P<C2StoreIonUsageInfo> &me) {
// Vendor's TODO: put appropriate mapping logic
me.set().heapMask = ~0;
me.set().allocFlags = 0;
me.set().minAlignment = 0;
return C2R::Ok();
}
static C2R SetDmaBufUsage(bool /* mayBlock */, C2P<C2StoreDmaBufUsageInfo> &me) {
// Vendor's TODO: put appropriate mapping logic
strncpy(me.set().m.heapName, "system", me.v.flexCount());
me.set().m.allocFlags = 0;
return C2R::Ok();
}
std::shared_ptr<C2StoreIonUsageInfo> mIonUsageInfo;
std::shared_ptr<C2StoreDmaBufUsageInfo> mDmaBufUsageInfo;
};
std::shared_ptr<C2ReflectorHelper> mReflectorHelper;
Interface mInterface;
};
void runAidlService() {
ABinderProcess_setThreadPoolMaxThreadCount(kThreadCount);
ABinderProcess_startThreadPool();
// Create IComponentStore service.
using namespace ::aidl::android::hardware::media::c2;
std::shared_ptr<IComponentStore> store;
// TODO: Replace this with
// store = new utils::ComponentStore(
// /* implementation of C2ComponentStore */);
LOG(DEBUG) << "Instantiating Codec2's IComponentStore service...";
store = ::ndk::SharedRefBase::make<utils::ComponentStore>(
std::make_shared<StoreImpl>());
if (store == nullptr) {
LOG(ERROR) << "Cannot create Codec2's IComponentStore service.";
} else {
const std::string serviceName =
std::string(IComponentStore::descriptor) + "/default";
binder_exception_t ex = AServiceManager_addService(
store->asBinder().get(), serviceName.c_str());
if (ex != EX_NONE) {
LOG(ERROR) << "Cannot register Codec2's IComponentStore service"
" with instance name << \""
<< serviceName << "\".";
} else {
LOG(DEBUG) << "Codec2's IComponentStore service registered. "
"Instance name: \"" << serviceName << "\".";
}
}
ABinderProcess_joinThreadPool();
}
void runHidlService() {
using namespace ::android;
// Enable vndbinder to allow vendor-to-vendor binder calls.
ProcessState::initWithDriver("/dev/vndbinder");
ProcessState::self()->startThreadPool();
hardware::configureRpcThreadpool(kThreadCount, true /* callerWillJoin */);
// Create IComponentStore service.
{
using namespace ::android::hardware::media::c2::V1_2;
sp<IComponentStore> store;
// TODO: Replace this with
// store = new utils::ComponentStore(
// /* implementation of C2ComponentStore */);
LOG(DEBUG) << "Instantiating Codec2's IComponentStore service...";
store = new utils::ComponentStore(
std::make_shared<StoreImpl>());
if (store == nullptr) {
LOG(ERROR) << "Cannot create Codec2's IComponentStore service.";
} else {
constexpr char const* serviceName = "default";
if (store->registerAsService(serviceName) != OK) {
LOG(ERROR) << "Cannot register Codec2's IComponentStore service"
" with instance name << \""
<< serviceName << "\".";
} else {
LOG(DEBUG) << "Codec2's IComponentStore service registered. "
"Instance name: \"" << serviceName << "\".";
}
}
}
hardware::joinRpcThreadpool();
}
int main(int /* argc */, char** /* argv */) {
const bool aidlEnabled = ::aidl::android::hardware::media::c2::utils::IsEnabled();
LOG(DEBUG) << "android.hardware.media.c2" << (aidlEnabled ? "-V1" : "@1.2")
<< "-service starting...";
// Set up minijail to limit system calls.
signal(SIGPIPE, SIG_IGN);
android::SetUpMinijail(kBaseSeccompPolicyPath, kExtSeccompPolicyPath);
if (aidlEnabled) {
runAidlService();
} else {
runHidlService();
}
return 0;
}