CameraService.cpp revision a6b3ed1b8ee37fe244dfbcbe3dbeda66b55c846d
1/*
2 * Copyright (C) 2008 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 *      http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#define LOG_TAG "CameraService"
18#define ATRACE_TAG ATRACE_TAG_CAMERA
19//#define LOG_NDEBUG 0
20
21#include <algorithm>
22#include <climits>
23#include <stdio.h>
24#include <cstring>
25#include <ctime>
26#include <string>
27#include <sys/types.h>
28#include <inttypes.h>
29#include <pthread.h>
30
31#include <binder/AppOpsManager.h>
32#include <binder/IPCThreadState.h>
33#include <binder/IServiceManager.h>
34#include <binder/MemoryBase.h>
35#include <binder/MemoryHeapBase.h>
36#include <binder/ProcessInfoService.h>
37#include <cutils/atomic.h>
38#include <cutils/properties.h>
39#include <gui/Surface.h>
40#include <hardware/hardware.h>
41#include <media/AudioSystem.h>
42#include <media/IMediaHTTPService.h>
43#include <media/mediaplayer.h>
44#include <mediautils/BatteryNotifier.h>
45#include <utils/Errors.h>
46#include <utils/Log.h>
47#include <utils/String16.h>
48#include <utils/Trace.h>
49#include <system/camera_vendor_tags.h>
50#include <system/camera_metadata.h>
51#include <system/camera.h>
52
53#include "CameraService.h"
54#include "api1/CameraClient.h"
55#include "api1/Camera2Client.h"
56#include "api2/CameraDeviceClient.h"
57#include "utils/CameraTraces.h"
58
59namespace android {
60
61// ----------------------------------------------------------------------------
62// Logging support -- this is for debugging only
63// Use "adb shell dumpsys media.camera -v 1" to change it.
64volatile int32_t gLogLevel = 0;
65
66#define LOG1(...) ALOGD_IF(gLogLevel >= 1, __VA_ARGS__);
67#define LOG2(...) ALOGD_IF(gLogLevel >= 2, __VA_ARGS__);
68
69static void setLogLevel(int level) {
70    android_atomic_write(level, &gLogLevel);
71}
72
73// ----------------------------------------------------------------------------
74
75extern "C" {
76static void camera_device_status_change(
77        const struct camera_module_callbacks* callbacks,
78        int camera_id,
79        int new_status) {
80    sp<CameraService> cs = const_cast<CameraService*>(
81            static_cast<const CameraService*>(callbacks));
82
83    cs->onDeviceStatusChanged(static_cast<camera_device_status_t>(camera_id),
84            static_cast<camera_device_status_t>(new_status));
85}
86
87static void torch_mode_status_change(
88        const struct camera_module_callbacks* callbacks,
89        const char* camera_id,
90        int new_status) {
91    if (!callbacks || !camera_id) {
92        ALOGE("%s invalid parameters. callbacks %p, camera_id %p", __FUNCTION__,
93                callbacks, camera_id);
94    }
95    sp<CameraService> cs = const_cast<CameraService*>(
96                                static_cast<const CameraService*>(callbacks));
97
98    ICameraServiceListener::TorchStatus status;
99    switch (new_status) {
100        case TORCH_MODE_STATUS_NOT_AVAILABLE:
101            status = ICameraServiceListener::TORCH_STATUS_NOT_AVAILABLE;
102            break;
103        case TORCH_MODE_STATUS_AVAILABLE_OFF:
104            status = ICameraServiceListener::TORCH_STATUS_AVAILABLE_OFF;
105            break;
106        case TORCH_MODE_STATUS_AVAILABLE_ON:
107            status = ICameraServiceListener::TORCH_STATUS_AVAILABLE_ON;
108            break;
109        default:
110            ALOGE("Unknown torch status %d", new_status);
111            return;
112    }
113
114    cs->onTorchStatusChanged(
115        String8(camera_id),
116        status);
117}
118} // extern "C"
119
120// ----------------------------------------------------------------------------
121
122// This is ugly and only safe if we never re-create the CameraService, but
123// should be ok for now.
124static CameraService *gCameraService;
125
126CameraService::CameraService() : mEventLog(DEFAULT_EVENT_LOG_LENGTH), mAllowedUsers(),
127        mSoundRef(0), mModule(0), mFlashlight(0) {
128    ALOGI("CameraService started (pid=%d)", getpid());
129    gCameraService = this;
130
131    this->camera_device_status_change = android::camera_device_status_change;
132    this->torch_mode_status_change = android::torch_mode_status_change;
133
134    mServiceLockWrapper = std::make_shared<WaitableMutexWrapper>(&mServiceLock);
135}
136
137void CameraService::onFirstRef()
138{
139    ALOGI("CameraService process starting");
140
141    BnCameraService::onFirstRef();
142
143    // Update battery life tracking if service is restarting
144    BatteryNotifier& notifier(BatteryNotifier::getInstance());
145    notifier.noteResetCamera();
146    notifier.noteResetFlashlight();
147
148    camera_module_t *rawModule;
149    int err = hw_get_module(CAMERA_HARDWARE_MODULE_ID,
150            (const hw_module_t **)&rawModule);
151    if (err < 0) {
152        ALOGE("Could not load camera HAL module: %d (%s)", err, strerror(-err));
153        logServiceError("Could not load camera HAL module", err);
154        mNumberOfCameras = 0;
155        mNumberOfNormalCameras = 0;
156        return;
157    }
158
159    mModule = new CameraModule(rawModule);
160    err = mModule->init();
161    if (err != OK) {
162        ALOGE("Could not initialize camera HAL module: %d (%s)", err,
163            strerror(-err));
164        logServiceError("Could not initialize camera HAL module", err);
165
166        mNumberOfCameras = 0;
167        delete mModule;
168        mModule = nullptr;
169        return;
170    }
171    ALOGI("Loaded \"%s\" camera module", mModule->getModuleName());
172
173    mNumberOfCameras = mModule->getNumberOfCameras();
174    mNumberOfNormalCameras = mNumberOfCameras;
175
176    // Setup vendor tags before we call get_camera_info the first time
177    // because HAL might need to setup static vendor keys in get_camera_info
178    VendorTagDescriptor::clearGlobalVendorTagDescriptor();
179    if (mModule->getModuleApiVersion() >= CAMERA_MODULE_API_VERSION_2_2) {
180        setUpVendorTags();
181    }
182
183    mFlashlight = new CameraFlashlight(*mModule, *this);
184    status_t res = mFlashlight->findFlashUnits();
185    if (res) {
186        // impossible because we haven't open any camera devices.
187        ALOGE("Failed to find flash units.");
188    }
189
190    int latestStrangeCameraId = INT_MAX;
191    for (int i = 0; i < mNumberOfCameras; i++) {
192        String8 cameraId = String8::format("%d", i);
193
194        // Get camera info
195
196        struct camera_info info;
197        bool haveInfo = true;
198        status_t rc = mModule->getCameraInfo(i, &info);
199        if (rc != NO_ERROR) {
200            ALOGE("%s: Received error loading camera info for device %d, cost and"
201                    " conflicting devices fields set to defaults for this device.",
202                    __FUNCTION__, i);
203            haveInfo = false;
204        }
205
206        // Check for backwards-compatibility support
207        if (haveInfo) {
208            if (checkCameraCapabilities(i, info, &latestStrangeCameraId) != OK) {
209                delete mModule;
210                mModule = nullptr;
211                return;
212            }
213        }
214
215        // Defaults to use for cost and conflicting devices
216        int cost = 100;
217        char** conflicting_devices = nullptr;
218        size_t conflicting_devices_length = 0;
219
220        // If using post-2.4 module version, query the cost + conflicting devices from the HAL
221        if (mModule->getModuleApiVersion() >= CAMERA_MODULE_API_VERSION_2_4 && haveInfo) {
222            cost = info.resource_cost;
223            conflicting_devices = info.conflicting_devices;
224            conflicting_devices_length = info.conflicting_devices_length;
225        }
226
227        std::set<String8> conflicting;
228        for (size_t i = 0; i < conflicting_devices_length; i++) {
229            conflicting.emplace(String8(conflicting_devices[i]));
230        }
231
232        // Initialize state for each camera device
233        {
234            Mutex::Autolock lock(mCameraStatesLock);
235            mCameraStates.emplace(cameraId, std::make_shared<CameraState>(cameraId, cost,
236                    conflicting));
237        }
238
239        if (mFlashlight->hasFlashUnit(cameraId)) {
240            mTorchStatusMap.add(cameraId,
241                    ICameraServiceListener::TORCH_STATUS_AVAILABLE_OFF);
242        }
243    }
244
245    if (mModule->getModuleApiVersion() >= CAMERA_MODULE_API_VERSION_2_1) {
246        mModule->setCallbacks(this);
247    }
248
249    CameraService::pingCameraServiceProxy();
250}
251
252sp<ICameraServiceProxy> CameraService::getCameraServiceProxy() {
253    sp<IServiceManager> sm = defaultServiceManager();
254    sp<IBinder> binder = sm->getService(String16("media.camera.proxy"));
255    if (binder == nullptr) {
256        return nullptr;
257    }
258    sp<ICameraServiceProxy> proxyBinder = interface_cast<ICameraServiceProxy>(binder);
259    return proxyBinder;
260}
261
262void CameraService::pingCameraServiceProxy() {
263    sp<ICameraServiceProxy> proxyBinder = getCameraServiceProxy();
264    if (proxyBinder == nullptr) return;
265    proxyBinder->pingForUserUpdate();
266}
267
268CameraService::~CameraService() {
269    if (mModule) {
270        delete mModule;
271        mModule = nullptr;
272    }
273    VendorTagDescriptor::clearGlobalVendorTagDescriptor();
274    gCameraService = nullptr;
275}
276
277void CameraService::onDeviceStatusChanged(camera_device_status_t  cameraId,
278        camera_device_status_t newStatus) {
279    ALOGI("%s: Status changed for cameraId=%d, newStatus=%d", __FUNCTION__,
280          cameraId, newStatus);
281
282    String8 id = String8::format("%d", cameraId);
283    std::shared_ptr<CameraState> state = getCameraState(id);
284
285    if (state == nullptr) {
286        ALOGE("%s: Bad camera ID %d", __FUNCTION__, cameraId);
287        return;
288    }
289
290    ICameraServiceListener::Status oldStatus = state->getStatus();
291
292    if (oldStatus == static_cast<ICameraServiceListener::Status>(newStatus)) {
293        ALOGE("%s: State transition to the same status %#x not allowed", __FUNCTION__, newStatus);
294        return;
295    }
296
297    if (newStatus == CAMERA_DEVICE_STATUS_NOT_PRESENT) {
298        logDeviceRemoved(id, String8::format("Device status changed from %d to %d", oldStatus,
299                newStatus));
300        sp<BasicClient> clientToDisconnect;
301        {
302            // Don't do this in updateStatus to avoid deadlock over mServiceLock
303            Mutex::Autolock lock(mServiceLock);
304
305            // Set the device status to NOT_PRESENT, clients will no longer be able to connect
306            // to this device until the status changes
307            updateStatus(ICameraServiceListener::STATUS_NOT_PRESENT, id);
308
309            // Remove cached shim parameters
310            state->setShimParams(CameraParameters());
311
312            // Remove the client from the list of active clients
313            clientToDisconnect = removeClientLocked(id);
314
315            // Notify the client of disconnection
316            clientToDisconnect->notifyError(ICameraDeviceCallbacks::ERROR_CAMERA_DISCONNECTED,
317                    CaptureResultExtras{});
318        }
319
320        ALOGI("%s: Client for camera ID %s evicted due to device status change from HAL",
321                __FUNCTION__, id.string());
322
323        // Disconnect client
324        if (clientToDisconnect.get() != nullptr) {
325            // Ensure not in binder RPC so client disconnect PID checks work correctly
326            LOG_ALWAYS_FATAL_IF(getCallingPid() != getpid(),
327                    "onDeviceStatusChanged must be called from the camera service process!");
328            clientToDisconnect->disconnect();
329        }
330
331    } else {
332        if (oldStatus == ICameraServiceListener::Status::STATUS_NOT_PRESENT) {
333            logDeviceAdded(id, String8::format("Device status changed from %d to %d", oldStatus,
334                    newStatus));
335        }
336        updateStatus(static_cast<ICameraServiceListener::Status>(newStatus), id);
337    }
338
339}
340
341void CameraService::onTorchStatusChanged(const String8& cameraId,
342        ICameraServiceListener::TorchStatus newStatus) {
343    Mutex::Autolock al(mTorchStatusMutex);
344    onTorchStatusChangedLocked(cameraId, newStatus);
345}
346
347void CameraService::onTorchStatusChangedLocked(const String8& cameraId,
348        ICameraServiceListener::TorchStatus newStatus) {
349    ALOGI("%s: Torch status changed for cameraId=%s, newStatus=%d",
350            __FUNCTION__, cameraId.string(), newStatus);
351
352    ICameraServiceListener::TorchStatus status;
353    status_t res = getTorchStatusLocked(cameraId, &status);
354    if (res) {
355        ALOGE("%s: cannot get torch status of camera %s: %s (%d)",
356                __FUNCTION__, cameraId.string(), strerror(-res), res);
357        return;
358    }
359    if (status == newStatus) {
360        return;
361    }
362
363    res = setTorchStatusLocked(cameraId, newStatus);
364    if (res) {
365        ALOGE("%s: Failed to set the torch status to %d: %s (%d)", __FUNCTION__,
366                (uint32_t)newStatus, strerror(-res), res);
367        return;
368    }
369
370    {
371        // Update battery life logging for flashlight
372        Mutex::Autolock al(mTorchUidMapMutex);
373        auto iter = mTorchUidMap.find(cameraId);
374        if (iter != mTorchUidMap.end()) {
375            int oldUid = iter->second.second;
376            int newUid = iter->second.first;
377            BatteryNotifier& notifier(BatteryNotifier::getInstance());
378            if (oldUid != newUid) {
379                // If the UID has changed, log the status and update current UID in mTorchUidMap
380                if (status == ICameraServiceListener::TORCH_STATUS_AVAILABLE_ON) {
381                    notifier.noteFlashlightOff(cameraId, oldUid);
382                }
383                if (newStatus == ICameraServiceListener::TORCH_STATUS_AVAILABLE_ON) {
384                    notifier.noteFlashlightOn(cameraId, newUid);
385                }
386                iter->second.second = newUid;
387            } else {
388                // If the UID has not changed, log the status
389                if (newStatus == ICameraServiceListener::TORCH_STATUS_AVAILABLE_ON) {
390                    notifier.noteFlashlightOn(cameraId, oldUid);
391                } else {
392                    notifier.noteFlashlightOff(cameraId, oldUid);
393                }
394            }
395        }
396    }
397
398    {
399        Mutex::Autolock lock(mStatusListenerLock);
400        for (auto& i : mListenerList) {
401            i->onTorchStatusChanged(newStatus, String16{cameraId});
402        }
403    }
404}
405
406int32_t CameraService::getNumberOfCameras() {
407    ATRACE_CALL();
408    return getNumberOfCameras(CAMERA_TYPE_BACKWARD_COMPATIBLE);
409}
410
411int32_t CameraService::getNumberOfCameras(int type) {
412    ATRACE_CALL();
413    switch (type) {
414        case CAMERA_TYPE_BACKWARD_COMPATIBLE:
415            return mNumberOfNormalCameras;
416        case CAMERA_TYPE_ALL:
417            return mNumberOfCameras;
418        default:
419            ALOGW("%s: Unknown camera type %d, returning 0",
420                    __FUNCTION__, type);
421            return 0;
422    }
423}
424
425status_t CameraService::getCameraInfo(int cameraId,
426                                      struct CameraInfo* cameraInfo) {
427    ATRACE_CALL();
428    if (!mModule) {
429        return -ENODEV;
430    }
431
432    if (cameraId < 0 || cameraId >= mNumberOfCameras) {
433        return BAD_VALUE;
434    }
435
436    struct camera_info info;
437    status_t rc = filterGetInfoErrorCode(
438        mModule->getCameraInfo(cameraId, &info));
439    cameraInfo->facing = info.facing;
440    cameraInfo->orientation = info.orientation;
441    return rc;
442}
443
444int CameraService::cameraIdToInt(const String8& cameraId) {
445    errno = 0;
446    size_t pos = 0;
447    int ret = stoi(std::string{cameraId.string()}, &pos);
448    if (errno != 0 || pos != cameraId.size()) {
449        return -1;
450    }
451    return ret;
452}
453
454status_t CameraService::generateShimMetadata(int cameraId, /*out*/CameraMetadata* cameraInfo) {
455    ATRACE_CALL();
456    status_t ret = OK;
457    struct CameraInfo info;
458    if ((ret = getCameraInfo(cameraId, &info)) != OK) {
459        return ret;
460    }
461
462    CameraMetadata shimInfo;
463    int32_t orientation = static_cast<int32_t>(info.orientation);
464    if ((ret = shimInfo.update(ANDROID_SENSOR_ORIENTATION, &orientation, 1)) != OK) {
465        return ret;
466    }
467
468    uint8_t facing = (info.facing == CAMERA_FACING_FRONT) ?
469            ANDROID_LENS_FACING_FRONT : ANDROID_LENS_FACING_BACK;
470    if ((ret = shimInfo.update(ANDROID_LENS_FACING, &facing, 1)) != OK) {
471        return ret;
472    }
473
474    CameraParameters shimParams;
475    if ((ret = getLegacyParametersLazy(cameraId, /*out*/&shimParams)) != OK) {
476        // Error logged by callee
477        return ret;
478    }
479
480    Vector<Size> sizes;
481    Vector<Size> jpegSizes;
482    Vector<int32_t> formats;
483    {
484        shimParams.getSupportedPreviewSizes(/*out*/sizes);
485        shimParams.getSupportedPreviewFormats(/*out*/formats);
486        shimParams.getSupportedPictureSizes(/*out*/jpegSizes);
487    }
488
489    // Always include IMPLEMENTATION_DEFINED
490    formats.add(HAL_PIXEL_FORMAT_IMPLEMENTATION_DEFINED);
491
492    const size_t INTS_PER_CONFIG = 4;
493
494    // Build available stream configurations metadata
495    size_t streamConfigSize = (sizes.size() * formats.size() + jpegSizes.size()) * INTS_PER_CONFIG;
496
497    Vector<int32_t> streamConfigs;
498    streamConfigs.setCapacity(streamConfigSize);
499
500    for (size_t i = 0; i < formats.size(); ++i) {
501        for (size_t j = 0; j < sizes.size(); ++j) {
502            streamConfigs.add(formats[i]);
503            streamConfigs.add(sizes[j].width);
504            streamConfigs.add(sizes[j].height);
505            streamConfigs.add(ANDROID_SCALER_AVAILABLE_STREAM_CONFIGURATIONS_OUTPUT);
506        }
507    }
508
509    for (size_t i = 0; i < jpegSizes.size(); ++i) {
510        streamConfigs.add(HAL_PIXEL_FORMAT_BLOB);
511        streamConfigs.add(jpegSizes[i].width);
512        streamConfigs.add(jpegSizes[i].height);
513        streamConfigs.add(ANDROID_SCALER_AVAILABLE_STREAM_CONFIGURATIONS_OUTPUT);
514    }
515
516    if ((ret = shimInfo.update(ANDROID_SCALER_AVAILABLE_STREAM_CONFIGURATIONS,
517            streamConfigs.array(), streamConfigSize)) != OK) {
518        return ret;
519    }
520
521    int64_t fakeMinFrames[0];
522    // TODO: Fixme, don't fake min frame durations.
523    if ((ret = shimInfo.update(ANDROID_SCALER_AVAILABLE_MIN_FRAME_DURATIONS,
524            fakeMinFrames, 0)) != OK) {
525        return ret;
526    }
527
528    int64_t fakeStalls[0];
529    // TODO: Fixme, don't fake stall durations.
530    if ((ret = shimInfo.update(ANDROID_SCALER_AVAILABLE_STALL_DURATIONS,
531            fakeStalls, 0)) != OK) {
532        return ret;
533    }
534
535    *cameraInfo = shimInfo;
536    return OK;
537}
538
539status_t CameraService::getCameraCharacteristics(int cameraId,
540                                                CameraMetadata* cameraInfo) {
541    ATRACE_CALL();
542    if (!cameraInfo) {
543        ALOGE("%s: cameraInfo is NULL", __FUNCTION__);
544        return BAD_VALUE;
545    }
546
547    if (!mModule) {
548        ALOGE("%s: camera hardware module doesn't exist", __FUNCTION__);
549        return -ENODEV;
550    }
551
552    if (cameraId < 0 || cameraId >= mNumberOfCameras) {
553        ALOGE("%s: Invalid camera id: %d", __FUNCTION__, cameraId);
554        return BAD_VALUE;
555    }
556
557    int facing;
558    status_t ret = OK;
559    if (mModule->getModuleApiVersion() < CAMERA_MODULE_API_VERSION_2_0 ||
560            getDeviceVersion(cameraId, &facing) < CAMERA_DEVICE_API_VERSION_3_0) {
561        /**
562         * Backwards compatibility mode for old HALs:
563         * - Convert CameraInfo into static CameraMetadata properties.
564         * - Retrieve cached CameraParameters for this camera.  If none exist,
565         *   attempt to open CameraClient and retrieve the CameraParameters.
566         * - Convert cached CameraParameters into static CameraMetadata
567         *   properties.
568         */
569        ALOGI("%s: Switching to HAL1 shim implementation...", __FUNCTION__);
570
571        if ((ret = generateShimMetadata(cameraId, cameraInfo)) != OK) {
572            return ret;
573        }
574
575    } else {
576        /**
577         * Normal HAL 2.1+ codepath.
578         */
579        struct camera_info info;
580        ret = filterGetInfoErrorCode(mModule->getCameraInfo(cameraId, &info));
581        *cameraInfo = info.static_camera_characteristics;
582    }
583
584    return ret;
585}
586
587int CameraService::getCallingPid() {
588    return IPCThreadState::self()->getCallingPid();
589}
590
591int CameraService::getCallingUid() {
592    return IPCThreadState::self()->getCallingUid();
593}
594
595String8 CameraService::getFormattedCurrentTime() {
596    time_t now = time(nullptr);
597    char formattedTime[64];
598    strftime(formattedTime, sizeof(formattedTime), "%m-%d %H:%M:%S", localtime(&now));
599    return String8(formattedTime);
600}
601
602int CameraService::getCameraPriorityFromProcState(int procState) {
603    // Find the priority for the camera usage based on the process state.  Higher priority clients
604    // win for evictions.
605    if (procState < 0) {
606        ALOGE("%s: Received invalid process state %d from ActivityManagerService!", __FUNCTION__,
607                procState);
608        return -1;
609    }
610    // Treat sleeping TOP processes the same as regular TOP processes, for
611    // access priority.  This is important for lock-screen camera launch scenarios
612    if (procState == PROCESS_STATE_TOP_SLEEPING) {
613        procState = PROCESS_STATE_TOP;
614    }
615    return INT_MAX - procState;
616}
617
618status_t CameraService::getCameraVendorTagDescriptor(/*out*/sp<VendorTagDescriptor>& desc) {
619    ATRACE_CALL();
620    if (!mModule) {
621        ALOGE("%s: camera hardware module doesn't exist", __FUNCTION__);
622        return -ENODEV;
623    }
624
625    desc = VendorTagDescriptor::getGlobalVendorTagDescriptor();
626    return OK;
627}
628
629int CameraService::getDeviceVersion(int cameraId, int* facing) {
630    ATRACE_CALL();
631    struct camera_info info;
632    if (mModule->getCameraInfo(cameraId, &info) != OK) {
633        return -1;
634    }
635
636    int deviceVersion;
637    if (mModule->getModuleApiVersion() >= CAMERA_MODULE_API_VERSION_2_0) {
638        deviceVersion = info.device_version;
639    } else {
640        deviceVersion = CAMERA_DEVICE_API_VERSION_1_0;
641    }
642
643    if (facing) {
644        *facing = info.facing;
645    }
646
647    return deviceVersion;
648}
649
650status_t CameraService::filterGetInfoErrorCode(status_t err) {
651    switch(err) {
652        case NO_ERROR:
653        case -EINVAL:
654            return err;
655        default:
656            break;
657    }
658    return -ENODEV;
659}
660
661bool CameraService::setUpVendorTags() {
662    ATRACE_CALL();
663    vendor_tag_ops_t vOps = vendor_tag_ops_t();
664
665    // Check if vendor operations have been implemented
666    if (!mModule->isVendorTagDefined()) {
667        ALOGI("%s: No vendor tags defined for this device.", __FUNCTION__);
668        return false;
669    }
670
671    mModule->getVendorTagOps(&vOps);
672
673    // Ensure all vendor operations are present
674    if (vOps.get_tag_count == NULL || vOps.get_all_tags == NULL ||
675            vOps.get_section_name == NULL || vOps.get_tag_name == NULL ||
676            vOps.get_tag_type == NULL) {
677        ALOGE("%s: Vendor tag operations not fully defined. Ignoring definitions."
678               , __FUNCTION__);
679        return false;
680    }
681
682    // Read all vendor tag definitions into a descriptor
683    sp<VendorTagDescriptor> desc;
684    status_t res;
685    if ((res = VendorTagDescriptor::createDescriptorFromOps(&vOps, /*out*/desc))
686            != OK) {
687        ALOGE("%s: Could not generate descriptor from vendor tag operations,"
688              "received error %s (%d). Camera clients will not be able to use"
689              "vendor tags", __FUNCTION__, strerror(res), res);
690        return false;
691    }
692
693    // Set the global descriptor to use with camera metadata
694    VendorTagDescriptor::setAsGlobalVendorTagDescriptor(desc);
695    return true;
696}
697
698status_t CameraService::makeClient(const sp<CameraService>& cameraService,
699        const sp<IInterface>& cameraCb, const String16& packageName, const String8& cameraId,
700        int facing, int clientPid, uid_t clientUid, int servicePid, bool legacyMode,
701        int halVersion, int deviceVersion, apiLevel effectiveApiLevel,
702        /*out*/sp<BasicClient>* client) {
703
704    // TODO: Update CameraClients + HAL interface to use strings for Camera IDs
705    int id = cameraIdToInt(cameraId);
706    if (id == -1) {
707        ALOGE("%s: Invalid camera ID %s, cannot convert to integer.", __FUNCTION__,
708                cameraId.string());
709        return BAD_VALUE;
710    }
711
712    if (halVersion < 0 || halVersion == deviceVersion) {
713        // Default path: HAL version is unspecified by caller, create CameraClient
714        // based on device version reported by the HAL.
715        switch(deviceVersion) {
716          case CAMERA_DEVICE_API_VERSION_1_0:
717            if (effectiveApiLevel == API_1) {  // Camera1 API route
718                sp<ICameraClient> tmp = static_cast<ICameraClient*>(cameraCb.get());
719                *client = new CameraClient(cameraService, tmp, packageName, id, facing,
720                        clientPid, clientUid, getpid(), legacyMode);
721            } else { // Camera2 API route
722                ALOGW("Camera using old HAL version: %d", deviceVersion);
723                return -EOPNOTSUPP;
724            }
725            break;
726          case CAMERA_DEVICE_API_VERSION_3_0:
727          case CAMERA_DEVICE_API_VERSION_3_1:
728          case CAMERA_DEVICE_API_VERSION_3_2:
729          case CAMERA_DEVICE_API_VERSION_3_3:
730            if (effectiveApiLevel == API_1) { // Camera1 API route
731                sp<ICameraClient> tmp = static_cast<ICameraClient*>(cameraCb.get());
732                *client = new Camera2Client(cameraService, tmp, packageName, id, facing,
733                        clientPid, clientUid, servicePid, legacyMode);
734            } else { // Camera2 API route
735                sp<ICameraDeviceCallbacks> tmp =
736                        static_cast<ICameraDeviceCallbacks*>(cameraCb.get());
737                *client = new CameraDeviceClient(cameraService, tmp, packageName, id,
738                        facing, clientPid, clientUid, servicePid);
739            }
740            break;
741          default:
742            // Should not be reachable
743            ALOGE("Unknown camera device HAL version: %d", deviceVersion);
744            return INVALID_OPERATION;
745        }
746    } else {
747        // A particular HAL version is requested by caller. Create CameraClient
748        // based on the requested HAL version.
749        if (deviceVersion > CAMERA_DEVICE_API_VERSION_1_0 &&
750            halVersion == CAMERA_DEVICE_API_VERSION_1_0) {
751            // Only support higher HAL version device opened as HAL1.0 device.
752            sp<ICameraClient> tmp = static_cast<ICameraClient*>(cameraCb.get());
753            *client = new CameraClient(cameraService, tmp, packageName, id, facing,
754                    clientPid, clientUid, servicePid, legacyMode);
755        } else {
756            // Other combinations (e.g. HAL3.x open as HAL2.x) are not supported yet.
757            ALOGE("Invalid camera HAL version %x: HAL %x device can only be"
758                    " opened as HAL %x device", halVersion, deviceVersion,
759                    CAMERA_DEVICE_API_VERSION_1_0);
760            return INVALID_OPERATION;
761        }
762    }
763    return NO_ERROR;
764}
765
766String8 CameraService::toString(std::set<userid_t> intSet) {
767    String8 s("");
768    bool first = true;
769    for (userid_t i : intSet) {
770        if (first) {
771            s.appendFormat("%d", i);
772            first = false;
773        } else {
774            s.appendFormat(", %d", i);
775        }
776    }
777    return s;
778}
779
780status_t CameraService::initializeShimMetadata(int cameraId) {
781    int uid = getCallingUid();
782
783    String16 internalPackageName("media");
784    String8 id = String8::format("%d", cameraId);
785    status_t ret = NO_ERROR;
786    sp<Client> tmp = nullptr;
787    if ((ret = connectHelper<ICameraClient,Client>(sp<ICameraClient>{nullptr}, id,
788            static_cast<int>(CAMERA_HAL_API_VERSION_UNSPECIFIED), internalPackageName, uid, API_1,
789            false, true, tmp)) != NO_ERROR) {
790        ALOGE("%s: Error %d (%s) initializing shim metadata.", __FUNCTION__, ret, strerror(ret));
791        return ret;
792    }
793    return NO_ERROR;
794}
795
796status_t CameraService::getLegacyParametersLazy(int cameraId,
797        /*out*/
798        CameraParameters* parameters) {
799
800    ALOGV("%s: for cameraId: %d", __FUNCTION__, cameraId);
801
802    status_t ret = 0;
803
804    if (parameters == NULL) {
805        ALOGE("%s: parameters must not be null", __FUNCTION__);
806        return BAD_VALUE;
807    }
808
809    String8 id = String8::format("%d", cameraId);
810
811    // Check if we already have parameters
812    {
813        // Scope for service lock
814        Mutex::Autolock lock(mServiceLock);
815        auto cameraState = getCameraState(id);
816        if (cameraState == nullptr) {
817            ALOGE("%s: Invalid camera ID: %s", __FUNCTION__, id.string());
818            return BAD_VALUE;
819        }
820        CameraParameters p = cameraState->getShimParams();
821        if (!p.isEmpty()) {
822            *parameters = p;
823            return NO_ERROR;
824        }
825    }
826
827    int64_t token = IPCThreadState::self()->clearCallingIdentity();
828    ret = initializeShimMetadata(cameraId);
829    IPCThreadState::self()->restoreCallingIdentity(token);
830    if (ret != NO_ERROR) {
831        // Error already logged by callee
832        return ret;
833    }
834
835    // Check for parameters again
836    {
837        // Scope for service lock
838        Mutex::Autolock lock(mServiceLock);
839        auto cameraState = getCameraState(id);
840        if (cameraState == nullptr) {
841            ALOGE("%s: Invalid camera ID: %s", __FUNCTION__, id.string());
842            return BAD_VALUE;
843        }
844        CameraParameters p = cameraState->getShimParams();
845        if (!p.isEmpty()) {
846            *parameters = p;
847            return NO_ERROR;
848        }
849    }
850
851    ALOGE("%s: Parameters were not initialized, or were empty.  Device may not be present.",
852            __FUNCTION__);
853    return INVALID_OPERATION;
854}
855
856status_t CameraService::validateConnectLocked(const String8& cameraId, /*inout*/int& clientUid)
857        const {
858
859    int callingPid = getCallingPid();
860
861    if (clientUid == USE_CALLING_UID) {
862        clientUid = getCallingUid();
863    } else {
864        // We only trust our own process to forward client UIDs
865        if (callingPid != getpid()) {
866            ALOGE("CameraService::connect X (PID %d) rejected (don't trust clientUid %d)",
867                    callingPid, clientUid);
868            return PERMISSION_DENIED;
869        }
870    }
871
872    if (!mModule) {
873        ALOGE("CameraService::connect X (PID %d) rejected (camera HAL module not loaded)",
874                callingPid);
875        return -ENODEV;
876    }
877
878    if (getCameraState(cameraId) == nullptr) {
879        ALOGE("CameraService::connect X (PID %d) rejected (invalid camera ID %s)", callingPid,
880                cameraId.string());
881        return -ENODEV;
882    }
883
884    userid_t clientUserId = multiuser_get_user_id(clientUid);
885
886    // Only allow clients who are being used by the current foreground device user, unless calling
887    // from our own process.
888    if (callingPid != getpid() && (mAllowedUsers.find(clientUserId) == mAllowedUsers.end())) {
889        ALOGE("CameraService::connect X (PID %d) rejected (cannot connect from "
890                "device user %d, currently allowed device users: %s)", callingPid, clientUserId,
891                toString(mAllowedUsers).string());
892        return PERMISSION_DENIED;
893    }
894
895    return checkIfDeviceIsUsable(cameraId);
896}
897
898status_t CameraService::checkIfDeviceIsUsable(const String8& cameraId) const {
899    auto cameraState = getCameraState(cameraId);
900    int callingPid = getCallingPid();
901    if (cameraState == nullptr) {
902        ALOGE("CameraService::connect X (PID %d) rejected (invalid camera ID %s)", callingPid,
903                cameraId.string());
904        return -ENODEV;
905    }
906
907    ICameraServiceListener::Status currentStatus = cameraState->getStatus();
908    if (currentStatus == ICameraServiceListener::STATUS_NOT_PRESENT) {
909        ALOGE("CameraService::connect X (PID %d) rejected (camera %s is not connected)",
910                callingPid, cameraId.string());
911        return -ENODEV;
912    } else if (currentStatus == ICameraServiceListener::STATUS_ENUMERATING) {
913        ALOGE("CameraService::connect X (PID %d) rejected, (camera %s is initializing)",
914                callingPid, cameraId.string());
915        return -EBUSY;
916    }
917
918    return NO_ERROR;
919}
920
921void CameraService::finishConnectLocked(const sp<BasicClient>& client,
922        const CameraService::DescriptorPtr& desc) {
923
924    // Make a descriptor for the incoming client
925    auto clientDescriptor = CameraService::CameraClientManager::makeClientDescriptor(client, desc);
926    auto evicted = mActiveClientManager.addAndEvict(clientDescriptor);
927
928    logConnected(desc->getKey(), static_cast<int>(desc->getOwnerId()),
929            String8(client->getPackageName()));
930
931    if (evicted.size() > 0) {
932        // This should never happen - clients should already have been removed in disconnect
933        for (auto& i : evicted) {
934            ALOGE("%s: Invalid state: Client for camera %s was not removed in disconnect",
935                    __FUNCTION__, i->getKey().string());
936        }
937
938        LOG_ALWAYS_FATAL("%s: Invalid state for CameraService, clients not evicted properly",
939                __FUNCTION__);
940    }
941
942    // And register a death notification for the client callback. Do
943    // this last to avoid Binder policy where a nested Binder
944    // transaction might be pre-empted to service the client death
945    // notification if the client process dies before linkToDeath is
946    // invoked.
947    sp<IBinder> remoteCallback = client->getRemote();
948    if (remoteCallback != nullptr) {
949        remoteCallback->linkToDeath(this);
950    }
951}
952
953status_t CameraService::handleEvictionsLocked(const String8& cameraId, int clientPid,
954        apiLevel effectiveApiLevel, const sp<IBinder>& remoteCallback, const String8& packageName,
955        /*out*/
956        sp<BasicClient>* client,
957        std::shared_ptr<resource_policy::ClientDescriptor<String8, sp<BasicClient>>>* partial) {
958    ATRACE_CALL();
959    status_t ret = NO_ERROR;
960    std::vector<DescriptorPtr> evictedClients;
961    DescriptorPtr clientDescriptor;
962    {
963        if (effectiveApiLevel == API_1) {
964            // If we are using API1, any existing client for this camera ID with the same remote
965            // should be returned rather than evicted to allow MediaRecorder to work properly.
966
967            auto current = mActiveClientManager.get(cameraId);
968            if (current != nullptr) {
969                auto clientSp = current->getValue();
970                if (clientSp.get() != nullptr) { // should never be needed
971                    if (!clientSp->canCastToApiClient(effectiveApiLevel)) {
972                        ALOGW("CameraService connect called from same client, but with a different"
973                                " API level, evicting prior client...");
974                    } else if (clientSp->getRemote() == remoteCallback) {
975                        ALOGI("CameraService::connect X (PID %d) (second call from same"
976                                " app binder, returning the same client)", clientPid);
977                        *client = clientSp;
978                        return NO_ERROR;
979                    }
980                }
981            }
982        }
983
984        // Return error if the device was unplugged or removed by the HAL for some reason
985        if ((ret = checkIfDeviceIsUsable(cameraId)) != NO_ERROR) {
986            return ret;
987        }
988
989        // Get current active client PIDs
990        std::vector<int> ownerPids(mActiveClientManager.getAllOwners());
991        ownerPids.push_back(clientPid);
992
993        // Use the value +PROCESS_STATE_NONEXISTENT, to avoid taking
994        // address of PROCESS_STATE_NONEXISTENT as a reference argument
995        // for the vector constructor. PROCESS_STATE_NONEXISTENT does
996        // not have an out-of-class definition.
997        std::vector<int> priorities(ownerPids.size(), +PROCESS_STATE_NONEXISTENT);
998
999        // Get priorites of all active PIDs
1000        ProcessInfoService::getProcessStatesFromPids(ownerPids.size(), &ownerPids[0],
1001                /*out*/&priorities[0]);
1002
1003        // Update all active clients' priorities
1004        std::map<int,int> pidToPriorityMap;
1005        for (size_t i = 0; i < ownerPids.size() - 1; i++) {
1006            pidToPriorityMap.emplace(ownerPids[i], getCameraPriorityFromProcState(priorities[i]));
1007        }
1008        mActiveClientManager.updatePriorities(pidToPriorityMap);
1009
1010        // Get state for the given cameraId
1011        auto state = getCameraState(cameraId);
1012        if (state == nullptr) {
1013            ALOGE("CameraService::connect X (PID %d) rejected (no camera device with ID %s)",
1014                clientPid, cameraId.string());
1015            return BAD_VALUE;
1016        }
1017
1018        // Make descriptor for incoming client
1019        clientDescriptor = CameraClientManager::makeClientDescriptor(cameraId,
1020                sp<BasicClient>{nullptr}, static_cast<int32_t>(state->getCost()),
1021                state->getConflicting(),
1022                getCameraPriorityFromProcState(priorities[priorities.size() - 1]), clientPid);
1023
1024        // Find clients that would be evicted
1025        auto evicted = mActiveClientManager.wouldEvict(clientDescriptor);
1026
1027        // If the incoming client was 'evicted,' higher priority clients have the camera in the
1028        // background, so we cannot do evictions
1029        if (std::find(evicted.begin(), evicted.end(), clientDescriptor) != evicted.end()) {
1030            ALOGE("CameraService::connect X (PID %d) rejected (existing client(s) with higher"
1031                    " priority).", clientPid);
1032
1033            sp<BasicClient> clientSp = clientDescriptor->getValue();
1034            String8 curTime = getFormattedCurrentTime();
1035            auto incompatibleClients =
1036                    mActiveClientManager.getIncompatibleClients(clientDescriptor);
1037
1038            String8 msg = String8::format("%s : DENIED connect device %s client for package %s "
1039                    "(PID %d, priority %d) due to eviction policy", curTime.string(),
1040                    cameraId.string(), packageName.string(), clientPid,
1041                    getCameraPriorityFromProcState(priorities[priorities.size() - 1]));
1042
1043            for (auto& i : incompatibleClients) {
1044                msg.appendFormat("\n   - Blocked by existing device %s client for package %s"
1045                        "(PID %" PRId32 ", priority %" PRId32 ")", i->getKey().string(),
1046                        String8{i->getValue()->getPackageName()}.string(), i->getOwnerId(),
1047                        i->getPriority());
1048                ALOGE("   Conflicts with: Device %s, client package %s (PID %"
1049                        PRId32 ", priority %" PRId32 ")", i->getKey().string(),
1050                        String8{i->getValue()->getPackageName()}.string(), i->getOwnerId(),
1051                        i->getPriority());
1052            }
1053
1054            // Log the client's attempt
1055            Mutex::Autolock l(mLogLock);
1056            mEventLog.add(msg);
1057
1058            return -EBUSY;
1059        }
1060
1061        for (auto& i : evicted) {
1062            sp<BasicClient> clientSp = i->getValue();
1063            if (clientSp.get() == nullptr) {
1064                ALOGE("%s: Invalid state: Null client in active client list.", __FUNCTION__);
1065
1066                // TODO: Remove this
1067                LOG_ALWAYS_FATAL("%s: Invalid state for CameraService, null client in active list",
1068                        __FUNCTION__);
1069                mActiveClientManager.remove(i);
1070                continue;
1071            }
1072
1073            ALOGE("CameraService::connect evicting conflicting client for camera ID %s",
1074                    i->getKey().string());
1075            evictedClients.push_back(i);
1076
1077            // Log the clients evicted
1078            logEvent(String8::format("EVICT device %s client held by package %s (PID"
1079                    " %" PRId32 ", priority %" PRId32 ")\n   - Evicted by device %s client for"
1080                    " package %s (PID %d, priority %" PRId32 ")",
1081                    i->getKey().string(), String8{clientSp->getPackageName()}.string(),
1082                    i->getOwnerId(), i->getPriority(), cameraId.string(),
1083                    packageName.string(), clientPid,
1084                    getCameraPriorityFromProcState(priorities[priorities.size() - 1])));
1085
1086            // Notify the client of disconnection
1087            clientSp->notifyError(ICameraDeviceCallbacks::ERROR_CAMERA_DISCONNECTED,
1088                    CaptureResultExtras());
1089        }
1090    }
1091
1092    // Do not hold mServiceLock while disconnecting clients, but retain the condition blocking
1093    // other clients from connecting in mServiceLockWrapper if held
1094    mServiceLock.unlock();
1095
1096    // Clear caller identity temporarily so client disconnect PID checks work correctly
1097    int64_t token = IPCThreadState::self()->clearCallingIdentity();
1098
1099    // Destroy evicted clients
1100    for (auto& i : evictedClients) {
1101        // Disconnect is blocking, and should only have returned when HAL has cleaned up
1102        i->getValue()->disconnect(); // Clients will remove themselves from the active client list
1103    }
1104
1105    IPCThreadState::self()->restoreCallingIdentity(token);
1106
1107    for (const auto& i : evictedClients) {
1108        ALOGV("%s: Waiting for disconnect to complete for client for device %s (PID %" PRId32 ")",
1109                __FUNCTION__, i->getKey().string(), i->getOwnerId());
1110        ret = mActiveClientManager.waitUntilRemoved(i, DEFAULT_DISCONNECT_TIMEOUT_NS);
1111        if (ret == TIMED_OUT) {
1112            ALOGE("%s: Timed out waiting for client for device %s to disconnect, "
1113                    "current clients:\n%s", __FUNCTION__, i->getKey().string(),
1114                    mActiveClientManager.toString().string());
1115            return -EBUSY;
1116        }
1117        if (ret != NO_ERROR) {
1118            ALOGE("%s: Received error waiting for client for device %s to disconnect: %s (%d), "
1119                    "current clients:\n%s", __FUNCTION__, i->getKey().string(), strerror(-ret),
1120                    ret, mActiveClientManager.toString().string());
1121            return ret;
1122        }
1123    }
1124
1125    evictedClients.clear();
1126
1127    // Once clients have been disconnected, relock
1128    mServiceLock.lock();
1129
1130    // Check again if the device was unplugged or something while we weren't holding mServiceLock
1131    if ((ret = checkIfDeviceIsUsable(cameraId)) != NO_ERROR) {
1132        return ret;
1133    }
1134
1135    *partial = clientDescriptor;
1136    return NO_ERROR;
1137}
1138
1139status_t CameraService::connect(
1140        const sp<ICameraClient>& cameraClient,
1141        int cameraId,
1142        const String16& clientPackageName,
1143        int clientUid,
1144        /*out*/
1145        sp<ICamera>& device) {
1146
1147    ATRACE_CALL();
1148    status_t ret = NO_ERROR;
1149    String8 id = String8::format("%d", cameraId);
1150    sp<Client> client = nullptr;
1151    ret = connectHelper<ICameraClient,Client>(cameraClient, id, CAMERA_HAL_API_VERSION_UNSPECIFIED,
1152            clientPackageName, clientUid, API_1, false, false, /*out*/client);
1153
1154    if(ret != NO_ERROR) {
1155        logRejected(id, getCallingPid(), String8(clientPackageName),
1156                String8::format("%s (%d)", strerror(-ret), ret));
1157        return ret;
1158    }
1159
1160    device = client;
1161    return NO_ERROR;
1162}
1163
1164status_t CameraService::connectLegacy(
1165        const sp<ICameraClient>& cameraClient,
1166        int cameraId, int halVersion,
1167        const String16& clientPackageName,
1168        int clientUid,
1169        /*out*/
1170        sp<ICamera>& device) {
1171
1172    ATRACE_CALL();
1173    String8 id = String8::format("%d", cameraId);
1174    int apiVersion = mModule->getModuleApiVersion();
1175    if (halVersion != CAMERA_HAL_API_VERSION_UNSPECIFIED &&
1176            apiVersion < CAMERA_MODULE_API_VERSION_2_3) {
1177        /*
1178         * Either the HAL version is unspecified in which case this just creates
1179         * a camera client selected by the latest device version, or
1180         * it's a particular version in which case the HAL must supported
1181         * the open_legacy call
1182         */
1183        ALOGE("%s: camera HAL module version %x doesn't support connecting to legacy HAL devices!",
1184                __FUNCTION__, apiVersion);
1185        logRejected(id, getCallingPid(), String8(clientPackageName),
1186                String8("HAL module version doesn't support legacy HAL connections"));
1187        return INVALID_OPERATION;
1188    }
1189
1190    status_t ret = NO_ERROR;
1191    sp<Client> client = nullptr;
1192    ret = connectHelper<ICameraClient,Client>(cameraClient, id, halVersion, clientPackageName,
1193            clientUid, API_1, true, false, /*out*/client);
1194
1195    if(ret != NO_ERROR) {
1196        logRejected(id, getCallingPid(), String8(clientPackageName),
1197                String8::format("%s (%d)", strerror(-ret), ret));
1198        return ret;
1199    }
1200
1201    device = client;
1202    return NO_ERROR;
1203}
1204
1205status_t CameraService::connectDevice(
1206        const sp<ICameraDeviceCallbacks>& cameraCb,
1207        int cameraId,
1208        const String16& clientPackageName,
1209        int clientUid,
1210        /*out*/
1211        sp<ICameraDeviceUser>& device) {
1212
1213    ATRACE_CALL();
1214    status_t ret = NO_ERROR;
1215    String8 id = String8::format("%d", cameraId);
1216    sp<CameraDeviceClient> client = nullptr;
1217    ret = connectHelper<ICameraDeviceCallbacks,CameraDeviceClient>(cameraCb, id,
1218            CAMERA_HAL_API_VERSION_UNSPECIFIED, clientPackageName, clientUid, API_2, false, false,
1219            /*out*/client);
1220
1221    if(ret != NO_ERROR) {
1222        logRejected(id, getCallingPid(), String8(clientPackageName),
1223                String8::format("%s (%d)", strerror(-ret), ret));
1224        return ret;
1225    }
1226
1227    device = client;
1228    return NO_ERROR;
1229}
1230
1231status_t CameraService::setTorchMode(const String16& cameraId, bool enabled,
1232        const sp<IBinder>& clientBinder) {
1233
1234    ATRACE_CALL();
1235    if (enabled && clientBinder == nullptr) {
1236        ALOGE("%s: torch client binder is NULL", __FUNCTION__);
1237        return -EINVAL;
1238    }
1239
1240    String8 id = String8(cameraId.string());
1241    int uid = getCallingUid();
1242
1243    // verify id is valid.
1244    auto state = getCameraState(id);
1245    if (state == nullptr) {
1246        ALOGE("%s: camera id is invalid %s", __FUNCTION__, id.string());
1247        return -EINVAL;
1248    }
1249
1250    ICameraServiceListener::Status cameraStatus = state->getStatus();
1251    if (cameraStatus != ICameraServiceListener::STATUS_PRESENT &&
1252            cameraStatus != ICameraServiceListener::STATUS_NOT_AVAILABLE) {
1253        ALOGE("%s: camera id is invalid %s", __FUNCTION__, id.string());
1254        return -EINVAL;
1255    }
1256
1257    {
1258        Mutex::Autolock al(mTorchStatusMutex);
1259        ICameraServiceListener::TorchStatus status;
1260        status_t res = getTorchStatusLocked(id, &status);
1261        if (res) {
1262            ALOGE("%s: getting current torch status failed for camera %s",
1263                    __FUNCTION__, id.string());
1264            return -EINVAL;
1265        }
1266
1267        if (status == ICameraServiceListener::TORCH_STATUS_NOT_AVAILABLE) {
1268            if (cameraStatus == ICameraServiceListener::STATUS_NOT_AVAILABLE) {
1269                ALOGE("%s: torch mode of camera %s is not available because "
1270                        "camera is in use", __FUNCTION__, id.string());
1271                return -EBUSY;
1272            } else {
1273                ALOGE("%s: torch mode of camera %s is not available due to "
1274                        "insufficient resources", __FUNCTION__, id.string());
1275                return -EUSERS;
1276            }
1277        }
1278    }
1279
1280    {
1281        // Update UID map - this is used in the torch status changed callbacks, so must be done
1282        // before setTorchMode
1283        Mutex::Autolock al(mTorchUidMapMutex);
1284        if (mTorchUidMap.find(id) == mTorchUidMap.end()) {
1285            mTorchUidMap[id].first = uid;
1286            mTorchUidMap[id].second = uid;
1287        } else {
1288            // Set the pending UID
1289            mTorchUidMap[id].first = uid;
1290        }
1291    }
1292
1293    status_t res = mFlashlight->setTorchMode(id, enabled);
1294
1295    if (res) {
1296        ALOGE("%s: setting torch mode of camera %s to %d failed. %s (%d)",
1297                __FUNCTION__, id.string(), enabled, strerror(-res), res);
1298        return res;
1299    }
1300
1301    {
1302        // update the link to client's death
1303        Mutex::Autolock al(mTorchClientMapMutex);
1304        ssize_t index = mTorchClientMap.indexOfKey(id);
1305        if (enabled) {
1306            if (index == NAME_NOT_FOUND) {
1307                mTorchClientMap.add(id, clientBinder);
1308            } else {
1309                mTorchClientMap.valueAt(index)->unlinkToDeath(this);
1310                mTorchClientMap.replaceValueAt(index, clientBinder);
1311            }
1312            clientBinder->linkToDeath(this);
1313        } else if (index != NAME_NOT_FOUND) {
1314            mTorchClientMap.valueAt(index)->unlinkToDeath(this);
1315        }
1316    }
1317
1318    return OK;
1319}
1320
1321void CameraService::notifySystemEvent(int32_t eventId, const int32_t* args, size_t length) {
1322    ATRACE_CALL();
1323
1324    switch(eventId) {
1325        case ICameraService::USER_SWITCHED: {
1326            doUserSwitch(/*newUserIds*/args, /*length*/length);
1327            break;
1328        }
1329        case ICameraService::NO_EVENT:
1330        default: {
1331            ALOGW("%s: Received invalid system event from system_server: %d", __FUNCTION__,
1332                    eventId);
1333            break;
1334        }
1335    }
1336}
1337
1338status_t CameraService::addListener(const sp<ICameraServiceListener>& listener) {
1339    ATRACE_CALL();
1340
1341    ALOGV("%s: Add listener %p", __FUNCTION__, listener.get());
1342
1343    if (listener == nullptr) {
1344        ALOGE("%s: Listener must not be null", __FUNCTION__);
1345        return BAD_VALUE;
1346    }
1347
1348    Mutex::Autolock lock(mServiceLock);
1349
1350    {
1351        Mutex::Autolock lock(mStatusListenerLock);
1352        for (auto& it : mListenerList) {
1353            if (IInterface::asBinder(it) == IInterface::asBinder(listener)) {
1354                ALOGW("%s: Tried to add listener %p which was already subscribed",
1355                      __FUNCTION__, listener.get());
1356                return ALREADY_EXISTS;
1357            }
1358        }
1359
1360        mListenerList.push_back(listener);
1361    }
1362
1363
1364    /* Immediately signal current status to this listener only */
1365    {
1366        Mutex::Autolock lock(mCameraStatesLock);
1367        for (auto& i : mCameraStates) {
1368            // TODO: Update binder to use String16 for camera IDs and remove;
1369            int id = cameraIdToInt(i.first);
1370            if (id == -1) continue;
1371
1372            listener->onStatusChanged(i.second->getStatus(), id);
1373        }
1374    }
1375
1376    /* Immediately signal current torch status to this listener only */
1377    {
1378        Mutex::Autolock al(mTorchStatusMutex);
1379        for (size_t i = 0; i < mTorchStatusMap.size(); i++ ) {
1380            String16 id = String16(mTorchStatusMap.keyAt(i).string());
1381            listener->onTorchStatusChanged(mTorchStatusMap.valueAt(i), id);
1382        }
1383    }
1384
1385    return OK;
1386}
1387
1388status_t CameraService::removeListener(const sp<ICameraServiceListener>& listener) {
1389    ATRACE_CALL();
1390
1391    ALOGV("%s: Remove listener %p", __FUNCTION__, listener.get());
1392
1393    if (listener == 0) {
1394        ALOGE("%s: Listener must not be null", __FUNCTION__);
1395        return BAD_VALUE;
1396    }
1397
1398    Mutex::Autolock lock(mServiceLock);
1399
1400    {
1401        Mutex::Autolock lock(mStatusListenerLock);
1402        for (auto it = mListenerList.begin(); it != mListenerList.end(); it++) {
1403            if (IInterface::asBinder(*it) == IInterface::asBinder(listener)) {
1404                mListenerList.erase(it);
1405                return OK;
1406            }
1407        }
1408    }
1409
1410    ALOGW("%s: Tried to remove a listener %p which was not subscribed",
1411          __FUNCTION__, listener.get());
1412
1413    return BAD_VALUE;
1414}
1415
1416status_t CameraService::getLegacyParameters(int cameraId, /*out*/String16* parameters) {
1417
1418    ATRACE_CALL();
1419    ALOGV("%s: for camera ID = %d", __FUNCTION__, cameraId);
1420
1421    if (parameters == NULL) {
1422        ALOGE("%s: parameters must not be null", __FUNCTION__);
1423        return BAD_VALUE;
1424    }
1425
1426    status_t ret = 0;
1427
1428    CameraParameters shimParams;
1429    if ((ret = getLegacyParametersLazy(cameraId, /*out*/&shimParams)) != OK) {
1430        // Error logged by caller
1431        return ret;
1432    }
1433
1434    String8 shimParamsString8 = shimParams.flatten();
1435    String16 shimParamsString16 = String16(shimParamsString8);
1436
1437    *parameters = shimParamsString16;
1438
1439    return OK;
1440}
1441
1442status_t CameraService::supportsCameraApi(int cameraId, int apiVersion) {
1443    ATRACE_CALL();
1444
1445    ALOGV("%s: for camera ID = %d", __FUNCTION__, cameraId);
1446
1447    switch (apiVersion) {
1448        case API_VERSION_1:
1449        case API_VERSION_2:
1450            break;
1451        default:
1452            ALOGE("%s: Bad API version %d", __FUNCTION__, apiVersion);
1453            return BAD_VALUE;
1454    }
1455
1456    int facing = -1;
1457    int deviceVersion = getDeviceVersion(cameraId, &facing);
1458
1459    switch(deviceVersion) {
1460      case CAMERA_DEVICE_API_VERSION_1_0:
1461      case CAMERA_DEVICE_API_VERSION_3_0:
1462      case CAMERA_DEVICE_API_VERSION_3_1:
1463        if (apiVersion == API_VERSION_2) {
1464            ALOGV("%s: Camera id %d uses HAL prior to HAL3.2, doesn't support api2 without shim",
1465                    __FUNCTION__, cameraId);
1466            return -EOPNOTSUPP;
1467        } else { // if (apiVersion == API_VERSION_1) {
1468            ALOGV("%s: Camera id %d uses older HAL before 3.2, but api1 is always supported",
1469                    __FUNCTION__, cameraId);
1470            return OK;
1471        }
1472      case CAMERA_DEVICE_API_VERSION_3_2:
1473      case CAMERA_DEVICE_API_VERSION_3_3:
1474        ALOGV("%s: Camera id %d uses HAL3.2 or newer, supports api1/api2 directly",
1475                __FUNCTION__, cameraId);
1476        return OK;
1477      case -1:
1478        ALOGE("%s: Invalid camera id %d", __FUNCTION__, cameraId);
1479        return BAD_VALUE;
1480      default:
1481        ALOGE("%s: Unknown camera device HAL version: %d", __FUNCTION__, deviceVersion);
1482        return INVALID_OPERATION;
1483    }
1484
1485    return OK;
1486}
1487
1488void CameraService::removeByClient(const BasicClient* client) {
1489    Mutex::Autolock lock(mServiceLock);
1490    for (auto& i : mActiveClientManager.getAll()) {
1491        auto clientSp = i->getValue();
1492        if (clientSp.get() == client) {
1493            mActiveClientManager.remove(i);
1494        }
1495    }
1496}
1497
1498bool CameraService::evictClientIdByRemote(const wp<IBinder>& remote) {
1499    const int callingPid = getCallingPid();
1500    const int servicePid = getpid();
1501    bool ret = false;
1502    {
1503        // Acquire mServiceLock and prevent other clients from connecting
1504        std::unique_ptr<AutoConditionLock> lock =
1505                AutoConditionLock::waitAndAcquire(mServiceLockWrapper);
1506
1507
1508        std::vector<sp<BasicClient>> evicted;
1509        for (auto& i : mActiveClientManager.getAll()) {
1510            auto clientSp = i->getValue();
1511            if (clientSp.get() == nullptr) {
1512                ALOGE("%s: Dead client still in mActiveClientManager.", __FUNCTION__);
1513                mActiveClientManager.remove(i);
1514                continue;
1515            }
1516            if (remote == clientSp->getRemote() && (callingPid == servicePid ||
1517                    callingPid == clientSp->getClientPid())) {
1518                mActiveClientManager.remove(i);
1519                evicted.push_back(clientSp);
1520
1521                // Notify the client of disconnection
1522                clientSp->notifyError(ICameraDeviceCallbacks::ERROR_CAMERA_DISCONNECTED,
1523                        CaptureResultExtras());
1524            }
1525        }
1526
1527        // Do not hold mServiceLock while disconnecting clients, but retain the condition blocking
1528        // other clients from connecting in mServiceLockWrapper if held
1529        mServiceLock.unlock();
1530
1531        // Do not clear caller identity, remote caller should be client proccess
1532
1533        for (auto& i : evicted) {
1534            if (i.get() != nullptr) {
1535                i->disconnect();
1536                ret = true;
1537            }
1538        }
1539
1540        // Reacquire mServiceLock
1541        mServiceLock.lock();
1542
1543    } // lock is destroyed, allow further connect calls
1544
1545    return ret;
1546}
1547
1548
1549/**
1550 * Check camera capabilities, such as support for basic color operation
1551 * Also check that the device HAL version is still in support
1552 */
1553int CameraService::checkCameraCapabilities(int id, camera_info info, int *latestStrangeCameraId) {
1554
1555    // Verify the device version is in the supported range
1556    switch (info.device_version) {
1557        case CAMERA_DEVICE_API_VERSION_1_0:
1558        case CAMERA_DEVICE_API_VERSION_3_0:
1559        case CAMERA_DEVICE_API_VERSION_3_1:
1560        case CAMERA_DEVICE_API_VERSION_3_2:
1561        case CAMERA_DEVICE_API_VERSION_3_3:
1562            // in support
1563            break;
1564        case CAMERA_DEVICE_API_VERSION_2_0:
1565        case CAMERA_DEVICE_API_VERSION_2_1:
1566            // no longer supported
1567        default:
1568            ALOGE("%s: Device %d has HAL version %x, which is not supported",
1569                    __FUNCTION__, id, info.device_version);
1570            logServiceError("Unsupported device HAL version", NO_INIT);
1571            return NO_INIT;
1572    }
1573
1574    // Assume all devices pre-v3.3 are backward-compatible
1575    bool isBackwardCompatible = true;
1576    if (mModule->getModuleApiVersion() >= CAMERA_MODULE_API_VERSION_2_0
1577            && info.device_version >= CAMERA_DEVICE_API_VERSION_3_3) {
1578        isBackwardCompatible = false;
1579        status_t res;
1580        camera_metadata_ro_entry_t caps;
1581        res = find_camera_metadata_ro_entry(
1582            info.static_camera_characteristics,
1583            ANDROID_REQUEST_AVAILABLE_CAPABILITIES,
1584            &caps);
1585        if (res != 0) {
1586            ALOGW("%s: Unable to find camera capabilities for camera device %d",
1587                    __FUNCTION__, id);
1588            caps.count = 0;
1589        }
1590        for (size_t i = 0; i < caps.count; i++) {
1591            if (caps.data.u8[i] ==
1592                    ANDROID_REQUEST_AVAILABLE_CAPABILITIES_BACKWARD_COMPATIBLE) {
1593                isBackwardCompatible = true;
1594                break;
1595            }
1596        }
1597    }
1598
1599    if (!isBackwardCompatible) {
1600        mNumberOfNormalCameras--;
1601        *latestStrangeCameraId = id;
1602    } else {
1603        if (id > *latestStrangeCameraId) {
1604            ALOGE("%s: Normal camera ID %d higher than strange camera ID %d. "
1605                    "This is not allowed due backward-compatibility requirements",
1606                    __FUNCTION__, id, *latestStrangeCameraId);
1607            logServiceError("Invalid order of camera devices", NO_INIT);
1608            mNumberOfCameras = 0;
1609            mNumberOfNormalCameras = 0;
1610            return NO_INIT;
1611        }
1612    }
1613    return OK;
1614}
1615
1616std::shared_ptr<CameraService::CameraState> CameraService::getCameraState(
1617        const String8& cameraId) const {
1618    std::shared_ptr<CameraState> state;
1619    {
1620        Mutex::Autolock lock(mCameraStatesLock);
1621        auto iter = mCameraStates.find(cameraId);
1622        if (iter != mCameraStates.end()) {
1623            state = iter->second;
1624        }
1625    }
1626    return state;
1627}
1628
1629sp<CameraService::BasicClient> CameraService::removeClientLocked(const String8& cameraId) {
1630    // Remove from active clients list
1631    auto clientDescriptorPtr = mActiveClientManager.remove(cameraId);
1632    if (clientDescriptorPtr == nullptr) {
1633        ALOGW("%s: Could not evict client, no client for camera ID %s", __FUNCTION__,
1634                cameraId.string());
1635        return sp<BasicClient>{nullptr};
1636    }
1637
1638    return clientDescriptorPtr->getValue();
1639}
1640
1641void CameraService::doUserSwitch(const int32_t* newUserId, size_t length) {
1642    // Acquire mServiceLock and prevent other clients from connecting
1643    std::unique_ptr<AutoConditionLock> lock =
1644            AutoConditionLock::waitAndAcquire(mServiceLockWrapper);
1645
1646    std::set<userid_t> newAllowedUsers;
1647    for (size_t i = 0; i < length; i++) {
1648        if (newUserId[i] < 0) {
1649            ALOGE("%s: Bad user ID %d given during user switch, ignoring.",
1650                    __FUNCTION__, newUserId[i]);
1651            return;
1652        }
1653        newAllowedUsers.insert(static_cast<userid_t>(newUserId[i]));
1654    }
1655
1656
1657    if (newAllowedUsers == mAllowedUsers) {
1658        ALOGW("%s: Received notification of user switch with no updated user IDs.", __FUNCTION__);
1659        return;
1660    }
1661
1662    logUserSwitch(mAllowedUsers, newAllowedUsers);
1663
1664    mAllowedUsers = std::move(newAllowedUsers);
1665
1666    // Current user has switched, evict all current clients.
1667    std::vector<sp<BasicClient>> evicted;
1668    for (auto& i : mActiveClientManager.getAll()) {
1669        auto clientSp = i->getValue();
1670
1671        if (clientSp.get() == nullptr) {
1672            ALOGE("%s: Dead client still in mActiveClientManager.", __FUNCTION__);
1673            continue;
1674        }
1675
1676        // Don't evict clients that are still allowed.
1677        uid_t clientUid = clientSp->getClientUid();
1678        userid_t clientUserId = multiuser_get_user_id(clientUid);
1679        if (mAllowedUsers.find(clientUserId) != mAllowedUsers.end()) {
1680            continue;
1681        }
1682
1683        evicted.push_back(clientSp);
1684
1685        String8 curTime = getFormattedCurrentTime();
1686
1687        ALOGE("Evicting conflicting client for camera ID %s due to user change",
1688                i->getKey().string());
1689
1690        // Log the clients evicted
1691        logEvent(String8::format("EVICT device %s client held by package %s (PID %"
1692                PRId32 ", priority %" PRId32 ")\n   - Evicted due to user switch.",
1693                i->getKey().string(), String8{clientSp->getPackageName()}.string(),
1694                i->getOwnerId(), i->getPriority()));
1695
1696    }
1697
1698    // Do not hold mServiceLock while disconnecting clients, but retain the condition
1699    // blocking other clients from connecting in mServiceLockWrapper if held.
1700    mServiceLock.unlock();
1701
1702    // Clear caller identity temporarily so client disconnect PID checks work correctly
1703    int64_t token = IPCThreadState::self()->clearCallingIdentity();
1704
1705    for (auto& i : evicted) {
1706        i->disconnect();
1707    }
1708
1709    IPCThreadState::self()->restoreCallingIdentity(token);
1710
1711    // Reacquire mServiceLock
1712    mServiceLock.lock();
1713}
1714
1715void CameraService::logEvent(const char* event) {
1716    String8 curTime = getFormattedCurrentTime();
1717    Mutex::Autolock l(mLogLock);
1718    mEventLog.add(String8::format("%s : %s", curTime.string(), event));
1719}
1720
1721void CameraService::logDisconnected(const char* cameraId, int clientPid,
1722        const char* clientPackage) {
1723    // Log the clients evicted
1724    logEvent(String8::format("DISCONNECT device %s client for package %s (PID %d)", cameraId,
1725            clientPackage, clientPid));
1726}
1727
1728void CameraService::logConnected(const char* cameraId, int clientPid,
1729        const char* clientPackage) {
1730    // Log the clients evicted
1731    logEvent(String8::format("CONNECT device %s client for package %s (PID %d)", cameraId,
1732            clientPackage, clientPid));
1733}
1734
1735void CameraService::logRejected(const char* cameraId, int clientPid,
1736        const char* clientPackage, const char* reason) {
1737    // Log the client rejected
1738    logEvent(String8::format("REJECT device %s client for package %s (PID %d), reason: (%s)",
1739            cameraId, clientPackage, clientPid, reason));
1740}
1741
1742void CameraService::logUserSwitch(const std::set<userid_t>& oldUserIds,
1743        const std::set<userid_t>& newUserIds) {
1744    String8 newUsers = toString(newUserIds);
1745    String8 oldUsers = toString(oldUserIds);
1746    // Log the new and old users
1747    logEvent(String8::format("USER_SWITCH previous allowed users: %s , current allowed users: %s",
1748            oldUsers.string(), newUsers.string()));
1749}
1750
1751void CameraService::logDeviceRemoved(const char* cameraId, const char* reason) {
1752    // Log the device removal
1753    logEvent(String8::format("REMOVE device %s, reason: (%s)", cameraId, reason));
1754}
1755
1756void CameraService::logDeviceAdded(const char* cameraId, const char* reason) {
1757    // Log the device removal
1758    logEvent(String8::format("ADD device %s, reason: (%s)", cameraId, reason));
1759}
1760
1761void CameraService::logClientDied(int clientPid, const char* reason) {
1762    // Log the device removal
1763    logEvent(String8::format("DIED client(s) with PID %d, reason: (%s)", clientPid, reason));
1764}
1765
1766void CameraService::logServiceError(const char* msg, int errorCode) {
1767    String8 curTime = getFormattedCurrentTime();
1768    logEvent(String8::format("SERVICE ERROR: %s : %d (%s)", msg, errorCode, strerror(-errorCode)));
1769}
1770
1771status_t CameraService::onTransact(uint32_t code, const Parcel& data, Parcel* reply,
1772        uint32_t flags) {
1773
1774    const int pid = getCallingPid();
1775    const int selfPid = getpid();
1776
1777    // Permission checks
1778    switch (code) {
1779        case BnCameraService::CONNECT:
1780        case BnCameraService::CONNECT_DEVICE:
1781        case BnCameraService::CONNECT_LEGACY: {
1782            if (pid != selfPid) {
1783                // we're called from a different process, do the real check
1784                if (!checkCallingPermission(
1785                        String16("android.permission.CAMERA"))) {
1786                    const int uid = getCallingUid();
1787                    ALOGE("Permission Denial: "
1788                         "can't use the camera pid=%d, uid=%d", pid, uid);
1789                    return PERMISSION_DENIED;
1790                }
1791            }
1792            break;
1793        }
1794        case BnCameraService::NOTIFY_SYSTEM_EVENT: {
1795            if (pid != selfPid) {
1796                // Ensure we're being called by system_server, or similar process with
1797                // permissions to notify the camera service about system events
1798                if (!checkCallingPermission(
1799                        String16("android.permission.CAMERA_SEND_SYSTEM_EVENTS"))) {
1800                    const int uid = getCallingUid();
1801                    ALOGE("Permission Denial: cannot send updates to camera service about system"
1802                            " events from pid=%d, uid=%d", pid, uid);
1803                    return PERMISSION_DENIED;
1804                }
1805            }
1806            break;
1807        }
1808    }
1809
1810    return BnCameraService::onTransact(code, data, reply, flags);
1811}
1812
1813// We share the media players for shutter and recording sound for all clients.
1814// A reference count is kept to determine when we will actually release the
1815// media players.
1816
1817MediaPlayer* CameraService::newMediaPlayer(const char *file) {
1818    MediaPlayer* mp = new MediaPlayer();
1819    if (mp->setDataSource(NULL /* httpService */, file, NULL) == NO_ERROR) {
1820        mp->setAudioStreamType(AUDIO_STREAM_ENFORCED_AUDIBLE);
1821        mp->prepare();
1822    } else {
1823        ALOGE("Failed to load CameraService sounds: %s", file);
1824        return NULL;
1825    }
1826    return mp;
1827}
1828
1829void CameraService::loadSound() {
1830    ATRACE_CALL();
1831
1832    Mutex::Autolock lock(mSoundLock);
1833    LOG1("CameraService::loadSound ref=%d", mSoundRef);
1834    if (mSoundRef++) return;
1835
1836    mSoundPlayer[SOUND_SHUTTER] = newMediaPlayer("/system/media/audio/ui/camera_click.ogg");
1837    mSoundPlayer[SOUND_RECORDING_START] = newMediaPlayer("/system/media/audio/ui/VideoRecord.ogg");
1838    mSoundPlayer[SOUND_RECORDING_STOP] = newMediaPlayer("/system/media/audio/ui/VideoStop.ogg");
1839}
1840
1841void CameraService::releaseSound() {
1842    Mutex::Autolock lock(mSoundLock);
1843    LOG1("CameraService::releaseSound ref=%d", mSoundRef);
1844    if (--mSoundRef) return;
1845
1846    for (int i = 0; i < NUM_SOUNDS; i++) {
1847        if (mSoundPlayer[i] != 0) {
1848            mSoundPlayer[i]->disconnect();
1849            mSoundPlayer[i].clear();
1850        }
1851    }
1852}
1853
1854void CameraService::playSound(sound_kind kind) {
1855    ATRACE_CALL();
1856
1857    LOG1("playSound(%d)", kind);
1858    Mutex::Autolock lock(mSoundLock);
1859    sp<MediaPlayer> player = mSoundPlayer[kind];
1860    if (player != 0) {
1861        player->seekTo(0);
1862        player->start();
1863    }
1864}
1865
1866// ----------------------------------------------------------------------------
1867
1868CameraService::Client::Client(const sp<CameraService>& cameraService,
1869        const sp<ICameraClient>& cameraClient,
1870        const String16& clientPackageName,
1871        int cameraId, int cameraFacing,
1872        int clientPid, uid_t clientUid,
1873        int servicePid) :
1874        CameraService::BasicClient(cameraService,
1875                IInterface::asBinder(cameraClient),
1876                clientPackageName,
1877                cameraId, cameraFacing,
1878                clientPid, clientUid,
1879                servicePid)
1880{
1881    int callingPid = getCallingPid();
1882    LOG1("Client::Client E (pid %d, id %d)", callingPid, cameraId);
1883
1884    mRemoteCallback = cameraClient;
1885
1886    cameraService->loadSound();
1887
1888    LOG1("Client::Client X (pid %d, id %d)", callingPid, cameraId);
1889}
1890
1891// tear down the client
1892CameraService::Client::~Client() {
1893    ALOGV("~Client");
1894    mDestructionStarted = true;
1895
1896    mCameraService->releaseSound();
1897    // unconditionally disconnect. function is idempotent
1898    Client::disconnect();
1899}
1900
1901CameraService::BasicClient::BasicClient(const sp<CameraService>& cameraService,
1902        const sp<IBinder>& remoteCallback,
1903        const String16& clientPackageName,
1904        int cameraId, int cameraFacing,
1905        int clientPid, uid_t clientUid,
1906        int servicePid):
1907        mClientPackageName(clientPackageName), mDisconnected(false)
1908{
1909    mCameraService = cameraService;
1910    mRemoteBinder = remoteCallback;
1911    mCameraId = cameraId;
1912    mCameraFacing = cameraFacing;
1913    mClientPid = clientPid;
1914    mClientUid = clientUid;
1915    mServicePid = servicePid;
1916    mOpsActive = false;
1917    mDestructionStarted = false;
1918}
1919
1920CameraService::BasicClient::~BasicClient() {
1921    ALOGV("~BasicClient");
1922    mDestructionStarted = true;
1923}
1924
1925void CameraService::BasicClient::disconnect() {
1926    if (mDisconnected) {
1927        return;
1928    }
1929    mDisconnected = true;
1930
1931    mCameraService->removeByClient(this);
1932    mCameraService->logDisconnected(String8::format("%d", mCameraId), mClientPid,
1933            String8(mClientPackageName));
1934
1935    sp<IBinder> remote = getRemote();
1936    if (remote != nullptr) {
1937        remote->unlinkToDeath(mCameraService);
1938    }
1939
1940    finishCameraOps();
1941    ALOGI("%s: Disconnected client for camera %d for PID %d", __FUNCTION__, mCameraId, mClientPid);
1942
1943    // client shouldn't be able to call into us anymore
1944    mClientPid = 0;
1945}
1946
1947String16 CameraService::BasicClient::getPackageName() const {
1948    return mClientPackageName;
1949}
1950
1951
1952int CameraService::BasicClient::getClientPid() const {
1953    return mClientPid;
1954}
1955
1956uid_t CameraService::BasicClient::getClientUid() const {
1957    return mClientUid;
1958}
1959
1960bool CameraService::BasicClient::canCastToApiClient(apiLevel level) const {
1961    // Defaults to API2.
1962    return level == API_2;
1963}
1964
1965status_t CameraService::BasicClient::startCameraOps() {
1966    ATRACE_CALL();
1967
1968    int32_t res;
1969    // Notify app ops that the camera is not available
1970    mOpsCallback = new OpsCallback(this);
1971
1972    {
1973        ALOGV("%s: Start camera ops, package name = %s, client UID = %d",
1974              __FUNCTION__, String8(mClientPackageName).string(), mClientUid);
1975    }
1976
1977    mAppOpsManager.startWatchingMode(AppOpsManager::OP_CAMERA,
1978            mClientPackageName, mOpsCallback);
1979    res = mAppOpsManager.startOp(AppOpsManager::OP_CAMERA,
1980            mClientUid, mClientPackageName);
1981
1982    if (res == AppOpsManager::MODE_ERRORED) {
1983        ALOGI("Camera %d: Access for \"%s\" has been revoked",
1984                mCameraId, String8(mClientPackageName).string());
1985        return PERMISSION_DENIED;
1986    }
1987
1988    if (res == AppOpsManager::MODE_IGNORED) {
1989        ALOGI("Camera %d: Access for \"%s\" has been restricted",
1990                mCameraId, String8(mClientPackageName).string());
1991        // Return the same error as for device policy manager rejection
1992        return -EACCES;
1993    }
1994
1995    mOpsActive = true;
1996
1997    // Transition device availability listeners from PRESENT -> NOT_AVAILABLE
1998    mCameraService->updateStatus(ICameraServiceListener::STATUS_NOT_AVAILABLE,
1999            String8::format("%d", mCameraId));
2000
2001    // Transition device state to OPEN
2002    mCameraService->updateProxyDeviceState(ICameraServiceProxy::CAMERA_STATE_OPEN,
2003            String8::format("%d", mCameraId));
2004
2005    return OK;
2006}
2007
2008status_t CameraService::BasicClient::finishCameraOps() {
2009    ATRACE_CALL();
2010
2011    // Check if startCameraOps succeeded, and if so, finish the camera op
2012    if (mOpsActive) {
2013        // Notify app ops that the camera is available again
2014        mAppOpsManager.finishOp(AppOpsManager::OP_CAMERA, mClientUid,
2015                mClientPackageName);
2016        mOpsActive = false;
2017
2018        auto rejected = {ICameraServiceListener::STATUS_NOT_PRESENT,
2019                ICameraServiceListener::STATUS_ENUMERATING};
2020
2021        // Transition to PRESENT if the camera is not in either of the rejected states
2022        mCameraService->updateStatus(ICameraServiceListener::STATUS_PRESENT,
2023                String8::format("%d", mCameraId), rejected);
2024
2025        // Transition device state to CLOSED
2026        mCameraService->updateProxyDeviceState(ICameraServiceProxy::CAMERA_STATE_CLOSED,
2027                String8::format("%d", mCameraId));
2028
2029        // Notify flashlight that a camera device is closed.
2030        mCameraService->mFlashlight->deviceClosed(
2031                String8::format("%d", mCameraId));
2032    }
2033    // Always stop watching, even if no camera op is active
2034    if (mOpsCallback != NULL) {
2035        mAppOpsManager.stopWatchingMode(mOpsCallback);
2036    }
2037    mOpsCallback.clear();
2038
2039    return OK;
2040}
2041
2042void CameraService::BasicClient::opChanged(int32_t op, const String16& packageName) {
2043    ATRACE_CALL();
2044
2045    String8 name(packageName);
2046    String8 myName(mClientPackageName);
2047
2048    if (op != AppOpsManager::OP_CAMERA) {
2049        ALOGW("Unexpected app ops notification received: %d", op);
2050        return;
2051    }
2052
2053    int32_t res;
2054    res = mAppOpsManager.checkOp(AppOpsManager::OP_CAMERA,
2055            mClientUid, mClientPackageName);
2056    ALOGV("checkOp returns: %d, %s ", res,
2057            res == AppOpsManager::MODE_ALLOWED ? "ALLOWED" :
2058            res == AppOpsManager::MODE_IGNORED ? "IGNORED" :
2059            res == AppOpsManager::MODE_ERRORED ? "ERRORED" :
2060            "UNKNOWN");
2061
2062    if (res != AppOpsManager::MODE_ALLOWED) {
2063        ALOGI("Camera %d: Access for \"%s\" revoked", mCameraId,
2064                myName.string());
2065        // Reset the client PID to allow server-initiated disconnect,
2066        // and to prevent further calls by client.
2067        mClientPid = getCallingPid();
2068        CaptureResultExtras resultExtras; // a dummy result (invalid)
2069        notifyError(ICameraDeviceCallbacks::ERROR_CAMERA_SERVICE, resultExtras);
2070        disconnect();
2071    }
2072}
2073
2074// ----------------------------------------------------------------------------
2075
2076// Provide client strong pointer for callbacks.
2077sp<CameraService::Client> CameraService::Client::getClientFromCookie(void* user) {
2078    String8 cameraId = String8::format("%d", (int)(intptr_t) user);
2079    auto clientDescriptor = gCameraService->mActiveClientManager.get(cameraId);
2080    if (clientDescriptor != nullptr) {
2081        return sp<Client>{
2082                static_cast<Client*>(clientDescriptor->getValue().get())};
2083    }
2084    return sp<Client>{nullptr};
2085}
2086
2087void CameraService::Client::notifyError(ICameraDeviceCallbacks::CameraErrorCode errorCode,
2088        const CaptureResultExtras& resultExtras) {
2089    (void) errorCode;
2090    (void) resultExtras;
2091    if (mRemoteCallback != NULL) {
2092        mRemoteCallback->notifyCallback(CAMERA_MSG_ERROR, CAMERA_ERROR_RELEASED, 0);
2093    } else {
2094        ALOGE("mRemoteCallback is NULL!!");
2095    }
2096}
2097
2098// NOTE: function is idempotent
2099void CameraService::Client::disconnect() {
2100    ALOGV("Client::disconnect");
2101    BasicClient::disconnect();
2102}
2103
2104bool CameraService::Client::canCastToApiClient(apiLevel level) const {
2105    return level == API_1;
2106}
2107
2108CameraService::Client::OpsCallback::OpsCallback(wp<BasicClient> client):
2109        mClient(client) {
2110}
2111
2112void CameraService::Client::OpsCallback::opChanged(int32_t op,
2113        const String16& packageName) {
2114    sp<BasicClient> client = mClient.promote();
2115    if (client != NULL) {
2116        client->opChanged(op, packageName);
2117    }
2118}
2119
2120// ----------------------------------------------------------------------------
2121//                  CameraState
2122// ----------------------------------------------------------------------------
2123
2124CameraService::CameraState::CameraState(const String8& id, int cost,
2125        const std::set<String8>& conflicting) : mId(id),
2126        mStatus(ICameraServiceListener::STATUS_PRESENT), mCost(cost), mConflicting(conflicting) {}
2127
2128CameraService::CameraState::~CameraState() {}
2129
2130ICameraServiceListener::Status CameraService::CameraState::getStatus() const {
2131    Mutex::Autolock lock(mStatusLock);
2132    return mStatus;
2133}
2134
2135CameraParameters CameraService::CameraState::getShimParams() const {
2136    return mShimParams;
2137}
2138
2139void CameraService::CameraState::setShimParams(const CameraParameters& params) {
2140    mShimParams = params;
2141}
2142
2143int CameraService::CameraState::getCost() const {
2144    return mCost;
2145}
2146
2147std::set<String8> CameraService::CameraState::getConflicting() const {
2148    return mConflicting;
2149}
2150
2151String8 CameraService::CameraState::getId() const {
2152    return mId;
2153}
2154
2155// ----------------------------------------------------------------------------
2156//                  ClientEventListener
2157// ----------------------------------------------------------------------------
2158
2159void CameraService::ClientEventListener::onClientAdded(
2160        const resource_policy::ClientDescriptor<String8,
2161        sp<CameraService::BasicClient>>& descriptor) {
2162    auto basicClient = descriptor.getValue();
2163    if (basicClient.get() != nullptr) {
2164        BatteryNotifier& notifier(BatteryNotifier::getInstance());
2165        notifier.noteStartCamera(descriptor.getKey(),
2166                static_cast<int>(basicClient->getClientUid()));
2167    }
2168}
2169
2170void CameraService::ClientEventListener::onClientRemoved(
2171        const resource_policy::ClientDescriptor<String8,
2172        sp<CameraService::BasicClient>>& descriptor) {
2173    auto basicClient = descriptor.getValue();
2174    if (basicClient.get() != nullptr) {
2175        BatteryNotifier& notifier(BatteryNotifier::getInstance());
2176        notifier.noteStopCamera(descriptor.getKey(),
2177                static_cast<int>(basicClient->getClientUid()));
2178    }
2179}
2180
2181
2182// ----------------------------------------------------------------------------
2183//                  CameraClientManager
2184// ----------------------------------------------------------------------------
2185
2186CameraService::CameraClientManager::CameraClientManager() {
2187    setListener(std::make_shared<ClientEventListener>());
2188}
2189
2190CameraService::CameraClientManager::~CameraClientManager() {}
2191
2192sp<CameraService::BasicClient> CameraService::CameraClientManager::getCameraClient(
2193        const String8& id) const {
2194    auto descriptor = get(id);
2195    if (descriptor == nullptr) {
2196        return sp<BasicClient>{nullptr};
2197    }
2198    return descriptor->getValue();
2199}
2200
2201String8 CameraService::CameraClientManager::toString() const {
2202    auto all = getAll();
2203    String8 ret("[");
2204    bool hasAny = false;
2205    for (auto& i : all) {
2206        hasAny = true;
2207        String8 key = i->getKey();
2208        int32_t cost = i->getCost();
2209        int32_t pid = i->getOwnerId();
2210        int32_t priority = i->getPriority();
2211        auto conflicting = i->getConflicting();
2212        auto clientSp = i->getValue();
2213        String8 packageName;
2214        userid_t clientUserId = 0;
2215        if (clientSp.get() != nullptr) {
2216            packageName = String8{clientSp->getPackageName()};
2217            uid_t clientUid = clientSp->getClientUid();
2218            clientUserId = multiuser_get_user_id(clientUid);
2219        }
2220        ret.appendFormat("\n(Camera ID: %s, Cost: %" PRId32 ", PID: %" PRId32 ", Priority: %"
2221                PRId32 ", ", key.string(), cost, pid, priority);
2222
2223        if (clientSp.get() != nullptr) {
2224            ret.appendFormat("User Id: %d, ", clientUserId);
2225        }
2226        if (packageName.size() != 0) {
2227            ret.appendFormat("Client Package Name: %s", packageName.string());
2228        }
2229
2230        ret.append(", Conflicting Client Devices: {");
2231        for (auto& j : conflicting) {
2232            ret.appendFormat("%s, ", j.string());
2233        }
2234        ret.append("})");
2235    }
2236    if (hasAny) ret.append("\n");
2237    ret.append("]\n");
2238    return ret;
2239}
2240
2241CameraService::DescriptorPtr CameraService::CameraClientManager::makeClientDescriptor(
2242        const String8& key, const sp<BasicClient>& value, int32_t cost,
2243        const std::set<String8>& conflictingKeys, int32_t priority, int32_t ownerId) {
2244
2245    return std::make_shared<resource_policy::ClientDescriptor<String8, sp<BasicClient>>>(
2246            key, value, cost, conflictingKeys, priority, ownerId);
2247}
2248
2249CameraService::DescriptorPtr CameraService::CameraClientManager::makeClientDescriptor(
2250        const sp<BasicClient>& value, const CameraService::DescriptorPtr& partial) {
2251    return makeClientDescriptor(partial->getKey(), value, partial->getCost(),
2252            partial->getConflicting(), partial->getPriority(), partial->getOwnerId());
2253}
2254
2255// ----------------------------------------------------------------------------
2256
2257static const int kDumpLockRetries = 50;
2258static const int kDumpLockSleep = 60000;
2259
2260static bool tryLock(Mutex& mutex)
2261{
2262    bool locked = false;
2263    for (int i = 0; i < kDumpLockRetries; ++i) {
2264        if (mutex.tryLock() == NO_ERROR) {
2265            locked = true;
2266            break;
2267        }
2268        usleep(kDumpLockSleep);
2269    }
2270    return locked;
2271}
2272
2273status_t CameraService::dump(int fd, const Vector<String16>& args) {
2274    ATRACE_CALL();
2275
2276    String8 result("Dump of the Camera Service:\n");
2277    if (checkCallingPermission(String16("android.permission.DUMP")) == false) {
2278        result = result.format("Permission Denial: "
2279                "can't dump CameraService from pid=%d, uid=%d\n",
2280                getCallingPid(),
2281                getCallingUid());
2282        write(fd, result.string(), result.size());
2283    } else {
2284        bool locked = tryLock(mServiceLock);
2285        // failed to lock - CameraService is probably deadlocked
2286        if (!locked) {
2287            result.append("CameraService may be deadlocked\n");
2288            write(fd, result.string(), result.size());
2289        }
2290
2291        bool hasClient = false;
2292        if (!mModule) {
2293            result = String8::format("No camera module available!\n");
2294            write(fd, result.string(), result.size());
2295
2296            // Dump event log for error information
2297            dumpEventLog(fd);
2298
2299            if (locked) mServiceLock.unlock();
2300            return NO_ERROR;
2301        }
2302
2303        result = String8::format("Camera module HAL API version: 0x%x\n", mModule->getHalApiVersion());
2304        result.appendFormat("Camera module API version: 0x%x\n", mModule->getModuleApiVersion());
2305        result.appendFormat("Camera module name: %s\n", mModule->getModuleName());
2306        result.appendFormat("Camera module author: %s\n", mModule->getModuleAuthor());
2307        result.appendFormat("Number of camera devices: %d\n", mNumberOfCameras);
2308        String8 activeClientString = mActiveClientManager.toString();
2309        result.appendFormat("Active Camera Clients:\n%s", activeClientString.string());
2310        result.appendFormat("Allowed users:\n%s\n", toString(mAllowedUsers).string());
2311
2312        sp<VendorTagDescriptor> desc = VendorTagDescriptor::getGlobalVendorTagDescriptor();
2313        if (desc == NULL) {
2314            result.appendFormat("Vendor tags left unimplemented.\n");
2315        } else {
2316            result.appendFormat("Vendor tag definitions:\n");
2317        }
2318
2319        write(fd, result.string(), result.size());
2320
2321        if (desc != NULL) {
2322            desc->dump(fd, /*verbosity*/2, /*indentation*/4);
2323        }
2324
2325        dumpEventLog(fd);
2326
2327        bool stateLocked = tryLock(mCameraStatesLock);
2328        if (!stateLocked) {
2329            result = String8::format("CameraStates in use, may be deadlocked\n");
2330            write(fd, result.string(), result.size());
2331        }
2332
2333        for (auto& state : mCameraStates) {
2334            String8 cameraId = state.first;
2335            result = String8::format("Camera %s information:\n", cameraId.string());
2336            camera_info info;
2337
2338            // TODO: Change getCameraInfo + HAL to use String cameraIds
2339            status_t rc = mModule->getCameraInfo(cameraIdToInt(cameraId), &info);
2340            if (rc != OK) {
2341                result.appendFormat("  Error reading static information!\n");
2342                write(fd, result.string(), result.size());
2343            } else {
2344                result.appendFormat("  Facing: %s\n",
2345                        info.facing == CAMERA_FACING_BACK ? "BACK" : "FRONT");
2346                result.appendFormat("  Orientation: %d\n", info.orientation);
2347                int deviceVersion;
2348                if (mModule->getModuleApiVersion() < CAMERA_MODULE_API_VERSION_2_0) {
2349                    deviceVersion = CAMERA_DEVICE_API_VERSION_1_0;
2350                } else {
2351                    deviceVersion = info.device_version;
2352                }
2353
2354                auto conflicting = state.second->getConflicting();
2355                result.appendFormat("  Resource Cost: %d\n", state.second->getCost());
2356                result.appendFormat("  Conflicting Devices:");
2357                for (auto& id : conflicting) {
2358                    result.appendFormat(" %s", id.string());
2359                }
2360                if (conflicting.size() == 0) {
2361                    result.appendFormat(" NONE");
2362                }
2363                result.appendFormat("\n");
2364
2365                result.appendFormat("  Device version: %#x\n", deviceVersion);
2366                if (deviceVersion >= CAMERA_DEVICE_API_VERSION_3_0) {
2367                    result.appendFormat("  Device static metadata:\n");
2368                    write(fd, result.string(), result.size());
2369                    dump_indented_camera_metadata(info.static_camera_characteristics,
2370                            fd, /*verbosity*/2, /*indentation*/4);
2371                } else {
2372                    write(fd, result.string(), result.size());
2373                }
2374
2375                CameraParameters p = state.second->getShimParams();
2376                if (!p.isEmpty()) {
2377                    result = String8::format("  Camera1 API shim is using parameters:\n        ");
2378                    write(fd, result.string(), result.size());
2379                    p.dump(fd, args);
2380                }
2381            }
2382
2383            auto clientDescriptor = mActiveClientManager.get(cameraId);
2384            if (clientDescriptor == nullptr) {
2385                result = String8::format("  Device %s is closed, no client instance\n",
2386                        cameraId.string());
2387                write(fd, result.string(), result.size());
2388                continue;
2389            }
2390            hasClient = true;
2391            result = String8::format("  Device %s is open. Client instance dump:\n\n",
2392                    cameraId.string());
2393            result.appendFormat("Client priority level: %d\n", clientDescriptor->getPriority());
2394            result.appendFormat("Client PID: %d\n", clientDescriptor->getOwnerId());
2395
2396            auto client = clientDescriptor->getValue();
2397            result.appendFormat("Client package: %s\n",
2398                    String8(client->getPackageName()).string());
2399            write(fd, result.string(), result.size());
2400
2401            client->dump(fd, args);
2402        }
2403
2404        if (stateLocked) mCameraStatesLock.unlock();
2405
2406        if (!hasClient) {
2407            result = String8::format("\nNo active camera clients yet.\n");
2408            write(fd, result.string(), result.size());
2409        }
2410
2411        if (locked) mServiceLock.unlock();
2412
2413        // Dump camera traces if there were any
2414        write(fd, "\n", 1);
2415        camera3::CameraTraces::dump(fd, args);
2416
2417        // change logging level
2418        int n = args.size();
2419        for (int i = 0; i + 1 < n; i++) {
2420            String16 verboseOption("-v");
2421            if (args[i] == verboseOption) {
2422                String8 levelStr(args[i+1]);
2423                int level = atoi(levelStr.string());
2424                result = String8::format("\nSetting log level to %d.\n", level);
2425                setLogLevel(level);
2426                write(fd, result.string(), result.size());
2427            }
2428        }
2429    }
2430    return NO_ERROR;
2431}
2432
2433void CameraService::dumpEventLog(int fd) {
2434    String8 result = String8("\nPrior client events (most recent at top):\n");
2435
2436    Mutex::Autolock l(mLogLock);
2437    for (const auto& msg : mEventLog) {
2438        result.appendFormat("  %s\n", msg.string());
2439    }
2440
2441    if (mEventLog.size() == DEFAULT_EVENT_LOG_LENGTH) {
2442        result.append("  ...\n");
2443    } else if (mEventLog.size() == 0) {
2444        result.append("  [no events yet]\n");
2445    }
2446    result.append("\n");
2447
2448    write(fd, result.string(), result.size());
2449}
2450
2451void CameraService::handleTorchClientBinderDied(const wp<IBinder> &who) {
2452    Mutex::Autolock al(mTorchClientMapMutex);
2453    for (size_t i = 0; i < mTorchClientMap.size(); i++) {
2454        if (mTorchClientMap[i] == who) {
2455            // turn off the torch mode that was turned on by dead client
2456            String8 cameraId = mTorchClientMap.keyAt(i);
2457            status_t res = mFlashlight->setTorchMode(cameraId, false);
2458            if (res) {
2459                ALOGE("%s: torch client died but couldn't turn off torch: "
2460                    "%s (%d)", __FUNCTION__, strerror(-res), res);
2461                return;
2462            }
2463            mTorchClientMap.removeItemsAt(i);
2464            break;
2465        }
2466    }
2467}
2468
2469/*virtual*/void CameraService::binderDied(const wp<IBinder> &who) {
2470
2471    /**
2472      * While tempting to promote the wp<IBinder> into a sp, it's actually not supported by the
2473      * binder driver
2474      */
2475
2476    logClientDied(getCallingPid(), String8("Binder died unexpectedly"));
2477
2478    // check torch client
2479    handleTorchClientBinderDied(who);
2480
2481    // check camera device client
2482    if(!evictClientIdByRemote(who)) {
2483        ALOGV("%s: Java client's binder death already cleaned up (normal case)", __FUNCTION__);
2484        return;
2485    }
2486
2487    ALOGE("%s: Java client's binder died, removing it from the list of active clients",
2488            __FUNCTION__);
2489}
2490
2491void CameraService::updateStatus(ICameraServiceListener::Status status, const String8& cameraId) {
2492    updateStatus(status, cameraId, {});
2493}
2494
2495void CameraService::updateStatus(ICameraServiceListener::Status status, const String8& cameraId,
2496        std::initializer_list<ICameraServiceListener::Status> rejectSourceStates) {
2497    // Do not lock mServiceLock here or can get into a deadlock from
2498    // connect() -> disconnect -> updateStatus
2499
2500    auto state = getCameraState(cameraId);
2501
2502    if (state == nullptr) {
2503        ALOGW("%s: Could not update the status for %s, no such device exists", __FUNCTION__,
2504                cameraId.string());
2505        return;
2506    }
2507
2508    // Update the status for this camera state, then send the onStatusChangedCallbacks to each
2509    // of the listeners with both the mStatusStatus and mStatusListenerLock held
2510    state->updateStatus(status, cameraId, rejectSourceStates, [this]
2511            (const String8& cameraId, ICameraServiceListener::Status status) {
2512
2513            if (status != ICameraServiceListener::STATUS_ENUMERATING) {
2514                // Update torch status if it has a flash unit.
2515                Mutex::Autolock al(mTorchStatusMutex);
2516                ICameraServiceListener::TorchStatus torchStatus;
2517                if (getTorchStatusLocked(cameraId, &torchStatus) !=
2518                        NAME_NOT_FOUND) {
2519                    ICameraServiceListener::TorchStatus newTorchStatus =
2520                            status == ICameraServiceListener::STATUS_PRESENT ?
2521                            ICameraServiceListener::TORCH_STATUS_AVAILABLE_OFF :
2522                            ICameraServiceListener::TORCH_STATUS_NOT_AVAILABLE;
2523                    if (torchStatus != newTorchStatus) {
2524                        onTorchStatusChangedLocked(cameraId, newTorchStatus);
2525                    }
2526                }
2527            }
2528
2529            Mutex::Autolock lock(mStatusListenerLock);
2530
2531            for (auto& listener : mListenerList) {
2532                // TODO: Refactor status listeners to use strings for Camera IDs and remove this.
2533                int id = cameraIdToInt(cameraId);
2534                if (id != -1) listener->onStatusChanged(status, id);
2535            }
2536        });
2537}
2538
2539void CameraService::updateProxyDeviceState(ICameraServiceProxy::CameraState newState,
2540        const String8& cameraId) {
2541    sp<ICameraServiceProxy> proxyBinder = getCameraServiceProxy();
2542    if (proxyBinder == nullptr) return;
2543    String16 id(cameraId);
2544    proxyBinder->notifyCameraState(id, newState);
2545}
2546
2547status_t CameraService::getTorchStatusLocked(
2548        const String8& cameraId,
2549        ICameraServiceListener::TorchStatus *status) const {
2550    if (!status) {
2551        return BAD_VALUE;
2552    }
2553    ssize_t index = mTorchStatusMap.indexOfKey(cameraId);
2554    if (index == NAME_NOT_FOUND) {
2555        // invalid camera ID or the camera doesn't have a flash unit
2556        return NAME_NOT_FOUND;
2557    }
2558
2559    *status = mTorchStatusMap.valueAt(index);
2560    return OK;
2561}
2562
2563status_t CameraService::setTorchStatusLocked(const String8& cameraId,
2564        ICameraServiceListener::TorchStatus status) {
2565    ssize_t index = mTorchStatusMap.indexOfKey(cameraId);
2566    if (index == NAME_NOT_FOUND) {
2567        return BAD_VALUE;
2568    }
2569    ICameraServiceListener::TorchStatus& item =
2570            mTorchStatusMap.editValueAt(index);
2571    item = status;
2572
2573    return OK;
2574}
2575
2576}; // namespace android
2577