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702 lines
26 KiB
702 lines
26 KiB
/*
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* Copyright (C) 2015 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#define LOG_NDEBUG 0
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#define LOG_TAG "CameraBinderTests"
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#include <binder/IInterface.h>
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#include <binder/IServiceManager.h>
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#include <binder/Parcel.h>
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#include <binder/ProcessState.h>
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#include <utils/Errors.h>
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#include <utils/Log.h>
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#include <utils/List.h>
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#include <utils/String8.h>
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#include <utils/String16.h>
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#include <utils/Condition.h>
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#include <utils/Mutex.h>
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#include <system/graphics.h>
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#include <hardware/camera3.h>
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#include <hardware/gralloc.h>
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#include <camera/CameraMetadata.h>
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#include <android/hardware/ICameraService.h>
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#include <android/hardware/ICameraServiceListener.h>
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#include <android/hardware/BnCameraServiceListener.h>
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#include <android/hardware/camera2/ICameraDeviceUser.h>
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#include <android/hardware/camera2/ICameraDeviceCallbacks.h>
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#include <android/hardware/camera2/BnCameraDeviceCallbacks.h>
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#include <camera/camera2/CaptureRequest.h>
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#include <camera/camera2/OutputConfiguration.h>
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#include <camera/camera2/SessionConfiguration.h>
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#include <camera/camera2/SubmitInfo.h>
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#include <gui/BufferItemConsumer.h>
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#include <gui/IGraphicBufferProducer.h>
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#include <gui/Surface.h>
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#include <gtest/gtest.h>
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#include <unistd.h>
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#include <stdint.h>
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#include <utility>
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#include <vector>
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#include <map>
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#include <algorithm>
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using namespace android;
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using ::android::hardware::ICameraService;
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using ::android::hardware::camera2::ICameraDeviceUser;
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#define ASSERT_NOT_NULL(x) \
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ASSERT_TRUE((x) != nullptr)
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#define SETUP_TIMEOUT 2000000000 // ns
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#define IDLE_TIMEOUT 2000000000 // ns
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// Stub listener implementation
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class TestCameraServiceListener : public hardware::BnCameraServiceListener {
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std::map<String16, int32_t> mCameraTorchStatuses;
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std::map<String16, int32_t> mCameraStatuses;
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mutable Mutex mLock;
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mutable Condition mCondition;
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mutable Condition mTorchCondition;
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public:
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virtual ~TestCameraServiceListener() {};
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virtual binder::Status onStatusChanged(int32_t status, const String16& cameraId) {
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Mutex::Autolock l(mLock);
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mCameraStatuses[cameraId] = status;
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mCondition.broadcast();
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return binder::Status::ok();
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};
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virtual binder::Status onPhysicalCameraStatusChanged(int32_t /*status*/,
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const String16& /*cameraId*/, const String16& /*physicalCameraId*/) {
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// No op
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return binder::Status::ok();
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};
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virtual binder::Status onTorchStatusChanged(int32_t status, const String16& cameraId) {
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Mutex::Autolock l(mLock);
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mCameraTorchStatuses[cameraId] = status;
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mTorchCondition.broadcast();
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return binder::Status::ok();
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};
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virtual binder::Status onCameraAccessPrioritiesChanged() {
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// No op
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return binder::Status::ok();
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}
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virtual binder::Status onCameraOpened(const String16& /*cameraId*/,
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const String16& /*clientPackageName*/) {
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// No op
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return binder::Status::ok();
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}
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virtual binder::Status onCameraClosed(const String16& /*cameraId*/) {
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// No op
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return binder::Status::ok();
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}
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bool waitForNumCameras(size_t num) const {
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Mutex::Autolock l(mLock);
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if (mCameraStatuses.size() == num) {
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return true;
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}
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while (mCameraStatuses.size() < num) {
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if (mCondition.waitRelative(mLock, SETUP_TIMEOUT) != OK) {
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return false;
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}
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}
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return true;
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};
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bool waitForTorchState(int32_t status, int32_t cameraId) const {
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Mutex::Autolock l(mLock);
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const auto& iter = mCameraTorchStatuses.find(String16(String8::format("%d", cameraId)));
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if (iter != mCameraTorchStatuses.end() && iter->second == status) {
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return true;
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}
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bool foundStatus = false;
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while (!foundStatus) {
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if (mTorchCondition.waitRelative(mLock, SETUP_TIMEOUT) != OK) {
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return false;
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}
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const auto& iter =
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mCameraTorchStatuses.find(String16(String8::format("%d", cameraId)));
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foundStatus = (iter != mCameraTorchStatuses.end() && iter->second == status);
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}
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return true;
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};
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int32_t getTorchStatus(int32_t cameraId) const {
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Mutex::Autolock l(mLock);
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const auto& iter = mCameraTorchStatuses.find(String16(String8::format("%d", cameraId)));
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if (iter == mCameraTorchStatuses.end()) {
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return hardware::ICameraServiceListener::TORCH_STATUS_UNKNOWN;
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}
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return iter->second;
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};
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int32_t getStatus(const String16& cameraId) const {
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Mutex::Autolock l(mLock);
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const auto& iter = mCameraStatuses.find(cameraId);
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if (iter == mCameraStatuses.end()) {
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return hardware::ICameraServiceListener::STATUS_UNKNOWN;
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}
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return iter->second;
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};
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};
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// Callback implementation
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class TestCameraDeviceCallbacks : public hardware::camera2::BnCameraDeviceCallbacks {
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public:
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enum Status {
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IDLE,
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ERROR,
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PREPARED,
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RUNNING,
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SENT_RESULT,
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UNINITIALIZED,
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REPEATING_REQUEST_ERROR,
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REQUEST_QUEUE_EMPTY,
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};
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protected:
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bool mError;
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int32_t mLastStatus;
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mutable std::vector<int32_t> mStatusesHit;
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mutable Mutex mLock;
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mutable Condition mStatusCondition;
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public:
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TestCameraDeviceCallbacks() : mError(false), mLastStatus(UNINITIALIZED) {}
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virtual ~TestCameraDeviceCallbacks() {}
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virtual binder::Status onDeviceError(int errorCode,
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const CaptureResultExtras& resultExtras) {
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(void) resultExtras;
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ALOGE("%s: onDeviceError occurred with: %d", __FUNCTION__, static_cast<int>(errorCode));
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Mutex::Autolock l(mLock);
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mError = true;
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mLastStatus = ERROR;
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mStatusesHit.push_back(mLastStatus);
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mStatusCondition.broadcast();
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return binder::Status::ok();
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}
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virtual binder::Status onDeviceIdle() {
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Mutex::Autolock l(mLock);
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mLastStatus = IDLE;
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mStatusesHit.push_back(mLastStatus);
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mStatusCondition.broadcast();
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return binder::Status::ok();
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}
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virtual binder::Status onCaptureStarted(const CaptureResultExtras& resultExtras,
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int64_t timestamp) {
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(void) resultExtras;
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(void) timestamp;
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Mutex::Autolock l(mLock);
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mLastStatus = RUNNING;
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mStatusesHit.push_back(mLastStatus);
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mStatusCondition.broadcast();
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return binder::Status::ok();
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}
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virtual binder::Status onResultReceived(const CameraMetadata& metadata,
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const CaptureResultExtras& resultExtras,
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const std::vector<PhysicalCaptureResultInfo>& physicalResultInfos) {
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(void) metadata;
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(void) resultExtras;
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(void) physicalResultInfos;
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Mutex::Autolock l(mLock);
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mLastStatus = SENT_RESULT;
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mStatusesHit.push_back(mLastStatus);
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mStatusCondition.broadcast();
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return binder::Status::ok();
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}
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virtual binder::Status onPrepared(int streamId) {
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(void) streamId;
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Mutex::Autolock l(mLock);
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mLastStatus = PREPARED;
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mStatusesHit.push_back(mLastStatus);
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mStatusCondition.broadcast();
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return binder::Status::ok();
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}
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virtual binder::Status onRepeatingRequestError(
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int64_t lastFrameNumber, int32_t stoppedSequenceId) {
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(void) lastFrameNumber;
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(void) stoppedSequenceId;
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Mutex::Autolock l(mLock);
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mLastStatus = REPEATING_REQUEST_ERROR;
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mStatusesHit.push_back(mLastStatus);
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mStatusCondition.broadcast();
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return binder::Status::ok();
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}
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virtual binder::Status onRequestQueueEmpty() {
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Mutex::Autolock l(mLock);
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mLastStatus = REQUEST_QUEUE_EMPTY;
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mStatusesHit.push_back(mLastStatus);
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mStatusCondition.broadcast();
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return binder::Status::ok();
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}
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// Test helper functions:
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bool hadError() const {
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Mutex::Autolock l(mLock);
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return mError;
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}
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bool waitForStatus(Status status) const {
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Mutex::Autolock l(mLock);
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if (mLastStatus == status) {
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return true;
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}
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while (std::find(mStatusesHit.begin(), mStatusesHit.end(), status)
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== mStatusesHit.end()) {
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if (mStatusCondition.waitRelative(mLock, IDLE_TIMEOUT) != OK) {
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mStatusesHit.clear();
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return false;
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}
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}
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mStatusesHit.clear();
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return true;
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}
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void clearStatus() const {
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Mutex::Autolock l(mLock);
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mStatusesHit.clear();
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}
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bool waitForIdle() const {
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return waitForStatus(IDLE);
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}
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};
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namespace {
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Mutex gLock;
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class DeathNotifier : public IBinder::DeathRecipient
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{
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public:
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DeathNotifier() {}
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virtual void binderDied(const wp<IBinder>& /*who*/) {
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ALOGV("binderDied");
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Mutex::Autolock _l(gLock);
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ALOGW("Camera service died!");
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}
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};
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sp<DeathNotifier> gDeathNotifier;
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}; // anonymous namespace
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// Exercise basic binder calls for the camera service
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TEST(CameraServiceBinderTest, CheckBinderCameraService) {
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ProcessState::self()->startThreadPool();
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sp<IServiceManager> sm = defaultServiceManager();
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sp<IBinder> binder = sm->getService(String16("media.camera"));
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ASSERT_NOT_NULL(binder);
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if (gDeathNotifier == NULL) {
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gDeathNotifier = new DeathNotifier();
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}
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binder->linkToDeath(gDeathNotifier);
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sp<hardware::ICameraService> service =
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interface_cast<hardware::ICameraService>(binder);
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binder::Status res;
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int32_t numCameras = 0;
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res = service->getNumberOfCameras(hardware::ICameraService::CAMERA_TYPE_ALL, &numCameras);
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EXPECT_TRUE(res.isOk()) << res;
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EXPECT_LE(0, numCameras);
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// Check listener binder calls
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sp<TestCameraServiceListener> listener(new TestCameraServiceListener());
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std::vector<hardware::CameraStatus> statuses;
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res = service->addListener(listener, &statuses);
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EXPECT_TRUE(res.isOk()) << res;
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EXPECT_EQ(numCameras, static_cast<const int>(statuses.size()));
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for (const auto &it : statuses) {
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listener->onStatusChanged(it.status, String16(it.cameraId));
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}
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for (int32_t i = 0; i < numCameras; i++) {
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String16 cameraId = String16(String8::format("%d", i));
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bool isSupported = false;
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res = service->supportsCameraApi(cameraId,
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hardware::ICameraService::API_VERSION_2, &isSupported);
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EXPECT_TRUE(res.isOk()) << res;
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// We only care about binder calls for the Camera2 API. Camera1 is deprecated.
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if (!isSupported) {
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continue;
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}
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// Check metadata binder call
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CameraMetadata metadata;
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res = service->getCameraCharacteristics(cameraId,
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/*targetSdkVersion*/__ANDROID_API_FUTURE__, &metadata);
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EXPECT_TRUE(res.isOk()) << res;
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EXPECT_FALSE(metadata.isEmpty());
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// Make sure we're available, or skip device tests otherwise
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int32_t s = listener->getStatus(cameraId);
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EXPECT_EQ(::android::hardware::ICameraServiceListener::STATUS_PRESENT, s);
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if (s != ::android::hardware::ICameraServiceListener::STATUS_PRESENT) {
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continue;
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}
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// Check connect binder calls
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sp<TestCameraDeviceCallbacks> callbacks(new TestCameraDeviceCallbacks());
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sp<hardware::camera2::ICameraDeviceUser> device;
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res = service->connectDevice(callbacks, cameraId, String16("meeeeeeeee!"),
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{}, hardware::ICameraService::USE_CALLING_UID, /*oomScoreOffset*/ 0,
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/*targetSdkVersion*/__ANDROID_API_FUTURE__, /*out*/&device);
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EXPECT_TRUE(res.isOk()) << res;
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ASSERT_NE(nullptr, device.get());
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device->disconnect();
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EXPECT_FALSE(callbacks->hadError());
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int32_t torchStatus = listener->getTorchStatus(i);
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if (torchStatus == hardware::ICameraServiceListener::TORCH_STATUS_AVAILABLE_OFF) {
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// Check torch calls
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res = service->setTorchMode(cameraId,
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/*enabled*/true, callbacks);
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EXPECT_TRUE(res.isOk()) << res;
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EXPECT_TRUE(listener->waitForTorchState(
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hardware::ICameraServiceListener::TORCH_STATUS_AVAILABLE_ON, i));
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res = service->setTorchMode(cameraId,
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/*enabled*/false, callbacks);
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EXPECT_TRUE(res.isOk()) << res;
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EXPECT_TRUE(listener->waitForTorchState(
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hardware::ICameraServiceListener::TORCH_STATUS_AVAILABLE_OFF, i));
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}
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}
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res = service->removeListener(listener);
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EXPECT_TRUE(res.isOk()) << res;
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}
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// Test fixture for client focused binder tests
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class CameraClientBinderTest : public testing::Test {
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protected:
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sp<hardware::ICameraService> service;
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int32_t numCameras;
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std::vector<std::pair<sp<TestCameraDeviceCallbacks>, sp<hardware::camera2::ICameraDeviceUser>>>
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openDeviceList;
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sp<TestCameraServiceListener> serviceListener;
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std::pair<sp<TestCameraDeviceCallbacks>, sp<hardware::camera2::ICameraDeviceUser>>
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openNewDevice(const String16& deviceId) {
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sp<TestCameraDeviceCallbacks> callbacks(new TestCameraDeviceCallbacks());
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sp<hardware::camera2::ICameraDeviceUser> device;
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{
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SCOPED_TRACE("openNewDevice");
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binder::Status res = service->connectDevice(callbacks, deviceId, String16("meeeeeeeee!"),
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{}, hardware::ICameraService::USE_CALLING_UID, /*oomScoreOffset*/ 0,
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/*targetSdkVersion*/__ANDROID_API_FUTURE__, /*out*/&device);
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EXPECT_TRUE(res.isOk()) << res;
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}
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auto p = std::make_pair(callbacks, device);
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openDeviceList.push_back(p);
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return p;
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}
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void closeDevice(std::pair<sp<TestCameraDeviceCallbacks>,
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sp<hardware::camera2::ICameraDeviceUser>>& p) {
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if (p.second.get() != nullptr) {
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binder::Status res = p.second->disconnect();
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EXPECT_TRUE(res.isOk()) << res;
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{
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SCOPED_TRACE("closeDevice");
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EXPECT_FALSE(p.first->hadError());
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}
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}
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auto iter = std::find(openDeviceList.begin(), openDeviceList.end(), p);
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if (iter != openDeviceList.end()) {
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openDeviceList.erase(iter);
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}
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}
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virtual void SetUp() {
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ProcessState::self()->startThreadPool();
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sp<IServiceManager> sm = defaultServiceManager();
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sp<IBinder> binder = sm->getService(String16("media.camera"));
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service = interface_cast<hardware::ICameraService>(binder);
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serviceListener = new TestCameraServiceListener();
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std::vector<hardware::CameraStatus> statuses;
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service->addListener(serviceListener, &statuses);
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for (const auto &it : statuses) {
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serviceListener->onStatusChanged(it.status, String16(it.cameraId));
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}
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service->getNumberOfCameras(hardware::ICameraService::CAMERA_TYPE_BACKWARD_COMPATIBLE,
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&numCameras);
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}
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virtual void TearDown() {
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service = nullptr;
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numCameras = 0;
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for (auto& p : openDeviceList) {
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closeDevice(p);
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}
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}
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};
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TEST_F(CameraClientBinderTest, CheckBinderCameraDeviceUser) {
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ASSERT_NOT_NULL(service);
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EXPECT_TRUE(serviceListener->waitForNumCameras(numCameras));
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for (int32_t i = 0; i < numCameras; i++) {
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String8 cameraId8 = String8::format("%d", i);
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// Make sure we're available, or skip device tests otherwise
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String16 cameraId(cameraId8);
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int32_t s = serviceListener->getStatus(cameraId);
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EXPECT_EQ(hardware::ICameraServiceListener::STATUS_PRESENT, s);
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if (s != hardware::ICameraServiceListener::STATUS_PRESENT) {
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continue;
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}
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binder::Status res;
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auto p = openNewDevice(cameraId);
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sp<TestCameraDeviceCallbacks> callbacks = p.first;
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sp<hardware::camera2::ICameraDeviceUser> device = p.second;
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// Setup a buffer queue; I'm just using the vendor opaque format here as that is
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// guaranteed to be present
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sp<IGraphicBufferProducer> gbProducer;
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sp<IGraphicBufferConsumer> gbConsumer;
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BufferQueue::createBufferQueue(&gbProducer, &gbConsumer);
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sp<BufferItemConsumer> opaqueConsumer = new BufferItemConsumer(gbConsumer,
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GRALLOC_USAGE_SW_READ_NEVER, /*maxImages*/2, /*controlledByApp*/true);
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EXPECT_TRUE(opaqueConsumer.get() != nullptr);
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opaqueConsumer->setName(String8("nom nom nom"));
|
|
|
|
// Set to VGA dimens for default, as that is guaranteed to be present
|
|
EXPECT_EQ(OK, gbConsumer->setDefaultBufferSize(640, 480));
|
|
EXPECT_EQ(OK, gbConsumer->setDefaultBufferFormat(HAL_PIXEL_FORMAT_IMPLEMENTATION_DEFINED));
|
|
|
|
sp<Surface> surface(new Surface(gbProducer, /*controlledByApp*/false));
|
|
|
|
String16 noPhysicalId;
|
|
OutputConfiguration output(gbProducer, /*rotation*/0, noPhysicalId);
|
|
|
|
// Can we configure?
|
|
res = device->beginConfigure();
|
|
EXPECT_TRUE(res.isOk()) << res;
|
|
status_t streamId;
|
|
res = device->createStream(output, &streamId);
|
|
EXPECT_TRUE(res.isOk()) << res;
|
|
EXPECT_LE(0, streamId);
|
|
CameraMetadata sessionParams;
|
|
std::vector<int> offlineStreamIds;
|
|
res = device->endConfigure(/*isConstrainedHighSpeed*/ false, sessionParams,
|
|
ns2ms(systemTime()), &offlineStreamIds);
|
|
EXPECT_TRUE(res.isOk()) << res;
|
|
EXPECT_FALSE(callbacks->hadError());
|
|
|
|
// Session configuration must also be supported in this case
|
|
SessionConfiguration sessionConfiguration = { /*inputWidth*/ 0, /*inputHeight*/0,
|
|
/*inputFormat*/ -1, CAMERA3_STREAM_CONFIGURATION_NORMAL_MODE};
|
|
sessionConfiguration.addOutputConfiguration(output);
|
|
bool queryStatus;
|
|
res = device->isSessionConfigurationSupported(sessionConfiguration, &queryStatus);
|
|
EXPECT_TRUE(res.isOk() ||
|
|
(res.serviceSpecificErrorCode() == ICameraService::ERROR_INVALID_OPERATION))
|
|
<< res;
|
|
if (res.isOk()) {
|
|
EXPECT_TRUE(queryStatus);
|
|
}
|
|
|
|
// Can we make requests?
|
|
CameraMetadata requestTemplate;
|
|
res = device->createDefaultRequest(/*preview template*/1,
|
|
/*out*/&requestTemplate);
|
|
EXPECT_TRUE(res.isOk()) << res;
|
|
|
|
hardware::camera2::CaptureRequest request;
|
|
request.mPhysicalCameraSettings.push_back({cameraId8.string(), requestTemplate});
|
|
request.mSurfaceList.add(surface);
|
|
request.mIsReprocess = false;
|
|
int64_t lastFrameNumber = 0;
|
|
int64_t lastFrameNumberPrev = 0;
|
|
callbacks->clearStatus();
|
|
|
|
hardware::camera2::utils::SubmitInfo info;
|
|
res = device->submitRequest(request, /*streaming*/true, /*out*/&info);
|
|
EXPECT_TRUE(res.isOk()) << res;
|
|
EXPECT_TRUE(callbacks->waitForStatus(TestCameraDeviceCallbacks::SENT_RESULT));
|
|
EXPECT_LE(0, info.mRequestId);
|
|
|
|
// Can we stop requests?
|
|
res = device->cancelRequest(info.mRequestId, /*out*/&lastFrameNumber);
|
|
EXPECT_TRUE(res.isOk()) << res;
|
|
EXPECT_TRUE(callbacks->waitForIdle());
|
|
EXPECT_FALSE(callbacks->hadError());
|
|
|
|
// Can we do it again?
|
|
lastFrameNumberPrev = info.mLastFrameNumber;
|
|
lastFrameNumber = 0;
|
|
requestTemplate.clear();
|
|
res = device->createDefaultRequest(hardware::camera2::ICameraDeviceUser::TEMPLATE_PREVIEW,
|
|
/*out*/&requestTemplate);
|
|
EXPECT_TRUE(res.isOk()) << res;
|
|
hardware::camera2::CaptureRequest request2;
|
|
request2.mPhysicalCameraSettings.push_back({cameraId8.string(), requestTemplate});
|
|
request2.mSurfaceList.add(surface);
|
|
request2.mIsReprocess = false;
|
|
callbacks->clearStatus();
|
|
hardware::camera2::utils::SubmitInfo info2;
|
|
res = device->submitRequest(request2, /*streaming*/true,
|
|
/*out*/&info2);
|
|
EXPECT_TRUE(res.isOk()) << res;
|
|
EXPECT_EQ(hardware::camera2::ICameraDeviceUser::NO_IN_FLIGHT_REPEATING_FRAMES,
|
|
info2.mLastFrameNumber);
|
|
lastFrameNumber = 0;
|
|
EXPECT_TRUE(callbacks->waitForStatus(TestCameraDeviceCallbacks::SENT_RESULT));
|
|
EXPECT_LE(0, info2.mRequestId);
|
|
res = device->cancelRequest(info2.mRequestId, /*out*/&lastFrameNumber);
|
|
EXPECT_TRUE(res.isOk()) << res;
|
|
EXPECT_TRUE(callbacks->waitForIdle());
|
|
EXPECT_LE(lastFrameNumberPrev, lastFrameNumber);
|
|
sleep(/*second*/1); // allow some time for errors to show up, if any
|
|
EXPECT_FALSE(callbacks->hadError());
|
|
|
|
// Can we do it with a request list?
|
|
lastFrameNumberPrev = lastFrameNumber;
|
|
lastFrameNumber = 0;
|
|
requestTemplate.clear();
|
|
CameraMetadata requestTemplate2;
|
|
res = device->createDefaultRequest(hardware::camera2::ICameraDeviceUser::TEMPLATE_PREVIEW,
|
|
/*out*/&requestTemplate);
|
|
EXPECT_TRUE(res.isOk()) << res;
|
|
res = device->createDefaultRequest(hardware::camera2::ICameraDeviceUser::TEMPLATE_PREVIEW,
|
|
/*out*/&requestTemplate2);
|
|
EXPECT_TRUE(res.isOk()) << res;
|
|
android::hardware::camera2::CaptureRequest request3;
|
|
android::hardware::camera2::CaptureRequest request4;
|
|
request3.mPhysicalCameraSettings.push_back({cameraId8.string(), requestTemplate});
|
|
request3.mSurfaceList.add(surface);
|
|
request3.mIsReprocess = false;
|
|
request4.mPhysicalCameraSettings.push_back({cameraId8.string(), requestTemplate2});
|
|
request4.mSurfaceList.add(surface);
|
|
request4.mIsReprocess = false;
|
|
std::vector<hardware::camera2::CaptureRequest> requestList;
|
|
requestList.push_back(request3);
|
|
requestList.push_back(request4);
|
|
|
|
callbacks->clearStatus();
|
|
hardware::camera2::utils::SubmitInfo info3;
|
|
res = device->submitRequestList(requestList, /*streaming*/false,
|
|
/*out*/&info3);
|
|
EXPECT_TRUE(res.isOk()) << res;
|
|
EXPECT_LE(0, info3.mRequestId);
|
|
EXPECT_TRUE(callbacks->waitForStatus(TestCameraDeviceCallbacks::SENT_RESULT));
|
|
EXPECT_TRUE(callbacks->waitForIdle());
|
|
EXPECT_LE(lastFrameNumberPrev, info3.mLastFrameNumber);
|
|
sleep(/*second*/1); // allow some time for errors to show up, if any
|
|
EXPECT_FALSE(callbacks->hadError());
|
|
|
|
// Can we unconfigure?
|
|
res = device->beginConfigure();
|
|
EXPECT_TRUE(res.isOk()) << res;
|
|
res = device->deleteStream(streamId);
|
|
EXPECT_TRUE(res.isOk()) << res;
|
|
res = device->endConfigure(/*isConstrainedHighSpeed*/ false, sessionParams,
|
|
ns2ms(systemTime()), &offlineStreamIds);
|
|
EXPECT_TRUE(res.isOk()) << res;
|
|
|
|
sleep(/*second*/1); // allow some time for errors to show up, if any
|
|
EXPECT_FALSE(callbacks->hadError());
|
|
|
|
closeDevice(p);
|
|
}
|
|
|
|
};
|
|
|
|
TEST_F(CameraClientBinderTest, CheckBinderCaptureRequest) {
|
|
sp<CaptureRequest> requestOriginal, requestParceled;
|
|
sp<IGraphicBufferProducer> gbProducer;
|
|
sp<IGraphicBufferConsumer> gbConsumer;
|
|
BufferQueue::createBufferQueue(&gbProducer, &gbConsumer);
|
|
sp<Surface> surface(new Surface(gbProducer, /*controlledByApp*/false));
|
|
Vector<sp<Surface>> surfaceList;
|
|
surfaceList.push_back(surface);
|
|
std::string physicalDeviceId1 = "0";
|
|
std::string physicalDeviceId2 = "1";
|
|
CameraMetadata physicalDeviceSettings1, physicalDeviceSettings2;
|
|
uint8_t intent1 = ANDROID_CONTROL_CAPTURE_INTENT_PREVIEW;
|
|
uint8_t intent2 = ANDROID_CONTROL_CAPTURE_INTENT_VIDEO_RECORD;
|
|
EXPECT_EQ(OK, physicalDeviceSettings1.update(ANDROID_CONTROL_CAPTURE_INTENT, &intent1, 1));
|
|
EXPECT_EQ(OK, physicalDeviceSettings2.update(ANDROID_CONTROL_CAPTURE_INTENT, &intent2, 1));
|
|
|
|
requestParceled = new CaptureRequest();
|
|
Parcel p;
|
|
EXPECT_TRUE(requestParceled->readFromParcel(&p) != OK);
|
|
p.writeInt32(0);
|
|
p.setDataPosition(0);
|
|
EXPECT_TRUE(requestParceled->readFromParcel(&p) != OK);
|
|
p.freeData();
|
|
p.writeInt32(-1);
|
|
p.setDataPosition(0);
|
|
EXPECT_TRUE(requestParceled->readFromParcel(&p) != OK);
|
|
p.freeData();
|
|
p.writeInt32(1);
|
|
p.setDataPosition(0);
|
|
EXPECT_TRUE(requestParceled->readFromParcel(&p) != OK);
|
|
|
|
requestOriginal = new CaptureRequest();
|
|
requestOriginal->mPhysicalCameraSettings.push_back({physicalDeviceId1,
|
|
physicalDeviceSettings1});
|
|
requestOriginal->mPhysicalCameraSettings.push_back({physicalDeviceId2,
|
|
physicalDeviceSettings2});
|
|
requestOriginal->mSurfaceList.push_back(surface);
|
|
requestOriginal->mIsReprocess = false;
|
|
requestOriginal->mSurfaceConverted = false;
|
|
|
|
p.freeData();
|
|
EXPECT_TRUE(requestOriginal->writeToParcel(&p) == OK);
|
|
p.setDataPosition(0);
|
|
EXPECT_TRUE(requestParceled->readFromParcel(&p) == OK);
|
|
EXPECT_EQ(requestParceled->mIsReprocess, false);
|
|
EXPECT_FALSE(requestParceled->mSurfaceList.empty());
|
|
EXPECT_EQ(2u, requestParceled->mPhysicalCameraSettings.size());
|
|
auto it = requestParceled->mPhysicalCameraSettings.begin();
|
|
EXPECT_EQ(physicalDeviceId1, it->id);
|
|
EXPECT_TRUE(it->settings.exists(ANDROID_CONTROL_CAPTURE_INTENT));
|
|
auto entry = it->settings.find(ANDROID_CONTROL_CAPTURE_INTENT);
|
|
EXPECT_EQ(entry.data.u8[0], intent1);
|
|
it++;
|
|
EXPECT_EQ(physicalDeviceId2, it->id);
|
|
EXPECT_TRUE(it->settings.exists(ANDROID_CONTROL_CAPTURE_INTENT));
|
|
entry = it->settings.find(ANDROID_CONTROL_CAPTURE_INTENT);
|
|
EXPECT_EQ(entry.data.u8[0], intent2);
|
|
};
|