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Yin-Chia Yeh5fd603e2019-11-20 11:22:27 -08001/*
2 * Copyright (C) 2019 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 "Camera3-OutputUtils"
18#define ATRACE_TAG ATRACE_TAG_CAMERA
19//#define LOG_NDEBUG 0
20//#define LOG_NNDEBUG 0 // Per-frame verbose logging
21
22#ifdef LOG_NNDEBUG
23#define ALOGVV(...) ALOGV(__VA_ARGS__)
24#else
25#define ALOGVV(...) ((void)0)
26#endif
27
28// Convenience macros for transitioning to the error state
29#define SET_ERR(fmt, ...) states.setErrIntf.setErrorState( \
30 "%s: " fmt, __FUNCTION__, \
31 ##__VA_ARGS__)
32
33#include <inttypes.h>
34
35#include <utils/Log.h>
36#include <utils/SortedVector.h>
37#include <utils/Trace.h>
38
39#include <android/hardware/camera2/ICameraDeviceCallbacks.h>
40
41#include <android/hardware/camera/device/3.4/ICameraDeviceCallback.h>
42#include <android/hardware/camera/device/3.5/ICameraDeviceCallback.h>
43#include <android/hardware/camera/device/3.5/ICameraDeviceSession.h>
44
45#include <camera_metadata_hidden.h>
46
47#include "device3/Camera3OutputUtils.h"
48
49using namespace android::camera3;
50using namespace android::hardware::camera;
51
52namespace android {
53namespace camera3 {
54
55status_t fixupMonochromeTags(
56 CaptureOutputStates& states,
57 const CameraMetadata& deviceInfo,
58 CameraMetadata& resultMetadata) {
59 status_t res = OK;
60 if (!states.needFixupMonoChrome) {
61 return res;
62 }
63
64 // Remove tags that are not applicable to monochrome camera.
65 int32_t tagsToRemove[] = {
66 ANDROID_SENSOR_GREEN_SPLIT,
67 ANDROID_SENSOR_NEUTRAL_COLOR_POINT,
68 ANDROID_COLOR_CORRECTION_MODE,
69 ANDROID_COLOR_CORRECTION_TRANSFORM,
70 ANDROID_COLOR_CORRECTION_GAINS,
71 };
72 for (auto tag : tagsToRemove) {
73 res = resultMetadata.erase(tag);
74 if (res != OK) {
75 ALOGE("%s: Failed to remove tag %d for monochrome camera", __FUNCTION__, tag);
76 return res;
77 }
78 }
79
80 // ANDROID_SENSOR_DYNAMIC_BLACK_LEVEL
81 camera_metadata_entry blEntry = resultMetadata.find(ANDROID_SENSOR_DYNAMIC_BLACK_LEVEL);
82 for (size_t i = 1; i < blEntry.count; i++) {
83 blEntry.data.f[i] = blEntry.data.f[0];
84 }
85
86 // ANDROID_SENSOR_NOISE_PROFILE
87 camera_metadata_entry npEntry = resultMetadata.find(ANDROID_SENSOR_NOISE_PROFILE);
88 if (npEntry.count > 0 && npEntry.count % 2 == 0) {
89 double np[] = {npEntry.data.d[0], npEntry.data.d[1]};
90 res = resultMetadata.update(ANDROID_SENSOR_NOISE_PROFILE, np, 2);
91 if (res != OK) {
92 ALOGE("%s: Failed to update SENSOR_NOISE_PROFILE: %s (%d)",
93 __FUNCTION__, strerror(-res), res);
94 return res;
95 }
96 }
97
98 // ANDROID_STATISTICS_LENS_SHADING_MAP
99 camera_metadata_ro_entry lsSizeEntry = deviceInfo.find(ANDROID_LENS_INFO_SHADING_MAP_SIZE);
100 camera_metadata_entry lsEntry = resultMetadata.find(ANDROID_STATISTICS_LENS_SHADING_MAP);
101 if (lsSizeEntry.count == 2 && lsEntry.count > 0
102 && (int32_t)lsEntry.count == 4 * lsSizeEntry.data.i32[0] * lsSizeEntry.data.i32[1]) {
103 for (int32_t i = 0; i < lsSizeEntry.data.i32[0] * lsSizeEntry.data.i32[1]; i++) {
104 lsEntry.data.f[4*i+1] = lsEntry.data.f[4*i];
105 lsEntry.data.f[4*i+2] = lsEntry.data.f[4*i];
106 lsEntry.data.f[4*i+3] = lsEntry.data.f[4*i];
107 }
108 }
109
110 // ANDROID_TONEMAP_CURVE_BLUE
111 // ANDROID_TONEMAP_CURVE_GREEN
112 // ANDROID_TONEMAP_CURVE_RED
113 camera_metadata_entry tcbEntry = resultMetadata.find(ANDROID_TONEMAP_CURVE_BLUE);
114 camera_metadata_entry tcgEntry = resultMetadata.find(ANDROID_TONEMAP_CURVE_GREEN);
115 camera_metadata_entry tcrEntry = resultMetadata.find(ANDROID_TONEMAP_CURVE_RED);
116 if (tcbEntry.count > 0
117 && tcbEntry.count == tcgEntry.count
118 && tcbEntry.count == tcrEntry.count) {
119 for (size_t i = 0; i < tcbEntry.count; i++) {
120 tcbEntry.data.f[i] = tcrEntry.data.f[i];
121 tcgEntry.data.f[i] = tcrEntry.data.f[i];
122 }
123 }
124
125 return res;
126}
127
128void insertResultLocked(CaptureOutputStates& states, CaptureResult *result, uint32_t frameNumber) {
129 if (result == nullptr) return;
130
131 camera_metadata_t *meta = const_cast<camera_metadata_t *>(
132 result->mMetadata.getAndLock());
133 set_camera_metadata_vendor_id(meta, states.vendorTagId);
134 result->mMetadata.unlock(meta);
135
136 if (result->mMetadata.update(ANDROID_REQUEST_FRAME_COUNT,
137 (int32_t*)&frameNumber, 1) != OK) {
138 SET_ERR("Failed to set frame number %d in metadata", frameNumber);
139 return;
140 }
141
142 if (result->mMetadata.update(ANDROID_REQUEST_ID, &result->mResultExtras.requestId, 1) != OK) {
143 SET_ERR("Failed to set request ID in metadata for frame %d", frameNumber);
144 return;
145 }
146
147 // Update vendor tag id for physical metadata
148 for (auto& physicalMetadata : result->mPhysicalMetadatas) {
149 camera_metadata_t *pmeta = const_cast<camera_metadata_t *>(
150 physicalMetadata.mPhysicalCameraMetadata.getAndLock());
151 set_camera_metadata_vendor_id(pmeta, states.vendorTagId);
152 physicalMetadata.mPhysicalCameraMetadata.unlock(pmeta);
153 }
154
155 // Valid result, insert into queue
156 List<CaptureResult>::iterator queuedResult =
157 states.resultQueue.insert(states.resultQueue.end(), CaptureResult(*result));
158 ALOGVV("%s: result requestId = %" PRId32 ", frameNumber = %" PRId64
159 ", burstId = %" PRId32, __FUNCTION__,
160 queuedResult->mResultExtras.requestId,
161 queuedResult->mResultExtras.frameNumber,
162 queuedResult->mResultExtras.burstId);
163
164 states.resultSignal.notify_one();
165}
166
167
168void sendPartialCaptureResult(CaptureOutputStates& states,
169 const camera_metadata_t * partialResult,
170 const CaptureResultExtras &resultExtras, uint32_t frameNumber) {
171 ATRACE_CALL();
172 std::lock_guard<std::mutex> l(states.outputLock);
173
174 CaptureResult captureResult;
175 captureResult.mResultExtras = resultExtras;
176 captureResult.mMetadata = partialResult;
177
178 // Fix up result metadata for monochrome camera.
179 status_t res = fixupMonochromeTags(states, states.deviceInfo, captureResult.mMetadata);
180 if (res != OK) {
181 SET_ERR("Failed to override result metadata: %s (%d)", strerror(-res), res);
182 return;
183 }
184
185 insertResultLocked(states, &captureResult, frameNumber);
186}
187
188void sendCaptureResult(
189 CaptureOutputStates& states,
190 CameraMetadata &pendingMetadata,
191 CaptureResultExtras &resultExtras,
192 CameraMetadata &collectedPartialResult,
193 uint32_t frameNumber,
194 bool reprocess, bool zslStillCapture,
195 const std::set<std::string>& cameraIdsWithZoom,
196 const std::vector<PhysicalCaptureResultInfo>& physicalMetadatas) {
197 ATRACE_CALL();
198 if (pendingMetadata.isEmpty())
199 return;
200
201 std::lock_guard<std::mutex> l(states.outputLock);
202
203 // TODO: need to track errors for tighter bounds on expected frame number
204 if (reprocess) {
205 if (frameNumber < states.nextReprocResultFrameNum) {
206 SET_ERR("Out-of-order reprocess capture result metadata submitted! "
207 "(got frame number %d, expecting %d)",
208 frameNumber, states.nextReprocResultFrameNum);
209 return;
210 }
211 states.nextReprocResultFrameNum = frameNumber + 1;
212 } else if (zslStillCapture) {
213 if (frameNumber < states.nextZslResultFrameNum) {
214 SET_ERR("Out-of-order ZSL still capture result metadata submitted! "
215 "(got frame number %d, expecting %d)",
216 frameNumber, states.nextZslResultFrameNum);
217 return;
218 }
219 states.nextZslResultFrameNum = frameNumber + 1;
220 } else {
221 if (frameNumber < states.nextResultFrameNum) {
222 SET_ERR("Out-of-order capture result metadata submitted! "
223 "(got frame number %d, expecting %d)",
224 frameNumber, states.nextResultFrameNum);
225 return;
226 }
227 states.nextResultFrameNum = frameNumber + 1;
228 }
229
230 CaptureResult captureResult;
231 captureResult.mResultExtras = resultExtras;
232 captureResult.mMetadata = pendingMetadata;
233 captureResult.mPhysicalMetadatas = physicalMetadatas;
234
235 // Append any previous partials to form a complete result
236 if (states.usePartialResult && !collectedPartialResult.isEmpty()) {
237 captureResult.mMetadata.append(collectedPartialResult);
238 }
239
240 captureResult.mMetadata.sort();
241
242 // Check that there's a timestamp in the result metadata
243 camera_metadata_entry timestamp = captureResult.mMetadata.find(ANDROID_SENSOR_TIMESTAMP);
244 if (timestamp.count == 0) {
245 SET_ERR("No timestamp provided by HAL for frame %d!",
246 frameNumber);
247 return;
248 }
249 for (auto& physicalMetadata : captureResult.mPhysicalMetadatas) {
250 camera_metadata_entry timestamp =
251 physicalMetadata.mPhysicalCameraMetadata.find(ANDROID_SENSOR_TIMESTAMP);
252 if (timestamp.count == 0) {
253 SET_ERR("No timestamp provided by HAL for physical camera %s frame %d!",
254 String8(physicalMetadata.mPhysicalCameraId).c_str(), frameNumber);
255 return;
256 }
257 }
258
259 // Fix up some result metadata to account for HAL-level distortion correction
260 status_t res =
261 states.distortionMappers[states.cameraId.c_str()].correctCaptureResult(
262 &captureResult.mMetadata);
263 if (res != OK) {
264 SET_ERR("Unable to correct capture result metadata for frame %d: %s (%d)",
265 frameNumber, strerror(-res), res);
266 return;
267 }
268
269 // Fix up result metadata to account for zoom ratio availabilities between
270 // HAL and app.
271 bool zoomRatioIs1 = cameraIdsWithZoom.find(states.cameraId.c_str()) == cameraIdsWithZoom.end();
272 res = states.zoomRatioMappers[states.cameraId.c_str()].updateCaptureResult(
273 &captureResult.mMetadata, zoomRatioIs1);
274 if (res != OK) {
275 SET_ERR("Failed to update capture result zoom ratio metadata for frame %d: %s (%d)",
276 frameNumber, strerror(-res), res);
277 return;
278 }
279
280 for (auto& physicalMetadata : captureResult.mPhysicalMetadatas) {
281 String8 cameraId8(physicalMetadata.mPhysicalCameraId);
282 if (states.distortionMappers.find(cameraId8.c_str()) != states.distortionMappers.end()) {
283 res = states.distortionMappers[cameraId8.c_str()].correctCaptureResult(
284 &physicalMetadata.mPhysicalCameraMetadata);
285 if (res != OK) {
286 SET_ERR("Unable to correct physical capture result metadata for frame %d: %s (%d)",
287 frameNumber, strerror(-res), res);
288 return;
289 }
290 }
291
292 zoomRatioIs1 = cameraIdsWithZoom.find(cameraId8.c_str()) == cameraIdsWithZoom.end();
293 res = states.zoomRatioMappers[cameraId8.c_str()].updateCaptureResult(
294 &physicalMetadata.mPhysicalCameraMetadata, zoomRatioIs1);
295 if (res != OK) {
296 SET_ERR("Failed to update camera %s's physical zoom ratio metadata for "
297 "frame %d: %s(%d)", cameraId8.c_str(), frameNumber, strerror(-res), res);
298 return;
299 }
300 }
301
302 // Fix up result metadata for monochrome camera.
303 res = fixupMonochromeTags(states, states.deviceInfo, captureResult.mMetadata);
304 if (res != OK) {
305 SET_ERR("Failed to override result metadata: %s (%d)", strerror(-res), res);
306 return;
307 }
308 for (auto& physicalMetadata : captureResult.mPhysicalMetadatas) {
309 String8 cameraId8(physicalMetadata.mPhysicalCameraId);
310 res = fixupMonochromeTags(states,
311 states.physicalDeviceInfoMap.at(cameraId8.c_str()),
312 physicalMetadata.mPhysicalCameraMetadata);
313 if (res != OK) {
314 SET_ERR("Failed to override result metadata: %s (%d)", strerror(-res), res);
315 return;
316 }
317 }
318
319 std::unordered_map<std::string, CameraMetadata> monitoredPhysicalMetadata;
320 for (auto& m : physicalMetadatas) {
321 monitoredPhysicalMetadata.emplace(String8(m.mPhysicalCameraId).string(),
322 CameraMetadata(m.mPhysicalCameraMetadata));
323 }
324 states.tagMonitor.monitorMetadata(TagMonitor::RESULT,
325 frameNumber, timestamp.data.i64[0], captureResult.mMetadata,
326 monitoredPhysicalMetadata);
327
328 insertResultLocked(states, &captureResult, frameNumber);
329}
330
331// Reading one camera metadata from result argument via fmq or from the result
332// Assuming the fmq is protected by a lock already
333status_t readOneCameraMetadataLocked(
334 std::unique_ptr<ResultMetadataQueue>& fmq,
335 uint64_t fmqResultSize,
336 hardware::camera::device::V3_2::CameraMetadata& resultMetadata,
337 const hardware::camera::device::V3_2::CameraMetadata& result) {
338 if (fmqResultSize > 0) {
339 resultMetadata.resize(fmqResultSize);
340 if (fmq == nullptr) {
341 return NO_MEMORY; // logged in initialize()
342 }
343 if (!fmq->read(resultMetadata.data(), fmqResultSize)) {
344 ALOGE("%s: Cannot read camera metadata from fmq, size = %" PRIu64,
345 __FUNCTION__, fmqResultSize);
346 return INVALID_OPERATION;
347 }
348 } else {
349 resultMetadata.setToExternal(const_cast<uint8_t *>(result.data()),
350 result.size());
351 }
352
353 if (resultMetadata.size() != 0) {
354 status_t res;
355 const camera_metadata_t* metadata =
356 reinterpret_cast<const camera_metadata_t*>(resultMetadata.data());
357 size_t expected_metadata_size = resultMetadata.size();
358 if ((res = validate_camera_metadata_structure(metadata, &expected_metadata_size)) != OK) {
359 ALOGE("%s: Invalid camera metadata received by camera service from HAL: %s (%d)",
360 __FUNCTION__, strerror(-res), res);
361 return INVALID_OPERATION;
362 }
363 }
364
365 return OK;
366}
367
368void removeInFlightMapEntryLocked(CaptureOutputStates& states, int idx) {
369 ATRACE_CALL();
370 InFlightRequestMap& inflightMap = states.inflightMap;
371 nsecs_t duration = inflightMap.valueAt(idx).maxExpectedDuration;
372 inflightMap.removeItemsAt(idx, 1);
373
374 states.inflightIntf.onInflightEntryRemovedLocked(duration);
375}
376
377void removeInFlightRequestIfReadyLocked(CaptureOutputStates& states, int idx) {
378 InFlightRequestMap& inflightMap = states.inflightMap;
379 const InFlightRequest &request = inflightMap.valueAt(idx);
380 const uint32_t frameNumber = inflightMap.keyAt(idx);
381
382 nsecs_t sensorTimestamp = request.sensorTimestamp;
383 nsecs_t shutterTimestamp = request.shutterTimestamp;
384
385 // Check if it's okay to remove the request from InFlightMap:
386 // In the case of a successful request:
387 // all input and output buffers, all result metadata, shutter callback
388 // arrived.
389 // In the case of a unsuccessful request:
390 // all input and output buffers arrived.
391 if (request.numBuffersLeft == 0 &&
392 (request.skipResultMetadata ||
393 (request.haveResultMetadata && shutterTimestamp != 0))) {
394 if (request.stillCapture) {
395 ATRACE_ASYNC_END("still capture", frameNumber);
396 }
397
398 ATRACE_ASYNC_END("frame capture", frameNumber);
399
400 // Sanity check - if sensor timestamp matches shutter timestamp in the
401 // case of request having callback.
402 if (request.hasCallback && request.requestStatus == OK &&
403 sensorTimestamp != shutterTimestamp) {
404 SET_ERR("sensor timestamp (%" PRId64
405 ") for frame %d doesn't match shutter timestamp (%" PRId64 ")",
406 sensorTimestamp, frameNumber, shutterTimestamp);
407 }
408
409 // for an unsuccessful request, it may have pending output buffers to
410 // return.
411 assert(request.requestStatus != OK ||
412 request.pendingOutputBuffers.size() == 0);
413
414 returnOutputBuffers(
415 states.useHalBufManager, states.listener,
416 request.pendingOutputBuffers.array(),
417 request.pendingOutputBuffers.size(), 0, /*timestampIncreasing*/true,
418 request.outputSurfaces, request.resultExtras);
419
420 removeInFlightMapEntryLocked(states, idx);
421 ALOGVV("%s: removed frame %d from InFlightMap", __FUNCTION__, frameNumber);
422 }
423
424 states.inflightIntf.checkInflightMapLengthLocked();
425}
426
427void processCaptureResult(CaptureOutputStates& states, const camera3_capture_result *result) {
428 ATRACE_CALL();
429
430 status_t res;
431
432 uint32_t frameNumber = result->frame_number;
433 if (result->result == NULL && result->num_output_buffers == 0 &&
434 result->input_buffer == NULL) {
435 SET_ERR("No result data provided by HAL for frame %d",
436 frameNumber);
437 return;
438 }
439
440 if (!states.usePartialResult &&
441 result->result != NULL &&
442 result->partial_result != 1) {
443 SET_ERR("Result is malformed for frame %d: partial_result %u must be 1"
444 " if partial result is not supported",
445 frameNumber, result->partial_result);
446 return;
447 }
448
449 bool isPartialResult = false;
450 CameraMetadata collectedPartialResult;
451 bool hasInputBufferInRequest = false;
452
453 // Get shutter timestamp and resultExtras from list of in-flight requests,
454 // where it was added by the shutter notification for this frame. If the
455 // shutter timestamp isn't received yet, append the output buffers to the
456 // in-flight request and they will be returned when the shutter timestamp
457 // arrives. Update the in-flight status and remove the in-flight entry if
458 // all result data and shutter timestamp have been received.
459 nsecs_t shutterTimestamp = 0;
460 {
461 std::lock_guard<std::mutex> l(states.inflightLock);
462 ssize_t idx = states.inflightMap.indexOfKey(frameNumber);
463 if (idx == NAME_NOT_FOUND) {
464 SET_ERR("Unknown frame number for capture result: %d",
465 frameNumber);
466 return;
467 }
468 InFlightRequest &request = states.inflightMap.editValueAt(idx);
469 ALOGVV("%s: got InFlightRequest requestId = %" PRId32
470 ", frameNumber = %" PRId64 ", burstId = %" PRId32
471 ", partialResultCount = %d, hasCallback = %d",
472 __FUNCTION__, request.resultExtras.requestId,
473 request.resultExtras.frameNumber, request.resultExtras.burstId,
474 result->partial_result, request.hasCallback);
475 // Always update the partial count to the latest one if it's not 0
476 // (buffers only). When framework aggregates adjacent partial results
477 // into one, the latest partial count will be used.
478 if (result->partial_result != 0)
479 request.resultExtras.partialResultCount = result->partial_result;
480
481 // Check if this result carries only partial metadata
482 if (states.usePartialResult && result->result != NULL) {
483 if (result->partial_result > states.numPartialResults || result->partial_result < 1) {
484 SET_ERR("Result is malformed for frame %d: partial_result %u must be in"
485 " the range of [1, %d] when metadata is included in the result",
486 frameNumber, result->partial_result, states.numPartialResults);
487 return;
488 }
489 isPartialResult = (result->partial_result < states.numPartialResults);
490 if (isPartialResult && result->num_physcam_metadata) {
491 SET_ERR("Result is malformed for frame %d: partial_result not allowed for"
492 " physical camera result", frameNumber);
493 return;
494 }
495 if (isPartialResult) {
496 request.collectedPartialResult.append(result->result);
497 }
498
499 if (isPartialResult && request.hasCallback) {
500 // Send partial capture result
501 sendPartialCaptureResult(states, result->result, request.resultExtras,
502 frameNumber);
503 }
504 }
505
506 shutterTimestamp = request.shutterTimestamp;
507 hasInputBufferInRequest = request.hasInputBuffer;
508
509 // Did we get the (final) result metadata for this capture?
510 if (result->result != NULL && !isPartialResult) {
511 if (request.physicalCameraIds.size() != result->num_physcam_metadata) {
512 SET_ERR("Expected physical Camera metadata count %d not equal to actual count %d",
513 request.physicalCameraIds.size(), result->num_physcam_metadata);
514 return;
515 }
516 if (request.haveResultMetadata) {
517 SET_ERR("Called multiple times with metadata for frame %d",
518 frameNumber);
519 return;
520 }
521 for (uint32_t i = 0; i < result->num_physcam_metadata; i++) {
522 String8 physicalId(result->physcam_ids[i]);
523 std::set<String8>::iterator cameraIdIter =
524 request.physicalCameraIds.find(physicalId);
525 if (cameraIdIter != request.physicalCameraIds.end()) {
526 request.physicalCameraIds.erase(cameraIdIter);
527 } else {
528 SET_ERR("Total result for frame %d has already returned for camera %s",
529 frameNumber, physicalId.c_str());
530 return;
531 }
532 }
533 if (states.usePartialResult &&
534 !request.collectedPartialResult.isEmpty()) {
535 collectedPartialResult.acquire(
536 request.collectedPartialResult);
537 }
538 request.haveResultMetadata = true;
539 }
540
541 uint32_t numBuffersReturned = result->num_output_buffers;
542 if (result->input_buffer != NULL) {
543 if (hasInputBufferInRequest) {
544 numBuffersReturned += 1;
545 } else {
546 ALOGW("%s: Input buffer should be NULL if there is no input"
547 " buffer sent in the request",
548 __FUNCTION__);
549 }
550 }
551 request.numBuffersLeft -= numBuffersReturned;
552 if (request.numBuffersLeft < 0) {
553 SET_ERR("Too many buffers returned for frame %d",
554 frameNumber);
555 return;
556 }
557
558 camera_metadata_ro_entry_t entry;
559 res = find_camera_metadata_ro_entry(result->result,
560 ANDROID_SENSOR_TIMESTAMP, &entry);
561 if (res == OK && entry.count == 1) {
562 request.sensorTimestamp = entry.data.i64[0];
563 }
564
565 // If shutter event isn't received yet, append the output buffers to
566 // the in-flight request. Otherwise, return the output buffers to
567 // streams.
568 if (shutterTimestamp == 0) {
569 request.pendingOutputBuffers.appendArray(result->output_buffers,
570 result->num_output_buffers);
571 } else {
572 bool timestampIncreasing = !(request.zslCapture || request.hasInputBuffer);
573 returnOutputBuffers(states.useHalBufManager, states.listener,
574 result->output_buffers, result->num_output_buffers,
575 shutterTimestamp, timestampIncreasing,
576 request.outputSurfaces, request.resultExtras);
577 }
578
579 if (result->result != NULL && !isPartialResult) {
580 for (uint32_t i = 0; i < result->num_physcam_metadata; i++) {
581 CameraMetadata physicalMetadata;
582 physicalMetadata.append(result->physcam_metadata[i]);
583 request.physicalMetadatas.push_back({String16(result->physcam_ids[i]),
584 physicalMetadata});
585 }
586 if (shutterTimestamp == 0) {
587 request.pendingMetadata = result->result;
588 request.collectedPartialResult = collectedPartialResult;
589 } else if (request.hasCallback) {
590 CameraMetadata metadata;
591 metadata = result->result;
592 sendCaptureResult(states, metadata, request.resultExtras,
593 collectedPartialResult, frameNumber,
594 hasInputBufferInRequest, request.zslCapture && request.stillCapture,
595 request.cameraIdsWithZoom, request.physicalMetadatas);
596 }
597 }
598 removeInFlightRequestIfReadyLocked(states, idx);
599 } // scope for states.inFlightLock
600
601 if (result->input_buffer != NULL) {
602 if (hasInputBufferInRequest) {
603 Camera3Stream *stream =
604 Camera3Stream::cast(result->input_buffer->stream);
605 res = stream->returnInputBuffer(*(result->input_buffer));
606 // Note: stream may be deallocated at this point, if this buffer was the
607 // last reference to it.
608 if (res != OK) {
609 ALOGE("%s: RequestThread: Can't return input buffer for frame %d to"
610 " its stream:%s (%d)", __FUNCTION__,
611 frameNumber, strerror(-res), res);
612 }
613 } else {
614 ALOGW("%s: Input buffer should be NULL if there is no input"
615 " buffer sent in the request, skipping input buffer return.",
616 __FUNCTION__);
617 }
618 }
619}
620
621void processOneCaptureResultLocked(
622 CaptureOutputStates& states,
623 const hardware::camera::device::V3_2::CaptureResult& result,
624 const hardware::hidl_vec<
625 hardware::camera::device::V3_4::PhysicalCameraMetadata> physicalCameraMetadata) {
626 using hardware::camera::device::V3_2::StreamBuffer;
627 using hardware::camera::device::V3_2::BufferStatus;
628 std::unique_ptr<ResultMetadataQueue>& fmq = states.fmq;
629 BufferRecordsInterface& bufferRecords = states.bufferRecordsIntf;
630 camera3_capture_result r;
631 status_t res;
632 r.frame_number = result.frameNumber;
633
634 // Read and validate the result metadata.
635 hardware::camera::device::V3_2::CameraMetadata resultMetadata;
636 res = readOneCameraMetadataLocked(
637 fmq, result.fmqResultSize,
638 resultMetadata, result.result);
639 if (res != OK) {
640 ALOGE("%s: Frame %d: Failed to read capture result metadata",
641 __FUNCTION__, result.frameNumber);
642 return;
643 }
644 r.result = reinterpret_cast<const camera_metadata_t*>(resultMetadata.data());
645
646 // Read and validate physical camera metadata
647 size_t physResultCount = physicalCameraMetadata.size();
648 std::vector<const char*> physCamIds(physResultCount);
649 std::vector<const camera_metadata_t *> phyCamMetadatas(physResultCount);
650 std::vector<hardware::camera::device::V3_2::CameraMetadata> physResultMetadata;
651 physResultMetadata.resize(physResultCount);
652 for (size_t i = 0; i < physicalCameraMetadata.size(); i++) {
653 res = readOneCameraMetadataLocked(fmq, physicalCameraMetadata[i].fmqMetadataSize,
654 physResultMetadata[i], physicalCameraMetadata[i].metadata);
655 if (res != OK) {
656 ALOGE("%s: Frame %d: Failed to read capture result metadata for camera %s",
657 __FUNCTION__, result.frameNumber,
658 physicalCameraMetadata[i].physicalCameraId.c_str());
659 return;
660 }
661 physCamIds[i] = physicalCameraMetadata[i].physicalCameraId.c_str();
662 phyCamMetadatas[i] = reinterpret_cast<const camera_metadata_t*>(
663 physResultMetadata[i].data());
664 }
665 r.num_physcam_metadata = physResultCount;
666 r.physcam_ids = physCamIds.data();
667 r.physcam_metadata = phyCamMetadatas.data();
668
669 std::vector<camera3_stream_buffer_t> outputBuffers(result.outputBuffers.size());
670 std::vector<buffer_handle_t> outputBufferHandles(result.outputBuffers.size());
671 for (size_t i = 0; i < result.outputBuffers.size(); i++) {
672 auto& bDst = outputBuffers[i];
673 const StreamBuffer &bSrc = result.outputBuffers[i];
674
675 sp<Camera3StreamInterface> stream = states.outputStreams.get(bSrc.streamId);
676 if (stream == nullptr) {
677 ALOGE("%s: Frame %d: Buffer %zu: Invalid output stream id %d",
678 __FUNCTION__, result.frameNumber, i, bSrc.streamId);
679 return;
680 }
681 bDst.stream = stream->asHalStream();
682
683 bool noBufferReturned = false;
684 buffer_handle_t *buffer = nullptr;
685 if (states.useHalBufManager) {
686 // This is suspicious most of the time but can be correct during flush where HAL
687 // has to return capture result before a buffer is requested
688 if (bSrc.bufferId == BUFFER_ID_NO_BUFFER) {
689 if (bSrc.status == BufferStatus::OK) {
690 ALOGE("%s: Frame %d: Buffer %zu: No bufferId for stream %d",
691 __FUNCTION__, result.frameNumber, i, bSrc.streamId);
692 // Still proceeds so other buffers can be returned
693 }
694 noBufferReturned = true;
695 }
696 if (noBufferReturned) {
697 res = OK;
698 } else {
699 res = bufferRecords.popInflightRequestBuffer(bSrc.bufferId, &buffer);
700 }
701 } else {
702 res = bufferRecords.popInflightBuffer(result.frameNumber, bSrc.streamId, &buffer);
703 }
704
705 if (res != OK) {
706 ALOGE("%s: Frame %d: Buffer %zu: No in-flight buffer for stream %d",
707 __FUNCTION__, result.frameNumber, i, bSrc.streamId);
708 return;
709 }
710
711 bDst.buffer = buffer;
712 bDst.status = mapHidlBufferStatus(bSrc.status);
713 bDst.acquire_fence = -1;
714 if (bSrc.releaseFence == nullptr) {
715 bDst.release_fence = -1;
716 } else if (bSrc.releaseFence->numFds == 1) {
717 if (noBufferReturned) {
718 ALOGE("%s: got releaseFence without output buffer!", __FUNCTION__);
719 }
720 bDst.release_fence = dup(bSrc.releaseFence->data[0]);
721 } else {
722 ALOGE("%s: Frame %d: Invalid release fence for buffer %zu, fd count is %d, not 1",
723 __FUNCTION__, result.frameNumber, i, bSrc.releaseFence->numFds);
724 return;
725 }
726 }
727 r.num_output_buffers = outputBuffers.size();
728 r.output_buffers = outputBuffers.data();
729
730 camera3_stream_buffer_t inputBuffer;
731 if (result.inputBuffer.streamId == -1) {
732 r.input_buffer = nullptr;
733 } else {
734 if (states.inputStream->getId() != result.inputBuffer.streamId) {
735 ALOGE("%s: Frame %d: Invalid input stream id %d", __FUNCTION__,
736 result.frameNumber, result.inputBuffer.streamId);
737 return;
738 }
739 inputBuffer.stream = states.inputStream->asHalStream();
740 buffer_handle_t *buffer;
741 res = bufferRecords.popInflightBuffer(result.frameNumber, result.inputBuffer.streamId,
742 &buffer);
743 if (res != OK) {
744 ALOGE("%s: Frame %d: Input buffer: No in-flight buffer for stream %d",
745 __FUNCTION__, result.frameNumber, result.inputBuffer.streamId);
746 return;
747 }
748 inputBuffer.buffer = buffer;
749 inputBuffer.status = mapHidlBufferStatus(result.inputBuffer.status);
750 inputBuffer.acquire_fence = -1;
751 if (result.inputBuffer.releaseFence == nullptr) {
752 inputBuffer.release_fence = -1;
753 } else if (result.inputBuffer.releaseFence->numFds == 1) {
754 inputBuffer.release_fence = dup(result.inputBuffer.releaseFence->data[0]);
755 } else {
756 ALOGE("%s: Frame %d: Invalid release fence for input buffer, fd count is %d, not 1",
757 __FUNCTION__, result.frameNumber, result.inputBuffer.releaseFence->numFds);
758 return;
759 }
760 r.input_buffer = &inputBuffer;
761 }
762
763 r.partial_result = result.partialResult;
764
765 processCaptureResult(states, &r);
766}
767
768void returnOutputBuffers(
769 bool useHalBufManager,
770 sp<NotificationListener> listener,
771 const camera3_stream_buffer_t *outputBuffers, size_t numBuffers,
772 nsecs_t timestamp, bool timestampIncreasing,
773 const SurfaceMap& outputSurfaces,
774 const CaptureResultExtras &inResultExtras) {
775
776 for (size_t i = 0; i < numBuffers; i++)
777 {
778 if (outputBuffers[i].buffer == nullptr) {
779 if (!useHalBufManager) {
780 // With HAL buffer management API, HAL sometimes will have to return buffers that
781 // has not got a output buffer handle filled yet. This is though illegal if HAL
782 // buffer management API is not being used.
783 ALOGE("%s: cannot return a null buffer!", __FUNCTION__);
784 }
785 continue;
786 }
787
788 Camera3StreamInterface *stream = Camera3Stream::cast(outputBuffers[i].stream);
789 int streamId = stream->getId();
790 const auto& it = outputSurfaces.find(streamId);
791 status_t res = OK;
792 if (it != outputSurfaces.end()) {
793 res = stream->returnBuffer(
794 outputBuffers[i], timestamp, timestampIncreasing, it->second,
795 inResultExtras.frameNumber);
796 } else {
797 res = stream->returnBuffer(
798 outputBuffers[i], timestamp, timestampIncreasing, std::vector<size_t> (),
799 inResultExtras.frameNumber);
800 }
801
802 // Note: stream may be deallocated at this point, if this buffer was
803 // the last reference to it.
804 if (res == NO_INIT || res == DEAD_OBJECT) {
805 ALOGV("Can't return buffer to its stream: %s (%d)", strerror(-res), res);
806 } else if (res != OK) {
807 ALOGE("Can't return buffer to its stream: %s (%d)", strerror(-res), res);
808 }
809
810 // Long processing consumers can cause returnBuffer timeout for shared stream
811 // If that happens, cancel the buffer and send a buffer error to client
812 if (it != outputSurfaces.end() && res == TIMED_OUT &&
813 outputBuffers[i].status == CAMERA3_BUFFER_STATUS_OK) {
814 // cancel the buffer
815 camera3_stream_buffer_t sb = outputBuffers[i];
816 sb.status = CAMERA3_BUFFER_STATUS_ERROR;
817 stream->returnBuffer(sb, /*timestamp*/0, timestampIncreasing, std::vector<size_t> (),
818 inResultExtras.frameNumber);
819
820 if (listener != nullptr) {
821 CaptureResultExtras extras = inResultExtras;
822 extras.errorStreamId = streamId;
823 listener->notifyError(
824 hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_BUFFER,
825 extras);
826 }
827 }
828 }
829}
830
831void notifyShutter(CaptureOutputStates& states, const camera3_shutter_msg_t &msg) {
832 ATRACE_CALL();
833 ssize_t idx;
834
835 // Set timestamp for the request in the in-flight tracking
836 // and get the request ID to send upstream
837 {
838 std::lock_guard<std::mutex> l(states.inflightLock);
839 InFlightRequestMap& inflightMap = states.inflightMap;
840 idx = inflightMap.indexOfKey(msg.frame_number);
841 if (idx >= 0) {
842 InFlightRequest &r = inflightMap.editValueAt(idx);
843
844 // Verify ordering of shutter notifications
845 {
846 std::lock_guard<std::mutex> l(states.outputLock);
847 // TODO: need to track errors for tighter bounds on expected frame number.
848 if (r.hasInputBuffer) {
849 if (msg.frame_number < states.nextReprocShutterFrameNum) {
850 SET_ERR("Reprocess shutter notification out-of-order. Expected "
851 "notification for frame %d, got frame %d",
852 states.nextReprocShutterFrameNum, msg.frame_number);
853 return;
854 }
855 states.nextReprocShutterFrameNum = msg.frame_number + 1;
856 } else if (r.zslCapture && r.stillCapture) {
857 if (msg.frame_number < states.nextZslShutterFrameNum) {
858 SET_ERR("ZSL still capture shutter notification out-of-order. Expected "
859 "notification for frame %d, got frame %d",
860 states.nextZslShutterFrameNum, msg.frame_number);
861 return;
862 }
863 states.nextZslShutterFrameNum = msg.frame_number + 1;
864 } else {
865 if (msg.frame_number < states.nextShutterFrameNum) {
866 SET_ERR("Shutter notification out-of-order. Expected "
867 "notification for frame %d, got frame %d",
868 states.nextShutterFrameNum, msg.frame_number);
869 return;
870 }
871 states.nextShutterFrameNum = msg.frame_number + 1;
872 }
873 }
874
875 r.shutterTimestamp = msg.timestamp;
876 if (r.hasCallback) {
877 ALOGVV("Camera %s: %s: Shutter fired for frame %d (id %d) at %" PRId64,
878 states.cameraId.string(), __FUNCTION__,
879 msg.frame_number, r.resultExtras.requestId, msg.timestamp);
880 // Call listener, if any
881 if (states.listener != nullptr) {
882 states.listener->notifyShutter(r.resultExtras, msg.timestamp);
883 }
884 // send pending result and buffers
885 sendCaptureResult(states,
886 r.pendingMetadata, r.resultExtras,
887 r.collectedPartialResult, msg.frame_number,
888 r.hasInputBuffer, r.zslCapture && r.stillCapture,
889 r.cameraIdsWithZoom, r.physicalMetadatas);
890 }
891 bool timestampIncreasing = !(r.zslCapture || r.hasInputBuffer);
892 returnOutputBuffers(
893 states.useHalBufManager, states.listener,
894 r.pendingOutputBuffers.array(),
895 r.pendingOutputBuffers.size(), r.shutterTimestamp, timestampIncreasing,
896 r.outputSurfaces, r.resultExtras);
897 r.pendingOutputBuffers.clear();
898
899 removeInFlightRequestIfReadyLocked(states, idx);
900 }
901 }
902 if (idx < 0) {
903 SET_ERR("Shutter notification for non-existent frame number %d",
904 msg.frame_number);
905 }
906}
907
908void notifyError(CaptureOutputStates& states, const camera3_error_msg_t &msg) {
909 ATRACE_CALL();
910 // Map camera HAL error codes to ICameraDeviceCallback error codes
911 // Index into this with the HAL error code
912 static const int32_t halErrorMap[CAMERA3_MSG_NUM_ERRORS] = {
913 // 0 = Unused error code
914 hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_INVALID_ERROR,
915 // 1 = CAMERA3_MSG_ERROR_DEVICE
916 hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_DEVICE,
917 // 2 = CAMERA3_MSG_ERROR_REQUEST
918 hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_REQUEST,
919 // 3 = CAMERA3_MSG_ERROR_RESULT
920 hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_RESULT,
921 // 4 = CAMERA3_MSG_ERROR_BUFFER
922 hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_BUFFER
923 };
924
925 int32_t errorCode =
926 ((msg.error_code >= 0) &&
927 (msg.error_code < CAMERA3_MSG_NUM_ERRORS)) ?
928 halErrorMap[msg.error_code] :
929 hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_INVALID_ERROR;
930
931 int streamId = 0;
932 String16 physicalCameraId;
933 if (msg.error_stream != nullptr) {
934 Camera3Stream *stream =
935 Camera3Stream::cast(msg.error_stream);
936 streamId = stream->getId();
937 physicalCameraId = String16(stream->physicalCameraId());
938 }
939 ALOGV("Camera %s: %s: HAL error, frame %d, stream %d: %d",
940 states.cameraId.string(), __FUNCTION__, msg.frame_number,
941 streamId, msg.error_code);
942
943 CaptureResultExtras resultExtras;
944 switch (errorCode) {
945 case hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_DEVICE:
946 // SET_ERR calls into listener to notify application
947 SET_ERR("Camera HAL reported serious device error");
948 break;
949 case hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_REQUEST:
950 case hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_RESULT:
951 case hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_BUFFER:
952 {
953 std::lock_guard<std::mutex> l(states.inflightLock);
954 ssize_t idx = states.inflightMap.indexOfKey(msg.frame_number);
955 if (idx >= 0) {
956 InFlightRequest &r = states.inflightMap.editValueAt(idx);
957 r.requestStatus = msg.error_code;
958 resultExtras = r.resultExtras;
959 bool logicalDeviceResultError = false;
960 if (hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_RESULT ==
961 errorCode) {
962 if (physicalCameraId.size() > 0) {
963 String8 cameraId(physicalCameraId);
964 auto iter = r.physicalCameraIds.find(cameraId);
965 if (iter == r.physicalCameraIds.end()) {
966 ALOGE("%s: Reported result failure for physical camera device: %s "
967 " which is not part of the respective request!",
968 __FUNCTION__, cameraId.string());
969 break;
970 }
971 r.physicalCameraIds.erase(iter);
972 resultExtras.errorPhysicalCameraId = physicalCameraId;
973 } else {
974 logicalDeviceResultError = true;
975 }
976 }
977
978 if (logicalDeviceResultError
979 || hardware::camera2::ICameraDeviceCallbacks::ERROR_CAMERA_REQUEST ==
980 errorCode) {
981 r.skipResultMetadata = true;
982 }
983 if (logicalDeviceResultError) {
984 // In case of missing result check whether the buffers
985 // returned. If they returned, then remove inflight
986 // request.
987 // TODO: should we call this for ERROR_CAMERA_REQUEST as well?
988 // otherwise we are depending on HAL to send the buffers back after
989 // calling notifyError. Not sure if that's in the spec.
990 removeInFlightRequestIfReadyLocked(states, idx);
991 }
992 } else {
993 resultExtras.frameNumber = msg.frame_number;
994 ALOGE("Camera %s: %s: cannot find in-flight request on "
995 "frame %" PRId64 " error", states.cameraId.string(), __FUNCTION__,
996 resultExtras.frameNumber);
997 }
998 }
999 resultExtras.errorStreamId = streamId;
1000 if (states.listener != nullptr) {
1001 states.listener->notifyError(errorCode, resultExtras);
1002 } else {
1003 ALOGE("Camera %s: %s: no listener available",
1004 states.cameraId.string(), __FUNCTION__);
1005 }
1006 break;
1007 default:
1008 // SET_ERR calls notifyError
1009 SET_ERR("Unknown error message from HAL: %d", msg.error_code);
1010 break;
1011 }
1012}
1013
1014void notify(CaptureOutputStates& states, const camera3_notify_msg *msg) {
1015 switch (msg->type) {
1016 case CAMERA3_MSG_ERROR: {
1017 notifyError(states, msg->message.error);
1018 break;
1019 }
1020 case CAMERA3_MSG_SHUTTER: {
1021 notifyShutter(states, msg->message.shutter);
1022 break;
1023 }
1024 default:
1025 SET_ERR("Unknown notify message from HAL: %d",
1026 msg->type);
1027 }
1028}
1029
1030void notify(CaptureOutputStates& states,
1031 const hardware::camera::device::V3_2::NotifyMsg& msg) {
1032 using android::hardware::camera::device::V3_2::MsgType;
1033 using android::hardware::camera::device::V3_2::ErrorCode;
1034
1035 ATRACE_CALL();
1036 camera3_notify_msg m;
1037 switch (msg.type) {
1038 case MsgType::ERROR:
1039 m.type = CAMERA3_MSG_ERROR;
1040 m.message.error.frame_number = msg.msg.error.frameNumber;
1041 if (msg.msg.error.errorStreamId >= 0) {
1042 sp<Camera3StreamInterface> stream =
1043 states.outputStreams.get(msg.msg.error.errorStreamId);
1044 if (stream == nullptr) {
1045 ALOGE("%s: Frame %d: Invalid error stream id %d", __FUNCTION__,
1046 m.message.error.frame_number, msg.msg.error.errorStreamId);
1047 return;
1048 }
1049 m.message.error.error_stream = stream->asHalStream();
1050 } else {
1051 m.message.error.error_stream = nullptr;
1052 }
1053 switch (msg.msg.error.errorCode) {
1054 case ErrorCode::ERROR_DEVICE:
1055 m.message.error.error_code = CAMERA3_MSG_ERROR_DEVICE;
1056 break;
1057 case ErrorCode::ERROR_REQUEST:
1058 m.message.error.error_code = CAMERA3_MSG_ERROR_REQUEST;
1059 break;
1060 case ErrorCode::ERROR_RESULT:
1061 m.message.error.error_code = CAMERA3_MSG_ERROR_RESULT;
1062 break;
1063 case ErrorCode::ERROR_BUFFER:
1064 m.message.error.error_code = CAMERA3_MSG_ERROR_BUFFER;
1065 break;
1066 }
1067 break;
1068 case MsgType::SHUTTER:
1069 m.type = CAMERA3_MSG_SHUTTER;
1070 m.message.shutter.frame_number = msg.msg.shutter.frameNumber;
1071 m.message.shutter.timestamp = msg.msg.shutter.timestamp;
1072 break;
1073 }
1074 notify(states, &m);
1075}
1076
1077void requestStreamBuffers(RequestBufferStates& states,
1078 const hardware::hidl_vec<hardware::camera::device::V3_5::BufferRequest>& bufReqs,
1079 hardware::camera::device::V3_5::ICameraDeviceCallback::requestStreamBuffers_cb _hidl_cb) {
1080 using android::hardware::camera::device::V3_2::BufferStatus;
1081 using android::hardware::camera::device::V3_2::StreamBuffer;
1082 using android::hardware::camera::device::V3_5::BufferRequestStatus;
1083 using android::hardware::camera::device::V3_5::StreamBufferRet;
1084 using android::hardware::camera::device::V3_5::StreamBufferRequestError;
1085
1086 std::lock_guard<std::mutex> lock(states.reqBufferLock);
1087
1088 hardware::hidl_vec<StreamBufferRet> bufRets;
1089 if (!states.useHalBufManager) {
1090 ALOGE("%s: Camera %s does not support HAL buffer management",
1091 __FUNCTION__, states.cameraId.string());
1092 _hidl_cb(BufferRequestStatus::FAILED_ILLEGAL_ARGUMENTS, bufRets);
1093 return;
1094 }
1095
1096 SortedVector<int32_t> streamIds;
1097 ssize_t sz = streamIds.setCapacity(bufReqs.size());
1098 if (sz < 0 || static_cast<size_t>(sz) != bufReqs.size()) {
1099 ALOGE("%s: failed to allocate memory for %zu buffer requests",
1100 __FUNCTION__, bufReqs.size());
1101 _hidl_cb(BufferRequestStatus::FAILED_ILLEGAL_ARGUMENTS, bufRets);
1102 return;
1103 }
1104
1105 if (bufReqs.size() > states.outputStreams.size()) {
1106 ALOGE("%s: too many buffer requests (%zu > # of output streams %zu)",
1107 __FUNCTION__, bufReqs.size(), states.outputStreams.size());
1108 _hidl_cb(BufferRequestStatus::FAILED_ILLEGAL_ARGUMENTS, bufRets);
1109 return;
1110 }
1111
1112 // Check for repeated streamId
1113 for (const auto& bufReq : bufReqs) {
1114 if (streamIds.indexOf(bufReq.streamId) != NAME_NOT_FOUND) {
1115 ALOGE("%s: Stream %d appear multiple times in buffer requests",
1116 __FUNCTION__, bufReq.streamId);
1117 _hidl_cb(BufferRequestStatus::FAILED_ILLEGAL_ARGUMENTS, bufRets);
1118 return;
1119 }
1120 streamIds.add(bufReq.streamId);
1121 }
1122
1123 if (!states.reqBufferIntf.startRequestBuffer()) {
1124 ALOGE("%s: request buffer disallowed while camera service is configuring",
1125 __FUNCTION__);
1126 _hidl_cb(BufferRequestStatus::FAILED_CONFIGURING, bufRets);
1127 return;
1128 }
1129
1130 bufRets.resize(bufReqs.size());
1131
1132 bool allReqsSucceeds = true;
1133 bool oneReqSucceeds = false;
1134 for (size_t i = 0; i < bufReqs.size(); i++) {
1135 const auto& bufReq = bufReqs[i];
1136 auto& bufRet = bufRets[i];
1137 int32_t streamId = bufReq.streamId;
1138 sp<Camera3OutputStreamInterface> outputStream = states.outputStreams.get(streamId);
1139 if (outputStream == nullptr) {
1140 ALOGE("%s: Output stream id %d not found!", __FUNCTION__, streamId);
1141 hardware::hidl_vec<StreamBufferRet> emptyBufRets;
1142 _hidl_cb(BufferRequestStatus::FAILED_ILLEGAL_ARGUMENTS, emptyBufRets);
1143 states.reqBufferIntf.endRequestBuffer();
1144 return;
1145 }
1146
1147 if (outputStream->isAbandoned()) {
1148 bufRet.val.error(StreamBufferRequestError::STREAM_DISCONNECTED);
1149 allReqsSucceeds = false;
1150 continue;
1151 }
1152
1153 bufRet.streamId = streamId;
1154 size_t handOutBufferCount = outputStream->getOutstandingBuffersCount();
1155 uint32_t numBuffersRequested = bufReq.numBuffersRequested;
1156 size_t totalHandout = handOutBufferCount + numBuffersRequested;
1157 uint32_t maxBuffers = outputStream->asHalStream()->max_buffers;
1158 if (totalHandout > maxBuffers) {
1159 // Not able to allocate enough buffer. Exit early for this stream
1160 ALOGE("%s: request too much buffers for stream %d: at HAL: %zu + requesting: %d"
1161 " > max: %d", __FUNCTION__, streamId, handOutBufferCount,
1162 numBuffersRequested, maxBuffers);
1163 bufRet.val.error(StreamBufferRequestError::MAX_BUFFER_EXCEEDED);
1164 allReqsSucceeds = false;
1165 continue;
1166 }
1167
1168 hardware::hidl_vec<StreamBuffer> tmpRetBuffers(numBuffersRequested);
1169 bool currentReqSucceeds = true;
1170 std::vector<camera3_stream_buffer_t> streamBuffers(numBuffersRequested);
1171 size_t numAllocatedBuffers = 0;
1172 size_t numPushedInflightBuffers = 0;
1173 for (size_t b = 0; b < numBuffersRequested; b++) {
1174 camera3_stream_buffer_t& sb = streamBuffers[b];
1175 // Since this method can run concurrently with request thread
1176 // We need to update the wait duration everytime we call getbuffer
1177 nsecs_t waitDuration = states.reqBufferIntf.getWaitDuration();
1178 status_t res = outputStream->getBuffer(&sb, waitDuration);
1179 if (res != OK) {
1180 if (res == NO_INIT || res == DEAD_OBJECT) {
1181 ALOGV("%s: Can't get output buffer for stream %d: %s (%d)",
1182 __FUNCTION__, streamId, strerror(-res), res);
1183 bufRet.val.error(StreamBufferRequestError::STREAM_DISCONNECTED);
1184 } else {
1185 ALOGE("%s: Can't get output buffer for stream %d: %s (%d)",
1186 __FUNCTION__, streamId, strerror(-res), res);
1187 if (res == TIMED_OUT || res == NO_MEMORY) {
1188 bufRet.val.error(StreamBufferRequestError::NO_BUFFER_AVAILABLE);
1189 } else {
1190 bufRet.val.error(StreamBufferRequestError::UNKNOWN_ERROR);
1191 }
1192 }
1193 currentReqSucceeds = false;
1194 break;
1195 }
1196 numAllocatedBuffers++;
1197
1198 buffer_handle_t *buffer = sb.buffer;
1199 auto pair = states.bufferRecordsIntf.getBufferId(*buffer, streamId);
1200 bool isNewBuffer = pair.first;
1201 uint64_t bufferId = pair.second;
1202 StreamBuffer& hBuf = tmpRetBuffers[b];
1203
1204 hBuf.streamId = streamId;
1205 hBuf.bufferId = bufferId;
1206 hBuf.buffer = (isNewBuffer) ? *buffer : nullptr;
1207 hBuf.status = BufferStatus::OK;
1208 hBuf.releaseFence = nullptr;
1209
1210 native_handle_t *acquireFence = nullptr;
1211 if (sb.acquire_fence != -1) {
1212 acquireFence = native_handle_create(1,0);
1213 acquireFence->data[0] = sb.acquire_fence;
1214 }
1215 hBuf.acquireFence.setTo(acquireFence, /*shouldOwn*/true);
1216 hBuf.releaseFence = nullptr;
1217
1218 res = states.bufferRecordsIntf.pushInflightRequestBuffer(bufferId, buffer, streamId);
1219 if (res != OK) {
1220 ALOGE("%s: Can't get register request buffers for stream %d: %s (%d)",
1221 __FUNCTION__, streamId, strerror(-res), res);
1222 bufRet.val.error(StreamBufferRequestError::UNKNOWN_ERROR);
1223 currentReqSucceeds = false;
1224 break;
1225 }
1226 numPushedInflightBuffers++;
1227 }
1228 if (currentReqSucceeds) {
1229 bufRet.val.buffers(std::move(tmpRetBuffers));
1230 oneReqSucceeds = true;
1231 } else {
1232 allReqsSucceeds = false;
1233 for (size_t b = 0; b < numPushedInflightBuffers; b++) {
1234 StreamBuffer& hBuf = tmpRetBuffers[b];
1235 buffer_handle_t* buffer;
1236 status_t res = states.bufferRecordsIntf.popInflightRequestBuffer(
1237 hBuf.bufferId, &buffer);
1238 if (res != OK) {
1239 SET_ERR("%s: popInflightRequestBuffer failed for stream %d: %s (%d)",
1240 __FUNCTION__, streamId, strerror(-res), res);
1241 }
1242 }
1243 for (size_t b = 0; b < numAllocatedBuffers; b++) {
1244 camera3_stream_buffer_t& sb = streamBuffers[b];
1245 sb.acquire_fence = -1;
1246 sb.status = CAMERA3_BUFFER_STATUS_ERROR;
1247 }
1248 returnOutputBuffers(states.useHalBufManager, /*listener*/nullptr,
1249 streamBuffers.data(), numAllocatedBuffers, 0);
1250 }
1251 }
1252
1253 _hidl_cb(allReqsSucceeds ? BufferRequestStatus::OK :
1254 oneReqSucceeds ? BufferRequestStatus::FAILED_PARTIAL :
1255 BufferRequestStatus::FAILED_UNKNOWN,
1256 bufRets);
1257 states.reqBufferIntf.endRequestBuffer();
1258}
1259
1260void returnStreamBuffers(ReturnBufferStates& states,
1261 const hardware::hidl_vec<hardware::camera::device::V3_2::StreamBuffer>& buffers) {
1262 if (!states.useHalBufManager) {
1263 ALOGE("%s: Camera %s does not support HAL buffer managerment",
1264 __FUNCTION__, states.cameraId.string());
1265 return;
1266 }
1267
1268 for (const auto& buf : buffers) {
1269 if (buf.bufferId == BUFFER_ID_NO_BUFFER) {
1270 ALOGE("%s: cannot return a buffer without bufferId", __FUNCTION__);
1271 continue;
1272 }
1273
1274 buffer_handle_t* buffer;
1275 status_t res = states.bufferRecordsIntf.popInflightRequestBuffer(buf.bufferId, &buffer);
1276
1277 if (res != OK) {
1278 ALOGE("%s: cannot find in-flight buffer %" PRIu64 " for stream %d",
1279 __FUNCTION__, buf.bufferId, buf.streamId);
1280 continue;
1281 }
1282
1283 camera3_stream_buffer_t streamBuffer;
1284 streamBuffer.buffer = buffer;
1285 streamBuffer.status = CAMERA3_BUFFER_STATUS_ERROR;
1286 streamBuffer.acquire_fence = -1;
1287 streamBuffer.release_fence = -1;
1288
1289 if (buf.releaseFence == nullptr) {
1290 streamBuffer.release_fence = -1;
1291 } else if (buf.releaseFence->numFds == 1) {
1292 streamBuffer.release_fence = dup(buf.releaseFence->data[0]);
1293 } else {
1294 ALOGE("%s: Invalid release fence, fd count is %d, not 1",
1295 __FUNCTION__, buf.releaseFence->numFds);
1296 continue;
1297 }
1298
1299 sp<Camera3StreamInterface> stream = states.outputStreams.get(buf.streamId);
1300 if (stream == nullptr) {
1301 ALOGE("%s: Output stream id %d not found!", __FUNCTION__, buf.streamId);
1302 continue;
1303 }
1304 streamBuffer.stream = stream->asHalStream();
1305 returnOutputBuffers(states.useHalBufManager, /*listener*/nullptr,
1306 &streamBuffer, /*size*/1, /*timestamp*/ 0);
1307 }
1308}
1309
1310void flushInflightRequests(FlushInflightReqStates& states) {
1311 ATRACE_CALL();
1312 { // First return buffers cached in mInFlightMap
1313 std::lock_guard<std::mutex> l(states.inflightLock);
1314 for (size_t idx = 0; idx < states.inflightMap.size(); idx++) {
1315 const InFlightRequest &request = states.inflightMap.valueAt(idx);
1316 returnOutputBuffers(
1317 states.useHalBufManager, states.listener,
1318 request.pendingOutputBuffers.array(),
1319 request.pendingOutputBuffers.size(), 0,
1320 /*timestampIncreasing*/true, request.outputSurfaces,
1321 request.resultExtras);
1322 }
1323 states.inflightMap.clear();
1324 states.inflightIntf.onInflightMapFlushedLocked();
1325 }
1326
1327 // Then return all inflight buffers not returned by HAL
1328 std::vector<std::pair<int32_t, int32_t>> inflightKeys;
1329 states.flushBufferIntf.getInflightBufferKeys(&inflightKeys);
1330
1331 // Inflight buffers for HAL buffer manager
1332 std::vector<uint64_t> inflightRequestBufferKeys;
1333 states.flushBufferIntf.getInflightRequestBufferKeys(&inflightRequestBufferKeys);
1334
1335 // (streamId, frameNumber, buffer_handle_t*) tuple for all inflight buffers.
1336 // frameNumber will be -1 for buffers from HAL buffer manager
1337 std::vector<std::tuple<int32_t, int32_t, buffer_handle_t*>> inflightBuffers;
1338 inflightBuffers.reserve(inflightKeys.size() + inflightRequestBufferKeys.size());
1339
1340 for (auto& pair : inflightKeys) {
1341 int32_t frameNumber = pair.first;
1342 int32_t streamId = pair.second;
1343 buffer_handle_t* buffer;
1344 status_t res = states.bufferRecordsIntf.popInflightBuffer(frameNumber, streamId, &buffer);
1345 if (res != OK) {
1346 ALOGE("%s: Frame %d: No in-flight buffer for stream %d",
1347 __FUNCTION__, frameNumber, streamId);
1348 continue;
1349 }
1350 inflightBuffers.push_back(std::make_tuple(streamId, frameNumber, buffer));
1351 }
1352
1353 for (auto& bufferId : inflightRequestBufferKeys) {
1354 int32_t streamId = -1;
1355 buffer_handle_t* buffer = nullptr;
1356 status_t res = states.bufferRecordsIntf.popInflightRequestBuffer(
1357 bufferId, &buffer, &streamId);
1358 if (res != OK) {
1359 ALOGE("%s: cannot find in-flight buffer %" PRIu64, __FUNCTION__, bufferId);
1360 continue;
1361 }
1362 inflightBuffers.push_back(std::make_tuple(streamId, /*frameNumber*/-1, buffer));
1363 }
1364
1365 std::vector<sp<Camera3StreamInterface>> streams = states.flushBufferIntf.getAllStreams();
1366
1367 for (auto& tuple : inflightBuffers) {
1368 status_t res = OK;
1369 int32_t streamId = std::get<0>(tuple);
1370 int32_t frameNumber = std::get<1>(tuple);
1371 buffer_handle_t* buffer = std::get<2>(tuple);
1372
1373 camera3_stream_buffer_t streamBuffer;
1374 streamBuffer.buffer = buffer;
1375 streamBuffer.status = CAMERA3_BUFFER_STATUS_ERROR;
1376 streamBuffer.acquire_fence = -1;
1377 streamBuffer.release_fence = -1;
1378
1379 for (auto& stream : streams) {
1380 if (streamId == stream->getId()) {
1381 // Return buffer to deleted stream
1382 camera3_stream* halStream = stream->asHalStream();
1383 streamBuffer.stream = halStream;
1384 switch (halStream->stream_type) {
1385 case CAMERA3_STREAM_OUTPUT:
1386 res = stream->returnBuffer(streamBuffer, /*timestamp*/ 0,
1387 /*timestampIncreasing*/true, std::vector<size_t> (), frameNumber);
1388 if (res != OK) {
1389 ALOGE("%s: Can't return output buffer for frame %d to"
1390 " stream %d: %s (%d)", __FUNCTION__,
1391 frameNumber, streamId, strerror(-res), res);
1392 }
1393 break;
1394 case CAMERA3_STREAM_INPUT:
1395 res = stream->returnInputBuffer(streamBuffer);
1396 if (res != OK) {
1397 ALOGE("%s: Can't return input buffer for frame %d to"
1398 " stream %d: %s (%d)", __FUNCTION__,
1399 frameNumber, streamId, strerror(-res), res);
1400 }
1401 break;
1402 default: // Bi-direcitonal stream is deprecated
1403 ALOGE("%s: stream %d has unknown stream type %d",
1404 __FUNCTION__, streamId, halStream->stream_type);
1405 break;
1406 }
1407 break;
1408 }
1409 }
1410 }
1411}
1412
1413} // camera3
1414} // namespace android