Camera2Client.cpp revision 1824bd8d902a4427f46311f0c6e9f82eda607325
1/*
2 * Copyright (C) 2012 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 "Camera2Client"
18#define ATRACE_TAG ATRACE_TAG_CAMERA
19//#define LOG_NDEBUG 0
20
21#include <inttypes.h>
22#include <utils/Log.h>
23#include <utils/Trace.h>
24
25#include <cutils/properties.h>
26#include <gui/Surface.h>
27
28#include "api1/Camera2Client.h"
29
30#include "api1/client2/StreamingProcessor.h"
31#include "api1/client2/JpegProcessor.h"
32#include "api1/client2/CaptureSequencer.h"
33#include "api1/client2/CallbackProcessor.h"
34#include "api1/client2/ZslProcessor.h"
35#include "api1/client2/ZslProcessor3.h"
36
37#define ALOG1(...) ALOGD_IF(gLogLevel >= 1, __VA_ARGS__);
38#define ALOG2(...) ALOGD_IF(gLogLevel >= 2, __VA_ARGS__);
39
40namespace android {
41using namespace camera2;
42
43static int getCallingPid() {
44    return IPCThreadState::self()->getCallingPid();
45}
46
47// Interface used by CameraService
48
49Camera2Client::Camera2Client(const sp<CameraService>& cameraService,
50        const sp<ICameraClient>& cameraClient,
51        const String16& clientPackageName,
52        int cameraId,
53        int cameraFacing,
54        int clientPid,
55        uid_t clientUid,
56        int servicePid,
57        bool legacyMode):
58        Camera2ClientBase(cameraService, cameraClient, clientPackageName,
59                cameraId, cameraFacing, clientPid, clientUid, servicePid),
60        mParameters(cameraId, cameraFacing)
61{
62    ATRACE_CALL();
63
64    SharedParameters::Lock l(mParameters);
65    l.mParameters.state = Parameters::DISCONNECTED;
66
67    mLegacyMode = legacyMode;
68}
69
70status_t Camera2Client::initialize(camera_module_t *module)
71{
72    ATRACE_CALL();
73    ALOGV("%s: Initializing client for camera %d", __FUNCTION__, mCameraId);
74    status_t res;
75
76    res = Camera2ClientBase::initialize(module);
77    if (res != OK) {
78        return res;
79    }
80
81    {
82        SharedParameters::Lock l(mParameters);
83
84        res = l.mParameters.initialize(&(mDevice->info()), mDeviceVersion);
85        if (res != OK) {
86            ALOGE("%s: Camera %d: unable to build defaults: %s (%d)",
87                    __FUNCTION__, mCameraId, strerror(-res), res);
88            return NO_INIT;
89        }
90    }
91
92    String8 threadName;
93
94    mStreamingProcessor = new StreamingProcessor(this);
95    threadName = String8::format("C2-%d-StreamProc",
96            mCameraId);
97    mStreamingProcessor->run(threadName.string());
98
99    mFrameProcessor = new FrameProcessor(mDevice, this);
100    threadName = String8::format("C2-%d-FrameProc",
101            mCameraId);
102    mFrameProcessor->run(threadName.string());
103
104    mCaptureSequencer = new CaptureSequencer(this);
105    threadName = String8::format("C2-%d-CaptureSeq",
106            mCameraId);
107    mCaptureSequencer->run(threadName.string());
108
109    mJpegProcessor = new JpegProcessor(this, mCaptureSequencer);
110    threadName = String8::format("C2-%d-JpegProc",
111            mCameraId);
112    mJpegProcessor->run(threadName.string());
113
114    switch (mDeviceVersion) {
115        case CAMERA_DEVICE_API_VERSION_2_0: {
116            sp<ZslProcessor> zslProc =
117                    new ZslProcessor(this, mCaptureSequencer);
118            mZslProcessor = zslProc;
119            mZslProcessorThread = zslProc;
120            break;
121        }
122        case CAMERA_DEVICE_API_VERSION_3_0:
123        case CAMERA_DEVICE_API_VERSION_3_1:
124        case CAMERA_DEVICE_API_VERSION_3_2: {
125            sp<ZslProcessor3> zslProc =
126                    new ZslProcessor3(this, mCaptureSequencer);
127            mZslProcessor = zslProc;
128            mZslProcessorThread = zslProc;
129            break;
130        }
131        default:
132            break;
133    }
134    threadName = String8::format("C2-%d-ZslProc",
135            mCameraId);
136    mZslProcessorThread->run(threadName.string());
137
138    mCallbackProcessor = new CallbackProcessor(this);
139    threadName = String8::format("C2-%d-CallbkProc",
140            mCameraId);
141    mCallbackProcessor->run(threadName.string());
142
143    if (gLogLevel >= 1) {
144        SharedParameters::Lock l(mParameters);
145        ALOGD("%s: Default parameters converted from camera %d:", __FUNCTION__,
146              mCameraId);
147        ALOGD("%s", l.mParameters.paramsFlattened.string());
148    }
149
150    return OK;
151}
152
153Camera2Client::~Camera2Client() {
154    ATRACE_CALL();
155    ALOGV("~Camera2Client");
156
157    mDestructionStarted = true;
158
159    disconnect();
160
161    ALOGI("Camera %d: Closed", mCameraId);
162}
163
164status_t Camera2Client::dump(int fd, const Vector<String16>& args) {
165    String8 result;
166    result.appendFormat("Client2[%d] (%p) Client: %s PID: %d, dump:\n",
167            mCameraId,
168            getRemoteCallback()->asBinder().get(),
169            String8(mClientPackageName).string(),
170            mClientPid);
171    result.append("  State: ");
172#define CASE_APPEND_ENUM(x) case x: result.append(#x "\n"); break;
173
174    const Parameters& p = mParameters.unsafeAccess();
175
176    result.append(Parameters::getStateName(p.state));
177
178    result.append("\n  Current parameters:\n");
179    result.appendFormat("    Preview size: %d x %d\n",
180            p.previewWidth, p.previewHeight);
181    result.appendFormat("    Preview FPS range: %d - %d\n",
182            p.previewFpsRange[0], p.previewFpsRange[1]);
183    result.appendFormat("    Preview HAL pixel format: 0x%x\n",
184            p.previewFormat);
185    result.appendFormat("    Preview transform: %x\n",
186            p.previewTransform);
187    result.appendFormat("    Picture size: %d x %d\n",
188            p.pictureWidth, p.pictureHeight);
189    result.appendFormat("    Jpeg thumbnail size: %d x %d\n",
190            p.jpegThumbSize[0], p.jpegThumbSize[1]);
191    result.appendFormat("    Jpeg quality: %d, thumbnail quality: %d\n",
192            p.jpegQuality, p.jpegThumbQuality);
193    result.appendFormat("    Jpeg rotation: %d\n", p.jpegRotation);
194    result.appendFormat("    GPS tags %s\n",
195            p.gpsEnabled ? "enabled" : "disabled");
196    if (p.gpsEnabled) {
197        result.appendFormat("    GPS lat x long x alt: %f x %f x %f\n",
198                p.gpsCoordinates[0], p.gpsCoordinates[1],
199                p.gpsCoordinates[2]);
200        result.appendFormat("    GPS timestamp: %" PRId64 "\n",
201                p.gpsTimestamp);
202        result.appendFormat("    GPS processing method: %s\n",
203                p.gpsProcessingMethod.string());
204    }
205
206    result.append("    White balance mode: ");
207    switch (p.wbMode) {
208        CASE_APPEND_ENUM(ANDROID_CONTROL_AWB_MODE_AUTO)
209        CASE_APPEND_ENUM(ANDROID_CONTROL_AWB_MODE_INCANDESCENT)
210        CASE_APPEND_ENUM(ANDROID_CONTROL_AWB_MODE_FLUORESCENT)
211        CASE_APPEND_ENUM(ANDROID_CONTROL_AWB_MODE_WARM_FLUORESCENT)
212        CASE_APPEND_ENUM(ANDROID_CONTROL_AWB_MODE_DAYLIGHT)
213        CASE_APPEND_ENUM(ANDROID_CONTROL_AWB_MODE_CLOUDY_DAYLIGHT)
214        CASE_APPEND_ENUM(ANDROID_CONTROL_AWB_MODE_TWILIGHT)
215        CASE_APPEND_ENUM(ANDROID_CONTROL_AWB_MODE_SHADE)
216        default: result.append("UNKNOWN\n");
217    }
218
219    result.append("    Effect mode: ");
220    switch (p.effectMode) {
221        CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_OFF)
222        CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_MONO)
223        CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_NEGATIVE)
224        CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_SOLARIZE)
225        CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_SEPIA)
226        CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_POSTERIZE)
227        CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_WHITEBOARD)
228        CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_BLACKBOARD)
229        CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_AQUA)
230        default: result.append("UNKNOWN\n");
231    }
232
233    result.append("    Antibanding mode: ");
234    switch (p.antibandingMode) {
235        CASE_APPEND_ENUM(ANDROID_CONTROL_AE_ANTIBANDING_MODE_AUTO)
236        CASE_APPEND_ENUM(ANDROID_CONTROL_AE_ANTIBANDING_MODE_OFF)
237        CASE_APPEND_ENUM(ANDROID_CONTROL_AE_ANTIBANDING_MODE_50HZ)
238        CASE_APPEND_ENUM(ANDROID_CONTROL_AE_ANTIBANDING_MODE_60HZ)
239        default: result.append("UNKNOWN\n");
240    }
241
242    result.append("    Scene mode: ");
243    switch (p.sceneMode) {
244        case ANDROID_CONTROL_SCENE_MODE_DISABLED:
245            result.append("AUTO\n"); break;
246        CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_ACTION)
247        CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_PORTRAIT)
248        CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_LANDSCAPE)
249        CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_NIGHT)
250        CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_NIGHT_PORTRAIT)
251        CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_THEATRE)
252        CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_BEACH)
253        CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_SNOW)
254        CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_SUNSET)
255        CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_STEADYPHOTO)
256        CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_FIREWORKS)
257        CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_SPORTS)
258        CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_PARTY)
259        CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_CANDLELIGHT)
260        CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_BARCODE)
261        default: result.append("UNKNOWN\n");
262    }
263
264    result.append("    Flash mode: ");
265    switch (p.flashMode) {
266        CASE_APPEND_ENUM(Parameters::FLASH_MODE_OFF)
267        CASE_APPEND_ENUM(Parameters::FLASH_MODE_AUTO)
268        CASE_APPEND_ENUM(Parameters::FLASH_MODE_ON)
269        CASE_APPEND_ENUM(Parameters::FLASH_MODE_TORCH)
270        CASE_APPEND_ENUM(Parameters::FLASH_MODE_RED_EYE)
271        CASE_APPEND_ENUM(Parameters::FLASH_MODE_INVALID)
272        default: result.append("UNKNOWN\n");
273    }
274
275    result.append("    Focus mode: ");
276    switch (p.focusMode) {
277        CASE_APPEND_ENUM(Parameters::FOCUS_MODE_AUTO)
278        CASE_APPEND_ENUM(Parameters::FOCUS_MODE_MACRO)
279        CASE_APPEND_ENUM(Parameters::FOCUS_MODE_CONTINUOUS_VIDEO)
280        CASE_APPEND_ENUM(Parameters::FOCUS_MODE_CONTINUOUS_PICTURE)
281        CASE_APPEND_ENUM(Parameters::FOCUS_MODE_EDOF)
282        CASE_APPEND_ENUM(Parameters::FOCUS_MODE_INFINITY)
283        CASE_APPEND_ENUM(Parameters::FOCUS_MODE_FIXED)
284        CASE_APPEND_ENUM(Parameters::FOCUS_MODE_INVALID)
285        default: result.append("UNKNOWN\n");
286    }
287
288    result.append("   Focus state: ");
289    switch (p.focusState) {
290        CASE_APPEND_ENUM(ANDROID_CONTROL_AF_STATE_INACTIVE)
291        CASE_APPEND_ENUM(ANDROID_CONTROL_AF_STATE_PASSIVE_SCAN)
292        CASE_APPEND_ENUM(ANDROID_CONTROL_AF_STATE_PASSIVE_FOCUSED)
293        CASE_APPEND_ENUM(ANDROID_CONTROL_AF_STATE_PASSIVE_UNFOCUSED)
294        CASE_APPEND_ENUM(ANDROID_CONTROL_AF_STATE_ACTIVE_SCAN)
295        CASE_APPEND_ENUM(ANDROID_CONTROL_AF_STATE_FOCUSED_LOCKED)
296        CASE_APPEND_ENUM(ANDROID_CONTROL_AF_STATE_NOT_FOCUSED_LOCKED)
297        default: result.append("UNKNOWN\n");
298    }
299
300    result.append("    Focusing areas:\n");
301    for (size_t i = 0; i < p.focusingAreas.size(); i++) {
302        result.appendFormat("      [ (%d, %d, %d, %d), weight %d ]\n",
303                p.focusingAreas[i].left,
304                p.focusingAreas[i].top,
305                p.focusingAreas[i].right,
306                p.focusingAreas[i].bottom,
307                p.focusingAreas[i].weight);
308    }
309
310    result.appendFormat("    Exposure compensation index: %d\n",
311            p.exposureCompensation);
312
313    result.appendFormat("    AE lock %s, AWB lock %s\n",
314            p.autoExposureLock ? "enabled" : "disabled",
315            p.autoWhiteBalanceLock ? "enabled" : "disabled" );
316
317    result.appendFormat("    Metering areas:\n");
318    for (size_t i = 0; i < p.meteringAreas.size(); i++) {
319        result.appendFormat("      [ (%d, %d, %d, %d), weight %d ]\n",
320                p.meteringAreas[i].left,
321                p.meteringAreas[i].top,
322                p.meteringAreas[i].right,
323                p.meteringAreas[i].bottom,
324                p.meteringAreas[i].weight);
325    }
326
327    result.appendFormat("    Zoom index: %d\n", p.zoom);
328    result.appendFormat("    Video size: %d x %d\n", p.videoWidth,
329            p.videoHeight);
330
331    result.appendFormat("    Recording hint is %s\n",
332            p.recordingHint ? "set" : "not set");
333
334    result.appendFormat("    Video stabilization is %s\n",
335            p.videoStabilization ? "enabled" : "disabled");
336
337    result.appendFormat("    Selected still capture FPS range: %d - %d\n",
338            p.fastInfo.bestStillCaptureFpsRange[0],
339            p.fastInfo.bestStillCaptureFpsRange[1]);
340
341    result.append("  Current streams:\n");
342    result.appendFormat("    Preview stream ID: %d\n",
343            getPreviewStreamId());
344    result.appendFormat("    Capture stream ID: %d\n",
345            getCaptureStreamId());
346    result.appendFormat("    Recording stream ID: %d\n",
347            getRecordingStreamId());
348
349    result.append("  Quirks for this camera:\n");
350    bool haveQuirk = false;
351    if (p.quirks.triggerAfWithAuto) {
352        result.appendFormat("    triggerAfWithAuto\n");
353        haveQuirk = true;
354    }
355    if (p.quirks.useZslFormat) {
356        result.appendFormat("    useZslFormat\n");
357        haveQuirk = true;
358    }
359    if (p.quirks.meteringCropRegion) {
360        result.appendFormat("    meteringCropRegion\n");
361        haveQuirk = true;
362    }
363    if (p.quirks.partialResults) {
364        result.appendFormat("    usePartialResult\n");
365        haveQuirk = true;
366    }
367    if (!haveQuirk) {
368        result.appendFormat("    none\n");
369    }
370
371    write(fd, result.string(), result.size());
372
373    mStreamingProcessor->dump(fd, args);
374
375    mCaptureSequencer->dump(fd, args);
376
377    mFrameProcessor->dump(fd, args);
378
379    mZslProcessor->dump(fd, args);
380
381    return dumpDevice(fd, args);
382#undef CASE_APPEND_ENUM
383}
384
385// ICamera interface
386
387void Camera2Client::disconnect() {
388    ATRACE_CALL();
389    Mutex::Autolock icl(mBinderSerializationLock);
390
391    // Allow both client and the media server to disconnect at all times
392    int callingPid = getCallingPid();
393    if (callingPid != mClientPid && callingPid != mServicePid) return;
394
395    if (mDevice == 0) return;
396
397    ALOGV("Camera %d: Shutting down", mCameraId);
398
399    /**
400     * disconnect() cannot call any methods that might need to promote a
401     * wp<Camera2Client>, since disconnect can be called from the destructor, at
402     * which point all such promotions will fail.
403     */
404
405    stopPreviewL();
406
407    {
408        SharedParameters::Lock l(mParameters);
409        if (l.mParameters.state == Parameters::DISCONNECTED) return;
410        l.mParameters.state = Parameters::DISCONNECTED;
411    }
412
413    mStreamingProcessor->requestExit();
414    mFrameProcessor->requestExit();
415    mCaptureSequencer->requestExit();
416    mJpegProcessor->requestExit();
417    mZslProcessorThread->requestExit();
418    mCallbackProcessor->requestExit();
419
420    ALOGV("Camera %d: Waiting for threads", mCameraId);
421
422    mStreamingProcessor->join();
423    mFrameProcessor->join();
424    mCaptureSequencer->join();
425    mJpegProcessor->join();
426    mZslProcessorThread->join();
427    mCallbackProcessor->join();
428
429    ALOGV("Camera %d: Deleting streams", mCameraId);
430
431    mStreamingProcessor->deletePreviewStream();
432    mStreamingProcessor->deleteRecordingStream();
433    mJpegProcessor->deleteStream();
434    mCallbackProcessor->deleteStream();
435    mZslProcessor->deleteStream();
436
437    // Remove all ZSL stream state before disconnect; needed to work around b/15408128.
438    mZslProcessor->disconnect();
439
440    ALOGV("Camera %d: Disconnecting device", mCameraId);
441
442    mDevice->disconnect();
443
444    mDevice.clear();
445
446    CameraService::Client::disconnect();
447}
448
449status_t Camera2Client::connect(const sp<ICameraClient>& client) {
450    ATRACE_CALL();
451    ALOGV("%s: E", __FUNCTION__);
452    Mutex::Autolock icl(mBinderSerializationLock);
453
454    if (mClientPid != 0 && getCallingPid() != mClientPid) {
455        ALOGE("%s: Camera %d: Connection attempt from pid %d; "
456                "current locked to pid %d", __FUNCTION__,
457                mCameraId, getCallingPid(), mClientPid);
458        return BAD_VALUE;
459    }
460
461    mClientPid = getCallingPid();
462
463    mRemoteCallback = client;
464    mSharedCameraCallbacks = client;
465
466    return OK;
467}
468
469status_t Camera2Client::lock() {
470    ATRACE_CALL();
471    ALOGV("%s: E", __FUNCTION__);
472    Mutex::Autolock icl(mBinderSerializationLock);
473    ALOGV("%s: Camera %d: Lock call from pid %d; current client pid %d",
474            __FUNCTION__, mCameraId, getCallingPid(), mClientPid);
475
476    if (mClientPid == 0) {
477        mClientPid = getCallingPid();
478        return OK;
479    }
480
481    if (mClientPid != getCallingPid()) {
482        ALOGE("%s: Camera %d: Lock call from pid %d; currently locked to pid %d",
483                __FUNCTION__, mCameraId, getCallingPid(), mClientPid);
484        return EBUSY;
485    }
486
487    return OK;
488}
489
490status_t Camera2Client::unlock() {
491    ATRACE_CALL();
492    ALOGV("%s: E", __FUNCTION__);
493    Mutex::Autolock icl(mBinderSerializationLock);
494    ALOGV("%s: Camera %d: Unlock call from pid %d; current client pid %d",
495            __FUNCTION__, mCameraId, getCallingPid(), mClientPid);
496
497    if (mClientPid == getCallingPid()) {
498        SharedParameters::Lock l(mParameters);
499        if (l.mParameters.state == Parameters::RECORD ||
500                l.mParameters.state == Parameters::VIDEO_SNAPSHOT) {
501            ALOGD("Not allowed to unlock camera during recording.");
502            return INVALID_OPERATION;
503        }
504        mClientPid = 0;
505        mRemoteCallback.clear();
506        mSharedCameraCallbacks.clear();
507        return OK;
508    }
509
510    ALOGE("%s: Camera %d: Unlock call from pid %d; currently locked to pid %d",
511            __FUNCTION__, mCameraId, getCallingPid(), mClientPid);
512    return EBUSY;
513}
514
515status_t Camera2Client::setPreviewTarget(
516        const sp<IGraphicBufferProducer>& bufferProducer) {
517    ATRACE_CALL();
518    ALOGV("%s: E", __FUNCTION__);
519    Mutex::Autolock icl(mBinderSerializationLock);
520    status_t res;
521    if ( (res = checkPid(__FUNCTION__) ) != OK) return res;
522
523    sp<IBinder> binder;
524    sp<ANativeWindow> window;
525    if (bufferProducer != 0) {
526        binder = bufferProducer->asBinder();
527        // Using controlledByApp flag to ensure that the buffer queue remains in
528        // async mode for the old camera API, where many applications depend
529        // on that behavior.
530        window = new Surface(bufferProducer, /*controlledByApp*/ true);
531    }
532    return setPreviewWindowL(binder, window);
533}
534
535status_t Camera2Client::setPreviewWindowL(const sp<IBinder>& binder,
536        sp<ANativeWindow> window) {
537    ATRACE_CALL();
538    status_t res;
539
540    if (binder == mPreviewSurface) {
541        ALOGV("%s: Camera %d: New window is same as old window",
542                __FUNCTION__, mCameraId);
543        return NO_ERROR;
544    }
545
546    Parameters::State state;
547    {
548        SharedParameters::Lock l(mParameters);
549        state = l.mParameters.state;
550    }
551    switch (state) {
552        case Parameters::DISCONNECTED:
553        case Parameters::RECORD:
554        case Parameters::STILL_CAPTURE:
555        case Parameters::VIDEO_SNAPSHOT:
556            ALOGE("%s: Camera %d: Cannot set preview display while in state %s",
557                    __FUNCTION__, mCameraId,
558                    Parameters::getStateName(state));
559            return INVALID_OPERATION;
560        case Parameters::STOPPED:
561        case Parameters::WAITING_FOR_PREVIEW_WINDOW:
562            // OK
563            break;
564        case Parameters::PREVIEW:
565            // Already running preview - need to stop and create a new stream
566            res = stopStream();
567            if (res != OK) {
568                ALOGE("%s: Unable to stop preview to swap windows: %s (%d)",
569                        __FUNCTION__, strerror(-res), res);
570                return res;
571            }
572            state = Parameters::WAITING_FOR_PREVIEW_WINDOW;
573            break;
574    }
575
576    mPreviewSurface = binder;
577    res = mStreamingProcessor->setPreviewWindow(window);
578    if (res != OK) {
579        ALOGE("%s: Unable to set new preview window: %s (%d)",
580                __FUNCTION__, strerror(-res), res);
581        return res;
582    }
583
584    if (state == Parameters::WAITING_FOR_PREVIEW_WINDOW) {
585        SharedParameters::Lock l(mParameters);
586        l.mParameters.state = state;
587        return startPreviewL(l.mParameters, false);
588    }
589
590    return OK;
591}
592
593void Camera2Client::setPreviewCallbackFlag(int flag) {
594    ATRACE_CALL();
595    ALOGV("%s: Camera %d: Flag 0x%x", __FUNCTION__, mCameraId, flag);
596    Mutex::Autolock icl(mBinderSerializationLock);
597
598    if ( checkPid(__FUNCTION__) != OK) return;
599
600    SharedParameters::Lock l(mParameters);
601    setPreviewCallbackFlagL(l.mParameters, flag);
602}
603
604void Camera2Client::setPreviewCallbackFlagL(Parameters &params, int flag) {
605    status_t res = OK;
606
607    switch(params.state) {
608        case Parameters::STOPPED:
609        case Parameters::WAITING_FOR_PREVIEW_WINDOW:
610        case Parameters::PREVIEW:
611        case Parameters::STILL_CAPTURE:
612            // OK
613            break;
614        default:
615            if (flag & CAMERA_FRAME_CALLBACK_FLAG_ENABLE_MASK) {
616                ALOGE("%s: Camera %d: Can't use preview callbacks "
617                        "in state %d", __FUNCTION__, mCameraId, params.state);
618                return;
619            }
620    }
621
622    if (flag & CAMERA_FRAME_CALLBACK_FLAG_ONE_SHOT_MASK) {
623        ALOGV("%s: setting oneshot", __FUNCTION__);
624        params.previewCallbackOneShot = true;
625    }
626    if (params.previewCallbackFlags != (uint32_t)flag) {
627
628        if (params.previewCallbackSurface && flag != CAMERA_FRAME_CALLBACK_FLAG_NOOP) {
629            // Disable any existing preview callback window when enabling
630            // preview callback flags
631            res = mCallbackProcessor->setCallbackWindow(NULL);
632            if (res != OK) {
633                ALOGE("%s: Camera %d: Unable to clear preview callback surface:"
634                        " %s (%d)", __FUNCTION__, mCameraId, strerror(-res), res);
635                return;
636            }
637            params.previewCallbackSurface = false;
638        }
639
640        params.previewCallbackFlags = flag;
641
642        if (params.state == Parameters::PREVIEW) {
643            res = startPreviewL(params, true);
644            if (res != OK) {
645                ALOGE("%s: Camera %d: Unable to refresh request in state %s",
646                        __FUNCTION__, mCameraId,
647                        Parameters::getStateName(params.state));
648            }
649        }
650    }
651}
652
653status_t Camera2Client::setPreviewCallbackTarget(
654        const sp<IGraphicBufferProducer>& callbackProducer) {
655    ATRACE_CALL();
656    ALOGV("%s: E", __FUNCTION__);
657    Mutex::Autolock icl(mBinderSerializationLock);
658    status_t res;
659    if ( (res = checkPid(__FUNCTION__) ) != OK) return res;
660
661    sp<ANativeWindow> window;
662    if (callbackProducer != 0) {
663        window = new Surface(callbackProducer);
664    }
665
666    res = mCallbackProcessor->setCallbackWindow(window);
667    if (res != OK) {
668        ALOGE("%s: Camera %d: Unable to set preview callback surface: %s (%d)",
669                __FUNCTION__, mCameraId, strerror(-res), res);
670        return res;
671    }
672
673    SharedParameters::Lock l(mParameters);
674
675    if (window != NULL) {
676        // Disable traditional callbacks when a valid callback target is given
677        l.mParameters.previewCallbackFlags = CAMERA_FRAME_CALLBACK_FLAG_NOOP;
678        l.mParameters.previewCallbackOneShot = false;
679        l.mParameters.previewCallbackSurface = true;
680    } else {
681        // Disable callback target if given a NULL interface.
682        l.mParameters.previewCallbackSurface = false;
683    }
684
685    switch(l.mParameters.state) {
686        case Parameters::PREVIEW:
687            res = startPreviewL(l.mParameters, true);
688            break;
689        case Parameters::RECORD:
690        case Parameters::VIDEO_SNAPSHOT:
691            res = startRecordingL(l.mParameters, true);
692            break;
693        default:
694            break;
695    }
696    if (res != OK) {
697        ALOGE("%s: Camera %d: Unable to refresh request in state %s",
698                __FUNCTION__, mCameraId,
699                Parameters::getStateName(l.mParameters.state));
700    }
701
702    return OK;
703}
704
705
706status_t Camera2Client::startPreview() {
707    ATRACE_CALL();
708    ALOGV("%s: E", __FUNCTION__);
709    Mutex::Autolock icl(mBinderSerializationLock);
710    status_t res;
711    if ( (res = checkPid(__FUNCTION__) ) != OK) return res;
712    SharedParameters::Lock l(mParameters);
713    return startPreviewL(l.mParameters, false);
714}
715
716status_t Camera2Client::startPreviewL(Parameters &params, bool restart) {
717    ATRACE_CALL();
718    status_t res;
719
720    ALOGV("%s: state == %d, restart = %d", __FUNCTION__, params.state, restart);
721
722    if ( (params.state == Parameters::PREVIEW ||
723                    params.state == Parameters::RECORD ||
724                    params.state == Parameters::VIDEO_SNAPSHOT)
725            && !restart) {
726        // Succeed attempt to re-enter a streaming state
727        ALOGI("%s: Camera %d: Preview already active, ignoring restart",
728                __FUNCTION__, mCameraId);
729        return OK;
730    }
731    if (params.state > Parameters::PREVIEW && !restart) {
732        ALOGE("%s: Can't start preview in state %s",
733                __FUNCTION__,
734                Parameters::getStateName(params.state));
735        return INVALID_OPERATION;
736    }
737
738    if (!mStreamingProcessor->haveValidPreviewWindow()) {
739        params.state = Parameters::WAITING_FOR_PREVIEW_WINDOW;
740        return OK;
741    }
742    params.state = Parameters::STOPPED;
743    int lastPreviewStreamId = mStreamingProcessor->getPreviewStreamId();
744
745    res = mStreamingProcessor->updatePreviewStream(params);
746    if (res != OK) {
747        ALOGE("%s: Camera %d: Unable to update preview stream: %s (%d)",
748                __FUNCTION__, mCameraId, strerror(-res), res);
749        return res;
750    }
751
752    bool previewStreamChanged = mStreamingProcessor->getPreviewStreamId() != lastPreviewStreamId;
753
754    // We could wait to create the JPEG output stream until first actual use
755    // (first takePicture call). However, this would substantially increase the
756    // first capture latency on HAL3 devices, and potentially on some HAL2
757    // devices. So create it unconditionally at preview start. As a drawback,
758    // this increases gralloc memory consumption for applications that don't
759    // ever take a picture.
760    // TODO: Find a better compromise, though this likely would involve HAL
761    // changes.
762    int lastJpegStreamId = mJpegProcessor->getStreamId();
763    res = updateProcessorStream(mJpegProcessor, params);
764    if (res != OK) {
765        ALOGE("%s: Camera %d: Can't pre-configure still image "
766                "stream: %s (%d)",
767                __FUNCTION__, mCameraId, strerror(-res), res);
768        return res;
769    }
770    bool jpegStreamChanged = mJpegProcessor->getStreamId() != lastJpegStreamId;
771
772    Vector<int32_t> outputStreams;
773    bool callbacksEnabled = (params.previewCallbackFlags &
774            CAMERA_FRAME_CALLBACK_FLAG_ENABLE_MASK) ||
775            params.previewCallbackSurface;
776
777    if (callbacksEnabled) {
778        // Can't have recording stream hanging around when enabling callbacks,
779        // since it exceeds the max stream count on some devices.
780        if (mStreamingProcessor->getRecordingStreamId() != NO_STREAM) {
781            ALOGV("%s: Camera %d: Clearing out recording stream before "
782                    "creating callback stream", __FUNCTION__, mCameraId);
783            res = mStreamingProcessor->stopStream();
784            if (res != OK) {
785                ALOGE("%s: Camera %d: Can't stop streaming to delete "
786                        "recording stream", __FUNCTION__, mCameraId);
787                return res;
788            }
789            res = mStreamingProcessor->deleteRecordingStream();
790            if (res != OK) {
791                ALOGE("%s: Camera %d: Unable to delete recording stream before "
792                        "enabling callbacks: %s (%d)", __FUNCTION__, mCameraId,
793                        strerror(-res), res);
794                return res;
795            }
796        }
797
798        res = mCallbackProcessor->updateStream(params);
799        if (res != OK) {
800            ALOGE("%s: Camera %d: Unable to update callback stream: %s (%d)",
801                    __FUNCTION__, mCameraId, strerror(-res), res);
802            return res;
803        }
804        outputStreams.push(getCallbackStreamId());
805    } else if (previewStreamChanged && mCallbackProcessor->getStreamId() != NO_STREAM) {
806        /**
807         * Delete the unused callback stream when preview stream is changed and
808         * preview is not enabled. Don't need stop preview stream as preview is in
809         * STOPPED state now.
810         */
811        ALOGV("%s: Camera %d: Delete unused preview callback stream.",  __FUNCTION__, mCameraId);
812        res = mCallbackProcessor->deleteStream();
813        if (res != OK) {
814            ALOGE("%s: Camera %d: Unable to delete callback stream %s (%d)",
815                    __FUNCTION__, mCameraId, strerror(-res), res);
816            return res;
817        }
818    }
819
820    if (params.zslMode && !params.recordingHint &&
821            getRecordingStreamId() == NO_STREAM) {
822        res = updateProcessorStream(mZslProcessor, params);
823        if (res != OK) {
824            ALOGE("%s: Camera %d: Unable to update ZSL stream: %s (%d)",
825                    __FUNCTION__, mCameraId, strerror(-res), res);
826            return res;
827        }
828
829        if (jpegStreamChanged) {
830            ALOGV("%s: Camera %d: Clear ZSL buffer queue when Jpeg size is changed",
831                    __FUNCTION__, mCameraId);
832            mZslProcessor->clearZslQueue();
833        }
834        outputStreams.push(getZslStreamId());
835    } else {
836        mZslProcessor->deleteStream();
837    }
838
839    outputStreams.push(getPreviewStreamId());
840
841    if (!params.recordingHint) {
842        if (!restart) {
843            res = mStreamingProcessor->updatePreviewRequest(params);
844            if (res != OK) {
845                ALOGE("%s: Camera %d: Can't set up preview request: "
846                        "%s (%d)", __FUNCTION__, mCameraId,
847                        strerror(-res), res);
848                return res;
849            }
850        }
851        res = mStreamingProcessor->startStream(StreamingProcessor::PREVIEW,
852                outputStreams);
853    } else {
854        if (!restart) {
855            res = mStreamingProcessor->updateRecordingRequest(params);
856            if (res != OK) {
857                ALOGE("%s: Camera %d: Can't set up preview request with "
858                        "record hint: %s (%d)", __FUNCTION__, mCameraId,
859                        strerror(-res), res);
860                return res;
861            }
862        }
863        res = mStreamingProcessor->startStream(StreamingProcessor::RECORD,
864                outputStreams);
865    }
866    if (res != OK) {
867        ALOGE("%s: Camera %d: Unable to start streaming preview: %s (%d)",
868                __FUNCTION__, mCameraId, strerror(-res), res);
869        return res;
870    }
871
872    params.state = Parameters::PREVIEW;
873    return OK;
874}
875
876void Camera2Client::stopPreview() {
877    ATRACE_CALL();
878    ALOGV("%s: E", __FUNCTION__);
879    Mutex::Autolock icl(mBinderSerializationLock);
880    status_t res;
881    if ( (res = checkPid(__FUNCTION__) ) != OK) return;
882    stopPreviewL();
883}
884
885void Camera2Client::stopPreviewL() {
886    ATRACE_CALL();
887    status_t res;
888    const nsecs_t kStopCaptureTimeout = 3000000000LL; // 3 seconds
889    Parameters::State state;
890    {
891        SharedParameters::Lock l(mParameters);
892        state = l.mParameters.state;
893    }
894
895    switch (state) {
896        case Parameters::DISCONNECTED:
897            // Nothing to do.
898            break;
899        case Parameters::STOPPED:
900        case Parameters::VIDEO_SNAPSHOT:
901        case Parameters::STILL_CAPTURE:
902            mCaptureSequencer->waitUntilIdle(kStopCaptureTimeout);
903            // no break
904        case Parameters::RECORD:
905        case Parameters::PREVIEW:
906            syncWithDevice();
907            res = stopStream();
908            if (res != OK) {
909                ALOGE("%s: Camera %d: Can't stop streaming: %s (%d)",
910                        __FUNCTION__, mCameraId, strerror(-res), res);
911            }
912            res = mDevice->waitUntilDrained();
913            if (res != OK) {
914                ALOGE("%s: Camera %d: Waiting to stop streaming failed: %s (%d)",
915                        __FUNCTION__, mCameraId, strerror(-res), res);
916            }
917            // Clean up recording stream
918            res = mStreamingProcessor->deleteRecordingStream();
919            if (res != OK) {
920                ALOGE("%s: Camera %d: Unable to delete recording stream before "
921                        "stop preview: %s (%d)",
922                        __FUNCTION__, mCameraId, strerror(-res), res);
923            }
924            {
925                // Ideally we should recover the override after recording stopped, but
926                // right now recording stream will live until here, so we are forced to
927                // recover here. TODO: find a better way to handle that (b/17495165)
928                SharedParameters::Lock l(mParameters);
929                l.mParameters.recoverOverriddenJpegSize();
930            }
931            // no break
932        case Parameters::WAITING_FOR_PREVIEW_WINDOW: {
933            SharedParameters::Lock l(mParameters);
934            l.mParameters.state = Parameters::STOPPED;
935            commandStopFaceDetectionL(l.mParameters);
936            break;
937        }
938        default:
939            ALOGE("%s: Camera %d: Unknown state %d", __FUNCTION__, mCameraId,
940                    state);
941    }
942}
943
944bool Camera2Client::previewEnabled() {
945    ATRACE_CALL();
946    Mutex::Autolock icl(mBinderSerializationLock);
947    status_t res;
948    if ( (res = checkPid(__FUNCTION__) ) != OK) return false;
949
950    SharedParameters::Lock l(mParameters);
951    return l.mParameters.state == Parameters::PREVIEW;
952}
953
954status_t Camera2Client::storeMetaDataInBuffers(bool enabled) {
955    ATRACE_CALL();
956    Mutex::Autolock icl(mBinderSerializationLock);
957    status_t res;
958    if ( (res = checkPid(__FUNCTION__) ) != OK) return res;
959
960    SharedParameters::Lock l(mParameters);
961    switch (l.mParameters.state) {
962        case Parameters::RECORD:
963        case Parameters::VIDEO_SNAPSHOT:
964            ALOGE("%s: Camera %d: Can't be called in state %s",
965                    __FUNCTION__, mCameraId,
966                    Parameters::getStateName(l.mParameters.state));
967            return INVALID_OPERATION;
968        default:
969            // OK
970            break;
971    }
972
973    l.mParameters.storeMetadataInBuffers = enabled;
974
975    return OK;
976}
977
978status_t Camera2Client::startRecording() {
979    ATRACE_CALL();
980    ALOGV("%s: E", __FUNCTION__);
981    Mutex::Autolock icl(mBinderSerializationLock);
982    status_t res;
983    if ( (res = checkPid(__FUNCTION__) ) != OK) return res;
984    SharedParameters::Lock l(mParameters);
985
986    return startRecordingL(l.mParameters, false);
987}
988
989status_t Camera2Client::startRecordingL(Parameters &params, bool restart) {
990    status_t res;
991
992    ALOGV("%s: state == %d, restart = %d", __FUNCTION__, params.state, restart);
993
994    switch (params.state) {
995        case Parameters::STOPPED:
996            res = startPreviewL(params, false);
997            if (res != OK) return res;
998            break;
999        case Parameters::PREVIEW:
1000            // Ready to go
1001            break;
1002        case Parameters::RECORD:
1003        case Parameters::VIDEO_SNAPSHOT:
1004            // OK to call this when recording is already on, just skip unless
1005            // we're looking to restart
1006            if (!restart) return OK;
1007            break;
1008        default:
1009            ALOGE("%s: Camera %d: Can't start recording in state %s",
1010                    __FUNCTION__, mCameraId,
1011                    Parameters::getStateName(params.state));
1012            return INVALID_OPERATION;
1013    };
1014
1015    if (!params.storeMetadataInBuffers) {
1016        ALOGE("%s: Camera %d: Recording only supported in metadata mode, but "
1017                "non-metadata recording mode requested!", __FUNCTION__,
1018                mCameraId);
1019        return INVALID_OPERATION;
1020    }
1021
1022    if (!restart) {
1023        mCameraService->playSound(CameraService::SOUND_RECORDING);
1024        mStreamingProcessor->updateRecordingRequest(params);
1025        if (res != OK) {
1026            ALOGE("%s: Camera %d: Unable to update recording request: %s (%d)",
1027                    __FUNCTION__, mCameraId, strerror(-res), res);
1028            return res;
1029        }
1030    }
1031
1032    // Not all devices can support a preview callback stream and a recording
1033    // stream at the same time, so assume none of them can.
1034    if (mCallbackProcessor->getStreamId() != NO_STREAM) {
1035        ALOGV("%s: Camera %d: Clearing out callback stream before "
1036                "creating recording stream", __FUNCTION__, mCameraId);
1037        res = mStreamingProcessor->stopStream();
1038        if (res != OK) {
1039            ALOGE("%s: Camera %d: Can't stop streaming to delete callback stream",
1040                    __FUNCTION__, mCameraId);
1041            return res;
1042        }
1043        res = mCallbackProcessor->deleteStream();
1044        if (res != OK) {
1045            ALOGE("%s: Camera %d: Unable to delete callback stream before "
1046                    "record: %s (%d)", __FUNCTION__, mCameraId,
1047                    strerror(-res), res);
1048            return res;
1049        }
1050    }
1051
1052    if (mZslProcessor->getStreamId() != NO_STREAM) {
1053        ALOGV("%s: Camera %d: Clearing out zsl stream before "
1054                "creating recording stream", __FUNCTION__, mCameraId);
1055        res = mStreamingProcessor->stopStream();
1056        if (res != OK) {
1057            ALOGE("%s: Camera %d: Can't stop streaming to delete callback stream",
1058                    __FUNCTION__, mCameraId);
1059            return res;
1060        }
1061        res = mDevice->waitUntilDrained();
1062        if (res != OK) {
1063            ALOGE("%s: Camera %d: Waiting to stop streaming failed: %s (%d)",
1064                    __FUNCTION__, mCameraId, strerror(-res), res);
1065        }
1066        res = mZslProcessor->clearZslQueue();
1067        if (res != OK) {
1068            ALOGE("%s: Camera %d: Can't clear zsl queue",
1069                    __FUNCTION__, mCameraId);
1070            return res;
1071        }
1072        res = mZslProcessor->deleteStream();
1073        if (res != OK) {
1074            ALOGE("%s: Camera %d: Unable to delete zsl stream before "
1075                    "record: %s (%d)", __FUNCTION__, mCameraId,
1076                    strerror(-res), res);
1077            return res;
1078        }
1079    }
1080
1081    // Disable callbacks if they're enabled; can't record and use callbacks,
1082    // and we can't fail record start without stagefright asserting.
1083    params.previewCallbackFlags = 0;
1084
1085    bool recordingStreamNeedsUpdate;
1086    res = mStreamingProcessor->recordingStreamNeedsUpdate(params, &recordingStreamNeedsUpdate);
1087    if (res != OK) {
1088        ALOGE("%s: Camera %d: Can't query recording stream",
1089                __FUNCTION__, mCameraId);
1090        return res;
1091    }
1092
1093    if (recordingStreamNeedsUpdate) {
1094        // Need to stop stream here so updateProcessorStream won't trigger configureStream
1095        // Right now camera device cannot handle configureStream failure gracefully
1096        // when device is streaming
1097        res = mStreamingProcessor->stopStream();
1098        if (res != OK) {
1099            ALOGE("%s: Camera %d: Can't stop streaming to update record stream",
1100                    __FUNCTION__, mCameraId);
1101            return res;
1102        }
1103        res = mDevice->waitUntilDrained();
1104        if (res != OK) {
1105            ALOGE("%s: Camera %d: Waiting to stop streaming failed: %s (%d)",
1106                    __FUNCTION__, mCameraId, strerror(-res), res);
1107        }
1108        res = updateProcessorStream<
1109                StreamingProcessor,
1110                &StreamingProcessor::updateRecordingStream>(mStreamingProcessor,
1111                                                            params);
1112
1113        if (res != OK) {
1114            ALOGE("%s: Camera %d: Unable to update recording stream: %s (%d)",
1115                    __FUNCTION__, mCameraId, strerror(-res), res);
1116            return res;
1117        }
1118    }
1119
1120    Vector<int32_t> outputStreams;
1121    outputStreams.push(getPreviewStreamId());
1122    outputStreams.push(getRecordingStreamId());
1123
1124    res = mStreamingProcessor->startStream(StreamingProcessor::RECORD,
1125            outputStreams);
1126
1127    // startStream might trigger a configureStream call and device might fail
1128    // configureStream due to jpeg size > video size. Try again with jpeg size overridden
1129    // to video size.
1130    if (res == BAD_VALUE) {
1131        overrideVideoSnapshotSize(params);
1132        res = mStreamingProcessor->startStream(StreamingProcessor::RECORD,
1133                outputStreams);
1134    }
1135
1136    if (res != OK) {
1137        ALOGE("%s: Camera %d: Unable to start recording stream: %s (%d)",
1138                __FUNCTION__, mCameraId, strerror(-res), res);
1139        return res;
1140    }
1141
1142    if (params.state < Parameters::RECORD) {
1143        params.state = Parameters::RECORD;
1144    }
1145
1146    return OK;
1147}
1148
1149void Camera2Client::stopRecording() {
1150    ATRACE_CALL();
1151    ALOGV("%s: E", __FUNCTION__);
1152    Mutex::Autolock icl(mBinderSerializationLock);
1153    SharedParameters::Lock l(mParameters);
1154
1155    status_t res;
1156    if ( (res = checkPid(__FUNCTION__) ) != OK) return;
1157
1158    switch (l.mParameters.state) {
1159        case Parameters::RECORD:
1160            // OK to stop
1161            break;
1162        case Parameters::STOPPED:
1163        case Parameters::PREVIEW:
1164        case Parameters::STILL_CAPTURE:
1165        case Parameters::VIDEO_SNAPSHOT:
1166        default:
1167            ALOGE("%s: Camera %d: Can't stop recording in state %s",
1168                    __FUNCTION__, mCameraId,
1169                    Parameters::getStateName(l.mParameters.state));
1170            return;
1171    };
1172
1173    mCameraService->playSound(CameraService::SOUND_RECORDING);
1174
1175    res = startPreviewL(l.mParameters, true);
1176    if (res != OK) {
1177        ALOGE("%s: Camera %d: Unable to return to preview",
1178                __FUNCTION__, mCameraId);
1179    }
1180}
1181
1182bool Camera2Client::recordingEnabled() {
1183    ATRACE_CALL();
1184    Mutex::Autolock icl(mBinderSerializationLock);
1185
1186    if ( checkPid(__FUNCTION__) != OK) return false;
1187
1188    return recordingEnabledL();
1189}
1190
1191bool Camera2Client::recordingEnabledL() {
1192    ATRACE_CALL();
1193    SharedParameters::Lock l(mParameters);
1194
1195    return (l.mParameters.state == Parameters::RECORD
1196            || l.mParameters.state == Parameters::VIDEO_SNAPSHOT);
1197}
1198
1199void Camera2Client::releaseRecordingFrame(const sp<IMemory>& mem) {
1200    ATRACE_CALL();
1201    Mutex::Autolock icl(mBinderSerializationLock);
1202    if ( checkPid(__FUNCTION__) != OK) return;
1203
1204    mStreamingProcessor->releaseRecordingFrame(mem);
1205}
1206
1207status_t Camera2Client::autoFocus() {
1208    ATRACE_CALL();
1209    Mutex::Autolock icl(mBinderSerializationLock);
1210    ALOGV("%s: Camera %d", __FUNCTION__, mCameraId);
1211    status_t res;
1212    if ( (res = checkPid(__FUNCTION__) ) != OK) return res;
1213
1214    int triggerId;
1215    bool notifyImmediately = false;
1216    bool notifySuccess = false;
1217    {
1218        SharedParameters::Lock l(mParameters);
1219        if (l.mParameters.state < Parameters::PREVIEW) {
1220            ALOGE("%s: Camera %d: Call autoFocus when preview is inactive (state = %d).",
1221                    __FUNCTION__, mCameraId, l.mParameters.state);
1222            return INVALID_OPERATION;
1223        }
1224
1225        /**
1226          * If the camera does not support auto-focus, it is a no-op and
1227          * onAutoFocus(boolean, Camera) callback will be called immediately
1228          * with a fake value of success set to true.
1229          *
1230          * Similarly, if focus mode is set to INFINITY, there's no reason to
1231          * bother the HAL.
1232          */
1233        if (l.mParameters.focusMode == Parameters::FOCUS_MODE_FIXED ||
1234                l.mParameters.focusMode == Parameters::FOCUS_MODE_INFINITY) {
1235            notifyImmediately = true;
1236            notifySuccess = true;
1237        }
1238        /**
1239         * If we're in CAF mode, and AF has already been locked, just fire back
1240         * the callback right away; the HAL would not send a notification since
1241         * no state change would happen on a AF trigger.
1242         */
1243        if ( (l.mParameters.focusMode == Parameters::FOCUS_MODE_CONTINUOUS_PICTURE ||
1244                l.mParameters.focusMode == Parameters::FOCUS_MODE_CONTINUOUS_VIDEO) &&
1245                l.mParameters.focusState == ANDROID_CONTROL_AF_STATE_FOCUSED_LOCKED ) {
1246            notifyImmediately = true;
1247            notifySuccess = true;
1248        }
1249        /**
1250         * Send immediate notification back to client
1251         */
1252        if (notifyImmediately) {
1253            SharedCameraCallbacks::Lock l(mSharedCameraCallbacks);
1254            if (l.mRemoteCallback != 0) {
1255                l.mRemoteCallback->notifyCallback(CAMERA_MSG_FOCUS,
1256                        notifySuccess ? 1 : 0, 0);
1257            }
1258            return OK;
1259        }
1260        /**
1261         * Handle quirk mode for AF in scene modes
1262         */
1263        if (l.mParameters.quirks.triggerAfWithAuto &&
1264                l.mParameters.sceneMode != ANDROID_CONTROL_SCENE_MODE_DISABLED &&
1265                l.mParameters.focusMode != Parameters::FOCUS_MODE_AUTO &&
1266                !l.mParameters.focusingAreas[0].isEmpty()) {
1267            ALOGV("%s: Quirk: Switching from focusMode %d to AUTO",
1268                    __FUNCTION__, l.mParameters.focusMode);
1269            l.mParameters.shadowFocusMode = l.mParameters.focusMode;
1270            l.mParameters.focusMode = Parameters::FOCUS_MODE_AUTO;
1271            updateRequests(l.mParameters);
1272        }
1273
1274        l.mParameters.currentAfTriggerId = ++l.mParameters.afTriggerCounter;
1275        triggerId = l.mParameters.currentAfTriggerId;
1276    }
1277    ATRACE_ASYNC_BEGIN(kAutofocusLabel, triggerId);
1278
1279    syncWithDevice();
1280
1281    mDevice->triggerAutofocus(triggerId);
1282
1283    return OK;
1284}
1285
1286status_t Camera2Client::cancelAutoFocus() {
1287    ATRACE_CALL();
1288    Mutex::Autolock icl(mBinderSerializationLock);
1289    ALOGV("%s: Camera %d", __FUNCTION__, mCameraId);
1290    status_t res;
1291    if ( (res = checkPid(__FUNCTION__) ) != OK) return res;
1292
1293    int triggerId;
1294    {
1295        SharedParameters::Lock l(mParameters);
1296        // Canceling does nothing in FIXED or INFINITY modes
1297        if (l.mParameters.focusMode == Parameters::FOCUS_MODE_FIXED ||
1298                l.mParameters.focusMode == Parameters::FOCUS_MODE_INFINITY) {
1299            return OK;
1300        }
1301
1302        // An active AF trigger is canceled
1303        if (l.mParameters.afTriggerCounter == l.mParameters.currentAfTriggerId) {
1304            ATRACE_ASYNC_END(kAutofocusLabel, l.mParameters.currentAfTriggerId);
1305        }
1306
1307        triggerId = ++l.mParameters.afTriggerCounter;
1308
1309        // When using triggerAfWithAuto quirk, may need to reset focus mode to
1310        // the real state at this point. No need to cancel explicitly if
1311        // changing the AF mode.
1312        if (l.mParameters.shadowFocusMode != Parameters::FOCUS_MODE_INVALID) {
1313            ALOGV("%s: Quirk: Restoring focus mode to %d", __FUNCTION__,
1314                    l.mParameters.shadowFocusMode);
1315            l.mParameters.focusMode = l.mParameters.shadowFocusMode;
1316            l.mParameters.shadowFocusMode = Parameters::FOCUS_MODE_INVALID;
1317            updateRequests(l.mParameters);
1318
1319            return OK;
1320        }
1321        if (l.mParameters.zslMode) {
1322            mZslProcessor->clearZslQueue();
1323        }
1324    }
1325    syncWithDevice();
1326
1327    mDevice->triggerCancelAutofocus(triggerId);
1328
1329    return OK;
1330}
1331
1332status_t Camera2Client::takePicture(int msgType) {
1333    ATRACE_CALL();
1334    Mutex::Autolock icl(mBinderSerializationLock);
1335    status_t res;
1336    if ( (res = checkPid(__FUNCTION__) ) != OK) return res;
1337
1338    int takePictureCounter;
1339    {
1340        SharedParameters::Lock l(mParameters);
1341        switch (l.mParameters.state) {
1342            case Parameters::DISCONNECTED:
1343            case Parameters::STOPPED:
1344            case Parameters::WAITING_FOR_PREVIEW_WINDOW:
1345                ALOGE("%s: Camera %d: Cannot take picture without preview enabled",
1346                        __FUNCTION__, mCameraId);
1347                return INVALID_OPERATION;
1348            case Parameters::PREVIEW:
1349                // Good to go for takePicture
1350                res = commandStopFaceDetectionL(l.mParameters);
1351                if (res != OK) {
1352                    ALOGE("%s: Camera %d: Unable to stop face detection for still capture",
1353                            __FUNCTION__, mCameraId);
1354                    return res;
1355                }
1356                l.mParameters.state = Parameters::STILL_CAPTURE;
1357                break;
1358            case Parameters::RECORD:
1359                // Good to go for video snapshot
1360                l.mParameters.state = Parameters::VIDEO_SNAPSHOT;
1361                break;
1362            case Parameters::STILL_CAPTURE:
1363            case Parameters::VIDEO_SNAPSHOT:
1364                ALOGE("%s: Camera %d: Already taking a picture",
1365                        __FUNCTION__, mCameraId);
1366                return INVALID_OPERATION;
1367        }
1368
1369        ALOGV("%s: Camera %d: Starting picture capture", __FUNCTION__, mCameraId);
1370
1371        int lastJpegStreamId = mJpegProcessor->getStreamId();
1372        res = updateProcessorStream(mJpegProcessor, l.mParameters);
1373        // If video snapshot fail to configureStream, try override video snapshot size to
1374        // video size
1375        if (res == BAD_VALUE && l.mParameters.state == Parameters::VIDEO_SNAPSHOT) {
1376            overrideVideoSnapshotSize(l.mParameters);
1377            res = updateProcessorStream(mJpegProcessor, l.mParameters);
1378        }
1379        if (res != OK) {
1380            ALOGE("%s: Camera %d: Can't set up still image stream: %s (%d)",
1381                    __FUNCTION__, mCameraId, strerror(-res), res);
1382            return res;
1383        }
1384        takePictureCounter = ++l.mParameters.takePictureCounter;
1385
1386        // Clear ZSL buffer queue when Jpeg size is changed.
1387        bool jpegStreamChanged = mJpegProcessor->getStreamId() != lastJpegStreamId;
1388        if (l.mParameters.zslMode && jpegStreamChanged) {
1389            ALOGV("%s: Camera %d: Clear ZSL buffer queue when Jpeg size is changed",
1390                    __FUNCTION__, mCameraId);
1391            mZslProcessor->clearZslQueue();
1392        }
1393    }
1394
1395    ATRACE_ASYNC_BEGIN(kTakepictureLabel, takePictureCounter);
1396
1397    // Need HAL to have correct settings before (possibly) triggering precapture
1398    syncWithDevice();
1399
1400    res = mCaptureSequencer->startCapture(msgType);
1401    if (res != OK) {
1402        ALOGE("%s: Camera %d: Unable to start capture: %s (%d)",
1403                __FUNCTION__, mCameraId, strerror(-res), res);
1404    }
1405
1406    return res;
1407}
1408
1409status_t Camera2Client::setParameters(const String8& params) {
1410    ATRACE_CALL();
1411    ALOGV("%s: Camera %d", __FUNCTION__, mCameraId);
1412    Mutex::Autolock icl(mBinderSerializationLock);
1413    status_t res;
1414    if ( (res = checkPid(__FUNCTION__) ) != OK) return res;
1415
1416    SharedParameters::Lock l(mParameters);
1417
1418    Parameters::focusMode_t focusModeBefore = l.mParameters.focusMode;
1419    res = l.mParameters.set(params);
1420    if (res != OK) return res;
1421    Parameters::focusMode_t focusModeAfter = l.mParameters.focusMode;
1422
1423    if (l.mParameters.zslMode && focusModeAfter != focusModeBefore) {
1424        mZslProcessor->clearZslQueue();
1425    }
1426
1427    res = updateRequests(l.mParameters);
1428
1429    return res;
1430}
1431
1432String8 Camera2Client::getParameters() const {
1433    ATRACE_CALL();
1434    ALOGV("%s: Camera %d", __FUNCTION__, mCameraId);
1435    Mutex::Autolock icl(mBinderSerializationLock);
1436    // The camera service can unconditionally get the parameters at all times
1437    if (getCallingPid() != mServicePid && checkPid(__FUNCTION__) != OK) return String8();
1438
1439    SharedParameters::ReadLock l(mParameters);
1440
1441    return l.mParameters.get();
1442}
1443
1444status_t Camera2Client::sendCommand(int32_t cmd, int32_t arg1, int32_t arg2) {
1445    ATRACE_CALL();
1446    Mutex::Autolock icl(mBinderSerializationLock);
1447    status_t res;
1448    if ( (res = checkPid(__FUNCTION__) ) != OK) return res;
1449
1450    ALOGV("%s: Camera %d: Command %d (%d, %d)", __FUNCTION__, mCameraId,
1451            cmd, arg1, arg2);
1452
1453    switch (cmd) {
1454        case CAMERA_CMD_START_SMOOTH_ZOOM:
1455            return commandStartSmoothZoomL();
1456        case CAMERA_CMD_STOP_SMOOTH_ZOOM:
1457            return commandStopSmoothZoomL();
1458        case CAMERA_CMD_SET_DISPLAY_ORIENTATION:
1459            return commandSetDisplayOrientationL(arg1);
1460        case CAMERA_CMD_ENABLE_SHUTTER_SOUND:
1461            return commandEnableShutterSoundL(arg1 == 1);
1462        case CAMERA_CMD_PLAY_RECORDING_SOUND:
1463            return commandPlayRecordingSoundL();
1464        case CAMERA_CMD_START_FACE_DETECTION:
1465            return commandStartFaceDetectionL(arg1);
1466        case CAMERA_CMD_STOP_FACE_DETECTION: {
1467            SharedParameters::Lock l(mParameters);
1468            return commandStopFaceDetectionL(l.mParameters);
1469        }
1470        case CAMERA_CMD_ENABLE_FOCUS_MOVE_MSG:
1471            return commandEnableFocusMoveMsgL(arg1 == 1);
1472        case CAMERA_CMD_PING:
1473            return commandPingL();
1474        case CAMERA_CMD_SET_VIDEO_BUFFER_COUNT:
1475            return commandSetVideoBufferCountL(arg1);
1476        default:
1477            ALOGE("%s: Unknown command %d (arguments %d, %d)",
1478                    __FUNCTION__, cmd, arg1, arg2);
1479            return BAD_VALUE;
1480    }
1481}
1482
1483status_t Camera2Client::commandStartSmoothZoomL() {
1484    ALOGE("%s: Unimplemented!", __FUNCTION__);
1485    return OK;
1486}
1487
1488status_t Camera2Client::commandStopSmoothZoomL() {
1489    ALOGE("%s: Unimplemented!", __FUNCTION__);
1490    return OK;
1491}
1492
1493status_t Camera2Client::commandSetDisplayOrientationL(int degrees) {
1494    int transform = Parameters::degToTransform(degrees,
1495            mCameraFacing == CAMERA_FACING_FRONT);
1496    if (transform == -1) {
1497        ALOGE("%s: Camera %d: Error setting %d as display orientation value",
1498                __FUNCTION__, mCameraId, degrees);
1499        return BAD_VALUE;
1500    }
1501    SharedParameters::Lock l(mParameters);
1502    if (transform != l.mParameters.previewTransform &&
1503            getPreviewStreamId() != NO_STREAM) {
1504        mDevice->setStreamTransform(getPreviewStreamId(), transform);
1505    }
1506    l.mParameters.previewTransform = transform;
1507    return OK;
1508}
1509
1510status_t Camera2Client::commandEnableShutterSoundL(bool enable) {
1511    SharedParameters::Lock l(mParameters);
1512    if (enable) {
1513        l.mParameters.playShutterSound = true;
1514        return OK;
1515    }
1516
1517    // the camera2 api legacy mode can unconditionally disable the shutter sound
1518    if (mLegacyMode) {
1519        ALOGV("%s: Disable shutter sound in legacy mode", __FUNCTION__);
1520        l.mParameters.playShutterSound = false;
1521        return OK;
1522    }
1523
1524    // Disabling shutter sound may not be allowed. In that case only
1525    // allow the mediaserver process to disable the sound.
1526    char value[PROPERTY_VALUE_MAX];
1527    property_get("ro.camera.sound.forced", value, "0");
1528    if (strncmp(value, "0", 2) != 0) {
1529        // Disabling shutter sound is not allowed. Deny if the current
1530        // process is not mediaserver.
1531        if (getCallingPid() != getpid()) {
1532            ALOGE("Failed to disable shutter sound. Permission denied (pid %d)",
1533                    getCallingPid());
1534            return PERMISSION_DENIED;
1535        }
1536    }
1537
1538    l.mParameters.playShutterSound = false;
1539    return OK;
1540}
1541
1542status_t Camera2Client::commandPlayRecordingSoundL() {
1543    mCameraService->playSound(CameraService::SOUND_RECORDING);
1544    return OK;
1545}
1546
1547status_t Camera2Client::commandStartFaceDetectionL(int /*type*/) {
1548    ALOGV("%s: Camera %d: Starting face detection",
1549          __FUNCTION__, mCameraId);
1550    status_t res;
1551    SharedParameters::Lock l(mParameters);
1552    switch (l.mParameters.state) {
1553        case Parameters::DISCONNECTED:
1554        case Parameters::STOPPED:
1555        case Parameters::WAITING_FOR_PREVIEW_WINDOW:
1556        case Parameters::STILL_CAPTURE:
1557            ALOGE("%s: Camera %d: Cannot start face detection without preview active",
1558                    __FUNCTION__, mCameraId);
1559            return INVALID_OPERATION;
1560        case Parameters::PREVIEW:
1561        case Parameters::RECORD:
1562        case Parameters::VIDEO_SNAPSHOT:
1563            // Good to go for starting face detect
1564            break;
1565    }
1566    // Ignoring type
1567    if (l.mParameters.fastInfo.bestFaceDetectMode ==
1568            ANDROID_STATISTICS_FACE_DETECT_MODE_OFF) {
1569        ALOGE("%s: Camera %d: Face detection not supported",
1570                __FUNCTION__, mCameraId);
1571        return BAD_VALUE;
1572    }
1573    if (l.mParameters.enableFaceDetect) return OK;
1574
1575    l.mParameters.enableFaceDetect = true;
1576
1577    res = updateRequests(l.mParameters);
1578
1579    return res;
1580}
1581
1582status_t Camera2Client::commandStopFaceDetectionL(Parameters &params) {
1583    status_t res = OK;
1584    ALOGV("%s: Camera %d: Stopping face detection",
1585          __FUNCTION__, mCameraId);
1586
1587    if (!params.enableFaceDetect) return OK;
1588
1589    params.enableFaceDetect = false;
1590
1591    if (params.state == Parameters::PREVIEW
1592            || params.state == Parameters::RECORD
1593            || params.state == Parameters::VIDEO_SNAPSHOT) {
1594        res = updateRequests(params);
1595    }
1596
1597    return res;
1598}
1599
1600status_t Camera2Client::commandEnableFocusMoveMsgL(bool enable) {
1601    SharedParameters::Lock l(mParameters);
1602    l.mParameters.enableFocusMoveMessages = enable;
1603
1604    return OK;
1605}
1606
1607status_t Camera2Client::commandPingL() {
1608    // Always ping back if access is proper and device is alive
1609    SharedParameters::Lock l(mParameters);
1610    if (l.mParameters.state != Parameters::DISCONNECTED) {
1611        return OK;
1612    } else {
1613        return NO_INIT;
1614    }
1615}
1616
1617status_t Camera2Client::commandSetVideoBufferCountL(size_t count) {
1618    if (recordingEnabledL()) {
1619        ALOGE("%s: Camera %d: Error setting video buffer count after "
1620                "recording was started", __FUNCTION__, mCameraId);
1621        return INVALID_OPERATION;
1622    }
1623
1624    return mStreamingProcessor->setRecordingBufferCount(count);
1625}
1626
1627/** Device-related methods */
1628void Camera2Client::notifyAutoFocus(uint8_t newState, int triggerId) {
1629    ALOGV("%s: Autofocus state now %d, last trigger %d",
1630            __FUNCTION__, newState, triggerId);
1631    bool sendCompletedMessage = false;
1632    bool sendMovingMessage = false;
1633
1634    bool success = false;
1635    bool afInMotion = false;
1636    {
1637        SharedParameters::Lock l(mParameters);
1638        // Trace end of AF state
1639        char tmp[32];
1640        if (l.mParameters.afStateCounter > 0) {
1641            camera_metadata_enum_snprint(
1642                ANDROID_CONTROL_AF_STATE, l.mParameters.focusState, tmp, sizeof(tmp));
1643            ATRACE_ASYNC_END(tmp, l.mParameters.afStateCounter);
1644        }
1645
1646        // Update state
1647        l.mParameters.focusState = newState;
1648        l.mParameters.afStateCounter++;
1649
1650        // Trace start of AF state
1651
1652        camera_metadata_enum_snprint(
1653            ANDROID_CONTROL_AF_STATE, l.mParameters.focusState, tmp, sizeof(tmp));
1654        ATRACE_ASYNC_BEGIN(tmp, l.mParameters.afStateCounter);
1655
1656        switch (l.mParameters.focusMode) {
1657            case Parameters::FOCUS_MODE_AUTO:
1658            case Parameters::FOCUS_MODE_MACRO:
1659                // Don't send notifications upstream if they're not for the current AF
1660                // trigger. For example, if cancel was called in between, or if we
1661                // already sent a notification about this AF call.
1662                if (triggerId != l.mParameters.currentAfTriggerId) break;
1663                switch (newState) {
1664                    case ANDROID_CONTROL_AF_STATE_FOCUSED_LOCKED:
1665                        success = true;
1666                        // no break
1667                    case ANDROID_CONTROL_AF_STATE_NOT_FOCUSED_LOCKED:
1668                        sendCompletedMessage = true;
1669                        l.mParameters.currentAfTriggerId = -1;
1670                        break;
1671                    case ANDROID_CONTROL_AF_STATE_ACTIVE_SCAN:
1672                        // Just starting focusing, ignore
1673                        break;
1674                    case ANDROID_CONTROL_AF_STATE_INACTIVE:
1675                    case ANDROID_CONTROL_AF_STATE_PASSIVE_SCAN:
1676                    case ANDROID_CONTROL_AF_STATE_PASSIVE_FOCUSED:
1677                    case ANDROID_CONTROL_AF_STATE_PASSIVE_UNFOCUSED:
1678                    default:
1679                        // Unexpected in AUTO/MACRO mode
1680                        ALOGE("%s: Unexpected AF state transition in AUTO/MACRO mode: %d",
1681                                __FUNCTION__, newState);
1682                        break;
1683                }
1684                break;
1685            case Parameters::FOCUS_MODE_CONTINUOUS_VIDEO:
1686            case Parameters::FOCUS_MODE_CONTINUOUS_PICTURE:
1687                switch (newState) {
1688                    case ANDROID_CONTROL_AF_STATE_FOCUSED_LOCKED:
1689                        success = true;
1690                        // no break
1691                    case ANDROID_CONTROL_AF_STATE_NOT_FOCUSED_LOCKED:
1692                        // Don't send notifications upstream if they're not for
1693                        // the current AF trigger. For example, if cancel was
1694                        // called in between, or if we already sent a
1695                        // notification about this AF call.
1696                        // Send both a 'AF done' callback and a 'AF move' callback
1697                        if (triggerId != l.mParameters.currentAfTriggerId) break;
1698                        sendCompletedMessage = true;
1699                        afInMotion = false;
1700                        if (l.mParameters.enableFocusMoveMessages &&
1701                                l.mParameters.afInMotion) {
1702                            sendMovingMessage = true;
1703                        }
1704                        l.mParameters.currentAfTriggerId = -1;
1705                        break;
1706                    case ANDROID_CONTROL_AF_STATE_INACTIVE:
1707                        // Cancel was called, or we switched state; care if
1708                        // currently moving
1709                        afInMotion = false;
1710                        if (l.mParameters.enableFocusMoveMessages &&
1711                                l.mParameters.afInMotion) {
1712                            sendMovingMessage = true;
1713                        }
1714                        break;
1715                    case ANDROID_CONTROL_AF_STATE_PASSIVE_SCAN:
1716                        // Start passive scan, inform upstream
1717                        afInMotion = true;
1718                        // no break
1719                    case ANDROID_CONTROL_AF_STATE_PASSIVE_FOCUSED:
1720                    case ANDROID_CONTROL_AF_STATE_PASSIVE_UNFOCUSED:
1721                        // Stop passive scan, inform upstream
1722                        if (l.mParameters.enableFocusMoveMessages) {
1723                            sendMovingMessage = true;
1724                        }
1725                        break;
1726                }
1727                l.mParameters.afInMotion = afInMotion;
1728                break;
1729            case Parameters::FOCUS_MODE_EDOF:
1730            case Parameters::FOCUS_MODE_INFINITY:
1731            case Parameters::FOCUS_MODE_FIXED:
1732            default:
1733                if (newState != ANDROID_CONTROL_AF_STATE_INACTIVE) {
1734                    ALOGE("%s: Unexpected AF state change %d "
1735                            "(ID %d) in focus mode %d",
1736                          __FUNCTION__, newState, triggerId,
1737                            l.mParameters.focusMode);
1738                }
1739        }
1740    }
1741    if (sendMovingMessage) {
1742        SharedCameraCallbacks::Lock l(mSharedCameraCallbacks);
1743        if (l.mRemoteCallback != 0) {
1744            l.mRemoteCallback->notifyCallback(CAMERA_MSG_FOCUS_MOVE,
1745                    afInMotion ? 1 : 0, 0);
1746        }
1747    }
1748    if (sendCompletedMessage) {
1749        ATRACE_ASYNC_END(kAutofocusLabel, triggerId);
1750        SharedCameraCallbacks::Lock l(mSharedCameraCallbacks);
1751        if (l.mRemoteCallback != 0) {
1752            l.mRemoteCallback->notifyCallback(CAMERA_MSG_FOCUS,
1753                    success ? 1 : 0, 0);
1754        }
1755    }
1756}
1757
1758void Camera2Client::notifyAutoExposure(uint8_t newState, int triggerId) {
1759    ALOGV("%s: Autoexposure state now %d, last trigger %d",
1760            __FUNCTION__, newState, triggerId);
1761    mCaptureSequencer->notifyAutoExposure(newState, triggerId);
1762}
1763
1764camera2::SharedParameters& Camera2Client::getParameters() {
1765    return mParameters;
1766}
1767
1768int Camera2Client::getPreviewStreamId() const {
1769    return mStreamingProcessor->getPreviewStreamId();
1770}
1771
1772int Camera2Client::getCaptureStreamId() const {
1773    return mJpegProcessor->getStreamId();
1774}
1775
1776int Camera2Client::getCallbackStreamId() const {
1777    return mCallbackProcessor->getStreamId();
1778}
1779
1780int Camera2Client::getRecordingStreamId() const {
1781    return mStreamingProcessor->getRecordingStreamId();
1782}
1783
1784int Camera2Client::getZslStreamId() const {
1785    return mZslProcessor->getStreamId();
1786}
1787
1788status_t Camera2Client::registerFrameListener(int32_t minId, int32_t maxId,
1789        wp<camera2::FrameProcessor::FilteredListener> listener, bool sendPartials) {
1790    return mFrameProcessor->registerListener(minId, maxId, listener, sendPartials);
1791}
1792
1793status_t Camera2Client::removeFrameListener(int32_t minId, int32_t maxId,
1794        wp<camera2::FrameProcessor::FilteredListener> listener) {
1795    return mFrameProcessor->removeListener(minId, maxId, listener);
1796}
1797
1798status_t Camera2Client::stopStream() {
1799    return mStreamingProcessor->stopStream();
1800}
1801
1802const int32_t Camera2Client::kPreviewRequestIdStart;
1803const int32_t Camera2Client::kPreviewRequestIdEnd;
1804const int32_t Camera2Client::kRecordingRequestIdStart;
1805const int32_t Camera2Client::kRecordingRequestIdEnd;
1806const int32_t Camera2Client::kCaptureRequestIdStart;
1807const int32_t Camera2Client::kCaptureRequestIdEnd;
1808
1809/** Utility methods */
1810
1811status_t Camera2Client::updateRequests(Parameters &params) {
1812    status_t res;
1813
1814    ALOGV("%s: Camera %d: state = %d", __FUNCTION__, getCameraId(), params.state);
1815
1816    res = mStreamingProcessor->incrementStreamingIds();
1817    if (res != OK) {
1818        ALOGE("%s: Camera %d: Unable to increment request IDs: %s (%d)",
1819                __FUNCTION__, mCameraId, strerror(-res), res);
1820        return res;
1821    }
1822
1823    res = mStreamingProcessor->updatePreviewRequest(params);
1824    if (res != OK) {
1825        ALOGE("%s: Camera %d: Unable to update preview request: %s (%d)",
1826                __FUNCTION__, mCameraId, strerror(-res), res);
1827        return res;
1828    }
1829    res = mStreamingProcessor->updateRecordingRequest(params);
1830    if (res != OK) {
1831        ALOGE("%s: Camera %d: Unable to update recording request: %s (%d)",
1832                __FUNCTION__, mCameraId, strerror(-res), res);
1833        return res;
1834    }
1835
1836    if (params.state == Parameters::PREVIEW) {
1837        res = startPreviewL(params, true);
1838        if (res != OK) {
1839            ALOGE("%s: Camera %d: Error streaming new preview request: %s (%d)",
1840                    __FUNCTION__, mCameraId, strerror(-res), res);
1841            return res;
1842        }
1843    } else if (params.state == Parameters::RECORD ||
1844            params.state == Parameters::VIDEO_SNAPSHOT) {
1845        res = startRecordingL(params, true);
1846        if (res != OK) {
1847            ALOGE("%s: Camera %d: Error streaming new record request: %s (%d)",
1848                    __FUNCTION__, mCameraId, strerror(-res), res);
1849            return res;
1850        }
1851    }
1852    return res;
1853}
1854
1855
1856size_t Camera2Client::calculateBufferSize(int width, int height,
1857        int format, int stride) {
1858    switch (format) {
1859        case HAL_PIXEL_FORMAT_YCbCr_422_SP: // NV16
1860            return width * height * 2;
1861        case HAL_PIXEL_FORMAT_YCrCb_420_SP: // NV21
1862            return width * height * 3 / 2;
1863        case HAL_PIXEL_FORMAT_YCbCr_422_I: // YUY2
1864            return width * height * 2;
1865        case HAL_PIXEL_FORMAT_YV12: {      // YV12
1866            size_t ySize = stride * height;
1867            size_t uvStride = (stride / 2 + 0xF) & ~0xF;
1868            size_t uvSize = uvStride * height / 2;
1869            return ySize + uvSize * 2;
1870        }
1871        case HAL_PIXEL_FORMAT_RGB_565:
1872            return width * height * 2;
1873        case HAL_PIXEL_FORMAT_RGBA_8888:
1874            return width * height * 4;
1875        case HAL_PIXEL_FORMAT_RAW_SENSOR:
1876            return width * height * 2;
1877        default:
1878            ALOGE("%s: Unknown preview format: %x",
1879                    __FUNCTION__,  format);
1880            return 0;
1881    }
1882}
1883
1884status_t Camera2Client::syncWithDevice() {
1885    ATRACE_CALL();
1886    const nsecs_t kMaxSyncTimeout = 500000000; // 500 ms
1887    status_t res;
1888
1889    int32_t activeRequestId = mStreamingProcessor->getActiveRequestId();
1890    if (activeRequestId == 0) return OK;
1891
1892    res = mDevice->waitUntilRequestReceived(activeRequestId, kMaxSyncTimeout);
1893    if (res == TIMED_OUT) {
1894        ALOGE("%s: Camera %d: Timed out waiting sync with HAL",
1895                __FUNCTION__, mCameraId);
1896    } else if (res != OK) {
1897        ALOGE("%s: Camera %d: Error while waiting to sync with HAL",
1898                __FUNCTION__, mCameraId);
1899    }
1900    return res;
1901}
1902
1903template <typename ProcessorT>
1904status_t Camera2Client::updateProcessorStream(sp<ProcessorT> processor,
1905                                              camera2::Parameters params) {
1906    // No default template arguments until C++11, so we need this overload
1907    return updateProcessorStream<ProcessorT, &ProcessorT::updateStream>(
1908            processor, params);
1909}
1910
1911template <typename ProcessorT,
1912          status_t (ProcessorT::*updateStreamF)(const Parameters &)>
1913status_t Camera2Client::updateProcessorStream(sp<ProcessorT> processor,
1914                                              Parameters params) {
1915    status_t res;
1916
1917    // Get raw pointer since sp<T> doesn't have operator->*
1918    ProcessorT *processorPtr = processor.get();
1919    res = (processorPtr->*updateStreamF)(params);
1920
1921    /**
1922     * Can't update the stream if it's busy?
1923     *
1924     * Then we need to stop the device (by temporarily clearing the request
1925     * queue) and then try again. Resume streaming once we're done.
1926     */
1927    if (res == -EBUSY) {
1928        ALOGV("%s: Camera %d: Pausing to update stream", __FUNCTION__,
1929                mCameraId);
1930        res = mStreamingProcessor->togglePauseStream(/*pause*/true);
1931        if (res != OK) {
1932            ALOGE("%s: Camera %d: Can't pause streaming: %s (%d)",
1933                    __FUNCTION__, mCameraId, strerror(-res), res);
1934        }
1935
1936        res = mDevice->waitUntilDrained();
1937        if (res != OK) {
1938            ALOGE("%s: Camera %d: Waiting to stop streaming failed: %s (%d)",
1939                    __FUNCTION__, mCameraId, strerror(-res), res);
1940        }
1941
1942        res = (processorPtr->*updateStreamF)(params);
1943        if (res != OK) {
1944            ALOGE("%s: Camera %d: Failed to update processing stream "
1945                  " despite having halted streaming first: %s (%d)",
1946                  __FUNCTION__, mCameraId, strerror(-res), res);
1947        }
1948
1949        res = mStreamingProcessor->togglePauseStream(/*pause*/false);
1950        if (res != OK) {
1951            ALOGE("%s: Camera %d: Can't unpause streaming: %s (%d)",
1952                    __FUNCTION__, mCameraId, strerror(-res), res);
1953        }
1954    }
1955
1956    return res;
1957}
1958
1959status_t Camera2Client::overrideVideoSnapshotSize(Parameters &params) {
1960    ALOGV("%s: Camera %d: configure still size to video size before recording"
1961            , __FUNCTION__, mCameraId);
1962    params.overrideJpegSizeByVideoSize();
1963    status_t res = updateProcessorStream(mJpegProcessor, params);
1964    if (res != OK) {
1965        ALOGE("%s: Camera %d: Can't override video snapshot size to video size: %s (%d)",
1966                __FUNCTION__, mCameraId, strerror(-res), res);
1967    }
1968    return res;
1969}
1970
1971const char* Camera2Client::kAutofocusLabel = "autofocus";
1972const char* Camera2Client::kTakepictureLabel = "take_picture";
1973
1974} // namespace android
1975