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 #include <android/hardware/camera2/ICameraDeviceCallbacks.h> 28 29 #include "api1/Camera2Client.h" 30 31 #include "api1/client2/StreamingProcessor.h" 32 #include "api1/client2/JpegProcessor.h" 33 #include "api1/client2/CaptureSequencer.h" 34 #include "api1/client2/CallbackProcessor.h" 35 #include "api1/client2/ZslProcessor.h" 36 37 #define ALOG1(...) ALOGD_IF(gLogLevel >= 1, __VA_ARGS__); 38 #define ALOG2(...) ALOGD_IF(gLogLevel >= 2, __VA_ARGS__); 39 40 namespace android { 41 using namespace camera2; 42 43 static int getCallingPid() { 44 return IPCThreadState::self()->getCallingPid(); 45 } 46 47 // Interface used by CameraService 48 49 Camera2Client::Camera2Client(const sp<CameraService>& cameraService, 50 const sp<hardware::ICameraClient>& cameraClient, 51 const String16& clientPackageName, 52 const String8& cameraDeviceId, 53 int api1CameraId, 54 int cameraFacing, 55 int clientPid, 56 uid_t clientUid, 57 int servicePid, 58 bool legacyMode): 59 Camera2ClientBase(cameraService, cameraClient, clientPackageName, 60 cameraDeviceId, api1CameraId, cameraFacing, 61 clientPid, clientUid, servicePid), 62 mParameters(api1CameraId, cameraFacing) 63 { 64 ATRACE_CALL(); 65 66 SharedParameters::Lock l(mParameters); 67 l.mParameters.state = Parameters::DISCONNECTED; 68 69 mLegacyMode = legacyMode; 70 } 71 72 status_t Camera2Client::initialize(sp<CameraProviderManager> manager, const String8& monitorTags) { 73 return initializeImpl(manager, monitorTags); 74 } 75 76 bool Camera2Client::isZslEnabledInStillTemplate() { 77 bool zslEnabled = false; 78 CameraMetadata stillTemplate; 79 status_t res = mDevice->createDefaultRequest(CAMERA2_TEMPLATE_STILL_CAPTURE, &stillTemplate); 80 if (res == OK) { 81 camera_metadata_entry_t enableZsl = stillTemplate.find(ANDROID_CONTROL_ENABLE_ZSL); 82 if (enableZsl.count == 1) { 83 zslEnabled = (enableZsl.data.u8[0] == ANDROID_CONTROL_ENABLE_ZSL_TRUE); 84 } 85 } 86 87 return zslEnabled; 88 } 89 90 template<typename TProviderPtr> 91 status_t Camera2Client::initializeImpl(TProviderPtr providerPtr, const String8& monitorTags) 92 { 93 ATRACE_CALL(); 94 ALOGV("%s: Initializing client for camera %d", __FUNCTION__, mCameraId); 95 status_t res; 96 97 res = Camera2ClientBase::initialize(providerPtr, monitorTags); 98 if (res != OK) { 99 return res; 100 } 101 102 { 103 SharedParameters::Lock l(mParameters); 104 105 res = l.mParameters.initialize(&(mDevice->info()), mDeviceVersion); 106 if (res != OK) { 107 ALOGE("%s: Camera %d: unable to build defaults: %s (%d)", 108 __FUNCTION__, mCameraId, strerror(-res), res); 109 return NO_INIT; 110 } 111 112 l.mParameters.isDeviceZslSupported = isZslEnabledInStillTemplate(); 113 } 114 115 String8 threadName; 116 117 mStreamingProcessor = new StreamingProcessor(this); 118 threadName = String8::format("C2-%d-StreamProc", 119 mCameraId); 120 121 mFrameProcessor = new FrameProcessor(mDevice, this); 122 threadName = String8::format("C2-%d-FrameProc", 123 mCameraId); 124 mFrameProcessor->run(threadName.string()); 125 126 mCaptureSequencer = new CaptureSequencer(this); 127 threadName = String8::format("C2-%d-CaptureSeq", 128 mCameraId); 129 mCaptureSequencer->run(threadName.string()); 130 131 mJpegProcessor = new JpegProcessor(this, mCaptureSequencer); 132 threadName = String8::format("C2-%d-JpegProc", 133 mCameraId); 134 mJpegProcessor->run(threadName.string()); 135 136 mZslProcessor = new ZslProcessor(this, mCaptureSequencer); 137 138 threadName = String8::format("C2-%d-ZslProc", 139 mCameraId); 140 mZslProcessor->run(threadName.string()); 141 142 mCallbackProcessor = new CallbackProcessor(this); 143 threadName = String8::format("C2-%d-CallbkProc", 144 mCameraId); 145 mCallbackProcessor->run(threadName.string()); 146 147 if (gLogLevel >= 1) { 148 SharedParameters::Lock l(mParameters); 149 ALOGD("%s: Default parameters converted from camera %d:", __FUNCTION__, 150 mCameraId); 151 ALOGD("%s", l.mParameters.paramsFlattened.string()); 152 } 153 154 return OK; 155 } 156 157 Camera2Client::~Camera2Client() { 158 ATRACE_CALL(); 159 ALOGV("~Camera2Client"); 160 161 mDestructionStarted = true; 162 163 disconnect(); 164 165 ALOGI("Camera %d: Closed", mCameraId); 166 } 167 168 status_t Camera2Client::dump(int fd, const Vector<String16>& args) { 169 return BasicClient::dump(fd, args); 170 } 171 172 status_t Camera2Client::dumpClient(int fd, const Vector<String16>& args) { 173 String8 result; 174 result.appendFormat("Client2[%d] (%p) PID: %d, dump:\n", mCameraId, 175 (getRemoteCallback() != NULL ? 176 (IInterface::asBinder(getRemoteCallback()).get()) : NULL), 177 mClientPid); 178 result.append(" State: "); 179 #define CASE_APPEND_ENUM(x) case x: result.append(#x "\n"); break; 180 181 const Parameters& p = mParameters.unsafeAccess(); 182 183 result.append(Parameters::getStateName(p.state)); 184 185 result.append("\n Current parameters:\n"); 186 result.appendFormat(" Preview size: %d x %d\n", 187 p.previewWidth, p.previewHeight); 188 result.appendFormat(" Preview FPS range: %d - %d\n", 189 p.previewFpsRange[0], p.previewFpsRange[1]); 190 result.appendFormat(" Preview HAL pixel format: 0x%x\n", 191 p.previewFormat); 192 result.appendFormat(" Preview transform: %x\n", 193 p.previewTransform); 194 result.appendFormat(" Picture size: %d x %d\n", 195 p.pictureWidth, p.pictureHeight); 196 result.appendFormat(" Jpeg thumbnail size: %d x %d\n", 197 p.jpegThumbSize[0], p.jpegThumbSize[1]); 198 result.appendFormat(" Jpeg quality: %d, thumbnail quality: %d\n", 199 p.jpegQuality, p.jpegThumbQuality); 200 result.appendFormat(" Jpeg rotation: %d\n", p.jpegRotation); 201 result.appendFormat(" GPS tags %s\n", 202 p.gpsEnabled ? "enabled" : "disabled"); 203 if (p.gpsEnabled) { 204 result.appendFormat(" GPS lat x long x alt: %f x %f x %f\n", 205 p.gpsCoordinates[0], p.gpsCoordinates[1], 206 p.gpsCoordinates[2]); 207 result.appendFormat(" GPS timestamp: %" PRId64 "\n", 208 p.gpsTimestamp); 209 result.appendFormat(" GPS processing method: %s\n", 210 p.gpsProcessingMethod.string()); 211 } 212 213 result.append(" White balance mode: "); 214 switch (p.wbMode) { 215 CASE_APPEND_ENUM(ANDROID_CONTROL_AWB_MODE_AUTO) 216 CASE_APPEND_ENUM(ANDROID_CONTROL_AWB_MODE_INCANDESCENT) 217 CASE_APPEND_ENUM(ANDROID_CONTROL_AWB_MODE_FLUORESCENT) 218 CASE_APPEND_ENUM(ANDROID_CONTROL_AWB_MODE_WARM_FLUORESCENT) 219 CASE_APPEND_ENUM(ANDROID_CONTROL_AWB_MODE_DAYLIGHT) 220 CASE_APPEND_ENUM(ANDROID_CONTROL_AWB_MODE_CLOUDY_DAYLIGHT) 221 CASE_APPEND_ENUM(ANDROID_CONTROL_AWB_MODE_TWILIGHT) 222 CASE_APPEND_ENUM(ANDROID_CONTROL_AWB_MODE_SHADE) 223 default: result.append("UNKNOWN\n"); 224 } 225 226 result.append(" Effect mode: "); 227 switch (p.effectMode) { 228 CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_OFF) 229 CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_MONO) 230 CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_NEGATIVE) 231 CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_SOLARIZE) 232 CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_SEPIA) 233 CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_POSTERIZE) 234 CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_WHITEBOARD) 235 CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_BLACKBOARD) 236 CASE_APPEND_ENUM(ANDROID_CONTROL_EFFECT_MODE_AQUA) 237 default: result.append("UNKNOWN\n"); 238 } 239 240 result.append(" Antibanding mode: "); 241 switch (p.antibandingMode) { 242 CASE_APPEND_ENUM(ANDROID_CONTROL_AE_ANTIBANDING_MODE_AUTO) 243 CASE_APPEND_ENUM(ANDROID_CONTROL_AE_ANTIBANDING_MODE_OFF) 244 CASE_APPEND_ENUM(ANDROID_CONTROL_AE_ANTIBANDING_MODE_50HZ) 245 CASE_APPEND_ENUM(ANDROID_CONTROL_AE_ANTIBANDING_MODE_60HZ) 246 default: result.append("UNKNOWN\n"); 247 } 248 249 result.append(" Scene mode: "); 250 switch (p.sceneMode) { 251 case ANDROID_CONTROL_SCENE_MODE_DISABLED: 252 result.append("AUTO\n"); break; 253 CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_ACTION) 254 CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_PORTRAIT) 255 CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_LANDSCAPE) 256 CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_NIGHT) 257 CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_NIGHT_PORTRAIT) 258 CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_THEATRE) 259 CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_BEACH) 260 CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_SNOW) 261 CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_SUNSET) 262 CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_STEADYPHOTO) 263 CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_FIREWORKS) 264 CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_SPORTS) 265 CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_PARTY) 266 CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_CANDLELIGHT) 267 CASE_APPEND_ENUM(ANDROID_CONTROL_SCENE_MODE_BARCODE) 268 default: result.append("UNKNOWN\n"); 269 } 270 271 result.append(" Flash mode: "); 272 switch (p.flashMode) { 273 CASE_APPEND_ENUM(Parameters::FLASH_MODE_OFF) 274 CASE_APPEND_ENUM(Parameters::FLASH_MODE_AUTO) 275 CASE_APPEND_ENUM(Parameters::FLASH_MODE_ON) 276 CASE_APPEND_ENUM(Parameters::FLASH_MODE_TORCH) 277 CASE_APPEND_ENUM(Parameters::FLASH_MODE_RED_EYE) 278 CASE_APPEND_ENUM(Parameters::FLASH_MODE_INVALID) 279 default: result.append("UNKNOWN\n"); 280 } 281 282 result.append(" Focus mode: "); 283 switch (p.focusMode) { 284 CASE_APPEND_ENUM(Parameters::FOCUS_MODE_AUTO) 285 CASE_APPEND_ENUM(Parameters::FOCUS_MODE_MACRO) 286 CASE_APPEND_ENUM(Parameters::FOCUS_MODE_CONTINUOUS_VIDEO) 287 CASE_APPEND_ENUM(Parameters::FOCUS_MODE_CONTINUOUS_PICTURE) 288 CASE_APPEND_ENUM(Parameters::FOCUS_MODE_EDOF) 289 CASE_APPEND_ENUM(Parameters::FOCUS_MODE_INFINITY) 290 CASE_APPEND_ENUM(Parameters::FOCUS_MODE_FIXED) 291 CASE_APPEND_ENUM(Parameters::FOCUS_MODE_INVALID) 292 default: result.append("UNKNOWN\n"); 293 } 294 295 result.append(" Focus state: "); 296 switch (p.focusState) { 297 CASE_APPEND_ENUM(ANDROID_CONTROL_AF_STATE_INACTIVE) 298 CASE_APPEND_ENUM(ANDROID_CONTROL_AF_STATE_PASSIVE_SCAN) 299 CASE_APPEND_ENUM(ANDROID_CONTROL_AF_STATE_PASSIVE_FOCUSED) 300 CASE_APPEND_ENUM(ANDROID_CONTROL_AF_STATE_PASSIVE_UNFOCUSED) 301 CASE_APPEND_ENUM(ANDROID_CONTROL_AF_STATE_ACTIVE_SCAN) 302 CASE_APPEND_ENUM(ANDROID_CONTROL_AF_STATE_FOCUSED_LOCKED) 303 CASE_APPEND_ENUM(ANDROID_CONTROL_AF_STATE_NOT_FOCUSED_LOCKED) 304 default: result.append("UNKNOWN\n"); 305 } 306 307 result.append(" Focusing areas:\n"); 308 for (size_t i = 0; i < p.focusingAreas.size(); i++) { 309 result.appendFormat(" [ (%d, %d, %d, %d), weight %d ]\n", 310 p.focusingAreas[i].left, 311 p.focusingAreas[i].top, 312 p.focusingAreas[i].right, 313 p.focusingAreas[i].bottom, 314 p.focusingAreas[i].weight); 315 } 316 317 result.appendFormat(" Exposure compensation index: %d\n", 318 p.exposureCompensation); 319 320 result.appendFormat(" AE lock %s, AWB lock %s\n", 321 p.autoExposureLock ? "enabled" : "disabled", 322 p.autoWhiteBalanceLock ? "enabled" : "disabled" ); 323 324 result.appendFormat(" Metering areas:\n"); 325 for (size_t i = 0; i < p.meteringAreas.size(); i++) { 326 result.appendFormat(" [ (%d, %d, %d, %d), weight %d ]\n", 327 p.meteringAreas[i].left, 328 p.meteringAreas[i].top, 329 p.meteringAreas[i].right, 330 p.meteringAreas[i].bottom, 331 p.meteringAreas[i].weight); 332 } 333 334 result.appendFormat(" Zoom index: %d\n", p.zoom); 335 result.appendFormat(" Video size: %d x %d\n", p.videoWidth, 336 p.videoHeight); 337 338 result.appendFormat(" Recording hint is %s\n", 339 p.recordingHint ? "set" : "not set"); 340 341 result.appendFormat(" Video stabilization is %s\n", 342 p.videoStabilization ? "enabled" : "disabled"); 343 344 result.appendFormat(" Selected still capture FPS range: %d - %d\n", 345 p.fastInfo.bestStillCaptureFpsRange[0], 346 p.fastInfo.bestStillCaptureFpsRange[1]); 347 348 result.appendFormat(" Use zero shutter lag: %s\n", 349 p.useZeroShutterLag() ? "yes" : "no"); 350 351 result.append(" Current streams:\n"); 352 result.appendFormat(" Preview stream ID: %d\n", 353 getPreviewStreamId()); 354 result.appendFormat(" Capture stream ID: %d\n", 355 getCaptureStreamId()); 356 result.appendFormat(" Recording stream ID: %d\n", 357 getRecordingStreamId()); 358 359 result.append(" Quirks for this camera:\n"); 360 bool haveQuirk = false; 361 if (p.quirks.triggerAfWithAuto) { 362 result.appendFormat(" triggerAfWithAuto\n"); 363 haveQuirk = true; 364 } 365 if (p.quirks.useZslFormat) { 366 result.appendFormat(" useZslFormat\n"); 367 haveQuirk = true; 368 } 369 if (p.quirks.meteringCropRegion) { 370 result.appendFormat(" meteringCropRegion\n"); 371 haveQuirk = true; 372 } 373 if (p.quirks.partialResults) { 374 result.appendFormat(" usePartialResult\n"); 375 haveQuirk = true; 376 } 377 if (!haveQuirk) { 378 result.appendFormat(" none\n"); 379 } 380 381 write(fd, result.string(), result.size()); 382 383 mStreamingProcessor->dump(fd, args); 384 385 mCaptureSequencer->dump(fd, args); 386 387 mFrameProcessor->dump(fd, args); 388 389 mZslProcessor->dump(fd, args); 390 391 return dumpDevice(fd, args); 392 #undef CASE_APPEND_ENUM 393 } 394 395 // ICamera interface 396 397 binder::Status Camera2Client::disconnect() { 398 ATRACE_CALL(); 399 Mutex::Autolock icl(mBinderSerializationLock); 400 401 binder::Status res = binder::Status::ok(); 402 // Allow both client and the cameraserver to disconnect at all times 403 int callingPid = getCallingPid(); 404 if (callingPid != mClientPid && callingPid != mServicePid) return res; 405 406 if (mDevice == 0) return res; 407 408 ALOGV("Camera %d: Shutting down", mCameraId); 409 410 /** 411 * disconnect() cannot call any methods that might need to promote a 412 * wp<Camera2Client>, since disconnect can be called from the destructor, at 413 * which point all such promotions will fail. 414 */ 415 416 stopPreviewL(); 417 418 { 419 SharedParameters::Lock l(mParameters); 420 if (l.mParameters.state == Parameters::DISCONNECTED) return res; 421 l.mParameters.state = Parameters::DISCONNECTED; 422 } 423 424 mFrameProcessor->requestExit(); 425 mCaptureSequencer->requestExit(); 426 mJpegProcessor->requestExit(); 427 mZslProcessor->requestExit(); 428 mCallbackProcessor->requestExit(); 429 430 ALOGV("Camera %d: Waiting for threads", mCameraId); 431 432 { 433 // Don't wait with lock held, in case the other threads need to 434 // complete callbacks that re-enter Camera2Client 435 mBinderSerializationLock.unlock(); 436 437 mFrameProcessor->join(); 438 mCaptureSequencer->join(); 439 mJpegProcessor->join(); 440 mZslProcessor->join(); 441 mCallbackProcessor->join(); 442 443 mBinderSerializationLock.lock(); 444 } 445 446 ALOGV("Camera %d: Deleting streams", mCameraId); 447 448 mStreamingProcessor->deletePreviewStream(); 449 mStreamingProcessor->deleteRecordingStream(); 450 mJpegProcessor->deleteStream(); 451 mCallbackProcessor->deleteStream(); 452 mZslProcessor->deleteStream(); 453 454 ALOGV("Camera %d: Disconnecting device", mCameraId); 455 456 mDevice->disconnect(); 457 458 mDevice.clear(); 459 460 CameraService::Client::disconnect(); 461 462 return res; 463 } 464 465 status_t Camera2Client::connect(const sp<hardware::ICameraClient>& client) { 466 ATRACE_CALL(); 467 ALOGV("%s: E", __FUNCTION__); 468 Mutex::Autolock icl(mBinderSerializationLock); 469 470 if (mClientPid != 0 && getCallingPid() != mClientPid) { 471 ALOGE("%s: Camera %d: Connection attempt from pid %d; " 472 "current locked to pid %d", __FUNCTION__, 473 mCameraId, getCallingPid(), mClientPid); 474 return BAD_VALUE; 475 } 476 477 mClientPid = getCallingPid(); 478 479 mRemoteCallback = client; 480 mSharedCameraCallbacks = client; 481 482 return OK; 483 } 484 485 status_t Camera2Client::lock() { 486 ATRACE_CALL(); 487 ALOGV("%s: E", __FUNCTION__); 488 Mutex::Autolock icl(mBinderSerializationLock); 489 ALOGV("%s: Camera %d: Lock call from pid %d; current client pid %d", 490 __FUNCTION__, mCameraId, getCallingPid(), mClientPid); 491 492 if (mClientPid == 0) { 493 mClientPid = getCallingPid(); 494 return OK; 495 } 496 497 if (mClientPid != getCallingPid()) { 498 ALOGE("%s: Camera %d: Lock call from pid %d; currently locked to pid %d", 499 __FUNCTION__, mCameraId, getCallingPid(), mClientPid); 500 return EBUSY; 501 } 502 503 return OK; 504 } 505 506 status_t Camera2Client::unlock() { 507 ATRACE_CALL(); 508 ALOGV("%s: E", __FUNCTION__); 509 Mutex::Autolock icl(mBinderSerializationLock); 510 ALOGV("%s: Camera %d: Unlock call from pid %d; current client pid %d", 511 __FUNCTION__, mCameraId, getCallingPid(), mClientPid); 512 513 if (mClientPid == getCallingPid()) { 514 SharedParameters::Lock l(mParameters); 515 if (l.mParameters.state == Parameters::RECORD || 516 l.mParameters.state == Parameters::VIDEO_SNAPSHOT) { 517 ALOGD("Not allowed to unlock camera during recording."); 518 return INVALID_OPERATION; 519 } 520 mClientPid = 0; 521 mRemoteCallback.clear(); 522 mSharedCameraCallbacks.clear(); 523 return OK; 524 } 525 526 ALOGE("%s: Camera %d: Unlock call from pid %d; currently locked to pid %d", 527 __FUNCTION__, mCameraId, getCallingPid(), mClientPid); 528 return EBUSY; 529 } 530 531 status_t Camera2Client::setPreviewTarget( 532 const sp<IGraphicBufferProducer>& bufferProducer) { 533 ATRACE_CALL(); 534 ALOGV("%s: E", __FUNCTION__); 535 Mutex::Autolock icl(mBinderSerializationLock); 536 status_t res; 537 if ( (res = checkPid(__FUNCTION__) ) != OK) return res; 538 539 sp<IBinder> binder; 540 sp<Surface> window; 541 if (bufferProducer != 0) { 542 binder = IInterface::asBinder(bufferProducer); 543 // Using controlledByApp flag to ensure that the buffer queue remains in 544 // async mode for the old camera API, where many applications depend 545 // on that behavior. 546 window = new Surface(bufferProducer, /*controlledByApp*/ true); 547 } 548 return setPreviewWindowL(binder, window); 549 } 550 551 status_t Camera2Client::setPreviewWindowL(const sp<IBinder>& binder, 552 const sp<Surface>& window) { 553 ATRACE_CALL(); 554 status_t res; 555 556 if (binder == mPreviewSurface) { 557 ALOGV("%s: Camera %d: New window is same as old window", 558 __FUNCTION__, mCameraId); 559 return NO_ERROR; 560 } 561 562 Parameters::State state; 563 { 564 SharedParameters::Lock l(mParameters); 565 state = l.mParameters.state; 566 } 567 switch (state) { 568 case Parameters::DISCONNECTED: 569 case Parameters::RECORD: 570 case Parameters::STILL_CAPTURE: 571 case Parameters::VIDEO_SNAPSHOT: 572 ALOGE("%s: Camera %d: Cannot set preview display while in state %s", 573 __FUNCTION__, mCameraId, 574 Parameters::getStateName(state)); 575 return INVALID_OPERATION; 576 case Parameters::STOPPED: 577 case Parameters::WAITING_FOR_PREVIEW_WINDOW: 578 // OK 579 break; 580 case Parameters::PREVIEW: 581 // Already running preview - need to stop and create a new stream 582 res = stopStream(); 583 if (res != OK) { 584 ALOGE("%s: Unable to stop preview to swap windows: %s (%d)", 585 __FUNCTION__, strerror(-res), res); 586 return res; 587 } 588 state = Parameters::WAITING_FOR_PREVIEW_WINDOW; 589 break; 590 } 591 592 mPreviewSurface = binder; 593 res = mStreamingProcessor->setPreviewWindow(window); 594 if (res != OK) { 595 ALOGE("%s: Unable to set new preview window: %s (%d)", 596 __FUNCTION__, strerror(-res), res); 597 return res; 598 } 599 600 if (state == Parameters::WAITING_FOR_PREVIEW_WINDOW) { 601 SharedParameters::Lock l(mParameters); 602 l.mParameters.state = state; 603 return startPreviewL(l.mParameters, false); 604 } 605 606 return OK; 607 } 608 609 void Camera2Client::setPreviewCallbackFlag(int flag) { 610 ATRACE_CALL(); 611 ALOGV("%s: Camera %d: Flag 0x%x", __FUNCTION__, mCameraId, flag); 612 Mutex::Autolock icl(mBinderSerializationLock); 613 614 if ( checkPid(__FUNCTION__) != OK) return; 615 616 SharedParameters::Lock l(mParameters); 617 setPreviewCallbackFlagL(l.mParameters, flag); 618 } 619 620 void Camera2Client::setPreviewCallbackFlagL(Parameters ¶ms, int flag) { 621 status_t res = OK; 622 623 switch(params.state) { 624 case Parameters::STOPPED: 625 case Parameters::WAITING_FOR_PREVIEW_WINDOW: 626 case Parameters::PREVIEW: 627 case Parameters::STILL_CAPTURE: 628 // OK 629 break; 630 default: 631 if (flag & CAMERA_FRAME_CALLBACK_FLAG_ENABLE_MASK) { 632 ALOGE("%s: Camera %d: Can't use preview callbacks " 633 "in state %d", __FUNCTION__, mCameraId, params.state); 634 return; 635 } 636 } 637 638 if (flag & CAMERA_FRAME_CALLBACK_FLAG_ONE_SHOT_MASK) { 639 ALOGV("%s: setting oneshot", __FUNCTION__); 640 params.previewCallbackOneShot = true; 641 } 642 if (params.previewCallbackFlags != (uint32_t)flag) { 643 644 if (params.previewCallbackSurface && flag != CAMERA_FRAME_CALLBACK_FLAG_NOOP) { 645 // Disable any existing preview callback window when enabling 646 // preview callback flags 647 res = mCallbackProcessor->setCallbackWindow(NULL); 648 if (res != OK) { 649 ALOGE("%s: Camera %d: Unable to clear preview callback surface:" 650 " %s (%d)", __FUNCTION__, mCameraId, strerror(-res), res); 651 return; 652 } 653 params.previewCallbackSurface = false; 654 } 655 656 params.previewCallbackFlags = flag; 657 658 if (params.state == Parameters::PREVIEW) { 659 res = startPreviewL(params, true); 660 if (res != OK) { 661 ALOGE("%s: Camera %d: Unable to refresh request in state %s", 662 __FUNCTION__, mCameraId, 663 Parameters::getStateName(params.state)); 664 } 665 } 666 } 667 } 668 669 status_t Camera2Client::setPreviewCallbackTarget( 670 const sp<IGraphicBufferProducer>& callbackProducer) { 671 ATRACE_CALL(); 672 ALOGV("%s: E", __FUNCTION__); 673 Mutex::Autolock icl(mBinderSerializationLock); 674 status_t res; 675 if ( (res = checkPid(__FUNCTION__) ) != OK) return res; 676 677 sp<Surface> window; 678 if (callbackProducer != 0) { 679 window = new Surface(callbackProducer); 680 } 681 682 res = mCallbackProcessor->setCallbackWindow(window); 683 if (res != OK) { 684 ALOGE("%s: Camera %d: Unable to set preview callback surface: %s (%d)", 685 __FUNCTION__, mCameraId, strerror(-res), res); 686 return res; 687 } 688 689 SharedParameters::Lock l(mParameters); 690 691 if (window != NULL) { 692 // Disable traditional callbacks when a valid callback target is given 693 l.mParameters.previewCallbackFlags = CAMERA_FRAME_CALLBACK_FLAG_NOOP; 694 l.mParameters.previewCallbackOneShot = false; 695 l.mParameters.previewCallbackSurface = true; 696 } else { 697 // Disable callback target if given a NULL interface. 698 l.mParameters.previewCallbackSurface = false; 699 } 700 701 switch(l.mParameters.state) { 702 case Parameters::PREVIEW: 703 res = startPreviewL(l.mParameters, true); 704 break; 705 case Parameters::RECORD: 706 case Parameters::VIDEO_SNAPSHOT: 707 res = startRecordingL(l.mParameters, true); 708 break; 709 default: 710 break; 711 } 712 if (res != OK) { 713 ALOGE("%s: Camera %d: Unable to refresh request in state %s", 714 __FUNCTION__, mCameraId, 715 Parameters::getStateName(l.mParameters.state)); 716 } 717 718 return OK; 719 } 720 721 722 status_t Camera2Client::startPreview() { 723 ATRACE_CALL(); 724 ALOGV("%s: E", __FUNCTION__); 725 Mutex::Autolock icl(mBinderSerializationLock); 726 status_t res; 727 if ( (res = checkPid(__FUNCTION__) ) != OK) return res; 728 SharedParameters::Lock l(mParameters); 729 return startPreviewL(l.mParameters, false); 730 } 731 732 status_t Camera2Client::startPreviewL(Parameters ¶ms, bool restart) { 733 ATRACE_CALL(); 734 status_t res; 735 736 ALOGV("%s: state == %d, restart = %d", __FUNCTION__, params.state, restart); 737 738 if ( (params.state == Parameters::PREVIEW || 739 params.state == Parameters::RECORD || 740 params.state == Parameters::VIDEO_SNAPSHOT) 741 && !restart) { 742 // Succeed attempt to re-enter a streaming state 743 ALOGI("%s: Camera %d: Preview already active, ignoring restart", 744 __FUNCTION__, mCameraId); 745 return OK; 746 } 747 if (params.state > Parameters::PREVIEW && !restart) { 748 ALOGE("%s: Can't start preview in state %s", 749 __FUNCTION__, 750 Parameters::getStateName(params.state)); 751 return INVALID_OPERATION; 752 } 753 754 if (!mStreamingProcessor->haveValidPreviewWindow()) { 755 params.state = Parameters::WAITING_FOR_PREVIEW_WINDOW; 756 return OK; 757 } 758 params.state = Parameters::STOPPED; 759 int lastPreviewStreamId = mStreamingProcessor->getPreviewStreamId(); 760 761 res = mStreamingProcessor->updatePreviewStream(params); 762 if (res != OK) { 763 ALOGE("%s: Camera %d: Unable to update preview stream: %s (%d)", 764 __FUNCTION__, mCameraId, strerror(-res), res); 765 return res; 766 } 767 768 bool previewStreamChanged = mStreamingProcessor->getPreviewStreamId() != lastPreviewStreamId; 769 770 // We could wait to create the JPEG output stream until first actual use 771 // (first takePicture call). However, this would substantially increase the 772 // first capture latency on HAL3 devices. 773 // So create it unconditionally at preview start. As a drawback, 774 // this increases gralloc memory consumption for applications that don't 775 // ever take a picture. Do not enter this mode when jpeg stream will slow 776 // down preview. 777 // TODO: Find a better compromise, though this likely would involve HAL 778 // changes. 779 int lastJpegStreamId = mJpegProcessor->getStreamId(); 780 // If jpeg stream will slow down preview, make sure we remove it before starting preview 781 if (params.slowJpegMode) { 782 // Pause preview if we are streaming 783 int32_t activeRequestId = mStreamingProcessor->getActiveRequestId(); 784 if (activeRequestId != 0) { 785 res = mStreamingProcessor->togglePauseStream(/*pause*/true); 786 if (res != OK) { 787 ALOGE("%s: Camera %d: Can't pause streaming: %s (%d)", 788 __FUNCTION__, mCameraId, strerror(-res), res); 789 } 790 res = mDevice->waitUntilDrained(); 791 if (res != OK) { 792 ALOGE("%s: Camera %d: Waiting to stop streaming failed: %s (%d)", 793 __FUNCTION__, mCameraId, strerror(-res), res); 794 } 795 } 796 797 res = mJpegProcessor->deleteStream(); 798 799 if (res != OK) { 800 ALOGE("%s: Camera %d: delete Jpeg stream failed: %s (%d)", 801 __FUNCTION__, mCameraId, strerror(-res), res); 802 } 803 804 if (activeRequestId != 0) { 805 res = mStreamingProcessor->togglePauseStream(/*pause*/false); 806 if (res != OK) { 807 ALOGE("%s: Camera %d: Can't unpause streaming: %s (%d)", 808 __FUNCTION__, mCameraId, strerror(-res), res); 809 } 810 } 811 } else { 812 res = updateProcessorStream(mJpegProcessor, params); 813 if (res != OK) { 814 ALOGE("%s: Camera %d: Can't pre-configure still image " 815 "stream: %s (%d)", 816 __FUNCTION__, mCameraId, strerror(-res), res); 817 return res; 818 } 819 } 820 bool jpegStreamChanged = mJpegProcessor->getStreamId() != lastJpegStreamId; 821 822 Vector<int32_t> outputStreams; 823 bool callbacksEnabled = (params.previewCallbackFlags & 824 CAMERA_FRAME_CALLBACK_FLAG_ENABLE_MASK) || 825 params.previewCallbackSurface; 826 827 if (callbacksEnabled) { 828 // Can't have recording stream hanging around when enabling callbacks, 829 // since it exceeds the max stream count on some devices. 830 if (mStreamingProcessor->getRecordingStreamId() != NO_STREAM) { 831 ALOGV("%s: Camera %d: Clearing out recording stream before " 832 "creating callback stream", __FUNCTION__, mCameraId); 833 res = mStreamingProcessor->stopStream(); 834 if (res != OK) { 835 ALOGE("%s: Camera %d: Can't stop streaming to delete " 836 "recording stream", __FUNCTION__, mCameraId); 837 return res; 838 } 839 res = mStreamingProcessor->deleteRecordingStream(); 840 if (res != OK) { 841 ALOGE("%s: Camera %d: Unable to delete recording stream before " 842 "enabling callbacks: %s (%d)", __FUNCTION__, mCameraId, 843 strerror(-res), res); 844 return res; 845 } 846 } 847 848 res = mCallbackProcessor->updateStream(params); 849 if (res != OK) { 850 ALOGE("%s: Camera %d: Unable to update callback stream: %s (%d)", 851 __FUNCTION__, mCameraId, strerror(-res), res); 852 return res; 853 } 854 outputStreams.push(getCallbackStreamId()); 855 } else if (previewStreamChanged && mCallbackProcessor->getStreamId() != NO_STREAM) { 856 /** 857 * Delete the unused callback stream when preview stream is changed and 858 * preview is not enabled. Don't need stop preview stream as preview is in 859 * STOPPED state now. 860 */ 861 ALOGV("%s: Camera %d: Delete unused preview callback stream.", __FUNCTION__, mCameraId); 862 res = mCallbackProcessor->deleteStream(); 863 if (res != OK) { 864 ALOGE("%s: Camera %d: Unable to delete callback stream %s (%d)", 865 __FUNCTION__, mCameraId, strerror(-res), res); 866 return res; 867 } 868 } 869 870 if (params.useZeroShutterLag() && 871 getRecordingStreamId() == NO_STREAM) { 872 res = updateProcessorStream(mZslProcessor, params); 873 if (res != OK) { 874 ALOGE("%s: Camera %d: Unable to update ZSL stream: %s (%d)", 875 __FUNCTION__, mCameraId, strerror(-res), res); 876 return res; 877 } 878 879 if (jpegStreamChanged) { 880 ALOGV("%s: Camera %d: Clear ZSL buffer queue when Jpeg size is changed", 881 __FUNCTION__, mCameraId); 882 mZslProcessor->clearZslQueue(); 883 } 884 outputStreams.push(getZslStreamId()); 885 } else { 886 mZslProcessor->deleteStream(); 887 } 888 889 outputStreams.push(getPreviewStreamId()); 890 891 if (params.isDeviceZslSupported) { 892 // If device ZSL is supported, resume preview buffers that may be paused 893 // during last takePicture(). 894 mDevice->dropStreamBuffers(false, getPreviewStreamId()); 895 } 896 897 if (!params.recordingHint) { 898 if (!restart) { 899 res = mStreamingProcessor->updatePreviewRequest(params); 900 if (res != OK) { 901 ALOGE("%s: Camera %d: Can't set up preview request: " 902 "%s (%d)", __FUNCTION__, mCameraId, 903 strerror(-res), res); 904 return res; 905 } 906 } 907 res = mStreamingProcessor->startStream(StreamingProcessor::PREVIEW, 908 outputStreams); 909 } else { 910 if (!restart) { 911 res = mStreamingProcessor->updateRecordingRequest(params); 912 if (res != OK) { 913 ALOGE("%s: Camera %d: Can't set up preview request with " 914 "record hint: %s (%d)", __FUNCTION__, mCameraId, 915 strerror(-res), res); 916 return res; 917 } 918 } 919 res = mStreamingProcessor->startStream(StreamingProcessor::RECORD, 920 outputStreams); 921 } 922 if (res != OK) { 923 ALOGE("%s: Camera %d: Unable to start streaming preview: %s (%d)", 924 __FUNCTION__, mCameraId, strerror(-res), res); 925 return res; 926 } 927 928 params.state = Parameters::PREVIEW; 929 return OK; 930 } 931 932 void Camera2Client::stopPreview() { 933 ATRACE_CALL(); 934 ALOGV("%s: E", __FUNCTION__); 935 Mutex::Autolock icl(mBinderSerializationLock); 936 status_t res; 937 if ( (res = checkPid(__FUNCTION__) ) != OK) return; 938 stopPreviewL(); 939 } 940 941 void Camera2Client::stopPreviewL() { 942 ATRACE_CALL(); 943 status_t res; 944 const nsecs_t kStopCaptureTimeout = 3000000000LL; // 3 seconds 945 Parameters::State state; 946 { 947 SharedParameters::Lock l(mParameters); 948 state = l.mParameters.state; 949 } 950 951 switch (state) { 952 case Parameters::DISCONNECTED: 953 // Nothing to do. 954 break; 955 case Parameters::STOPPED: 956 case Parameters::VIDEO_SNAPSHOT: 957 case Parameters::STILL_CAPTURE: 958 mCaptureSequencer->waitUntilIdle(kStopCaptureTimeout); 959 // no break 960 case Parameters::RECORD: 961 case Parameters::PREVIEW: 962 syncWithDevice(); 963 res = stopStream(); 964 if (res != OK) { 965 ALOGE("%s: Camera %d: Can't stop streaming: %s (%d)", 966 __FUNCTION__, mCameraId, strerror(-res), res); 967 } 968 969 // Flush all in-process captures and buffer in order to stop 970 // preview faster. 971 res = mDevice->flush(); 972 if (res != OK) { 973 ALOGE("%s: Camera %d: Unable to flush pending requests: %s (%d)", 974 __FUNCTION__, mCameraId, strerror(-res), res); 975 } 976 977 res = mDevice->waitUntilDrained(); 978 if (res != OK) { 979 ALOGE("%s: Camera %d: Waiting to stop streaming failed: %s (%d)", 980 __FUNCTION__, mCameraId, strerror(-res), res); 981 } 982 // Clean up recording stream 983 res = mStreamingProcessor->deleteRecordingStream(); 984 if (res != OK) { 985 ALOGE("%s: Camera %d: Unable to delete recording stream before " 986 "stop preview: %s (%d)", 987 __FUNCTION__, mCameraId, strerror(-res), res); 988 } 989 // no break 990 case Parameters::WAITING_FOR_PREVIEW_WINDOW: { 991 SharedParameters::Lock l(mParameters); 992 l.mParameters.state = Parameters::STOPPED; 993 commandStopFaceDetectionL(l.mParameters); 994 break; 995 } 996 default: 997 ALOGE("%s: Camera %d: Unknown state %d", __FUNCTION__, mCameraId, 998 state); 999 } 1000 } 1001 1002 bool Camera2Client::previewEnabled() { 1003 ATRACE_CALL(); 1004 Mutex::Autolock icl(mBinderSerializationLock); 1005 status_t res; 1006 if ( (res = checkPid(__FUNCTION__) ) != OK) return false; 1007 1008 SharedParameters::Lock l(mParameters); 1009 return l.mParameters.state == Parameters::PREVIEW; 1010 } 1011 1012 status_t Camera2Client::setVideoBufferMode(int32_t videoBufferMode) { 1013 ATRACE_CALL(); 1014 Mutex::Autolock icl(mBinderSerializationLock); 1015 status_t res; 1016 if ( (res = checkPid(__FUNCTION__) ) != OK) return res; 1017 1018 SharedParameters::Lock l(mParameters); 1019 switch (l.mParameters.state) { 1020 case Parameters::RECORD: 1021 case Parameters::VIDEO_SNAPSHOT: 1022 ALOGE("%s: Camera %d: Can't be called in state %s", 1023 __FUNCTION__, mCameraId, 1024 Parameters::getStateName(l.mParameters.state)); 1025 return INVALID_OPERATION; 1026 default: 1027 // OK 1028 break; 1029 } 1030 1031 if (videoBufferMode != VIDEO_BUFFER_MODE_BUFFER_QUEUE) { 1032 ALOGE("%s: %d: Only video buffer queue is supported", __FUNCTION__, __LINE__); 1033 return BAD_VALUE; 1034 } 1035 1036 l.mParameters.videoBufferMode = videoBufferMode; 1037 1038 return OK; 1039 } 1040 1041 status_t Camera2Client::startRecording() { 1042 ATRACE_CALL(); 1043 ALOGV("%s: E", __FUNCTION__); 1044 Mutex::Autolock icl(mBinderSerializationLock); 1045 status_t res; 1046 if ( (res = checkPid(__FUNCTION__) ) != OK) return res; 1047 SharedParameters::Lock l(mParameters); 1048 1049 return startRecordingL(l.mParameters, false); 1050 } 1051 1052 status_t Camera2Client::startRecordingL(Parameters ¶ms, bool restart) { 1053 status_t res = OK; 1054 1055 ALOGV("%s: state == %d, restart = %d", __FUNCTION__, params.state, restart); 1056 1057 switch (params.state) { 1058 case Parameters::STOPPED: 1059 res = startPreviewL(params, false); 1060 if (res != OK) return res; 1061 // Make sure first preview request is submitted to the HAL device to avoid 1062 // two consecutive set of configure_streams being called into the HAL. 1063 // TODO: Refactor this to avoid initial preview configuration. 1064 syncWithDevice(); 1065 break; 1066 case Parameters::PREVIEW: 1067 // Ready to go 1068 break; 1069 case Parameters::RECORD: 1070 case Parameters::VIDEO_SNAPSHOT: 1071 // OK to call this when recording is already on, just skip unless 1072 // we're looking to restart 1073 if (!restart) return OK; 1074 break; 1075 default: 1076 ALOGE("%s: Camera %d: Can't start recording in state %s", 1077 __FUNCTION__, mCameraId, 1078 Parameters::getStateName(params.state)); 1079 return INVALID_OPERATION; 1080 }; 1081 1082 if (params.videoBufferMode != VIDEO_BUFFER_MODE_BUFFER_QUEUE) { 1083 ALOGE("%s: Camera %d: Recording only supported buffer queue mode, but " 1084 "mode %d is requested!", __FUNCTION__, mCameraId, params.videoBufferMode); 1085 return INVALID_OPERATION; 1086 } 1087 1088 if (!mStreamingProcessor->haveValidRecordingWindow()) { 1089 ALOGE("%s: No valid recording window", __FUNCTION__); 1090 return INVALID_OPERATION; 1091 } 1092 1093 if (!restart) { 1094 sCameraService->playSound(CameraService::SOUND_RECORDING_START); 1095 mStreamingProcessor->updateRecordingRequest(params); 1096 if (res != OK) { 1097 ALOGE("%s: Camera %d: Unable to update recording request: %s (%d)", 1098 __FUNCTION__, mCameraId, strerror(-res), res); 1099 return res; 1100 } 1101 } 1102 1103 // Not all devices can support a preview callback stream and a recording 1104 // stream at the same time, so assume none of them can. 1105 if (mCallbackProcessor->getStreamId() != NO_STREAM) { 1106 ALOGV("%s: Camera %d: Clearing out callback stream before " 1107 "creating recording stream", __FUNCTION__, mCameraId); 1108 res = mStreamingProcessor->stopStream(); 1109 if (res != OK) { 1110 ALOGE("%s: Camera %d: Can't stop streaming to delete callback stream", 1111 __FUNCTION__, mCameraId); 1112 return res; 1113 } 1114 res = mCallbackProcessor->deleteStream(); 1115 if (res != OK) { 1116 ALOGE("%s: Camera %d: Unable to delete callback stream before " 1117 "record: %s (%d)", __FUNCTION__, mCameraId, 1118 strerror(-res), res); 1119 return res; 1120 } 1121 } 1122 1123 // Clean up ZSL before transitioning into recording 1124 if (mZslProcessor->getStreamId() != NO_STREAM) { 1125 ALOGV("%s: Camera %d: Clearing out zsl stream before " 1126 "creating recording stream", __FUNCTION__, mCameraId); 1127 res = mStreamingProcessor->stopStream(); 1128 if (res != OK) { 1129 ALOGE("%s: Camera %d: Can't stop streaming to delete callback stream", 1130 __FUNCTION__, mCameraId); 1131 return res; 1132 } 1133 res = mDevice->waitUntilDrained(); 1134 if (res != OK) { 1135 ALOGE("%s: Camera %d: Waiting to stop streaming failed: %s (%d)", 1136 __FUNCTION__, mCameraId, strerror(-res), res); 1137 } 1138 res = mZslProcessor->clearZslQueue(); 1139 if (res != OK) { 1140 ALOGE("%s: Camera %d: Can't clear zsl queue", 1141 __FUNCTION__, mCameraId); 1142 return res; 1143 } 1144 res = mZslProcessor->deleteStream(); 1145 if (res != OK) { 1146 ALOGE("%s: Camera %d: Unable to delete zsl stream before " 1147 "record: %s (%d)", __FUNCTION__, mCameraId, 1148 strerror(-res), res); 1149 return res; 1150 } 1151 } 1152 1153 // Disable callbacks if they're enabled; can't record and use callbacks, 1154 // and we can't fail record start without stagefright asserting. 1155 params.previewCallbackFlags = 0; 1156 1157 // May need to reconfigure video snapshot JPEG sizes 1158 // during recording startup, so need a more complex sequence here to 1159 // ensure an early stream reconfiguration doesn't happen 1160 bool recordingStreamNeedsUpdate; 1161 res = mStreamingProcessor->recordingStreamNeedsUpdate(params, &recordingStreamNeedsUpdate); 1162 if (res != OK) { 1163 ALOGE("%s: Camera %d: Can't query recording stream", 1164 __FUNCTION__, mCameraId); 1165 return res; 1166 } 1167 1168 if (recordingStreamNeedsUpdate) { 1169 // Need to stop stream here so updateProcessorStream won't trigger configureStream 1170 // Right now camera device cannot handle configureStream failure gracefully 1171 // when device is streaming 1172 res = mStreamingProcessor->stopStream(); 1173 if (res != OK) { 1174 ALOGE("%s: Camera %d: Can't stop streaming to update record " 1175 "stream", __FUNCTION__, mCameraId); 1176 return res; 1177 } 1178 res = mDevice->waitUntilDrained(); 1179 if (res != OK) { 1180 ALOGE("%s: Camera %d: Waiting to stop streaming failed: " 1181 "%s (%d)", __FUNCTION__, mCameraId, 1182 strerror(-res), res); 1183 } 1184 1185 res = updateProcessorStream< 1186 StreamingProcessor, 1187 &StreamingProcessor::updateRecordingStream>( 1188 mStreamingProcessor, 1189 params); 1190 if (res != OK) { 1191 ALOGE("%s: Camera %d: Unable to update recording stream: " 1192 "%s (%d)", __FUNCTION__, mCameraId, 1193 strerror(-res), res); 1194 return res; 1195 } 1196 } 1197 1198 Vector<int32_t> outputStreams; 1199 outputStreams.push(getPreviewStreamId()); 1200 outputStreams.push(getRecordingStreamId()); 1201 1202 res = mStreamingProcessor->startStream(StreamingProcessor::RECORD, 1203 outputStreams); 1204 1205 // startStream might trigger a configureStream call and device might fail 1206 // configureStream due to jpeg size > video size. Try again with jpeg size overridden 1207 // to video size. 1208 if (res == BAD_VALUE) { 1209 overrideVideoSnapshotSize(params); 1210 res = mStreamingProcessor->startStream(StreamingProcessor::RECORD, 1211 outputStreams); 1212 } 1213 1214 if (res != OK) { 1215 ALOGE("%s: Camera %d: Unable to start recording stream: %s (%d)", 1216 __FUNCTION__, mCameraId, strerror(-res), res); 1217 return res; 1218 } 1219 1220 if (params.state < Parameters::RECORD) { 1221 params.state = Parameters::RECORD; 1222 } 1223 1224 return OK; 1225 } 1226 1227 void Camera2Client::stopRecording() { 1228 ATRACE_CALL(); 1229 ALOGV("%s: E", __FUNCTION__); 1230 Mutex::Autolock icl(mBinderSerializationLock); 1231 SharedParameters::Lock l(mParameters); 1232 1233 status_t res; 1234 if ( (res = checkPid(__FUNCTION__) ) != OK) return; 1235 1236 switch (l.mParameters.state) { 1237 case Parameters::RECORD: 1238 // OK to stop 1239 break; 1240 case Parameters::STOPPED: 1241 case Parameters::PREVIEW: 1242 case Parameters::STILL_CAPTURE: 1243 case Parameters::VIDEO_SNAPSHOT: 1244 default: 1245 ALOGE("%s: Camera %d: Can't stop recording in state %s", 1246 __FUNCTION__, mCameraId, 1247 Parameters::getStateName(l.mParameters.state)); 1248 return; 1249 }; 1250 1251 sCameraService->playSound(CameraService::SOUND_RECORDING_STOP); 1252 1253 // Remove recording stream because the video target may be abandoned soon. 1254 res = stopStream(); 1255 if (res != OK) { 1256 ALOGE("%s: Camera %d: Can't stop streaming: %s (%d)", 1257 __FUNCTION__, mCameraId, strerror(-res), res); 1258 } 1259 1260 res = mDevice->waitUntilDrained(); 1261 if (res != OK) { 1262 ALOGE("%s: Camera %d: Waiting to stop streaming failed: %s (%d)", 1263 __FUNCTION__, mCameraId, strerror(-res), res); 1264 } 1265 // Clean up recording stream 1266 res = mStreamingProcessor->deleteRecordingStream(); 1267 if (res != OK) { 1268 ALOGE("%s: Camera %d: Unable to delete recording stream before " 1269 "stop preview: %s (%d)", 1270 __FUNCTION__, mCameraId, strerror(-res), res); 1271 } 1272 l.mParameters.recoverOverriddenJpegSize(); 1273 1274 // Restart preview 1275 res = startPreviewL(l.mParameters, true); 1276 if (res != OK) { 1277 ALOGE("%s: Camera %d: Unable to return to preview", 1278 __FUNCTION__, mCameraId); 1279 } 1280 } 1281 1282 bool Camera2Client::recordingEnabled() { 1283 ATRACE_CALL(); 1284 Mutex::Autolock icl(mBinderSerializationLock); 1285 1286 if ( checkPid(__FUNCTION__) != OK) return false; 1287 1288 return recordingEnabledL(); 1289 } 1290 1291 bool Camera2Client::recordingEnabledL() { 1292 ATRACE_CALL(); 1293 SharedParameters::Lock l(mParameters); 1294 1295 return (l.mParameters.state == Parameters::RECORD 1296 || l.mParameters.state == Parameters::VIDEO_SNAPSHOT); 1297 } 1298 1299 void Camera2Client::releaseRecordingFrame(const sp<IMemory>& mem) { 1300 (void)mem; 1301 ATRACE_CALL(); 1302 ALOGW("%s: Not supported in buffer queue mode.", __FUNCTION__); 1303 } 1304 1305 void Camera2Client::releaseRecordingFrameHandle(native_handle_t *handle) { 1306 (void)handle; 1307 ATRACE_CALL(); 1308 ALOGW("%s: Not supported in buffer queue mode.", __FUNCTION__); 1309 } 1310 1311 void Camera2Client::releaseRecordingFrameHandleBatch( 1312 const std::vector<native_handle_t*>& handles) { 1313 (void)handles; 1314 ATRACE_CALL(); 1315 ALOGW("%s: Not supported in buffer queue mode.", __FUNCTION__); 1316 } 1317 1318 status_t Camera2Client::autoFocus() { 1319 ATRACE_CALL(); 1320 Mutex::Autolock icl(mBinderSerializationLock); 1321 ALOGV("%s: Camera %d", __FUNCTION__, mCameraId); 1322 status_t res; 1323 if ( (res = checkPid(__FUNCTION__) ) != OK) return res; 1324 1325 int triggerId; 1326 bool notifyImmediately = false; 1327 bool notifySuccess = false; 1328 { 1329 SharedParameters::Lock l(mParameters); 1330 if (l.mParameters.state < Parameters::PREVIEW) { 1331 ALOGE("%s: Camera %d: Call autoFocus when preview is inactive (state = %d).", 1332 __FUNCTION__, mCameraId, l.mParameters.state); 1333 return INVALID_OPERATION; 1334 } 1335 1336 /** 1337 * If the camera does not support auto-focus, it is a no-op and 1338 * onAutoFocus(boolean, Camera) callback will be called immediately 1339 * with a fake value of success set to true. 1340 * 1341 * Similarly, if focus mode is set to INFINITY, there's no reason to 1342 * bother the HAL. 1343 */ 1344 if (l.mParameters.focusMode == Parameters::FOCUS_MODE_FIXED || 1345 l.mParameters.focusMode == Parameters::FOCUS_MODE_INFINITY) { 1346 notifyImmediately = true; 1347 notifySuccess = true; 1348 } 1349 /** 1350 * If we're in CAF mode, and AF has already been locked, just fire back 1351 * the callback right away; the HAL would not send a notification since 1352 * no state change would happen on a AF trigger. 1353 */ 1354 if ( (l.mParameters.focusMode == Parameters::FOCUS_MODE_CONTINUOUS_PICTURE || 1355 l.mParameters.focusMode == Parameters::FOCUS_MODE_CONTINUOUS_VIDEO) && 1356 l.mParameters.focusState == ANDROID_CONTROL_AF_STATE_FOCUSED_LOCKED ) { 1357 notifyImmediately = true; 1358 notifySuccess = true; 1359 } 1360 /** 1361 * Send immediate notification back to client 1362 */ 1363 if (notifyImmediately) { 1364 SharedCameraCallbacks::Lock l(mSharedCameraCallbacks); 1365 if (l.mRemoteCallback != 0) { 1366 l.mRemoteCallback->notifyCallback(CAMERA_MSG_FOCUS, 1367 notifySuccess ? 1 : 0, 0); 1368 } 1369 return OK; 1370 } 1371 /** 1372 * Handle quirk mode for AF in scene modes 1373 */ 1374 if (l.mParameters.quirks.triggerAfWithAuto && 1375 l.mParameters.sceneMode != ANDROID_CONTROL_SCENE_MODE_DISABLED && 1376 l.mParameters.focusMode != Parameters::FOCUS_MODE_AUTO && 1377 !l.mParameters.focusingAreas[0].isEmpty()) { 1378 ALOGV("%s: Quirk: Switching from focusMode %d to AUTO", 1379 __FUNCTION__, l.mParameters.focusMode); 1380 l.mParameters.shadowFocusMode = l.mParameters.focusMode; 1381 l.mParameters.focusMode = Parameters::FOCUS_MODE_AUTO; 1382 updateRequests(l.mParameters); 1383 } 1384 1385 l.mParameters.currentAfTriggerId = ++l.mParameters.afTriggerCounter; 1386 triggerId = l.mParameters.currentAfTriggerId; 1387 } 1388 ATRACE_ASYNC_BEGIN(kAutofocusLabel, triggerId); 1389 1390 syncWithDevice(); 1391 1392 mDevice->triggerAutofocus(triggerId); 1393 1394 return OK; 1395 } 1396 1397 status_t Camera2Client::cancelAutoFocus() { 1398 ATRACE_CALL(); 1399 Mutex::Autolock icl(mBinderSerializationLock); 1400 ALOGV("%s: Camera %d", __FUNCTION__, mCameraId); 1401 status_t res; 1402 if ( (res = checkPid(__FUNCTION__) ) != OK) return res; 1403 1404 int triggerId; 1405 { 1406 SharedParameters::Lock l(mParameters); 1407 // Canceling does nothing in FIXED or INFINITY modes 1408 if (l.mParameters.focusMode == Parameters::FOCUS_MODE_FIXED || 1409 l.mParameters.focusMode == Parameters::FOCUS_MODE_INFINITY) { 1410 return OK; 1411 } 1412 1413 // An active AF trigger is canceled 1414 if (l.mParameters.afTriggerCounter == l.mParameters.currentAfTriggerId) { 1415 ATRACE_ASYNC_END(kAutofocusLabel, l.mParameters.currentAfTriggerId); 1416 } 1417 1418 triggerId = ++l.mParameters.afTriggerCounter; 1419 1420 // When using triggerAfWithAuto quirk, may need to reset focus mode to 1421 // the real state at this point. No need to cancel explicitly if 1422 // changing the AF mode. 1423 if (l.mParameters.shadowFocusMode != Parameters::FOCUS_MODE_INVALID) { 1424 ALOGV("%s: Quirk: Restoring focus mode to %d", __FUNCTION__, 1425 l.mParameters.shadowFocusMode); 1426 l.mParameters.focusMode = l.mParameters.shadowFocusMode; 1427 l.mParameters.shadowFocusMode = Parameters::FOCUS_MODE_INVALID; 1428 updateRequests(l.mParameters); 1429 1430 return OK; 1431 } 1432 if (l.mParameters.allowZslMode) { 1433 mZslProcessor->clearZslQueue(); 1434 } 1435 } 1436 syncWithDevice(); 1437 1438 mDevice->triggerCancelAutofocus(triggerId); 1439 1440 return OK; 1441 } 1442 1443 status_t Camera2Client::takePicture(int msgType) { 1444 ATRACE_CALL(); 1445 Mutex::Autolock icl(mBinderSerializationLock); 1446 status_t res; 1447 if ( (res = checkPid(__FUNCTION__) ) != OK) return res; 1448 1449 int takePictureCounter; 1450 { 1451 SharedParameters::Lock l(mParameters); 1452 switch (l.mParameters.state) { 1453 case Parameters::DISCONNECTED: 1454 case Parameters::STOPPED: 1455 case Parameters::WAITING_FOR_PREVIEW_WINDOW: 1456 ALOGE("%s: Camera %d: Cannot take picture without preview enabled", 1457 __FUNCTION__, mCameraId); 1458 return INVALID_OPERATION; 1459 case Parameters::PREVIEW: 1460 // Good to go for takePicture 1461 res = commandStopFaceDetectionL(l.mParameters); 1462 if (res != OK) { 1463 ALOGE("%s: Camera %d: Unable to stop face detection for still capture", 1464 __FUNCTION__, mCameraId); 1465 return res; 1466 } 1467 l.mParameters.state = Parameters::STILL_CAPTURE; 1468 1469 // Remove recording stream to prevent video snapshot jpeg logic kicking in 1470 if (l.mParameters.isJpegSizeOverridden() && 1471 mStreamingProcessor->getRecordingStreamId() != NO_STREAM) { 1472 res = mStreamingProcessor->togglePauseStream(/*pause*/true); 1473 if (res != OK) { 1474 ALOGE("%s: Camera %d: Can't pause streaming: %s (%d)", 1475 __FUNCTION__, mCameraId, strerror(-res), res); 1476 } 1477 res = mDevice->waitUntilDrained(); 1478 if (res != OK) { 1479 ALOGE("%s: Camera %d: Waiting to stop streaming failed: %s (%d)", 1480 __FUNCTION__, mCameraId, strerror(-res), res); 1481 } 1482 // Clean up recording stream 1483 res = mStreamingProcessor->deleteRecordingStream(); 1484 if (res != OK) { 1485 ALOGE("%s: Camera %d: Unable to delete recording stream before " 1486 "stop preview: %s (%d)", 1487 __FUNCTION__, mCameraId, strerror(-res), res); 1488 } 1489 res = mStreamingProcessor->togglePauseStream(/*pause*/false); 1490 if (res != OK) { 1491 ALOGE("%s: Camera %d: Can't unpause streaming: %s (%d)", 1492 __FUNCTION__, mCameraId, strerror(-res), res); 1493 } 1494 l.mParameters.recoverOverriddenJpegSize(); 1495 } 1496 break; 1497 case Parameters::RECORD: 1498 // Good to go for video snapshot 1499 l.mParameters.state = Parameters::VIDEO_SNAPSHOT; 1500 break; 1501 case Parameters::STILL_CAPTURE: 1502 case Parameters::VIDEO_SNAPSHOT: 1503 ALOGE("%s: Camera %d: Already taking a picture", 1504 __FUNCTION__, mCameraId); 1505 return INVALID_OPERATION; 1506 } 1507 1508 ALOGV("%s: Camera %d: Starting picture capture", __FUNCTION__, mCameraId); 1509 int lastJpegStreamId = mJpegProcessor->getStreamId(); 1510 // slowJpegMode will create jpeg stream in CaptureSequencer before capturing 1511 if (!l.mParameters.slowJpegMode) { 1512 res = updateProcessorStream(mJpegProcessor, l.mParameters); 1513 } 1514 1515 // If video snapshot fail to configureStream, try override video snapshot size to 1516 // video size 1517 if (res == BAD_VALUE && l.mParameters.state == Parameters::VIDEO_SNAPSHOT) { 1518 overrideVideoSnapshotSize(l.mParameters); 1519 res = updateProcessorStream(mJpegProcessor, l.mParameters); 1520 } 1521 if (res != OK) { 1522 ALOGE("%s: Camera %d: Can't set up still image stream: %s (%d)", 1523 __FUNCTION__, mCameraId, strerror(-res), res); 1524 return res; 1525 } 1526 takePictureCounter = ++l.mParameters.takePictureCounter; 1527 1528 // Clear ZSL buffer queue when Jpeg size is changed. 1529 bool jpegStreamChanged = mJpegProcessor->getStreamId() != lastJpegStreamId; 1530 if (l.mParameters.allowZslMode && jpegStreamChanged) { 1531 ALOGV("%s: Camera %d: Clear ZSL buffer queue when Jpeg size is changed", 1532 __FUNCTION__, mCameraId); 1533 mZslProcessor->clearZslQueue(); 1534 } 1535 } 1536 1537 ATRACE_ASYNC_BEGIN(kTakepictureLabel, takePictureCounter); 1538 1539 // Need HAL to have correct settings before (possibly) triggering precapture 1540 syncWithDevice(); 1541 1542 res = mCaptureSequencer->startCapture(msgType); 1543 if (res != OK) { 1544 ALOGE("%s: Camera %d: Unable to start capture: %s (%d)", 1545 __FUNCTION__, mCameraId, strerror(-res), res); 1546 } 1547 1548 return res; 1549 } 1550 1551 status_t Camera2Client::setParameters(const String8& params) { 1552 ATRACE_CALL(); 1553 ALOGV("%s: Camera %d", __FUNCTION__, mCameraId); 1554 Mutex::Autolock icl(mBinderSerializationLock); 1555 status_t res; 1556 if ( (res = checkPid(__FUNCTION__) ) != OK) return res; 1557 1558 SharedParameters::Lock l(mParameters); 1559 1560 Parameters::focusMode_t focusModeBefore = l.mParameters.focusMode; 1561 res = l.mParameters.set(params); 1562 if (res != OK) return res; 1563 Parameters::focusMode_t focusModeAfter = l.mParameters.focusMode; 1564 1565 if (l.mParameters.allowZslMode && focusModeAfter != focusModeBefore) { 1566 mZslProcessor->clearZslQueue(); 1567 } 1568 1569 res = updateRequests(l.mParameters); 1570 1571 return res; 1572 } 1573 1574 String8 Camera2Client::getParameters() const { 1575 ATRACE_CALL(); 1576 ALOGV("%s: Camera %d", __FUNCTION__, mCameraId); 1577 Mutex::Autolock icl(mBinderSerializationLock); 1578 // The camera service can unconditionally get the parameters at all times 1579 if (getCallingPid() != mServicePid && checkPid(__FUNCTION__) != OK) return String8(); 1580 1581 SharedParameters::ReadLock l(mParameters); 1582 1583 return l.mParameters.get(); 1584 } 1585 1586 status_t Camera2Client::sendCommand(int32_t cmd, int32_t arg1, int32_t arg2) { 1587 ATRACE_CALL(); 1588 Mutex::Autolock icl(mBinderSerializationLock); 1589 status_t res; 1590 if ( (res = checkPid(__FUNCTION__) ) != OK) return res; 1591 1592 ALOGV("%s: Camera %d: Command %d (%d, %d)", __FUNCTION__, mCameraId, 1593 cmd, arg1, arg2); 1594 1595 switch (cmd) { 1596 case CAMERA_CMD_START_SMOOTH_ZOOM: 1597 return commandStartSmoothZoomL(); 1598 case CAMERA_CMD_STOP_SMOOTH_ZOOM: 1599 return commandStopSmoothZoomL(); 1600 case CAMERA_CMD_SET_DISPLAY_ORIENTATION: 1601 return commandSetDisplayOrientationL(arg1); 1602 case CAMERA_CMD_ENABLE_SHUTTER_SOUND: 1603 return commandEnableShutterSoundL(arg1 == 1); 1604 case CAMERA_CMD_PLAY_RECORDING_SOUND: 1605 return commandPlayRecordingSoundL(); 1606 case CAMERA_CMD_START_FACE_DETECTION: 1607 return commandStartFaceDetectionL(arg1); 1608 case CAMERA_CMD_STOP_FACE_DETECTION: { 1609 SharedParameters::Lock l(mParameters); 1610 return commandStopFaceDetectionL(l.mParameters); 1611 } 1612 case CAMERA_CMD_ENABLE_FOCUS_MOVE_MSG: 1613 return commandEnableFocusMoveMsgL(arg1 == 1); 1614 case CAMERA_CMD_PING: 1615 return commandPingL(); 1616 case CAMERA_CMD_SET_VIDEO_BUFFER_COUNT: 1617 case CAMERA_CMD_SET_VIDEO_FORMAT: 1618 ALOGE("%s: command %d (arguments %d, %d) is not supported.", 1619 __FUNCTION__, cmd, arg1, arg2); 1620 return BAD_VALUE; 1621 default: 1622 ALOGE("%s: Unknown command %d (arguments %d, %d)", 1623 __FUNCTION__, cmd, arg1, arg2); 1624 return BAD_VALUE; 1625 } 1626 } 1627 1628 status_t Camera2Client::commandStartSmoothZoomL() { 1629 ALOGE("%s: Unimplemented!", __FUNCTION__); 1630 return OK; 1631 } 1632 1633 status_t Camera2Client::commandStopSmoothZoomL() { 1634 ALOGE("%s: Unimplemented!", __FUNCTION__); 1635 return OK; 1636 } 1637 1638 status_t Camera2Client::commandSetDisplayOrientationL(int degrees) { 1639 int transform = Parameters::degToTransform(degrees, 1640 mCameraFacing == CAMERA_FACING_FRONT); 1641 if (transform == -1) { 1642 ALOGE("%s: Camera %d: Error setting %d as display orientation value", 1643 __FUNCTION__, mCameraId, degrees); 1644 return BAD_VALUE; 1645 } 1646 SharedParameters::Lock l(mParameters); 1647 if (transform != l.mParameters.previewTransform && 1648 getPreviewStreamId() != NO_STREAM) { 1649 mDevice->setStreamTransform(getPreviewStreamId(), transform); 1650 } 1651 l.mParameters.previewTransform = transform; 1652 return OK; 1653 } 1654 1655 status_t Camera2Client::commandEnableShutterSoundL(bool enable) { 1656 SharedParameters::Lock l(mParameters); 1657 if (enable) { 1658 l.mParameters.playShutterSound = true; 1659 return OK; 1660 } 1661 1662 // the camera2 api legacy mode can unconditionally disable the shutter sound 1663 if (mLegacyMode) { 1664 ALOGV("%s: Disable shutter sound in legacy mode", __FUNCTION__); 1665 l.mParameters.playShutterSound = false; 1666 return OK; 1667 } 1668 1669 // Disabling shutter sound may not be allowed. In that case only 1670 // allow the mediaserver process to disable the sound. 1671 char value[PROPERTY_VALUE_MAX]; 1672 property_get("ro.camera.sound.forced", value, "0"); 1673 if (strncmp(value, "0", 2) != 0) { 1674 // Disabling shutter sound is not allowed. Deny if the current 1675 // process is not mediaserver. 1676 if (getCallingPid() != getpid()) { 1677 ALOGE("Failed to disable shutter sound. Permission denied (pid %d)", 1678 getCallingPid()); 1679 return PERMISSION_DENIED; 1680 } 1681 } 1682 1683 l.mParameters.playShutterSound = false; 1684 return OK; 1685 } 1686 1687 status_t Camera2Client::commandPlayRecordingSoundL() { 1688 sCameraService->playSound(CameraService::SOUND_RECORDING_START); 1689 return OK; 1690 } 1691 1692 status_t Camera2Client::commandStartFaceDetectionL(int /*type*/) { 1693 ALOGV("%s: Camera %d: Starting face detection", 1694 __FUNCTION__, mCameraId); 1695 status_t res; 1696 SharedParameters::Lock l(mParameters); 1697 switch (l.mParameters.state) { 1698 case Parameters::DISCONNECTED: 1699 case Parameters::STOPPED: 1700 case Parameters::WAITING_FOR_PREVIEW_WINDOW: 1701 case Parameters::STILL_CAPTURE: 1702 ALOGE("%s: Camera %d: Cannot start face detection without preview active", 1703 __FUNCTION__, mCameraId); 1704 return INVALID_OPERATION; 1705 case Parameters::PREVIEW: 1706 case Parameters::RECORD: 1707 case Parameters::VIDEO_SNAPSHOT: 1708 // Good to go for starting face detect 1709 break; 1710 } 1711 // Ignoring type 1712 if (l.mParameters.fastInfo.bestFaceDetectMode == 1713 ANDROID_STATISTICS_FACE_DETECT_MODE_OFF) { 1714 ALOGE("%s: Camera %d: Face detection not supported", 1715 __FUNCTION__, mCameraId); 1716 return BAD_VALUE; 1717 } 1718 if (l.mParameters.enableFaceDetect) return OK; 1719 1720 l.mParameters.enableFaceDetect = true; 1721 1722 res = updateRequests(l.mParameters); 1723 1724 return res; 1725 } 1726 1727 status_t Camera2Client::commandStopFaceDetectionL(Parameters ¶ms) { 1728 status_t res = OK; 1729 ALOGV("%s: Camera %d: Stopping face detection", 1730 __FUNCTION__, mCameraId); 1731 1732 if (!params.enableFaceDetect) return OK; 1733 1734 params.enableFaceDetect = false; 1735 1736 if (params.state == Parameters::PREVIEW 1737 || params.state == Parameters::RECORD 1738 || params.state == Parameters::VIDEO_SNAPSHOT) { 1739 res = updateRequests(params); 1740 } 1741 1742 return res; 1743 } 1744 1745 status_t Camera2Client::commandEnableFocusMoveMsgL(bool enable) { 1746 SharedParameters::Lock l(mParameters); 1747 l.mParameters.enableFocusMoveMessages = enable; 1748 1749 return OK; 1750 } 1751 1752 status_t Camera2Client::commandPingL() { 1753 // Always ping back if access is proper and device is alive 1754 SharedParameters::Lock l(mParameters); 1755 if (l.mParameters.state != Parameters::DISCONNECTED) { 1756 return OK; 1757 } else { 1758 return NO_INIT; 1759 } 1760 } 1761 1762 void Camera2Client::notifyError(int32_t errorCode, 1763 const CaptureResultExtras& resultExtras) { 1764 int32_t err = CAMERA_ERROR_UNKNOWN; 1765 switch(errorCode) { 1766 case hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_DISCONNECTED: 1767 err = CAMERA_ERROR_RELEASED; 1768 break; 1769 case hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_DEVICE: 1770 err = CAMERA_ERROR_UNKNOWN; 1771 break; 1772 case hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_SERVICE: 1773 err = CAMERA_ERROR_SERVER_DIED; 1774 break; 1775 case hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_REQUEST: 1776 case hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_RESULT: 1777 case hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_BUFFER: 1778 ALOGW("%s: Received recoverable error %d from HAL - ignoring, requestId %" PRId32, 1779 __FUNCTION__, errorCode, resultExtras.requestId); 1780 return; 1781 default: 1782 err = CAMERA_ERROR_UNKNOWN; 1783 break; 1784 } 1785 1786 ALOGE("%s: Error condition %d reported by HAL, requestId %" PRId32, __FUNCTION__, errorCode, 1787 resultExtras.requestId); 1788 1789 SharedCameraCallbacks::Lock l(mSharedCameraCallbacks); 1790 if (l.mRemoteCallback != nullptr) { 1791 l.mRemoteCallback->notifyCallback(CAMERA_MSG_ERROR, err, 0); 1792 } 1793 } 1794 1795 1796 /** Device-related methods */ 1797 void Camera2Client::notifyAutoFocus(uint8_t newState, int triggerId) { 1798 ALOGV("%s: Autofocus state now %d, last trigger %d", 1799 __FUNCTION__, newState, triggerId); 1800 bool sendCompletedMessage = false; 1801 bool sendMovingMessage = false; 1802 1803 bool success = false; 1804 bool afInMotion = false; 1805 { 1806 SharedParameters::Lock l(mParameters); 1807 // Trace end of AF state 1808 char tmp[32]; 1809 if (l.mParameters.afStateCounter > 0) { 1810 camera_metadata_enum_snprint( 1811 ANDROID_CONTROL_AF_STATE, l.mParameters.focusState, tmp, sizeof(tmp)); 1812 ATRACE_ASYNC_END(tmp, l.mParameters.afStateCounter); 1813 } 1814 1815 // Update state 1816 l.mParameters.focusState = newState; 1817 l.mParameters.afStateCounter++; 1818 1819 // Trace start of AF state 1820 1821 camera_metadata_enum_snprint( 1822 ANDROID_CONTROL_AF_STATE, l.mParameters.focusState, tmp, sizeof(tmp)); 1823 ATRACE_ASYNC_BEGIN(tmp, l.mParameters.afStateCounter); 1824 1825 switch (l.mParameters.focusMode) { 1826 case Parameters::FOCUS_MODE_AUTO: 1827 case Parameters::FOCUS_MODE_MACRO: 1828 // Don't send notifications upstream if they're not for the current AF 1829 // trigger. For example, if cancel was called in between, or if we 1830 // already sent a notification about this AF call. 1831 if (triggerId != l.mParameters.currentAfTriggerId) break; 1832 switch (newState) { 1833 case ANDROID_CONTROL_AF_STATE_FOCUSED_LOCKED: 1834 success = true; 1835 // no break 1836 case ANDROID_CONTROL_AF_STATE_NOT_FOCUSED_LOCKED: 1837 sendCompletedMessage = true; 1838 l.mParameters.currentAfTriggerId = -1; 1839 break; 1840 case ANDROID_CONTROL_AF_STATE_ACTIVE_SCAN: 1841 // Just starting focusing, ignore 1842 break; 1843 case ANDROID_CONTROL_AF_STATE_INACTIVE: 1844 case ANDROID_CONTROL_AF_STATE_PASSIVE_SCAN: 1845 case ANDROID_CONTROL_AF_STATE_PASSIVE_FOCUSED: 1846 case ANDROID_CONTROL_AF_STATE_PASSIVE_UNFOCUSED: 1847 default: 1848 // Unexpected in AUTO/MACRO mode 1849 ALOGE("%s: Unexpected AF state transition in AUTO/MACRO mode: %d", 1850 __FUNCTION__, newState); 1851 break; 1852 } 1853 break; 1854 case Parameters::FOCUS_MODE_CONTINUOUS_VIDEO: 1855 case Parameters::FOCUS_MODE_CONTINUOUS_PICTURE: 1856 switch (newState) { 1857 case ANDROID_CONTROL_AF_STATE_FOCUSED_LOCKED: 1858 success = true; 1859 // no break 1860 case ANDROID_CONTROL_AF_STATE_NOT_FOCUSED_LOCKED: 1861 // Don't send notifications upstream if they're not for 1862 // the current AF trigger. For example, if cancel was 1863 // called in between, or if we already sent a 1864 // notification about this AF call. 1865 // Send both a 'AF done' callback and a 'AF move' callback 1866 if (triggerId != l.mParameters.currentAfTriggerId) break; 1867 sendCompletedMessage = true; 1868 afInMotion = false; 1869 if (l.mParameters.enableFocusMoveMessages && 1870 l.mParameters.afInMotion) { 1871 sendMovingMessage = true; 1872 } 1873 l.mParameters.currentAfTriggerId = -1; 1874 break; 1875 case ANDROID_CONTROL_AF_STATE_INACTIVE: 1876 // Cancel was called, or we switched state; care if 1877 // currently moving 1878 afInMotion = false; 1879 if (l.mParameters.enableFocusMoveMessages && 1880 l.mParameters.afInMotion) { 1881 sendMovingMessage = true; 1882 } 1883 break; 1884 case ANDROID_CONTROL_AF_STATE_PASSIVE_SCAN: 1885 // Start passive scan, inform upstream 1886 afInMotion = true; 1887 // no break 1888 case ANDROID_CONTROL_AF_STATE_PASSIVE_FOCUSED: 1889 case ANDROID_CONTROL_AF_STATE_PASSIVE_UNFOCUSED: 1890 // Stop passive scan, inform upstream 1891 if (l.mParameters.enableFocusMoveMessages) { 1892 sendMovingMessage = true; 1893 } 1894 break; 1895 } 1896 l.mParameters.afInMotion = afInMotion; 1897 break; 1898 case Parameters::FOCUS_MODE_EDOF: 1899 case Parameters::FOCUS_MODE_INFINITY: 1900 case Parameters::FOCUS_MODE_FIXED: 1901 default: 1902 if (newState != ANDROID_CONTROL_AF_STATE_INACTIVE) { 1903 ALOGE("%s: Unexpected AF state change %d " 1904 "(ID %d) in focus mode %d", 1905 __FUNCTION__, newState, triggerId, 1906 l.mParameters.focusMode); 1907 } 1908 } 1909 } 1910 if (sendMovingMessage) { 1911 SharedCameraCallbacks::Lock l(mSharedCameraCallbacks); 1912 if (l.mRemoteCallback != 0) { 1913 l.mRemoteCallback->notifyCallback(CAMERA_MSG_FOCUS_MOVE, 1914 afInMotion ? 1 : 0, 0); 1915 } 1916 } 1917 if (sendCompletedMessage) { 1918 ATRACE_ASYNC_END(kAutofocusLabel, triggerId); 1919 SharedCameraCallbacks::Lock l(mSharedCameraCallbacks); 1920 if (l.mRemoteCallback != 0) { 1921 l.mRemoteCallback->notifyCallback(CAMERA_MSG_FOCUS, 1922 success ? 1 : 0, 0); 1923 } 1924 } 1925 } 1926 1927 void Camera2Client::notifyAutoExposure(uint8_t newState, int triggerId) { 1928 ALOGV("%s: Autoexposure state now %d, last trigger %d", 1929 __FUNCTION__, newState, triggerId); 1930 mCaptureSequencer->notifyAutoExposure(newState, triggerId); 1931 } 1932 1933 void Camera2Client::notifyShutter(const CaptureResultExtras& resultExtras, 1934 nsecs_t timestamp) { 1935 (void)resultExtras; 1936 (void)timestamp; 1937 1938 ALOGV("%s: Shutter notification for request id %" PRId32 " at time %" PRId64, 1939 __FUNCTION__, resultExtras.requestId, timestamp); 1940 mCaptureSequencer->notifyShutter(resultExtras, timestamp); 1941 1942 Camera2ClientBase::notifyShutter(resultExtras, timestamp); 1943 } 1944 1945 camera2::SharedParameters& Camera2Client::getParameters() { 1946 return mParameters; 1947 } 1948 1949 int Camera2Client::getPreviewStreamId() const { 1950 return mStreamingProcessor->getPreviewStreamId(); 1951 } 1952 1953 int Camera2Client::getCaptureStreamId() const { 1954 return mJpegProcessor->getStreamId(); 1955 } 1956 1957 int Camera2Client::getCallbackStreamId() const { 1958 return mCallbackProcessor->getStreamId(); 1959 } 1960 1961 int Camera2Client::getRecordingStreamId() const { 1962 return mStreamingProcessor->getRecordingStreamId(); 1963 } 1964 1965 int Camera2Client::getZslStreamId() const { 1966 return mZslProcessor->getStreamId(); 1967 } 1968 1969 status_t Camera2Client::registerFrameListener(int32_t minId, int32_t maxId, 1970 const wp<camera2::FrameProcessor::FilteredListener>& listener, bool sendPartials) { 1971 return mFrameProcessor->registerListener(minId, maxId, listener, sendPartials); 1972 } 1973 1974 status_t Camera2Client::removeFrameListener(int32_t minId, int32_t maxId, 1975 const wp<camera2::FrameProcessor::FilteredListener>& listener) { 1976 return mFrameProcessor->removeListener(minId, maxId, listener); 1977 } 1978 1979 status_t Camera2Client::stopStream() { 1980 return mStreamingProcessor->stopStream(); 1981 } 1982 1983 status_t Camera2Client::createJpegStreamL(Parameters ¶ms) { 1984 status_t res = OK; 1985 int lastJpegStreamId = mJpegProcessor->getStreamId(); 1986 if (lastJpegStreamId != NO_STREAM) { 1987 return INVALID_OPERATION; 1988 } 1989 1990 res = mStreamingProcessor->togglePauseStream(/*pause*/true); 1991 if (res != OK) { 1992 ALOGE("%s: Camera %d: Can't pause streaming: %s (%d)", 1993 __FUNCTION__, mCameraId, strerror(-res), res); 1994 return res; 1995 } 1996 1997 res = mDevice->flush(); 1998 if (res != OK) { 1999 ALOGE("%s: Camera %d: Unable flush device: %s (%d)", 2000 __FUNCTION__, mCameraId, strerror(-res), res); 2001 return res; 2002 } 2003 2004 // Ideally we don't need this, but current camera device 2005 // status tracking mechanism demands it. 2006 res = mDevice->waitUntilDrained(); 2007 if (res != OK) { 2008 ALOGE("%s: Camera %d: Waiting device drain failed: %s (%d)", 2009 __FUNCTION__, mCameraId, strerror(-res), res); 2010 } 2011 2012 res = updateProcessorStream(mJpegProcessor, params); 2013 return res; 2014 } 2015 2016 const int32_t Camera2Client::kPreviewRequestIdStart; 2017 const int32_t Camera2Client::kPreviewRequestIdEnd; 2018 const int32_t Camera2Client::kRecordingRequestIdStart; 2019 const int32_t Camera2Client::kRecordingRequestIdEnd; 2020 const int32_t Camera2Client::kCaptureRequestIdStart; 2021 const int32_t Camera2Client::kCaptureRequestIdEnd; 2022 2023 /** Utility methods */ 2024 2025 status_t Camera2Client::updateRequests(Parameters ¶ms) { 2026 status_t res; 2027 2028 ALOGV("%s: Camera %d: state = %d", __FUNCTION__, getCameraId(), params.state); 2029 2030 res = mStreamingProcessor->incrementStreamingIds(); 2031 if (res != OK) { 2032 ALOGE("%s: Camera %d: Unable to increment request IDs: %s (%d)", 2033 __FUNCTION__, mCameraId, strerror(-res), res); 2034 return res; 2035 } 2036 2037 res = mStreamingProcessor->updatePreviewRequest(params); 2038 if (res != OK) { 2039 ALOGE("%s: Camera %d: Unable to update preview request: %s (%d)", 2040 __FUNCTION__, mCameraId, strerror(-res), res); 2041 return res; 2042 } 2043 res = mStreamingProcessor->updateRecordingRequest(params); 2044 if (res != OK) { 2045 ALOGE("%s: Camera %d: Unable to update recording request: %s (%d)", 2046 __FUNCTION__, mCameraId, strerror(-res), res); 2047 return res; 2048 } 2049 2050 if (params.state == Parameters::PREVIEW) { 2051 res = startPreviewL(params, true); 2052 if (res != OK) { 2053 ALOGE("%s: Camera %d: Error streaming new preview request: %s (%d)", 2054 __FUNCTION__, mCameraId, strerror(-res), res); 2055 return res; 2056 } 2057 } else if (params.state == Parameters::RECORD || 2058 params.state == Parameters::VIDEO_SNAPSHOT) { 2059 res = startRecordingL(params, true); 2060 if (res != OK) { 2061 ALOGE("%s: Camera %d: Error streaming new record request: %s (%d)", 2062 __FUNCTION__, mCameraId, strerror(-res), res); 2063 return res; 2064 } 2065 } 2066 return res; 2067 } 2068 2069 2070 size_t Camera2Client::calculateBufferSize(int width, int height, 2071 int format, int stride) { 2072 switch (format) { 2073 case HAL_PIXEL_FORMAT_YCbCr_422_SP: // NV16 2074 return width * height * 2; 2075 case HAL_PIXEL_FORMAT_YCrCb_420_SP: // NV21 2076 return width * height * 3 / 2; 2077 case HAL_PIXEL_FORMAT_YCbCr_422_I: // YUY2 2078 return width * height * 2; 2079 case HAL_PIXEL_FORMAT_YV12: { // YV12 2080 size_t ySize = stride * height; 2081 size_t uvStride = (stride / 2 + 0xF) & ~0xF; 2082 size_t uvSize = uvStride * height / 2; 2083 return ySize + uvSize * 2; 2084 } 2085 case HAL_PIXEL_FORMAT_RGB_565: 2086 return width * height * 2; 2087 case HAL_PIXEL_FORMAT_RGBA_8888: 2088 return width * height * 4; 2089 case HAL_PIXEL_FORMAT_RAW16: 2090 return width * height * 2; 2091 default: 2092 ALOGE("%s: Unknown preview format: %x", 2093 __FUNCTION__, format); 2094 return 0; 2095 } 2096 } 2097 2098 status_t Camera2Client::syncWithDevice() { 2099 ATRACE_CALL(); 2100 const nsecs_t kMaxSyncTimeout = 500000000; // 500 ms 2101 status_t res; 2102 2103 int32_t activeRequestId = mStreamingProcessor->getActiveRequestId(); 2104 if (activeRequestId == 0) return OK; 2105 2106 res = mDevice->waitUntilRequestReceived(activeRequestId, kMaxSyncTimeout); 2107 if (res == TIMED_OUT) { 2108 ALOGE("%s: Camera %d: Timed out waiting sync with HAL", 2109 __FUNCTION__, mCameraId); 2110 } else if (res != OK) { 2111 ALOGE("%s: Camera %d: Error while waiting to sync with HAL", 2112 __FUNCTION__, mCameraId); 2113 } 2114 return res; 2115 } 2116 2117 template <typename ProcessorT> 2118 status_t Camera2Client::updateProcessorStream(sp<ProcessorT> processor, 2119 camera2::Parameters params) { 2120 // No default template arguments until C++11, so we need this overload 2121 return updateProcessorStream<ProcessorT, &ProcessorT::updateStream>( 2122 processor, params); 2123 } 2124 2125 template <typename ProcessorT, 2126 status_t (ProcessorT::*updateStreamF)(const Parameters &)> 2127 status_t Camera2Client::updateProcessorStream(sp<ProcessorT> processor, 2128 Parameters params) { 2129 status_t res; 2130 2131 // Get raw pointer since sp<T> doesn't have operator->* 2132 ProcessorT *processorPtr = processor.get(); 2133 res = (processorPtr->*updateStreamF)(params); 2134 2135 /** 2136 * Can't update the stream if it's busy? 2137 * 2138 * Then we need to stop the device (by temporarily clearing the request 2139 * queue) and then try again. Resume streaming once we're done. 2140 */ 2141 if (res == -EBUSY) { 2142 ALOGV("%s: Camera %d: Pausing to update stream", __FUNCTION__, 2143 mCameraId); 2144 res = mStreamingProcessor->togglePauseStream(/*pause*/true); 2145 if (res != OK) { 2146 ALOGE("%s: Camera %d: Can't pause streaming: %s (%d)", 2147 __FUNCTION__, mCameraId, strerror(-res), res); 2148 } 2149 2150 res = mDevice->waitUntilDrained(); 2151 if (res != OK) { 2152 ALOGE("%s: Camera %d: Waiting to stop streaming failed: %s (%d)", 2153 __FUNCTION__, mCameraId, strerror(-res), res); 2154 } 2155 2156 res = (processorPtr->*updateStreamF)(params); 2157 if (res != OK) { 2158 ALOGE("%s: Camera %d: Failed to update processing stream " 2159 " despite having halted streaming first: %s (%d)", 2160 __FUNCTION__, mCameraId, strerror(-res), res); 2161 } 2162 2163 res = mStreamingProcessor->togglePauseStream(/*pause*/false); 2164 if (res != OK) { 2165 ALOGE("%s: Camera %d: Can't unpause streaming: %s (%d)", 2166 __FUNCTION__, mCameraId, strerror(-res), res); 2167 } 2168 } 2169 2170 return res; 2171 } 2172 2173 status_t Camera2Client::overrideVideoSnapshotSize(Parameters ¶ms) { 2174 ALOGV("%s: Camera %d: configure still size to video size before recording" 2175 , __FUNCTION__, mCameraId); 2176 params.overrideJpegSizeByVideoSize(); 2177 status_t res = updateProcessorStream(mJpegProcessor, params); 2178 if (res != OK) { 2179 ALOGE("%s: Camera %d: Can't override video snapshot size to video size: %s (%d)", 2180 __FUNCTION__, mCameraId, strerror(-res), res); 2181 } 2182 return res; 2183 } 2184 2185 status_t Camera2Client::setVideoTarget(const sp<IGraphicBufferProducer>& bufferProducer) { 2186 ATRACE_CALL(); 2187 ALOGV("%s: E", __FUNCTION__); 2188 Mutex::Autolock icl(mBinderSerializationLock); 2189 status_t res; 2190 if ( (res = checkPid(__FUNCTION__) ) != OK) return res; 2191 2192 sp<IBinder> binder = IInterface::asBinder(bufferProducer); 2193 if (binder == mVideoSurface) { 2194 ALOGV("%s: Camera %d: New video window is same as old video window", 2195 __FUNCTION__, mCameraId); 2196 return NO_ERROR; 2197 } 2198 2199 sp<Surface> window; 2200 int format; 2201 android_dataspace dataSpace; 2202 2203 if (bufferProducer != nullptr) { 2204 // Using controlledByApp flag to ensure that the buffer queue remains in 2205 // async mode for the old camera API, where many applications depend 2206 // on that behavior. 2207 window = new Surface(bufferProducer, /*controlledByApp*/ true); 2208 2209 ANativeWindow *anw = window.get(); 2210 2211 if ((res = anw->query(anw, NATIVE_WINDOW_FORMAT, &format)) != OK) { 2212 ALOGE("%s: Failed to query Surface format", __FUNCTION__); 2213 return res; 2214 } 2215 2216 if ((res = anw->query(anw, NATIVE_WINDOW_DEFAULT_DATASPACE, 2217 reinterpret_cast<int*>(&dataSpace))) != OK) { 2218 ALOGE("%s: Failed to query Surface dataSpace", __FUNCTION__); 2219 return res; 2220 } 2221 } 2222 2223 Parameters::State state; 2224 { 2225 SharedParameters::Lock l(mParameters); 2226 state = l.mParameters.state; 2227 } 2228 2229 switch (state) { 2230 case Parameters::STOPPED: 2231 case Parameters::WAITING_FOR_PREVIEW_WINDOW: 2232 case Parameters::PREVIEW: 2233 // OK 2234 break; 2235 case Parameters::DISCONNECTED: 2236 case Parameters::RECORD: 2237 case Parameters::STILL_CAPTURE: 2238 case Parameters::VIDEO_SNAPSHOT: 2239 default: 2240 ALOGE("%s: Camera %d: Cannot set video target while in state %s", 2241 __FUNCTION__, mCameraId, 2242 Parameters::getStateName(state)); 2243 return INVALID_OPERATION; 2244 } 2245 2246 mVideoSurface = binder; 2247 res = mStreamingProcessor->setRecordingWindow(window); 2248 if (res != OK) { 2249 ALOGE("%s: Unable to set new recording window: %s (%d)", 2250 __FUNCTION__, strerror(-res), res); 2251 return res; 2252 } 2253 2254 { 2255 SharedParameters::Lock l(mParameters); 2256 l.mParameters.videoFormat = format; 2257 l.mParameters.videoDataSpace = dataSpace; 2258 } 2259 2260 return OK; 2261 } 2262 2263 const char* Camera2Client::kAutofocusLabel = "autofocus"; 2264 const char* Camera2Client::kTakepictureLabel = "take_picture"; 2265 2266 } // namespace android 2267