blob: fb8979d63b2a1c3061a2165820c7d0f81bb5024f [file] [log] [blame]
Emilian Peev434248e2022-10-06 14:58:54 -07001/*
2 * Copyright (C) 2022 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#include "hardware/gralloc.h"
18#include "system/graphics-base-v1.0.h"
19#include "system/graphics-base-v1.1.h"
20#define LOG_TAG "Camera3-JpegRCompositeStream"
21#define ATRACE_TAG ATRACE_TAG_CAMERA
22//#define LOG_NDEBUG 0
23
24#include <aidl/android/hardware/camera/device/CameraBlob.h>
25#include <aidl/android/hardware/camera/device/CameraBlobId.h>
26
27#include "common/CameraProviderManager.h"
28#include <gui/Surface.h>
Dichen Zhang8a533b72022-11-15 23:03:02 +000029#include <jpegrecoverymap/recoverymap.h>
Emilian Peev434248e2022-10-06 14:58:54 -070030#include <utils/ExifUtils.h>
31#include <utils/Log.h>
32#include "utils/SessionConfigurationUtils.h"
33#include <utils/Trace.h>
34
35#include "JpegRCompositeStream.h"
36
37namespace android {
38namespace camera3 {
39
40using aidl::android::hardware::camera::device::CameraBlob;
41using aidl::android::hardware::camera::device::CameraBlobId;
42
43JpegRCompositeStream::JpegRCompositeStream(sp<CameraDeviceBase> device,
44 wp<hardware::camera2::ICameraDeviceCallbacks> cb) :
45 CompositeStream(device, cb),
46 mBlobStreamId(-1),
47 mBlobSurfaceId(-1),
48 mP010StreamId(-1),
49 mP010SurfaceId(-1),
50 mBlobWidth(0),
51 mBlobHeight(0),
52 mP010BufferAcquired(false),
53 mBlobBufferAcquired(false),
54 mOutputColorSpace(ANDROID_REQUEST_AVAILABLE_COLOR_SPACE_PROFILES_MAP_UNSPECIFIED),
55 mProducerListener(new ProducerListener()),
56 mMaxJpegBufferSize(-1),
57 mUHRMaxJpegBufferSize(-1),
58 mStaticInfo(device->info()) {
59 auto entry = mStaticInfo.find(ANDROID_JPEG_MAX_SIZE);
60 if (entry.count > 0) {
61 mMaxJpegBufferSize = entry.data.i32[0];
62 } else {
63 ALOGW("%s: Maximum jpeg size absent from camera characteristics", __FUNCTION__);
64 }
65
66 mUHRMaxJpegSize =
67 SessionConfigurationUtils::getMaxJpegResolution(mStaticInfo,
68 /*ultraHighResolution*/true);
69 mDefaultMaxJpegSize =
70 SessionConfigurationUtils::getMaxJpegResolution(mStaticInfo,
71 /*isUltraHighResolution*/false);
72
73 mUHRMaxJpegBufferSize =
74 SessionConfigurationUtils::getUHRMaxJpegBufferSize(mUHRMaxJpegSize, mDefaultMaxJpegSize,
75 mMaxJpegBufferSize);
76}
77
78JpegRCompositeStream::~JpegRCompositeStream() {
79 mBlobConsumer.clear(),
80 mBlobSurface.clear(),
81 mBlobStreamId = -1;
82 mBlobSurfaceId = -1;
83 mP010Consumer.clear();
84 mP010Surface.clear();
85 mP010Consumer = nullptr;
86 mP010Surface = nullptr;
87}
88
89void JpegRCompositeStream::compilePendingInputLocked() {
90 CpuConsumer::LockedBuffer imgBuffer;
91
92 while (mSupportInternalJpeg && !mInputJpegBuffers.empty() && !mBlobBufferAcquired) {
93 auto it = mInputJpegBuffers.begin();
94 auto res = mBlobConsumer->lockNextBuffer(&imgBuffer);
95 if (res == NOT_ENOUGH_DATA) {
96 // Can not lock any more buffers.
97 break;
98 } else if (res != OK) {
99 ALOGE("%s: Error locking blob image buffer: %s (%d)", __FUNCTION__,
100 strerror(-res), res);
101 mPendingInputFrames[*it].error = true;
102 mInputJpegBuffers.erase(it);
103 continue;
104 }
105
106 if (*it != imgBuffer.timestamp) {
107 ALOGW("%s: Expecting jpeg buffer with time stamp: %" PRId64 " received buffer with "
108 "time stamp: %" PRId64, __FUNCTION__, *it, imgBuffer.timestamp);
109 }
110
111 if ((mPendingInputFrames.find(imgBuffer.timestamp) != mPendingInputFrames.end()) &&
112 (mPendingInputFrames[imgBuffer.timestamp].error)) {
113 mBlobConsumer->unlockBuffer(imgBuffer);
114 } else {
115 mPendingInputFrames[imgBuffer.timestamp].jpegBuffer = imgBuffer;
116 mBlobBufferAcquired = true;
117 }
118 mInputJpegBuffers.erase(it);
119 }
120
121 while (!mInputP010Buffers.empty() && !mP010BufferAcquired) {
122 auto it = mInputP010Buffers.begin();
123 auto res = mP010Consumer->lockNextBuffer(&imgBuffer);
124 if (res == NOT_ENOUGH_DATA) {
125 // Can not lock any more buffers.
126 break;
127 } else if (res != OK) {
128 ALOGE("%s: Error receiving P010 image buffer: %s (%d)", __FUNCTION__,
129 strerror(-res), res);
130 mPendingInputFrames[*it].error = true;
131 mInputP010Buffers.erase(it);
132 continue;
133 }
134
135 if (*it != imgBuffer.timestamp) {
136 ALOGW("%s: Expecting P010 buffer with time stamp: %" PRId64 " received buffer with "
137 "time stamp: %" PRId64, __FUNCTION__, *it, imgBuffer.timestamp);
138 }
139
140 if ((mPendingInputFrames.find(imgBuffer.timestamp) != mPendingInputFrames.end()) &&
141 (mPendingInputFrames[imgBuffer.timestamp].error)) {
142 mP010Consumer->unlockBuffer(imgBuffer);
143 } else {
144 mPendingInputFrames[imgBuffer.timestamp].p010Buffer = imgBuffer;
145 mP010BufferAcquired = true;
146 }
147 mInputP010Buffers.erase(it);
148 }
149
150 while (!mCaptureResults.empty()) {
151 auto it = mCaptureResults.begin();
152 // Negative timestamp indicates that something went wrong during the capture result
153 // collection process.
154 if (it->first >= 0) {
155 mPendingInputFrames[it->first].frameNumber = std::get<0>(it->second);
156 mPendingInputFrames[it->first].result = std::get<1>(it->second);
157 }
158 mCaptureResults.erase(it);
159 }
160
161 while (!mFrameNumberMap.empty()) {
162 auto it = mFrameNumberMap.begin();
163 mPendingInputFrames[it->second].frameNumber = it->first;
164 mFrameNumberMap.erase(it);
165 }
166
167 auto it = mErrorFrameNumbers.begin();
168 while (it != mErrorFrameNumbers.end()) {
169 bool frameFound = false;
170 for (auto &inputFrame : mPendingInputFrames) {
171 if (inputFrame.second.frameNumber == *it) {
172 inputFrame.second.error = true;
173 frameFound = true;
174 break;
175 }
176 }
177
178 if (frameFound) {
179 it = mErrorFrameNumbers.erase(it);
180 } else {
181 ALOGW("%s: Not able to find failing input with frame number: %" PRId64, __FUNCTION__,
182 *it);
183 it++;
184 }
185 }
186}
187
188bool JpegRCompositeStream::getNextReadyInputLocked(int64_t *currentTs /*inout*/) {
189 if (currentTs == nullptr) {
190 return false;
191 }
192
193 bool newInputAvailable = false;
194 for (const auto& it : mPendingInputFrames) {
195 if ((!it.second.error) && (it.second.p010Buffer.data != nullptr) &&
196 ((it.second.jpegBuffer.data != nullptr) || !mSupportInternalJpeg) &&
197 (it.first < *currentTs)) {
198 *currentTs = it.first;
199 newInputAvailable = true;
200 }
201 }
202
203 return newInputAvailable;
204}
205
206int64_t JpegRCompositeStream::getNextFailingInputLocked(int64_t *currentTs /*inout*/) {
207 int64_t ret = -1;
208 if (currentTs == nullptr) {
209 return ret;
210 }
211
212 for (const auto& it : mPendingInputFrames) {
213 if (it.second.error && !it.second.errorNotified && (it.first < *currentTs)) {
214 *currentTs = it.first;
215 ret = it.second.frameNumber;
216 }
217 }
218
219 return ret;
220}
221
222status_t JpegRCompositeStream::processInputFrame(nsecs_t ts, const InputFrame &inputFrame) {
223 status_t res;
224 sp<ANativeWindow> outputANW = mOutputSurface;
225 ANativeWindowBuffer *anb;
226 int fenceFd;
227 void *dstBuffer;
228
Dichen Zhang8a533b72022-11-15 23:03:02 +0000229 size_t maxJpegRBufferSize = 0;
Emilian Peev434248e2022-10-06 14:58:54 -0700230 if (mMaxJpegBufferSize > 0) {
231 // If this is an ultra high resolution sensor and the input frames size
232 // is > default res jpeg.
233 if (mUHRMaxJpegSize.width != 0 &&
234 inputFrame.jpegBuffer.width * inputFrame.jpegBuffer.height >
235 mDefaultMaxJpegSize.width * mDefaultMaxJpegSize.height) {
Dichen Zhang8a533b72022-11-15 23:03:02 +0000236 maxJpegRBufferSize = mUHRMaxJpegBufferSize;
Emilian Peev434248e2022-10-06 14:58:54 -0700237 } else {
Dichen Zhang8a533b72022-11-15 23:03:02 +0000238 maxJpegRBufferSize = mMaxJpegBufferSize;
Emilian Peev434248e2022-10-06 14:58:54 -0700239 }
240 } else {
Dichen Zhang8a533b72022-11-15 23:03:02 +0000241 maxJpegRBufferSize = inputFrame.p010Buffer.width * inputFrame.p010Buffer.height;
Emilian Peev434248e2022-10-06 14:58:54 -0700242 }
243
244 uint8_t jpegQuality = 100;
245 auto entry = inputFrame.result.find(ANDROID_JPEG_QUALITY);
246 if (entry.count > 0) {
247 jpegQuality = entry.data.u8[0];
248 }
249
250 uint8_t jpegOrientation = 0;
251 entry = inputFrame.result.find(ANDROID_JPEG_ORIENTATION);
252 if (entry.count > 0) {
253 jpegOrientation = entry.data.i32[0];
254 }
255
Dichen Zhang8a533b72022-11-15 23:03:02 +0000256 if ((res = native_window_set_buffers_dimensions(mOutputSurface.get(), maxJpegRBufferSize, 1))
Emilian Peev434248e2022-10-06 14:58:54 -0700257 != OK) {
258 ALOGE("%s: Unable to configure stream buffer dimensions"
Dichen Zhang8a533b72022-11-15 23:03:02 +0000259 " %zux%u for stream %d", __FUNCTION__, maxJpegRBufferSize, 1U, mP010StreamId);
Emilian Peev434248e2022-10-06 14:58:54 -0700260 return res;
261 }
262
263 res = outputANW->dequeueBuffer(mOutputSurface.get(), &anb, &fenceFd);
264 if (res != OK) {
265 ALOGE("%s: Error retrieving output buffer: %s (%d)", __FUNCTION__, strerror(-res),
266 res);
267 return res;
268 }
269
270 sp<GraphicBuffer> gb = GraphicBuffer::from(anb);
271 GraphicBufferLocker gbLocker(gb);
272 res = gbLocker.lockAsync(&dstBuffer, fenceFd);
273 if (res != OK) {
274 ALOGE("%s: Error trying to lock output buffer fence: %s (%d)", __FUNCTION__,
275 strerror(-res), res);
276 outputANW->cancelBuffer(mOutputSurface.get(), anb, /*fence*/ -1);
277 return res;
278 }
279
Dichen Zhang8a533b72022-11-15 23:03:02 +0000280 if ((gb->getWidth() < maxJpegRBufferSize) || (gb->getHeight() != 1)) {
Emilian Peev434248e2022-10-06 14:58:54 -0700281 ALOGE("%s: Blob buffer size mismatch, expected %zux%u received %dx%d", __FUNCTION__,
Dichen Zhang8a533b72022-11-15 23:03:02 +0000282 maxJpegRBufferSize, 1, gb->getWidth(), gb->getHeight());
Emilian Peev434248e2022-10-06 14:58:54 -0700283 outputANW->cancelBuffer(mOutputSurface.get(), anb, /*fence*/ -1);
284 return BAD_VALUE;
285 }
286
Dichen Zhang8a533b72022-11-15 23:03:02 +0000287 size_t actualJpegRSize = 0;
Emilian Peev434248e2022-10-06 14:58:54 -0700288 if (mSupportInternalJpeg) {
Dichen Zhang8a533b72022-11-15 23:03:02 +0000289 recoverymap::jpegr_uncompressed_struct p010;
290 recoverymap::jpegr_compressed_struct jpeg;
291 recoverymap::jpegr_compressed_struct jpegR;
292
293 p010.height = inputFrame.p010Buffer.height;
294 p010.width = inputFrame.p010Buffer.width;
295 p010.colorGamut = recoverymap::jpegr_color_gamut::JPEGR_COLORGAMUT_BT2100;
296 size_t yChannelSizeInByte = p010.width * p010.height * 2;
297 size_t uvChannelSizeInByte = p010.width * p010.height;
298 p010.data = new uint8_t[yChannelSizeInByte + uvChannelSizeInByte];
299 std::unique_ptr<uint8_t[]> p010_data;
300 p010_data.reset(reinterpret_cast<uint8_t*>(p010.data));
301 memcpy((uint8_t*)p010.data, inputFrame.p010Buffer.data, yChannelSizeInByte);
302 memcpy((uint8_t*)p010.data + yChannelSizeInByte, inputFrame.p010Buffer.dataCb,
303 uvChannelSizeInByte);
304
305 jpeg.data = inputFrame.jpegBuffer.data;
306 jpeg.length = android::camera2::JpegProcessor::findJpegSize(inputFrame.jpegBuffer.data,
Emilian Peev434248e2022-10-06 14:58:54 -0700307 inputFrame.jpegBuffer.width);
Dichen Zhang8a533b72022-11-15 23:03:02 +0000308 if (jpeg.length == 0) {
Emilian Peev434248e2022-10-06 14:58:54 -0700309 ALOGW("%s: Failed to find input jpeg size, default to using entire buffer!",
310 __FUNCTION__);
Dichen Zhang8a533b72022-11-15 23:03:02 +0000311 jpeg.length = inputFrame.jpegBuffer.width;
Emilian Peev434248e2022-10-06 14:58:54 -0700312 }
Dichen Zhang8a533b72022-11-15 23:03:02 +0000313
314 if (mOutputColorSpace == ANDROID_REQUEST_AVAILABLE_COLOR_SPACE_PROFILES_MAP_DISPLAY_P3) {
315 jpeg.colorGamut = recoverymap::jpegr_color_gamut::JPEGR_COLORGAMUT_P3;
316 } else {
317 jpeg.colorGamut = recoverymap::jpegr_color_gamut::JPEGR_COLORGAMUT_BT709;
Emilian Peev434248e2022-10-06 14:58:54 -0700318 }
Dichen Zhang8a533b72022-11-15 23:03:02 +0000319
320 recoverymap::jpegr_transfer_function transferFunction;
321 switch (mP010DynamicRange) {
322 case ANDROID_REQUEST_AVAILABLE_DYNAMIC_RANGE_PROFILES_MAP_HDR10:
323 case ANDROID_REQUEST_AVAILABLE_DYNAMIC_RANGE_PROFILES_MAP_HDR10_PLUS:
324 transferFunction = recoverymap::jpegr_transfer_function::JPEGR_TF_PQ;
325 break;
326 default:
327 transferFunction = recoverymap::jpegr_transfer_function::JPEGR_TF_HLG;
328 }
329
330 jpegR.data = dstBuffer;
331 jpegR.maxLength = maxJpegRBufferSize;
332
333 recoverymap::RecoveryMap recoveryMap;
334 res = recoveryMap.encodeJPEGR(&p010, &jpeg, transferFunction, &jpegR);
335 if (res != OK) {
336 ALOGE("%s: Error trying to encode JPEG/R: %s (%d)", __FUNCTION__, strerror(-res), res);
337 return res;
338 }
339
340 actualJpegRSize = jpegR.length;
341 p010_data.release();
Emilian Peev434248e2022-10-06 14:58:54 -0700342 } else {
343 const uint8_t* exifBuffer = nullptr;
344 size_t exifBufferSize = 0;
345 std::unique_ptr<ExifUtils> utils(ExifUtils::create());
346 utils->initializeEmpty();
347 utils->setFromMetadata(inputFrame.result, mStaticInfo, inputFrame.p010Buffer.width,
348 inputFrame.p010Buffer.height);
349 if (utils->generateApp1()) {
350 exifBuffer = utils->getApp1Buffer();
351 exifBufferSize = utils->getApp1Length();
352 } else {
353 ALOGE("%s: Unable to generate App1 buffer", __FUNCTION__);
354 }
355 }
356
Dichen Zhang8a533b72022-11-15 23:03:02 +0000357 size_t finalJpegRSize = actualJpegRSize + sizeof(CameraBlob);
358 if (finalJpegRSize > maxJpegRBufferSize) {
Emilian Peev434248e2022-10-06 14:58:54 -0700359 ALOGE("%s: Final jpeg buffer not large enough for the jpeg blob header", __FUNCTION__);
360 outputANW->cancelBuffer(mOutputSurface.get(), anb, /*fence*/ -1);
361 return NO_MEMORY;
362 }
363
364 res = native_window_set_buffers_timestamp(mOutputSurface.get(), ts);
365 if (res != OK) {
366 ALOGE("%s: Stream %d: Error setting timestamp: %s (%d)", __FUNCTION__,
367 getStreamId(), strerror(-res), res);
368 return res;
369 }
370
Dichen Zhang8a533b72022-11-15 23:03:02 +0000371 ALOGV("%s: Final jpeg size: %zu", __func__, finalJpegRSize);
Emilian Peev434248e2022-10-06 14:58:54 -0700372 uint8_t* header = static_cast<uint8_t *> (dstBuffer) +
373 (gb->getWidth() - sizeof(CameraBlob));
374 CameraBlob blobHeader = {
375 .blobId = CameraBlobId::JPEG,
Dichen Zhang8a533b72022-11-15 23:03:02 +0000376 .blobSizeBytes = static_cast<int32_t>(actualJpegRSize)
Emilian Peev434248e2022-10-06 14:58:54 -0700377 };
378 memcpy(header, &blobHeader, sizeof(CameraBlob));
379 outputANW->queueBuffer(mOutputSurface.get(), anb, /*fence*/ -1);
380
381 return res;
382}
383
384void JpegRCompositeStream::releaseInputFrameLocked(InputFrame *inputFrame /*out*/) {
385 if (inputFrame == nullptr) {
386 return;
387 }
388
389 if (inputFrame->p010Buffer.data != nullptr) {
390 mP010Consumer->unlockBuffer(inputFrame->p010Buffer);
391 inputFrame->p010Buffer.data = nullptr;
392 mP010BufferAcquired = false;
393 }
394
395 if (inputFrame->jpegBuffer.data != nullptr) {
396 mBlobConsumer->unlockBuffer(inputFrame->jpegBuffer);
397 inputFrame->jpegBuffer.data = nullptr;
398 mBlobBufferAcquired = false;
399 }
400
401 if ((inputFrame->error || mErrorState) && !inputFrame->errorNotified) {
402 //TODO: Figure out correct requestId
403 notifyError(inputFrame->frameNumber, -1 /*requestId*/);
404 inputFrame->errorNotified = true;
405 }
406}
407
408void JpegRCompositeStream::releaseInputFramesLocked(int64_t currentTs) {
409 auto it = mPendingInputFrames.begin();
410 while (it != mPendingInputFrames.end()) {
411 if (it->first <= currentTs) {
412 releaseInputFrameLocked(&it->second);
413 it = mPendingInputFrames.erase(it);
414 } else {
415 it++;
416 }
417 }
418}
419
420bool JpegRCompositeStream::threadLoop() {
421 int64_t currentTs = INT64_MAX;
422 bool newInputAvailable = false;
423
424 {
425 Mutex::Autolock l(mMutex);
426
427 if (mErrorState) {
428 // In case we landed in error state, return any pending buffers and
429 // halt all further processing.
430 compilePendingInputLocked();
431 releaseInputFramesLocked(currentTs);
432 return false;
433 }
434
435 while (!newInputAvailable) {
436 compilePendingInputLocked();
437 newInputAvailable = getNextReadyInputLocked(&currentTs);
438 if (!newInputAvailable) {
439 auto failingFrameNumber = getNextFailingInputLocked(&currentTs);
440 if (failingFrameNumber >= 0) {
441 // We cannot erase 'mPendingInputFrames[currentTs]' at this point because it is
442 // possible for two internal stream buffers to fail. In such scenario the
443 // composite stream should notify the client about a stream buffer error only
444 // once and this information is kept within 'errorNotified'.
445 // Any present failed input frames will be removed on a subsequent call to
446 // 'releaseInputFramesLocked()'.
447 releaseInputFrameLocked(&mPendingInputFrames[currentTs]);
448 currentTs = INT64_MAX;
449 }
450
451 auto ret = mInputReadyCondition.waitRelative(mMutex, kWaitDuration);
452 if (ret == TIMED_OUT) {
453 return true;
454 } else if (ret != OK) {
455 ALOGE("%s: Timed wait on condition failed: %s (%d)", __FUNCTION__,
456 strerror(-ret), ret);
457 return false;
458 }
459 }
460 }
461 }
462
463 auto res = processInputFrame(currentTs, mPendingInputFrames[currentTs]);
464 Mutex::Autolock l(mMutex);
465 if (res != OK) {
466 ALOGE("%s: Failed processing frame with timestamp: %" PRIu64 ": %s (%d)", __FUNCTION__,
467 currentTs, strerror(-res), res);
468 mPendingInputFrames[currentTs].error = true;
469 }
470
471 releaseInputFramesLocked(currentTs);
472
473 return true;
474}
475
476bool JpegRCompositeStream::isJpegRCompositeStream(const sp<Surface> &surface) {
477 if (CameraProviderManager::kFrameworkJpegRDisabled) {
478 return false;
479 }
480 ANativeWindow *anw = surface.get();
481 status_t err;
482 int format;
483 if ((err = anw->query(anw, NATIVE_WINDOW_FORMAT, &format)) != OK) {
484 ALOGE("%s: Failed to query Surface format: %s (%d)", __FUNCTION__, strerror(-err),
485 err);
486 return false;
487 }
488
489 int dataspace;
490 if ((err = anw->query(anw, NATIVE_WINDOW_DEFAULT_DATASPACE, &dataspace)) != OK) {
491 ALOGE("%s: Failed to query Surface dataspace: %s (%d)", __FUNCTION__, strerror(-err),
492 err);
493 return false;
494 }
495
496 if ((format == HAL_PIXEL_FORMAT_BLOB) && (dataspace == static_cast<int>(kJpegRDataSpace))) {
497 return true;
498 }
499
500 return false;
501}
502
503void JpegRCompositeStream::deriveDynamicRangeAndDataspace(int64_t dynamicProfile,
504 int64_t* /*out*/dynamicRange, int64_t* /*out*/dataSpace) {
505 if ((dynamicRange == nullptr) || (dataSpace == nullptr)) {
506 return;
507 }
508
509 switch (dynamicProfile) {
510 case ANDROID_REQUEST_AVAILABLE_DYNAMIC_RANGE_PROFILES_MAP_HDR10:
511 case ANDROID_REQUEST_AVAILABLE_DYNAMIC_RANGE_PROFILES_MAP_HDR10_PLUS:
512 *dynamicRange = dynamicProfile;
513 *dataSpace = HAL_DATASPACE_BT2020_ITU_PQ;
514 break;
515 case ANDROID_REQUEST_AVAILABLE_DYNAMIC_RANGE_PROFILES_MAP_DOLBY_VISION_10B_HDR_REF:
516 case ANDROID_REQUEST_AVAILABLE_DYNAMIC_RANGE_PROFILES_MAP_DOLBY_VISION_10B_HDR_REF_PO:
517 case ANDROID_REQUEST_AVAILABLE_DYNAMIC_RANGE_PROFILES_MAP_DOLBY_VISION_10B_HDR_OEM:
518 case ANDROID_REQUEST_AVAILABLE_DYNAMIC_RANGE_PROFILES_MAP_DOLBY_VISION_10B_HDR_OEM_PO:
519 *dynamicRange = dynamicProfile;
520 *dataSpace = HAL_DATASPACE_BT2020_ITU_HLG;
521 break;
522 default:
523 *dynamicRange = kP010DefaultDynamicRange;
524 *dataSpace = kP010DefaultDataSpace;
525 }
526
527}
528
529status_t JpegRCompositeStream::createInternalStreams(const std::vector<sp<Surface>>& consumers,
530 bool /*hasDeferredConsumer*/, uint32_t width, uint32_t height, int format,
531 camera_stream_rotation_t rotation, int *id, const String8& physicalCameraId,
532 const std::unordered_set<int32_t> &sensorPixelModesUsed,
533 std::vector<int> *surfaceIds,
534 int /*streamSetId*/, bool /*isShared*/, int32_t colorSpace,
Shuzhen Wangbce53db2022-12-03 00:38:20 +0000535 int64_t dynamicProfile, int64_t streamUseCase, bool useReadoutTimestamp) {
Emilian Peev434248e2022-10-06 14:58:54 -0700536 sp<CameraDeviceBase> device = mDevice.promote();
537 if (!device.get()) {
538 ALOGE("%s: Invalid camera device!", __FUNCTION__);
539 return NO_INIT;
540 }
541
542 deriveDynamicRangeAndDataspace(dynamicProfile, &mP010DynamicRange, &mP010DataSpace);
543 mSupportInternalJpeg = CameraProviderManager::isConcurrentDynamicRangeCaptureSupported(
544 mStaticInfo, mP010DynamicRange,
545 ANDROID_REQUEST_AVAILABLE_DYNAMIC_RANGE_PROFILES_MAP_STANDARD);
546
547 sp<IGraphicBufferProducer> producer;
548 sp<IGraphicBufferConsumer> consumer;
549 BufferQueue::createBufferQueue(&producer, &consumer);
550 mP010Consumer = new CpuConsumer(consumer, /*maxLockedBuffers*/1, /*controlledByApp*/ true);
551 mP010Consumer->setFrameAvailableListener(this);
552 mP010Consumer->setName(String8("Camera3-P010CompositeStream"));
553 mP010Surface = new Surface(producer);
554
555 auto ret = device->createStream(mP010Surface, width, height, kP010PixelFormat,
556 static_cast<android_dataspace>(mP010DataSpace), rotation,
557 id, physicalCameraId, sensorPixelModesUsed, surfaceIds,
558 camera3::CAMERA3_STREAM_SET_ID_INVALID, false /*isShared*/, false /*isMultiResolution*/,
Shuzhen Wangbce53db2022-12-03 00:38:20 +0000559 GRALLOC_USAGE_SW_READ_OFTEN, mP010DynamicRange, streamUseCase,
560 OutputConfiguration::TIMESTAMP_BASE_DEFAULT, OutputConfiguration::MIRROR_MODE_AUTO,
561 ANDROID_REQUEST_AVAILABLE_COLOR_SPACE_PROFILES_MAP_UNSPECIFIED, useReadoutTimestamp);
Emilian Peev434248e2022-10-06 14:58:54 -0700562 if (ret == OK) {
563 mP010StreamId = *id;
564 mP010SurfaceId = (*surfaceIds)[0];
565 mOutputSurface = consumers[0];
566 } else {
567 return ret;
568 }
569
570 if (mSupportInternalJpeg) {
571 BufferQueue::createBufferQueue(&producer, &consumer);
572 mBlobConsumer = new CpuConsumer(consumer, /*maxLockedBuffers*/ 1, /*controlledByApp*/ true);
573 mBlobConsumer->setFrameAvailableListener(this);
574 mBlobConsumer->setName(String8("Camera3-JpegRCompositeStream"));
575 mBlobSurface = new Surface(producer);
576 std::vector<int> blobSurfaceId;
577 ret = device->createStream(mBlobSurface, width, height, format,
578 kJpegDataSpace, rotation, &mBlobStreamId, physicalCameraId, sensorPixelModesUsed,
579 &blobSurfaceId,
580 /*streamSetI*/ camera3::CAMERA3_STREAM_SET_ID_INVALID,
581 /*isShared*/ false,
582 /*isMultiResolution*/ false,
583 /*consumerUsage*/ GRALLOC_USAGE_SW_READ_OFTEN,
584 /*dynamicProfile*/ ANDROID_REQUEST_AVAILABLE_DYNAMIC_RANGE_PROFILES_MAP_STANDARD,
585 streamUseCase,
586 /*timestampBase*/ OutputConfiguration::TIMESTAMP_BASE_DEFAULT,
587 /*mirrorMode*/ OutputConfiguration::MIRROR_MODE_AUTO,
Shuzhen Wangbce53db2022-12-03 00:38:20 +0000588 /*colorSpace*/ colorSpace, useReadoutTimestamp);
Emilian Peev434248e2022-10-06 14:58:54 -0700589 if (ret == OK) {
590 mBlobSurfaceId = blobSurfaceId[0];
591 } else {
592 return ret;
593 }
594
595 ret = registerCompositeStreamListener(mBlobStreamId);
596 if (ret != OK) {
597 ALOGE("%s: Failed to register jpeg stream listener!", __FUNCTION__);
598 return ret;
599 }
600 }
601
602 ret = registerCompositeStreamListener(getStreamId());
603 if (ret != OK) {
604 ALOGE("%s: Failed to register P010 stream listener!", __FUNCTION__);
605 return ret;
606 }
607
608 mOutputColorSpace = colorSpace;
609 mBlobWidth = width;
610 mBlobHeight = height;
611
612 return ret;
613}
614
615status_t JpegRCompositeStream::configureStream() {
616 if (isRunning()) {
617 // Processing thread is already running, nothing more to do.
618 return NO_ERROR;
619 }
620
621 if (mOutputSurface.get() == nullptr) {
622 ALOGE("%s: No valid output surface set!", __FUNCTION__);
623 return NO_INIT;
624 }
625
626 auto res = mOutputSurface->connect(NATIVE_WINDOW_API_CAMERA, mProducerListener);
627 if (res != OK) {
628 ALOGE("%s: Unable to connect to native window for stream %d",
629 __FUNCTION__, mP010StreamId);
630 return res;
631 }
632
633 if ((res = native_window_set_buffers_format(mOutputSurface.get(), HAL_PIXEL_FORMAT_BLOB))
634 != OK) {
635 ALOGE("%s: Unable to configure stream buffer format for stream %d", __FUNCTION__,
636 mP010StreamId);
637 return res;
638 }
639
640 int maxProducerBuffers;
641 ANativeWindow *anw = mP010Surface.get();
642 if ((res = anw->query(anw, NATIVE_WINDOW_MIN_UNDEQUEUED_BUFFERS, &maxProducerBuffers)) != OK) {
643 ALOGE("%s: Unable to query consumer undequeued"
644 " buffer count for stream %d", __FUNCTION__, mP010StreamId);
645 return res;
646 }
647
648 ANativeWindow *anwConsumer = mOutputSurface.get();
649 int maxConsumerBuffers;
650 if ((res = anwConsumer->query(anwConsumer, NATIVE_WINDOW_MIN_UNDEQUEUED_BUFFERS,
651 &maxConsumerBuffers)) != OK) {
652 ALOGE("%s: Unable to query consumer undequeued"
653 " buffer count for stream %d", __FUNCTION__, mP010StreamId);
654 return res;
655 }
656
657 if ((res = native_window_set_buffer_count(
658 anwConsumer, maxProducerBuffers + maxConsumerBuffers)) != OK) {
659 ALOGE("%s: Unable to set buffer count for stream %d", __FUNCTION__, mP010StreamId);
660 return res;
661 }
662
663 run("JpegRCompositeStreamProc");
664
665 return NO_ERROR;
666}
667
668status_t JpegRCompositeStream::deleteInternalStreams() {
669 // The 'CameraDeviceClient' parent will delete the P010 stream
670 requestExit();
671
672 auto ret = join();
673 if (ret != OK) {
674 ALOGE("%s: Failed to join with the main processing thread: %s (%d)", __FUNCTION__,
675 strerror(-ret), ret);
676 }
677
678 if (mBlobStreamId >= 0) {
679 // Camera devices may not be valid after switching to offline mode.
680 // In this case, all offline streams including internal composite streams
681 // are managed and released by the offline session.
682 sp<CameraDeviceBase> device = mDevice.promote();
683 if (device.get() != nullptr) {
684 ret = device->deleteStream(mBlobStreamId);
685 }
686
687 mBlobStreamId = -1;
688 }
689
690 if (mOutputSurface != nullptr) {
691 mOutputSurface->disconnect(NATIVE_WINDOW_API_CAMERA);
692 mOutputSurface.clear();
693 }
694
695 return ret;
696}
697
698void JpegRCompositeStream::onFrameAvailable(const BufferItem& item) {
699 if (item.mDataSpace == kJpegDataSpace) {
700 ALOGV("%s: Jpeg buffer with ts: %" PRIu64 " ms. arrived!",
701 __func__, ns2ms(item.mTimestamp));
702
703 Mutex::Autolock l(mMutex);
704 if (!mErrorState) {
705 mInputJpegBuffers.push_back(item.mTimestamp);
706 mInputReadyCondition.signal();
707 }
708 } else if (item.mDataSpace == static_cast<android_dataspace_t>(mP010DataSpace)) {
709 ALOGV("%s: P010 buffer with ts: %" PRIu64 " ms. arrived!", __func__,
710 ns2ms(item.mTimestamp));
711
712 Mutex::Autolock l(mMutex);
713 if (!mErrorState) {
714 mInputP010Buffers.push_back(item.mTimestamp);
715 mInputReadyCondition.signal();
716 }
717 } else {
718 ALOGE("%s: Unexpected data space: 0x%x", __FUNCTION__, item.mDataSpace);
719 }
720}
721
722status_t JpegRCompositeStream::insertGbp(SurfaceMap* /*out*/outSurfaceMap,
723 Vector<int32_t> * /*out*/outputStreamIds, int32_t* /*out*/currentStreamId) {
724 if (outputStreamIds == nullptr) {
725 return BAD_VALUE;
726 }
727
728 if (outSurfaceMap->find(mP010StreamId) == outSurfaceMap->end()) {
729 outputStreamIds->push_back(mP010StreamId);
730 }
731 (*outSurfaceMap)[mP010StreamId].push_back(mP010SurfaceId);
732
733 if (mSupportInternalJpeg) {
734 if (outSurfaceMap->find(mBlobStreamId) == outSurfaceMap->end()) {
735 outputStreamIds->push_back(mBlobStreamId);
736 }
737 (*outSurfaceMap)[mBlobStreamId].push_back(mBlobSurfaceId);
738 }
739
740 if (currentStreamId != nullptr) {
741 *currentStreamId = mP010StreamId;
742 }
743
744 return NO_ERROR;
745}
746
747status_t JpegRCompositeStream::insertCompositeStreamIds(
748 std::vector<int32_t>* compositeStreamIds /*out*/) {
749 if (compositeStreamIds == nullptr) {
750 return BAD_VALUE;
751 }
752
753 compositeStreamIds->push_back(mP010StreamId);
754 if (mSupportInternalJpeg) {
755 compositeStreamIds->push_back(mBlobStreamId);
756 }
757
758 return OK;
759}
760
761void JpegRCompositeStream::onResultError(const CaptureResultExtras& resultExtras) {
762 // Processing can continue even in case of result errors.
763 // At the moment Jpeg/R composite stream processing relies mainly on static camera
764 // characteristics data. The actual result data can be used for the jpeg quality but
765 // in case it is absent we can default to maximum.
766 eraseResult(resultExtras.frameNumber);
767}
768
769bool JpegRCompositeStream::onStreamBufferError(const CaptureResultExtras& resultExtras) {
770 bool ret = false;
771 // Buffer errors concerning internal composite streams should not be directly visible to
772 // camera clients. They must only receive a single buffer error with the public composite
773 // stream id.
774 if ((resultExtras.errorStreamId == mP010StreamId) ||
775 (resultExtras.errorStreamId == mBlobStreamId)) {
776 flagAnErrorFrameNumber(resultExtras.frameNumber);
777 ret = true;
778 }
779
780 return ret;
781}
782
783status_t JpegRCompositeStream::getCompositeStreamInfo(const OutputStreamInfo &streamInfo,
784 const CameraMetadata& staticInfo,
785 std::vector<OutputStreamInfo>* compositeOutput /*out*/) {
786 if (compositeOutput == nullptr) {
787 return BAD_VALUE;
788 }
789
790 int64_t dynamicRange, dataSpace;
791 deriveDynamicRangeAndDataspace(streamInfo.dynamicRangeProfile, &dynamicRange, &dataSpace);
792
793 compositeOutput->clear();
794 compositeOutput->push_back({});
795 (*compositeOutput)[0].width = streamInfo.width;
796 (*compositeOutput)[0].height = streamInfo.height;
797 (*compositeOutput)[0].format = kP010PixelFormat;
798 (*compositeOutput)[0].dataSpace = static_cast<android_dataspace_t>(dataSpace);
799 (*compositeOutput)[0].consumerUsage = GRALLOC_USAGE_SW_READ_OFTEN;
800 (*compositeOutput)[0].dynamicRangeProfile = dynamicRange;
801 (*compositeOutput)[0].colorSpace =
802 ANDROID_REQUEST_AVAILABLE_COLOR_SPACE_PROFILES_MAP_UNSPECIFIED;
803
804 if (CameraProviderManager::isConcurrentDynamicRangeCaptureSupported(staticInfo,
805 streamInfo.dynamicRangeProfile,
806 ANDROID_REQUEST_AVAILABLE_DYNAMIC_RANGE_PROFILES_MAP_STANDARD)) {
807 compositeOutput->push_back({});
808 (*compositeOutput)[1].width = streamInfo.width;
809 (*compositeOutput)[1].height = streamInfo.height;
810 (*compositeOutput)[1].format = HAL_PIXEL_FORMAT_BLOB;
811 (*compositeOutput)[1].dataSpace = kJpegDataSpace;
812 (*compositeOutput)[1].consumerUsage = GRALLOC_USAGE_SW_READ_OFTEN;
813 (*compositeOutput)[1].dynamicRangeProfile =
814 ANDROID_REQUEST_AVAILABLE_DYNAMIC_RANGE_PROFILES_MAP_STANDARD;
815 (*compositeOutput)[1].colorSpace = streamInfo.colorSpace;
816 }
817
818 return NO_ERROR;
819}
820
821}; // namespace camera3
822}; // namespace android