1 /*
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_NDEBUG 0
18 #define LOG_TAG "GCH_CameraDeviceSession"
19 #define ATRACE_TAG ATRACE_TAG_CAMERA
20 #include "camera_device_session.h"
21
22 #include <inttypes.h>
23 #include <log/log.h>
24 #include <utils/Trace.h>
25
26 #include "basic_capture_session.h"
27 #include "capture_session_utils.h"
28 #include "dual_ir_capture_session.h"
29 #include "hal_utils.h"
30 #include "hdrplus_capture_session.h"
31 #include "rgbird_capture_session.h"
32 #include "vendor_tag_defs.h"
33 #include "vendor_tag_types.h"
34 #include "vendor_tags.h"
35 #include "zsl_snapshot_capture_session.h"
36
37 namespace android {
38 namespace google_camera_hal {
39
40 constexpr char kMeasureBufferAllocationProp[] =
41 "persist.vendor.camera.measure_buffer_allocation";
42
43 static constexpr int64_t kNsPerSec = 1000000000;
44 static constexpr int64_t kAllocationThreshold = 33000000; // 33ms
45
46 std::vector<CaptureSessionEntryFuncs>
47 CameraDeviceSession::kCaptureSessionEntries = {
48 {.IsStreamConfigurationSupported =
49 HdrplusCaptureSession::IsStreamConfigurationSupported,
50 .CreateSession = HdrplusCaptureSession::Create},
51 {.IsStreamConfigurationSupported =
52 RgbirdCaptureSession::IsStreamConfigurationSupported,
53 .CreateSession = RgbirdCaptureSession::Create},
54 {.IsStreamConfigurationSupported =
55 DualIrCaptureSession::IsStreamConfigurationSupported,
56 .CreateSession = DualIrCaptureSession::Create},
57 // BasicCaptureSession is supposed to be the last resort.
58 {.IsStreamConfigurationSupported =
59 BasicCaptureSession::IsStreamConfigurationSupported,
60 .CreateSession = BasicCaptureSession::Create}};
61
62 std::vector<WrapperCaptureSessionEntryFuncs>
63 CameraDeviceSession::kWrapperCaptureSessionEntries = {
64 {.IsStreamConfigurationSupported =
65 ZslSnapshotCaptureSession::IsStreamConfigurationSupported,
66 .CreateSession = ZslSnapshotCaptureSession::Create}};
67
Create(std::unique_ptr<CameraDeviceSessionHwl> device_session_hwl,std::vector<GetCaptureSessionFactoryFunc> external_session_factory_entries,CameraBufferAllocatorHwl * camera_allocator_hwl)68 std::unique_ptr<CameraDeviceSession> CameraDeviceSession::Create(
69 std::unique_ptr<CameraDeviceSessionHwl> device_session_hwl,
70 std::vector<GetCaptureSessionFactoryFunc> external_session_factory_entries,
71 CameraBufferAllocatorHwl* camera_allocator_hwl) {
72 ATRACE_CALL();
73 if (device_session_hwl == nullptr) {
74 ALOGE("%s: device_session_hwl is nullptr", __FUNCTION__);
75 return nullptr;
76 }
77
78 uint32_t camera_id = device_session_hwl->GetCameraId();
79 std::vector<uint32_t> physical_camera_ids =
80 device_session_hwl->GetPhysicalCameraIds();
81
82 auto session = std::unique_ptr<CameraDeviceSession>(new CameraDeviceSession());
83 if (session == nullptr) {
84 ALOGE("%s: Creating CameraDeviceSession failed.", __FUNCTION__);
85 return nullptr;
86 }
87
88 status_t res =
89 session->Initialize(std::move(device_session_hwl), camera_allocator_hwl,
90 external_session_factory_entries);
91 if (res != OK) {
92 ALOGE("%s: Initializing CameraDeviceSession failed: %s (%d).", __FUNCTION__,
93 strerror(-res), res);
94 return nullptr;
95 }
96
97 // Construct a string of physical camera IDs.
98 std::string physical_camera_ids_string;
99 if (physical_camera_ids.size() > 0) {
100 physical_camera_ids_string += ": ";
101
102 for (auto& id : physical_camera_ids) {
103 physical_camera_ids_string += std::to_string(id) + " ";
104 }
105 }
106
107 ALOGI(
108 "%s: Created a device session for camera %d with %zu physical cameras%s",
109 __FUNCTION__, camera_id, physical_camera_ids.size(),
110 physical_camera_ids_string.c_str());
111
112 return session;
113 }
114
UpdatePendingRequest(CaptureResult * result)115 status_t CameraDeviceSession::UpdatePendingRequest(CaptureResult* result) {
116 std::lock_guard<std::mutex> lock(request_record_lock_);
117 if (result == nullptr) {
118 ALOGE("%s: result is nullptr.", __FUNCTION__);
119 return BAD_VALUE;
120 }
121
122 if (result->output_buffers.empty()) {
123 // Nothing to do if the result doesn't contain any output buffers.
124 return OK;
125 }
126
127 // Update inflight request records and notify SBC for flushing if needed
128 uint32_t frame_number = result->frame_number;
129 if (pending_request_streams_.find(frame_number) ==
130 pending_request_streams_.end()) {
131 ALOGE("%s: Can't find frame %u in result holder.", __FUNCTION__,
132 frame_number);
133 return UNKNOWN_ERROR;
134 }
135
136 // Remove streams from pending request streams for buffers in the result.
137 auto& streams = pending_request_streams_.at(frame_number);
138 for (auto& stream_buffer : result->output_buffers) {
139 int32_t stream_id = stream_buffer.stream_id;
140 if (streams.find(stream_id) == streams.end()) {
141 // If stream_id belongs to a stream group, the HWL may choose to output
142 // buffers to a different stream in the same group.
143 if (grouped_stream_id_map_.count(stream_id) == 1) {
144 int32_t stream_id_for_group = grouped_stream_id_map_.at(stream_id);
145 if (streams.find(stream_id_for_group) != streams.end()) {
146 streams.erase(stream_id_for_group);
147 } else {
148 ALOGE(
149 "%s: Can't find stream_id_for_group %d for stream %d in frame %u "
150 "result holder. It may have been returned or have not been "
151 "requested.",
152 __FUNCTION__, stream_id_for_group, stream_id, frame_number);
153 }
154 } else {
155 ALOGE(
156 "%s: Can't find stream %d in frame %u result holder. It may"
157 " have been returned or have not been requested.",
158 __FUNCTION__, stream_id, frame_number);
159 }
160 // Ignore this buffer and continue handling other buffers in the
161 // result.
162 } else {
163 streams.erase(stream_id);
164 }
165 }
166
167 if (streams.empty()) {
168 pending_request_streams_.erase(frame_number);
169 }
170
171 if (pending_request_streams_.empty()) {
172 status_t res = stream_buffer_cache_manager_->NotifyFlushingAll();
173 if (res != OK) {
174 ALOGE("%s: Failed to notify SBC manager to flush all streams.",
175 __FUNCTION__);
176 }
177 ALOGI(
178 "%s: [sbc] All inflight requests/streams cleared. Notified SBC for "
179 "flushing.",
180 __FUNCTION__);
181 }
182 return OK;
183 }
184
ProcessCaptureResult(std::unique_ptr<CaptureResult> result)185 void CameraDeviceSession::ProcessCaptureResult(
186 std::unique_ptr<CaptureResult> result) {
187 if (result == nullptr) {
188 ALOGE("%s: result is nullptr", __FUNCTION__);
189 return;
190 }
191 zoom_ratio_mapper_.UpdateCaptureResult(result.get());
192
193 // If buffer management is not supported, simply send the result to the client.
194 if (!buffer_management_supported_) {
195 std::shared_lock lock(session_callback_lock_);
196 session_callback_.process_capture_result(std::move(result));
197 return;
198 }
199
200 status_t res = UpdatePendingRequest(result.get());
201 if (res != OK) {
202 ALOGE("%s: Updating inflight requests/streams failed.", __FUNCTION__);
203 }
204
205 for (auto& stream_buffer : result->output_buffers) {
206 ALOGV("%s: [sbc] <= Return result output buf[%p], bid[%" PRIu64
207 "], strm[%d], frm[%u]",
208 __FUNCTION__, stream_buffer.buffer, stream_buffer.buffer_id,
209 stream_buffer.stream_id, result->frame_number);
210 }
211 for (auto& stream_buffer : result->input_buffers) {
212 ALOGV("%s: [sbc] <= Return result input buf[%p], bid[%" PRIu64
213 "], strm[%d], frm[%u]",
214 __FUNCTION__, stream_buffer.buffer, stream_buffer.buffer_id,
215 stream_buffer.stream_id, result->frame_number);
216 }
217
218 // If there is dummy buffer or a dummy buffer has been observed of this frame,
219 // handle the capture result specifically.
220 bool result_handled = false;
221 res = TryHandleDummyResult(result.get(), &result_handled);
222 if (res != OK) {
223 ALOGE("%s: Failed to handle dummy result.", __FUNCTION__);
224 return;
225 }
226 if (result_handled == true) {
227 return;
228 }
229
230 // Update pending request tracker with returned buffers.
231 std::vector<StreamBuffer> buffers;
232 buffers.insert(buffers.end(), result->output_buffers.begin(),
233 result->output_buffers.end());
234
235 if (result->result_metadata) {
236 std::lock_guard<std::mutex> lock(request_record_lock_);
237 pending_results_.erase(result->frame_number);
238 }
239
240 {
241 std::shared_lock lock(session_callback_lock_);
242 session_callback_.process_capture_result(std::move(result));
243 }
244
245 if (!buffers.empty()) {
246 if (pending_requests_tracker_->TrackReturnedAcquiredBuffers(buffers) != OK) {
247 ALOGE("%s: Tracking requested acquired buffers failed", __FUNCTION__);
248 }
249 if (pending_requests_tracker_->TrackReturnedResultBuffers(buffers) != OK) {
250 ALOGE("%s: Tracking requested quota buffers failed", __FUNCTION__);
251 }
252 }
253 }
254
Notify(const NotifyMessage & result)255 void CameraDeviceSession::Notify(const NotifyMessage& result) {
256 if (buffer_management_supported_) {
257 uint32_t frame_number = 0;
258 if (result.type == MessageType::kError) {
259 frame_number = result.message.error.frame_number;
260 } else if (result.type == MessageType::kShutter) {
261 frame_number = result.message.shutter.frame_number;
262 }
263 std::lock_guard<std::mutex> lock(request_record_lock_);
264 // Strip out results for frame number that has been notified
265 // ErrorCode::kErrorResult and ErrorCode::kErrorBuffer
266 if ((error_notified_requests_.find(frame_number) !=
267 error_notified_requests_.end()) &&
268 (result.type != MessageType::kShutter)) {
269 return;
270 }
271
272 if (result.type == MessageType::kError &&
273 result.message.error.error_code == ErrorCode::kErrorResult) {
274 pending_results_.erase(frame_number);
275
276 if (ignore_shutters_.find(frame_number) == ignore_shutters_.end()) {
277 ignore_shutters_.insert(frame_number);
278 }
279 }
280
281 if (result.type == MessageType::kShutter) {
282 if (ignore_shutters_.find(frame_number) != ignore_shutters_.end()) {
283 ignore_shutters_.erase(frame_number);
284 return;
285 }
286 }
287 }
288
289 if (ATRACE_ENABLED() && result.type == MessageType::kShutter) {
290 int64_t timestamp_ns_diff = 0;
291 int64_t current_timestamp_ns = result.message.shutter.timestamp_ns;
292 if (last_timestamp_ns_for_trace_ != 0) {
293 timestamp_ns_diff = current_timestamp_ns - last_timestamp_ns_for_trace_;
294 }
295
296 last_timestamp_ns_for_trace_ = current_timestamp_ns;
297
298 ATRACE_INT64("sensor_timestamp_diff", timestamp_ns_diff);
299 ATRACE_INT("timestamp_frame_number", result.message.shutter.frame_number);
300 }
301
302 std::shared_lock lock(session_callback_lock_);
303 session_callback_.notify(result);
304 }
305
InitializeBufferMapper()306 status_t CameraDeviceSession::InitializeBufferMapper() {
307 buffer_mapper_v4_ =
308 android::hardware::graphics::mapper::V4_0::IMapper::getService();
309 if (buffer_mapper_v4_ != nullptr) {
310 return OK;
311 }
312
313 buffer_mapper_v3_ =
314 android::hardware::graphics::mapper::V3_0::IMapper::getService();
315 if (buffer_mapper_v3_ != nullptr) {
316 return OK;
317 }
318
319 buffer_mapper_v2_ =
320 android::hardware::graphics::mapper::V2_0::IMapper::getService();
321 if (buffer_mapper_v2_ != nullptr) {
322 return OK;
323 }
324
325 ALOGE("%s: Getting buffer mapper failed.", __FUNCTION__);
326 return UNKNOWN_ERROR;
327 }
328
InitializeCallbacks()329 void CameraDeviceSession::InitializeCallbacks() {
330 std::lock_guard lock(session_callback_lock_);
331
332 // Initialize callback to
333 session_callback_.process_capture_result =
334 ProcessCaptureResultFunc([](std::unique_ptr<CaptureResult> /*result*/) {
335 ALOGW("%s: No session callback was set.", __FUNCTION__);
336 });
337
338 session_callback_.notify = NotifyFunc([](const NotifyMessage& /*message*/) {
339 ALOGW("%s: No session callback was set.", __FUNCTION__);
340 });
341
342 session_callback_.request_stream_buffers = RequestStreamBuffersFunc(
343 [](const std::vector<BufferRequest>& /*hal_buffer_requests*/,
344 std::vector<BufferReturn>* /*hal_buffer_returns*/) {
345 ALOGW("%s: No session callback was set.", __FUNCTION__);
346 return google_camera_hal::BufferRequestStatus::kFailedUnknown;
347 });
348
349 session_callback_.return_stream_buffers = ReturnStreamBuffersFunc(
350 [](const std::vector<StreamBuffer>& /*return_hal_buffers*/) {
351 ALOGW("%s: No session callback was set.", __FUNCTION__);
352 return google_camera_hal::BufferRequestStatus::kFailedUnknown;
353 });
354
355 camera_device_session_callback_.process_capture_result =
356 ProcessCaptureResultFunc([this](std::unique_ptr<CaptureResult> result) {
357 ProcessCaptureResult(std::move(result));
358 });
359
360 camera_device_session_callback_.notify =
361 NotifyFunc([this](const NotifyMessage& result) { Notify(result); });
362
363 hwl_session_callback_.request_stream_buffers = HwlRequestBuffersFunc(
364 [this](int32_t stream_id, uint32_t num_buffers,
365 std::vector<StreamBuffer>* buffers, uint32_t frame_number) {
366 return RequestBuffersFromStreamBufferCacheManager(
367 stream_id, num_buffers, buffers, frame_number);
368 });
369
370 hwl_session_callback_.return_stream_buffers =
371 HwlReturnBuffersFunc([this](const std::vector<StreamBuffer>& buffers) {
372 return ReturnStreamBuffers(buffers);
373 });
374
375 device_session_hwl_->SetSessionCallback(hwl_session_callback_);
376 }
377
InitializeBufferManagement(HalCameraMetadata * characteristics)378 status_t CameraDeviceSession::InitializeBufferManagement(
379 HalCameraMetadata* characteristics) {
380 ATRACE_CALL();
381
382 if (characteristics == nullptr) {
383 ALOGE("%s: characteristics cannot be nullptr.", __FUNCTION__);
384 return BAD_VALUE;
385 }
386
387 camera_metadata_ro_entry entry = {};
388 status_t res = characteristics->Get(
389 ANDROID_INFO_SUPPORTED_BUFFER_MANAGEMENT_VERSION, &entry);
390 if (res == OK && entry.count > 0) {
391 buffer_management_supported_ =
392 (entry.data.u8[0] >=
393 ANDROID_INFO_SUPPORTED_BUFFER_MANAGEMENT_VERSION_HIDL_DEVICE_3_5);
394 }
395
396 return OK;
397 }
398
Initialize(std::unique_ptr<CameraDeviceSessionHwl> device_session_hwl,CameraBufferAllocatorHwl * camera_allocator_hwl,std::vector<GetCaptureSessionFactoryFunc> external_session_factory_entries)399 status_t CameraDeviceSession::Initialize(
400 std::unique_ptr<CameraDeviceSessionHwl> device_session_hwl,
401 CameraBufferAllocatorHwl* camera_allocator_hwl,
402 std::vector<GetCaptureSessionFactoryFunc> external_session_factory_entries) {
403 ATRACE_CALL();
404 if (device_session_hwl == nullptr) {
405 ALOGE("%s: device_session_hwl cannot be nullptr.", __FUNCTION__);
406 return BAD_VALUE;
407 }
408 measure_buffer_allocation_time_ =
409 property_get_bool(kMeasureBufferAllocationProp, false);
410 ALOGI("%s: measure buffer allocation time: %d ", __FUNCTION__,
411 measure_buffer_allocation_time_);
412
413 camera_id_ = device_session_hwl->GetCameraId();
414 device_session_hwl_ = std::move(device_session_hwl);
415 camera_allocator_hwl_ = camera_allocator_hwl;
416
417 status_t res = InitializeBufferMapper();
418 if (res != OK) {
419 ALOGE("%s: Initialize buffer mapper failed: %s(%d)", __FUNCTION__,
420 strerror(-res), res);
421 return res;
422 }
423
424 InitializeCallbacks();
425
426 std::unique_ptr<google_camera_hal::HalCameraMetadata> characteristics;
427 res = device_session_hwl_->GetCameraCharacteristics(&characteristics);
428 if (res != OK) {
429 ALOGE("%s: Get camera characteristics failed: %s(%d)", __FUNCTION__,
430 strerror(-res), res);
431 return res;
432 }
433
434 res = InitializeBufferManagement(characteristics.get());
435 if (res != OK) {
436 ALOGE("%s: Initialize buffer management failed: %s(%d)", __FUNCTION__,
437 strerror(-res), res);
438 return res;
439 }
440
441 res = LoadExternalCaptureSession(external_session_factory_entries);
442 if (res != OK) {
443 ALOGE("%s: Loading external capture sessions failed: %s(%d)", __FUNCTION__,
444 strerror(-res), res);
445 return res;
446 }
447
448 InitializeZoomRatioMapper(characteristics.get());
449
450 return OK;
451 }
452
InitializeZoomRatioMapper(HalCameraMetadata * characteristics)453 void CameraDeviceSession::InitializeZoomRatioMapper(
454 HalCameraMetadata* characteristics) {
455 if (characteristics == nullptr) {
456 ALOGE("%s: characteristics cannot be nullptr.", __FUNCTION__);
457 return;
458 }
459
460 Rect active_array_size;
461 status_t res =
462 utils::GetSensorActiveArraySize(characteristics, &active_array_size);
463 if (res != OK) {
464 ALOGE("%s: Failed to get the active array size: %s(%d)", __FUNCTION__,
465 strerror(-res), res);
466 return;
467 }
468
469 ZoomRatioMapper::InitParams params;
470 params.camera_id = camera_id_;
471 params.active_array_dimension = {
472 active_array_size.right - active_array_size.left + 1,
473 active_array_size.bottom - active_array_size.top + 1};
474
475 std::vector<uint32_t> physical_camera_ids =
476 device_session_hwl_->GetPhysicalCameraIds();
477 for (uint32_t id : physical_camera_ids) {
478 std::unique_ptr<google_camera_hal::HalCameraMetadata>
479 physical_cam_characteristics;
480 res = device_session_hwl_->GetPhysicalCameraCharacteristics(
481 id, &physical_cam_characteristics);
482 if (res != OK) {
483 ALOGE("%s: Get camera: %u characteristics failed: %s(%d)", __FUNCTION__,
484 id, strerror(-res), res);
485 return;
486 }
487
488 res = utils::GetSensorActiveArraySize(physical_cam_characteristics.get(),
489 &active_array_size);
490 if (res != OK) {
491 ALOGE("%s: Failed to get cam: %u, active array size: %s(%d)",
492 __FUNCTION__, id, strerror(-res), res);
493 return;
494 }
495 Dimension active_array_dimension = {
496 active_array_size.right - active_array_size.left + 1,
497 active_array_size.bottom - active_array_size.top + 1};
498 params.physical_cam_active_array_dimension.emplace(id,
499 active_array_dimension);
500 }
501
502 res = utils::GetZoomRatioRange(characteristics, ¶ms.zoom_ratio_range);
503 if (res != OK) {
504 ALOGW("%s: Failed to get the zoom ratio range: %s(%d)", __FUNCTION__,
505 strerror(-res), res);
506 return;
507 }
508
509 params.zoom_ratio_mapper_hwl = device_session_hwl_->GetZoomRatioMapperHwl();
510
511 zoom_ratio_mapper_.Initialize(¶ms);
512 }
513
DeriveGroupedStreamIdMap()514 void CameraDeviceSession::DeriveGroupedStreamIdMap() {
515 // Group stream ids by stream group id
516 std::unordered_map<int32_t, std::vector<int32_t>> group_to_streams_map;
517 for (const auto& [stream_id, stream] : configured_streams_map_) {
518 if (stream.stream_type == StreamType::kOutput && stream.group_id != -1) {
519 group_to_streams_map[stream.group_id].push_back(stream_id);
520 }
521 }
522
523 // For each stream group, map all the streams' ids to one id
524 for (const auto& [group_id, stream_ids] : group_to_streams_map) {
525 for (size_t i = 1; i < stream_ids.size(); i++) {
526 grouped_stream_id_map_[stream_ids[i]] = stream_ids[0];
527 }
528 }
529 }
530
LoadExternalCaptureSession(std::vector<GetCaptureSessionFactoryFunc> external_session_factory_entries)531 status_t CameraDeviceSession::LoadExternalCaptureSession(
532 std::vector<GetCaptureSessionFactoryFunc> external_session_factory_entries) {
533 ATRACE_CALL();
534
535 if (external_capture_session_entries_.size() > 0) {
536 ALOGI("%s: External capture session libraries already loaded; skip.",
537 __FUNCTION__);
538 return OK;
539 }
540
541 for (const auto& external_session_factory_t :
542 external_session_factory_entries) {
543 ExternalCaptureSessionFactory* external_session =
544 external_session_factory_t();
545 if (!external_session) {
546 ALOGE("%s: External session may be incomplete", __FUNCTION__);
547 continue;
548 }
549
550 external_capture_session_entries_.push_back(external_session);
551 }
552
553 return OK;
554 }
555
~CameraDeviceSession()556 CameraDeviceSession::~CameraDeviceSession() {
557 UnregisterThermalCallback();
558
559 capture_session_ = nullptr;
560 device_session_hwl_ = nullptr;
561
562 for (auto external_session : external_capture_session_entries_) {
563 delete external_session;
564 }
565 external_capture_session_entries_.clear();
566
567 if (buffer_mapper_v4_ != nullptr) {
568 FreeImportedBufferHandles<android::hardware::graphics::mapper::V4_0::IMapper>(
569 buffer_mapper_v4_);
570 } else if (buffer_mapper_v3_ != nullptr) {
571 FreeImportedBufferHandles<android::hardware::graphics::mapper::V3_0::IMapper>(
572 buffer_mapper_v3_);
573 } else if (buffer_mapper_v2_ != nullptr) {
574 FreeImportedBufferHandles<android::hardware::graphics::mapper::V2_0::IMapper>(
575 buffer_mapper_v2_);
576 }
577 }
578
UnregisterThermalCallback()579 void CameraDeviceSession::UnregisterThermalCallback() {
580 std::shared_lock lock(session_callback_lock_);
581 if (thermal_callback_.unregister_thermal_changed_callback != nullptr) {
582 thermal_callback_.unregister_thermal_changed_callback();
583 }
584 }
585
SetSessionCallback(const CameraDeviceSessionCallback & session_callback,const ThermalCallback & thermal_callback)586 void CameraDeviceSession::SetSessionCallback(
587 const CameraDeviceSessionCallback& session_callback,
588 const ThermalCallback& thermal_callback) {
589 ATRACE_CALL();
590 std::lock_guard lock(session_callback_lock_);
591 session_callback_ = session_callback;
592 thermal_callback_ = thermal_callback;
593
594 status_t res = thermal_callback_.register_thermal_changed_callback(
595 NotifyThrottlingFunc([this](const Temperature& temperature) {
596 NotifyThrottling(temperature);
597 }),
598 /*filter_type=*/false,
599 /*type=*/TemperatureType::kUnknown);
600 if (res != OK) {
601 ALOGW("%s: Registering thermal callback failed: %s(%d)", __FUNCTION__,
602 strerror(-res), res);
603 }
604 }
605
NotifyThrottling(const Temperature & temperature)606 void CameraDeviceSession::NotifyThrottling(const Temperature& temperature) {
607 switch (temperature.throttling_status) {
608 case ThrottlingSeverity::kNone:
609 case ThrottlingSeverity::kLight:
610 case ThrottlingSeverity::kModerate:
611 ALOGI("%s: temperature type: %d, severity: %u, value: %f", __FUNCTION__,
612 temperature.type, temperature.throttling_status, temperature.value);
613 return;
614 case ThrottlingSeverity::kSevere:
615 case ThrottlingSeverity::kCritical:
616 case ThrottlingSeverity::kEmergency:
617 case ThrottlingSeverity::kShutdown:
618 ALOGW("%s: temperature type: %d, severity: %u, value: %f", __FUNCTION__,
619 temperature.type, temperature.throttling_status, temperature.value);
620 {
621 std::lock_guard<std::mutex> lock(session_lock_);
622 thermal_throttling_ = true;
623 }
624 return;
625 default:
626 ALOGE("%s: Unknown throttling status %u for type %d", __FUNCTION__,
627 temperature.throttling_status, temperature.type);
628 return;
629 }
630 }
631
ConstructDefaultRequestSettings(RequestTemplate type,std::unique_ptr<HalCameraMetadata> * default_settings)632 status_t CameraDeviceSession::ConstructDefaultRequestSettings(
633 RequestTemplate type, std::unique_ptr<HalCameraMetadata>* default_settings) {
634 ATRACE_CALL();
635 status_t res = device_session_hwl_->ConstructDefaultRequestSettings(
636 type, default_settings);
637 if (res != OK) {
638 ALOGE("%s: Construct default settings for type %d failed: %s(%d)",
639 __FUNCTION__, type, strerror(-res), res);
640 return res;
641 }
642
643 return hal_vendor_tag_utils::ModifyDefaultRequestSettings(
644 type, default_settings->get());
645 }
646
ConfigureStreams(const StreamConfiguration & stream_config,std::vector<HalStream> * hal_config)647 status_t CameraDeviceSession::ConfigureStreams(
648 const StreamConfiguration& stream_config,
649 std::vector<HalStream>* hal_config) {
650 ATRACE_CALL();
651 bool set_realtime_thread = false;
652 int32_t schedule_policy;
653 struct sched_param schedule_param = {0};
654 if (utils::SupportRealtimeThread()) {
655 bool get_thread_schedule = false;
656 if (pthread_getschedparam(pthread_self(), &schedule_policy,
657 &schedule_param) == 0) {
658 get_thread_schedule = true;
659 } else {
660 ALOGE("%s: pthread_getschedparam fail", __FUNCTION__);
661 }
662
663 if (get_thread_schedule) {
664 status_t res = utils::SetRealtimeThread(pthread_self());
665 if (res != OK) {
666 ALOGE("%s: SetRealtimeThread fail", __FUNCTION__);
667 } else {
668 set_realtime_thread = true;
669 }
670 }
671 }
672
673 std::lock_guard<std::mutex> lock(session_lock_);
674
675 std::lock_guard lock_capture_session(capture_session_lock_);
676 if (capture_session_ != nullptr) {
677 ATRACE_NAME("CameraDeviceSession::DestroyOldSession");
678 capture_session_ = nullptr;
679 }
680
681 pending_requests_tracker_ = nullptr;
682
683 if (!configured_streams_map_.empty()) {
684 CleanupStaleStreamsLocked(stream_config.streams);
685 }
686
687 hal_utils::DumpStreamConfiguration(stream_config, "App stream configuration");
688
689 operation_mode_ = stream_config.operation_mode;
690 multi_res_reprocess_ = stream_config.multi_resolution_input_image;
691
692 capture_session_ = CreateCaptureSession(
693 stream_config, kWrapperCaptureSessionEntries,
694 external_capture_session_entries_, kCaptureSessionEntries,
695 hwl_session_callback_, camera_allocator_hwl_, device_session_hwl_.get(),
696 hal_config, camera_device_session_callback_.process_capture_result,
697 camera_device_session_callback_.notify);
698
699 if (capture_session_ == nullptr) {
700 ALOGE("%s: Cannot find a capture session compatible with stream config",
701 __FUNCTION__);
702 if (set_realtime_thread) {
703 utils::UpdateThreadSched(pthread_self(), schedule_policy, &schedule_param);
704 }
705 return BAD_VALUE;
706 }
707
708 if (buffer_management_supported_) {
709 stream_buffer_cache_manager_ = StreamBufferCacheManager::Create();
710 if (stream_buffer_cache_manager_ == nullptr) {
711 ALOGE("%s: Failed to create stream buffer cache manager.", __FUNCTION__);
712 if (set_realtime_thread) {
713 utils::UpdateThreadSched(pthread_self(), schedule_policy,
714 &schedule_param);
715 }
716 return UNKNOWN_ERROR;
717 }
718
719 status_t res =
720 RegisterStreamsIntoCacheManagerLocked(stream_config, *hal_config);
721 if (res != OK) {
722 ALOGE("%s: Failed to register streams into stream buffer cache manager.",
723 __FUNCTION__);
724 if (set_realtime_thread) {
725 utils::UpdateThreadSched(pthread_self(), schedule_policy,
726 &schedule_param);
727 }
728 return res;
729 }
730 }
731
732 // (b/129561652): Framework assumes HalStream is sorted.
733 std::sort(hal_config->begin(), hal_config->end(),
734 [](const HalStream& a, const HalStream& b) { return a.id < b.id; });
735
736 // Backup the streams received from frameworks into configured_streams_map_,
737 // and we can find out specific streams through stream id in output_buffers.
738 for (auto& stream : stream_config.streams) {
739 configured_streams_map_[stream.id] = stream;
740 }
741
742 // Derives all stream ids within a group to a representative stream id
743 DeriveGroupedStreamIdMap();
744
745 // If buffer management is support, create a pending request tracker for
746 // capture request throttling.
747 if (buffer_management_supported_) {
748 pending_requests_tracker_ =
749 PendingRequestsTracker::Create(*hal_config, grouped_stream_id_map_);
750 if (pending_requests_tracker_ == nullptr) {
751 ALOGE("%s: Cannot create a pending request tracker.", __FUNCTION__);
752 if (set_realtime_thread) {
753 utils::UpdateThreadSched(pthread_self(), schedule_policy,
754 &schedule_param);
755 }
756 return UNKNOWN_ERROR;
757 }
758
759 {
760 std::lock_guard<std::mutex> lock(request_record_lock_);
761 pending_request_streams_.clear();
762 error_notified_requests_.clear();
763 dummy_buffer_observed_.clear();
764 pending_results_.clear();
765 ignore_shutters_.clear();
766 }
767 }
768
769 has_valid_settings_ = false;
770 thermal_throttling_ = false;
771 thermal_throttling_notified_ = false;
772 last_request_settings_ = nullptr;
773 last_timestamp_ns_for_trace_ = 0;
774
775 if (set_realtime_thread) {
776 utils::UpdateThreadSched(pthread_self(), schedule_policy, &schedule_param);
777 }
778
779 return OK;
780 }
781
UpdateBufferHandlesLocked(std::vector<StreamBuffer> * buffers)782 status_t CameraDeviceSession::UpdateBufferHandlesLocked(
783 std::vector<StreamBuffer>* buffers) {
784 ATRACE_CALL();
785 if (buffers == nullptr) {
786 ALOGE("%s: buffers cannot be nullptr", __FUNCTION__);
787 return BAD_VALUE;
788 }
789
790 for (auto& buffer : *buffers) {
791 // Get the buffer handle from buffer handle map.
792 BufferCache buffer_cache = {buffer.stream_id, buffer.buffer_id};
793 auto buffer_handle_it = imported_buffer_handle_map_.find(buffer_cache);
794 if (buffer_handle_it == imported_buffer_handle_map_.end()) {
795 ALOGE("%s: Cannot find buffer handle for stream %u, buffer %" PRIu64,
796 __FUNCTION__, buffer.stream_id, buffer.buffer_id);
797 return NAME_NOT_FOUND;
798 }
799
800 buffer.buffer = buffer_handle_it->second;
801 }
802
803 return OK;
804 }
805
CreateCaptureRequestLocked(const CaptureRequest & request,CaptureRequest * updated_request)806 status_t CameraDeviceSession::CreateCaptureRequestLocked(
807 const CaptureRequest& request, CaptureRequest* updated_request) {
808 ATRACE_CALL();
809 if (updated_request == nullptr) {
810 return BAD_VALUE;
811 }
812
813 if (request.settings != nullptr) {
814 last_request_settings_ = HalCameraMetadata::Clone(request.settings.get());
815 }
816
817 updated_request->frame_number = request.frame_number;
818 updated_request->settings = HalCameraMetadata::Clone(request.settings.get());
819 updated_request->input_buffers = request.input_buffers;
820 updated_request->input_buffer_metadata.clear();
821 updated_request->output_buffers = request.output_buffers;
822 std::vector<uint32_t> physical_camera_ids =
823 device_session_hwl_->GetPhysicalCameraIds();
824 for (auto& [camid, physical_setting] : request.physical_camera_settings) {
825 if (std::find(physical_camera_ids.begin(), physical_camera_ids.end(),
826 camid) == physical_camera_ids.end()) {
827 ALOGE("%s: Pyhsical camera id %d in request had not registered",
828 __FUNCTION__, camid);
829 return BAD_VALUE;
830 }
831 updated_request->physical_camera_settings[camid] =
832 HalCameraMetadata::Clone(physical_setting.get());
833 }
834 updated_request->input_width = request.input_width;
835 updated_request->input_height = request.input_height;
836
837 // Returns -1 if kThermalThrottling is not defined, skip following process.
838 if (get_camera_metadata_tag_type(VendorTagIds::kThermalThrottling) != -1) {
839 // Create settings to set thermal throttling key if needed.
840 if (thermal_throttling_ && !thermal_throttling_notified_ &&
841 updated_request->settings == nullptr) {
842 updated_request->settings =
843 HalCameraMetadata::Clone(last_request_settings_.get());
844 thermal_throttling_notified_ = true;
845 }
846
847 if (updated_request->settings != nullptr) {
848 status_t res = updated_request->settings->Set(
849 VendorTagIds::kThermalThrottling, &thermal_throttling_,
850 /*data_count=*/1);
851 if (res != OK) {
852 ALOGE("%s: Setting thermal throttling key failed: %s(%d)", __FUNCTION__,
853 strerror(-res), res);
854 return res;
855 }
856 }
857 }
858
859 AppendOutputIntentToSettingsLocked(request, updated_request);
860
861 {
862 std::lock_guard<std::mutex> lock(imported_buffer_handle_map_lock_);
863
864 status_t res = UpdateBufferHandlesLocked(&updated_request->input_buffers);
865 if (res != OK) {
866 ALOGE("%s: Updating input buffer handles failed: %s(%d)", __FUNCTION__,
867 strerror(-res), res);
868 return res;
869 }
870 // If buffer management API is supported, buffers will be requested via
871 // RequestStreamBuffersFunc.
872 if (!buffer_management_supported_) {
873 res = UpdateBufferHandlesLocked(&updated_request->output_buffers);
874 if (res != OK) {
875 ALOGE("%s: Updating output buffer handles failed: %s(%d)", __FUNCTION__,
876 strerror(-res), res);
877 return res;
878 }
879 }
880 }
881
882 zoom_ratio_mapper_.UpdateCaptureRequest(updated_request);
883
884 return OK;
885 }
886
887 template <class T, class U>
ImportBufferHandleLocked(const sp<T> buffer_mapper,const StreamBuffer & buffer)888 status_t CameraDeviceSession::ImportBufferHandleLocked(
889 const sp<T> buffer_mapper, const StreamBuffer& buffer) {
890 ATRACE_CALL();
891 U mapper_error;
892 buffer_handle_t imported_buffer_handle;
893
894 auto hidl_res = buffer_mapper->importBuffer(
895 android::hardware::hidl_handle(buffer.buffer),
896 [&](const auto& error, const auto& buffer_handle) {
897 mapper_error = error;
898 imported_buffer_handle = static_cast<buffer_handle_t>(buffer_handle);
899 });
900 if (!hidl_res.isOk() || mapper_error != U::NONE) {
901 ALOGE("%s: Importing buffer failed: %s, mapper error %u", __FUNCTION__,
902 hidl_res.description().c_str(), mapper_error);
903 return UNKNOWN_ERROR;
904 }
905
906 BufferCache buffer_cache = {buffer.stream_id, buffer.buffer_id};
907 return AddImportedBufferHandlesLocked(buffer_cache, imported_buffer_handle);
908 }
909
ImportBufferHandles(const std::vector<StreamBuffer> & buffers)910 status_t CameraDeviceSession::ImportBufferHandles(
911 const std::vector<StreamBuffer>& buffers) {
912 ATRACE_CALL();
913 std::lock_guard<std::mutex> lock(imported_buffer_handle_map_lock_);
914
915 // Import buffers that are new to HAL.
916 for (auto& buffer : buffers) {
917 if (!IsBufferImportedLocked(buffer.stream_id, buffer.buffer_id)) {
918 status_t res = OK;
919 if (buffer_mapper_v4_ != nullptr) {
920 res = ImportBufferHandleLocked<
921 android::hardware::graphics::mapper::V4_0::IMapper,
922 android::hardware::graphics::mapper::V4_0::Error>(buffer_mapper_v4_,
923 buffer);
924 } else if (buffer_mapper_v3_ != nullptr) {
925 res = ImportBufferHandleLocked<
926 android::hardware::graphics::mapper::V3_0::IMapper,
927 android::hardware::graphics::mapper::V3_0::Error>(buffer_mapper_v3_,
928 buffer);
929 } else {
930 res = ImportBufferHandleLocked<
931 android::hardware::graphics::mapper::V2_0::IMapper,
932 android::hardware::graphics::mapper::V2_0::Error>(buffer_mapper_v2_,
933 buffer);
934 }
935
936 if (res != OK) {
937 ALOGE("%s: Importing buffer %" PRIu64 " from stream %d failed: %s(%d)",
938 __FUNCTION__, buffer.buffer_id, buffer.stream_id, strerror(-res),
939 res);
940 return res;
941 }
942 }
943 }
944
945 return OK;
946 }
947
ImportRequestBufferHandles(const CaptureRequest & request)948 status_t CameraDeviceSession::ImportRequestBufferHandles(
949 const CaptureRequest& request) {
950 ATRACE_CALL();
951
952 status_t res = ImportBufferHandles(request.input_buffers);
953 if (res != OK) {
954 ALOGE("%s: Importing input buffer handles failed: %s(%d)", __FUNCTION__,
955 strerror(-res), res);
956 return res;
957 }
958
959 if (buffer_management_supported_) {
960 ALOGV(
961 "%s: Buffer management is enabled. Skip importing buffers in "
962 "requests.",
963 __FUNCTION__);
964 return OK;
965 }
966
967 res = ImportBufferHandles(request.output_buffers);
968 if (res != OK) {
969 ALOGE("%s: Importing output buffer handles failed: %s(%d)", __FUNCTION__,
970 strerror(-res), res);
971 return res;
972 }
973
974 return OK;
975 }
976
NotifyErrorMessage(uint32_t frame_number,int32_t stream_id,ErrorCode error_code)977 void CameraDeviceSession::NotifyErrorMessage(uint32_t frame_number,
978 int32_t stream_id,
979 ErrorCode error_code) {
980 ALOGI("%s: [sbc] Request %d with stream (%d), return error code (%d)",
981 __FUNCTION__, frame_number, stream_id, error_code);
982
983 if ((error_code == ErrorCode::kErrorResult ||
984 error_code == ErrorCode::kErrorRequest) &&
985 stream_id != kInvalidStreamId) {
986 ALOGW("%s: [sbc] Request %d reset setream id again", __FUNCTION__,
987 frame_number);
988 stream_id = kInvalidStreamId;
989 }
990 NotifyMessage message = {.type = MessageType::kError,
991 .message.error = {.frame_number = frame_number,
992 .error_stream_id = stream_id,
993 .error_code = error_code}};
994
995 std::shared_lock lock(session_callback_lock_);
996 session_callback_.notify(message);
997 }
998
TryHandleDummyResult(CaptureResult * result,bool * result_handled)999 status_t CameraDeviceSession::TryHandleDummyResult(CaptureResult* result,
1000 bool* result_handled) {
1001 if (result == nullptr || result_handled == nullptr) {
1002 ALOGE("%s: result or result_handled is nullptr.", __FUNCTION__);
1003 return BAD_VALUE;
1004 }
1005
1006 uint32_t frame_number = result->frame_number;
1007 *result_handled = false;
1008 bool need_to_handle_result = false;
1009 bool need_to_notify_error_result = false;
1010 {
1011 std::lock_guard<std::mutex> lock(request_record_lock_);
1012 if (error_notified_requests_.find(frame_number) ==
1013 error_notified_requests_.end()) {
1014 for (auto& stream_buffer : result->output_buffers) {
1015 if (dummy_buffer_observed_.find(stream_buffer.buffer) !=
1016 dummy_buffer_observed_.end()) {
1017 error_notified_requests_.insert(frame_number);
1018 if (pending_results_.find(frame_number) != pending_results_.end()) {
1019 need_to_notify_error_result = true;
1020 pending_results_.erase(frame_number);
1021 if (ignore_shutters_.find(frame_number) == ignore_shutters_.end()) {
1022 ignore_shutters_.insert(frame_number);
1023 }
1024 }
1025 need_to_handle_result = true;
1026 break;
1027 }
1028 }
1029 } else {
1030 need_to_handle_result = true;
1031 }
1032 }
1033
1034 if (need_to_notify_error_result) {
1035 NotifyErrorMessage(frame_number, kInvalidStreamId, ErrorCode::kErrorResult);
1036 }
1037
1038 if (need_to_handle_result) {
1039 for (auto& stream_buffer : result->output_buffers) {
1040 bool is_dummy_buffer = false;
1041 {
1042 std::lock_guard<std::mutex> lock(request_record_lock_);
1043 is_dummy_buffer = (dummy_buffer_observed_.find(stream_buffer.buffer) !=
1044 dummy_buffer_observed_.end());
1045 }
1046
1047 uint64_t buffer_id = (is_dummy_buffer ? /*Use invalid for dummy*/ 0
1048 : stream_buffer.buffer_id);
1049 // To avoid publishing duplicated error buffer message, only publish
1050 // it here when getting normal buffer status from HWL
1051 if (stream_buffer.status == BufferStatus::kOk) {
1052 NotifyErrorMessage(frame_number, stream_buffer.stream_id,
1053 ErrorCode::kErrorBuffer);
1054 }
1055 NotifyBufferError(frame_number, stream_buffer.stream_id, buffer_id);
1056 }
1057
1058 std::vector<StreamBuffer> buffers;
1059 buffers.insert(buffers.end(), result->output_buffers.begin(),
1060 result->output_buffers.end());
1061
1062 if (!buffers.empty()) {
1063 if (pending_requests_tracker_->TrackReturnedResultBuffers(buffers) != OK) {
1064 ALOGE("%s: Tracking requested quota buffers failed", __FUNCTION__);
1065 }
1066 std::vector<StreamBuffer> acquired_buffers;
1067 {
1068 std::lock_guard<std::mutex> lock(request_record_lock_);
1069 for (auto& buffer : buffers) {
1070 if (dummy_buffer_observed_.find(buffer.buffer) ==
1071 dummy_buffer_observed_.end()) {
1072 acquired_buffers.push_back(buffer);
1073 }
1074 }
1075 }
1076
1077 if (pending_requests_tracker_->TrackReturnedAcquiredBuffers(
1078 acquired_buffers) != OK) {
1079 ALOGE("%s: Tracking requested acquired buffers failed", __FUNCTION__);
1080 }
1081 }
1082 }
1083
1084 *result_handled = need_to_handle_result;
1085 return OK;
1086 }
1087
NotifyBufferError(const CaptureRequest & request)1088 void CameraDeviceSession::NotifyBufferError(const CaptureRequest& request) {
1089 ALOGI("%s: [sbc] Return Buffer Error Status for frame %d", __FUNCTION__,
1090 request.frame_number);
1091
1092 auto result = std::make_unique<CaptureResult>(CaptureResult({}));
1093 result->frame_number = request.frame_number;
1094 for (auto& stream_buffer : request.output_buffers) {
1095 StreamBuffer buffer;
1096 buffer.stream_id = stream_buffer.stream_id;
1097 buffer.status = BufferStatus::kError;
1098 result->output_buffers.push_back(buffer);
1099 }
1100 for (auto& stream_buffer : request.input_buffers) {
1101 result->input_buffers.push_back(stream_buffer);
1102 }
1103 result->partial_result = 1;
1104
1105 std::shared_lock lock(session_callback_lock_);
1106 session_callback_.process_capture_result(std::move(result));
1107 }
1108
NotifyBufferError(uint32_t frame_number,int32_t stream_id,uint64_t buffer_id)1109 void CameraDeviceSession::NotifyBufferError(uint32_t frame_number,
1110 int32_t stream_id,
1111 uint64_t buffer_id) {
1112 ALOGI("%s: [sbc] Return Buffer Error Status for frame %d stream %d",
1113 __FUNCTION__, frame_number, stream_id);
1114
1115 auto result = std::make_unique<CaptureResult>(CaptureResult({}));
1116 result->frame_number = frame_number;
1117 StreamBuffer stream_buffer;
1118 stream_buffer.buffer_id = buffer_id;
1119 stream_buffer.stream_id = stream_id;
1120 stream_buffer.status = BufferStatus::kError;
1121 result->output_buffers.push_back(stream_buffer);
1122 result->partial_result = 1;
1123
1124 std::shared_lock lock(session_callback_lock_);
1125 session_callback_.process_capture_result(std::move(result));
1126 }
1127
HandleInactiveStreams(const CaptureRequest & request,bool * all_active)1128 status_t CameraDeviceSession::HandleInactiveStreams(const CaptureRequest& request,
1129 bool* all_active) {
1130 if (all_active == nullptr) {
1131 ALOGE("%s: all_active is nullptr", __FUNCTION__);
1132 return BAD_VALUE;
1133 }
1134
1135 *all_active = true;
1136 for (auto& stream_buffer : request.output_buffers) {
1137 bool is_active = true;
1138 status_t res = stream_buffer_cache_manager_->IsStreamActive(
1139 stream_buffer.stream_id, &is_active);
1140 if (res != OK) {
1141 ALOGE("%s: Failed to check if stream is active.", __FUNCTION__);
1142 return UNKNOWN_ERROR;
1143 }
1144 if (!is_active) {
1145 ALOGI("%s: Stream %d is not active when submitting frame %d request.",
1146 __FUNCTION__, stream_buffer.stream_id, request.frame_number);
1147 *all_active = false;
1148 break;
1149 }
1150 }
1151 if (*all_active == false) {
1152 NotifyErrorMessage(request.frame_number, kInvalidStreamId,
1153 ErrorCode::kErrorRequest);
1154 NotifyBufferError(request);
1155 }
1156
1157 return OK;
1158 }
1159
CheckRequestForStreamBufferCacheManager(const CaptureRequest & request,bool * need_to_process)1160 void CameraDeviceSession::CheckRequestForStreamBufferCacheManager(
1161 const CaptureRequest& request, bool* need_to_process) {
1162 ATRACE_CALL();
1163
1164 // If any stream in the stream buffer cache manager has been labeld as inactive,
1165 // return ERROR_REQUEST immediately. No need to send the request to HWL.
1166 status_t res = HandleInactiveStreams(request, need_to_process);
1167 if (res != OK) {
1168 ALOGE("%s: Failed to check if streams are active.", __FUNCTION__);
1169 return;
1170 }
1171
1172 // Note: This function should only be called if buffer_management_supported_
1173 // is true.
1174 if (pending_request_streams_.empty()) {
1175 pending_requests_tracker_->OnBufferCacheFlushed();
1176 }
1177
1178 // Add streams into pending_request_streams_
1179 uint32_t frame_number = request.frame_number;
1180 if (*need_to_process) {
1181 std::lock_guard<std::mutex> lock(request_record_lock_);
1182 pending_results_.insert(frame_number);
1183 for (auto& stream_buffer : request.output_buffers) {
1184 if (grouped_stream_id_map_.count(stream_buffer.stream_id) == 1) {
1185 pending_request_streams_[frame_number].insert(
1186 grouped_stream_id_map_.at(stream_buffer.stream_id));
1187 } else {
1188 pending_request_streams_[frame_number].insert(stream_buffer.stream_id);
1189 }
1190 }
1191 }
1192 }
1193
ValidateRequestLocked(const CaptureRequest & request)1194 status_t CameraDeviceSession::ValidateRequestLocked(
1195 const CaptureRequest& request) {
1196 // First request must have valid settings.
1197 if (!has_valid_settings_) {
1198 if (request.settings == nullptr ||
1199 request.settings->GetCameraMetadataSize() == 0) {
1200 ALOGE("%s: First request must have valid settings", __FUNCTION__);
1201 return BAD_VALUE;
1202 }
1203
1204 has_valid_settings_ = true;
1205 }
1206
1207 if (request.output_buffers.empty()) {
1208 ALOGE("%s: there is no output buffer.", __FUNCTION__);
1209 return BAD_VALUE;
1210 }
1211
1212 // Check all output streams are configured.
1213 for (auto& buffer : request.input_buffers) {
1214 if (configured_streams_map_.find(buffer.stream_id) ==
1215 configured_streams_map_.end()) {
1216 ALOGE("%s: input stream %d is not configured.", __FUNCTION__,
1217 buffer.stream_id);
1218 return BAD_VALUE;
1219 }
1220 const Stream& input_stream = configured_streams_map_.at(buffer.stream_id);
1221 if (!multi_res_reprocess_ && (request.input_width != input_stream.width ||
1222 request.input_height != input_stream.height)) {
1223 ALOGE("%s: Invalid input size [%d, %d], expected [%d, %d]", __FUNCTION__,
1224 request.input_width, request.input_height, input_stream.width,
1225 input_stream.height);
1226 return BAD_VALUE;
1227 }
1228 }
1229 if (request.input_buffers.size() > 0) {
1230 if (multi_res_reprocess_ &&
1231 (request.input_width == 0 || request.input_height == 0)) {
1232 ALOGE(
1233 "%s: Session is a multi-res input session, but has invalid input "
1234 "size [%d, %d]",
1235 __FUNCTION__, request.input_width, request.input_height);
1236 return BAD_VALUE;
1237 }
1238 }
1239
1240 for (auto& buffer : request.output_buffers) {
1241 if (configured_streams_map_.find(buffer.stream_id) ==
1242 configured_streams_map_.end()) {
1243 ALOGE("%s: output stream %d is not configured.", __FUNCTION__,
1244 buffer.stream_id);
1245 return BAD_VALUE;
1246 }
1247 }
1248
1249 return OK;
1250 }
1251
ProcessCaptureRequest(const std::vector<CaptureRequest> & requests,uint32_t * num_processed_requests)1252 status_t CameraDeviceSession::ProcessCaptureRequest(
1253 const std::vector<CaptureRequest>& requests,
1254 uint32_t* num_processed_requests) {
1255 ATRACE_CALL();
1256 std::lock_guard<std::mutex> lock(session_lock_);
1257 if (num_processed_requests == nullptr) {
1258 return BAD_VALUE;
1259 }
1260
1261 if (requests.empty()) {
1262 ALOGE("%s: requests is empty.", __FUNCTION__);
1263 return BAD_VALUE;
1264 }
1265
1266 status_t res;
1267 *num_processed_requests = 0;
1268
1269 for (auto& request : requests) {
1270 if (ATRACE_ENABLED()) {
1271 ATRACE_INT("request_frame_number", request.frame_number);
1272 }
1273
1274 res = ValidateRequestLocked(request);
1275 if (res != OK) {
1276 ALOGE("%s: Request %d is not valid.", __FUNCTION__, request.frame_number);
1277 return res;
1278 }
1279
1280 res = ImportRequestBufferHandles(request);
1281 if (res != OK) {
1282 ALOGE("%s: Importing request buffer handles failed: %s(%d)", __FUNCTION__,
1283 strerror(-res), res);
1284 return res;
1285 }
1286
1287 CaptureRequest updated_request;
1288 res = CreateCaptureRequestLocked(request, &updated_request);
1289 if (res != OK) {
1290 ALOGE("%s: Updating buffer handles failed for frame %u", __FUNCTION__,
1291 request.frame_number);
1292 return res;
1293 }
1294
1295 bool need_to_process = true;
1296 // If a processCaptureRequest() call is made during flushing,
1297 // notify CAMERA3_MSG_ERROR_REQUEST directly.
1298 if (is_flushing_) {
1299 NotifyErrorMessage(request.frame_number, kInvalidStreamId,
1300 ErrorCode::kErrorRequest);
1301 NotifyBufferError(request);
1302 need_to_process = false;
1303 } else if (buffer_management_supported_) {
1304 CheckRequestForStreamBufferCacheManager(updated_request, &need_to_process);
1305 }
1306
1307 if (need_to_process) {
1308 // If buffer management is supported, framework does not throttle requests
1309 // with stream's max buffers. We need to throttle on our own.
1310 if (buffer_management_supported_) {
1311 std::vector<int32_t> first_requested_stream_ids;
1312
1313 res = pending_requests_tracker_->WaitAndTrackRequestBuffers(
1314 updated_request, &first_requested_stream_ids);
1315 if (res != OK) {
1316 ALOGE("%s: Waiting until capture ready failed: %s(%d)", __FUNCTION__,
1317 strerror(-res), res);
1318 return res;
1319 }
1320
1321 for (auto& stream_id : first_requested_stream_ids) {
1322 ALOGI("%s: [sbc] Stream %d 1st req arrived, notify SBC Manager.",
1323 __FUNCTION__, stream_id);
1324 res = stream_buffer_cache_manager_->NotifyProviderReadiness(stream_id);
1325 if (res != OK) {
1326 ALOGE("%s: Notifying provider readiness failed: %s(%d)",
1327 __FUNCTION__, strerror(-res), res);
1328 return res;
1329 }
1330 }
1331 }
1332
1333 // Check the flush status again to prevent flush being called while we are
1334 // waiting for the request buffers(request throttling).
1335 if (buffer_management_supported_ && is_flushing_) {
1336 std::vector<StreamBuffer> buffers = updated_request.output_buffers;
1337 {
1338 std::lock_guard<std::mutex> lock(request_record_lock_);
1339 pending_request_streams_.erase(updated_request.frame_number);
1340 pending_results_.erase(updated_request.frame_number);
1341 }
1342 NotifyErrorMessage(updated_request.frame_number, kInvalidStreamId,
1343 ErrorCode::kErrorRequest);
1344 NotifyBufferError(updated_request);
1345 if (pending_requests_tracker_->TrackReturnedResultBuffers(buffers) !=
1346 OK) {
1347 ALOGE("%s: Tracking requested quota buffers failed", __FUNCTION__);
1348 }
1349 } else {
1350 std::shared_lock lock(capture_session_lock_);
1351 if (capture_session_ == nullptr) {
1352 ALOGE("%s: Capture session wasn't created.", __FUNCTION__);
1353 return NO_INIT;
1354 }
1355
1356 res = capture_session_->ProcessRequest(updated_request);
1357 if (res != OK) {
1358 ALOGE("%s: Submitting request to HWL session failed: %s (%d)",
1359 __FUNCTION__, strerror(-res), res);
1360 return res;
1361 }
1362 }
1363 }
1364
1365 (*num_processed_requests)++;
1366 }
1367
1368 return OK;
1369 }
1370
IsBufferImportedLocked(int32_t stream_id,uint32_t buffer_id)1371 bool CameraDeviceSession::IsBufferImportedLocked(int32_t stream_id,
1372 uint32_t buffer_id) {
1373 BufferCache buffer_cache = {stream_id, buffer_id};
1374 return imported_buffer_handle_map_.find(buffer_cache) !=
1375 imported_buffer_handle_map_.end();
1376 }
1377
AddImportedBufferHandlesLocked(const BufferCache & buffer_cache,buffer_handle_t buffer_handle)1378 status_t CameraDeviceSession::AddImportedBufferHandlesLocked(
1379 const BufferCache& buffer_cache, buffer_handle_t buffer_handle) {
1380 ATRACE_CALL();
1381 auto buffer_handle_it = imported_buffer_handle_map_.find(buffer_cache);
1382 if (buffer_handle_it == imported_buffer_handle_map_.end()) {
1383 // Add a new buffer cache if it doesn't exist.
1384 imported_buffer_handle_map_.emplace(buffer_cache, buffer_handle);
1385 } else if (buffer_handle_it->second != buffer_handle) {
1386 ALOGE(
1387 "%s: Cached buffer handle %p doesn't match %p for stream %u buffer "
1388 "%" PRIu64,
1389 __FUNCTION__, buffer_handle_it->second, buffer_handle,
1390 buffer_cache.stream_id, buffer_cache.buffer_id);
1391 return BAD_VALUE;
1392 }
1393
1394 return OK;
1395 }
1396
RemoveBufferCache(const std::vector<BufferCache> & buffer_caches)1397 void CameraDeviceSession::RemoveBufferCache(
1398 const std::vector<BufferCache>& buffer_caches) {
1399 ATRACE_CALL();
1400 std::lock_guard<std::mutex> lock(imported_buffer_handle_map_lock_);
1401
1402 for (auto& buffer_cache : buffer_caches) {
1403 auto buffer_handle_it = imported_buffer_handle_map_.find(buffer_cache);
1404 if (buffer_handle_it == imported_buffer_handle_map_.end()) {
1405 ALOGW("%s: Could not find buffer cache for stream %u buffer %" PRIu64,
1406 __FUNCTION__, buffer_cache.stream_id, buffer_cache.buffer_id);
1407 continue;
1408 }
1409
1410 auto free_buffer_mapper = [&buffer_handle_it](auto buffer_mapper) {
1411 auto hidl_res = buffer_mapper->freeBuffer(
1412 const_cast<native_handle_t*>(buffer_handle_it->second));
1413 if (!hidl_res.isOk()) {
1414 ALOGE("%s: Freeing imported buffer failed: %s", __FUNCTION__,
1415 hidl_res.description().c_str());
1416 }
1417 };
1418
1419 if (buffer_mapper_v4_ != nullptr) {
1420 free_buffer_mapper(buffer_mapper_v4_);
1421 } else if (buffer_mapper_v3_ != nullptr) {
1422 free_buffer_mapper(buffer_mapper_v3_);
1423 } else {
1424 free_buffer_mapper(buffer_mapper_v2_);
1425 ;
1426 }
1427
1428 imported_buffer_handle_map_.erase(buffer_handle_it);
1429 }
1430 }
1431
1432 template <class T>
FreeBufferHandlesLocked(const sp<T> buffer_mapper,int32_t stream_id)1433 void CameraDeviceSession::FreeBufferHandlesLocked(const sp<T> buffer_mapper,
1434 int32_t stream_id) {
1435 for (auto buffer_handle_it = imported_buffer_handle_map_.begin();
1436 buffer_handle_it != imported_buffer_handle_map_.end();) {
1437 if (buffer_handle_it->first.stream_id == stream_id) {
1438 auto hidl_res = buffer_mapper->freeBuffer(
1439 const_cast<native_handle_t*>(buffer_handle_it->second));
1440 if (!hidl_res.isOk()) {
1441 ALOGE("%s: Freeing imported buffer failed: %s", __FUNCTION__,
1442 hidl_res.description().c_str());
1443 }
1444 buffer_handle_it = imported_buffer_handle_map_.erase(buffer_handle_it);
1445 } else {
1446 buffer_handle_it++;
1447 }
1448 }
1449 }
1450
1451 template <class T>
FreeImportedBufferHandles(const sp<T> buffer_mapper)1452 void CameraDeviceSession::FreeImportedBufferHandles(const sp<T> buffer_mapper) {
1453 ATRACE_CALL();
1454 std::lock_guard<std::mutex> lock(imported_buffer_handle_map_lock_);
1455
1456 if (buffer_mapper == nullptr) {
1457 return;
1458 }
1459
1460 for (auto buffer_handle_it : imported_buffer_handle_map_) {
1461 auto hidl_res = buffer_mapper->freeBuffer(
1462 const_cast<native_handle_t*>(buffer_handle_it.second));
1463 if (!hidl_res.isOk()) {
1464 ALOGE("%s: Freeing imported buffer failed: %s", __FUNCTION__,
1465 hidl_res.description().c_str());
1466 }
1467 }
1468
1469 imported_buffer_handle_map_.clear();
1470 }
1471
CleanupStaleStreamsLocked(const std::vector<Stream> & new_streams)1472 void CameraDeviceSession::CleanupStaleStreamsLocked(
1473 const std::vector<Stream>& new_streams) {
1474 for (auto stream_it = configured_streams_map_.begin();
1475 stream_it != configured_streams_map_.end();) {
1476 int32_t stream_id = stream_it->first;
1477 bool found = false;
1478 for (const Stream& stream : new_streams) {
1479 if (stream.id == stream_id) {
1480 found = true;
1481 break;
1482 }
1483 }
1484 if (!found) {
1485 std::lock_guard<std::mutex> lock(imported_buffer_handle_map_lock_);
1486 stream_it = configured_streams_map_.erase(stream_it);
1487 if (buffer_mapper_v4_ != nullptr) {
1488 FreeBufferHandlesLocked<android::hardware::graphics::mapper::V4_0::IMapper>(
1489 buffer_mapper_v4_, stream_id);
1490 } else if (buffer_mapper_v3_ != nullptr) {
1491 FreeBufferHandlesLocked<android::hardware::graphics::mapper::V3_0::IMapper>(
1492 buffer_mapper_v3_, stream_id);
1493 } else {
1494 FreeBufferHandlesLocked<android::hardware::graphics::mapper::V2_0::IMapper>(
1495 buffer_mapper_v2_, stream_id);
1496 }
1497 } else {
1498 stream_it++;
1499 }
1500 }
1501 }
1502
Flush()1503 status_t CameraDeviceSession::Flush() {
1504 ATRACE_CALL();
1505 std::shared_lock lock(capture_session_lock_);
1506 if (capture_session_ == nullptr) {
1507 return OK;
1508 }
1509
1510 is_flushing_ = true;
1511 status_t res = capture_session_->Flush();
1512 is_flushing_ = false;
1513
1514 return res;
1515 }
1516
AppendOutputIntentToSettingsLocked(const CaptureRequest & request,CaptureRequest * updated_request)1517 void CameraDeviceSession::AppendOutputIntentToSettingsLocked(
1518 const CaptureRequest& request, CaptureRequest* updated_request) {
1519 if (updated_request == nullptr || updated_request->settings == nullptr) {
1520 // The frameworks may have no settings and just do nothing here.
1521 return;
1522 }
1523
1524 bool has_video = false;
1525 bool has_snapshot = false;
1526 bool has_zsl = false;
1527
1528 // From request output_buffers to find stream id and then find the stream.
1529 for (auto& buffer : request.output_buffers) {
1530 auto stream = configured_streams_map_.find(buffer.stream_id);
1531 if (stream != configured_streams_map_.end()) {
1532 if (utils::IsVideoStream(stream->second)) {
1533 has_video = true;
1534 } else if (utils::IsJPEGSnapshotStream(stream->second)) {
1535 has_snapshot = true;
1536 }
1537 }
1538 }
1539
1540 for (auto& buffer : request.input_buffers) {
1541 auto stream = configured_streams_map_.find(buffer.stream_id);
1542 if (stream != configured_streams_map_.end()) {
1543 if ((stream->second.usage & GRALLOC_USAGE_HW_CAMERA_ZSL) != 0) {
1544 has_zsl = true;
1545 break;
1546 }
1547 }
1548 }
1549
1550 uint8_t output_intent = static_cast<uint8_t>(OutputIntent::kPreview);
1551
1552 if (has_video && has_snapshot) {
1553 output_intent = static_cast<uint8_t>(OutputIntent::kVideoSnapshot);
1554 } else if (has_snapshot) {
1555 output_intent = static_cast<uint8_t>(OutputIntent::kSnapshot);
1556 } else if (has_video) {
1557 output_intent = static_cast<uint8_t>(OutputIntent::kVideo);
1558 } else if (has_zsl) {
1559 output_intent = static_cast<uint8_t>(OutputIntent::kZsl);
1560 }
1561
1562 // Used to indicate the possible start and end of video recording in traces
1563 if (has_video && !prev_output_intent_has_video_) {
1564 ATRACE_NAME("Start Video Streaming");
1565 } else if (prev_output_intent_has_video_ && !has_video) {
1566 ATRACE_NAME("Stop Video Streaming");
1567 }
1568
1569 prev_output_intent_has_video_ = has_video;
1570
1571 status_t res = updated_request->settings->Set(VendorTagIds::kOutputIntent,
1572 &output_intent,
1573 /*data_count=*/1);
1574 if (res != OK) {
1575 ALOGE("%s: Failed to set vendor tag OutputIntent: %s(%d).", __FUNCTION__,
1576 strerror(-res), res);
1577 }
1578 }
1579
IsReconfigurationRequired(const HalCameraMetadata * old_session,const HalCameraMetadata * new_session,bool * reconfiguration_required)1580 status_t CameraDeviceSession::IsReconfigurationRequired(
1581 const HalCameraMetadata* old_session, const HalCameraMetadata* new_session,
1582 bool* reconfiguration_required) {
1583 if (old_session == nullptr || new_session == nullptr ||
1584 reconfiguration_required == nullptr) {
1585 ALOGE(
1586 "%s: old_session or new_session or reconfiguration_required is "
1587 "nullptr.",
1588 __FUNCTION__);
1589 return BAD_VALUE;
1590 }
1591
1592 return device_session_hwl_->IsReconfigurationRequired(
1593 old_session, new_session, reconfiguration_required);
1594 }
1595
UpdateRequestedBufferHandles(std::vector<StreamBuffer> * buffers)1596 status_t CameraDeviceSession::UpdateRequestedBufferHandles(
1597 std::vector<StreamBuffer>* buffers) {
1598 if (buffers == nullptr) {
1599 ALOGE("%s: buffer is nullptr.", __FUNCTION__);
1600 return BAD_VALUE;
1601 }
1602
1603 std::lock_guard<std::mutex> lock(imported_buffer_handle_map_lock_);
1604
1605 status_t res;
1606 for (auto& buffer : *buffers) {
1607 // If buffer handle is not nullptr, we need to add the new buffer handle
1608 // to buffer cache.
1609 if (buffer.buffer != nullptr) {
1610 BufferCache buffer_cache = {buffer.stream_id, buffer.buffer_id};
1611 res = AddImportedBufferHandlesLocked(buffer_cache, buffer.buffer);
1612 if (res != OK) {
1613 ALOGE("%s: Adding imported buffer handle failed: %s(%d)", __FUNCTION__,
1614 strerror(-res), res);
1615 return res;
1616 }
1617 }
1618 }
1619
1620 res = UpdateBufferHandlesLocked(buffers);
1621 if (res != OK) {
1622 ALOGE("%s: Updating output buffer handles failed: %s(%d)", __FUNCTION__,
1623 strerror(-res), res);
1624 return res;
1625 }
1626
1627 return OK;
1628 }
1629
RegisterStreamsIntoCacheManagerLocked(const StreamConfiguration & stream_config,const std::vector<HalStream> & hal_stream)1630 status_t CameraDeviceSession::RegisterStreamsIntoCacheManagerLocked(
1631 const StreamConfiguration& stream_config,
1632 const std::vector<HalStream>& hal_stream) {
1633 ATRACE_CALL();
1634
1635 for (auto& stream : stream_config.streams) {
1636 uint64_t producer_usage = 0;
1637 uint64_t consumer_usage = 0;
1638 int32_t stream_id = -1;
1639 for (auto& hal_stream : hal_stream) {
1640 if (hal_stream.id == stream.id) {
1641 producer_usage = hal_stream.producer_usage;
1642 consumer_usage = hal_stream.consumer_usage;
1643 stream_id = hal_stream.id;
1644 }
1645 }
1646 if (stream_id == -1) {
1647 ALOGE("%s: Could not fine framework stream in hal configured stream list",
1648 __FUNCTION__);
1649 return UNKNOWN_ERROR;
1650 }
1651 // Input stream buffers are always allocated by the camera service, not by
1652 // request_stream_buffers() callback from the HAL.
1653 if (stream.stream_type != StreamType::kOutput) {
1654 continue;
1655 }
1656
1657 StreamBufferRequestFunc session_request_func = StreamBufferRequestFunc(
1658 [this, stream_id](uint32_t num_buffer,
1659 std::vector<StreamBuffer>* buffers,
1660 StreamBufferRequestError* status) -> status_t {
1661 ATRACE_NAME("StreamBufferRequestFunc");
1662 if (buffers == nullptr) {
1663 ALOGE("%s: buffers is nullptr.", __FUNCTION__);
1664 return BAD_VALUE;
1665 }
1666
1667 if (num_buffer == 0) {
1668 ALOGE("%s: num_buffer is 0", __FUNCTION__);
1669 return BAD_VALUE;
1670 }
1671
1672 if (status == nullptr) {
1673 ALOGE("%s: status is nullptr.", __FUNCTION__);
1674 return BAD_VALUE;
1675 }
1676
1677 return RequestStreamBuffers(stream_id, num_buffer, buffers, status);
1678 });
1679
1680 StreamBufferReturnFunc session_return_func = StreamBufferReturnFunc(
1681 [this](const std::vector<StreamBuffer>& buffers) -> status_t {
1682 ReturnStreamBuffers(buffers);
1683
1684 for (auto& stream_buffer : buffers) {
1685 ALOGI("%s: [sbc] Flushed buf[%p] bid[%" PRIu64 "] strm[%d] frm[xx]",
1686 __FUNCTION__, stream_buffer.buffer, stream_buffer.buffer_id,
1687 stream_buffer.stream_id);
1688 }
1689
1690 return OK;
1691 });
1692
1693 StreamBufferCacheRegInfo reg_info = {.request_func = session_request_func,
1694 .return_func = session_return_func,
1695 .stream_id = stream_id,
1696 .width = stream.width,
1697 .height = stream.height,
1698 .format = stream.format,
1699 .producer_flags = producer_usage,
1700 .consumer_flags = consumer_usage,
1701 .num_buffers_to_cache = 1};
1702
1703 status_t res = stream_buffer_cache_manager_->RegisterStream(reg_info);
1704 if (res != OK) {
1705 ALOGE("%s: Failed to register stream into stream buffer cache manager.",
1706 __FUNCTION__);
1707 return UNKNOWN_ERROR;
1708 }
1709 ALOGI("%s: [sbc] Registered stream %d into SBC manager.", __FUNCTION__,
1710 stream.id);
1711 }
1712
1713 return OK;
1714 }
1715
RequestBuffersFromStreamBufferCacheManager(int32_t stream_id,uint32_t num_buffers,std::vector<StreamBuffer> * buffers,uint32_t frame_number)1716 status_t CameraDeviceSession::RequestBuffersFromStreamBufferCacheManager(
1717 int32_t stream_id, uint32_t num_buffers, std::vector<StreamBuffer>* buffers,
1718 uint32_t frame_number) {
1719 if (num_buffers != 1) {
1720 ALOGE(
1721 "%s: Only one buffer per request can be handled now. num_buffers = %d",
1722 __FUNCTION__, num_buffers);
1723 // TODO(b/127988765): handle multiple buffers from multiple streams if
1724 // HWL needs this feature.
1725 return BAD_VALUE;
1726 }
1727
1728 StreamBufferRequestResult buffer_request_result;
1729
1730 status_t res = this->stream_buffer_cache_manager_->GetStreamBuffer(
1731 stream_id, &buffer_request_result);
1732 if (res != OK) {
1733 ALOGE("%s: Failed to get stream buffer from SBC manager.", __FUNCTION__);
1734 return UNKNOWN_ERROR;
1735 }
1736
1737 // This function fulfills requests from lower HAL level. It is hard for some
1738 // implementation of lower HAL level to handle the case of a request failure.
1739 // In case a framework buffer can not be delivered to the lower level, a dummy
1740 // buffer will be returned by the stream buffer cache manager.
1741 // The client at lower level can use that dummy buffer as a normal buffer for
1742 // writing and so forth. But that buffer will not be returned to the
1743 // framework. This avoids the troublesome for lower level to handle such
1744 // situation. An ERROR_REQUEST needs to be returned to the framework according
1745 // to ::android::hardware::camera::device::V3_5::StreamBufferRequestError.
1746 if (buffer_request_result.is_dummy_buffer) {
1747 ALOGI("%s: [sbc] Dummy buffer returned for stream: %d, frame: %d",
1748 __FUNCTION__, stream_id, frame_number);
1749 {
1750 std::lock_guard<std::mutex> lock(request_record_lock_);
1751 dummy_buffer_observed_.insert(buffer_request_result.buffer.buffer);
1752 }
1753 }
1754
1755 ALOGV("%s: [sbc] => HWL Acquired buf[%p] buf_id[%" PRIu64
1756 "] strm[%d] frm[%u] dummy[%d]",
1757 __FUNCTION__, buffer_request_result.buffer.buffer,
1758 buffer_request_result.buffer.buffer_id, stream_id, frame_number,
1759 buffer_request_result.is_dummy_buffer);
1760
1761 buffers->push_back(buffer_request_result.buffer);
1762 return OK;
1763 }
1764
RequestStreamBuffers(int32_t stream_id,uint32_t num_buffers,std::vector<StreamBuffer> * buffers,StreamBufferRequestError * request_status)1765 status_t CameraDeviceSession::RequestStreamBuffers(
1766 int32_t stream_id, uint32_t num_buffers, std::vector<StreamBuffer>* buffers,
1767 StreamBufferRequestError* request_status) {
1768 if (buffers == nullptr) {
1769 ALOGE("%s: buffers is nullptr", __FUNCTION__);
1770 return BAD_VALUE;
1771 }
1772
1773 if (num_buffers == 0) {
1774 ALOGE("%s: num_buffers is 0", __FUNCTION__);
1775 return BAD_VALUE;
1776 }
1777
1778 if (request_status == nullptr) {
1779 ALOGE("%s: request_status is nullptr", __FUNCTION__);
1780 return BAD_VALUE;
1781 }
1782
1783 *request_status = StreamBufferRequestError::kOk;
1784 status_t res = pending_requests_tracker_->WaitAndTrackAcquiredBuffers(
1785 stream_id, num_buffers);
1786 if (res != OK) {
1787 ALOGW("%s: Waiting until available buffer failed: %s(%d)", __FUNCTION__,
1788 strerror(-res), res);
1789 *request_status = StreamBufferRequestError::kNoBufferAvailable;
1790 return res;
1791 }
1792
1793 std::vector<BufferReturn> buffer_returns;
1794 std::vector<BufferRequest> buffer_requests = {{
1795 .stream_id = stream_id,
1796 .num_buffers_requested = num_buffers,
1797 }};
1798
1799 BufferRequestStatus status = BufferRequestStatus::kOk;
1800 {
1801 int64_t start_timestamp;
1802 std::shared_lock lock(session_callback_lock_);
1803 if (measure_buffer_allocation_time_) {
1804 struct timespec start_time;
1805 if (clock_gettime(CLOCK_BOOTTIME, &start_time)) {
1806 ALOGE("%s: Getting start_time failed.", __FUNCTION__);
1807 } else {
1808 start_timestamp = start_time.tv_sec * kNsPerSec + start_time.tv_nsec;
1809 }
1810 }
1811 status = session_callback_.request_stream_buffers(buffer_requests,
1812 &buffer_returns);
1813 if (measure_buffer_allocation_time_) {
1814 int64_t end_timestamp;
1815 struct timespec end_time;
1816 if (clock_gettime(CLOCK_BOOTTIME, &end_time)) {
1817 ALOGE("%s: Getting end_time failed.", __FUNCTION__);
1818 } else {
1819 end_timestamp = end_time.tv_sec * kNsPerSec + end_time.tv_nsec;
1820 int64_t elapsed_timestamp = end_timestamp - start_timestamp;
1821 if (elapsed_timestamp > kAllocationThreshold) {
1822 ALOGW("%s: buffer allocation time: %" PRIu64 " ms", __FUNCTION__,
1823 elapsed_timestamp / 1000000);
1824 }
1825 }
1826 }
1827 }
1828
1829 // need this information when status is not kOk
1830 if (buffer_returns.size() > 0) {
1831 *request_status = buffer_returns[0].val.error;
1832 }
1833
1834 if (status != BufferRequestStatus::kOk || buffer_returns.size() != 1) {
1835 ALOGW(
1836 "%s: Requesting stream buffer failed. (buffer_returns has %zu "
1837 "entries)",
1838 __FUNCTION__, buffer_returns.size());
1839 for (auto& buffer_return : buffer_returns) {
1840 ALOGI("%s: stream %d, buffer request error %d", __FUNCTION__,
1841 buffer_return.stream_id, buffer_return.val.error);
1842 }
1843
1844 pending_requests_tracker_->TrackBufferAcquisitionFailure(stream_id,
1845 num_buffers);
1846 // TODO(b/129362905): Return partial buffers.
1847 return UNKNOWN_ERROR;
1848 }
1849
1850 *buffers = buffer_returns[0].val.buffers;
1851
1852 res = UpdateRequestedBufferHandles(buffers);
1853 if (res != OK) {
1854 ALOGE("%s: Updating requested buffer handles failed: %s(%d).", __FUNCTION__,
1855 strerror(-res), res);
1856 // TODO(b/129362905): Return partial buffers.
1857 return res;
1858 }
1859
1860 ALOGV("%s: [sbc] => CDS Acquired buf[%p] buf_id[%" PRIu64 "] strm[%d]",
1861 __FUNCTION__, buffers->at(0).buffer, buffers->at(0).buffer_id,
1862 stream_id);
1863
1864 return OK;
1865 }
1866
ReturnStreamBuffers(const std::vector<StreamBuffer> & buffers)1867 void CameraDeviceSession::ReturnStreamBuffers(
1868 const std::vector<StreamBuffer>& buffers) {
1869 {
1870 std::shared_lock lock(session_callback_lock_);
1871 session_callback_.return_stream_buffers(buffers);
1872 }
1873
1874 for (auto& stream_buffer : buffers) {
1875 ALOGV("%s: [sbc] <= Return extra buf[%p], bid[%" PRIu64 "], strm[%d]",
1876 __FUNCTION__, stream_buffer.buffer, stream_buffer.buffer_id,
1877 stream_buffer.stream_id);
1878 }
1879
1880 if (pending_requests_tracker_->TrackReturnedAcquiredBuffers(buffers) != OK) {
1881 ALOGE("%s: Tracking requested buffers failed.", __FUNCTION__);
1882 }
1883 }
1884
1885 std::unique_ptr<google::camera_common::Profiler>
GetProfiler(uint32_t camera_id,int option)1886 CameraDeviceSession::GetProfiler(uint32_t camera_id, int option) {
1887 return device_session_hwl_->GetProfiler(camera_id, option);
1888 }
1889
1890 } // namespace google_camera_hal
1891 } // namespace android
1892